Digital constant-temperature shower head shower device

文档序号:1723988 发布日期:2019-12-20 浏览:19次 中文

阅读说明:本技术 一种数字式恒温花洒淋浴装置 (Digital constant-temperature shower head shower device ) 是由 厉相宝 杨传福 于 2019-08-21 设计创作,主要内容包括:本发明提供一种数字式恒温花洒淋浴装置,包括花洒滤杂网片,花洒本体,花洒安装管,温度检测传感器,PID恒水温智能控制器,活动导管,可高度适应性调节架,金属软管,对接管,进水滤杂可拆卸清理芯结构,冷水管,冷水接头,支撑杆,底座和可防滑底部废水滤杂导出管结构。本发明支撑板,杂质滤网,鹅软石块,缓冲盒和排放管的设置,有利于对淋浴后的废水进行过滤收集,通过杂质滤网再次过滤杂质,通过鹅软石块进行储存较大的杂质,通过缓冲盒可进行缓冲暂存废水,最后可通过排放管将处理的废水排放至下水道,以避免环境污染。(The invention provides a digital constant-temperature shower head shower device which comprises a shower head impurity filtering net piece, a shower head body, a shower head installation pipe, a temperature detection sensor, a PID (proportion integration differentiation) constant water temperature intelligent controller, a movable guide pipe, a highly adaptable adjusting frame, a metal hose, a butt joint pipe, a water inlet impurity filtering detachable cleaning core structure, a cold water pipe, a cold water joint, a support rod, a base and an anti-skid bottom waste water impurity filtering leading-out pipe structure. The supporting plate, the impurity filter screen, the soft goose stone block, the buffer box and the discharge pipe are arranged, so that the waste water after showering can be filtered and collected, the impurities are filtered again through the impurity filter screen, the large impurities are stored through the soft goose stone block, the waste water can be buffered and temporarily stored through the buffer box, and finally the treated waste water can be discharged to a sewer through the discharge pipe, so that the environmental pollution is avoided.)

1. The digital constant-temperature shower head shower device is characterized by comprising a shower head impurity filtering net piece (1), a shower head body (2), a shower head installation pipe (3), a temperature detection sensor (4), a PID (proportion integration differentiation) constant water temperature intelligent controller (5), a movable guide pipe (6), a highly adaptable adjusting frame (7), a metal hose (8), a butt joint pipe (9), a water inlet impurity filtering detachable cleaning core structure (10), a cold water pipe (11), a cold water joint (12), a support rod (13), a base (14) and an anti-skid bottom waste water impurity filtering lead-out pipe structure (15), wherein the shower head impurity filtering net piece (1) is in screwed connection with the lower surface of the shower head body (2); the shower head body (2) is in threaded connection with the right end of the shower head mounting pipe (3); the temperature detection sensor (4) is in threaded connection with the left lower side of the shower head mounting pipe (3); the shower head mounting pipe (3) is mounted at the upper end of the PID constant water temperature intelligent controller (5); the PID constant water temperature intelligent controller (5) is arranged at the upper end of the movable conduit (6); the movable conduit (6) is connected with a highly adaptive adjusting frame (7); one end of the metal hose (8) is in threaded connection with the upper end of the butt joint pipe (9), and the other end of the metal hose is in threaded connection with the lower end of the movable guide pipe (6); the butt joint pipe (9) is arranged at the upper end of the cold water pipe (11) through a water inlet impurity filtering detachable cleaning core structure (10); the longitudinal lower end of the cold water pipe (11) is in threaded connection with the upper end of the cold water joint (12); the cold water joint (12) is arranged between the supporting rods (13) arranged on the left side; the support rods (13) are respectively and longitudinally screwed at the four corners of the upper part of the base (14); the anti-skid bottom waste water impurity filtering lead-out pipe structure (15) is connected with the supporting rod (13); the PID constant water temperature intelligent controller (5) comprises a water storage buffer tank (51), an electromagnetic valve (52), a water suction pump (53), a PID constant water temperature intelligent box (54), a hot water pipe head (55), a PID constant water temperature controller (56) and a water temperature adjusting panel (57), wherein the water storage buffer tank (51), the electromagnetic valve (52) and the water suction pump (53) are sequentially connected to the middle position of the left side in the PID constant water temperature intelligent box (54) through screws from top to bottom; the hot water pipe head (55) transversely penetrates through the middle position of the upper side of the left part of the PID constant water temperature intelligent box (54) and is in threaded connection with the water storage buffer tank (51); the PID constant water temperature controller (56) is longitudinally screwed in the middle of the left wall in the PID constant water temperature intelligent box (54); the water temperature adjusting panel (57) is embedded in the middle of the right wall of the PID constant water temperature intelligent box (54).

2. The digital constant-temperature shower head device according to claim 1, wherein the height-adjustable adjusting rack (7) comprises a mounting bolt (71), a linear slide rail (72), a U-shaped slider (73), a square head bolt (74), a movable rack (75) and a stable pipe (76), wherein the mounting bolt (71) is transversely screwed at the middle positions of the upper side and the lower side of the inside of the linear slide rail (72); the U-shaped sliding block (73) is slidably clamped at the right side of the outer wall of the linear sliding rail (72); the joint of the linear slide rail (72) and the U-shaped slide block (73) is also in threaded connection with a square head bolt (74); one transverse end of the movable frame (75) is connected with the middle position of the left side of the stabilizing pipe (76) through a screw, and the other transverse end of the movable frame is connected with the middle position of the right side of the U-shaped sliding block (73) through a screw.

3. The digital constant-temperature shower head shower device as claimed in claim 1, wherein the water inlet impurity filtering detachable cleaning core structure (10) comprises a connector head (101), a sealing cover (102), a cleaning barrel (103), an impurity filtering ball (104), an impurity filtering net (105) and an impurity filtering adsorption core (106), wherein the connector head (101) is in threaded connection with the middle position inside the sealing cover (102); the sealing covers (102) are respectively in threaded connection with the upper end and the lower end of the cleaning barrel (103); the impurity filtering balls (104) are respectively arranged between the sealing cover (102) and the impurity filtering net (105) from left to right in sequence; the longitudinal screw of the impurity filtering adsorption core (106) is connected to the middle position in the cleaning barrel (103); the impurity filtering net (105) is respectively connected with the upper end and the lower end of the impurity filtering adsorption core (106) through screws.

4. The digital constant-temperature shower head device as claimed in claim 1, wherein the anti-slip bottom waste water impurity filtering lead-out pipe structure (15) comprises an anti-slip pad (151), a support plate (152), an impurity filter screen (153), a goose-shaped cork block (154), a buffer box (155) and a discharge pipe (156), wherein the anti-slip pad (151) is screwed on the middle position of the upper surface of the support plate (152); an impurity filter screen (153) is embedded in the supporting plate (152); the goose soft stone blocks (154) are sequentially placed at the bottom end inside the buffer box (155) from left to right; the buffer box (155) is connected to the middle position of the lower part of the supporting plate (152) through a screw; the upper longitudinal end of the discharge pipe (156) is in threaded connection with an outlet at the middle position of the bottom of the buffer box (155).

5. The digital constant-temperature shower head shower device as claimed in claim 1, wherein the left lower end of the shower head mounting pipe (3) penetrates through the middle position inside the top end of the PID constant water temperature intelligent box (54) and is in threaded connection with the upper end outlet of the water storage buffer tank (51).

6. The digital constant-temperature shower head device as claimed in claim 1, wherein the upper longitudinal end of the movable conduit (6) penetrates through the middle position of the bottom of the PID constant water temperature intelligent box (54) and is in threaded connection with the lower inlet end of the water pump (53).

7. The digital constant-temperature shower head device as claimed in claim 1, wherein the water storage buffer tank (51) and the electromagnetic valve (52) are communicated with each other.

8. The digital thermostatic shower device as claimed in claim 1, wherein the electromagnetic valve (52) is in communication with the water pump (53).

9. The digital thermostatic shower head device according to claim 2, wherein the stabilizing pipe (76) is screwed to the outer wall of the movable conduit (6) in a middle position.

10. The digital thermostatic shower head as claimed in claim 1 wherein the upper adapter (101) is screwed to the lower end of the docking pipe (9).

Technical Field

The invention belongs to the technical field of showering, and particularly relates to a digital constant-temperature shower head shower device.

Background

When the shower is used for taking a bath, the water is sprayed on the whole body by the spray head, thereby achieving the bath effect. Sometimes, when it rains, it is caught by rain, which is also called as enjoying "shower".

University of colorado researchers in the united states sampled showerheads from home and public locations in 5 states, new york, illinois, colorado, tennessee, and north dakota. They examined approximately 50 showerheads drawn from 9 cities and found that 30% of the showerheads harbored a large number of Mycobacterium avium which may cause lung disease. This is an atypical Mycobacterium tuberculosis. Researchers have sampled and analyzed the water released by the shower nozzle and the water flowing out of the water pipe after the nozzle is removed, and simultaneously the inside dirt is picked up and tested by the detached shower nozzle. By testing these samples for deoxyribonucleic acid (DNA), scientists found that more Mycobacterium avium accumulated in the showerhead than in the hot water flowing from the showerhead, the number of Mycobacterium avium in the showerhead being more than 100 times higher than in the tap water. The water samples from this study were derived from a municipal water supply, except 4 from rural households. No mycobacterium avium, but only some other bacteria, was found in the water from these 4 homes due to the water supply from the private pipe.

However, the existing shower head directly mixes cold water and hot water together, controls the water temperature through the adjustment of a mechanical valve, and is not safe and inconvenient. Although the installation is convenient, the operation is simple. But current gondola water faucet shower bath still has the temperature to adjust suddenly cold suddenly hot, can't carry out the altitude mixture control according to shower user crowd's demand, and cold water direct use contains impurity influence easily and uses and does not possess the miscellaneous function of straining and does not possess the problem that bottom antiskid drainage discharged the function.

Therefore, the invention is very necessary to invent the digital constant-temperature shower head and shower device.

Disclosure of Invention

In order to solve the technical problems, the invention provides a digital constant-temperature shower head shower device, which aims to solve the problems that the existing shower head shower device is suddenly cooled and suddenly heated during water temperature adjustment, cannot adjust the height position according to the requirements of shower users, easily contains impurities when cold water is directly used, and has no impurity filtering function and no bottom anti-skid water filtering and discharging function when used. A digital constant-temperature shower head shower device comprises a shower head impurity filtering net piece, a shower head body, a shower head installation pipe, a temperature detection sensor, a PID (proportion integration differentiation) constant water temperature intelligent controller, a movable guide pipe, a highly adaptable adjusting frame, a metal hose, a butt joint pipe, a water inlet impurity filtering detachable cleaning core structure, a cold water pipe, a cold water joint, a support rod, a base and an anti-skid bottom waste water impurity filtering lead-out pipe structure, wherein the shower head impurity filtering net piece is connected to the lower surface of the shower head body through screws; the shower head body is in threaded connection with the right end of the shower head mounting pipe; the temperature detection sensor is in threaded connection with the left lower side of the shower head mounting pipe; the shower head mounting pipe is arranged at the upper end of the PID constant water temperature intelligent controller; the PID constant water temperature intelligent controller is arranged at the upper end of the movable conduit; the movable conduit is connected with the height-adaptive adjusting frame; one end of the metal hose is in threaded connection with the upper end of the butt joint pipe, and the other end of the metal hose is in threaded connection with the lower end of the movable guide pipe; the butt joint pipe is arranged at the upper end of the cold water pipe through a water inlet impurity filtering detachable cleaning core structure; the longitudinal lower end of the cold water pipe is in threaded connection with the upper end of the cold water joint; the cold water joint is arranged between the supporting rods arranged on the left side; the supporting rods are respectively and longitudinally connected to the four corners of the upper part of the base in a threaded manner; the anti-skid bottom waste water impurity filtering lead-out pipe structure is connected with the supporting rod; the PID constant water temperature intelligent controller comprises a water storage buffer tank, an electromagnetic valve, a water suction pump, a PID constant water temperature intelligent box, a hot water pipe head, a PID constant water temperature controller and a water temperature adjusting panel, wherein the water storage buffer tank, the electromagnetic valve and the water suction pump are sequentially connected to the middle position of the left side in the PID constant water temperature intelligent box through screws from top to bottom; the hot water pipe head transversely penetrates through the middle position of the upper side of the left part of the PID constant water temperature intelligent box and is in threaded connection with the water storage buffer tank; the PID constant water temperature controller is longitudinally screwed in the middle of the left wall in the PID constant water temperature intelligent box; the water temperature adjusting panel is embedded in the middle of the right wall of the PID constant water temperature intelligent box.

Preferably, the height-adaptive adjusting frame comprises a mounting bolt, a linear slide rail, a U-shaped sliding block, a square-head bolt, a movable frame and a stable pipe, wherein the mounting bolt is respectively transversely and threadedly connected to the middle positions of the upper side and the lower side of the interior of the linear slide rail; the U-shaped sliding block is connected to the right side of the outer wall of the linear sliding rail in a sliding and clamping manner; the joint of the linear slide rail and the U-shaped slide block is also in threaded connection with a square-head bolt; and one transverse end of the movable frame is in screwed connection with the middle position of the left side of the stabilizing pipe, and the other end of the movable frame is in screwed connection with the middle position of the right side of the U-shaped sliding block.

Preferably, the detachable cleaning core structure for water inlet impurity filtering comprises a connecting pipe head, a sealing cover, a cleaning barrel, an impurity filtering ball, an impurity filtering net and an impurity filtering adsorption core, wherein the connecting pipe head is in threaded connection with the middle position inside the sealing cover; the sealing covers are respectively in threaded connection with the upper end and the lower end of the cleaning barrel; the impurity filtering balls are sequentially arranged between the sealing cover and the impurity filtering net from left to right respectively; the longitudinal screw of the impurity filtering adsorption core is connected to the middle position in the cleaning barrel; the impurity filtering nets are respectively connected to the upper end and the lower end of the impurity filtering adsorption core through screws.

Preferably, the anti-skid bottom wastewater impurity-filtering delivery pipe structure comprises an anti-skid pad, a supporting plate, an impurity filtering net, goose soft stone blocks, a buffer box and a discharge pipe, wherein the anti-skid pad is connected to the middle position of the upper surface of the supporting plate through a screw; an impurity filter screen is embedded in the supporting plate; the soft goose stone blocks are sequentially placed at the bottom end inside the buffer box from left to right; the buffer box is connected to the middle position of the lower part of the supporting plate through a screw; the upper end of the discharge pipe in the longitudinal direction is in threaded connection with an outlet at the middle position of the bottom of the buffer box.

Preferably, the left lower extreme of gondola water faucet installation pipe run through the inside intermediate position in top of the constant water temperature intelligence box of PID to upper end exit threaded connection with the water storage buffer tank sets up.

Preferably, the longitudinal upper end of the movable conduit penetrates through the middle position of the bottom of the PID constant water temperature intelligent box and is in threaded connection with the lower inlet end of the water suction pump.

Preferably, the water storage buffer tank and the electromagnetic valve are communicated.

Preferably, the electromagnetic valve is communicated with the water pump.

Preferably, the stabilizing pipe is screwed in the middle of the outer wall of the movable guide pipe.

Preferably, the upper connecting pipe head is in threaded connection with the lower end of the butt joint pipe.

Preferably, the connecting pipe head arranged at the lower part is in threaded connection with the upper end of the cold water pipe.

Preferably, a plurality of activated carbon balls are adopted as the impurity filtering balls.

Preferably, the impurity filtering net adopts two round stainless steel filtering nets.

Preferably, the impurity filtering adsorption core is a cylindrical activated carbon filter core.

Preferably, the non-slip mat is a hollow rubber mat with protrusions.

Preferably, the impurity filter screen specifically adopts a rectangular stainless steel filter screen.

Preferably, the buffer box is a stainless steel box.

Preferably, the support rods are respectively connected to the four corners of the bottom of the support plate through bolts at the longitudinal upper ends.

Preferably, the cold water pipe is also longitudinally screwed at the middle position of the left side in the supporting plate.

Preferably, the electromagnetic valve and the water pump are respectively controlled by a PID constant water temperature controller, the temperature detection sensor transmits detection information for the PID constant water temperature controller, and the water temperature adjusting panel can control the execution parameters of the PID constant water temperature controller.

Preferably, the water storage buffer tank and the shower body are connected through a shower installation pipe.

Preferably, the electromagnetic valve is a 2W stainless steel electromagnetic water valve, the water pump is a 6012 type micro water pump, the PID constant water temperature controller is a KCM-91WT electronic temperature controller, and the temperature detection sensor is a PT100 type temperature sensor.

Compared with the prior art, the invention has the beneficial effects that:

1. according to the invention, the arrangement of the water storage buffer tank, the electromagnetic valve, the water suction pump, the PID constant water temperature intelligent box, the hot water pipe head, the PID constant water temperature controller and the water temperature adjusting panel is favorable for mixing cold water and hot water in the water storage buffer tank, the PID constant water temperature controller can compare the temperature of the water outlet detected by the temperature detection sensor with the preset temperature of the water temperature adjusting panel, adjust the proportion of the hot water and the cold water according to the comparison result, further adjust the proportion of the hot water and the cold water in the water storage buffer tank, further automatically correct the temperature, adjust the temperature of the water outlet in real time, ensure that the temperature of the water outlet is consistent with the temperature adjusted by the water temperature adjusting panel of a user, ensure the outlet water temperature of the shower head to be more accurate, simultaneously ensure that the cold water continuously enters through the actions of the electromagnetic valve and the water suction pump, so that the hot water entering from the hot water pipe head, The rapid mixing and stirring enables the heat of the hot water and the cold water to be rapidly exchanged, and avoids the sudden cooling and sudden heating of the water temperature regulation.

2. According to the shower head, the linear slide rail, the U-shaped slide block and the square head bolt are arranged, so that the shower head can be used by shower people with different heights, the position of the U-shaped slide block on the outer wall of the linear slide rail can be adjusted in a sliding mode by loosening the square head bolt, the position of the movable guide pipe can be changed at the moment, the height position of the shower head body can be changed conveniently, the shower work can be facilitated, the square head bolt can be locked after adjustment, and the use requirements can be met.

3. According to the invention, the arrangement of the mounting bolt, the movable frame and the stabilizing pipe is beneficial to mounting and fixing the linear slide rail through the mounting bolt, the operation is convenient, a good stabilizing and supporting effect can be achieved on the movable guide pipe through the movable frame and the stabilizing pipe, and the operation stability is ensured.

4. According to the invention, the arrangement of the impurity filtering ball, the impurity filtering net and the impurity filtering adsorption core is beneficial to adsorbing impurities through the impurity filtering ball when cold water enters, double impurity filtering work can be carried out through the impurity filtering net, and deep impurity removal and impurity adsorption work can be carried out through the impurity filtering adsorption core, so that the cleanness of a shower is ensured.

5. According to the invention, the arrangement of the connecting pipe head, the sealing cover and the cleaning barrel is beneficial to connecting pipelines at all levels through the connecting pipe head, so that the operation is convenient, the impurity filtering adsorption core can be detached and maintained through the sealing cover and the cleaning barrel, the operation is convenient, and the use convenience is improved.

6. According to the invention, the arrangement of the supporting plate, the impurity filtering screen, the goose soft stone block, the buffering box and the discharge pipe is beneficial to filtering and collecting the waste water after showering, the impurities are filtered again through the impurity filtering screen, the goose soft stone block is used for storing larger impurities, the buffering box can be used for buffering and temporarily storing the waste water, and finally the treated waste water can be discharged to a sewer through the discharge pipe so as to avoid environmental pollution.

7. According to the invention, the arrangement of the non-slip mat is beneficial to playing a good anti-slip role for a bather, and the use safety of shower is ensured.

8. According to the invention, the arrangement of the shower impurity filtering net sheet and the shower body is beneficial to atomizing water sprayed from the shower body through the shower impurity filtering net sheet, so that the water saving performance can be ensured, the impurity filtering effect can be realized, and the cleanness in use can be ensured.

9. In the invention, the arrangement of the supporting rod and the base is favorable for playing a good bottom supporting role.

10. In the invention, the arrangement of the cold water joint is beneficial to connecting a cold water pipeline.

Drawings

Fig. 1 is a schematic structural view of the present invention.

Fig. 2 is a schematic structural diagram of the constant water temperature intelligent controller of the invention.

Fig. 3 is a schematic structural view of the highly adaptable adjusting mount of the present invention.

Fig. 4 is a schematic structural diagram of a detachable cleaning core structure for water inlet impurity filtering according to the invention.

Fig. 5 is a schematic structural diagram of the skidproof bottom waste water impurity filtering lead-out pipe structure of the invention.

Fig. 6 is a schematic diagram of the operation of the present invention.

In the figure:

1. the sprinkler filters miscellaneous net pieces; 2. a shower head body; 3. a shower head mounting pipe; 4. a temperature detection sensor; 5. a PID constant water temperature intelligent controller; 51. a water storage buffer tank; 52. an electromagnetic valve; 53. a water pump; 54. a PID constant water temperature intelligent box; 55. a hot water pipe head; 56. a PID constant water temperature controller; 57. a water temperature adjusting panel; 6. a movable catheter; 7. a highly adaptable adjusting bracket; 71. installing a bolt; 72. a linear slide rail; 73. a U-shaped slider; 74. a square head bolt; 75. a movable frame; 76. a stabilizing tube; 8. a metal hose; 9. butt-joint pipes; 10. the water inlet impurity filtering detachable cleaning core structure; 101. a connector head; 102. a sealing cover; 103. cleaning the cylinder; 104. filtering the impurity balls; 105. filtering the impurity net; 106. filtering the impurity to adsorb the core; 11. a cold water pipe; 12. a cold water connection; 13. a support bar; 14. a base; 15. the anti-skid bottom waste water filters the miscellaneous eduction tube structure; 151. a non-slip mat; 152. a support plate; 153. an impurity filter screen; 154. (ii) goose soft stone blocks; 155. a buffer box; 156. a discharge pipe.

Detailed Description

The invention is described in detail with reference to the accompanying drawings, as shown in fig. 1 and fig. 2, a digital constant temperature shower head shower device comprises a shower head impurity filtering net piece 1, a shower head body 2, a shower head installation pipe 3, a temperature detection sensor 4, a PID constant water temperature intelligent controller 5, a movable conduit 6, a highly adaptable adjusting frame 7, a metal hose 8, a butt joint pipe 9, an inlet water impurity filtering detachable cleaning core structure 10, a cold water pipe 11, a cold water joint 12, a support rod 13, a base 14 and an anti-skid bottom waste water impurity filtering guide pipe structure 15, wherein the shower head impurity filtering net piece 1 is connected to the lower surface of the shower head body 2 through screws; the shower head body 2 is in threaded connection with the right end of the shower head mounting pipe 3; the temperature detection sensor 4 is in threaded connection with the left lower side of the shower head mounting pipe 3; the shower head mounting pipe 3 is mounted at the upper end of the PID constant water temperature intelligent controller 5; the PID constant water temperature intelligent controller 5 is arranged at the upper end of the movable conduit 6; the movable conduit 6 is connected with a highly adaptive adjusting frame 7; one end of the metal hose 8 is in threaded connection with the upper end of the butt joint pipe 9, and the other end of the metal hose is in threaded connection with the lower end of the movable conduit 6; the butt joint pipe 9 is arranged at the upper end of a cold water pipe 11 through a water inlet impurity filtering detachable cleaning core structure 10; the longitudinal lower end of the cold water pipe 11 is in threaded connection with the upper end of the cold water joint 12; the cold water joint 12 is arranged between the support rods 13 arranged on the left side; the support rods 13 are respectively and longitudinally screwed at four corners of the upper part of the base 14; the antiskid bottom waste water impurity filtering and leading-out pipe structure 15 is connected with the support rod 13; the PID constant water temperature intelligent controller 5 comprises a water storage buffer tank 51, an electromagnetic valve 52, a water suction pump 53, a PID constant water temperature intelligent box 54, a hot water pipe head 55, a PID constant water temperature controller 56 and a water temperature adjusting panel 57, wherein the water storage buffer tank 51, the electromagnetic valve 52 and the water suction pump 53 are sequentially connected to the middle position of the left side in the PID constant water temperature intelligent box 54 through screws from top to bottom; the hot water pipe head 55 transversely penetrates through the middle position of the upper side of the left part of the PID constant water temperature intelligent box 54 and is in threaded connection with the water storage buffer tank 51; the PID constant water temperature controller 56 is longitudinally screwed in the middle of the left wall in the PID constant water temperature intelligent box 54; the water temperature adjusting panel 57 is embedded in the middle position of the right wall of the PID constant water temperature intelligent box 54, the hot water pipe head 55 is connected with a solar water heater pipeline, when cold water and hot water are mixed in the water storage buffer tank 51, the PID constant water temperature controller 56 can compare the water outlet temperature detected by the temperature detection sensor 4 with the preset temperature of the water temperature adjusting panel 57, and adjust the proportion of the hot water and the cold water according to the comparison result, so as to adjust the proportion of the hot water and the cold water in the water storage buffer tank 51, further automatically correct the temperature, adjust the temperature of the water outlet in real time, ensure that the temperature of the water outlet is consistent with the temperature adjusted by the water temperature adjusting panel 57 of a user, ensure that the water outlet temperature of the shower head body 2 is more accurate, and simultaneously ensure that the cold water continuously enters through the actions of the electromagnetic valve 52 and the water suction pump 53, so that the hot water entering from the hot water pipe head 55 and the cold water entering from the cold water joint 12, The rapid mixing and stirring enables the heat of the hot water and the cold water to be rapidly exchanged, and avoids the sudden cooling and sudden heating of the water temperature regulation.

In this embodiment, referring to fig. 3, the height-adaptable adjusting frame 7 includes a mounting bolt 71, a linear slide rail 72, a U-shaped slider 73, a square-head bolt 74, a movable frame 75 and a stable pipe 76, wherein the mounting bolt 71 is respectively and transversely screwed to the middle positions of the upper and lower sides inside the linear slide rail 72; the U-shaped sliding block 73 is slidably clamped at the right side of the outer wall of the linear sliding rail 72; the joint of the linear slide rail 72 and the U-shaped slide block 73 is also in threaded connection with a square head bolt 74; the horizontal one end screw connection of adjustable shelf 75 stabilizes the left side intermediate position of pipe 76, other end screw connection is at the right side intermediate position of U type slider 73, shower crowd in order to satisfy different heights uses, through loosening square head bolt 74, can carry out the position of slide adjusting U type slider 73 at linear slide rail 72 outer wall, can change movable pipe 6's position this moment, so that change the high position of gondola water faucet body 2, can be convenient for carry out shower work, can lock square head bolt 74 after the regulation, satisfy the user demand, install fixed linear slide rail 72 through mounting bolt 71, and the operation of being convenient for, can play good firm supporting role to movable pipe 6 through adjustable shelf 75 and firm pipe 76, guarantee operating stability.

In this embodiment, referring to fig. 4, the detachable cleaning core structure 10 for water inlet impurity filtering comprises a connecting pipe head 101, a sealing cover 102, a cleaning cylinder 103, an impurity filtering ball 104, an impurity filtering net 105 and an impurity filtering adsorption core 106, wherein the connecting pipe head 101 is screwed in the middle position inside the sealing cover 102; the sealing covers 102 are respectively in threaded connection with the upper end and the lower end of the cleaning barrel 103; the impurity filtering balls 104 are respectively arranged between the sealing cover 102 and the impurity filtering net 105 in sequence from left to right; the longitudinal screw of the impurity filtering adsorption core 106 is connected with the middle position in the cleaning barrel 103; filter miscellaneous net 105 screw connection respectively and filter miscellaneous upper and lower both ends of adsorbing core 106, be connected cold water connector 12 with the cold water pipeline, when cold water entered, adsorb impurity through filtering miscellaneous ball 104, can carry out dual miscellaneous work of filtering through filtering miscellaneous net 105, can carry out degree of depth edulcoration through filtering miscellaneous adsorbing core 106 and adsorb impurity work, guarantee the shower cleanness, connect the pipeline at different levels through linking up pipe head 101, convenient operation can dismantle through sealed lid 102 and clearance section of thick bamboo 103 and maintain and filter miscellaneous adsorbing core 106, convenient operation increases the convenience of use.

In this embodiment, referring to fig. 5, the anti-slip bottom waste water impurity-filtering and discharging pipe structure 15 includes an anti-slip pad 151, a supporting plate 152, an impurity filtering net 153, a soft goose stone block 154, a buffering box 155 and a discharging pipe 156, wherein the anti-slip pad 151 is screwed on the middle position of the upper surface of the supporting plate 152; an impurity filter screen 153 is embedded in the supporting plate 152; the goose soft stone blocks 154 are sequentially placed at the bottom end inside the buffer box 155 from left to right; the buffer box 155 is screwed at the middle position of the lower part of the supporting plate 152; vertical upper end threaded connection of discharge pipe 156 in the bottom intermediate position exit of buffer box 155, in the shower, can filter the collection to the waste water after the shower, filter impurity once more through impurity filter screen 153, store great impurity through goose soft stone piece 154, can cushion through buffer box 155 and keep in waste water, the waste water discharge to the sewer of accessible discharge pipe 156 with handling at last to avoid environmental pollution.

In this embodiment, specifically, the left lower end of the shower head installation pipe 3 runs through the top inside middle position of the PID constant water temperature intelligent box 54 and is in threaded connection with the upper end outlet of the water storage buffer tank 51.

In this embodiment, specifically, the longitudinal upper end of the movable conduit 6 penetrates through the middle position of the bottom of the PID constant water temperature intelligent box 54 and is in threaded connection with the lower inlet end of the water pump 53.

In this embodiment, specifically, the water storage buffer tank 51 and the electromagnetic valve 52 are communicated with each other.

In this embodiment, specifically, the electromagnetic valve 52 is communicated with the water pump 53.

In this embodiment, specifically, the stabilizing pipe 76 is screwed to the middle position of the outer wall of the movable conduit 6.

In this embodiment, specifically, the adaptor head 101 disposed at the upper portion is screwed to the lower end of the butt pipe 9.

In this embodiment, specifically, the adaptor head 101 disposed at the lower portion is screwed to the upper end of the cold water pipe 11.

In this embodiment, specifically, the impurity filtering ball 104 employs a plurality of activated carbon balls.

In this embodiment, specifically, the impurity filtering net 105 adopts two circular stainless steel filtering nets.

In this embodiment, the impurity filtering adsorption core 106 is a cylindrical activated carbon filter core.

In this embodiment, specifically, the anti-slip pad 151 specifically adopts a hollow rubber pad with a protrusion.

In this embodiment, specifically, the impurity filter 153 specifically uses a rectangular stainless steel filter.

In this embodiment, the buffer box 155 is specifically a stainless steel box.

In this embodiment, specifically, the support rods 13 are respectively bolted to four corners of the bottom of the support plate 152 at the upper ends in the longitudinal direction.

In this embodiment, specifically, the cold water pipe 11 is further longitudinally screwed to the middle position of the left side inside the supporting plate 152.

In this embodiment, specifically, the electromagnetic valve 52 and the water pump 53 are controlled by the PID constant water temperature controller 56, the temperature detection sensor 4 transmits detection information to the PID constant water temperature controller 56, and the water temperature adjustment panel 57 can control the execution parameters of the PID constant water temperature controller 56.

In this embodiment, specifically, the water storage buffer tank 51 and the shower body 2 are connected through the shower mounting pipe 3.

In this embodiment, specifically, the electromagnetic valve 52 specifically adopts a 2W stainless steel electromagnetic water valve, the water pump 53 specifically adopts a 6012 type micro water pump, the PID constant water temperature controller 56 specifically adopts a KCM-91WT type electronic temperature controller, and the temperature detection sensor 4 specifically adopts a PT100 type temperature sensor.

Principle of operation

In the invention, a hot water pipe head 55 is connected with a solar water heater pipeline, when cold water and hot water are mixed in a water storage buffer tank 51, a PID constant water temperature controller 56 can compare the temperature of a water outlet detected by a temperature detection sensor 4 with the preset temperature of a water temperature adjusting panel 57, adjust the proportion of the hot water and the cold water according to the comparison result, further adjust the proportion of the hot water and the cold water in the water storage buffer tank 51, further automatically correct the temperature, adjust the temperature of the water outlet in real time, ensure that the temperature of the water outlet is consistent with the temperature adjusted by the water temperature adjusting panel 57 of a user, ensure that the water outlet temperature of a shower head body 2 is more accurate, simultaneously ensure that the cold water continuously enters through the actions of an electromagnetic valve 52 and a water suction pump 53, ensure that the hot water entering from the hot water pipe head 55 and the cold water entering from a cold water joint 12 are fully and rapidly mixed and stirred in the water, the heat of hot water and cold water is rapidly exchanged, the temperature adjustment is prevented from being suddenly cooled and suddenly heated, in order to meet the requirements of shower crowds with different heights, the square head bolt 74 is loosened to slidably adjust the position of the U-shaped slide block 73 on the outer wall of the linear slide rail 72, at the moment, the position of the movable conduit 6 can be changed so as to change the height position of the shower head body 2, the square head bolt 74 can be conveniently locked after adjustment, the use requirement is met, the linear slide rail 72 is fixedly installed through the installation bolt 71 so as to be convenient to operate, the movable conduit 6 can be stably supported through the movable frame 75 and the stable pipe 76, the operation stability is ensured, the cold water joint 12 is connected with a cold water pipeline, when cold water enters, impurities are adsorbed through the impurity filtering ball 104, double impurity filtering work can be carried out through the impurity filtering net 105, and deep impurity removing and impurity adsorbing work can be carried out through the impurity filtering adsorption core 106, guarantee the shower cleanness, connect pipelines at all levels through linking up pipe head 101, convenient operation, can dismantle through sealed lid 102 and clearance section of thick bamboo 103 and maintain and strain miscellaneous absorption core 106, convenient operation, increase the convenience of use, in the shower, can filter the collection to the waste water after the shower, filter impurity once more through impurity filter screen 153, store great impurity through goose soft stone piece 154, can cushion the waste water of keeping in through buffer box 155, accessible discharge pipe 156 discharges the waste water of handling to the sewer at last, in order to avoid environmental pollution.

The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention.

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