Tire inner heat dissipation system

文档序号:1869948 发布日期:2021-11-23 浏览:13次 中文

阅读说明:本技术 一种轮胎内部散热系统 (Tire inner heat dissipation system ) 是由 黄学迅 于 2021-10-25 设计创作,主要内容包括:发明属于轮胎相关领域,为一种轮胎内部散热系统,一种轮胎内部散热系统,包括壳体,所述壳体左端壁固定设有液压减震腔,所述液压减震腔上设有缓减压力装置,所述压水腔与所述过滤腔上设有喷水收集装置,所述清理主腔上固定设有清扫装置,所述主动腔上固定设有吸风转动装置。本发明在轮胎转动的时候,轮胎内壁进行有效的清洁,同时,将一些较大石沙进行搅碎和传送,将一些碎石和水进行传送到指定仓内,然后进行有效的过滤,对水进行多次使用,能够将卡住的树枝或其他东西进行切割排除,将叶片朝向风的方向打卡,有效的让风进入,进行快速散热,进行减震,能够对轮胎进行一些有效的缓冲力,从而更好的来进行减震。(The invention belongs to the relevant field of tires, and relates to a tire internal heat dissipation system which comprises a shell, wherein a hydraulic damping cavity is fixedly arranged on the left end wall of the shell, a pressure relieving device is arranged on the hydraulic damping cavity, water spray collecting devices are arranged on a water pressing cavity and a filter cavity, a cleaning device is fixedly arranged on a cleaning main cavity, and an air suction rotating device is fixedly arranged on a driving cavity. According to the invention, when the tire rotates, the inner wall of the tire is effectively cleaned, meanwhile, some large stone sand is crushed and conveyed, some broken stones and water are conveyed into a designated bin, then effective filtration is carried out, the water is used for multiple times, clamped branches or other objects can be cut and removed, the blades are clamped towards the direction of wind, wind can effectively enter, rapid heat dissipation is carried out, shock absorption is carried out, some effective buffer force can be carried out on the tire, and therefore shock absorption is better carried out.)

1. The utility model provides a heat dissipation system in tire, includes casing (10), its characterized in that, casing (10) left end wall is fixed and is equipped with hydraulic damping chamber (19), be equipped with on hydraulic damping chamber (19) and slow down pressure device, hydraulic damping chamber (19) left end wall is fixed and is equipped with filter chamber (17), be fixed on filter chamber (17) left end wall and be equipped with pressure water cavity (13), pressure water cavity (13) with be equipped with water spray collection device on filter chamber (17), it is fixed on water cavity (13) left end wall and is equipped with clearance main cavity (11), the fixed cleaning device that is equipped with on clearance main cavity (11), clearance main cavity (11) left end wall is fixed and is equipped with initiative chamber (37), the fixed rotating device that induced drafts that is equipped with on initiative chamber (37).

2. The heat dissipating system for a tire interior as set forth in claim 1, wherein: slowly reduce pressure device is including fixing connect shell chamber (24) of clearance main cavity (11) middle-end, connect fixed plate (25) of being equipped with on the shell chamber (24) outside end wall, fixed pressure oil chamber (21) that are equipped with two symmetries on the side end wall on fixed plate (25), the fixed response that is equipped with of end wall rises piece (22) under pressure oil chamber (21), the fixed movable block (20) that is equipped with of pressure oil chamber (21) upper end wall, it is equipped with hydraulic oil to slide in hydraulic shock attenuation chamber (19), can carry out some effectual cushion powers to the tire to better carry out the shock attenuation.

3. The heat dissipating system for a tire interior as set forth in claim 2, wherein: the air suction rotating device comprises a main body motor (36) fixed on the left end wall of the driving cavity (37), a driving shaft (23) is arranged on the right end wall of the cleaning main cavity (11) in a rotating mode, a hub (34) and an anti-interference rod (35) are fixedly arranged at the left end of the driving shaft (23), a rotating releasing shaft (48) is arranged in the anti-interference rod (35) in a rotating mode, a cleaning rotating shaft (38) is arranged on the output end of the main body motor (36), a rotating baffle (50) with two symmetrical ends is fixedly arranged on the rotating releasing shaft (48), two opposite and same cutting knives (41) are arranged on the anti-interference rod (35) in a sliding mode, a compression spring (49) is arranged at the rear end of each cutting knife (41), a fixing rod (46) is arranged on the left end wall of the anti-interference rod (35) in a rotating mode, a plurality of air inlet plates (47) are arranged on the fixing rod (46), and a rope is connected between the cutting knives (41), the clamped branches or other things can be cut and removed.

4. A tire interior heat dissipation system as in claim 3, wherein: fixed fan-shaped rotary rod (42) of being equipped with on clearance rotation axis (38), clearance main cavity (11) internal fixation is equipped with launches chamber (44), fan-shaped rotary rod (42) front end is equipped with induction magnet (43), it slides and is equipped with and launches gear (45) to launch chamber (44) lower extreme, can be when drive shaft (23) driven, punch the card with the blade towards the direction of wind, and the effectual wind that lets gets into carries out quick heat dissipation.

5. The heat dissipating system for a tire interior as set forth in claim 4, wherein: the cleaning device comprises an upper tooth rotating block (26) rotating on the lower end wall of the fixed plate (25), a connecting rod (27) is fixedly arranged on the lower end wall of the upper tooth rotating block (26), an adsorption wall block (29) is fixedly arranged on the lower end wall of the connecting rod (27), a conveying cavity (30) is fixedly arranged in the cleaning main cavity (11), a transmission crushing shaft (28) is rotatably arranged on the left end wall and the right end wall of the conveying cavity (30), a stirring wheel (33) is fixedly arranged on the transmission stirring shaft (28), a conveying cavity (30) is fixedly arranged on the left end wall of the stirring wheel (33), a friction starting block (32) is fixedly arranged on the right lower end wall of the hub (34), the driven gear (31) is capable of meshing with the driven gear (31), when the tire rotates, the inner wall of the tire is effectively cleaned, and meanwhile, a certain amount of large stone sand is crushed and conveyed.

6. The heat dissipating system for a tire interior as set forth in claim 5, wherein: the water spray collecting device comprises a sand inlet cavity (15) fixed in the filter cavity (17), a baffle is arranged on the sand inlet cavity (15) in a sliding way, a back pressure spring is connected between the right end wall of the sand inlet cavity (15) and the right end of the sand inlet cavity (15), a water pressing plate (14) is arranged in the water pressing cavity (13) in a sliding manner, a pulling control rope (16) is connected between the water pressing plate (14) and the baffle plate, a water pressing spray head (12) is fixedly arranged on the upper end wall of the water pressing cavity (13), a filter plate (18) is fixedly arranged at the middle end of the filter cavity (17), the fixed check valve (39) that is equipped with of filter chamber (17) lower extreme wall, check valve (39) with it has connecting pipe (40) to connect between pressure water cavity (13), conveys some rubbles and water in the appointed storehouse, then carries out effectual filtration, carries out repetitious usage to water.

Technical Field

The invention belongs to the relevant field of tires, and particularly relates to a tire inner heat dissipation system.

Background

As is known well, automobile tires are one of the important parts of automobiles, and the automobile tires are in direct contact with the road surface, and together with an automobile suspension, the automobile suspension relieves the impact on the automobile when driving, thereby ensuring that the automobile has good riding comfort and driving smoothness, bearing the weight of the automobile, the important role of the tires on the automobile is more and more taken into consideration by people, but when the tires need to clean the inner side, the tires need to be disassembled, the inner side needs to be manually cleaned, and in addition, the heat dissipation of the inner side is not uniform, and when the tires pass through some concave-convex parts, different vibrations can occur, and the shock absorption is needed in time.

Disclosure of Invention

The invention aims to solve the problems in the prior art and provides a tire inner heat dissipation system which can automatically clean and dissipate heat of an inner side wall in rainy days.

The purpose of the invention can be realized by the following technical scheme: the utility model provides a heat dissipation system in tire, includes the casing, the fixed hydraulic damping chamber that is equipped with of casing left end wall, be equipped with the pressure relief device on the hydraulic damping chamber, the fixed filter chamber that is equipped with of hydraulic damping chamber left end wall, be fixed with the pressurized-water chamber on the filter chamber left end wall, the pressurized-water chamber with be equipped with water spray collection device on the filter chamber, the fixed clearance main cavity that is equipped with on the pressurized-water chamber left end wall, the fixed cleaning device that is equipped with on the clearance main cavity, the fixed initiative chamber that is equipped with of clearance main cavity left end wall, the fixed rotating device that induced drafts that is equipped with on the initiative chamber.

Preferably, the pressure relief device comprises a connecting shell cavity fixed at the middle end of the main cavity, a fixing plate is fixedly arranged on the end wall of the outer side of the connecting shell cavity, two symmetrical pressure oil cavities are fixedly arranged on the end wall of the upper side of the fixing plate, a sensing lifting block is fixedly arranged on the lower end wall of each pressure oil cavity, a moving block is fixedly arranged on the upper end wall of each pressure oil cavity, hydraulic oil is slidably arranged in each hydraulic damping cavity, and effective buffering force can be applied to a tire, so that the tire can be better damped.

Preferably, the rotating device that induced drafts is including fixing main part motor on the wall of initiative chamber left end, it is equipped with the drive shaft to rotate on the wall of clearance main cavity right-hand member, the fixed wheel hub and the anti-interference pole that is equipped with in drive shaft left end, the anti-interference pole internal rotation is equipped with the rotatory axle of liberating, be equipped with the clearance rotation axis on the main part motor output, the rotatory epaxial fixed rotating baffle that is equipped with both ends symmetry of liberating, it is equipped with two reverse but the same two cutting knives to slide on the anti-interference pole, the rear end of cutting knife is equipped with compression spring, it is equipped with the dead lever to rotate on the wall of anti-interference pole left end, be equipped with a large amount of air inlet plate on the dead lever, the air inlet plate with connect the rope between the cutting knife, can cut branch or other things that block and get rid of.

Preferably, the fixed fan-shaped rotary rod that is equipped with on the clearance rotation axis, clearance main cavity internal fixation is equipped with launches the chamber, fan-shaped rotary rod front end is equipped with the induction magnet, it slides and is equipped with and launches the gear to launch the chamber lower extreme, can be when the drive shaft drive, punch the card with the blade towards the direction of wind, and the effectual wind that lets gets into dispels the heat fast.

Preferably, cleaning device is including rotating last tooth turning block on the end wall under the fixed plate, go up the fixed connecting rod that is equipped with of end wall under the tooth turning block, the fixed absorption wall piece that is equipped with of end wall under the connecting rod, clearance main cavity internal fixation is equipped with the conveying chamber, it stirs garrulous axle to rotate on the end wall about the conveying chamber to be equipped with the transmission, the transmission stirs the epaxial fixed stirring wheel that is equipped with of garrulous, the fixed conveying chamber that is equipped with on the end wall of stirring wheel left side, the fixed friction starting block that is equipped with on the end wall under the wheel hub right side, driven gear with driven gear can mesh, and when the tire pivoted, the tire inner wall carries out effectual cleanness, simultaneously, stirs garrulous and conveys some great stone sands.

Preferably, the water spray collecting device comprises a sand inlet cavity fixed in the filtering cavity, a baffle is arranged on the sand inlet cavity in a sliding mode, a back pressure spring is arranged between the wall of the right end of the sand inlet cavity and the right end of the sand inlet cavity in a connecting mode, a water pressing plate is arranged in the water pressing cavity in a sliding mode, a pulling control rope is arranged between the water pressing plate and the baffle in a connecting mode, a water pressing spray head is fixedly arranged on the upper end wall of the water pressing cavity, a filtering plate is fixedly arranged at the middle end of the filtering cavity, a one-way valve is fixedly arranged on the wall of the lower end of the filtering cavity, a connecting pipe is arranged between the one-way valve and the water pressing cavity in a connecting mode, a certain broken stones and water are conveyed into a designated bin, then effective filtering is carried out, and water is used for multiple times.

When the tire is in rain, sand and stones on the inner side of the tire are attached to the inner side surface of the tire, at the moment, the adsorption wall block scrapes off the inner side of the tire while the hub rotates, the hub can rotate the friction starting block to drive the driven gear to rotate and drive the transmission stirring shaft to rotate, the sand and stones are conveyed and crushed, when a certain degree is reached, the main motor is started to drive the cleaning rotating shaft to rotate, the cleaning rotating shaft rotates to start the induction electromagnet, the fan-shaped rotating rod is matched with the cleaning rotating shaft, the ejection gear is meshed with the connecting rod, so that the purpose of rotation is achieved, after a semicircle is rotated, the stirring wheel conveys the sand and stones to the sand and stone inlet cavity, the baffle is extruded to loosen the filter cavity, the water pressing plate is pushed leftwards to spray water to the cleaning main cavity to treat the silt, when the tire rotated, the tire inner wall carried out effectual cleanness, simultaneously, stirred garrulous and conveying with some great stone sands, conveyed some rubbles and water in appointed storehouse, then carried out effectual filtration, carried out repetitious usage to water.

When the foreign matter card is on the tire, start the main part motor and rotate ninety degrees and will make two cutting knives pop out fast, carry out the breakage with the foreign matter, at this moment the cutting knife pops out and will drive the connection rope and slide forward, will drive dead lever and air inlet plate and rotate, should be the angle problem of air inlet plate, can effectively get into the jam-proof pole with wind in, effectually dispel the heat, can cut branch or other things that block and get rid of, get into the card with the blade towards the direction of wind, the effectual wind that lets gets into, dispel the heat fast.

The tire need carry out effectual shock attenuation when the place through some injustices, and the piece that rises in the response senses vibrations after, contradicts the movable block, will extrude hydraulic shock absorption chamber, carries out the shock attenuation, can carry out some effectual cushion powers to the tire to better carry out the shock attenuation.

Compared with the prior art, the heat dissipation system in the tire has the following advantages:

1. when the tire rotated, the tire inner wall carried out effectual cleanness, simultaneously, stirred garrulous and conveying with some great stone sands, conveyed some rubbles and water in appointed storehouse, then carried out effectual filtration, carried out repetitious usage to water.

2. Can cut the branch or other things that block and get rid of, punch the card with the blade towards the direction of wind, the effectual wind that lets gets into carries out quick heat dissipation.

3. Carry out the shock attenuation, can carry out some effectual cushion effect to the tire to better carry out the shock attenuation.

Drawings

Fig. 1 is a schematic structural diagram of a heat dissipation system inside a tire.

Fig. 2 is a sectional view taken along a line a-a in fig. 1.

Fig. 3 is a sectional view taken along line B-B in fig. 1.

Fig. 4 is an enlarged view of the structure at C in fig. 2.

Fig. 5 is a sectional view taken along line D-D in fig. 1.

In the figure, 10, the housing; 11. cleaning a main cavity; 12. a pressurized water spray head; 13. a water pressing cavity; 14. a water pressing plate; 15. a sand inlet cavity; 16. pulling the control rope; 17. a filter chamber; 18. a filter plate; 19. a hydraulic damping chamber; 20. a moving block; 21. a pressure oil chamber; 22. sensing a rising block; 23. a drive shaft; 24. connecting the shell cavity; 25. a fixing plate; 26. an upper tooth turning block; 27. a connecting rod; 28. driving the crushing shaft; 29. adsorbing the wall block; 30. a transfer chamber; 31. a driven gear; 32. a friction starting block; 33. a stirring wheel; 34. a hub; 35. an interference prevention lever; 36. a main body motor; 37. an active cavity; 38. cleaning the rotating shaft; 39. a one-way valve; 40. a connecting pipe; 41. a cutting knife; 42. a fan-shaped rotating rod; 43. an induction electromagnet; 44. an ejection cavity; 45. an ejection gear; 46. fixing the rod; 47. an air inlet plate; 48. rotating the releasing shaft; 49. a compression spring; 50. the baffle is rotated.

Detailed Description

The following are specific embodiments of the present invention and are further described with reference to the drawings, but the present invention is not limited to these embodiments.

As shown in fig. 1, a heat dissipation system in tire, including casing 10, the fixed hydraulic damping chamber 19 that is equipped with of casing 10 left end wall, be equipped with the pressure relief device on the hydraulic damping chamber 19, the fixed filter chamber 17 that is equipped with of 19 left end walls of hydraulic damping chamber, be fixed with pressurized-water chamber 13 on the filter chamber 17 left end wall, be equipped with water spray collection device on pressurized-water chamber 13 and the filter chamber 17, the fixed clearance main cavity 11 that is equipped with on the 13 left end wall of pressurized-water chamber, the fixed cleaning device that is equipped with on the clearance main cavity 11, the fixed initiative chamber 37 that is equipped with of 11 left end walls of clearance main cavity, the fixed rotating device that induced drafts that is equipped with on the initiative chamber 37.

As shown in fig. 1, the pressure relief device comprises a connecting shell cavity 24 fixed at the middle end of a main cleaning cavity 11, a fixing plate 25 is fixedly arranged on the outer end wall of the connecting shell cavity 24, two symmetrical pressure oil cavities 21 are fixedly arranged on the upper end wall of the fixing plate 25, a sensing ascending block 22 is fixedly arranged on the lower end wall of each pressure oil cavity 21, a moving block 20 is fixedly arranged on the upper end wall of each pressure oil cavity 21, hydraulic oil is slidably arranged in a hydraulic damping cavity 19, some effective damping force can be applied to a tire, and therefore the better shock absorption can be achieved.

As shown in fig. 1, 4 and 5, the induced draft rotation device includes a main motor 36 fixed on the left end wall of the active cavity 37, a driving shaft 23 is rotatably arranged on the right end wall of the cleaning main cavity 11, a hub 34 and an anti-interference rod 35 are fixedly arranged at the left end of the driving shaft 23, a rotary releasing shaft 48 is rotatably arranged in the anti-interference rod 35, a cleaning rotating shaft 38 is arranged on the output end of the main motor 36, a rotary baffle 50 with two symmetrical ends is fixedly arranged on the rotary releasing shaft 48, two opposite and same cutting knives 41 are slidably arranged on the anti-interference rod 35, a compression spring 49 is arranged at the rear end of each cutting knife 41, a fixing rod 46 is rotatably arranged on the left end wall of the anti-interference rod 35, a plurality of air inlet plates 47 are arranged on the fixing rod 46, and a rope is connected between the air inlet plates 47 and the cutting knives 41, so that blocked branches or other things can be cut and removed.

As shown in fig. 1, 2 and 3, a sector-shaped rotating rod 42 is fixedly arranged on the cleaning rotating shaft 38, an ejection cavity 44 is fixedly arranged in the cleaning main cavity 11, an induction electromagnet 43 is arranged at the front end of the sector-shaped rotating rod 42, and an ejection gear 45 is arranged at the lower end of the ejection cavity 44 in a sliding manner, so that when the driving shaft 23 is driven, blades can be jammed towards the direction of wind, wind can effectively enter, and rapid heat dissipation is performed.

As shown in fig. 1 and 3, the cleaning device comprises an upper gear rotating block 26 rotating on the lower end wall of a fixed plate 25, a connecting rod 27 is fixedly arranged on the lower end wall of the upper gear rotating block 26, an adsorption wall block 29 is fixedly arranged on the lower end wall of the connecting rod 27, a conveying cavity 30 is fixedly arranged in a cleaning main cavity 11, a transmission stirring shaft 28 is rotatably arranged on the left end wall and the right end wall of the conveying cavity 30, a stirring wheel 33 is fixedly arranged on the transmission stirring shaft 28, the conveying cavity 30 is fixedly arranged on the left end wall of the stirring wheel 33, a friction starting block 32 is fixedly arranged on the right lower end wall of a wheel hub 34, a driven gear 31 and the driven gear 31 can be meshed, when the tire rotates, the inner wall of the tire is effectively cleaned, and meanwhile, a certain amount of large stone sand is stirred and conveyed.

As shown in fig. 1, the water spray collecting device comprises a sand inlet cavity 15 fixed in a filter cavity 17, a baffle is arranged on the sand inlet cavity 15 in a sliding manner, a back pressure spring is connected between the right end wall of the sand inlet cavity 15 and the right end of the sand inlet cavity 15, a water pressing plate 14 is arranged in the water pressing cavity 13 in a sliding manner, a pulling control rope 16 is connected between the water pressing plate 14 and the baffle, a water pressing spray head 12 is fixedly arranged on the upper end wall of the water pressing cavity 13, a filter plate 18 is fixedly arranged at the middle end of the filter cavity 17, a check valve 39 is fixedly arranged on the lower end wall of the filter cavity 17, a connecting pipe 40 is connected between the check valve 39 and the water pressing cavity 13, a certain amount of crushed stones and water are conveyed into a designated bin, then effective filtration is carried out, and the water is used for multiple times.

When the pneumatic water mixer works, the driving shaft 23 drives the hub 34 and the anti-interference rod 35 to start rotating, sand and stones on the inner side of the tire are attached to the inner side surface of the tire when raining, at the same time, the adsorption wall block 29 scrapes off the inner side of the tire while the hub 34 rotates, the hub 34 can rotate the friction starting block 32 to drive the driven gear 31 to rotate, drive the transmission crushing shaft 28 to rotate, so that the sand and stones are conveyed and crushed, when a certain degree is reached, the main body motor 36 is started to drive the cleaning rotating shaft 38 to rotate, the cleaning rotating shaft 38 rotates to start the induction electromagnet 43, the fan-shaped rotating shaft 42 is matched with the cleaning rotating shaft 38, the ejection gear 45 is meshed with the connecting rod 27, so that the purpose of rotating is achieved, after a semicircle is rotated, the pressurized water mixing wheel 33 conveys the sand and stones to the sand inlet cavity 15 to extrude the baffle, the filter cavity 17 is loosened, the water plate 14 is pushed leftwards to be sprayed to the cleaning main cavity 11 to treat the sand and the water are sprayed, when the tire rotated, the tire inner wall carried out effectual cleanness, simultaneously, stirred garrulous and conveying with some great stone sands, conveyed some rubbles and water in appointed storehouse, then carried out effectual filtration, carried out repetitious usage to water.

When the foreign matter card on the tire, start main part motor 36 and rotate ninety degrees and will make two cutting knife 41 pop out fast, carry out the breakage with the foreign matter, at this moment cutting knife 41 pops out and will drive the connection rope and slide forward, will drive dead lever 46 and air inlet plate 47 and rotate, should be air inlet plate 47's angle problem, can effectively get into the jam pole 35 with wind in, the effectual heat dissipation that dispels, can cut branch or other things that block and get rid of, beat the card with the blade towards the direction of wind, the effectual wind that lets gets into, dispel the heat fast.

The tire need carry out effectual shock attenuation when the place through some injustices, and the response rises piece 22 and senses vibrations after, conflicts movable block 20, will extrude hydraulic shock attenuation chamber 19, carries out the shock attenuation, can carry out some effectual buffer powers to the tire to better carry out the shock attenuation.

The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

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