Autoclave with cooling function

文档序号:1161077 发布日期:2020-09-18 浏览:16次 中文

阅读说明:本技术 一种含冷却功能的高压釜 (Autoclave with cooling function ) 是由 董世豪 于 2020-06-28 设计创作,主要内容包括:本发明公开了一种含冷却功能的高压釜,包括锅体,所述锅体上侧设有配套的锅盖,所述锅体内设有内胆,所述锅体内设有位于所述内胆左侧的散热腔,所述散热腔内设有散热组件,所述内胆右侧设有与所述散热腔通过下侧连通的冷却腔,所述内胆外侧设有水冷组件,所述散热组件包括与所述散热腔上端壁固定连接的固定支撑块,所述固定支撑块下侧左右连通转动安装有螺杆,该装置通过电机控制散热组件向右滑动打开散热孔,同时根据需要控制散热扇叶转动一定的角度,散热时散热扇叶转动将热量排出,同时水冷组件工作,加速内胆冷却,不需要人工冲洗高压锅。(The invention discloses an autoclave with a cooling function, which comprises a pot body, wherein a matched pot cover is arranged on the upper side of the pot body, an inner container is arranged in the pot body, a heat dissipation cavity positioned on the left side of the inner container is arranged in the pot body, a heat dissipation assembly is arranged in the heat dissipation cavity, a cooling cavity communicated with the heat dissipation cavity through the lower side is arranged on the right side of the inner container, a water cooling assembly is arranged on the outer side of the inner container, the heat dissipation assembly comprises a fixed supporting block fixedly connected with the upper end wall of the heat dissipation cavity, a screw rod is arranged on the left side and the right side of the lower side of the fixed supporting block in a communicating and rotating mode, the device controls the heat dissipation assembly to slide rightwards to open a heat dissipation hole through a motor, and controls a heat dissipation fan blade to rotate by a.)

1. An autoclave with a cooling function comprises a pot body, and is characterized in that: the pot body is provided with a matched pot cover at the upper side, the pot body is internally provided with an inner container, the pot body is internally provided with a heat dissipation cavity positioned at the left side of the inner container, the heat dissipation cavity is internally provided with a heat dissipation component, the right side of the inner container is provided with a cooling cavity communicated with the heat dissipation cavity through the lower side, the outer side of the inner container is provided with a water cooling component, the heat dissipation component comprises a fixed supporting block fixedly connected with the upper end wall of the heat dissipation cavity, the lower side of the fixed supporting block is communicated with the left side and the right side and rotatably provided with a screw rod, the screw rod is provided with a threaded sliding block in sliding fit with the upper end wall of the heat dissipation cavity through thread fit, the lower side of the threaded sliding block is rotatably provided with a hollow rotating shaft, rotate the incasement be equipped with axis of rotation fixed connection's driven adjustment bevel gear is adjusted to the flabellum, it installs the process to rotate case right-hand member wall driven adjustment axis of rotation that hollow axis of rotation center extends right, rotate the incasement be equipped with driven adjustment axis of rotation fixed connection with driven adjustment bevel gear meshed's initiative adjustment bevel gear, heat dissipation chamber left end wall be equipped with contain with the heating panel of flabellum complex louvre, the heat dissipation intracavity still is equipped with and is located the drive assembly on heat-radiating component right side.

2. The autoclave with cooling function according to claim 1, wherein: the heat radiation component also comprises a transmission case which is connected with the right side of the driven adjusting rotating shaft through a bearing and the upper side of which is communicated with the outside, a driven transmission bevel gear fixedly connected with the driven adjusting rotating shaft is arranged in the transmission box, an adjusting transmission shaft is rotatably arranged on the rear end wall of the transmission case, a driving transmission bevel gear meshed with the driven transmission bevel gear and a rack adjusting gear positioned on the rear side of the driving transmission bevel gear are fixedly arranged on the adjusting transmission shaft, a rack sliding cavity with the right side communicated with the outside is arranged at the lower side of the fixed supporting block, a rack sliding block with the lower side capable of being meshed with the rack adjusting gear and the right side provided with an inclined plane is arranged in the rack sliding cavity in a vertically sliding manner, the rack sliding block upside with rack sliding chamber upper end wall passes through reset spring and connects, rack sliding chamber right side slip be equipped with the left side contain with rack sliding block complex inclined plane and right side contain the promotion piece of gyro wheel.

3. The autoclave with cooling function according to claim 2, wherein: drive assembly include with heat dissipation chamber right-hand member wall fixed connection's motor, motor left side power is connected with the motor drive axle, there is the integral key shaft motor drive axle left side through spline muffjoint, integral key shaft left side fixedly connected with reciprocating gear, the fixed stay block downside is equipped with the forked tail sliding tray, slide in the forked tail sliding tray be equipped with the integral key shaft passes through the forked tail sliding block that the bearing is connected, forked tail sliding tray left side is equipped with the electro-magnet, forked tail sliding block left side be equipped with electro-magnet complex iron plate, forked tail sliding block right side with forked tail sliding tray right-hand member wall passes through dovetail spring coupling.

4. The autoclave with cooling function according to claim 3, wherein: drive assembly include with screw rod right side fixed connection can with reciprocating gear meshing's driven adjusting gear, heat dissipation chamber right side end wall rotates and installs and be located the heat dissipation transmission shaft of motor downside, turn left fixed mounting in proper order from the right side on the heat dissipation transmission shaft can with reciprocating gear meshing's driven heat dissipation gear, drive pulley and with heat dissipation rotating gear meshing's wide gear.

5. The autoclave with cooling function according to claim 4, wherein: the water cooling assembly comprises a cooling water pipe wound outside the inner container, an outward extending water outlet pipe is connected to the right side of the cooling water pipe, a water pump is fixedly connected to the lower end wall of the heat dissipation cavity, a water pump driving shaft is connected to power on the left side of the water pump, a driven belt pulley connected with the driving belt pulley through a belt is connected to the left side of the water pump driving shaft, a connecting water pipe connected with the left side of the cooling water pipe is arranged on the upper side of the water pump, and a water inlet pipe extending to the outside to the right side is.

Technical Field

The invention relates to the technical field of machine cooling, in particular to an autoclave with a cooling function.

Background

The pressure cooker is a cooker in kitchen, which applies pressure to water by the physical phenomenon that the boiling point of liquid is increased under higher air pressure, so that the water can reach higher temperature without boiling, thereby accelerating the efficiency of stewing food. After the pressure cooker is cooked, the pressure cooker can be naturally cooled at room temperature or the pressure is reduced by adopting a forced cooling method, so that the cooker cover can be opened, the pressure cooker is easy to scald and generate danger due to high temperature during manual cooling, the cooling speed is low, and the cover can be opened after long time waiting is needed after the cooking is finished.

Disclosure of Invention

In order to overcome the technical defects, the invention provides an autoclave with a cooling function, which can overcome the defects.

The invention relates to an autoclave with a cooling function, which comprises a pan body, wherein a matched pan cover is arranged on the upper side of the pan body, an inner container is arranged in the pan body, a heat dissipation cavity positioned on the left side of the inner container is arranged in the pan body, a heat dissipation assembly is arranged in the heat dissipation cavity, a cooling cavity communicated with the heat dissipation cavity through the lower side is arranged on the right side of the inner container, a water cooling assembly is arranged on the outer side of the inner container, the heat dissipation assembly comprises a fixed supporting block fixedly connected with the upper end wall of the heat dissipation cavity, a screw rod is rotatably arranged on the left and right sides of the fixed supporting block in a communicating manner, a threaded sliding block in sliding fit with the upper end wall of the heat dissipation cavity is arranged on the screw rod in a threaded fit manner, a hollow rotating shaft is rotatably arranged on the, the fan blade is adjusted the axis of rotation outside fixed mounting and is had the fan blade, rotate the incasement be equipped with fan blade regulation axis of rotation fixed connection's driven adjustment bevel gear, it installs the process to rotate case right-hand member wall rotation the driven adjustment axis of rotation that hollow axis of rotation center extends right, rotate the incasement be equipped with driven adjustment axis of rotation fixed connection with driven adjustment bevel gear meshed's initiative adjustment bevel gear, heat dissipation chamber left end wall be equipped with contain with the heating panel of fan blade complex louvre, the heat dissipation intracavity still is equipped with and is located the drive assembly on radiating component right side.

Preferably, the heat radiation assembly further comprises a transmission case which is connected with the right side of the driven adjusting rotating shaft through a bearing and the upper side of which is communicated with the outside, a driven transmission bevel gear fixedly connected with the driven adjusting rotating shaft is arranged in the transmission box, an adjusting transmission shaft is rotatably arranged on the rear end wall of the transmission case, a driving transmission bevel gear meshed with the driven transmission bevel gear and a rack adjusting gear positioned on the rear side of the driving transmission bevel gear are fixedly arranged on the adjusting transmission shaft, a rack sliding cavity with the right side communicated with the outside is arranged at the lower side of the fixed supporting block, a rack sliding block with the lower side capable of being meshed with the rack adjusting gear and the right side provided with an inclined plane is arranged in the rack sliding cavity in a vertically sliding manner, the rack sliding block upside with rack sliding chamber upper end wall passes through reset spring and connects, rack sliding chamber right side slip be equipped with the left side contain with rack sliding block complex inclined plane and right side contain the promotion piece of gyro wheel.

Preferably, drive assembly include with heat dissipation chamber right-hand member wall fixed connection's motor, motor left side power connection has the motor drive axle, there is the integral key shaft motor drive axle left side through spline muffjoint, integral key shaft left side fixedly connected with reciprocating gear, the fixed stay block downside is equipped with the forked tail sliding tray, slide in the forked tail sliding tray be equipped with the integral key shaft passes through the forked tail sliding block that the bearing is connected, forked tail sliding tray left side is equipped with the electro-magnet, forked tail sliding block left side be equipped with electro-magnet complex iron plate, forked tail sliding block right side with forked tail sliding tray right-hand member wall passes through dovetail spring coupling.

Preferably, drive assembly include with screw rod right side fixed connection can with reciprocating gear meshing's driven adjusting gear, heat dissipation chamber right side end wall rotates installs and is located the heat dissipation transmission shaft of motor downside, turn left fixed mounting in proper order from the right side on the heat dissipation transmission shaft can with reciprocating gear meshing's driven heat dissipation gear, drive pulley and with heat dissipation rotating gear meshing's wide gear.

Preferably, the water cooling module is including winding around the condenser tube in the inner bag outside, the condenser tube right side is connected with the outside outlet pipe that extends, terminal wall fixedly connected with water pump under the heat dissipation chamber, water pump left side power is connected with the water pump drive shaft, water pump drive shaft left side fixedly connected with the driven pulley that the drive pulley passes through the belt and connects, the water pump upside be equipped with the connecting water pipe that the condenser tube left side is connected, the water pump right side is equipped with the inlet tube that extends to the outside right.

The beneficial effects are that: the device simple structure, convenient operation, the device is when the pressure cooker need dispel the heat, slide right through motor control radiator unit and open the louvre, control radiating fan blade rotation certain angle as required simultaneously, thereby adjust heat dissipation rate, radiating fan blade rotates and discharges the heat during the heat dissipation, water-cooling component work simultaneously, the water pump inhales external cold water and discharges behind the spiral pipe around the inner bag outside, the inner bag cooling with higher speed, do not need the manual work to wash the pressure cooker, prevent to scald, cooling rate is fast.

Drawings

In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.

FIG. 1 is a schematic structural diagram of an embodiment of the present invention;

FIG. 2 is a schematic diagram of the structure A-A of FIG. 1 according to an embodiment of the present invention;

FIG. 3 is an enlarged schematic view of the structure at B in FIG. 1 according to an embodiment of the present invention;

FIG. 4 is an enlarged schematic view of the structure at C in FIG. 1 according to an embodiment of the present invention;

fig. 5 is an enlarged schematic view of the structure at D in fig. 1 according to the embodiment of the present invention.

Detailed Description

All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations and/or steps that are mutually exclusive.

The invention will now be described in detail with reference to fig. 1-5, for convenience of description, the following orientations will now be defined: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.

The invention relates to an autoclave with a cooling function, which comprises a pan body 10, wherein a matched pan cover 12 is arranged on the upper side of the pan body 10, an inner container 14 is arranged in the pan body 10, a heat dissipation cavity 32 positioned on the left side of the inner container 14 is arranged in the pan body 10, a heat dissipation component is arranged in the heat dissipation cavity 32, a cooling cavity 17 communicated with the heat dissipation cavity 32 through the lower side is arranged on the right side of the inner container 14, a water cooling component is arranged on the outer side of the inner container 14, the heat dissipation component comprises a fixed supporting block 13 fixedly connected with the upper end wall of the heat dissipation cavity 32, a screw rod 11 is rotatably communicated and arranged on the left side and the right side of the fixed supporting block 13, a threaded sliding block 30 in sliding fit with the upper end wall of the heat dissipation cavity 32 is arranged on the screw rod 11 through threaded fit, a hollow rotating shaft 39, six fan blade adjusting rotation shafts 38 are installed around the rotation box 37 in an equal angle rotation manner, fan blades 29 are fixedly installed outside the fan blade adjusting rotation shafts 38, a driven adjusting bevel gear 36 fixedly connected with the fan blade adjusting rotation shafts 38 is arranged in the rotation box 37, a driven adjusting rotation shaft 34 extending rightwards through the center of the hollow rotation shaft 39 is installed in the rotation box 37 in a rotating manner, a driving adjusting bevel gear 35 fixedly connected with the driven adjusting rotation shaft 34 and meshed with the driven adjusting bevel gear 36 is arranged in the rotation box 37, a heat dissipation plate 31 containing a heat dissipation hole 33 matched with the fan blades 29 is arranged on the left end wall of the heat dissipation cavity 32, a driving assembly located on the right side of the heat dissipation assembly and used for driving the heat dissipation assembly and the water cooling assembly to work is further arranged in the heat dissipation cavity 32, and the fan blades 29 are matched with the heat dissipation hole 33 when the hollow rotation shaft 39, the heat loss is less, the hollow rotating shaft 39 drives the rotating box 37 and the fan blades 29 to rotate to dissipate heat, and the driving adjusting bevel gears 35 drive six driven adjusting bevel gears 36 to rotate for a certain angle when the driven adjusting rotating shaft 34 rotates, so that the angle of the fan blades 29 is adjusted, and the cooling and heat dissipation rate is adjusted.

Advantageously, the heat dissipation assembly further comprises a transmission case 43 connected with the right side of the driven adjustment rotating shaft 34 through a bearing and having an upper side communicating with the outside, a driven bevel gear 42 fixedly connected with the driven adjustment rotating shaft 34 is arranged in the transmission case 43, an adjustment transmission shaft 45 is rotatably arranged at the rear end wall of the transmission case 43, a driving bevel gear 44 engaged with the driven bevel gear 42 and a rack adjustment gear 41 positioned at the rear side of the driving bevel gear 44 are fixedly arranged on the adjustment transmission shaft 45, a rack sliding cavity 57 having a right side communicating with the outside is arranged at the lower side of the fixed supporting block 13, a rack sliding block 58 having a lower side including a rack sliding block 46 capable of being engaged with the rack adjustment gear 41 and a right side including an inclined surface is arranged in the rack sliding cavity 57 in a vertical sliding manner, the upper side of the rack sliding block 58 is connected with the upper end wall of the rack sliding cavity, the right side of the rack sliding cavity 57 is provided with a pushing block 60, the left side of the pushing block 60 comprises an inclined plane matched with the rack sliding block 58, the right side of the pushing block 60 comprises a roller, when the pushing block 60 slides leftwards, the rack sliding block 58 and the rack 46 slide downwards, the reset spring 59 stretches, and the rack 46 is meshed with the rack adjusting gear 41.

Advantageously, the driving assembly comprises a motor 19 fixedly connected to the right end wall of the heat dissipation chamber 32, the left side of the motor 19 is connected with a motor driving shaft 53 in a power mode, the left side of the motor driving shaft 53 is connected with a spline shaft 54 through a spline sleeve 52, a reciprocating gear 55 is fixedly connected to the left side of the spline shaft 54, a dovetail sliding groove 48 is arranged at the lower side of the fixed supporting block 13, a dovetail slide block 51 connected with the spline shaft 54 through a bearing is arranged in the dovetail slide groove 48 in a sliding way, an electromagnet 47 is arranged on the left side of the dovetail sliding groove 48, an iron block 49 matched with the electromagnet 47 is arranged on the left side of the dovetail sliding block 51, the right side of the dovetail slide block 51 is connected with the right end wall of the dovetail slide groove 48 through a dovetail groove spring 50, when the electromagnet 47 is not electrified, the motor 19 drives the heat dissipation assembly to work, and when the electromagnet 47 is electrified, the motor 19 drives and adjusts the angle of the fan blade 29.

Advantageously, the driving assembly includes a driven adjusting gear 56 fixedly connected to the right side of the screw rod 11 and capable of meshing with the reciprocating gear 55, a heat dissipation transmission shaft 26 located on the lower side of the motor 19 is rotatably installed on the right end wall of the heat dissipation cavity 32, a driven heat dissipation gear 25 capable of meshing with the reciprocating gear 55, a driving pulley 27 and a wide gear 28 meshed with the heat dissipation rotating gear 40 are fixedly installed on the heat dissipation transmission shaft 26 from right to left in sequence, the reciprocating gear 55 meshes with the driven adjusting gear 56 when the electromagnet 47 is energized, and the reciprocating gear 55 meshes with the driven heat dissipation gear 25 when the electromagnet 47 is not energized.

Beneficially, water cooling module is including winding around condenser tube 15 in the inner bag 14 outside, condenser tube 15 right side is connected with outside extension's outlet pipe 16, terminal wall fixedly connected with water pump 21 under heat dissipation chamber 32, water pump 21 left side power connection has water pump drive shaft 22, water pump drive shaft 22 left side fixedly connected with the driven pulley 23 that driving pulley 27 passes through belt 24 and connects, water pump 21 upside be equipped with condenser tube 15 left side connection's connecting water pipe 20, water pump 21 right side is equipped with the inlet tube 18 that extends to the outside right, heat radiating module during operation water pump 21 work, water process condenser tube 15 is right the inner bag 14 cooling heat dissipation.

In the initial state, the electromagnet 47 is not energized, the dovetail groove spring 50 is in the normal stretching state, the reciprocating gear 55 is meshed with the driven heat dissipation gear 25, the return spring 59 is in the normal stretching state, the rack sliding block 58 and the rack 46 are positioned at the uppermost side, the pushing block 60 is positioned at the rightmost side, the rack 46 is not meshed with the rack adjusting gear 41, and the fan blades 29 are matched with the heat dissipation holes 33.

When the working is started, the electromagnet 47 is electrified to attract the iron block 49, the dovetail groove spring 50 is stretched, the reciprocating gear 55 is meshed with the driven adjusting gear 56, the pushing block 60 is pressed leftwards by the reciprocating gear 55, the rack sliding block 58 and the rack 46 slide downwards, the rack 46 is meshed with the rack adjusting gear 41, the motor 19 is started to rotate forwards, so that the motor driving shaft 53 is driven to rotate, the spline shaft 54 is driven to rotate, so that the reciprocating gear 55 is driven to rotate, so that the driven adjusting gear 56 is driven to rotate, so that the screw rod 11 is driven to rotate, so that the screw thread sliding block 30 is driven to slide rightwards, the rack adjusting gear 41 is meshed with the rack 46, so that the adjusting transmission shaft 45 is driven to rotate, so that the driving transmission bevel gear 44 is driven to rotate, so that the driven transmission bevel gear 42 is driven to rotate, so that the, thereby driving the driven adjusting bevel gear 36 to rotate, thereby driving the blade adjusting rotating shaft 38 to rotate, thereby driving the blades 29 to rotate by a certain angle, stopping the motor 19, de-energizing the electromagnet 47, driving the reciprocating gear 55 to engage with the driven heat dissipating gear 25 due to the dovetail spring 50, and driving the driven heat dissipating gear 25 to rotate due to the return spring 59, and driving the rack 46 to slide upward due to the return spring 59, and not driving the rack 46 to engage with the rack adjusting gear 41, and driving the pushing block 60 to slide rightward, thereby starting the motor 19, thereby driving the motor driving shaft 53 to rotate, thereby driving the spline shaft 54 to rotate, thereby driving the reciprocating gear 55 to rotate, thereby driving the driven heat dissipating gear 25 to rotate, thereby driving the heat dissipating transmission shaft 26 to rotate, thereby driving the wide gear 28 to rotate, thereby driving the heat dissipating rotating gear 40 to rotate, thereby driving the, meanwhile, the heat dissipation transmission shaft 26 drives the driving belt pulley 27 to rotate, thereby driving the driven belt pulley 23 to rotate, thereby driving the water pump driving shaft 22 to rotate, thereby driving the water pump 21 to work, water enters from the water inlet pipe 18, passes through the connecting water pipe 20, the cooling water pipe 15 dissipates heat to the inner container 14, and is discharged from the water outlet pipe 16, after the heat dissipation is completed, the motor 19 stops, the electromagnet 47 is electrified, the attraction iron block 49, the dovetail groove spring 50 is stretched, the reciprocating gear 55 is engaged with the driven adjusting gear 56, the reciprocating gear 55 presses the pushing block 60 leftwards, the rack sliding block 58 and the rack 46 slide downwards, the rack 46 is engaged with the rack adjusting gear 41, the starting motor 19 rotates reversely, thereby driving the motor driving shaft 53 to rotate, thereby driving the spline shaft 54 to rotate, thereby driving the reciprocating gear 55 to rotate, thereby driving the driven adjusting gear 56 to rotate, the rack adjusting gear 41 is meshed with the rack 46 to drive the rack adjusting gear 41 to rotate, so as to drive the adjusting transmission shaft 45 to rotate, so as to drive the driving transmission bevel gear 44 to rotate, so as to drive the driven transmission bevel gear 42 to rotate, so as to drive the driven adjusting rotating shaft 34 to rotate, so as to drive the driving adjusting bevel gear 35 to rotate, so as to drive the fan blade adjusting rotating shaft 38 to rotate, so as to drive the fan blades 29 to reset, the motor 19 stops, the electromagnet 47 is powered off, the reciprocating gear 55 is meshed with the driven heat dissipation gear 25 due to the action of the dovetail spring 50, the rack 46 slides upwards due to the action of the rack sliding block 58 and the reset spring 59, the rack 46 is not meshed with the rack adjusting gear 41, the pushing block 60 slides.

The beneficial effects are that: the device simple structure, convenient operation, the device is when the pressure cooker need dispel the heat, slide right through motor control radiator unit and open the louvre, control radiating fan blade rotation certain angle as required simultaneously, thereby adjust heat dissipation rate, radiating fan blade rotates and discharges the heat during the heat dissipation, water-cooling component work simultaneously, the water pump inhales external cold water and discharges behind the spiral pipe around the inner bag outside, the inner bag cooling with higher speed, do not need the manual work to wash the pressure cooker, prevent to scald, cooling rate is fast.

The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

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