Heat pump energy-saving type outsole and insole dual-purpose cleaning machine capable of automatically adding liquid medicine
By introducing an air compressor component into the cleaning machine to heat the cleaning fluid, the problems of high power and high cost of existing cleaning machines are solved, achieving energy-saving and emission-reducing cleaning effects.
Patent Information
- Application Number
- CN202422961047.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing cleaning machines consume a lot of power when heating the cleaning fluid, which increases processing costs and does not meet the requirements for energy conservation and emission reduction.
A high-temperature cleaning device is used, including a first water storage tank, a first water outlet pipe, a first water inlet pipe, and an air compressor assembly. The air compressor assembly heats the cleaning fluid, replacing the traditional electric heating method using heating rods.
It reduces overall operating power, lowers operating costs, and meets the processing requirements for energy conservation and emission reduction.
Smart Images

Figure CN223669797U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoe processing field technology especially is a kind of heat pump energy-saving type automatic dosing water sole and midsole dual-purpose cleaning machine. BACKGROUND
[0002] The shoe sole is quite complex, and in a broad sense, it can include all materials that form the bottom, such as the outsole, midsole and heel. In a narrow sense, it only refers to the outsole. The common characteristics of shoe sole materials should include wear resistance, water resistance, oil resistance, heat resistance, pressure resistance, impact resistance, good elasticity, easy adaptation to foot shape, non-easy deformation after shaping, heat preservation, easy moisture absorption, etc. In addition, the midsole should be matched to provide braking effect when walking and changing feet to prevent slipping and easy stopping.
[0003] After injection molding, the surface of the shoe sole will be attached with a large amount of oil stains. If the subsequent processing is directly carried out, the surface oil stains will affect the subsequent bonding effect of the shoe sole. Therefore, the shoe sole needs to be cleaned after injection molding. In order to ensure the cleaning effect, the cleaning liquid needs to be heated to a certain temperature when cleaning, so as to achieve better cleaning effect. The existing cleaning machine uses a heating rod to extend into the cleaning liquid and heat by electric heating when heating the cleaning liquid. This heating method has large power, which not only increases the processing cost, but also does not meet the energy-saving and emission-reducing processing requirements. Therefore, it is necessary to further improve the structure of the existing cleaning machine. SUMMARY
[0004] Therefore, the utility model provides a kind of heat pump energy-saving type automatic dosing water sole and midsole dual-purpose cleaning machine, which can effectively solve the problems of large power, high processing cost and not meeting the energy-saving and emission-reducing processing requirements of the existing cleaning machine.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0006] The utility model provides a kind of heat pump energy-saving type automatic dosing water sole and midsole dual-purpose cleaning machine, including rack, controller, transmission device, high-temperature cleaning device, normal temperature cleaning device and air drying device;The rack is provided with a transversely extending water washing tank;The controller is arranged on the rack;The transmission device is arranged on the rack and located in the water washing tank, and the two ends of the transmission device extend out of the rack;The high-temperature cleaning device and the normal temperature cleaning device are arranged on the rack and connected with the controller, and the high-temperature cleaning device and the normal temperature cleaning device are sequentially arranged along the conveying direction of the transmission device and located on the side of the water washing tank;The high-temperature cleaning device includes a first water tank, a first water outlet pipeline, a first water inlet pipeline and an air compressor assembly;The first water tank is arranged on the rack and located on the side of the water washing tank;The first water outlet pipeline is connected with the first water tank and the water washing tank respectively and is used to convey the cleaning liquid in the first water tank to the water washing tank;The first water inlet pipeline is connected with the first water tank and the water washing tank respectively and is used to return the cleaning liquid in the water washing tank to the first water tank;The output end of the air compressor assembly extends into the first water tank and is used to heat the cleaning liquid in the first water tank;The air drying device is arranged on the rack and located on the side of the output end of the transmission device, and the air drying device is connected with the controller.
[0007] As a preferred scheme, the high-temperature cleaning device is provided with two, and the two high-temperature cleaning devices are located on the front and rear sides of the normal temperature cleaning device.
[0008] As a preferred scheme, each high-temperature cleaning device further includes a second chemical solution tank, a second chemical solution feeding pump and a second PH detector;The second chemical solution tank is arranged on the rack and located on the side of the first water tank, and the output end of the second chemical solution tank is connected with the first water tank;The second chemical solution feeding pump is arranged on the second chemical solution tank and sends the chemical solution in the second chemical solution tank into the first water tank, and the second chemical solution feeding pump is connected with the controller;The second PH detector is arranged on the rack, the outer end of the second PH detector exposes the outer wall of the rack, the inner end of the second PH detector extends into the first water tank, and the second PH detector is connected with the controller.
[0009] As a preferred scheme, the rack is provided with a mounting cavity, and the mounting cavity is located below the water washing tank;The high-temperature cleaning device, the normal temperature cleaning device and the air drying device are located in the mounting cavity and below the water washing tank.
[0010] As a preferred scheme, a first pump body is arranged on the first water outlet pipeline, and the first pump body is used to send the cleaning liquid in the first water tank below to the water washing tank;The input end of the first water inlet pipeline is located at the bottom of the water washing tank.
[0011] As a preferred scheme, the high-temperature cleaning device further comprises a first water inlet pipe and a second pump body, the output end of the first water inlet pipe is communicated with the first water storage tank, and the second pump body is used for sending external liquid into the first water storage tank.
[0012] As a preferred scheme, the normal-temperature cleaning device comprises a second water storage tank, a second water outlet pipe and a second water inlet pipe, the second water storage tank is arranged on the rack and located beside the water washing tank, the second water outlet pipe is communicated with the second water storage tank and the water washing tank respectively and is used for conveying the cleaning liquid in the second water storage tank into the water washing tank, and the second water inlet pipe is communicated with the second water storage tank and the water washing tank respectively and is used for returning the cleaning liquid in the water washing tank to the second water storage tank.
[0013] As a preferred scheme, the normal-temperature cleaning device further comprises a second water inlet pipe and a third pump body, the output end of the second water inlet pipe is communicated with the second water storage tank, and the third pump body is used for sending external liquid into the second water storage tank.
[0014] As a preferred scheme, the air compressor assembly is provided with a gas collecting pipe used for collecting the high-temperature gas in the water washing tank, and the two ends of the gas collecting pipe are communicated with the inside of the air compressor assembly and the water washing tank respectively.
[0015] As a preferred scheme, the air drying device comprises a fan, a first blowing pipe, a second blowing pipe and a heating assembly, the fan is arranged on the rack, one end of the first blowing pipe is communicated with the output end of the fan, the output end of the first blowing pipe is communicated with the water washing tank, one end of the second blowing pipe is communicated with the output end of the fan, the output end of the second blowing pipe is communicated with the water washing tank and located behind the output end of the first blowing pipe, and the heating assembly is arranged on the rack and used for heating the gas in the second blowing pipe.
[0016] The utility model discloses have obvious advantage and beneficial effect compared with prior art, specifically speaking, from the above technical scheme can know:
[0017] Through the high-temperature cleaning device comprising a first water storage tank, a first water outlet pipe, a first water inlet pipe and an air compressor assembly, and the output end of the air compressor assembly is inwards into the first water storage tank and is used for heating the cleaning liquid in the first water storage tank, so that the heated gas is sent into the first water storage tank by the air compressor to complete the heating process of the cleaning liquid, instead of the existing heating rod heating mode, so that the overall working power is smaller, not only reduces the use cost, but also can satisfy the processing demand of energy saving and emission reduction.
[0018] In order to more clearly set forth the structural features and functions of the utility model, the utility model will be described in detail below by combining with the drawings and specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0019] Fig. 1 is a three-dimensional structure schematic view of a preferred embodiment of the utility model;
[0020] Fig. 2 is a partial assembly schematic view of a preferred embodiment of the utility model;
[0021] Fig. 3 is another partial assembly schematic view of a preferred embodiment of the utility model.
[0022] Explanation of the attached drawings:
[0023] 10, rack 101, water washing tank
[0024] 102, installation cavity 20, controller
[0025] 30, transmission device 40, high-temperature cleaning device
[0026] 401, second chemical tank 402, second chemical feeding pump
[0027] 403, second PH detector 41, first water storage tank
[0028] 42, first water outlet pipeline 43, first water inlet pipeline
[0029] 44, compressor assembly 441, gas collecting pipeline
[0030] 45, first pump body 46, first water feeding pipeline
[0031] 47, second pump body 50, normal-temperature cleaning device
[0032] 51, second water storage tank 52, second water outlet pipeline
[0033] 53, second water inlet pipeline 54, second water feeding pipeline
[0034] 55, third pump body 60, air-drying device
[0035] 61, fan 62, first air-blowing pipeline
[0036] 63, second air-blowing pipeline 64, heating assembly. Specific implementation
[0037] Please refer to Figs. 1 to 3 It shows the specific structure of a preferred embodiment of the utility model, which includes rack 10, controller 20, transmission device 30, high-temperature cleaning device 40, normal-temperature cleaning device 50 and air-drying device 60.
[0038] The machine frame 10 is provided with a transversely extending water washing tank 101. In the embodiment, the machine frame 10 is provided with a mounting cavity 102, which is located below the water washing tank 101.
[0039] The controller 20 is arranged on the machine frame 10.
[0040] The conveying device 30 is arranged on the machine frame 10 and located in the water washing tank 101, and the two ends of the conveying device 30 extend out of the machine frame, so as to facilitate the loading and unloading of the soles on the conveying device 30.
[0041] The high-temperature cleaning device 40 and the normal-temperature cleaning device 50 are arranged on the machine frame 10 and connected with the controller 20, and the high-temperature cleaning device 40 and the normal-temperature cleaning device 50 are arranged in sequence along the conveying direction of the conveying device 30 and located beside the water washing tank 101; the high-temperature cleaning device 40 comprises a first water storage tank 41, a first water outlet pipeline 42, a first water inlet pipeline 43 and an air compressor assembly 44; the first water storage tank 41 is arranged on the machine frame 10 and located beside the water washing tank 101; the first water outlet pipeline 42 is connected with the first water storage tank 41 and the water washing tank 101 respectively and used for conveying the cleaning liquid in the first water storage tank 41 to the water washing tank 101; the first water inlet pipeline 43 is connected with the first water storage tank 41 and the water washing tank 101 respectively and used for returning the cleaning liquid in the water washing tank 101 to the first water storage tank 41; the output end of the air compressor assembly 44 extends into the first water storage tank 41 and used for heating the cleaning liquid in the first water storage tank 41; the air compressor heating mode is used instead of the existing electric heating rod heating mode, so that the working power during heating is effectively reduced.
[0042] In the embodiment, the high-temperature cleaning device 40 is provided in two, and the two high-temperature cleaning devices 40 are respectively located on the front and rear sides of the normal-temperature cleaning device 40. In the embodiment, the high-temperature cleaning device 40 located on the front side corresponds to the position of the water washing tank 101, and the ultrasonic cleaning process is realized by being provided with an ultrasonic sound emitter. The high-temperature cleaning device 40 and the normal-temperature cleaning device 50 are both located in the installation cavity 102 and below the water washing tank 101. The first water outlet pipeline 42 is provided with a first pump body 45, which is used to send the cleaning liquid in the first water storage tank 41 below to the water washing tank 101. The input end of the first water inlet pipeline 43 is located at the bottom of the water washing tank 101, so as to facilitate the backflow of the cleaning liquid in the water washing tank 101 to the first water storage tank 41 for reheating. The high-temperature cleaning device 40 further comprises a first water inlet pipeline 46 and a second pump body 47. The output end of the first water inlet pipeline 46 is communicated with the first water storage tank 41, and the second pump body 47 is used to send external liquid into the first water storage tank 41, so as to complete the automatic replenishment of the liquid in the first water storage tank 41. The air compressor assembly 44 is provided with a gas collection pipeline 441 for collecting high-temperature gas in the water washing tank 101. The two ends of the gas collection pipeline 441 are respectively communicated with the inside of the air compressor assembly 44 and the water washing tank 101. The gas collection pipeline 441 is used to collect the high-temperature gas generated after the heated cleaning liquid enters the water washing tank 101, and is neutralized by the low-temperature gas generated after the air is heated by the air compressor, and then is discharged. The high-temperature gas in the water washing tank 101 can be avoided from being directly discharged to the outside, so as to avoid the temperature of the working environment being too high. The high-temperature cleaning device 40 further comprises a second chemical tank 401, a second chemical feeding pump 402 and a second PH detector 403. The second chemical tank 401 is arranged on the rack 10 and beside the first water storage tank 41. The output end of the second chemical tank 401 is communicated with the first water storage tank 41. The second chemical feeding pump 402 is arranged on the second chemical tank 401 and sends the chemical in the second chemical tank 401 into the first water storage tank 41. The second chemical feeding pump 402 is connected with the controller 20. The second PH detector 403 is arranged on the rack 10. The outer end of the second PH detector 403 is exposed to the outside wall of the rack 10, and the inner end of the second PH detector 403 extends into the first water storage tank 41. The second PH detector 403 is connected with the controller 20. The second PH detector 403 is used to detect the concentration of the chemical in the first water storage tank 401. When the concentration is too low, the second chemical feeding pump 402 sends the chemical in the second chemical tank 401 into the first water storage tank 41, so as to ensure the concentration of the chemical in the first water storage tank 41 and ensure the cleaning effect.
[0043] The normal-temperature cleaning device 50 comprises a second water storage tank 51, a second water outlet pipeline 52 and a second water inlet pipeline 53. The second water storage tank 51 is arranged on the rack 10 and beside the water washing tank 101. The second water outlet pipeline 52 is connected with the second water storage tank 51 and the water washing tank 101 respectively and is used for conveying the cleaning liquid in the second water storage tank 51 to the water washing tank. The second water inlet pipeline 53 is connected with the second water storage tank 51 and the water washing tank 101 respectively and is used for returning the cleaning liquid in the water washing tank 101 to the second water storage tank 51. The normal-temperature cleaning device 50 further comprises a second water inlet pipeline 54 and a third pump body 55. The output end of the second water inlet pipeline 54 is connected with the second water storage tank 51. The third pump body 55 is used for conveying external liquid to the second water storage tank 51.
[0044] The air-drying device 60 is arranged on the rack 10 and beside the output end of the conveying device 30. The air-drying device 60 is connected with the controller 20. In the embodiment, the air-drying device 60 is arranged in the mounting cavity 102 and below the water washing tank 101. The air-drying device 60 comprises a fan 61, a first blowing pipeline 62, a second blowing pipeline 63 and a heating assembly 64. The fan 61 is arranged on the rack 10. One end of the first blowing pipeline 62 is connected with the output end of the fan 61. The output end of the first blowing pipeline 62 is connected with the water washing tank 101. One end of the second blowing pipeline 63 is connected with the output end of the fan 61. The output end of the second blowing pipeline 63 is connected with the water washing tank 101 and is behind the output end of the first blowing pipeline 62. The heating assembly 64 is arranged on the rack 10 and is used for heating the gas in the second blowing pipeline 63. After the air-drying, the liquid on the surface of the water-washed shoe sole is first blown clean by the first blowing pipeline 62 and then is rapidly air-dried by the high-temperature gas. The air-drying efficiency is higher.
[0045] The working principle of the embodiment is described in detail as follows:
[0046] In operation, first, the device is connected to an external power source, then the injected soles are put into the input end of the conveying device 30, and conveyed backward through the conveying device 30, when conveyed to the high-temperature cleaning device 40 at the front, the cleaning liquid in the first water storage tank 41 heated by the air compressor assembly 44 is sent into the water washing tank 101 through the first water outlet pipeline 42, and the ultrasonic cleaning process is carried out in cooperation with the external ultrasonic generator, after the cleaning is completed, the cleaning liquid is returned to the first water storage tank 41 through the first water inlet pipeline 43 for re-heating, then the soles continue to be conveyed backward to the normal-temperature cleaning device 50, and the clean water in the second water storage tank 51 is sent into the water washing tank 101 through the second water outlet pipeline 52, so that the cleaning liquid remaining on the soles is washed away. After the normal-temperature cleaning is completed, the soles continue to be conveyed backward by the conveying device 30 to the second high-temperature cleaning device 40, and the above steps are repeated to further clean the soles by the heated neutral acid cleaning liquid, after the cleaning is completed, the conveying device 30 continues to convey the soles backward to the air drying device 60, and first, the liquid remaining on the surface of the soles is blown off through the first air blowing pipeline 62, and finally, the high-temperature gas blown through the second air blowing pipeline 63 is used for high-temperature air drying, and finally, the dried soles are sent out through the conveying device 30.
[0047] The design emphasis of the utility model lies in: through high-temperature cleaning device includes first water storage tank, first water outlet pipeline, first water inlet pipeline and air compressor assembly, and the output end of air compressor assembly is inwards inserted into first water storage tank and is used for heating cleaning liquid in first water storage tank, makes it through air compressor to send the gas after heating into first water storage tank to complete the heating process of cleaning liquid, replaces the heating rod heating mode, so that the overall working power is smaller, not only reduces the use cost, but also can satisfy the processing demand of energy saving and emission reduction.
[0048] The above is only the preferred embodiment of the utility model, and does not make any limitation on the technical range of the utility model, so any slight modification, equivalent change and modification made according to the technical essence of the utility model to the above embodiment still belongs to the range of the technical scheme of the utility model.
Claims
1. A heat pump energy-saving automatic chemical-adding cleaning machine for both outsole and midsole, characterized in that: The system includes a frame, a controller, a conveying device, a high-temperature cleaning device, a normal-temperature cleaning device, and a drying device. The frame contains a laterally extending washing tank. The controller is mounted on the frame. The conveying device is mounted on the frame and located within the washing tank, with both ends extending outwards from the frame. Both the high-temperature and normal-temperature cleaning devices are mounted on the frame and connected to the controller, and are arranged sequentially along the conveying direction of the conveying device, located beside the washing tank. The high-temperature cleaning device includes a first water storage tank, a first outlet pipe, and a first inlet pipe. The system includes an air compressor assembly; a first water tank is mounted on the frame and located next to the washing tank; a first water outlet pipe connects the first water tank and the washing tank and is used to transport the cleaning fluid in the first water tank to the washing tank; a first water inlet pipe connects the first water tank and the washing tank and is used to return the cleaning fluid in the washing tank to the first water tank; the output end of the air compressor assembly extends inward into the first water tank and is used to heat the cleaning fluid in the first water tank; and a drying device is mounted on the frame and located next to the output end of the transmission device, and the drying device is connected to the controller.
2. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The high-temperature cleaning device is configured in two parts, with the two high-temperature cleaning devices located on the front and rear sides of the normal temperature cleaning device, respectively.
3. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 2, characterized in that: Each high-temperature cleaning device also includes a second chemical tank, a second chemical feed pump, and a second pH detector. The second chemical tank is mounted on the frame and located next to the first water storage tank, with its output end connected to the first water storage tank. The second chemical feed pump is mounted on the second chemical tank and feeds the chemical solution from the second chemical tank into the first water storage tank. The second chemical feed pump is connected to the controller. The second pH detector is mounted on the frame, with its outer end protruding from the outer wall of the frame and its inner end extending inward into the first water storage tank. The second pH detector is connected to the controller.
4. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The frame is provided with an installation cavity, which is located below the washing tank. The high-temperature cleaning device, the normal-temperature cleaning device, and the air-drying device are all located in the installation cavity and below the washing tank.
5. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 4, characterized in that: The first water outlet pipe is equipped with a first pump body, which is used to send the cleaning liquid in the first water storage tank located below to the water washing tank; the input end of the first water inlet pipe is located at the bottom of the water washing tank.
6. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The high-temperature cleaning device also includes a first water supply pipe and a second pump body. The output end of the first water supply pipe is connected to a first water storage tank, and the second pump body is used to send external liquid into the first water storage tank.
7. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The ambient temperature cleaning device includes a second water storage tank, a second water outlet pipe, and a second water inlet pipe; the second water storage tank is mounted on the frame and located next to the washing tank; the second water outlet pipe is connected to both the second water storage tank and the washing tank and is used to transport the cleaning liquid in the second water storage tank to the washing tank; the second water inlet pipe is connected to both the second water storage tank and the washing tank and is used to return the cleaning liquid in the washing tank to the second water storage tank.
8. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 7, characterized in that: The ambient temperature cleaning device also includes a second water supply pipe and a third pump body. The output end of the second water supply pipe is connected to a second water storage tank, and the third pump body is used to send external liquid into the second water storage tank.
9. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The air compressor assembly has a gas collecting pipe for collecting high-temperature gas from the water washing tank. The two ends of the gas collecting pipe are connected to the interior of the air compressor assembly and the water washing tank, respectively.
10. The heat pump energy-saving automatic chemical dosing cleaning machine for both outsole and midsole as described in claim 1, characterized in that: The air-drying device includes a fan, a first air duct, a second air duct, and a heating component; the fan is mounted on a frame; one end of the first air duct is connected to the output end of the fan, and the output end of the first air duct is connected to a water washing tank; one end of the second air duct is connected to the output end of the fan, and the output end of the second air duct is connected to the water washing tank and located behind the output end of the first air duct; the heating component is mounted on the frame and is used to heat the gas inside the second air duct.