Mesh belt type cleaning and drying all-in-one machine

By designing a mesh belt cleaning and drying integrated machine, the automatic cleaning and drying of metal parts is achieved, and the problems of incomplete cleaning and water mist pollution in the existing technology are solved, and efficient and environmentally friendly cleaning and drying effects are achieved.

CN222901979UActive Publication Date: 2025-05-27XINCHANG HAIBO MACHINERY
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Patent Information

Application Number
CN202421824228.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-27
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

In the prior art, the cleaning and drying of metal parts is not thorough, resulting in watermarks on the surface, and the water mist during the cleaning process is prone to float out, polluting the workshop environment.

Method used

A mesh belt cleaning and drying integrated machine is designed, including a cleaning box and a drying box, equipped with an automatic loading and unloading platform, and automatic cleaning and drying of workpieces is realized through the conveying mechanism. During the cleaning process, oil-water separation is achieved by using an oil-fishing machine, and water mist treatment mechanism is used to prevent water mist from floating out.

Benefits of technology

Automatic cleaning and drying of workpieces is realized, cleaning effect and drying efficiency are ensured, water mist pollution is avoided, cost is reduced, and water recycling is realized.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222901979U_ABST
Patent Text Reader

Abstract

The utility model discloses a mesh belt type cleaning and drying all-in-one machine which comprises a cleaning box provided with a cleaning mechanism. The drying box is provided with a drying mechanism; the feeding platform is arranged on the feeding side of the cleaning box, a feeding area is arranged on the side, away from the cleaning box, of the feeding platform, and a first sensor is arranged in the feeding area; the discharging platform is arranged on the discharging side of the drying box, a discharging area is arranged on the side, away from the drying box, of the discharging platform, and a second sensor is arranged in the discharging area; and the conveying mechanism is provided with a clamp tool, the conveying mechanism drives the workpieces to be sequentially fed into the feeding platform, the cleaning box, the drying box and the discharging platform through the clamp tool, and automatic cleaning and drying of the workpieces are achieved. According to the automatic cleaning device, workpieces can be automatically fed and discharged, the workpieces can be cleaned and dried, oil-water separation and water recycling can be achieved in the cleaning process, the cost is reduced, and meanwhile pollution to a workshop due to the fact that generated water mist floats out can be avoided.
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Description

Technical Field

[0001] The utility model relates to an integrated cleaning and drying machine with a mesh belt. Background Art

[0002] After the stamping of metal parts is completed or the parts are used, the oil stains, burrs, etc. remaining on the surface will affect the quality of the metal parts. Therefore, it is necessary to remove these impurities.

[0003] In the prior art, the metal parts generally adopt manual loading and unloading, which not only increases the labor intensity of manual operation, but also fails to thoroughly clean and dry the metal parts, and it is easy to leave water marks on the surface of the metal parts. At the same time, the water mist during the cleaning process is easy to float out to the workshop, affecting the workshop environment. Content of the Utility Model

[0004] The purpose of the utility model is to provide a technical solution for an integrated cleaning and drying machine with a mesh belt aiming at the deficiencies of the prior art, which can not only automatically load and unload workpieces, but also clean and dry the workpieces. During the cleaning process, oil-water separation can be achieved, water can be recycled, the cost can be reduced, and at the same time, the generated water mist can be prevented from floating out and polluting the workshop.

[0005] In order to solve the above technical problems, the utility model adopts the following technical solutions:

[0006] An integrated cleaning and drying machine with a mesh belt, characterized in that it includes

[0007] At least one cleaning tank, the cleaning tank is provided with a cleaning mechanism for spraying and rinsing the workpiece with high-temperature liquid;

[0008] At least one drying tank, the drying tank is provided with a drying mechanism for drying the cleaned workpiece;

[0009] A loading platform, the loading platform is arranged on the feeding side of the cleaning tank, a loading area is arranged on the side of the loading platform away from the cleaning tank, and a first sensor is arranged in the loading area;

[0010] An unloading platform, the unloading platform is arranged on the discharging side of the drying tank, an unloading area is arranged on the side of the unloading platform away from the drying tank, and a second sensor is arranged in the unloading area;

[0011] And a conveying mechanism, a jig and tooling is arranged on the conveying mechanism, and the workpiece is driven by the conveying mechanism through the jig and tooling to be successively fed into the loading platform, the cleaning tank, the drying tank and the unloading platform, realizing the automatic cleaning and drying of the workpiece.

[0012] Through the design of the above structure, not only can the workpiece be automatically loaded and unloaded, but also the workpiece can be cleaned and dried. During the cleaning process, oil-water separation can be achieved, water can be recycled, costs can be reduced, and at the same time, the generated water mist can be prevented from floating out and polluting the workshop.

[0013] Furthermore, the cleaning mechanism includes a cleaning component, a water collecting tank, and a primary filtration tank disposed inside the cleaning tank. The primary filtration tank is located below the water collecting tank. There are a cleaning tank, a heating pipe, a water delivery pump, a filter, and an oil skimmer disposed outside the cleaning tank. The cleaning tank communicates with the primary filtration tank. A stainless steel screen is provided in the primary filtration tank. The heating pipe, the filter, and the oil skimmer are all disposed on the cleaning tank. The cleaning tank is connected to the filter through a delivery pipe. A filter bag is provided inside the filter. A valve and a water delivery pump are provided on the delivery pipe. The filter is connected to the cleaning component through a water inlet pipe. The cleaning component can continuously rinse the workpiece on the mesh chain. The rinsed liquid is collected through the water collecting tank and flows downward into the primary filtration tank. The granular impurities are filtered through the stainless steel screen in the primary filtration tank. The cleaning tank is used to store the filtered liquid. The heating pipe is connected with a heating wire, and the heating wire is located inside the cleaning tank and is used to heat the liquid to achieve high-temperature rinsing of the workpiece. The oil skimmer can remove the oil in the liquid, and then through the action of the water delivery pump, the liquid is transported to the filter through the delivery pipe, and secondary filtration is carried out through the filter bag in the filter, and finally input into the cleaning component to achieve recycling.

[0014] Furthermore, the cleaning component includes a hollow U-shaped frame, an upper spray bar, side spray bars, and a lower spray bar. The U-shaped frame is connected to the water inlet pipe. The upper spray bar is connected to the inner side of the U-shaped frame. The side spray bars are distributed parallel to each other in the front and rear on the inner side of the U-shaped frame, and the side spray bars are connected to the U-shaped frame or connected to the U-shaped frame through a first connection pipe. The lower spray bar is connected to the U-shaped frame through a second connection pipe. A control valve is provided on the second connection pipe. Spray heads facing the fixture tooling are provided on the upper spray bar, the side spray bars, and the lower spray bar. Through the U-shaped frame, the first connection pipe, and the second connection pipe, the liquid can be respectively input into the upper spray bar, the side spray bars, and the lower spray bar to meet the cleaning requirements for different directions of the workpiece.

[0015] Furthermore, the oil skimmer includes a motor, a transmission wheel, a steel belt, and a scraper. The motor is connected to the cleaning tank through a mounting frame. The transmission wheel is connected to the motor. A protective cover is provided above the transmission wheel on the mounting frame. The steel belt is connected to the transmission wheel. The bottom end of the steel belt is immersed in the liquid in the cleaning tank. The scraper is disposed on the mounting frame and is close to the steel belt. By driving the transmission wheel to rotate with the motor, the steel belt can be driven to rotate, the oil in the liquid can be fished out, and removed through the scraper to achieve oil-water separation.

[0016] Furthermore, a first air pump, a first air duct, and a first air blowing mechanism are provided between the cleaning tank and the drying tank. The first air pump is connected to the first air blowing mechanism through the first air duct. The first air blowing mechanism includes a first air hood in a U-shaped structure. The inner side of the first air hood is provided with a first air outlet. By generating wind with the first air pump, it is transported to the first air blowing mechanism through the first air duct, and the first air blowing mechanism blows air on the surface of the workpiece after cleaning, causing the liquid to converge into the water collecting tank.

[0017] Furthermore, the drying mechanism includes at least one set of drying components, at least one second air pump, at least one heating pack, and at least one filter pack. The drying components are arranged inside the drying tank and the blanking platform. The second air pump is connected to the drying components through a second air duct. The heating pack is arranged on the second air duct. The second air pump is connected to the drying tank or the blanking platform through an air suction pipe. The filter pack is arranged on the air suction pipe. By generating wind with the second air pump, the wind in the second air duct is heated by the heating pack and then transported to the drying components, and the drying components perform drying treatment on the workpieces on the fixture tooling. The wind in the drying tank flows back to the second air pump through the air suction pipe, and at the same time, the floating particulate impurities are filtered through the filter pack.

[0018] Furthermore, the drying components include a second air blowing mechanism and a drying hood. An infrared lamp is arranged inside the drying hood. The second air blowing mechanism includes a second air hood in a U-shaped structure and a bottom air hood. The second air hood is connected to the second air duct. The bottom air hood is connected to the second air duct through a guide air duct. The inner side of the second air hood is provided with a second air outlet. The top surface of the bottom air hood is provided with a third air outlet. Through the second air hood and the bottom air hood, hot air can be blown on the workpiece from above, below, front, and back, and then dried by irradiating with the infrared lamp, greatly improving the drying efficiency of the workpiece.

[0019] Furthermore, the conveying mechanism includes a mesh chain and a driving component. The mesh chain sequentially passes through the loading area, the loading platform, the cleaning tank, the drying tank, and the blanking platform to the blanking area. The driving component is arranged on one side of the blanking area. The driving component is used to drive the mesh chain to rotate, realizing the movement of the workpiece following the mesh chain through the fixture tooling. The driving component can include a servo motor and a reducer. The mesh chain is driven by the servo motor through the reducer, and the mesh chain can realize the fixed pitch conveying of the fixture tooling.

[0020] Furthermore, the fixture tooling includes a support frame and a reinforcing plate. The reinforcing plate is connected to the support frame. The support frame and the reinforcing plate are respectively provided with a first clamping groove and a second clamping groove for supporting the workpiece.

[0021] Further, it further includes a water mist treatment mechanism, which includes a water mist processor, a first mist suction hood, and a second mist suction hood. The water mist processor is connected to the cleaning tank through a bracket. The first mist suction hood is connected to the loading platform. The second mist suction hood is located between the cleaning tank and the drying tank. Both the first mist suction hood and the second mist suction hood are connected to the water mist processor through pipes. By generating wind power through the water mist processor, the first mist suction hood and the second mist suction hood can adsorb the mist at the inlet and outlet of the cleaning tank, which can not only prevent the water mist from floating out, but also prevent the water mist from entering the drying tank, reducing the mutual influence between the cleaning tank and the drying tank.

[0022] Further, a first flip cover and a second flip cover are respectively provided on the cleaning tank and the drying tank. Glass windows are provided on both the first flip cover and the second flip cover. It is convenient to overhaul the interiors of the cleaning tank and the drying tank through the first flip cover and the second flip cover, and the glass windows are convenient for observing the internal conditions of the cleaning tank and the drying tank in real time.

[0023] The utility model has the following beneficial effects due to adopting the above technical solutions:

[0024] 1. The utility model can not only automatically load and unload workpieces, but also clean and dry the workpieces. During the cleaning process, oil-water separation can be achieved, the recycling of water can be realized, the cost can be reduced, and at the same time, the pollution caused by the floating water mist to the workshop can be avoided.

[0025] 2. The cleaning component can continuously wash the workpieces on the mesh chain. The washed liquid is collected through the water collecting tank and flows downward into the primary filtration tank. The granular impurities are filtered through the stainless steel screen in the primary filtration tank. The cleaning tank is used to store the filtered liquid. The heating pipe is connected with a heating wire, and the heating wire is located in the cleaning tank and is used to heat the liquid to achieve high-temperature washing of the workpieces. The oil skimmer can remove the oil in the liquid, and then through the action of the water transfer pump, the liquid is transported to the filter through the conveying pipe and is secondarily filtered through the filter bag in the filter, and finally input into the cleaning component to realize recycling.

[0026] 3. By generating wind power through the second air pump, the wind in the second air delivery pipe is heated by the heating package and then transported to the drying component, and the drying component dries the workpieces on the fixture tooling. The wind in the drying tank flows back to the second air pump through the air suction pipe, and at the same time, the floating granular impurities are filtered through the filter package.

[0027] 4. By generating wind power through the water mist processor, the first mist suction hood and the second mist suction hood can adsorb the mist at the inlet and outlet of the cleaning tank, which can not only prevent the water mist from floating out, but also prevent the water mist from entering the drying tank, reducing the mutual influence between the cleaning tank and the drying tank. Description of the Drawings

[0028] The present utility model will be further described below in conjunction with the accompanying drawings:

[0029] Figure 1 It is a schematic structural diagram of the integrated net belt type cleaning and drying machine of the present utility model;

[0030] Figure 2 is Figure 1 a schematic structural diagram in the A direction in

[0031] Figure 3 a schematic internal structure diagram of the present utility model;

[0032] Figure 4 is a schematic structural diagram of the oil skimmer in the present utility model;

[0033] Figure 5 is a schematic structural diagram when the jig and tooling support the workpiece in the present utility model;

[0034] Figure 6 is a schematic structural diagram of the cleaning component of the present utility model;

[0035] Figure 7 is a schematic structural diagram of the first blowing mechanism in the present utility model;

[0036] Figure 8 is a schematic structural diagram of the drying component of the present utility model;

[0037] Figure 9 is a schematic structural diagram of the second blowing mechanism in the present utility model.

[0038] In the figure: 1 - electric box; 2 - cleaning box; 3 - drying box; 4 - loading platform; 5 - unloading platform; 6 - loading area; 7 - unloading area; 8 - first sensor; 9 - second sensor; 10 - first flip cover; 11 - second flip cover; 12 - water mist processor; 13 - bracket; 14 - first mist suction hood; 15 - second mist suction hood; 16 - mesh chain; 17 - cleaning tank; 18 - heating pipe; 19 - oil skimmer; 20 - valve; 21 - water transfer pump; 22 - delivery pipe; 23 - filter; 24 - water inlet pipe; 25 - first air pump; 26 - first air delivery pipe; 27 - second air pump; 28 - heating pack; 29 - filter pack; 30 - second air delivery pipe; 31 - suction pipe; 32 - drive assembly; 33 - partition board; 34 - first inclined plate; 35 - cleaning assembly; 36 - water collecting tank; 37 - primary filtration tank; 38 - first air blowing mechanism; 39 - second inclined plate; 40 - drying assembly; 41 - mounting frame; 42 - protective cover; 43 - motor; 44 - transmission wheel; 45 - steel belt; 46 - scraper; 47 - support frame; 48 - reinforcement plate; 49 - first clamping groove; 50 - second clamping groove; 51 - fixture tooling; 52 - U-shaped frame; 53 - upper spray bar; 54 - side spray bar; 55 - first connecting pipe; 56 - lower spray bar; 57 - second connecting pipe; 58 - control valve; 59 - spray head; 60 - first air hood; 61 - first air outlet; 62 - second air blowing mechanism; 63 - drying hood; 64 - second air hood; 65 - second air outlet; 66 - bottom air hood; 67 - third air outlet; 68 - air duct. Detailed implementation manners

[0039] It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments may be combined with each other. The following will describe the present invention in detail with reference to the drawings and in combination with the embodiments.

[0040] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.

[0041] It should be noted that the terms "first", "second", etc. in the specification and claims of the present invention and the above drawings are used to distinguish similar objects, and do not necessarily need to describe a specific order or sequence. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion.

[0042] Such as Figures 1 to 9As shown in the figure, this is an integrated cleaning and drying machine with a mesh belt of the utility model, which includes a cleaning tank 2, a drying tank 3, a loading platform 4, a unloading platform 5 and a conveying mechanism. An electric box 11 is provided on the front side of the cleaning tank 2 for supplying power to the integrated machine.

[0043] The loading platform 4 is arranged on the feeding side of the cleaning tank 2. A loading area 6 is provided on the side of the loading platform 4 away from the cleaning tank 2. A first sensor 8 is provided in the loading area 6. The position of the fixture tooling 51 can be detected through the first sensor 8, which is convenient for the manipulator to place the workpiece into the fixture tooling 51.

[0044] A partition 33 is provided inside the loading platform 4, which can reduce the mist generated when the cleaning tank 2 cleans the workpiece from floating out. A first inclined plate 34 is provided at the bottom of the loading platform 4 to facilitate the liquid to flow into the water collecting tank 36.

[0045] The cleaning tank 2 is provided with a cleaning mechanism for spraying and rinsing the workpiece with high-temperature liquid.

[0046] The cleaning mechanism includes a cleaning component 35, a water collecting tank 36 and a primary filter tank 37 provided inside the cleaning tank 2. The primary filter tank 37 is located below the water collecting tank 36. A cleaning tank 17, a heating pipe 18, a water pump 21, a filter 23 and an oil skimmer 19 are provided outside the cleaning tank 2. The cleaning tank 17 is communicated with the primary filter tank 37. A stainless steel screen is provided in the primary filter tank 37. The heating pipe 18, the filter 23 and the oil skimmer 19 are all arranged on the cleaning tank 17. The cleaning tank 17 is connected to the filter 23 through a conveying pipe 22. A filter bag is provided inside the filter 23. A valve 20 and a water pump 21 are provided on the conveying pipe 22. The filter 23 is connected to the cleaning component 35 through a water inlet pipe 24; the cleaning component 35 can continuously rinse the workpiece on the mesh chain 16. The rinsed liquid is collected through the water collecting tank 36 and flows downward into the primary filter tank 37. The particulate impurities are filtered through the stainless steel screen in the primary filter tank 37. The cleaning tank 17 is used to store the filtered liquid. The heating pipe 18 is connected with a heating wire, and the heating wire is located inside the cleaning tank 17 for heating the liquid to achieve high-temperature rinsing of the workpiece. The oil skimmer 19 can remove the oil in the liquid, and then through the action of the water pump 21, the liquid is transported to the filter 23 through the conveying pipe 22, and is secondarily filtered through the filter bag in the filter 23, and finally input into the cleaning component 35 to achieve recycling.

[0047] The cleaning component 35 includes a U-shaped frame 52 with a hollow interior, an upper spray bar 53, side spray bars 54, and a lower spray bar 56. The U-shaped frame 52 is connected to the water inlet pipe 24. The upper spray bar 53 is connected to the inner side of the U-shaped frame 52. The side spray bars 54 are distributed parallel to each other in the front and rear on the inner side of the U-shaped frame 52, and the side spray bars 54 are connected to the U-shaped frame 52 or connected to the U-shaped frame 52 through a first connecting pipe 55. The lower spray bar 56 is connected to the U-shaped frame 52 through a second connecting pipe 57. A control valve 58 is provided on the second connecting pipe 57. Spray nozzles 59 facing the fixture tooling 51 are provided on the upper spray bar 53, the side spray bars 54, and the lower spray bar 56. Liquids can be respectively input into the upper spray bar 53, the side spray bars 54, and the lower spray bar 56 through the U-shaped frame 52, the first connecting pipe 55, and the second connecting pipe 57 to meet the cleaning requirements for different directions of the workpiece.

[0048] The oil skimmer 19 includes a motor 43, a transmission wheel 44, a steel belt 45, and a scraper 46. The motor 43 is connected to the cleaning tank 17 through a mounting frame 41. The transmission wheel 44 is connected to the motor 43. A protective cover 42 is provided above the transmission wheel 44 on the mounting frame 41. The steel belt 45 is connected to the transmission wheel 44. The bottom end of the steel belt 45 is immersed in the liquid in the cleaning tank 17. The scraper 46 is provided on the mounting frame 41 and is close to the steel belt 45. By driving the transmission wheel 44 to rotate through the motor 43, the steel belt 45 can be driven to rotate, the oil in the liquid can be fished out, and removed through the scraper 46 to achieve oil-water separation.

[0049] A first air pump 25, a first air delivery pipe 26, and a first air blowing mechanism 38 are provided between the cleaning tank 2 and the drying tank 3. The first air pump 25 is connected to the first air blowing mechanism 38 through the first air delivery pipe 26. The first air blowing mechanism 38 includes a first air hood 60 with a U-shaped structure. A first air outlet 61 is provided on the inner side surface of the first air hood 60. By generating wind power through the first air pump 25 and delivering it to the first air blowing mechanism 38 through the first air delivery pipe 26, the first air blowing mechanism 38 blows the surface of the cleaned workpiece, causing the liquid to converge into the water collecting tank 36.

[0050] A second inclined plate 39 is provided between the cleaning tank 2 and the drying tank 3 to facilitate the liquid on the surface of the cleaned workpiece to flow into the water collecting tank 36.

[0051] The drying tank 3 is provided with a drying mechanism for drying the cleaned workpiece.

[0052] The drying mechanism includes at least one set of drying components 40, at least one second air pump 27, at least one heating pack 28, and at least one filter pack 29. In this application, two sets of drying components, three second air pumps, three heating packs, and three filter packs are preferably adopted. The drying components 40 are arranged inside the drying box 3 and the blanking platform 5. The second air pump 27 is connected to the drying components 40 through the second air duct 30. The heating pack 28 is arranged on the second air duct 30. The second air pump 27 is communicated with the drying box 3 or the blanking platform 5 through the air suction pipe 31. The filter pack 29 is arranged on the air suction pipe 31. By generating wind with the second air pump 27, the wind in the second air duct 30 is heated by the heating pack 28 and then transported to the drying components 40. The drying components 40 dry the workpieces on the fixture tooling 51. The wind in the drying box 3 flows back to the second air pump 27 through the air suction pipe 31, and at the same time, the floating particulate impurities are filtered through the filter pack 29.

[0053] The drying component 40 includes a second blowing mechanism 62 and a drying hood 63. An infrared lamp is arranged inside the drying hood 63. The second blowing mechanism 62 includes a second air hood 64 with a U-shaped structure and a bottom air hood 66. The second air hood 64 is connected to the second air duct 30. The bottom air hood 66 is connected to the second air duct 30 through the air guide pipe 68. The inner side surface of the second air hood 64 is provided with a second air outlet 65. The top surface of the bottom air hood 66 is provided with a third air outlet 67. Through the second air hood 64 and the bottom air hood 66, hot air can be blown to the workpiece from the top, bottom, front, and back respectively, and then irradiated and dried by the infrared lamp, greatly improving the drying efficiency of the workpiece.

[0054] The blanking platform 5 is arranged on the discharging side of the drying box 3. A blanking area 7 is arranged on one side of the blanking platform 5 away from the drying box 3. A second sensor 9 is arranged in the blanking area 7. The position of the fixture tooling 51 can be detected through the second sensor 9, which is convenient for the manipulator to take out the workpiece on the fixture tooling 51.

[0055] The conveying mechanism is provided with the fixture tooling 51. The workpiece is driven by the conveying mechanism through the fixture tooling 51 and is successively sent into the loading platform 4, the cleaning box 2, the drying box 3, and the blanking platform 5 to realize the automatic cleaning and drying of the workpiece.

[0056] The conveying mechanism includes a mesh chain 16 and a driving component 32. The mesh chain 16 successively penetrates through the loading area 6, the loading platform 4, the cleaning box 2, the drying box 3, and the blanking platform 5 to the blanking area 7. The driving component 32 is arranged on one side of the blanking area 7. The driving component 32 is used to drive the mesh chain 16 to rotate, so that the workpiece follows the mesh chain 16 to move through the fixture tooling 51. The driving component 32 can include a servo motor 43 and a reducer. The mesh chain 16 is driven by the servo motor 43 through the reducer, and the mesh chain 16 can realize the fixed pitch conveying of the fixture tooling 51.

[0057] Through the design of the above structure, not only can the workpiece be automatically loaded and unloaded, but also the workpiece can be cleaned and dried. During the cleaning process, oil-water separation can be achieved, the recycling of water can be realized, the cost can be reduced, and at the same time, the pollution caused by the floating water mist to the workshop can be avoided.

[0058] The fixture tooling 51 includes a support frame 47 and a reinforcement plate 48. The reinforcement plate 48 is connected to the support frame 47. The first clamping groove 49 and the second clamping groove 50 for supporting the workpiece are respectively provided on the support frame 47 and the reinforcement plate 48.

[0059] The mesh belt type cleaning and drying integrated machine further includes a water mist treatment mechanism. The water mist treatment mechanism includes a water mist processor 12, a first mist suction hood 14 and a second mist suction hood 15. The water mist processor 12 is connected to the cleaning tank 2 through a bracket 13. The first mist suction hood 14 is connected to the loading platform 4. The second mist suction hood 15 is located between the cleaning tank 2 and the drying tank 3. Both the first mist suction hood 14 and the second mist suction hood 15 are communicated with the water mist processor 12 through pipelines. By generating wind through the water mist processor 12, the first mist suction hood 14 and the second mist suction hood 15 can adsorb the mist at the inlet and outlet of the cleaning tank 2, which can not only prevent the water mist from floating out, but also prevent the water mist from entering the drying tank 3, reducing the mutual influence between the cleaning tank 2 and the drying tank 3.

[0060] The cleaning tank 2 and the drying tank 3 are respectively provided with a first flip cover 10 and a second flip cover 11. Glass windows are provided on both the first flip cover 10 and the second flip cover 11. Through the first flip cover 10 and the second flip cover 11, it is convenient to overhaul the interiors of the cleaning tank 2 and the drying tank 3, and the glass windows are convenient for observing the internal conditions of the cleaning tank 2 and the drying tank 3 in real time.

[0061] When the utility model is actually used, first, the empty fixture tooling 51 is moved to the loading area 6 of the loading platform 4 through the conveying mechanism. After the fixture tooling 51 is detected by the first sensor 8, the conveying mechanism stops moving, and the workpiece to be cleaned and dried is placed on the fixture tooling 51 through the manipulator. Then, the conveying mechanism is started, and the workpiece is driven by the fixture tooling 51 to move to the cleaning tank 2. The workpiece is sprayed from above, from the side and from below through the cleaning mechanism. After cleaning, the workpiece is moved to the drying tank 3 through the conveying mechanism, and the workpiece is dried through the drying mechanism. After drying, it is moved to the unloading area 7 of the unloading platform 5. After the fixture tooling 51 is detected by the second sensor 9, the manipulator takes out the cleaned and dried workpiece.

[0062] The above are only specific embodiments of the utility model, but the technical features of the utility model are not limited thereto. Any simple changes, equivalent replacements or modifications made based on the utility model to achieve basically the same technical effects are all covered by the protection scope of the utility model.

Claims

1. Net-belt type cleaning and drying machine, characterized by: include At least one cleaning box, wherein the cleaning box is provided with a cleaning mechanism for spraying and flushing the workpiece with a high-temperature liquid; At least one drying box, wherein the drying box is provided with a drying mechanism for drying the workpiece after cleaning; A loading platform, the loading platform is arranged on the feeding side of the cleaning box, a loading area is arranged on a side of the loading platform away from the cleaning box, and a first sensor is arranged in the loading area; A material unloading platform, the material unloading platform is arranged at the material discharging side of the drying box, a material unloading area is arranged on a side of the material unloading platform away from the drying box, and a second sensor is arranged in the material unloading area; and a conveying mechanism, wherein the conveying mechanism is provided with a fixture, and the workpiece is driven by the conveying mechanism through the fixture to be sequentially sent to the loading platform, the cleaning box, the drying box and the unloading platform, so as to realize automatic cleaning and drying of the workpiece.

2. The mesh belt type washing and drying machine according to claim 1, characterized in that: The cleaning mechanism includes a cleaning assembly, a water collecting tank and a primary filter tank arranged inside the cleaning box, the primary filter tank is located below the water collecting tank, and a cleaning tank, a heating pipe, a water pump, a filter and an oil scooping machine are arranged outside the cleaning box. The cleaning tank is connected to the primary filter tank, a stainless steel screen is arranged in the primary filter tank, the heating pipe, the filter and the oil scooping machine are all arranged on the cleaning tank, the cleaning tank is connected to the filter through a delivery pipe, a filter bag is arranged in the filter, a valve and the water pump are arranged on the delivery pipe, and the filter is connected to the cleaning assembly through a water inlet pipe.

3. The mesh belt type washing and drying machine according to claim 2, characterized in that: The cleaning assembly includes a U-shaped frame with a hollow interior, an upper spray rod, a side spray rod and a lower spray rod, the U-shaped frame is connected to the water inlet pipe, the upper spray rod is connected to the inner side of the U-shaped frame, the side spray rods are distributed in parallel front and back on the inner side of the U-shaped frame, and the side spray rods are connected to the U-shaped frame or connected to the U-shaped frame through a first connecting pipe, and the lower spray rod is connected to the U-shaped frame through a second connecting pipe. The second connecting pipe is provided with a control valve, and the upper spray rod, the side spray rod and the lower spray rod are all provided with spray heads facing the fixture tooling.

4. The mesh belt type washing and drying integrated machine according to claim 2, characterized in that: The oil recovery machine includes a motor, a transmission wheel, a steel belt and a scraper. The motor is connected to the cleaning tank through a mounting frame, the transmission wheel is connected to the motor, the mounting frame is located above the transmission wheel and is provided with a protective cover, the steel belt is connected to the transmission wheel, the bottom end of the steel belt is immersed in the liquid in the cleaning tank, and the scraper is arranged on the mounting frame and close to the steel belt.

5. The mesh belt type washing and drying machine according to claim 1, characterized in that: A first air pump, a first air duct and a first air blowing mechanism are provided between the washing box and the drying box. The first air pump is connected to the first air blowing mechanism through the first air duct. The first air blowing mechanism includes a first air hood with a U-shaped structure. A first air outlet is provided on the inner side of the first air hood.

6. The mesh belt type washing and drying machine according to claim 1, characterized in that: The drying mechanism includes at least one group of drying components, at least one second air pump, at least one heating bag and at least one filter bag. The drying components are arranged inside the drying box and the unloading platform. The second air pump is connected to the drying components through a second air duct. The heating bag is arranged on the second air duct. The second air pump is connected to the drying box or the unloading platform through an air suction pipe, and the filter bag is arranged on the air suction pipe.

7. The mesh belt type washing and drying integrated machine according to claim 6, characterized in that: The drying component includes a second blowing mechanism and a drying hood, an infrared lamp is provided in the drying hood, the second blowing mechanism includes a second wind hood and a bottom wind hood in a U-shaped structure, the second wind hood is connected to the second air duct, the bottom wind hood is connected to the second air duct via an air guide duct, a second air outlet is provided on the inner side surface of the second wind hood, and a third air outlet is provided on the top surface of the bottom wind hood.

8. The mesh belt type washing and drying integrated machine according to claim 1, characterized in that: The conveying mechanism includes a mesh chain and a driving assembly. The mesh chain runs from the loading area through the loading platform, the cleaning box, the drying box and the unloading platform to the unloading area in sequence. The driving assembly is arranged on one side of the unloading area. The driving assembly is used to drive the mesh chain to rotate, so that the workpiece moves along the mesh chain through the fixture.

9. The mesh belt type washing and drying machine according to claim 1, characterized in that: The fixture comprises a support frame and a reinforcing plate, wherein the reinforcing plate is connected to the support frame, and the support frame and the reinforcing plate are respectively provided with a first clamping groove and a second clamping groove for supporting the workpiece.

10. The mesh belt type washing and drying machine according to claim 1, characterized in that: It also includes a water mist treatment mechanism, which includes a water mist processor, a first mist suction hood and a second mist suction hood. The water mist processor is connected to the cleaning box through a bracket, the first mist suction hood is connected to the loading platform, and the second mist suction hood is located between the cleaning box and the drying box. The first mist suction hood and the second mist suction hood are both connected to the water mist processor through a pipeline.

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