Workpiece surface cleaning device

By designing a multi-working-area workpiece surface cleaning device, and utilizing a rotating mechanism and a lifting cleaning, rinsing, and air-cutting mechanism, the problems of low cleaning efficiency and poor cleaning effect in grooved areas in the existing technology are solved, achieving a highly efficient and comprehensive cleaning effect.

CN223698626UActive Publication Date: 2025-12-23辰致科技有限公司
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Patent Information

Application Number
CN202422380842.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-12-23
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

In existing technologies, standard cleaning machines have low cleaning efficiency and cannot clean multiple workpieces simultaneously. In particular, they are ineffective at cleaning grooved areas of parts such as shock absorber towers, which affects the product qualification rate.

Method used

A workpiece surface cleaning device was designed, comprising multiple working areas. A rotating mechanism drives the workpiece support to move between the cleaning, rinsing, air cutting, drying, and cooling zones. Combined with the liftable cleaning, rinsing, and air cutting mechanisms, the device achieves comprehensive cleaning and drying of the workpiece.

Benefits of technology

It improves cleaning efficiency, enabling the simultaneous cleaning of six workpieces, enhances the cleaning effect on grooved areas, and increases the product qualification rate.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223698626U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cleaning devices, in particular to a workpiece surface cleaning device which comprises a machine frame, a shell is arranged on the machine frame, a rotating mechanism is fixedly arranged in the shell, a plurality of working areas are distributed on the periphery of the rotating mechanism, and a liftable cleaning mechanism is arranged in each cleaning area. A liftable rinsing mechanism is arranged in the rinsing area, a liftable wind shear mechanism is arranged in the wind shear area, drying mechanisms are arranged in the first drying area and the second drying area, and a cooling mechanism is arranged in the cooling area; a rotating shaft of the rotating mechanism is vertically arranged and fixedly provided with workpiece brackets, and the rotating mechanism drives the workpiece brackets to axially rotate so that the workpiece brackets can sequentially pass through the working areas. The six-workpiece cleaning device has the advantages that six workpieces can be cleaned at the same time, and cleaning efficiency is greatly improved; the special parts of parts with grooves, such as the shock absorption tower, can be emphatically cleaned, the cleaning effect is improved, and the percent of pass is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cleaning device technical field especially relates to a work piece surface cleaning device. BACKGROUND

[0002] The shock tower is an important component of the automobile, is a key load transmission path, absorbs all the load from the chassis to the body, and the rigidity characteristics determine the driving comfort, safety of the whole vehicle.

[0003] The shock tower usually includes a plurality of steel stamping parts or machined parts fixed by tailor welding, and the structure is complex, and there are many impurities on the surface after processing, so the shock tower needs to be cleaned. In the prior art, a standard cleaning machine is usually used to clean the shock tower, but the standard cleaning machine on the market has slow cleaning efficiency, can only clean one part at the same time, and the cleaning effect of the concave groove part of the shock tower and other parts is poor, which affects the product qualification rate. UTILITY MODEL CONTENTS

[0004] The utility model solves the technical problem that a work piece surface cleaning device is provided to solve the above-mentioned shortcomings in the prior art.

[0005] The technical scheme for solving the above technical problems is as follows: a work piece surface cleaning device, comprising a rack, an outer shell is arranged on the rack, a rotating mechanism is fixedly arranged in the outer shell, a plurality of work areas are distributed in a circle around the rotating mechanism and sequentially arranged in a circle with the rotating mechanism as the center, the plurality of work areas are respectively a feeding and discharging area, a cleaning area, a rinsing area, an air cutting area, a first drying area, a second drying area and a cooling area, a lifting cleaning mechanism is arranged in the cleaning area, a lifting rinsing mechanism is arranged in the rinsing area, a lifting air cutting mechanism is arranged in the air cutting area, a drying mechanism is arranged in the first drying area and the second drying area, and a cooling mechanism is arranged in the cooling area; an upper and lower feeding and discharging opening for feeding and discharging is arranged on the outer shell beside the feeding and discharging area; the rotating shaft of the rotating mechanism is vertically arranged and fixedly connected with a rotating seat, a work piece bracket corresponding to the work area is fixedly arranged around the rotating seat and extends into the work area to support the work piece, and the rotating mechanism drives the work piece bracket to rotate axially so that each work piece bracket sequentially passes through each work area.

[0006] The utility model discloses beneficial effect is: the utility model discloses through rotating mechanism and drive workpiece bracket move in different work area in proper order, realize the surface of workpiece and clean, realize workpiece cleaning, rinsing, wind cutting drying, one -time drying, secondary drying and cooling respectively, can clean six workpieces simultaneously, improve cleaning efficiency greatly, the cleaning mechanism, rinsing mechanism and wind cutting mechanism can go up and down, can carry out the key cleaning to the specific position of the part of the groove of shock tower one class, improve the cleaning effect, improve the qualified rate.

[0007] On the basis of the above technical scheme, the utility model further can make the following improvement.

[0008] Further, the two adjacent work areas are provided with a partition plate for separating the two work areas, the top of the partition plate is connected with the top of the rack through a first lifting mechanism, and the first lifting mechanism drives the partition plate to rise to allow the workpiece bracket to pass.

[0009] The beneficial effect of the above further scheme is that the partition plate can separate each work area, so that the cleaning processes of each work area do not interfere with each other. When the rotating mechanism needs to drive the workpiece to rotate to the next work area, the first lifting mechanism drives the partition plate to rise to allow the workpiece bracket to pass. After the workpiece bracket passes, the first lifting mechanism drives the partition plate to descend, and then each work area starts its work area operation.

[0010] Further, the rotating mechanism is provided with a protective cover, the protective cover is provided with an annular hole for the workpiece bracket to pass through, and the middle part of the workpiece bracket is arranged in the annular hole.

[0011] The beneficial effect of the above further scheme is that the protective cover can protect the rotating mechanism.

[0012] Further, the workpiece bracket is in Z-shaped structure, one end of the workpiece bracket arranged in the work area is below the horizontal height of one end connected with the rotating seat, and one end of the workpiece bracket at the high level penetrates through the annular hole.

[0013] The beneficial effect of the above further scheme is that the annular hole is arranged at a higher position, further avoiding water in the cleaning process from entering the rotating mechanism to affect the rotating mechanism.

[0014] Further, the cleaning mechanism comprises a bottom-opened cleaning cover, a top of the cleaning cover is fixedly connected with a top of the rack through a second lifting mechanism, after the second lifting mechanism drives the cleaning cover to descend, the cleaning cover surrounds a periphery of a workpiece placed on the workpiece carrier, a plurality of cleaning nozzles are fixedly arranged on an inner wall of the cleaning cover, the cleaning nozzles are communicated with a cleaning tank through a cleaning water pump, and a bottom of the cleaning area is provided with a cleaning wastewater tank.

[0015] The beneficial effect of the above further scheme is that the liftable cleaning cover can surround the workpiece to be cleaned, so that each part of the workpiece can be flushed, and the flushing liquid can be limited to prevent the flushing liquid from splashing everywhere.

[0016] Further, the rinsing mechanism comprises a bottom-opened rinsing cover, a top of the rinsing cover is fixedly connected with a top of the rack through a third lifting mechanism, after the third lifting mechanism drives the rinsing cover to descend, the rinsing cover surrounds a periphery of a workpiece placed on the workpiece carrier, a plurality of rinsing nozzles are fixedly arranged on an inner wall of the rinsing cover, the rinsing nozzles are communicated with a rinsing tank through a rinsing water pump, and a bottom of the rinsing area is provided with a rinsing wastewater tank.

[0017] The beneficial effect of the above further scheme is that the liftable rinsing cover can surround the workpiece to be rinsed, so that each part of the workpiece can be flushed, and the rinsing liquid can be limited to prevent the rinsing liquid from splashing everywhere.

[0018] Further, the wind cutting mechanism comprises a bottom-opened wind cutting cover, a top of the wind cutting cover is fixedly connected with a top of the rack through a fourth lifting mechanism, after the fourth lifting mechanism drives the wind cutting cover to descend, the wind cutting cover surrounds a periphery of a workpiece placed on the workpiece carrier, a plurality of blowing nozzles are fixedly arranged on an inner wall of the wind cutting cover, and the blowing nozzles are communicated with an output end of a wind cutting fan through a pipeline.

[0019] The beneficial effect of the above further scheme is that the liftable wind cutting cover can surround the workpiece to be rinsed, so that each part of the workpiece can be blown dry.

[0020] Further, the drying mechanism comprises a drying fan and a drying heating mechanism arranged at a top of the working area, an output end of the drying fan is communicated with an input end of the drying heating mechanism, and an output end of the drying heating mechanism faces the workpiece on the workpiece carrier in the working area.

[0021] The beneficial effect of the above further scheme is that the hot air heated by the drying heating mechanism is blown to the workpiece, so that the workpiece is effectively dried.

[0022] Further, the cooling mechanism comprises a cooling fan arranged on the top of the cooling area, an input port of the cooling fan is connected with an output port of the condensing machine, and an output port of the cooling fan is directed to the workpiece on the workpiece bracket in the cooling area.

[0023] The beneficial effect of the further scheme is that the cooling fan blows the low-temperature air condensed to the workpiece, so that the workpiece is rapidly cooled.

[0024] Further, the outer side of each work area is provided with an access door.

[0025] The beneficial effect of the further scheme is that the access door is arranged to facilitate the maintenance of each work area. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is a top view of the internal structure of the utility model;

[0027] Figure 2 It is a front view of the internal structure of the utility model;

[0028] Figure 3 It is a side view of the internal structure of the utility model;

[0029] In the drawings, the components represented by each reference numeral are listed as follows:

[0030] 1, rack; 2, shell; 3, rotating mechanism; 4, feeding and discharging area; 5, cleaning area; 6, rinsing area; 7, air cutting drying area; 8, first drying area; 9, second drying area; 10, cooling area; 11, cleaning mechanism; 111, cleaning cover; 112, second lifting mechanism; 113, cleaning nozzle; 114, cleaning water pump; 115, cleaning tank; 116, cleaning waste water tank; 12, rinsing mechanism; 121, rinsing cover; 122, third lifting mechanism; 123, rinsing nozzle; 124, rinsing water pump; 125, rinsing tank; 126, rinsing waste water tank; 13, air cutting mechanism; 131, air cutting cover; 132, fourth lifting mechanism; 133, air blowing nozzle; 134, air cutting fan; 14, drying mechanism; 141, drying fan; 142, drying heating mechanism; 15, cooling mechanism; 151, cooling fan; 152, condensing machine; 16, feeding and discharging port; 17, rotating seat; 18, workpiece bracket; 19, partition plate; 20, first lifting mechanism; 21, protective cover; 22, annular hole; 23, access door. DETAILED DESCRIPTION

[0031] The principles and characteristics of the utility model are described below in combination with the drawings, and the examples are only used to explain the utility model and are not used to limit the scope of the utility model.

[0032] As Figure 1 ,Figure 2 、 Figure 3 The utility model discloses an embodiment shown in the figure, including frame 1, be equipped with shell 2 on frame 1, be equipped with rotating mechanism 3 in fixed shell 2, the periphery of rotating mechanism 3 is in the rotating mechanism 3 center and is in the circle and is distributed with multiple work area in proper order, multiple work area is respectively feeding and discharging area 4, cleaning area 5, rinsing area 6, wind cutting drying area 7, first drying area 8, second drying area 9 and cooling area 10, the outside of each work area all is provided with access door 23, and the setting of access door 23 can conveniently overhaul each work area.

[0033] The cleaning mechanism 11 is arranged in the cleaning area 5, the rinsing mechanism 12 is arranged in the rinsing area 6, the wind cutting mechanism 13 is arranged in the wind cutting drying area 7, the drying mechanism 14 is arranged in the first drying area 8 and the second drying area 9, and the cooling mechanism 15 is arranged in the cooling area 10. The shell 2 beside the feeding and discharging area 4 is provided with a feeding and discharging port 16 for feeding and discharging. The rotating shaft of the rotating mechanism 3 is vertically arranged and fixedly connected with a rotating seat 17. A workpiece carrier 18 corresponding to the work area is fixed around the rotating seat 17 and extends into the work area to support the workpiece. The rotating mechanism 3 drives the workpiece carrier 18 to rotate axially, so that each workpiece carrier 18 passes through each work area in sequence. The operator is located at the feeding and discharging port 16, takes out the cleaned workpiece from the workpiece carrier 18, and then places the new workpiece to be cleaned on the workpiece carrier 18.

[0034] In order to accurately drive the workpiece carrier 18 to rotate by a set angle, so that the workpiece carrier 18 can be accurately rotated to the corresponding position of the next work area, the rotating mechanism 3 is a servo motor.

[0035] In the embodiment of the utility model, a partition plate 19 is arranged between the two adjacent work areas to separate the two work areas. The top of the partition plate 19 is connected to the top of the frame 1 by a first lifting mechanism 20. The first lifting mechanism 20 drives the partition plate 19 to rise to allow the workpiece carrier 18 to pass through. The partition plate 19 can separate each work area, so that the cleaning processes of each work area do not interfere with each other. When the rotating mechanism 3 needs to drive the workpiece to rotate to the next work area, the first lifting mechanism 20 drives the partition plate 19 to rise to allow the workpiece carrier 18 to pass through. After the workpiece carrier 18 passes through, the first lifting mechanism 20 drives the partition plate 19 to descend, and then each work area starts its work.

[0036] Specifically, the first lifting mechanism 20 can adopt a pneumatic cylinder or an oil cylinder, a guide structure is arranged on the rack 1 above the partition plate 19, for example, two clamping plates are arranged in parallel and are spaced apart, the two side edges of the two clamping plates are fixedly connected through a connecting plate, the top of the partition plate 19 is arranged between the two clamping plates, the first lifting mechanism 20 drives the partition plate 19 to lift between the two clamping plates, and the guide for lifting the partition plate 19 is realized, and further, in order to avoid relative friction between the connecting plate and the partition plate 19 and affect the lifting of the partition plate 19, a roller is fixedly arranged on the side edge of the partition plate 19 and is in rolling connection with the connecting plate.

[0037] In the embodiment of the utility model, the periphery of the rotating mechanism 3 is provided with a protective cover 21, the protective cover 21 is fixedly arranged on the rack 1, or the protective cover 21 is fixedly connected with the outer wall of the rotating mechanism 3, the protective cover 21 is provided with an annular hole 22 for the workpiece bracket 18 to pass through, the middle part of the workpiece bracket 18 is arranged in the annular hole 22, the workpiece bracket 18 is in Z-shaped structure, and one end of the workpiece bracket 18 arranged in the working area is below the horizontal height of one end connected with the rotating base 17, and one end of the workpiece bracket 18 at the horizontal height passes through the annular hole 22, that is, after one end of the workpiece bracket 18 at the horizontal height is fixedly connected with the rotating base 17, it horizontally passes through the annular hole 22, then the middle part of the workpiece bracket 18 is fixedly connected with one end of the workpiece after extending downward, the workpiece bracket 18 and the rotating base 17 can be detachably connected through bolts, facilitating the installation and dismounting of the workpiece bracket 18. The protective cover 21 can protect the rotating mechanism 3, the annular hole 22 is arranged at a high position, further avoiding water in the cleaning process from entering the rotating mechanism 3 and affecting the rotating mechanism 3.

[0038] The cleaning mechanism 11 comprises a bottom-opened cleaning cover 111, which can be a bottom-opened box structure, and the top and the periphery of the cleaning cover 111 are provided with cover walls, so as to reduce the splashing of the cleaning liquid, and the top of the cleaning cover 111 is fixedly connected with the top of the rack 1 through a second lifting mechanism 112, in the embodiment, the second lifting mechanism 112 can be a pneumatic cylinder or an oil cylinder, or other lifting mechanisms commonly used in the prior art, after the second lifting mechanism 112 drives the cleaning cover 111 to descend, the cleaning cover 111 is arranged around the periphery of the workpiece on the workpiece bracket 18, in order to ensure that the cleaning cover 111 can be accurately covered on the workpiece at the corresponding position after descending, and avoid the cleaning cover 111 from shaking or deviating during lifting, the second lifting mechanism 112 can adopt a plurality of interval arranged pneumatic cylinders or oil cylinders.

[0039] The inner wall of the cleaning cover 111 is fixed with a plurality of cleaning nozzles 113, the cleaning nozzles 113 are connected with the output end of a cleaning water pump 114 through flexible water pipes, the input end of the cleaning water pump 114 is communicated with a cleaning tank 115, the cleaning water pump 114 sends the cleaning liquid in the cleaning tank 115 to the cleaning nozzles 113, and then the cleaning liquid is sprayed out through the cleaning nozzles 113 to clean the workpiece; the bottom of the cleaning area 5 is provided with a cleaning waste water tank 116, and the cleaning liquid after cleaning the workpiece falls into the cleaning waste water tank 116; and the liftable cleaning cover 111 can surround the workpiece to be cleaned, so that each part of the workpiece can be washed, and the sprayed cleaning liquid can be limited to prevent the cleaning liquid from splashing everywhere.

[0040] In the embodiment, in order to realize recycling of the cleaning liquid, the cleaning waste water in the cleaning waste water tank 116 can also be sent to the cleaning tank 115 through a water pipe, specifically, the cleaning waste water tank 116 can be arranged above the cleaning tank 115, and the cleaning waste water is sent to the cleaning tank 115 under the action of gravity, or the cleaning waste water tank 116 and the cleaning tank 115 are connected through a water pump, and the cleaning waste water can be filtered through a filtering device during the sending process.

[0041] In the embodiment of the utility model, the rinsing mechanism 12 includes the rinsing cover 121 that bottom is equipped with the opening, the rinsing cover 121 can be the box body structure of bottom opening, its top and all around are provided with cover wall, thereby reducing the splash of cleaning liquid, the top of rinsing cover 121 is fixedly connected with the top of rack 1 through third lifting mechanism 122, in the embodiment of the utility model, third lifting mechanism 122 can be pneumatic cylinder or oil cylinder, or other lifting mechanism commonly seen in the prior art, after third lifting mechanism 122 drives rinsing cover 121 to descend, rinsing cover 121 surrounds and places at the periphery of the workpiece on workpiece carrier 18, a plurality of rinsing nozzles 123 are fixedly arranged on the inner wall of rinsing cover 121, the rinsing nozzles 123 are connected with the output end of a rinsing water pump 124 through flexible water pipes, the input end of the rinsing water pump 124 is communicated with a rinsing tank 125, the rinsing water pump 124 sends the rinsing liquid in the rinsing tank 125 to the rinsing nozzles 123, and then the rinsing liquid is sprayed out through the rinsing nozzles 123 to clean the workpiece, the bottom of the rinsing area 6 is provided with a rinsing waste water tank 126, and the liftable rinsing cover 121 can surround the workpiece to be rinsed, so that each part of the workpiece can be washed, and the sprayed rinsing liquid can be limited to prevent the rinsing liquid from splashing everywhere.

[0042] In the embodiment, in order to realize the recycling of the rinsing liquid, the rinsing wastewater tank 126 can also be connected to the cleaning tank 115 through a water pipe, and the rinsing wastewater tank 126 can be arranged above the rinsing tank 125, the rinsing wastewater is sent to the rinsing tank 125 under the action of gravity, or the rinsing wastewater tank 126 and the rinsing tank 125 are connected through a water pump, and the rinsing wastewater can be filtered through a filtering device during the sending process.

[0043] The wind cutting mechanism 13 comprises a wind cutting cover 131 provided with an opening at the bottom, and the top of the wind cutting cover 131 is fixedly connected to the top of the rack 1 through a fourth lifting mechanism 132; in the embodiment, the fourth lifting mechanism 132 can be a pneumatic cylinder or an oil cylinder, or other lifting mechanisms commonly used in the prior art; after the fourth lifting mechanism 132 drives the wind cutting cover 131 to descend, the wind cutting cover 131 surrounds the periphery of the workpiece placed on the workpiece bracket 18, a plurality of blowing nozzles 133 are fixedly arranged on the inner wall of the wind cutting cover 131, the blowing nozzles 133 are communicated with the output end of a wind cutting fan 134 through a pipeline, and the liftable wind cutting cover 131 can surround the workpiece to be rinsed, so that the workpiece can be dried by blowing air on each part of the workpiece.

[0044] The drying mechanism 14 comprises a drying fan 141 and a drying heating mechanism 142 arranged at the top of the working area; the output end of the drying fan 141 is communicated with the input end of the drying heating mechanism 142, and the output end of the drying heating mechanism 142 faces the workpiece on the workpiece bracket 18 in the working area; hot air is blown to the workpiece to effectively dry the workpiece.

[0045] In the embodiment of the utility model, the cooling mechanism 15 comprises a cooling fan 151 arranged at the top of the cooling area 10, the cooling fan 151 is connected with a condensing machine 152, and the outlet of the cooling fan 151 faces the workpiece on the workpiece bracket 18 in the cooling area 10; the cooling fan 151 blows low-temperature air condensed to the workpiece to realize rapid cooling of the workpiece.

[0046] In the embodiment of the utility model, the inside of the shell 2 is divided into two chambers, the rotating mechanism 3 and each work area are located in the first chamber, the cleaning tank 115, the rinsing tank 125, the cleaning water pump 114, the rinsing water pump 124, the air cutting fan 134, the filter and the like are arranged in the second chamber, so as to facilitate the centralized management and maintenance of the cleaning tank 115, the rinsing tank 125, the cleaning water pump 114, the rinsing water pump 124, the air cutting fan 134, the filter and the like, the top of the shell body is provided with an opening in communication with the second chamber, for entering the second chamber to maintain the equipment inside it. The top of the shell 2 is provided with a fence around, to ensure the installation of operation, the operator can climb to the top of the shell 2 through the hook straight ladder. In order to facilitate the maintenance of the first chamber, the side wall of the shell 2 is provided with a door plate, when the door plate is opened, the operator can enter the first chamber.

[0047] Working principle: the operator places the workpiece to be cleaned on the workpiece bracket 18 in the upper and lower discharge area 4 at the upper and lower discharge port 16, then the first lifting mechanism 20 drives the partition plate 19 to rise, the rotating mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 is rotated to the next work area, the workpiece bracket 18 in the upper and lower discharge area 4 is rotated to the cleaning area 5, the first lifting mechanism 20 drives the partition plate 19 to descend, and the adjacent two work areas are divided. At this time, another workpiece bracket 18 is rotated to the upper and lower discharge area 4, and the operator places new workpieces to be cleaned on the workpiece bracket 18.

[0048] In the cleaning area 5, the second lifting mechanism 112 drives the cleaning cover 111 to move downwards to cover the periphery of the workpiece to be cleaned, the cleaning water pump 114 pumps the cleaning liquid in the cleaning tank 115 into the cleaning spray head 113, and then sprays it from the cleaning spray head 113, to flush the workpiece to be cleaned on the workpiece bracket 18. During the flushing process, the second lifting mechanism 112 can drive the cleaning cover 111 to move up and down as needed, to flush each part of the workpiece. The waste water generated by flushing falls into the cleaning waste water tank 116, which can be filtered and pumped into the cleaning tank 115 for reuse as needed.

[0049] After the cleaning is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upward, and then the first lifting mechanism 20 drives the partition plate 19 to rise, and the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 is rotated to the next working area, and the workpiece bracket 18 in the cleaning area 5 is moved to the rinsing area 6, and then the first lifting mechanism 20 drives the partition plate 19 to descend, so as to separate the adjacent two working areas. In the feeding and discharging area 4, the operator feeds the new workpiece to be cleaned, and the new workpiece to be cleaned is cleaned in the cleaning area 5. In the rinsing area 6, the third lifting mechanism 122 drives the rinsing cover 121 to move downward to cover the periphery of the workpiece to be rinsed, and then the rinsing water pump 124 pumps the rinsing liquid in the rinsing tank 125 into the rinsing nozzle 123, and then sprays it out from the rinsing nozzle 123, so as to flush the workpiece to be rinsed on the workpiece bracket 18. During the flushing process, the second lifting mechanism 112 can drive the rinsing cover 121 to move up and down as needed to flush each part of the workpiece. The waste water generated by the flushing falls into the rinsing waste water tank 126, which can be reused after being filtered by the water pump and pumped into the rinsing tank 125.

[0050] After the work in each working area is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upward, the third lifting mechanism 122 drives the rinsing cover 121 to move upward, and then the first lifting mechanism 20 drives the partition plate 19 to rise, and the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 is rotated to the next working area, and then the first lifting mechanism 20 drives the partition plate 19 to descend, so as to separate the adjacent two working areas. In the feeding and discharging area 4, the operator feeds the new workpiece to be cleaned, and the new workpiece to be cleaned is cleaned in the cleaning area 5. In the rinsing area 6, the new workpiece to be rinsed is rinsed. In the air cutting area, the fourth lifting mechanism 132 drives the air cutting cover 131 to move downward to cover the periphery of the workpiece to be air cut, and the air cutting fan 134 is started to blow the air cutting nozzle 133 to blow the workpiece.

[0051] After the work in each working area is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upward, the third lifting mechanism 122 drives the rinsing cover 121 to move upward, and the fourth lifting mechanism 132 drives the air cutting cover 131 to move upward, and then the first lifting mechanism 20 drives the partition plate 19 to rise, and the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 is rotated to the next working area, and then the first lifting mechanism 20 drives the partition plate 19 to descend, so as to separate the adjacent two working areas. In the feeding and discharging area 4, the operator feeds the new workpiece to be cleaned, and the new workpiece to be cleaned is cleaned in the cleaning area 5. In the rinsing area 6, the new workpiece to be rinsed is rinsed, and the new workpiece to be air cut is air cut in the air cutting area. In the first drying area 8, the airflow blown by the drying fan 141 is heated by the drying heating mechanism 142 and then blown to the workpiece to dry the workpiece.

[0052] After the work of each work area is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upwards, the third lifting mechanism 122 drives the rinsing cover 121 to move upwards, the fourth lifting mechanism 132 drives the air cutting cover 131 to move upwards, then the first lifting mechanism 20 drives the partition plate 19 to rise, the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 rotates to the next work area, then the first lifting mechanism 20 drives the partition plate 19 to descend, and the two adjacent work areas are separated. In the feeding and discharging area 4, an operator feeds new workpieces to be cleaned, the cleaning area 5 is used for cleaning the new workpieces to be cleaned, the rinsing area 6 is used for rinsing the new workpieces to be rinsed, the air cutting area is used for air cutting the new workpieces to be air cut, the first drying area 8 is used for drying the new workpieces to be dried, and the second drying area 9 is used for drying the workpieces again after the workpieces pass through the first drying area 8, so that the drying effect is ensured.

[0053] After the work of each work area is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upwards, the third lifting mechanism 122 drives the rinsing cover 121 to move upwards, the fourth lifting mechanism 132 drives the air cutting cover 131 to move upwards, then the first lifting mechanism 20 drives the partition plate 19 to rise, the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 rotates to the next work area, then the first lifting mechanism 20 drives the partition plate 19 to descend, and the two adjacent work areas are separated. In the feeding and discharging area 4, an operator feeds new workpieces to be cleaned, the cleaning area 5 is used for cleaning the new workpieces to be cleaned, the rinsing area 6 is used for rinsing the new workpieces to be rinsed, the air cutting area is used for air cutting the new workpieces to be air cut, the first drying area 8 is used for drying the new workpieces to be dried, and the second drying area 9 is used for drying the workpieces again after the workpieces pass through the first drying area 8, so that the drying effect is ensured.

[0054] After the work of each work area is completed, the second lifting mechanism 112 drives the cleaning cover 111 to move upwards, the third lifting mechanism 122 drives the rinsing cover 121 to move upwards, the fourth lifting mechanism 132 drives the air cutting cover 131 to move upwards, then the first lifting mechanism 20 drives the partition plate 19 to rise, the lifting mechanism drives the rotating seat 17 to rotate, so that the workpiece bracket 18 rotates to the next work area, then the first lifting mechanism 20 drives the partition plate 19 to descend, and the two adjacent work areas are separated. In the feeding and discharging area 4, an operator feeds new workpieces to be cleaned, the cleaning area 5 is used for cleaning the new workpieces to be cleaned, the rinsing area 6 is used for rinsing the new workpieces to be rinsed, the air cutting area is used for air cutting the new workpieces to be air cut, the first drying area 8 is used for drying the new workpieces to be dried, and the second drying area 9 is used for drying the workpieces again after the workpieces pass through the first drying area 8, so that the drying effect is ensured.

[0055] The utility model discloses a rotating mechanism 3 drives workpiece bracket 18 moves in different work area in proper order, realizes to the surface of workpiece and carries out cleaning, realizes cleaning, rinsing, air cutting drying, primary drying, secondary drying and cooling to workpiece respectively, can clean six workpieces simultaneously, improves cleaning efficiency greatly, cleaning mechanism 11, rinsing mechanism 12 and air cutting mechanism 13 can rise and fall, can carry out key cleaning to the specific position of the part of shock tower one type existence recess, improves cleaning effect, improves the qualified rate.

[0056] In the description of the utility model, it is understood that the terms "center", "length", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "inner", "outer", "peripheral side", "circumferential direction" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the system or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model.

[0057] In the description of the utility model, the meaning of "a plurality of" is at least two, for example, two, three and the like, unless otherwise explicitly specified and limited.

[0058] In the utility model, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or can be integrated; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium; can be the communication or interaction relationship between two elements, unless otherwise explicitly limited. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0059] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, the skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of different embodiments or examples without contradiction.

[0060] The above is only the preferred embodiment of the utility model, and does not limit the utility model, and any modification, equivalent replacement, improvement and the like made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A workpiece surface cleaning apparatus, characterized by, The utility model provides a kind of automatic washing and drying machine, including rack (1), the shell (2) is equipped on the rack (1), rotating mechanism (3) is fixedly arranged in the shell (2), and the periphery of rotating mechanism (3) is distributed with multiple work areas in turn with rotating mechanism (3) as center, and multiple work areas are respectively feeding area (4), cleaning area (5), rinsing area (6), wind cutting area (7), first drying area (8), second drying area (9) and cooling area (10), cleaning mechanism (11) is arranged in the cleaning area (5) and can be lifted, rinsing mechanism (12) is arranged in the rinsing area (6) and can be lifted, wind cutting mechanism (13) is arranged in the wind cutting area (7) and can be lifted, drying mechanism (14) is arranged in the first drying area (8) and the second drying area (9), and cooling mechanism (15) is arranged in the cooling area (10).

2. A workpiece surface cleaning apparatus as defined in claim 1, wherein The shell (2) is equipped with feeding opening (16) for feeding around the feeding area (4), and the rotating shaft of rotating mechanism (3) is vertically arranged and fixedly connected with rotating seat (17), and the periphery of rotating seat (17) is fixedly provided with one-to-one workpiece carrier (18) that extends into the work area for carrying workpiece, and rotating mechanism (3) drives workpiece carrier (18) to rotate axially so that each workpiece carrier (18) passes through each work area in turn, and the top of separating plate (19) is connected with the top of rack (1) by first lifting mechanism (20) between adjacent two work areas, and the separating plate (19) is lifted by first lifting mechanism (20) to pass through workpiece carrier (18), and the periphery of rotating mechanism (3) is provided with protective cover (21), and the protective cover (21) is provided with annular hole (22) for workpiece carrier (18) to pass through, and the middle part of workpiece carrier (18) is arranged in annular hole (22), and workpiece carrier (18) is in Z-shaped structure, and one end of workpiece carrier (18) arranged in the work area is below the horizontal height of one end connected with rotating seat (17), and one end of workpiece carrier (18) at high level passes through annular hole (22). The cleaning mechanism (11) includes a bottom opening cleaning cover (111), and the top of the cleaning cover (111) is fixedly connected with the top of the rack (1) by the second lifting mechanism (112), and after the second lifting mechanism (112) drives the cleaning cover (111) to descend, the cleaning cover (111) surrounds the periphery of the workpiece placed on the workpiece carrier (18), a plurality of cleaning nozzles (113) are fixedly arranged on the inner wall of the cleaning cover (111), the cleaning nozzles (113) are communicated with the cleaning tank (115) by the cleaning water pump (114), and the bottom of the cleaning area (5) is provided with a cleaning wastewater tank (116).

3. The workpiece surface cleaning apparatus of claim 1, wherein The rinsing mechanism (12) comprises a rinsing cover (121) with an opening at the bottom, and the top of the rinsing cover (121) is fixedly connected with the top of the rack (1) through a third lifting mechanism (122); after the third lifting mechanism (122) drives the rinsing cover (121) to descend, the rinsing cover (121) surrounds the periphery of the workpiece placed on the workpiece bracket (18); a plurality of rinsing nozzles (123) are fixedly arranged on the inner wall of the rinsing cover (121); the rinsing nozzles (123) are communicated with a rinsing groove (125) through a rinsing water pump (124); and the bottom of the rinsing area (6) is provided with a rinsing wastewater groove (126).

4. The workpiece surface cleaning apparatus of claim 1, wherein The air cutting mechanism (13) comprises an air cutting cover (131) with an opening at the bottom, and the top of the air cutting cover (131) is fixedly connected with the top of the rack (1) through a fourth lifting mechanism (132); after the fourth lifting mechanism (132) drives the air cutting cover (131) to descend, the air cutting cover (131) surrounds the periphery of the workpiece placed on the workpiece bracket (18); a plurality of blowing nozzles (133) are fixedly arranged on the inner wall of the air cutting cover (131); and the blowing nozzles (133) are communicated with the output end of an air cutting fan (134) through a pipeline.

5. The workpiece surface cleaning apparatus of claim 1, wherein The drying mechanism (14) comprises a drying fan (141) and a drying heating mechanism (142) arranged at the top of the working area; the output end of the drying fan (141) is communicated with the input end of the drying heating mechanism (142); and the output end of the drying heating mechanism (142) faces the workpiece on the workpiece bracket (18) in the working area.

6. The workpiece surface cleaning apparatus of claim 1, wherein The cooling mechanism (15) comprises a cooling fan (151) arranged at the top of the cooling area (10); the input port of the cooling fan (151) is connected with the output port of a condensing machine (152); and the output port of the cooling fan (151) faces the workpiece on the workpiece bracket (18) in the cooling area (10).

7. A workpiece surface cleaning apparatus as claimed in any one of claims 1 to 6, wherein The outer side of the working area is provided with an access door (23).