Omnibearing drying device for cleaned automobile parts

Through the combination of rotary telescopic clamping structure and intelligent drying components, the problem of incomplete drying of irregular parts is solved, and all-round efficient drying is achieved, which improves drying speed and quality.

CN223295178UActive Publication Date: 2025-09-02WUXI XINJIN MASCH TECH CO LTD
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Patent Information

Application Number
CN202422625276.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-09-02
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

The existing drying devices are not thoroughly drying at blind spots of irregular automobile parts, resulting in slow and uneven drying speed.

Method used

A comprehensive after-cleaning drying device for automotive spare parts is designed, using a rotating telescopic clamping structure and a drying component with adjustable blowing angle. Combined with high-speed rotation and intelligent monitoring system, it ensures full drying of all directions and angles of the parts.

Benefits of technology

It significantly improves drying speed and uniformity, prevents water leakage in the cleaning basin, and ensures the quality and production efficiency of parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an all-dimensional drying device for cleaned automobile parts, which relates to the field of automobile part processing and comprises a cleaning basin, a supporting table arranged in the middle of the inside of the cleaning basin, a rotating table arranged at the top of the supporting table and an annular guide rail arranged on the same side of the supporting table and the rotating table. The inclination angle adjusting component is arranged in the middle of the annular guide rail in a sliding mode, the drying components are arranged on the two sides of the inclination angle adjusting component, and the feeding component is arranged on one side of the outer portion of the cleaning basin. According to the utility model, a high-speed rotating water throwing mode is matched with the drying air source capable of adjusting the blowing angle, so that the drying device is a drying device capable of drying cleaned automobile parts in all directions without dead angles.
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Description

Technical Field

[0001] The utility model mainly relates to the technical field of automobile parts processing, in particular to an all-round automobile parts cleaning and drying device. Background Art

[0002] During the production of automotive parts, cleaning and drying processes are often required, so corresponding drying devices are often used. Drying devices can effectively remove moisture and water from the air to prevent moisture from corroding, oxidizing, or deteriorating automotive parts, thereby ensuring the quality of the parts. By removing moisture, production interruptions or rework caused by moisture can be avoided, thereby improving production efficiency. In the production of some different automotive parts, different process links have different requirements for air dryness. Drying devices can adjust the degree of drying according to specific needs to meet the needs of different process links. Existing drying devices usually use drying ovens, which not only have slow drying speeds but are also prone to incomplete drying in dead corners. Therefore, a new, comprehensive drying device for automotive parts after cleaning is needed.

[0003] According to application number CN201821482877.9, a centrifugal drying box for small automotive parts is provided, which includes a drum, a base, an air inlet pipe, a fan and a heating device. The drum is a cylindrical barrel cavity, and a motor is provided in the base. The drum is installed on the base, and the center of the bottom of the drum is connected to the output shaft of the motor. A plurality of vertical rectangular partition grooves are evenly provided on the inner wall of the drum, and a mesh plate is provided at the bottom of the partition groove. A plug-in safety net is provided in the middle of the partition groove. The air inlet pipe is vertically located on the central axis of the drum, and the air outlet of the air inlet pipe is located at the bottom of the drum. The upper end of the air inlet pipe is connected to one end of the fan, and the fan is located outside the drum. The other end of the fan is connected to the heating device pipeline, and the heating device is connected to the external ventilation pipe. Small automotive parts are placed in the partition groove of the drum and then fixed with a safety net. The air is heated by the heating device and then passes into the interior of the drum through the fan and the air inlet pipe. At the same time, the motor of the base drives the drum to rotate, thereby realizing the drying of small automotive parts.

[0004] The above document can achieve the effect of uniform drying of automobile parts through the drying method of rotary drying, but there is a problem that the drying air flow is blown in from one direction and can dry the blind corners of irregular parts. Utility Model Content

[0005] Based on this, the purpose of the present invention is to provide a comprehensive post-cleaning and drying device for automobile parts to solve the technical problems raised in the above background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solutions:

[0007] A comprehensive post-wash drying device for automobile parts comprises a washing basin, a support platform located in the middle of the washing basin, a rotating platform located on top of the support platform, an annular guide rail located on the same side of the support platform and the rotating platform, an inclination adjustment component slidably located in the middle of the annular guide rail, drying components located on both sides of the inclination adjustment component, and a feeding component located on one side of the outside of the washing basin.

[0008] Preferably, the support platform includes a first bearing seat, a first truncated table rotatably mounted on the top of the first bearing seat, a plurality of first telescopic rods distributed in a circular array on the top of the first truncated table, and a first rubber pad provided at the execution end of the top of the first telescopic rod.

[0009] Preferably, the rotating table includes a second bearing seat, a driving motor arranged on the top of the second bearing seat, a second frustum provided at the bottom of the second bearing seat and the central axis of which is connected to the actuator end of the driving motor, a plurality of second telescopic rods arranged in a circular array on the side wall of the second frustum, and a second rubber pad provided at the bottom actuator end of the second telescopic rod.

[0010] Preferably, the inclination adjustment component includes a sliding block sleeved on the middle part of the annular guide rail, a servo motor arranged on one side of the sliding block, a gear belt arranged on one end of the annular guide rail close to the servo motor, and a micro gear arranged at the execution end of the servo motor and meshing with the gear belt.

[0011] Preferably, the drying component includes a high-speed camera provided on one side of the sliding block close to the servo motor, and a hair dryer provided on the other side of the sliding block.

[0012] Preferably, the feeding component includes a mounting platform provided on one side of the outside of the washing basin, two third telescopic rods provided on the top of the mounting platform with the execution ends facing the washing basin, a curved plate provided on the execution ends of the two third telescopic rods, and two strip racks provided on the other side of the curved plate.

[0013] Preferably, the washing basin includes a curved notch on one side that engages with the curved plate, a plurality of curved support rods on the top of the other side that are connected to the rotating table, a plurality of support columns at the bottom of the washing basin, and a drain pipe at the bottom of the washing basin.

[0014] In summary, this technical solution has the following beneficial effects:

[0015] In this embodiment, the rotatable telescopic clamping structure design can clamp most automobile parts of different shapes but similar volumes and rotate at high speed. Combined with the drying component that can adjust the blowing angle, the automobile parts can be fully dried in all directions and angles during operation. The high-speed rotating automobile parts themselves have excellent water-shedding performance, which greatly improves the drying speed.

[0016] By carrying the feeding component of the curved plate, the feeding and discharging can be carried out in conjunction with the support platform, and the entire cleaning basin can be closed after feeding to prevent the cleaning basin from leaking when the automobile parts rotate at high speed to shake off water. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is the axonometric drawing of the overall structure of the utility model;

[0018] Figure 2 This is a front view of the main structure of the utility model;

[0019] Figure 3 It is a side view schematic diagram of the main structure of the utility model;

[0020] Figure 4 This is a schematic diagram of the disassembly of the feeding component of the present invention.

[0021] Description of the drawings: 10. Washing basin; 11. Support platform; 12. Rotating platform; 13. Annular guide rail; 14. Inclination adjustment component; 15. Drying component; 16. Feeding component; 111. First bearing seat; 112. First truncated table; 113. First telescopic rod; 114. First rubber pad; 121. Second bearing seat; 122. Driving motor; 123. Second truncated table; 124. Second telescopic rod; 125. Second rubber pad; 141. Sliding block; 142. Servo motor; 143. Gear belt; 144. Micro gear; 151. High-speed camera; 152. Hair dryer; 161. Mounting platform; 162. Third telescopic rod; 163. Curved plate; 164. Strip rack; 101. Curved notch; 102. Curved support rod; 103. Support column; 104. Drain pipe. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0023] Example

[0024] Please refer to the attached Figure 1 、 3As shown in Figure 4, a comprehensive post-wash drying device for automobile parts includes a washing basin 10, a support platform 11 provided in the middle of the washing basin 10, a rotating platform 12 provided on the top of the support platform 11, an annular guide rail 13 provided on the same side of the support platform 11 and the rotating platform 12, an inclination adjustment component 14 slidably provided in the middle of the annular guide rail 13, drying components 15 provided on both sides of the inclination adjustment component 14, and a feeding component 16 provided on one side of the outside of the washing basin 10; the feeding component 16 includes a mounting portion provided on one side of the outside of the washing basin 10. The platform 161 includes two third telescopic rods 162 disposed on the top of the mounting platform 161 with the execution ends facing the washing basin 10, a curved plate 163 disposed at the execution ends of the two third telescopic rods 162, and two strip frames 164 disposed on the other side of the curved plate 163; the washing basin 10 includes a curved notch 101 disposed on one side and engaged with the curved plate 163, multiple curved support rods 102 disposed on the top of the other side connected to the rotating platform 12, multiple support columns 103 disposed at the bottom of the washing basin 10, and a drain pipe 104 disposed at the bottom of the washing basin 10.

[0025] It should be noted that the relative distance between the two strip frames 164 should be greater than the rotation diameter of the multiple first telescopic rods 113 to prevent blockage during the rotation process. When the first telescopic rods 113 are fully retracted, the height of the first rubber pad 114 should be lower than the height of the two strip frames 164.

[0026] Furthermore, before starting to dry, the two third telescopic rods 162 are in a retracted state, and during drying, the automobile parts are placed on top of the two strip racks 164;

[0027] Furthermore, the two third telescopic rods 162 are extended synchronously, pushing the curved plate 163 and the two strip racks 164 toward the washing basin 10 until the curved plate 163 engages with the curved notch 101 , and the auto parts above the strip racks 164 are placed on top of the support platform 11 .

[0028] Please refer to the attached Figure 1 、 2 As shown, the support platform 11 includes a first bearing seat 111, a first truncated platform 112 rotatably mounted on the top of the first bearing seat 111, a plurality of first telescopic rods 113 arranged in a circular array on the top of the first truncated platform 112, and a first rubber pad 114 provided at the top actuator end of the first telescopic rod 113; the rotating platform 12 includes a second bearing seat 121, a driving motor 122 provided at the top of the second bearing seat 121, a second truncated platform 123 provided at the bottom of the second bearing seat 121 and with the central axis connected to the actuator end of the driving motor 122, a plurality of second telescopic rods 124 arranged in a circular array on the side wall of the second truncated platform 123, and a second rubber pad 125 provided at the bottom actuator end of the second telescopic rod 124.

[0029] It should be noted that due to the irregular surface shape of automotive parts, each first telescopic rod 113 and each second telescopic rod 124 are activated simultaneously but stopped independently. Each first rubber pad 114 and second rubber pad 125 is equipped with a pressure sensor. When the pressure sensor reading reaches a certain value, the corresponding first telescopic rod 113 and each second telescopic rod 124 will stop extending, thereby achieving the purpose of adapting to the irregular surface shape of automotive parts.

[0030] Furthermore, a plurality of first telescopic rods 113 distributed in a circular array on the top of the first truncated platform 112 extend together, and respectively press against the bottom of the automobile component through each first rubber pad 114 to lift it up;

[0031] Furthermore, a plurality of second telescopic rods 124 arranged in a circular array on the side wall of the second truncated cone 123 extend together, and respectively press against the top of the automobile parts through respective second rubber pads 125 to align and apply pressure;

[0032] Furthermore, when the readings of the pressure sensors inside the first rubber pads 114 and the second rubber pads 125 reach a certain value, the corresponding first telescopic rods 113 and the second telescopic rods 124 stop extending, clamping the automotive parts between the first truncated platform 112 and the second truncated platform 123;

[0033] Furthermore, the driving motor 122 is started, driving the connected first table 112 to rotate under the second bearing seat 121, thereby driving the automobile parts and the first table 112 to rotate on top of the first bearing seat 111, and accelerating the rotation to a certain speed to swing water, and the swinging water is discharged outward through the drain pipe 104 at the bottom of the washing basin 10.

[0034] Please refer to the attached Figure 1 、 2 As shown in Figure 3, the inclination adjustment component 14 includes a sliding block 141 mounted on the middle of the annular guide rail 13, a servo motor 142 provided on one side of the sliding block 141, a gear belt 143 provided on one end of the annular guide rail 13 close to the servo motor 142, and a micro gear 144 provided on the execution end of the servo motor 142 and engaged with the gear belt 143; the drying component 15 includes a high-speed camera 151 provided on one side of the sliding block 141 close to the servo motor 142, and a hair dryer 152 provided on the other side of the sliding block 141.

[0035] It should be noted that the high-speed camera 151 has the analytical ability to identify tiny water droplets, can determine the dryness of the surface of high-speed rotating automobile parts, and send electrical signals to control the start and stop of various electrical components. The servo motor 142 has the ability to rotate forward and reverse at a constant speed. When the sliding block 141 slides to one end of the annular guide rail 13, it can reverse, allowing the sliding block 141 to slide in a circular manner in the middle of the annular guide rail 13. The blowing direction of the blower 152 is consistent with the monitoring direction of the high-speed camera 151.

[0036] Furthermore, the high-speed camera 151 monitors the rotating automobile parts and sends a signal to start the servo motor 142 and simultaneously starts the blower 152 to blow air;

[0037] Furthermore, the servo motor 142 drives the micro gear 144 to rotate and mesh with the gear belt 143, so that the sliding block 141 slides cyclically in the middle of the annular guide rail 13, constantly adjusting the monitoring direction of the high-speed camera 151 and the blowing direction of the blower 152;

[0038] Furthermore, when the high-speed camera 151 determines that the automobile parts are dry, it sends a signal to stop the servo motor 142 and the blower 152 from running;

[0039] Furthermore, the driving motor 122 stops running, the automobile parts stop rotating, all the first telescopic rods 113 and the second telescopic rods 124 are completely retracted, and the automobile parts fall back onto the two strip racks 164;

[0040] Furthermore, the two third telescopic rods 162 are retracted synchronously, and the curved plate 163 and the two strip racks 164 are pulled out from the washing basin 10, so that the automobile parts can be replaced.

[0041] The working principle of this utility model is:

[0042] First, before drying, the two third telescopic rods 162 are in a retracted state. During drying, the auto parts are placed on top of the two strip racks 164, and the two third telescopic rods 162 are extended synchronously, and the curved plate 163 and the two strip racks 164 are pushed toward the washing basin 10 until the curved plate 163 engages with the curved notch 101, and the auto parts on the strip racks 164 are placed on the top of the support platform 11; the multiple first telescopic rods 113 distributed in a circular array on the top of the first truncated platform 112 are extended together, and the bottom of the auto parts are respectively pressed against by each first rubber pad 114. The second telescopic rods 124 arranged in a circular array on the side wall of the second truncated platform 123 extend together, and through each second rubber pad 125, they respectively press against the top of the auto parts and align and press. When the readings of the pressure sensors inside each first rubber pad 114 and the second rubber pad 125 reach a certain value, the corresponding first telescopic rods 113 and second telescopic rods 124 stop extending, clamping the auto parts between the first truncated platform 112 and the second truncated platform 123. The drive motor 122 is started, and the connected first truncated platform 112 is driven by the drive motor 122. The first circular table 112 rotates under the second bearing seat 121, thereby driving the automobile parts and the first circular table 112 to rotate on the top of the first bearing seat 111, and accelerating to a certain speed to spin water, and the spun water is discharged outward from the drain pipe 104 at the bottom of the washing basin 10; the high-speed camera 151 monitors the rotating automobile parts and sends a signal to start the servo motor 142, and at the same time starts the hair dryer 152 to blow air, and the servo motor 142 drives the micro gear 144 to rotate and engage with the gear belt 143, so that the sliding block 141 slides cyclically in the middle of the annular guide rail 13, continuously adjusting the rotation speed. Adjust the monitoring direction of the high-speed camera 151 and the blowing direction of the hair dryer 152. When the high-speed camera 151 determines that the auto parts are dry, it sends a signal to stop the servo motor 142 and the hair dryer 152, the drive motor 122 stops running, the auto parts stop rotating, all the first telescopic rods 113 and the second telescopic rods 124 are completely retracted, the auto parts fall back onto the two strip racks 164, the two third telescopic rods 162 are synchronously retracted, the curved plate 163 and the two strip racks 164 are pulled out of the washing basin 10, and the auto parts can be replaced.

[0043] The above embodiments are only for illustrating the technical idea of ​​the present invention and cannot be used to limit the protection scope of the present invention. Any changes made on the basis of the technical solution in accordance with the technical idea proposed by the present invention shall fall within the protection scope of the present invention.

Claims

1. A comprehensive automobile parts cleaning and drying device, comprising a cleaning basin (10), characterized in that , a support platform (11) provided in the middle of the interior of the washing basin (10), a rotating platform (12) provided on the top of the support platform (11), an annular guide rail (13) provided on the same side of the support platform (11) and the rotating platform (12), an inclination adjustment component (14) slidably provided in the middle of the annular guide rail (13), drying components (15) provided on both sides of the inclination adjustment component (14), and a feeding component (16) provided on one side of the exterior of the washing basin (10).

2. The all-round automobile parts cleaning and drying device according to claim 1, characterized in that The support platform (11) includes a first bearing seat (111), a first truncated platform (112) rotatably mounted on the top of the first bearing seat (111), a plurality of first telescopic rods (113) arranged in a circular array on the top of the first truncated platform (112), and a first rubber pad (114) arranged at the top execution end of the first telescopic rod (113).

3. The all-round automobile parts cleaning and drying device according to claim 1, characterized in that The rotating platform (12) includes a second bearing seat (121), a driving motor (122) arranged on the top of the second bearing seat (121), a second truncated platform (123) arranged at the bottom of the second bearing seat (121) and having a central axis connected to the execution end of the driving motor (122), a plurality of second telescopic rods (124) arranged in a circular array on the side wall of the second truncated platform (123), and a second rubber pad (125) arranged at the bottom execution end of the second telescopic rod (124).

4. The all-round automobile parts cleaning and drying device according to claim 1, characterized in that The inclination adjustment component (14) includes a sliding block (141) sleeved on the middle part of the annular guide rail (13), a servo motor (142) provided on one side of the sliding block (141), a gear belt (143) provided on one end of the annular guide rail (13) close to the servo motor (142), and a micro gear (144) provided on the execution end of the servo motor (142) and meshing with the gear belt (143).

5. The all-round automobile parts cleaning and drying device according to claim 4, characterized in that The drying component (15) includes a high-speed camera (151) provided on one side of the sliding block (141) close to the servo motor (142), and a hair dryer (152) provided on the other side of the sliding block (141).

6. The all-round automobile parts cleaning and drying device according to claim 1, characterized in that The feeding component (16) includes a mounting platform (161) provided on one side of the outside of the washing basin (10), two third telescopic rods (162) provided on the top of the mounting platform (161) and with the execution ends facing the washing basin (10), a curved plate (163) provided on the execution ends of the two third telescopic rods (162), and two strip frames (164) provided on the other side of the curved plate (163).

7. The all-round automobile parts cleaning and drying device according to claim 6, characterized in that The cleaning basin (10) includes a curved notch (101) provided on one side and engaged with the curved plate (163), a plurality of curved support rods (102) provided on the top of the other side and connected to the rotating platform (12), a plurality of support columns (103) provided at the bottom of the cleaning basin (10), and a drainage pipe (104) provided at the bottom of the cleaning basin (10).

Citation Information

Patent Citations

  • The invention discloses a centrifugal drying box for small parts of an automobile

    CN208901790U