A transfer transport assembly for cassette cleaning operations

By designing a transfer and transportation component for cartridge cleaning operations and utilizing the automated operation of the power frame and cleaning and drying components, the problems of large equipment space occupation and long pipeline layout in existing technologies have been solved, achieving efficient cleaning and drying of cartridges.

CN116534518BActive Publication Date: 2026-02-06NANJING HUAYITAI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202310617752.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-29
Publication Date
2026-02-06
Estimated Expiration
2043-05-29

AI Technical Summary

Technical Problem

In existing cartridge cleaning operations, the cleaning and drying equipment are operated independently, resulting in large space occupation, long pipeline layout, and the need for manual relocation, which leads to low efficiency.

Method used

Design a transfer and transportation component for cassette cleaning operations, including a power frame, a cleaning component, and a drying component. The cassette body is driven to rotate by a rotating component, and pure water and dry air are used for cleaning and drying, reducing the space occupied by the equipment, and automated transfer is achieved through input and output components.

Benefits of technology

It enables automated cleaning and drying of cartridges, reduces equipment space occupation, simplifies pipeline layout, improves efficiency, and reduces manual intervention.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116534518B_ABST
Patent Text Reader

Abstract

The application provides a transfer and transportation assembly for card cassette cleaning operation, and relates to the technical field of card cassette cleaning. The transfer and transportation assembly comprises a base, a power frame arranged on the base and used for supporting a card cassette body, a cleaning part arranged on the base and used for cleaning the card cassette body, and a drying part used for drying the card cassette body. The card cassette body is placed on the power frame, the power frame supports the card cassette body, the cleaning part cleans the card cassette body, and the drying part blows the card cassette body to dry water remaining on the surface of the card cassette body. The cleaning part and the drying part are arranged on the base and alternately work, the card cassette body does not need to be moved out of the base after being cleaned and then dried, the device occupies a small space, and pipeline arrangement is short.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of card cassette cleaning, in particular to a transfer and transportation assembly for card cassette cleaning operation. BACKGROUND

[0002] For glass substrates, a high-cleanliness production environment is very important, and the glass card cassette used for the transfer and transportation of glass substrates must also be cleaned, dried, and maintained after use.

[0003] However, in the existing card cassette cleaning operation, the main cleaning, drying, and maintenance equipment are operated independently, and the card cassette cleaning operation is transferred by manual or equipment assistance. The card cassette cleaning operation has the problems of large space occupation and long pipeline layout of the entire cleaning production line. SUMMARY

[0004] To overcome the deficiencies of the prior art, the present application provides a transfer and transportation assembly for card cassette cleaning operation, which includes a base, a power frame arranged on the base and used to support the card cassette body, and a cleaning member arranged beside the power frame on the base and used to clean the card cassette body, and a drying member used to dry the card cassette body.

[0005] To achieve the above-mentioned purposes, the card cassette body is placed on the power frame, which supports the card cassette body. The card cassette body is cleaned by the cleaning member, and the cleaned card cassette body is blown dry by the drying member. The cleaning member and the drying member are arranged on the base and work alternately. The card cassette body does not need to be moved out of the base after cleaning for drying. The device occupies a small space and has a short pipeline layout.

[0006] Further, the cleaning member includes a plurality of pure water supply pipes arranged on the base. Each pure water supply pipe is axially arranged and has a top end penetrating the base. Each pure water supply pipe penetrating the base is fixed with a tee joint. A first joint of the tee joint is fixed with an end of the pure water supply pipe penetrating the base. A second joint of the tee joint is fixedly connected with an axial A spray pipe. A third joint of the tee joint is fixedly connected with a radial B spray pipe. An end of the A spray pipe away from the tee joint is fixed with a C spray pipe. The center lines of the B spray pipe and the C spray pipe are parallel. The A spray pipe, the B spray pipe, and the C spray pipe are each provided with a nozzle on a side facing the card cassette body.

[0007] Through the above technical solution, the pure water enters the tee joint from the pure water supply pipe and enters the A spray pipe, the B spray pipe, and the C spray pipe, and is sprayed out through the nozzles on the A spray pipe, the B spray pipe, and the C spray pipe, and is uniformly sprayed on the surface of the card cassette body, and the dirt on the surface of the card cassette body is washed away, and the card cassette body is cleaned.

[0008] Further, the air-drying device comprises an air supply pipe fixed on the base, the air supply pipe is arranged axially and the air outlet end of the air supply pipe penetrates the base, the part of the air supply pipe penetrating the base is fixed with an air shower pipe, the air shower pipe is arranged axially, the air shower pipe is hollow in the inner cavity, the air shower pipe is open at one end facing the air supply pipe and communicates with the air supply pipe, the other end of the air shower pipe away from the air supply pipe is closed, and a plurality of nozzles communicating with the inner cavity of the air shower pipe are uniformly arranged on one side of the air shower pipe facing the card box body, and the plurality of nozzles are arrayed along the center line direction of the air shower pipe.

[0009] Through the above technical scheme, dry air enters the air shower pipe through the air supply pipe, and then is sprayed out through the nozzles on the air shower pipe to blow dry the residual water on the surface of the card box body.

[0010] Further, the base is rotationally connected with the power frame through a rotating piece.

[0011] Through the above technical scheme, the power frame is controlled to rotate through the rotating piece, and then the card box body on the power frame is rotated to be uniformly washed and air-dried.

[0012] Further, the rotating piece comprises a rotating motor and a gear box fixed on the base and located below the power frame, the shaft head of the rotating motor is fixedly connected with the input shaft of the gear box, the output shaft of the gear box is fixedly connected with an A gear, a square mounting plate is fixed at the middle position of the power frame, a circular groove is arranged at the middle position of the square mounting plate, a cylindrical shell is arranged in the circular groove, the cylindrical shell is fixed with the square mounting plate through screws, a B gear is fixed at the bottom end of the cylindrical shell and located beside the A gear and engaged with the A gear, and the B gear is coincident with the center line of the cylindrical shell.

[0013] Through the above technical scheme, the gear box is used to provide speed reduction and direction adjustment, the gear box is an existing structure, so it will not be described in detail here, the power is transmitted to the A gear through the gear box, the A gear is engaged with the B gear, the rotation of the A gear drives the rotation of the B gear, the B gear is fixedly connected with the cylindrical shell, the cylindrical shell is fixedly connected with the square mounting plate, the square mounting plate is fixedly connected with the power frame, so the rotation of the B gear drives the rotation of the cylindrical shell, the rotation of the cylindrical shell drives the rotation of the square mounting plate, and the rotation of the square mounting plate drives the rotation of the power frame, and then the card box body on the power frame is rotated.

[0014] Furthermore, the base is provided with an anti-rotation component to reduce the rotation of the power frame during the movement of the cartridge body. The anti-rotation component includes a fixing block that is fixedly connected to the lower surface of the power frame and located next to the square mounting plate. The lower surface of the fixing block is provided with a pin hole. A cylinder A is fixed on the base and located directly below the fixing block. The extended end of the cylinder A is fixed with a positioning pin that matches the pin hole.

[0015] With the above technical solution, the fixing block is welded to the power frame. When the cartridge body moves, the positioning pin is lifted by the action of cylinder A. At this time, the positioning pin is inserted into the pin hole, reducing the possibility of the power frame rotating during the movement of the cartridge body. When the cartridge body is completely inserted into the power frame 2, the positioning pin is driven to move down by the action of cylinder A, and the positioning pin is disconnected from the pin hole, which does not affect the rotation of the power frame and the cartridge body.

[0016] Furthermore, two A brackets are fixed on the upper surface of the base, located outside the power frame and arranged opposite to each other. The two A brackets are provided with input components to facilitate the cartridge body entering the power frame. Two B brackets are fixed on the upper surface of the base, located beside the power frame and the A brackets and arranged opposite to each other. The two B brackets are provided with output components to facilitate the cartridge body moving out of the power frame.

[0017] The above technical solution facilitates the entry of the cartridge body into the power frame through the input component, thereby enabling the cartridge body to be cleaned and dried. The output component facilitates the transport of the cartridge body and serves as a transition for the cartridge body to enter and exit the power frame.

[0018] Furthermore, the input component includes an A-plate fixed to the upper surface of the A-bracket. A plurality of radial A-connecting shafts are rotatably connected to the A-plate. Both ends of each A-connecting shaft extend through and are rotatably connected to the A-plate. An A-drive roller is fixed to one end of each A-connecting shaft extending through the A-plate, with an A-drive rod fixed between two opposing A-drive rollers. An A-main gear is fixed to the other end of each A-connecting shaft extending through the A-plate. An A-drive shaft located below the plurality of A-main gears is rotatably connected to the upper surface of each A-bracket. A plurality of A-secondary gears are fixed to the A-drive shafts, each meshing with an adjacent A-main gear. A protective shell is fixed to the A-plate, sleeved over the A-main gears and A-secondary gears. A drive motor for driving one of the A-main gears is fixed to the protective shell. The input component and the output component have the same structure.

[0019] Through the technical scheme, one of the A main gears is driven to rotate by the transmission motor, the rotation of the one of the A main gears drives the A secondary gear meshing with the A main gear to rotate, the rotation of the A secondary gear drives the A transmission shaft fixedly connected with the A secondary gear to rotate, the rotation of the A transmission shaft drives the other A secondary gears fixedly connected with the A transmission shaft to rotate, the rotation of the other A secondary gears drives the A main gears meshing with the A secondary gears to rotate, the rotation of the A main gears drives the A connecting shaft fixedly connected with the A main gears to rotate, the rotation of the A connecting shaft drives the A transmission roller fixedly connected with the A connecting shaft to rotate, the rotation of the A transmission roller drives the A transmission rod fixedly connected with the A transmission roller to rotate, the card box body is placed on the A transmission rod and the A transmission roller, and the rotation of the A transmission rod and the A transmission roller drives the card box body to move, so that the card box body is input and output.

[0020] Further, the upper surface of the power framework is provided with moving members for assisting the movement of the card box body on both sides, the moving members comprise B vertical plates fixed on both sides of the upper surface of the power framework and arranged along the direction in which the card box body outputs the power framework, each B vertical plate is rotatably connected with a plurality of radial B connecting shafts, both ends of the B connecting shafts are arranged out of the B vertical plate and rotatably connected with the B vertical plate, one end of the B connecting shaft arranged out of the B vertical plate is fixed with a B transmission roller, the other end of the B connecting shaft arranged out of the B vertical plate is fixed with a B main gear, a plurality of mounting ears located below the B main gear are fixed on the B vertical plate, a B transmission shaft is rotatably connected between the mounting ears, a plurality of B secondary gears meshing with adjacent B main gears are fixed on the B transmission shaft, an axially arranged transmission shaft is rotatably connected to the middle position inside the cylindrical shell, the bottom end of the transmission shaft is arranged out of the cylindrical shell and rotatably connected with the cylindrical shell, the part of the transmission shaft arranged out of the cylindrical shell is arranged out of the B gear and rotatably connected with the B gear, a C gear is fixed to the part of the transmission shaft arranged out of the B gear, a transmission motor is fixed to the base, a D gear is concentrically fixed to the shaft head of the transmission motor, the D gear is located beside the C gear and meshes with the C gear, an E gear is fixed to the end of the transmission shaft away from the C gear, a through hole communicating with the inner cavity of the cylindrical shell is formed in the cylindrical shell, a C transmission shaft is arranged in the through hole, the C transmission shaft is rotatably connected with the cylindrical shell, a F gear concentrically arranged with the C transmission shaft and located in the inner cavity of the cylindrical shell is fixed on the C transmission shaft, the F gear meshes with the E gear, both ends of the C transmission shaft are arranged out of the cylindrical shell through the through hole, both ends of the C transmission shaft arranged out of the cylindrical shell are arranged out of adjacent B vertical plates and rotatably connected with the B vertical plates, a G gear is fixed to the end of the C transmission shaft arranged out of the B vertical plate, a H gear is concentrically fixed to the middle position of the B transmission shaft, the H gear meshes with adjacent G gears.

[0021] Through the technical scheme, the transmission motor drives the D gear to rotate, the rotation of the D gear drives the C gear meshing with the D gear to rotate, the rotation of the C gear drives the transmission shaft fixedly connected with the C gear to rotate, the rotation of the transmission shaft drives the E gear fixedly connected with the transmission shaft to rotate, the rotation of the E gear drives the F gear meshing with the E gear to rotate, the rotation of the F gear drives the C transmission shaft fixedly connected with the F gear to rotate, the rotation of the C transmission shaft drives the G gear fixedly connected with the C transmission shaft to rotate, the rotation of the G gear drives the H gear meshing with the G gear to rotate, the rotation of the H gear drives the B transmission shaft fixedly connected with the H gear and arranged concentrically to rotate, the rotation of the B transmission shaft drives the B secondary gear fixedly connected with the B transmission shaft and arranged concentrically to rotate, the rotation of the B secondary gear drives the B primary gear meshing with the B secondary gear to rotate, the rotation of the B primary gear drives the B connecting shaft fixedly connected with the B primary gear to rotate, the rotation of the B connecting shaft drives the B transmission roller fixedly connected with the B connecting shaft to rotate, the card box body is placed on the B transmission rollers, and the rotation of the B transmission roller drives the card box body on the B transmission roller to move in the horizontal direction.

[0022] Further, the base is provided with a falling prevention piece for assisting the movement of the card box body, the falling prevention piece comprises a B cylinder fixed to the base, the B cylinder is arranged in the axial direction, the elongated end of the B cylinder is fixed with a guide rod, and the end of the guide rod away from the B cylinder is fixed with a gasket, and the gasket is in contact with the power framework.

[0023] Through the technical scheme, when the card box body enters or exits the power framework, the guide rod and the gasket are driven by the B cylinder to move upward and contact the power framework, so that the power framework is supported when the card box body just contacts the B transmission roller on the power framework, and the possibility of the card box body being tilted due to the uneven gravity of the power framework when the card box body enters or exits the power framework is reduced.

[0024] In summary, the card box cleaning operation transfer and transportation assembly has the following beneficial effects:

[0025] (1) The card box cleaning operation transfer and transportation assembly, the card box body is placed on the power framework, the power framework supports the card box body, the cleaning piece cleans the card box body, and the air drying piece blows the card box body after cleaning to dry the water remaining on the surface of the card box body, the cleaning piece and the air drying piece are arranged on the base to alternately work, the card box body does not need to be moved out of the base after cleaning for air drying, the device occupies a small space, and the pipeline is short.

[0026] (2) The card box cleaning operation transfer and transportation assembly, the rotation of the power framework is controlled by the rotating piece, and the card box body on the power framework is driven to rotate, so that the card box body is uniformly cleaned and dried.

[0027] (3) The transfer and transport assembly of the card box cleaning operation, through the input piece, the card box body enters the power frame, and then the card box body is cleaned and dried, through the output piece, the card box body is transported, and the card box body enters and exits the power frame, which plays a transition role without manual assistance. BRIEF DESCRIPTION OF DRAWINGS

[0028] The application will be further described and illustrated with reference to the accompanying drawings.

[0029] Figure 1 is the overall structure schematic diagram of the preferred embodiment of the application;

[0030] Figure 2 is the structure schematic diagram for embodying the air drying piece of the application;

[0031] Figure 3 is the structure schematic diagram for embodying the power frame of the application;

[0032] Figure 4 is the structure schematic diagram for embodying the A spray pipe of the application;

[0033] Figure 5 is the enlarged structure schematic diagram of A in the application; Figure 4

[0034] Figure 6 is the structure schematic diagram for embodying the air spray pipe of the application;

[0035] Figure 7 is the structure schematic diagram for embodying the C transmission shaft of the application;

[0036] Figure 8 is the structure schematic diagram for embodying the square mounting plate of the application;

[0037] Figure 9 is the enlarged structure schematic diagram of B in the application; Figure 8

[0038] Figure 10 is the structure schematic diagram for embodying the A gear of the application;

[0039] Figure 11 is the sectional structure schematic diagram of the cylindrical shell of the application;

[0040] Figure 12 is the structure schematic diagram for embodying the A support of the application;

[0041] Figure 13 is the structure schematic diagram for embodying the A main gear of the application;

[0042] Figure 14 ​​is the structure schematic diagram for embodying the fixed block of the present application Figure 13 is the structure schematic diagram for embodying the fixed block of the present application

[0043] Figure 15 is the structure schematic diagram for embodying the fixed block of the present application

[0044] Figure 16 is the structure schematic diagram for embodying the fixed block of the present application

[0045] Figure 17 is the structure schematic diagram for embodying the fixed block of the present application

[0046] Figure 18 is the structure schematic diagram for embodying the fixed block of the present application

[0047] Figure 19 is the structure schematic diagram for embodying the fixed block of the present application Figure 18 is the structure schematic diagram for embodying the fixed block of the present application

[0048] Reference signs: 1, base; 2, power framework; 3, card body; 301, outer frame; 302, support plate; 303, support rod; 4, cleaning part; 401, pure water supply pipe; 402, tee pipe; 403, A spray pipe; 404, B spray pipe; 405, C spray pipe; 406, nozzle; 5, air drying part; 501, air supply pipe; 502, air shower pipe; 503, spray head; 6, rotating part; 601, rotating motor; 602, gear box; 603, A gear; 604, square mounting plate; 605, circular groove; 606, cylindrical shell; 607, B gear; 7, anti-rotation part; 701, fixed block; 702, pin hole; 703, A air cylinder; 704, positioning pin; 8, A support; 9, input part; 901, A vertical plate; 902, A connecting shaft; 903, A transmission roller; 904, A transmission rod; 905, A main gear; 906, A transmission shaft; 907, A secondary gear; 908, protection shell; 909, transmission motor; 10, B support; 11, output part; 12, moving part; 1201, B vertical plate; 1202, B connecting shaft; 1203, B transmission roller; 1204, B main gear; 1205, mounting lug; 1206, B transmission shaft; 1207, B secondary gear; 1208, transmission shaft; 1209, C gear; 1210, transmission motor; 1211, D gear; 1212, E gear; 1213, through hole; 1214, C transmission shaft; 1215, F gear; 1216, G gear; 1217, H gear; 13, anti-falling part; 1301, B air cylinder; 1302, guide rod; 1303, gasket; 14, outer frame framework; 15, sealing plate DETAILED DESCRIPTION

[0049] The technical solutions of the present application will be described more clearly and completely by combining the drawings and the description of the preferred embodiments of the present application.

[0050] As Figures 1-19 shown, the transfer and transport assembly for the caddy cleaning operation of the preferred embodiment of the present application comprises a base 1 and a caddy body 3, the caddy body 3 is composed of an outer frame 301 and a plurality of horizontally arranged support plates 302 fixed on the outer frame 301, each support plate 302 is provided with a plurality of axial support rods 303.

[0051] As Figure 2 and Figure 3 , the base 1 is provided with a power framework 2 above for supporting the caddy body 3 and adapting to the caddy body 3, the base 1 is provided with a cleaning piece 4 beside the power framework 2 for cleaning the caddy body 3 and a drying piece 5 for drying the caddy body 3, the cleaning piece 4 is three and arranged on one side of the caddy body 3, the drying piece 5 is two and oppositely arranged outside the caddy body 3, the caddy body 3 is placed on the power framework 2, the caddy body 3 is supported by the action of the power framework 2, the caddy body 3 is cleaned by the action of the cleaning piece 4, the cleaned caddy body 3 is blown by the action of the drying piece 5, the surface of the caddy body 3 is dried, the cleaning piece 4 and the drying piece 5 are arranged on the base 1 alternately, the caddy body 3 does not need to be moved out of the base 1 after cleaning and then dried, the device occupies small space and the pipeline is short.

[0052] As Figure 3 and Figure 4 and Figure 5The cleaning piece 4 comprises several pure water supply pipes 401 arranged on the base 1, each of which is arranged axially and has a top end penetrating the base 1, and each of which is fixed with a tee pipe 402 penetrating the base 1, the first joint of the tee pipe 402 is fixed with the end of the pure water supply pipe 401 penetrating the base 1, the second joint of the tee pipe 402 is fixedly connected with an axial A spraying pipe 403, the third joint of the tee pipe 402 is fixedly connected with a radial B spraying pipe 404, the A spraying pipe 403 is fixed with a C spraying pipe 405 at an end away from the tee pipe 402, the center lines of the B spraying pipe 404 and the C spraying pipe 405 are parallel, each of the A spraying pipe 403, the B spraying pipe 404 and the C spraying pipe 405 is provided with a nozzle 406 on the side facing the card case body 3, the B spraying pipe 404 is hollow in the inner cavity, the end of the B spraying pipe 404 close to the tee pipe 402 is open and communicates with the tee pipe 402, the end of the B spraying pipe 404 away from the tee pipe 402 is closed, the A spraying pipe 403 is hollow in the inner cavity and open at the upper and lower ends, the end of the A spraying pipe 403 close to the tee pipe 402 communicates with the tee pipe 402, the C spraying pipe 405 is hollow in the inner cavity, the end of the C spraying pipe 405 close to the A spraying pipe 403 is open and communicates with the A spraying pipe 403, the end of the C spraying pipe 405 away from the A spraying pipe 403 is closed, the nozzles 406 on the A spraying pipe 403, the B spraying pipe 404 and the C spraying pipe 405 respectively communicate with the inner cavities of the A spraying pipe 403, the B spraying pipe 404 and the C spraying pipe 405, the base 1 is fixed with a water pump, the end of the pure water supply pipe 401 away from the tee pipe 402 communicates with the water outlet of the water pump through a pipeline, under the action of the water pump, external pure water enters the tee pipe 402 through the pure water supply pipe 401, and enters the A spraying pipe 403, the B spraying pipe 404 and the C spraying pipe 405 respectively, and is sprayed out through the nozzles 406 on the A spraying pipe 403, the B spraying pipe 404 and the C spraying pipe 405, uniformly sprayed on the surface of the card case body 3, and the dirt on the surface of the card case body 3 is washed away, so that the card case body 3 is cleaned.

[0053] As Figure 2 and Figure 3 and Figure 6The air supply pipe 501 is fixed on the base 1 and is arranged axially, and the air outlet end of the air supply pipe 501 penetrates the base 1, and the part of the air supply pipe 501 penetrating the base 1 is fixed with the air shower pipe 502, the air shower pipe 502 is arranged axially, the inner cavity of the air shower pipe 502 is hollow, the end of the air shower pipe 502 facing the air supply pipe 501 is open and communicates with the air supply pipe 501, and the end of the air shower pipe 502 away from the air supply pipe 501 is closed, and a plurality of nozzles 503 communicating with the inner cavity of the air shower pipe 502 are uniformly arranged on the side of the air shower pipe 502 facing the cassette body 3, the plurality of nozzles 503 are arrayed along the center line direction of the air shower pipe 502, and the air pump is fixed on the base 1, the end of the air supply pipe 501 away from the air shower pipe 502 communicates with the air outlet of the air pump through a pipeline, and under the action of the air pump, dry air enters the air shower pipe 502 through the air supply pipe 501, and then is sprayed out through the nozzles 503 on the air shower pipe 502 to blow dry the residual water on the surface of the cassette body 3.

[0054] As Figure 2 and Figure 3 and Figure 7 and Figure 8 and Figure 10 and Figure 11 In order to uniformly wash and dry the cassette body 3, the base 1 and the power framework 2 are rotationally connected through the rotating part 6, the power framework 2 is controlled to rotate through the action of the rotating part 6, and then the cassette body 3 on the power framework 2 is driven to rotate, so that the cassette body 3 is uniformly washed and dried.

[0055] As Figure 10 and Figure 11 The rotating part 6 includes a rotating motor 601 and a gear box 602 fixed on the base 1 and located below the power framework 2, the rotating motor 601 is a three-phase asynchronous motor, and provides rotating power for the device and the power framework 2 and the cassette body 3, the gear box 602 provides speed reduction and direction adjustment, the gear box 602 is a structure known in the art, and thus will not be described in detail, the shaft head of the rotating motor 601 is fixedly connected with the input shaft of the gear box 602, the output shaft of the gear box 602 is fixedly connected with an A gear 603, a square mounting plate 604 is fixed at the middle position of the power framework 2, a circular groove 605 is formed in the middle position of the square mounting plate 604, a cylindrical shell 606 penetrates the circular groove 605, the cylindrical shell 606 is fixed with the square mounting plate 604 through screws, a B gear 607 is fixed at the side of the A gear 603 and engages with the A gear 603 at the bottom end of the cylindrical shell 606, and the B gear 607 coincides with the center line of the cylindrical shell 606.

[0056] As Figure 2 and Figure 3 and Figure 7 and Figure 8 andFigure 10 And Figure 11 By the cooperation of the rotating motor 601 and the gear box 602, the gear box 602 transmits power to the A gear 603, the A gear 603 is engaged with the B gear 607, the rotation of the A gear 603 drives the rotation of the B gear 607, the B gear 607 is fixedly connected with the cylindrical shell 606, the cylindrical shell 606 is fixedly connected with the square mounting plate 604, the square mounting plate 604 is fixedly connected with the power framework 2, so the rotation of the B gear 607 drives the rotation of the cylindrical shell 606, the rotation of the cylindrical shell 606 drives the rotation of the square mounting plate 604, the rotation of the square mounting plate 604 drives the rotation of the power framework 2, and then drives the rotation of the card cassette body 3 on the power framework 2, so as to uniformly wash and air dry the card cassette body 3, and reduce the time consumed by washing and air drying.

[0057] As Figure 2 And Figure 3 And Figure 7 And Figure 12 And Figure 13 And Figure 2 The upper surface of the base 1 is fixedly provided with two A supports 8 located outside and opposite to the power framework 2, the two A supports 8 are provided with input members 9 for facilitating the card cassette body 3 to enter the power framework 2, the upper surface of the base 1 is fixedly provided with two B supports 10 located outside and opposite to the power framework 2 and the A supports 8, the two B supports 10 are provided with output members 11 for facilitating the card cassette body 3 to move out of the power framework 2, and the upper surface of the power framework 2 is provided with moving members 12 on both sides for assisting the movement of the card cassette body 3.

[0058] As Figure 3 And Figure 7 And Figure 12 And Figure 13 And Figure 12 In order that the power framework 2 is not interfered by the wind shower pipe 502 and the A shower pipe 403 during rotation, the size of the power framework 2 is smaller than that of the base 1, when the card cassette body 3 moves from the previous process unit to the power framework 2 or moves from the power framework 2 to the next process unit, the side of the card cassette body 3 close to the power framework 2 is not supported (the distance between the previous process unit of the card cassette body 3 and the power framework 2 is a certain distance) when the card cassette body 3 just enters the power framework 2, which may cause the card cassette body 3 to fall or fail to be conveyed, and the side of the card cassette body 3 away from the power framework 2 is not supported (the distance between the next process unit of the card cassette body 3 and the power framework 2 is a certain distance) when the card cassette body 3 just moves out of the power framework 2, which may also cause the card cassette body 3 to fall or fail to be conveyed, therefore, the cooperation of the input members 9 and the output members 11 plays a transition role in the input and output of the card cassette body 3, so as to stably carry the card cassette body 3 to the power framework 2 or move the card cassette body 3 to the next process unit.

[0059] As Figure 13 And Figure 14 And Figure 8 The input member 9 comprises an A vertical plate 901 fixed on the upper surface of the A support 8, a plurality of radial A connecting shafts 902 are rotationally connected to the A vertical plate 901, both ends of the A connecting shaft 902 are arranged out of the A vertical plate 901 and rotationally connected with the A vertical plate 901, the end of each A connecting shaft 902 arranged out of the A vertical plate 901 is fixed with an A transmission roller 903 concentrically arranged with the A connecting shaft 902, two opposite A transmission rollers 903 are fixed with an A transmission rod 904 concentrically arranged with the A transmission roller 903, the A transmission rod 904 is located on the side away from the power framework 2, the other end of each A connecting shaft 902 arranged out of the A vertical plate 901 is fixed with an A main gear 905 concentrically arranged with the A connecting shaft 902, the A transmission roller 903 and the A main gear 905 are rotationally connected with the A vertical plate 901, the upper surface of each A support 8 is rotationally connected with an A transmission shaft 906 located below the plurality of A main gears 905, the A transmission shaft 906 is fixed with a plurality of A auxiliary gears 907 concentrically arranged with the A transmission shaft 906, each A auxiliary gear 907 is engaged with the adjacent A main gear 905, the A vertical plate 901 is fixed with a protective shell 908 sleeved outside the A main gear 905 and the A auxiliary gear 907, the protective shell 908 is fixed with a transmission motor 909 driving one of the A main gears 905 to rotate, the input member 9 and the output member 11 are the same structure.

[0060] As Figure 9 And Figure 9 The moving member 12 comprises a B vertical plate 1201 fixed on the upper surface of the power framework 2 and arranged along the direction of the output power framework 2 of the cassette body 3, a plurality of radial B connecting shafts 1202 are rotationally connected to each B vertical plate 1201, both ends of the B connecting shaft 1202 are arranged out of the B vertical plate 1201 and rotationally connected with the B vertical plate 1201, the end of the B connecting shaft 1202 arranged out of the B vertical plate 1201 is fixed with a B transmission roller 1203 concentrically arranged with the B connecting shaft 1202, the other end of the B connecting shaft 1202 arranged out of the B vertical plate 1201 is fixed with a B main gear 1204 concentrically arranged with the B connecting shaft 1202, the B vertical plate 1201 is further fixed with a plurality of mounting ears 1205 located below the B main gear 1204, the B transmission shaft 1206 is rotationally connected between the plurality of mounting ears 1205, the B transmission shaft 1206 is fixed with a plurality of B auxiliary gears 1207 engaged with the adjacent B main gears 1204, the B auxiliary gears 1207 are concentrically arranged with the B transmission shaft 1206, the B transmission roller 1203 and the B main gear 1204 are rotationally connected with the B vertical plate 1201.

[0061] As Figure 10 And Figure 11 And Figure 9The hollow cylindrical shell 606 is provided with an axial transmission shaft 1208 rotatably connected at the middle of the hollow cylindrical shell 606. The bottom end of the transmission shaft 1208 extends out of the hollow cylindrical shell 606 and is rotatably connected with the hollow cylindrical shell 606. The part of the transmission shaft 1208 extending out of the hollow cylindrical shell 606 extends out of the B gear 607 and is rotatably connected with the B gear 607. The part of the transmission shaft 1208 extending out of the B gear 607 is fixed with a C gear 1209, the center line of which coincides with the center line of the transmission shaft 1208. A transmission motor 1210 is fixed on the base 1. The shaft head of the transmission motor 1210 is fixed with a D gear 1211 which is located beside the C gear 1209 and is in mesh with the C gear 1209.

[0062] As Figure 10 and Figure 7 and 11 The end of the transmission shaft 1208 away from the C gear 1209 is fixed with an E gear 1212, the center line of which coincides with the center line of the transmission shaft 1208. Two through holes 1213 are formed on the hollow cylindrical shell 606 and are in communication with the inner cavity of the hollow cylindrical shell 606. Two C transmission shafts 1214 extend through the two through holes 1213. The two ends of the C transmission shaft 1214 extend out of the hollow cylindrical shell 606 through the two through holes 1213. The C transmission shaft 1214 is rotatably connected with the hollow cylindrical shell 606. The C transmission shaft 1214 is fixed with a F gear 1215 which is concentrically arranged on the C transmission shaft 1214 and is located in the inner cavity of the hollow cylindrical shell 606. The F gear 1215 is in mesh with the E gear 1212. The two ends of the C transmission shaft 1214 extend out of the hollow cylindrical shell 606 through the two through holes 1213. The two ends of the C transmission shaft 1214 extending out of the hollow cylindrical shell 606 extend out of the adjacent B vertical plate 1201 and are rotatably connected with the B vertical plate 1201. The end of the C transmission shaft 1214 extending out of the B vertical plate 1201 is fixed with a G gear 1216 which is concentrically arranged on the C transmission shaft 1214. The middle of the B transmission shaft 1206 is also fixed with an H gear 1217 which is in mesh with the adjacent G gear 1216.

[0063] As Figure 8 and Figure 9 and Figure 10 and Figure 11 and Figure 12 and Figure 13 and Figure 14 and Figure 1When the card case body 3 needs to be cleaned and air-dried, the transmission motor 909 on the A support 8 is turned on, and one of the A main gears 905 on the A support 8 is driven to rotate by the transmission motor 909. The rotation of the A main gear 905 drives the A secondary gear 907 engaged with the A main gear 905 to rotate. The rotation of the A secondary gear 907 drives the A transmission shaft 906 fixedly connected with the A secondary gear 907 to rotate. The rotation of the A transmission shaft 906 drives the other A secondary gears 907 fixedly connected with the A transmission shaft 906 to rotate. The rotation of the other A secondary gears 907 drives the A main gears 905 engaged with the A secondary gears 907 to rotate. The rotation of the A main gears 905 drives the A connecting shaft 902 fixedly connected with the A main gears 905 to rotate. The rotation of the A connecting shaft 902 drives the A transmission roller 903 fixedly connected with the A connecting shaft 902 to rotate. The rotation of the A transmission roller 903 drives the A transmission rod 904 fixedly connected with the A transmission roller 903 to rotate. The card case body 3 is placed on the A transmission rod 904 and the A transmission roller 903. The rotation of the A transmission rod 904 and the A transmission roller 903 drives the card case body 3 to move towards the power frame 2. Since the height of the A transmission roller 903 and the A transmission rod 904 on the A support 8 is higher than the height of the B vertical plate 1201, the card case body 3 will not be blocked by the B vertical plate 1201 when moving towards the B transmission roller 1203 on the power frame 2.

[0064] As Figure 2 and Figure 7 The card case body 3 moves to the power frame 2 and is in contact with the B transmission roller 1203. The B transmission roller 1203 supports the card case body 3. At this time, the card case body 3 is cleaned and dried by the cleaning member and the drying member.

[0065] As Figure 8 and Figure 9 and Figure 10 and Figure 11 and Figure 12 and Figure 13 and Figure 14 and Figure 7When the card case body 3 needs to be removed after being cleaned and dried, the transmission motor 1210 is turned on, the D gear 1211 is driven to rotate by the transmission motor 1210, the rotation of the D gear 1211 drives the C gear 1209 meshing with the D gear 1211 to rotate, the rotation of the C gear 1209 drives the transmission shaft 1208 fixedly connected with the C gear 1209 to rotate, the rotation of the transmission shaft 1208 drives the E gear 1212 fixedly connected with the transmission shaft 1208 to rotate, the rotation of the E gear 1212 drives the F gear 1215 meshing with the E gear 1212 to rotate, the rotation of the F gear 1215 drives the C transmission shaft 1214 fixedly connected with the F gear 1215 to rotate, the rotation of the C transmission shaft 1214 drives the G gear 1216 fixedly connected with the C transmission shaft 1214 to rotate, the rotation of the G gear 1216 drives the H gear 1217 meshing with the G gear 1216 to rotate, the rotation of the H gear 1217 drives the B transmission shaft 1206 fixedly connected with the H gear 1217 and arranged concentrically to rotate, the rotation of the B transmission shaft 1206 drives the B secondary gear 1207 fixedly connected with the B transmission shaft 1206 and arranged concentrically to rotate, the rotation of the B secondary gear 1207 drives the B main gear 1204 meshing with the B secondary gear 1207 to rotate, the rotation of the B main gear 1204 drives the B connecting shaft 1202 fixedly connected with the B main gear 1204 to rotate, the rotation of the B connecting shaft 1202 drives the B transmission roller 1203 fixedly connected with the B connecting shaft 1202 to rotate, the card case body 3 is placed on the B transmission roller 1203, and the rotation of the B transmission roller 1203 drives the card case body 3 on the B transmission roller 1203 to move in the horizontal direction.

[0066] As Figure 8 And Figure 9 And Figure 10 And Figure 11 And Figure 12 And Figure 13 And Figure 14 And Figure 17At the same time, the transmission motor 909 on the B support 10 is turned on, and one of the A main gears 905 on the B support 10 is driven to rotate by the transmission motor 909. The rotation of the A main gear 905 drives the A secondary gear 907 engaged with the A main gear 905 to rotate. The rotation of the A secondary gear 907 drives the A transmission shaft 906 fixedly connected with the A secondary gear 907 to rotate. The rotation of the A transmission shaft 906 drives the other A secondary gears 907 fixedly connected with the A transmission shaft 906 to rotate. The rotation of the other A secondary gears 907 drives the A main gears 905 engaged with the A secondary gears 907 to rotate. The rotation of the A main gears 905 drives the A connecting shaft 902 fixedly connected with the A main gears 905 to rotate. The rotation of the A connecting shaft 902 drives the A transmission roller 903 fixedly connected with the A connecting shaft 902 to rotate. The rotation of the A transmission roller 903 drives the A transmission rod 904 fixedly connected with the A transmission roller 903 to rotate. The cartridge body 3 is placed on the A transmission rod 904 and the A transmission roller 903, and is driven to move out of the power framework 2 by the rotation of the A transmission rod 904 and the A transmission roller 903. Since the height of the A transmission roller 903 and the A transmission rod 904 on the B support 10 is equal to the height of the B transmission roller 1203, the cartridge body 3 is supported by the A transmission roller 903 and the A transmission rod 904 on the B support 10 when moving out of the power framework 2, which reduces the possibility of tilting of the cartridge body 3 when moving out of the power framework 2 and improves the stability of the movement of the cartridge body 3.

[0067] As Figure 17 Since the cartridge body 3 is relatively heavy, in order to reduce the possibility of tilting of the power framework 2 caused by uneven gravity of the power framework 2 when the cartridge body 3 moves in and out of the power framework 2, the base 1 is provided with a falling prevention piece 13 for assisting the movement of the cartridge body 3. The falling prevention piece 13 includes a B cylinder 1301 fixedly connected to the base 1. The B cylinder 1301 is axially arranged. The B cylinder 1301 is fixedly connected with a guide rod 1302 at the extended end. The guide rod 1302 is fixedly connected with a gasket 1303 at the end away from the B cylinder 1301. The gasket 1303 is in contact with the power framework 2.

[0068] As Figure 15 When the cartridge body 3 moves in and out of the power framework 2, the guide rod 1302 and the gasket 1303 are driven to move upward by the B cylinder 1301 and are in contact with the power framework 2. When the cartridge body 3 just contacts the B transmission roller 1203 on the power framework 2, the guide rod 1302 and the gasket 1303 support the entire power framework 2, which reduces the possibility of tilting of the power framework 2 caused by uneven gravity of the power framework 2 when the cartridge body 3 moves in and out of the power framework 2.

[0069] As Figure 16 And Figure 1In order to reduce the possibility of the power frame 2 rotating during the movement of the cassette body 3, the base 1 is provided with an anti-rotation member 7 for reducing the rotation of the power frame 2 during the movement of the cassette body 3. The anti-rotation member 7 comprises a fixed block 701 fixedly connected to the lower surface of the power frame 2 and located beside the square mounting plate 604. The fixed block 701 is welded on the power frame 2, and the lower surface of the fixed block 701 is provided with a pin hole 702. The base 1 is fixed with an A cylinder 703 located directly below the fixed block 701. The elongated end of the A cylinder 703 is fixed with a positioning pin 704 matched with the pin hole 702. When the cassette body 3 is moving, the positioning pin 704 is lifted by the action of the A cylinder 703, and at this time, the positioning pin 704 is inserted into the pin hole 702, thereby reducing the possibility of the power frame 2 rotating during the movement of the cassette body 3. When the cassette body 3 completely enters the power frame 2, the positioning pin 704 is lowered by the action of the A cylinder 703, and the positioning pin 704 is disconnected with the pin hole 702, without affecting the rotation of the power frame 2 and the cassette body 3.

[0070] As ​ The outer periphery of the base 1 is fixed with an outer frame 301, and the outer frame 301 is fixed with a sealing plate 15 sealing the gap of the outer frame 301. The sealing plate 15 is welded with the outer frame 301.

[0071] The above specific embodiments only describe the preferred embodiments of the present application, and do not limit the protection scope of the present application. Any modification, substitution and improvement of the technical solutions of the present application made by those skilled in the art according to the description and drawings of the present application without departing from the design concept and spirit of the present application shall belong to the protection scope of the present application. The protection scope of the present application is determined by the claims.

Claims

1. A transfer and transport assembly for cartridge cleaning operations, characterized in that, The utility model provides a card case drying device, including base (1), set up on base (1) and be used for supporting the power skeleton (2) of card case body (3), be equipped with the cleaning part (4) of card case body (3) and the air dry part (5) of card case body (3) are washed to power skeleton (2) side on base (1), The cleaning part (4) includes a plurality of pure water supply pipes (401) arranged on the base (1), each pure water supply pipe (401) is axially arranged and the top end penetrates the base (1), each pure water supply pipe (401) penetrates the part of the base (1) and is fixed with a tee (402), the first joint of the tee (402) is fixed with the one end of the pure water supply pipe (401) penetrating the base (1), the second joint of the tee (402) is fixedly connected with the axial A spray pipe (403), the third joint of the tee (402) is fixedly connected with the radial B spray pipe (404), the end of the A spray pipe (403) away from the tee (402) is fixed with a C spray pipe (405), the center lines of the B spray pipe (404) and the C spray pipe (405) are parallel, the side of the A spray pipe (403), the B spray pipe (404) and the C spray pipe (405) towards the card case body (3) is provided with a nozzle (406); The air dry part (5) includes an air supply pipe (501) fixed on the base (1), the air supply pipe (501) is axially arranged and the air outlet end of the air supply pipe (501) penetrates the base (1), the part of the air supply pipe (501) penetrating the base (1) is fixed with an air shower pipe (502), the air shower pipe (502) is axially arranged, the air shower pipe (502) is hollow in the inner cavity, the end of the air shower pipe (502) towards the air supply pipe (501) is open and communicated with the air supply pipe (501), the end of the air shower pipe (502) away from the air supply pipe (501) is closed, the side of the air shower pipe (502) towards the card case body (3) is uniformly provided with a plurality of spray heads (503) communicated with the inner cavity of the air shower pipe (502), a plurality of the spray heads (503) are arrayed along the center line direction of the air shower pipe (502); The base (1) and the power skeleton (2) are rotationally connected through a rotating part (6); The base (1) is provided with an anti-rotation part (7) for reducing the rotation of the power skeleton (2) during the movement of the card case body (3), the anti-rotation part (7) includes a fixed block (701) fixedly connected with the lower surface of the power skeleton (2) and located beside the square mounting plate (604), a pin hole (702) is formed in the lower surface of the fixed block (701), an A cylinder (703) is fixed on the base (1) and located directly below the fixed block (701), an positioning pin (704) adapted to the pin hole (702) is fixed to the elongated end of the A cylinder (703); The bottom (1) upper surface is fixed with two A supports (8) located outside the power framework (2) and arranged oppositely, two A supports (8) are provided with input members (9) for facilitating the cassette body (3) to enter the power framework (2), the bottom (1) upper surface is fixed with two B supports (10) located beside the power framework (2) and the A support (8) and arranged oppositely, two B supports (10) are provided with output members (11) for facilitating the cassette body (3) to move out of the power framework (2); The bottom (1) is provided with an anti-falling member (13) for assisting and supporting the movement of the cassette body (3), the anti-falling member (13) comprises a B cylinder (1301) fixed on the bottom (1), the B cylinder (1301) is arranged axially, the elongated end of the B cylinder (1301) is fixed with a guide rod (1302), the end of the guide rod (1302) away from the B cylinder is fixed with a gasket (1303), the gasket (1303) is in contact with the power framework (2).

2. A transfer conveyor assembly for use in a cassette cleaning operation according to claim 1, wherein, The rotating member (6) comprises a rotating motor (601) and a gear box (602) fixed on the bottom (1) and located below the power framework (2), the shaft head of the rotating motor (601) is fixedly connected with the input shaft of the gear box (602), the output shaft of the gear box (602) is fixedly connected with an A gear (603), a square mounting plate (604) is fixed at the middle position of the power framework (2), a circular groove (605) is formed in the middle position of the square mounting plate (604), a cylindrical shell (606) is arranged in the circular groove (605), the cylindrical shell (606) is fixed with the square mounting plate (604) through screws, a B gear (607) is fixed at the bottom end of the cylindrical shell (606) and engaged with the A gear (603), the B gear (607) is coincided with the center line of the cylindrical shell (606).

3. A transfer conveyor assembly for use in a cassette cleaning operation as defined in claim 1, wherein, The input piece (9) comprises an A vertical plate (901) fixed on the upper surface of the A support (8), a plurality of radial A connecting shafts (902) are rotationally connected on the A vertical plate (901), both ends of the A connecting shaft (902) are arranged out of the A vertical plate (901) and rotationally connected with the A vertical plate (901), one end of each A connecting shaft (902) arranged out of the A vertical plate (901) is fixed with an A transmission roller (903), two opposite A transmission rollers (903) are fixed with an A transmission rod (904), the other end of each A connecting shaft (902) arranged out of the A vertical plate (901) is fixed with an A main gear (905), the upper surface of each A support (8) is rotationally connected with an A transmission shaft (906) located below the plurality of A main gears (905), the A transmission shaft (906) is fixed with a plurality of A secondary gears (907), each A secondary gear (907) is meshed with an adjacent A main gear (905), the A vertical plate (901) is fixed with a protective shell (908) sleeved outside the A main gear (905) and the A secondary gear (907), the protective shell (908) is fixed with a transmission motor (909) driving one of the A main gears (905) to rotate, and the input piece (9) and the output piece (11) are the same in structure.

4. A transfer conveyor assembly for use in a cassette cleaning operation according to claim 2, wherein, The upper surface of the power framework (2) is provided with a moving piece (12) for moving the auxiliary cassette body (3) on both sides, the moving piece (12) comprises a B vertical plate (1201) fixed on the upper surface of the power framework (2) on both sides and arranged along the direction in which the cassette body (3) outputs the power framework (2), a plurality of radial B connecting shafts (1202) are rotationally connected on each B vertical plate (1201), both ends of the B connecting shaft (1202) are arranged out of the B vertical plate (1201) and rotationally connected with the B vertical plate (1201), one end of the B connecting shaft (1202) arranged out of the B vertical plate (1201) is fixed with a B transmission roller (1203), the other end of the B connecting shaft (1202) arranged out of the B vertical plate (1201) is fixed with a B main gear (1204), the B vertical plate (1201) is further fixed with a plurality of mounting ears (1205) located below the B main gear (1204), a B transmission shaft (1206) is rotationally connected between the plurality of mounting ears (1205), the B transmission shaft (1206) is fixed with a plurality of B secondary gears (1207) meshed with adjacent B main gears (1204). The cylindrical shell (606) is internally rotatably connected with an axially arranged transmission shaft (1208), the bottom end of the transmission shaft (1208) penetrates out of the cylindrical shell (606) and is rotatably connected with the cylindrical shell (606), the part of the transmission shaft (1208) penetrating out of the cylindrical shell (606) penetrates out of the B gear (607) and is rotatably connected with the B gear (607), the part of the transmission shaft (1208) penetrating out of the B gear (607) is fixedly connected with a C gear (1209), the base (1) is fixedly connected with a transmission motor (1210), the shaft head of the transmission motor (1210) is concentrically fixedly connected with a D gear (1211), the D gear (1211) is located beside the C gear (1209) and is in mesh with the C gear (1209); The end of the transmission shaft (1208) away from the C gear (1209) is fixedly connected with an E gear (1212), the cylindrical shell (606) is provided with a through hole (1213) in communication with the inner cavity of the cylindrical shell (606), the C transmission shaft (1214) penetrates through the through hole (1213), the C transmission shaft (1214) is rotatably connected with the cylindrical shell (606), the C transmission shaft (1214) is fixedly connected with an F gear (1215) which is concentrically arranged with the C transmission shaft (1214) and located in the inner cavity of the cylindrical shell (606), the F gear (1215) is in mesh with the E gear (1212), the both ends of the C transmission shaft (1214) penetrate out of the cylindrical shell (606) through the through hole (1213), the both ends of the C transmission shaft (1214) penetrating out of the cylindrical shell (606) penetrate out of the adjacent B vertical plate (1201) and are rotatably connected with the B vertical plate (1201), the end of the C transmission shaft (1214) penetrating out of the B vertical plate (1201) is fixedly connected with a G gear (1216), the B transmission shaft (1206) is also concentrically fixedly connected with an H gear (1217) at the middle position, the H gear (1217) is in mesh with the adjacent G gear (1216).

Citation Information

Patent Citations

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