Hydrocarbon ceramic substrate production line transfer equipment
By designing the spring-pushing block and protective sleeve slide structure, the problem of operators bending over to carry in the transfer equipment of the hydrocarbon ceramic substrate production line is solved, and convenient and stable movement of the load tank is achieved.
Patent Information
- Application Number
- CN202422407004.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-08
AI Technical Summary
During the handling process of existing hydrocarbon ceramic substrate production line transfer equipment, the operator needs to bend over to operate, resulting in inconvenience and instability of handling.
A transport device is designed, which pushes the block to move through the first spring, and the limit block drives the cargo groove to move upwards, combining the protective sleeve and slider structure to prevent the cargo groove from falling off and improves convenience and stability.
The carrying tank can be carried without bent down, which improves the convenience and stability of the operator and prevents the load tank from falling off during movement.
Smart Images

Figure CN223212380U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of transfer equipment structures, and in particular relates to transfer equipment for a hydrocarbon ceramic substrate production line. Background Art
[0002] Transfer equipment for hydrocarbon ceramic substrate production lines is an integral part of modern high-tech ceramic manufacturing. It's primarily used to efficiently, accurately, and damage-free transport of ceramic substrates during production. This equipment, typically including automated handling robots, AGVs, conveyor belts, and elevators, aims to improve production efficiency, reduce costs, and ensure product quality. While existing transfer equipment generally meets operational needs, the following challenges remain.
[0003] When the operator completes a large-step processing process of the hydrocarbon ceramic substrate, the operator may need to use a transfer vehicle to move the hydrocarbon ceramic substrate to be processed to another large-step production line for processing. However, during the rotation process, when the operator uses the transfer vehicle to transport the workpiece, the operator stacks the carrier tanks containing the hydrocarbon ceramic substrates on the transfer vehicle in sequence. When the operator moves the transfer vehicle to another large-step production line, the operator may need to move the carrier tanks containing the hydrocarbon ceramic substrates to the production line one by one, and when the operator transports the bottom carrier tank, the operator may need to bend down to transport the carrier tank, which may make it more cumbersome for the operator to transport the carrier tank. For this reason, we propose a hydrocarbon ceramic substrate production line transfer device. Utility Model Content
[0004] The utility model provides a transfer device for a hydrocarbon ceramic substrate production line. The first spring recovers through elastic deformation. The first spring pushes a limit block to move through a stop block. The limit block drives a loading trough to move, so that the loading trough moves upward. When an operator picks up the loading trough, the operator no longer needs to bend down to pick up the loading trough, thereby improving the stability of the operator pulling the loading trough to move.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: a transfer device for a hydrocarbon ceramic substrate production line, comprising a transfer vehicle, wherein the transfer vehicle is symmetrically provided with storage slots, and support frames are inserted in the middle of each storage slot, and the ends of each support frame are penetrated by a rotating rod fixed to the inner wall of the storage slot, and a loading slot is provided between two groups of the support frames, and both ends of the loading slot are fixed with a limit block, the limit block is inserted into the limit slot provided in the middle of the support frame, and an abutment member for abutting the limit block is provided inside the limit slot;
[0006] The abutting component includes a stop block and a first spring. The stop block and the first spring are respectively arranged inside the limiting groove, and the two side ends of the first spring are respectively abutted between the stop block surface and the inner wall of the limiting groove. The stop block surface is attached to the limit block.
[0007] Furthermore, a slide groove is fixed on the surface of the support frame, and a second spring and a slider are respectively provided inside the slide groove. The two side ends of the spring are respectively abutted between the slider surface and the inner wall of the slide groove. The slider surface is fixed with a protective cover mounted on the slide groove and the support frame surface.
[0008] Furthermore, a supporting plate extending outward is fixed on the surface of the protective sleeve, and the vertical sections of the supporting plate and the protective sleeve are arranged in an "L" shape.
[0009] Furthermore, one side of the limit block and the stop block are both set to have an inclined slope, and the inclined slopes set on one side of the stop block and the limit block fit each other.
[0010] Furthermore, the outer side walls of the limiting grooves are all configured as "L"-shaped notches, and the transverse notches of the "L"-shaped notches of the limiting grooves are configured as semicircular chamfers.
[0011] Furthermore, a waist-shaped hole is provided on one side of the support frame through which the rotating rod passes, and the rotating rod is configured to be cylindrical and matched with the waist-shaped hole provided on the support frame.
[0012] The beneficial effects of the utility model are:
[0013] 1. The hydrocarbon ceramic substrate production line transfer equipment is provided with a first spring to push the stop block to move. The stop block drives the carrier trough to move through the limit block, so that the carrier trough on the bottom layer moves to the upper end of the support frame. When the operator is carrying the carrier trough, the operator no longer needs to bend down to carry the carrier trough, which improves the convenience of the operator in carrying the carrier trough.
[0014] 2. The transfer equipment of the hydrocarbon ceramic substrate production line is provided with a protective cover, a slider and a slide groove. When the operator pulls the protective cover, the protective cover slides in the slide groove through the slider, so that the protective cover moves away from the opening of the limit groove. The protective cover blocks the opening of the limit groove to prevent the loading slot from driving the limit block to fall off from the opening of the limit groove when the operator pushes the transfer vehicle to move, thereby improving the stability of the operator's use. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present utility model;
[0016] Figure 2 This is a schematic diagram of the top structure of the utility model;
[0017] Figure 3 This is a side structural diagram of the present utility model;
[0018] Figure 4 It is a side cross-sectional structural schematic diagram of the utility model;
[0019] Figure 5 This is a schematic diagram of a top cross-sectional structure of the support frame and the limit block of the utility model;
[0020] Figure 6 It is a schematic diagram of the three-dimensional structure of the support frame of the present invention.
[0021] In the picture:
[0022] 1. Transfer trolley; 2. Loading trough; 3. Storage trough; 4. Turning rod; 5. Support frame; 6. First spring; 7. Stop block; 8. Limiting groove; 9. Limiting block; 10. Support plate; 11. Protective cover; 12. Second spring; 13. Slide groove; 14. Slider. DETAILED DESCRIPTION
[0023] In order to further understand the content, features and effects of the present invention, the following embodiments are given as examples and described in detail with reference to the accompanying drawings. Example
[0024] See also Figure 1 - Figure 6A transfer device for a hydrocarbon ceramic substrate production line includes a transfer vehicle 1. The transfer vehicle 1 is symmetrically provided with storage slots 3, and a support frame 5 is inserted in the middle of the storage slots 3. The ends of the support frames 5 are penetrated by a rotating rod 4 welded to the inner wall of the storage slots 3. A loading slot 2 is provided between the two sets of support frames 5, and both sides of the loading slots 2 are welded with a limiting block 9. The limiting block 9 is inserted into the limiting slot 8 opened in the middle of the support frame 5. The outer wall of the limiting slot 8 is set to an "L"-shaped notch, and the transverse notch of the "L"-shaped notch of the limiting slot 8 is set to a semicircular chamfer, and the inside of the limiting slot 8 is provided with a portion for the limiting block 9 The abutting components for abutment, the abutting component abutment block 7 and the first spring 6, the limiting groove 8 is respectively provided with abutment block 7 and the first spring 6, and the two side ends of the first spring 6 are respectively abutted between the surface of the abutment block 7 and the inner wall of the limiting groove 8, and the surface of the abutment block 7 is fitted on the limiting block 9. When the operator is in use, the operator first pulls the support frame 5, and the waist-shaped hole opened at the end of the support frame 5 rotates on the surface of the rotating rod 4 to move the support frame 5 out of the storage groove 3, and make the support frame 5 and the transfer vehicle 1 perpendicular to each other, and then the operator pushes the support frame 5, and the waist-shaped hole opened at the end of the support frame 5 slides on the surface of the rotating rod 4 set as a cylindrical shape. , insert the support frame 5 into the notch opened on one side of the storage slot 3, vertically set the support frame 5 in the storage slot 3, and fix the position of the support frame 5. Then the operator takes the loading slot 2, and the loading slot 2 drives the limit block 9 to move, aligning the limit block 9 with the horizontal notch in the "L"-shaped notch opened in the limit slot 8. Then the operator pushes the loading slot 2, and the loading slot 2 drives the limit block 9 to move, so that the limit block 9 passes through the horizontal notch in the "L"-shaped notch set at the opening of the limit slot 8. After the limit block 9 is inserted into the limit slot 8, the limit block 9 pushes the stop block 7. After the stop block 7 is pushed by the limit block 9, the stop block 7 The first spring 6 is squeezed to cause elastic deformation of the first spring 6, and the first spring 6 avoids the resisting block 7, and the resisting block 7 presses the limit block 9, thereby setting the limit block 9 in the limit groove 8. At the same time, the loading tank 2 is installed between the two sets of support frames 5, and because the elastic force of the first spring 6 is greater than the weight of the loading tank 2, the first spring 6 pushes the limit block 9 to move through the resisting block 7, and the limit block 9 drives the loading tank 2 to move, and the loading tank 2 is set at the upper end of the support frame 5. When the operator is carrying the loading tank 2, the operator no longer needs to bend down to carry the loading tank 2 placed on the surface of the transfer vehicle 1, thereby improving the convenience of the operator's carrying.
[0025] In other embodiments, the surface of the support frame 5 is welded with a slide groove 13, and the slide groove 13 is respectively provided with a second spring 12 and a slider 14, and the two side ends of the second spring 12 are respectively in contact between the surface of the slider 14 and the inner wall of the slide groove 13, and the surface of the slider 14 is welded with a protective cover 11 which is sleeved on the slide groove 13 and the surface of the support frame 5, and the surface of the protective cover 11 is welded with a supporting plate 10 extending outward, and the vertical section of the supporting plate 10 and the protective cover 11 is set to be "L" shaped. When the operator inserts the limit block 9 into the limit groove 8, the operator first moves the loading slot 2, and the loading slot 2 drives the limit block 9 to move, and the limit block 9 is placed on the supporting plate 10, so that the supporting plate 10 supports the limit block 9, and then the limit block 9 pushes the protective cover 11 to move through the supporting plate 10, and the protective cover 11 drives the slider 14 to slide in the slide groove 13, and when the slider 14 moves, The slider 14 squeezes the second spring 12, causing the second spring 12 to undergo elastic deformation. After the second spring 12 undergoes elastic deformation, the second spring 12 avoids the slider 14, causing the protective cover 11 to slide on the surface of the slide groove 13 and the support frame 5, and the protective cover 11 opens the gap laterally set in the limit groove 8. Then the operator pushes the loading slot 2, and the loading slot 2 drives the limit block 9 to be inserted into the limit groove 8. When the limit block 9 is removed from the support plate 10, the support plate 10 no longer squeezes the slider 14 on the second spring 12 through the protective cover 11, and the elastic deformation of the second spring 12 is restored. The second spring 12 pushes the slider 14 to move, and the slider 14 drives the protective cover 11 to move, so that the protective cover 11 moves to the front end of the transverse gap set in the limit groove 8, thereby blocking the transverse gap set in the limit groove 8 to prevent the limit block 9 from falling off from the limit groove 8.
[0026] In other embodiments, one side of the limit block 9 and the resist block 7 are both set to an inclined slope, and the inclined slopes set on one side of the resist block 7 and the limit block 9 fit together. When the inclined slopes set on one side of the limit block 9 and the resist block 7 match each other, when the limit block 9 moves, the inclined slope set by the limit block 9 pushes the inclined slope set by the resist block 7 to move, so that the limit block 9 pushes the resist block 7 to move.
[0027] In other embodiments, a waist-shaped hole is opened on one side of the support frame 5 passed through by the rotating rod 4, and the rotating rod 4 is set to a cylindrical shape that matches the waist-shaped hole opened on the support frame 5. The waist-shaped hole opened on one side of the support frame 5 passed through by the rotating rod 4 matches the cylindrical shape set on the rotating rod 4, so that the waist-shaped hole opened on the support frame 5 can rotate and slide on the cylindrical surface set on the rotating rod 4, and the surface of the rotating rod 4 fits with the inner wall of the waist-shaped hole opened on the support frame 5, thereby increasing the stability of the waist-shaped hole opened on the support frame 5 moving on the surface of the rotating rod 4.
[0028] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A transfer device for a hydrocarbon ceramic substrate production line, comprising a transfer vehicle (1), characterized in that: The transfer vehicle (1) is symmetrically provided with storage slots (3) around, and a support frame (5) is inserted in the middle of each storage slot (3), and the ends of each support frame (5) are penetrated by a rotating rod (4) fixed on the inner wall of the storage slot (3), and a loading slot (2) is provided between the two groups of support frames (5), and a limiting block (9) is fixed on both sides of the loading slot (2), and the limiting block (9) is inserted into the limiting slot (8) provided in the middle of the support frame (5), and an abutting member for abutting the limiting block (9) is provided inside the limiting slot (8); The abutting member comprises a stopper (7) and a first spring (6), the stopper (7) and the first spring (6) are respectively arranged inside the limiting groove (8), and the two side ends of the first spring (6) are respectively abutted between the surface of the stopper (7) and the inner wall of the limiting groove (8), and the surface of the stopper (7) is fitted on the limiting block (9).
2. The hydrocarbon ceramic substrate production line transfer equipment according to claim 1, characterized in that: The surface of the support frame (5) is fixed with a slide groove (13), and the inside of the slide groove (13) is provided with a second spring (12) and a slider (14), and the two side ends of the spring (12) are respectively abutted between the surface of the slider (14) and the inner wall of the slide groove (13), and the surface of the slider (14) is fixed with a protective cover (11) which is sleeved on the slide groove (13) and the surface of the support frame (5).
3. The carbon-hydrogen ceramic substrate production line transfer equipment according to claim 2, characterized in that: An outwardly extending support plate (10) is fixed to the surface of the protective sleeve (11), and vertical sections of the support plate (10) and the protective sleeve (11) are arranged in an "L" shape.
4. The hydrocarbon ceramic substrate production line transfer equipment according to claim 1, characterized in that: One side of the limit block (9) and the stop block (7) are both set to have an inclined slope, and the inclined slopes set on one side of the stop block (7) and the limit block (9) fit each other.
5. The hydrocarbon ceramic substrate production line transfer equipment according to claim 1, characterized in that: The outer side walls of the limiting groove (8) are all configured as "L"-shaped notches, and the transverse notches of the "L"-shaped notches of the limiting groove (8) are configured as semicircular chamfers.
6. The hydrocarbon ceramic substrate production line transfer equipment according to claim 1, characterized in that: The support frame (5) is penetrated by the rotating rod (4) on one side and is provided with a waist-shaped hole, and the rotating rod (4) is configured to be cylindrical and matched with the waist-shaped hole provided on the support frame (5).