Bearing bracket of ceramic substrate

By designing a combined structure of frame, load plate, support block and baffle on the support bracket, the problem of ceramic substrates colliding due to vibration during transportation is solved, realizing safe and reliable transportation and flexible bracket adjustment.

CN223792045UActive Publication Date: 2026-01-13JIUYAO ELECTRONIC TECH JIANGSU CO LTD
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Patent Information

Application Number
CN202520549804.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-13
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

When using a support bracket to transport ceramic substrates, vibration can cause the substrates to collide with each other, posing a risk of damage.

Method used

A load-bearing bracket structure was designed, including a frame, a carrying plate, a support block, a baffle, and a stop block. The baffle and the support block work together to restrict the movement of the substrate and reduce the impact of vibration. The elastic connectors improve operational flexibility.

Benefits of technology

This effectively avoids collisions with ceramic substrates during transportation, improves transportation safety, and enhances the adjustability of the tray, making it easier for operators to adjust the number of trays as needed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bearing bracket for a ceramic substrate, which belongs to the technical field of ceramic substrates and comprises a frame, a mounting groove and a loading plate, the frame is arranged around the loading plate and connected with the loading plate through the mounting groove, a plurality of groups of supporting blocks are fixed on the surface of the loading plate, the surfaces of the supporting blocks are sleeved with baffle plates arranged above the loading plate, and the baffle plates are arranged above the loading plate. Abutting blocks are symmetrically arranged between the baffle and the carrying plate, abutting grooves formed in the two sides of the baffle are attached to one sides of the abutting blocks, pulling plates are fixed to the tail ends of the abutting blocks, and the pulling plates are elastically connected with the carrying plate; the baffles limit the ceramic substrates, the situation that vibration generated when the bearing bracket moves cannot drive the multiple sets of ceramic substrates to collide with one another is avoided, the safety of transporting the ceramic substrates is improved, meanwhile, the multiple sets of frames are connected together, when the ceramic substrates are transported, an operator can conveniently increase or reduce the number of the carrying plates, and the transportation efficiency is improved. And the usability of an operator is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of ceramic substrate technology, and in particular relates to a support bracket for ceramic substrates. Background Technology

[0002] Ceramic substrates are substrates based on ceramic materials and are widely used in electronics, optoelectronics, aerospace and other fields. During the processing of ceramic substrates, carrier brackets are usually used to transport ceramic substrates. Therefore, it can be seen that the existing ceramic substrates basically meet people's needs, but the following problems still exist.

[0003] When using a carrier to transport ceramic substrates, the operator places the ceramic substrate on the carrier's loading plate and then moves the carrier. As the carrier moves, the casters mounted at the bottom of the carrier may vibrate. This vibration can cause the ceramic substrates on the carrier to shake. When several sets of ceramic substrates shake, they may collide with each other, potentially damaging the ceramic substrates. Therefore, we propose a carrier for ceramic substrates. Utility Model Content

[0004] This utility model provides a support bracket for ceramic substrates. After a stop block is inserted between a baffle and a carrying plate, the stop block lifts the baffle, and the baffle supports the ceramic substrates placed on the support block. This prevents the ceramic substrates placed on the support bracket from colliding with each other when the operator moves the support bracket, thus improving the operator's transportation safety.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a support bracket for a ceramic substrate, comprising a frame, a mounting groove, and a carrying plate. The carrying plate is surrounded by a frame, and the frame is connected to the carrying plate through the mounting groove. Several sets of support blocks are fixed on the surface of the carrying plate, and a baffle plate is fitted on the surface of the support blocks and positioned above the carrying plate. Abutment blocks are symmetrically arranged between the baffle plate and the carrying plate. One side of each abutment block is fitted with abutment groove formed on both sides of the baffle plate, and a pull plate is fixed to the end of each abutment block. The pull plate is elastically connected to the carrying plate.

[0006] Furthermore, shims are symmetrically arranged on both sides of the frame, and inserts inserted into the frame are symmetrically fixed on both sides of the shims. Each insert has a first spring groove at its end, and a first spring and a button are respectively arranged inside the first spring groove. The two ends of the first spring abut against the two sets of buttons, and the ends of the buttons all penetrate the frame.

[0007] Furthermore, all the buttons are cylindrical, and the ends of the buttons are semi-circular. The side of the frame through which the buttons pass is provided with circular through holes that match the buttons.

[0008] Furthermore, each of the insert blocks is fitted with a filler ring, and the outer wall of the filler ring is fixed with several sets of wavy grooves, and the surface of the filler ring is in close contact with the inside of the frame.

[0009] Furthermore, a second spring groove is provided around the perimeter of the carrying plate near the pull plate, and a pull rod is embedded in each of the second spring grooves to fix the pull plate. A second spring is wound around the surface of each pull rod, which abuts against the surface of the pull rod and the inside of the second spring groove.

[0010] Furthermore, each of the outer walls of the pull plate is fixed with a handle, and the surface of the handle is provided with several sets of semi-circular grooves.

[0011] Furthermore, the side of the abutment block closest to the baffle is provided with an inclined slope, and the side of the baffle block closest to the abutment block is provided with an inclined chamfer.

[0012] Furthermore, guide rods are inserted around the baffle, and the guide rods are all fixed to the surface of the loading plate.

[0013] The beneficial effects of this utility model are:

[0014] 1. The ceramic substrate support bracket is equipped with a pull plate, a stop block, and a baffle. When the operator pushes the pull plate to move, the pull plate pushes the stop block to move between the baffle and the carrying plate, so that the through hole in the middle of the baffle moves to the upper end of the support block. The through hole in the middle of the baffle is fitted onto the surface of the ceramic substrate placed on the surface of the support block, so that the baffle restricts the ceramic substrate and prevents the vibration generated when the support bracket moves from causing several sets of ceramic substrates to collide with each other, thereby improving the safety of transporting ceramic substrates.

[0015] 2. The ceramic substrate support bracket is equipped with a first spring, an insert block, and a button. When the operator moves the pad block, the pad block moves the insert block, causing the insert block to be inserted into the frame. The button passes through the frame and fixes the insert block in the frame. This allows several sets of frames to be connected together. When transporting the ceramic substrate, it is convenient for the operator to increase or decrease the number of carrier plates, thus improving the usability for the operator. Attached Figure Description

[0016] Figure 1 This is a front view structural diagram of the present utility model;

[0017] Figure 2 This is a side sectional view of the present invention.

[0018] Figure 3 This is a side cross-sectional view of the present invention in its usage state;

[0019] Figure 4This is a side sectional view of the guide rod and baffle of this utility model.

[0020] Figure 5 This is a top view of the structure of this utility model;

[0021] Figure 6 For the present utility model Figure 1 Schematic diagram of the cross-sectional structure at point A in the middle;

[0022] Figure 7 This is a top view cross-sectional structural diagram of the insert block and filler ring of this utility model.

[0023] In the picture:

[0024] 1. Frame; 2. Mounting slot; 3. Loading plate; 4. Support block; 5. Baffle; 6. Guide rod; 7. Pull plate; 8. Pull handle; 9. Button; 10. Abutting groove; 11. Insert block; 12. Pad block; 13. First spring; 14. First spring groove; 15. Second spring; 16. Second spring groove; 17. Pull rod; 18. Abutting block; 19. Filler ring. Detailed Implementation

[0025] To further understand the utility model's content, features, and effects, the following embodiments are provided, along with detailed descriptions in conjunction with the accompanying drawings. Example

[0026] Please see Figure 1 - Figure 7The support bracket for the ceramic substrate includes a frame 1, a mounting groove 2, and a carrying plate 3. The carrying plate 3 is surrounded by the frame 1, and the frame 1 is connected to the carrying plate 3 through the mounting groove 2. Several sets of support blocks 4 are welded to the surface of the carrying plate 3, and baffles 5 are fitted on the surface of the support blocks 4 and positioned above the carrying plate 3. Abutment blocks 18 are symmetrically arranged between the baffles 5 and the carrying plate 3. Abutment grooves 10 formed on both sides of the baffles 5 are attached to one side of the abutment blocks 18, and pull plates 7 are welded to the ends of the abutment blocks 18. The pull plates 7 are elastically connected to the carrying plate 3. Second spring grooves 16 are formed on the sides of the carrying plate 3 near the pull plates 7, and the second spring grooves 16 are all embedded. A pull rod 17 is attached to a welded pull plate 7. Each pull rod 17 has a second spring 15 wound around its surface, abutting against the surface of the pull rod 17 and the interior of the second spring groove 16. Guide rods 6 are threaded through the perimeter of the baffle 5 and are welded to the surface of the carrier plate 3. When the operator needs to remove the ceramic substrate from the surface of the carrier plate 3, the operator first pulls the pull plate 7. The pull plate 7 causes the pull rod 17 to slide within the second spring groove 16. As the pull rod 17 slides within the second spring groove 16, it compresses the second spring 15, causing the second spring 15 to undergo elastic deformation. After the second spring 15 undergoes elastic deformation, the second spring... 15. The pull rod 17 is moved out of the second spring groove 16, and the pull plate 7 moves the stop block 18. The stop block 18 moves out from between the baffle 5 and the carrier plate 3. Under the action of gravity, the baffle 5 slides towards the carrier plate 3, so that the baffle 5 no longer restricts the ceramic substrate placed on the surface of the support block 4. The operator pulls the ceramic substrate to facilitate the removal of the ceramic substrate placed on the support block 4. After the operator removes the ceramic substrate, the operator releases the pull plate 7. The pull plate 7 no longer compresses the second spring 15 through the pull rod 17, and the second spring 15 recovers its elastic deformation. Two springs 15 push the pull rod 17 to move, causing the pull rod 17 to move the pull plate 7, which in turn causes the abutment block 18 to move. When the abutment block 18 moves, the inclined slope of the abutment block 18 near the baffle 5 abuts against the inclined chamfered surfaces on both sides of the baffle 5, causing the abutment block 18 to push the baffle 5 to move. The baffle 5 separates from the carrier plate 3 and is fitted around the ceramic substrate. The baffle 5 restricts the ceramic substrate placed on the surface of the support block 4, increasing the stability of the ceramic substrate placed on the support block 4 and preventing the vibration generated by the support bracket during movement from causing several groups of ceramic substrates to collide with each other, thus improving the safety of transporting the ceramic substrate.

[0027] When the baffle 5 moves, the through holes around the baffle 5 slide on the surface of the cylindrical guide rod 6. The guide rod 6 pulls the baffle 5 in the direction of movement, increasing the stability of the baffle 5 sliding.

[0028] In other embodiments, symmetrical pads 12 are provided at both ends of the frame 1, and inserts 11 inserted into the frame 1 are symmetrically welded to both ends of the pads 12. Each insert 11 has a first spring groove 14 at its end, and a first spring 13 and a button 9 are respectively disposed inside the first spring groove 14. The two ends of the first spring 13 abut against two sets of buttons 9, and the ends of the buttons 9 penetrate the frame 1. When the operator adds more frames 1, the operator first presses the button 9. After the button 9 is squeezed by the operator's hand, it slides within the first spring groove 14, and the button 9 squeezes the first spring 13, causing the first spring 13 to... After elastic deformation, the first spring 13 avoids the button 9, causing the button 9 to enter the first spring groove 14. The button 9 also avoids the frame 1. Then, the operator moves the pad 12, which moves the insert 11 and inserts it into the frame 1. After the operator's hand stops pressing the button 9, the button 9 returns to its elastic deformation state. The button 9 pushes the first spring 13 to move, and the first spring 13 pushes the button 9 to move, causing the button 9 to move out of the first spring groove 14 and insert into the frame 1. The operator places the pad 12 between the two sets of frames 1 to facilitate adding or removing the number of frames 1.

[0029] In other embodiments, the buttons 9 are all cylindrical, and the ends of the buttons 9 are all semi-circular. The side of the frame 1 through which the buttons 9 pass is set with a circular through hole that matches the buttons 9. By matching the cylindrical shape of the buttons 9 with the circular through hole on the side of the frame 1 through which the buttons 9 pass, the buttons 9 can pass through the circular through hole on the side of the frame 1 through which the buttons 9 pass. Furthermore, the surface of the buttons 9 is in close contact with the inner wall of the circular through hole on the side of the frame 1 through which the buttons 9 pass, thereby increasing the stability of the buttons 9 when inserted into the through hole.

[0030] In other embodiments, a handle 8 is welded to the outer wall of the pull plate 7, and a number of semi-circular grooves are formed on the surface of the handle 8. When the operator pulls the pull plate 7, the operator holds the handle 8 fixed on the surface of the pull plate 7. When the operator's hand is in contact with the surface of the handle 8, the number of semi-circular grooves formed on the surface of the handle 8 can increase the friction between the operator's hand and the surface of the handle 8. Then the operator pulls the handle 8, and the handle 8 pulls the pull plate 7 to move, which makes it convenient for the operator to pull the pull plate 7 to move.

[0031] In other embodiments, each insert 11 is fitted with a filling ring 19, and the outer wall of the filling ring 19 is welded with several sets of wavy grooves. The surface of the filling ring 19 fits against the inside of the frame 1. When the pad 12 drives the insert 11 into the frame 1, the operator first presses the rubber filling ring 19 to shrink it and avoid the frame 1. After the insert 11 drives the filling ring 19 into the frame 1, the filling ring 19 is no longer squeezed by the operator's hand, and the elastic deformation of the filling ring 19 recovers. The filling ring 19 abuts against the inner wall of the frame 1. By abutting against the inner wall of the frame 1, the filling ring 19 fills the gap between the frame 1 and the insert 11, increasing the stability of the insert 11 inserted into the frame 1 and preventing the insert 11 from shaking inside the frame 1 after it is inserted.

[0032] In other embodiments, the side of the abutment block 18 near the baffle 5 is provided with an inclined slope, and the side of the baffle 5 near the abutment block 18 is provided with an inclined chamfer. When the operator pushes the abutment block 18, the abutment block 18 pushes the baffle 5 to move. The inclined slope of the abutment block 18 moves to the inclined chamfer on both sides of the baffle 5. After the abutment block 18 is continuously pushed by the operator, the inclined slope of the abutment block 18 pushes the inclined chamfer on both sides of the baffle 5, so that the inclined slope of the abutment block 18 pushes the baffle 5 to move through the inclined chamfer on the baffle 5, so that the abutment block 18 can lift the baffle 5.

[0033] Although 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 can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A support bracket for a ceramic substrate, comprising a frame (1), a mounting groove (2), and a carrying plate (3), wherein the carrying plate (3) is surrounded by the frame (1), and the frame (1) is connected to the carrying plate (3) via the mounting groove (2), characterized in that: The surface of the carrying plate (3) is fixed with several sets of support blocks (4), and the surface of the support blocks (4) is fitted with a baffle (5) set above the carrying plate (3). Abutment blocks (18) are symmetrically arranged between the baffle (5) and the carrying plate (3). Abutment blocks (18) are attached to one side of the abutment blocks (18) and abutment grooves (10) opened on both sides of the baffle (5). A pull plate (7) is fixed at the end of each abutment block (18). The pull plate (7) is elastically connected to the carrying plate (3).

2. The support bracket for the ceramic substrate according to claim 1, characterized in that: The frame (1) is symmetrically provided with pads (12) at both ends, and the pads (12) are symmetrically fixed with inserts (11) inserted into the frame (1). The inserts (11) are provided with first spring grooves (14) at their ends, and first springs (13) and buttons (9) are respectively provided inside the first spring grooves (14). The ends of the first springs (13) are respectively abutted between the two sets of buttons (9), and the ends of the buttons (9) all penetrate the frame (1).

3. The support bracket for the ceramic substrate according to claim 2, characterized in that: All buttons (9) are cylindrical, and the ends of all buttons (9) are semi-circular. The frame (1) through which the buttons (9) pass is provided with circular through holes that match the buttons (9).

4. The support bracket for the ceramic substrate according to claim 2, characterized in that: Each of the inserts (11) is fitted with a filling ring (19), and the outer wall of the filling ring (19) is fixed with several sets of wavy grooves. The surface of the filling ring (19) is in close contact with the inside of the frame (1).

5. The support bracket for the ceramic substrate according to claim 2, characterized in that: The loading plate (3) is provided with a second spring groove (16) on all four sides near the pull plate (7), and each second spring groove (16) is embedded with a pull rod (17) fixed on the pull plate (7). The surface of the pull rod (17) is wrapped with a second spring (15) that abuts against the surface of the pull rod (17) and the inside of the second spring groove (16).

6. The support bracket for the ceramic substrate according to claim 1, characterized in that: All the outer walls of the pull plate (7) are fixed with a handle (8), and the surface of the handle (8) is provided with several sets of semi-circular grooves.

7. The support bracket for the ceramic substrate according to claim 1, characterized in that: The abutment block (18) is set with an inclined slope on the side near the baffle (5), and the baffle (5) is provided with an inclined chamfer on the side near the abutment block (18).

8. The support bracket for the ceramic substrate according to claim 1, characterized in that: Guide rods (6) are inserted around the baffle (5), and the guide rods (6) are all fixed to the surface of the carrier plate (3).