High-thermal-conductivity graphite composite pad processing and storing equipment
By designing high-thermal conductivity graphite composite pad processing and storage equipment, the positioning rod and transmission belt are used to realize the positioning and classification of graphite composite pads, the problems of chaotic storage and inconvenient handling of graphite composite pads in the existing technology are solved, and efficient classification and convenient operation are achieved.
Patent Information
- Application Number
- CN202422415597.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-10-08
AI Technical Summary
In existing processing, the graphite composite pads are stacked using steel structure storage racks, resulting in the fact that composite pads of different specifications are prone to chaos and are inconvenient to hold and place.
A highly thermal conductivity graphite composite pad processing and storage equipment is designed, and the positioning, classification and convenient handling of graphite composite pads are achieved by setting up positioning rods and transmission belts.
It effectively solves the problem of easy chaos and inconvenient handling of graphite composite pads during storage, and realizes efficient classification and convenient operation of graphite composite pads.
Smart Images

Figure CN223029683U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of graphite composite gasket processing, in particular to a processing and storage device for high thermal conductivity graphite composite gaskets. Background Technique
[0002] The graphite composite gasket is punched and processed from high-strength graphite composite plates, and has excellent corrosion resistance, high and low temperature resistance, good compression resilience, and good strength. The processed graphite composite gaskets are usually stacked on the surface of a steel structure storage rack.
[0003] In the existing processing, a steel structure storage rack is used to stack graphite composite gaskets. There is no special storage rack for graphite composite gaskets. Graphite composite gaskets of various specifications are placed on the surface of the storage rack, with a partition gap left in the middle, which is easy to cause chaos and is not convenient for taking and placing.
[0004] Therefore, in view of the problem that in the above-mentioned existing processing, a steel structure storage rack is used to stack graphite composite gaskets, which is not convenient for classification and taking and placing, a processing and storage device for high thermal conductivity graphite composite gaskets can be designed. By setting positioning rods, when assembling, the positioning rods are placed horizontally, and then the graphite composite gaskets are sleeved on the surface of the positioning rods. After the sleeving is completed, the positioning rods are erected, and a group of composite gaskets are transported to the rear end of the through groove through a conveyor belt, which is convenient for taking and placing and classification. Content of the Utility Model
[0005] In order to overcome the problem that in the existing processing, a steel structure storage rack is used to stack graphite composite gaskets, there is no special storage rack for graphite composite gaskets, which is easy to cause chaos of composite gaskets of different specifications and is not convenient for taking and placing.
[0006] The technical solution of the utility model is: a processing and storage device for high thermal conductivity graphite composite gaskets, including a bottom plate; it also includes a through groove, a base, a positioning rod, a rotating shaft, a gear, a conveyor belt and meshing teeth. First legs are arranged at the corners of the upper surface of the bottom plate, a placement plate is installed on the top surfaces of the four first legs, through grooves are opened at the left and right sides of the upper surface of the placement plate, a base is slidably connected inside the through groove, a positioning rod is installed on the front surface of the base, rotating shafts are rotatably connected at the front and rear positions on the left and right inner surfaces of the through groove, gears are installed at the left and right ends of the outer surfaces of the two rotating shafts, the left front gear is driven to rotate by a motor inside the placement plate, conveyor belts are sleeved on the outer surfaces of the two rotating shafts, meshing teeth are installed on the left and right sides of the inner surface of the conveyor belt, and the meshing teeth are meshed with the gears.
[0007] Preferably, by setting the positioning rod, when assembling, the base is laid down, the positioning rod is placed horizontally, and then the graphite composite gasket is sleeved on the surface of the positioning rod. After the sleeving is completed, the positioning rod is erected, and the motor inside the placement plate is started, so that the rotating shaft drives the gear to rotate, thereby driving the conveyor belt to rotate, and a set of composite gaskets is transported to the rear end of the through groove. There are multiple combinations of the positioning rod and the base. Repeat the above operations to complete the placement of multiple sets of composite gaskets, which is convenient for picking up, placing and sorting, so as to solve the problem that there is no placement rack for graphite composite gaskets in the existing processing, and ordinary steel structure storage racks are used for placement, which is easy to cause mixed loading of composite gaskets of different models during storage and is difficult to pick up and place.
[0008] Preferably, support frames are welded on the front surface of the placement plate at the front ends of the two through grooves. By setting the support frames, after the positioning rod is laid down, the support frames can provide support for the end of the positioning rod, avoiding the scattering of the composite gasket due to excessive weight when sleeving the composite gasket, and reducing the burden on the staff.
[0009] Preferably, sliding grooves are provided on the surface of the two through grooves close to the placement plate, and sliding rods are provided on the surface of the base close to the sliding grooves. The sliding rods are slidably connected with the sliding grooves. By providing the sliding grooves, when the conveyor belt drives the base to move, the sliding rods will slide synchronously inside the sliding grooves, so as to achieve a positioning effect and avoid deviation of the position of the base during movement.
[0010] Preferably, symmetrically arranged mounting grooves are provided on the front surface of the placement plate, and electric push rods are provided inside the two mounting grooves. The telescopic ends of the two electric push rods respectively point to the left and right bases. By setting the electric push rods, when the base is laid down to sleeve the composite gasket, the electric push rods are controlled to extend, so as to clamp the base in cooperation with the inner wall of the through groove and avoid the base from falling and injuring the staff.
[0011] Preferably, second legs are provided at the corners of the upper surface of the placement plate, the top surfaces of the four second legs are connected with a top plate, symmetrically arranged positioning grooves are provided on the left and right sides of the bottom surface of the top plate, and positioning blocks are connected to the front surface of the front end of the positioning rod. By providing the positioning grooves, after the sleeving is completed and the positioning rod is erected, the positioning blocks at the top of the positioning rod will fit inside the positioning grooves and slide inside the positioning grooves when the base moves. At the same time, the top plate can limit the vertical position of the positioning rod to avoid the positioning rod from tipping over.
[0012] Preferably, the base, the positioning rod and the positioning block are all connected by threads. By using the threaded connection method, it is convenient to replace positioning rods with different diameters, so as to better match the inner ring of the composite gasket.
[0013] Preferably, the upper surface of the bottom plate is provided with limit rods distributed in an array. By setting the limit rods, multiple groups of bases can be placed between two adjacent limit rods, which is convenient for the staff to pick up. The distance between two adjacent limit rods is slightly larger than the total length of the base and the sliding rod, which can limit the base and increase the stability.
[0014] Advantages of the present utility model:
[0015] 1. By setting the positioning rods, when assembling, the base is laid down, the positioning rods are placed horizontally, and then the graphite composite pads are sleeved on the surface of the positioning rods. After the sleeving is completed, the positioning rods are erected, and the motor inside the placement plate is started, so that the rotating shaft drives the gear to rotate, thereby driving the conveyor belt to rotate, and transporting a group of composite pads to the rear end of the through groove. There are multiple combinations of positioning rods and bases. Repeat the above operations to complete the placement of multiple groups of composite pads, which is convenient for picking up, placing and classification, thus solving the problem that in the existing processing, there is no placement rack for graphite composite pads, and ordinary steel structure storage racks are used for placement, which easily leads to the mixing of different models of composite pads during storage and is difficult to pick up and place.
[0016] 2. By setting the support frame, after the positioning rods are laid down, the support frame can provide support for the ends of the positioning rods, avoiding the scattering of the composite pads due to excessive weight when sleeving the composite pads, reducing the burden on the staff, and by opening the sliding grooves, when the conveyor belt drives the base to move, the sliding rods will slide synchronously inside the sliding grooves, thereby achieving a positioning effect and avoiding the deviation of the position of the base during movement. Description of the drawings
[0017] Figure 1 Shown is a three-dimensional structural schematic diagram of a processing and storage device for high thermal conductivity graphite composite pads of the present utility model;
[0018] Figure 2 Shown is a three-dimensional structural schematic diagram of the placement plate of a processing and storage device for high thermal conductivity graphite composite pads of the present utility model;
[0019] Figure 3 Shown is a three-dimensional structural schematic diagram of the conveyor belt of a processing and storage device for high thermal conductivity graphite composite pads of the present utility model;
[0020] Figure 4 Shown is an exploded structural schematic diagram of the positioning rods of a processing and storage device for high thermal conductivity graphite composite pads of the present utility model.
[0021] Description of reference numerals: 1, bottom plate; 2, first leg; 3, placing plate; 4, through groove; 5, base; 6, positioning rod; 7, rotating shaft; 8, gear; 9, transmission belt; 10, meshing teeth; 11, support frame; 12, sliding groove; 13, sliding rod; 14, installation groove; 15, electric push rod; 16, second leg; 17, top plate; 18, positioning groove; 19, positioning block; 20, limiting rod. Detailed implementation manners
[0022] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0023] Please refer to Figures 1-4 , the present utility model provides an embodiment: a processing and storage device for high - thermal - conductivity graphite composite pads, including a bottom plate 1; further including a through groove 4, a base 5, a positioning rod 6, a rotating shaft 7, a gear 8, a transmission belt 9 and meshing teeth 10. First legs 2 are provided at the corners of the upper surface of the bottom plate 1. A placing plate 3 is installed on the top surfaces of the four first legs 2. Through grooves 4 are opened at the left and right sides of the upper surface of the placing plate 3. A base 5 is slidably connected inside the through groove 4. A positioning rod 6 is installed on the front surface of the base 5. Rotating shafts 7 are rotatably connected to the front and rear positions of the left and right inner surfaces of the through groove 4. Gears 8 are installed at the left and right ends of the outer surfaces of the two rotating shafts 7. The left - front gear 8 is driven to rotate by a motor inside the placing plate 3. Transmission belts 9 are sleeved on the outer surfaces of the two rotating shafts 7. Meshing teeth 10 are installed on the left and right sides of the inner surface of the transmission belt 9. The meshing teeth 10 are meshed with the gears 8. By providing the positioning rod 6, when assembling, the base 5 is laid down, the positioning rod 6 is horizontally placed, and then the graphite composite pad is sleeved on the surface of the positioning rod 6. After sleeving is completed, the positioning rod 6 is erected. The motor inside the placing plate 3 is started, so that the rotating shaft 7 drives the gear 8 to rotate, thereby driving the transmission belt 9 to rotate, and transporting a group of composite pads to the rear end of the through groove 4. Multiple combinations of the positioning rod 6 and the base 5 are provided. By repeating the above operations, the placement of multiple groups of composite pads is completed, which is convenient for taking, placing and classification.
[0024] Please refer to Figures 2-4, in this embodiment, support frames 11 are welded to the front side surfaces of the placement plate 3 at the front ends of the two through slots 4. By providing the support frames 11, after the positioning rod 6 is laid down, the support frames 11 can support the end of the positioning rod 6, preventing the composite pad from spilling due to excessive weight when the composite pad is sleeved, reducing the burden on the staff. Moreover, on the side surfaces of the two through slots 4 close to the placement plate 3, sliding grooves 12 are provided. On the side surface of the base 5 close to the sliding grooves 12, sliding rods 13 are provided, and the sliding rods 13 are slidably connected to the sliding grooves 12. By providing the sliding grooves 12, when the transmission belt 9 drives the base 5 to move, the sliding rods 13 will slide synchronously inside the sliding grooves 12, thus achieving a positioning effect and preventing the position of the base 5 from deviating during movement. In addition, symmetrically arranged mounting grooves 14 are provided on the front side surface of the placement plate 3. Electric push rods 15 are provided inside the two mounting grooves 14, and the telescopic ends of the two electric push rods 15 respectively point to the left and right bases 5. By providing the electric push rods 15, when the base 5 is laid down to sleeve the composite pad, the electric push rods 15 are controlled to extend, so that the base 5 is clamped in cooperation with the inner wall of the through slot 4, preventing the base 5 from falling and injuring the staff.
[0025] Please refer to Figures 1-4 , in this embodiment, second legs 16 are provided at the corners of the upper surface of the placement plate 3. The top surfaces of the four second legs 16 are connected to a top plate 17. Symmetrically arranged positioning grooves 18 are provided on the left and right sides of the bottom surface of the top plate 17. A positioning block 19 is connected to the front end surface of the positioning rod 6. By providing the positioning grooves 18, after the positioning rod 6 is erected after the sleeving is completed, the positioning block 19 at the top of the positioning rod 6 will fit inside the positioning grooves 18 and slide inside the positioning grooves 18 when the base 5 moves. At the same time, the top plate 17 can limit the vertical position of the positioning rod 6 to prevent the positioning rod 6 from tipping over. Moreover, the base 5, the positioning rod 6, and the positioning block 19 are all connected by threads. By using the threaded connection method, it is convenient to replace positioning rods 6 with different diameters, so as to better match the inner circle of the composite pad. In addition, limiting rods 20 are installed on the upper surface of the bottom plate 1 in an array. By providing the limiting rods 20, multiple groups of bases 5 can be placed between adjacent two limiting rods 20, facilitating the staff to pick them up. The distance between adjacent two limiting rods 20 is slightly larger than the sum of the lengths of the base 5 and the sliding rod 13, which can limit the base 5 and increase stability.
[0026] When working, by setting the support frame 11, after the positioning rod 6 is laid down, the support frame 11 can provide support for the end of the positioning rod 6, avoiding the scattering of the composite pad due to excessive weight when the composite pad is sleeved, reducing the burden on the staff. And by opening the chute 12, when the conveyor belt 9 drives the base 5 to move, the sliding rod 13 will slide synchronously inside the chute 12, so as to achieve a positioning effect and avoid deviation of the position of the base 5 during movement. And by setting the electric push rod 15, when laying down the base 5 to sleeve the composite pad, control the electric push rod 15 to extend, so as to clamp the base 5 in cooperation with the inner wall of the through groove 4, avoiding the base 5 from falling and injuring the staff. And by setting the positioning groove 18, after the positioning rod 6 is erected after the sleeving is completed, the positioning block 19 at the top of the positioning rod 6 will fit inside the positioning groove 18 and slide inside the positioning groove 18 when the base 5 moves. At the same time, the top plate 17 can limit the vertical position of the positioning rod 6 to prevent the positioning rod 6 from tipping over. And by adopting the threaded connection method, it is convenient to replace the positioning rod 6 with different diameters, so as to better match the inner circle of the composite pad. And by setting the limiting rod 20, multiple groups of bases 5 can be placed between two adjacent limiting rods 20, which is convenient for the staff to take. The distance between two adjacent limiting rods 20 is slightly larger than the sum of the lengths of the base 5 and the sliding rod 13, which can limit the base 5 and increase the stability.
[0027] Through the above steps, by setting the positioning rod 6, when assembling, the base 5 is laid down, the positioning rod 6 is placed horizontally, and then the graphite composite pad is sleeved on the surface of the positioning rod 6. After the sleeving is completed, the positioning rod 6 is erected, and the motor inside the placing plate 3 is started, so that the rotating shaft 7 drives the gear 8 to rotate, thereby driving the conveyor belt 9 to rotate, and transporting a group of composite pads to the rear end of the through groove 4. There are multiple combinations of the positioning rod 6 and the base 5. Repeat the above operations to complete the placement of multiple groups of composite pads, which is convenient for taking, placing and sorting, so as to solve the problem that in the existing processing, there is no placement rack for graphite composite pads, and ordinary steel structure storage racks are used for placement, which easily leads to the mixing of composite pads of different models during storage and is difficult to take and place.
Claims
1. A high thermal conductivity graphite composite pad processing and storage device, comprising a bottom plate (1); characterized in that: The invention also comprises a through slot (4), a base (5), a positioning rod (6), a rotating shaft (7), a gear (8), a transmission belt (9) and meshing teeth (10). First legs (2) are arranged at the corners of the upper surface of the bottom plate (1). A placement plate (3) is installed on the top surface of the four first legs (2). A through slot (4) is opened at the left and right sides of the upper surface of the placement plate (3). The base (5) is slidably connected inside the through slot (4). The positioning rod (6) is installed on the front side surface of the base (5). The inner surfaces of the left and right sides of the through slot (4) are rotatably connected to the rotating shaft (7). Gears (8) are installed at both left and right ends of the outer surfaces of the two rotating shafts (7). The gear (8) on the left front side is driven to rotate by the motor inside the placement plate (3). The outer surfaces of the two rotating shafts (7) are sleeved with transmission belts (9). Meshing teeth (10) are installed on the left and right sides of the inner surface of the transmission belt (9). The meshing teeth (10) mesh with the gears (8).
2. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 1 is characterized in that: A support frame (11) is welded to the front end of the two through grooves (4) on the front side surface of the placement plate (3).
3. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 1 is characterized in that: A sliding groove (12) is provided on one side surface of the two through grooves (4) close to the placement plate (3), and a sliding rod (13) is provided on one side surface of the base (5) close to the sliding groove (12), and the sliding rod (13) is slidably connected to the sliding groove (12).
4. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 1, characterized in that: The front surface of the placement plate (3) is provided with mutually symmetrical mounting grooves (14), and electric push rods (15) are arranged inside the two mounting grooves (14), and the telescopic ends of the two electric push rods (15) point to the left and right bases (5) respectively.
5. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 1, characterized in that: Second legs (16) are provided at the corners of the upper surface of the placement plate (3); the top surfaces of the four second legs (16) are connected to a top plate (17); mutually symmetrical positioning grooves (18) are provided on the left and right sides of the bottom surface of the top plate (17); and a positioning block (19) is connected to the front end surface of the positioning rod (6).
6. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 5, characterized in that: The base (5), the positioning rod (6) and the positioning block (19) are all connected by threads.
7. The high thermal conductivity graphite composite pad processing and storage equipment according to claim 1, characterized in that: Limit rods (20) distributed in an array are installed on the upper surface of the bottom plate (1).