Pushing device for copper material processing
Patent Information
- Application Number
- CN202423016322.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-09
Smart Images

Figure CN223521799U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to copper material processing push material technology field, specifically related to a kind of push material device for copper material processing. BACKGROUND
[0002] Pure copper or copper alloy is made into various shapes, including rods, wires, plates, strips, tubes, foils, etc., collectively known as copper materials. Copper materials are processed by rolling, extruding and drawing, etc. Plate and strip materials in copper materials are hot-rolled and cold-rolled; while strip and foil materials are cold-rolled; tube and rod materials are divided into extruded products and drawn products; wire is drawn.
[0003] Pushing refers to the operation process of pushing materials from one location to another using mechanical equipment or other means, usually to send materials from one device or container to another device or container for further production or processing.
[0004] Currently, in the processing of copper materials after high-temperature processing, manpower is needed to transfer the copper materials to water for cooling, which is highly dangerous and easy to scald workers, and the operation is laborious, lacking a good push mechanism. Therefore, we propose a push material device for copper material processing to solve the above problems. UTILITY MODEL CONTENT
[0005] The utility model aims to provide a kind of push material device for copper material processing to solve the problems raised in the above background technology.
[0006] To solve the above technical problems, the utility model employs the following technical solutions:
[0007] A push material device for copper material processing includes a bottom plate, a push material unit is provided on the top surface of the bottom plate, a buffer unit is provided on the top surface of the push material unit, a cooling unit is provided on one side of the push material unit, and a material taking unit is provided inside the cooling unit.
[0008] The buffer unit includes a storage tank, the storage tank is arranged inside the top surface of the push material unit, a limiting groove is formed in the inner side of the storage tank, a buffer plate is slidably connected to the inner side of the limiting groove, a guide groove is fixedly connected to one side of the buffer plate, a buffer telescopic rod is fixedly connected to the bottom surface of the buffer plate, a spring is sleeved on the outer side of the buffer telescopic rod, one end of the spring is fixedly connected to the bottom surface of the storage tank, and the other end of the spring is fixedly connected to the bottom surface of the buffer plate.
[0009] A further improvement of the present invention is that the pushing unit includes a support frame, the support frame is fixedly connected to the inner side of the top surface of the base plate, a fixing groove is fixedly connected to the top surface of the support frame, an electric telescopic rod is rotatably connected to the inner side of the fixing groove, a fixing groove is rotatably connected to the telescopic end of the electric telescopic rod, and one side of the fixing groove is fixedly connected to the bottom surface of the storage tank.
[0010] By adopting the above technical solution, the setting of the support frame, the first fixed groove, the first electric telescopic rod and the second fixed groove facilitates the tilting of the storage tank and pushes out the copper material inside the storage tank.
[0011] A further improvement of the present invention is that a limiting frame is provided on one side of the fixed groove two, the two sides of the limiting frame are rotatably connected to the two sides of the storage groove, and one side of the limiting frame is fixedly connected to the two sides of the support frame.
[0012] By adopting the above technical solution and setting the limiting frame, the tilt of the storage tank can be easily limited.
[0013] A further improvement of the present invention is that the cooling unit includes a cooling box, the cooling box is disposed on one side of the support frame, a sliding groove is slidably connected to the inner side of the cooling box, and a water outlet pipe is sleeved on the inner side of the cooling box.
[0014] By adopting the above technical solution, a sliding groove is provided on the inner side of the cooling box, which facilitates the limiting of the movement of the lifting plate.
[0015] A further improvement of this utility model is that: an electric telescopic rod II is fixedly connected to one side of the cooling box, and a push plate is fixedly connected to the telescopic end of the electric telescopic rod II.
[0016] By adopting the above technical solution, the electric telescopic rod and push plate facilitate the removal of the processed copper material from one side of the cooling box by the material handling unit.
[0017] A further improvement of the present invention is that the material handling unit includes a motor, which is fixedly connected to the inner side of the top surface of the cooling box. The output end of the motor is connected to a threaded rod, and the inner side of the threaded rod is threadedly connected to a lifting plate. One side of the lifting plate is slidably connected to the inner side of the slide groove.
[0018] By adopting the above technical solution, the design of the motor, threaded rod, lifting plate, and sealing cover facilitates the removal of copper materials from inside the cooling box, making it easier for workers to operate and further reducing manual labor.
[0019] The further improvement in the technical scheme of the utility model lies in that the top surface of the lifting plate is in threaded connection with a sealing cover, the inside of the lifting plate is fixedly connected with motor two, the output end of motor two is in transmission connection with a bidirectional threaded rod, and the inside of the bidirectional threaded rod is in threaded connection with a clamping plate.
[0020] By means of the motor two, the bidirectional threaded rod and the clamping plate, the copper material in the cooling box can be clamped and fixed.
[0021] Thanks to the above technical scheme, the utility model has the following technical progress compared with the prior art:
[0022] The utility model provides a copper material processing is with pushing device, through the setting of storage tank, limit groove, buffer board, guide slot, buffer unit and spring, has reached in the copper material falling process, to the effect that the shock of producing is buffered, further to the effect that the copper material itself is protected, through the setting of support frame, fixed groove no.
[0023] The utility model provides a copper material processing is with pushing device, through the setting of motor two, bidirectional threaded rod and clamping plate, the effect that the copper material in the cooling box is clamped and fixed is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is the three -dimensional structure schematic diagram of the utility model;
[0025] Figure 2 It is the structure schematic diagram of the pushing unit of the utility model;
[0026] Figure 3 It is the cross section structure schematic diagram of the buffer unit of the utility model;
[0027] Figure 4 It is the structure schematic diagram of the cooling unit of the utility model;
[0028] Figure 5 It is the structure schematic diagram of the taking material unit of the utility model.
[0029] As shown in the figure: 1, the bottom plate; 2, the pushing unit; 21, the support frame; 22, the fixed groove one; 23, the electric telescopic rod one; 24, the fixed groove two; 25, the limiting frame; 3, the buffer unit; 31, the storage tank; 32, the limiting groove; 33, the buffer plate; 34, the guide groove; 35, the buffer telescopic rod; 36, the spring; 4, the cooling unit; 41, the cooling box; 42, the chute; 43, the water outlet pipe; 44, the electric telescopic rod two; 45, the push plate; 5, the taking unit; 51, the motor one; 52, the threaded rod; 53, the lifting plate; 54, the sealing cover; 55, the motor two; 56, the bidirectional threaded rod; 57, the clamping plate. DETAILED DESCRIPTION
[0030] The utility model makes further detailed description in combination with examples: Embodiment
[0031] As Figures 1-5 shown, the utility model provides a copper material processing is with pushing device, including bottom plate 1, the top surface of bottom plate 1 is provided with pushing unit 2, the top surface of pushing unit 2 is provided with buffer unit 3, one side of pushing unit 2 is provided with cooling unit 4, the inside of cooling unit 4 is provided with taking unit 5, buffer unit 3 includes storage tank 31, and the inside of storage tank 31 is set up in the top surface of pushing unit 2, and the inside of storage tank 31 is provided with limiting groove 32, and the inside of limiting groove 32 is slidably connected with buffer plate 33, and one side of buffer plate 33 is fixedly connected with guide groove 34, and the bottom surface of buffer plate 33 is fixedly connected with buffer telescopic rod 35, and the outside of buffer telescopic rod 35 is provided with spring 36, and one end of spring 36 is fixedly connected in the bottom surface of storage tank 31, and one end of spring 36 is fixedly connected in the bottom surface of buffer plate 33, by moving the device to copper material processing's discharge position, with high-temperature processing after copper material is transported to the inside of storage tank 31, with copper material is received through limiting groove 32, while in the process of falling due to the gravity of copper material in the inside of limiting groove 32, with the cooperation between buffer telescopic rod 35 and spring 36, the impact force generated is buffered, the main body of storage tank 31 is protected, and the copper material after processing is further protected. Embodiment
[0032] As Figures 1-5As shown, on the basis of example 1, the utility model provides a technical scheme: preferably, the pushing unit 2 includes support frame 21, support frame 21 fixedly connected in the top surface inside of bottom plate 1, support frame 21 top surface fixedly connected with fixed groove one 22, the inside rotationally connected with electric telescopic link one 23 of fixed groove one 22, the telescopic end rotationally connected with fixed groove two 24 of electric telescopic link one 23, the bottom surface of fixed groove two 24 is fixedly connected on one side of storage tank 31, fixed groove two 24 one side is provided with limit support 25, and the both sides rotationally connected in storage tank 31 both sides of limit support 25, and one side of limit support 25 is fixedly connected in support frame 21 both sides, and cooling unit 4 includes cooling box 41, and cooling box 41 is arranged in one side of support frame 21, and the inside sliding connection of cooling box 41 has sliding slot 42, and cooling box 41 inside is sleeved with water outlet pipe 43, and one side of cooling box 41 is fixedly connected with electric telescopic link two 44, and the telescopic end of electric telescopic link two 44 is fixedly connected with push plate 45, and then control electric telescopic link one 23 extends, and then under the limit of fixed groove one 22 and fixed groove two 24, storage tank 31 is tilted under the limit of limit support 25, and with the guidance groove 34 on the top surface of limit groove 32 is transported to the inside of cooling box 41 and is cooled, after cooling, control electric telescopic link two 44 extends, and then push plate 45 pushes the copper material in the inside of cooling box 41 to one side. Embodiment
[0033] As Figures 1-5 shown, on the basis of example 1, the utility model provides a technical scheme: preferably, the taking unit 5 includes motor one 51, and motor one 51 is fixedly connected in the top surface inside of cooling box 41, and the output end of motor one 51 is drivingly connected with threaded rod 52, and the inside screw connection of threaded rod 52 has lifting plate 53, and one side of lifting plate 53 is slidingly connected in the inside of sliding slot 42, and the top surface of lifting plate 53 is screw-connected with sealing cover 54, and the inside fixedly connected with motor two 55 of lifting plate 53, and the output end of motor two 55 is drivingly connected with bidirectional threaded rod 56, and the inside screw connection of bidirectional threaded rod 56 has clamping plate 57, and the copper material is moved to the top surface of lifting plate 53, and control motor two 55 drives bidirectional threaded rod 56 to rotate, and then drive clamping plate 57 to clamp and fix the copper material on the top surface of lifting plate 53, and then control motor one 51 drives threaded rod 52 to rotate, and simultaneously drive the copper material on the top surface of lifting plate 53 to move, and then move lifting plate 53 to the water surface of cooling box 41, and then control motor two 55 reverses, and then the copper material can be taken out.
[0034] The working principle of the copper material processing pushing device will be described below.
[0035] As Figures 1-5As shown, by moving the device to the discharge position of the copper material processing, the high-temperature processed copper material is then conveyed into the storage tank 31, and then the copper material is received by the limiting groove 32, and during the falling process of the copper material, due to the gravity effect inside the limiting groove 32, the impact force generated is buffered by the cooperation between the buffer telescopic rod 35 and the spring 36, the main body of the storage tank 31 is protected, and the processed copper material is further protected, then the extension of the electric telescopic rod one 23 is controlled, and then under the limiting of the fixed groove one 22 and the fixed groove two 24, the storage tank 31 is driven to tilt under the limiting of the limiting frame 25, and then the guiding groove 34 on the top surface of the limiting groove 32 is conveyed into the cooling box 41 for cooling, after cooling, the extension of the electric telescopic rod two 44 is controlled, and then the copper material in the cooling box 41 is pushed to one side by the push plate 45, and then the copper material moves to the top surface of the lifting plate 53, the rotation of the bidirectional threaded rod 56 is driven by the motor two 55, and then the clamping plate 57 clamps and fixes the copper material on the top surface of the lifting plate 53, and then the rotation of the threaded rod 52 is driven by the motor one 51, and the copper material on the top surface of the lifting plate 53 is moved, and then the lifting plate 53 is moved to the water surface of the cooling box 41, and then the motor two 55 is reversed, and then the copper material can be taken out.
[0036] The above is a detailed description of the general utility model, but some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, without departing from the spirit of the utility model, the modifications or improvements are within the scope of the utility model.
Claims
1. A pushing device for processing copper materials, comprising a base plate (1), characterized in that: The top surface of the bottom plate (1) is provided with a pushing unit (2), the top surface of the pushing unit (2) is provided with a buffer unit (3), one side of the pushing unit (2) is provided with a cooling unit (4), and the inside of the cooling unit (4) is provided with a material taking unit (5); The buffer unit (3) comprises a storage groove (31), the storage groove (31) is arranged in the inside of the top surface of the pushing unit (2), the inside of the storage groove (31) is provided with a limiting groove (32), the inside of the limiting groove (32) is slidably connected with a buffer plate (33), one side of the buffer plate (33) is fixedly connected with a guide groove (34), the bottom surface of the buffer plate (33) is fixedly connected with a buffer telescopic rod (35), the outside of the buffer telescopic rod (35) is sleeved with a spring (36), one end of the spring (36) is fixedly connected to the bottom surface of the storage groove (31), and the other end of the spring (36) is fixedly connected to the bottom surface of the buffer plate (33).
2. The material pushing device for copper processing according to claim 1, characterized in that: The pushing unit (2) comprises a support frame (21), the support frame (21) is fixedly connected to the inside of the top surface of the bottom plate (1), the top surface of the support frame (21) is fixedly connected with a fixed groove I (22), the inside of the fixed groove I (22) is rotatably connected with an electric telescopic rod I (23), the telescopic end of the electric telescopic rod I (23) is rotatably connected with a fixed groove II (24), and one side of the fixed groove II (24) is fixedly connected to the bottom surface of the storage groove (31).
3. The material pushing device for copper processing according to claim 2, characterized in that: One side of the fixed groove II (24) is provided with a limiting frame (25), the limiting frame (25) is rotatably connected to the two sides of the storage groove (31), and one side of the limiting frame (25) is fixedly connected to the two sides of the support frame (21).
4. The material pushing device for copper processing according to claim 1, characterized in that: The cooling unit (4) comprises a cooling box (41), the cooling box (41) is arranged on one side of the support frame (21), the inside of the cooling box (41) is slidably connected with a sliding groove (42), and the inside of the cooling box (41) is sleeved with a water outlet pipe (43).
5. The material pushing device for copper processing according to claim 4, characterized in that: One side of the cooling box (41) is fixedly connected with an electric telescopic rod II (44), and the telescopic end of the electric telescopic rod II (44) is fixedly connected with a push plate (45).
6. The material pushing device for copper processing according to claim 1, characterized in that: The material taking unit (5) comprises a motor I (51), the motor I (51) is fixedly connected to the inside of the top surface of the cooling box (41), the output end of the motor I (51) is drivingly connected with a threaded rod (52), the inside of the threaded rod (52) is threadedly connected with a lifting plate (53), and one side of the lifting plate (53) is slidably connected to the inside of the sliding groove (42).
7. The material pushing device for copper processing according to claim 6, characterized in that: The top surface of the lifting plate (53) is threadedly connected with a sealing cover (54), the inside of the lifting plate (53) is fixedly connected with a motor II (55), the output end of the motor II (55) is drivingly connected with a bidirectional threaded rod (56), and the inside of the bidirectional threaded rod (56) is threadedly connected with a clamping plate (57).