Capillary copper pipe production transfer device
By using a carrier plate and arc plate structure in the transfer device, combined with lifting and shock absorption components, the problem of surface scratches during the transportation of capillary copper tubes is solved, ensuring the quality of the finished product.
Patent Information
- Application Number
- CN202423296750.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-31
AI Technical Summary
The existing transfer equipment lacks protective devices during the transportation of capillary copper tubes, which makes the surface of the copper tubes easily scratched and affects the quality of the finished product.
The structure employs a load-bearing plate and an arc plate, and is tightly fixed to the copper tube by a buffer plate. Combined with lifting and shock-absorbing components, it protects the copper tube from damage during transportation.
It effectively prevents copper tubes from moving and vibrating during transportation, avoids surface scratches, and ensures the quality of finished products.
Smart Images

Figure CN223672552U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of transfer device, more particularly to capillary copper pipe production transfer device. BACKGROUND
[0002] Capillary copper pipe is high-precision material widely used in electrical, electronic, air conditioning, refrigeration, automobile and medical industries, and its main features are small diameter, thin wall and softness, and it usually requires high surface finish and dimensional accuracy.
[0003] The transfer device in the prior art generally adopts roller conveying or belt conveying, and due to the lack of protection device for copper pipe during transportation, the copper pipe surface is easily scratched during transportation, thereby affecting the quality of finished products.
[0004] Therefore, the capillary copper pipe production transfer device is proposed, which places multiple copper pipes on the bearing plate and rotates the circular arc plate to fix the copper pipes under the extrusion of the buffer plate, thereby avoiding scratching the copper pipes during transportation. SUMMARY
[0005] In order to overcome the problem that the existing transfer device generally adopts roller conveying or belt conveying, and due to the lack of protection device for copper pipe during transportation, the copper pipe surface is easily scratched during transportation, thereby affecting the quality of finished products, therefore, the capillary copper pipe production transfer device is proposed.
[0006] The technical scheme of the utility model is as follows: the capillary copper pipe production transfer device comprises a transfer trolley, a bearing plate and a lifting assembly; the transfer trolley is internally provided with the lifting assembly, the lower end of the transfer trolley is provided with a damping assembly, the upper end of the bearing plate is provided with a first groove, the upper end of the bearing plate is fixedly connected with a rotating seat, the inner side of the rotating seat is rotatably provided with a circular arc plate, the other end of the circular arc plate is provided with a fixing bolt, the fixing bolt penetrates through the circular arc plate and is fixedly connected with a first fixed plate, the first fixed plate is fixedly connected to the upper end of the bearing plate, the inner wall of the circular arc plate is fixedly connected with an adjusting rod, the other end of the adjusting rod is fixedly connected with a buffer plate, the inner wall of the circular arc plate is fixedly connected with a first spring, and the first spring is sleeved on the outer side of the adjusting rod.
[0007] As a preferred, the right end of the inner wall of the transfer trolley is provided with a second groove, the second groove is slidably provided with a second fixed plate, the right end of the second fixed plate is provided with a plurality of third grooves, the bearing plate is slidably arranged on the inner wall of the third groove, and the right end face of the bearing plate is attached to the inner wall of the transfer trolley.
[0008] As a preferred, the lifting assembly comprises a first sliding rail, a first motor, a screw rod, a sliding block, a fourth groove and a connecting block; the left end of the transfer trolley is fixedly connected with the first sliding rail, and the upper end of the first sliding rail is fixedly connected with the first motor.
[0009] As preferred, the first motor output shaft passes through the upper end of the first slide rail and is fixed with a screw rod, the outer wall of the screw rod is slidably provided with a sliding block, the fourth groove is formed through the left side of the inner wall of the transfer trolley and is in communication with the first slide rail, the right end of the sliding block is fixed with a connecting block, and the right end of the connecting block is fixed to the left end of the second fixed plate.
[0010] As preferred, the damping assembly comprises a damper, a shock-absorbing plate, a second spring, a mounting plate, a wheel and a locking plate; the lower end of the transfer trolley is fixed with the damper, the other end of the damper is fixed with the shock-absorbing plate, the outer side of the damper is provided with the second spring, the lower end of the shock-absorbing plate is fixed with two mounting plates, the wheel is rotatably arranged between the two mounting plates, and the outer side of the mounting plate is fixed with the locking plate.
[0011] As preferred, the upper end of the transfer trolley is fixed with the second slide rail, the upper end of the transfer trolley is provided with an upper cover, the front and rear ends of the upper cover are fixed with sliding plates, and the sliding plates are slidably arranged in the inner wall of the second slide rail.
[0012] As preferred, the edge of the second slide rail is provided with a circular groove, the edge of the upper cover is fixed with a limiting rod, the limiting rod is matched with the circular groove, and the right end of the upper cover is fixed with a handle.
[0013] The beneficial effects of the present application are as follows: by inserting the bearing plate into the third groove, then placing a plurality of copper pipes in the first groove, rotating the circular arc plate, and making the buffer plate on the inner wall of the circular arc plate contact the copper pipe, the buffer plate is pressed against the first spring at this time, and under the reaction force of the first spring, the buffer plate and the copper pipe are tightly fixed, then the circular arc plate is fixed on the bearing plate through the fixing bolt, the problem of copper pipe movement during transportation is solved, thereby preventing the copper pipe surface from being scratched and affecting the quality of finished products. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 A three-dimensional structure schematic view of the capillary copper pipe production transfer device is shown.
[0015] Figure 2 A three-dimensional structure schematic view of the bearing plate of the capillary copper pipe production transfer device is shown.
[0016] Figure 3 A three-dimensional structure schematic view of the capillary copper pipe production transfer device is shown. Figure 2 A local enlarged three-dimensional structure schematic view of A in the middle is shown.
[0017] Figure 4 A three-dimensional structure schematic view of the transfer trolley of the capillary copper pipe production transfer device is shown.
[0018] Figure 5 A sectional three-dimensional structure schematic view of the first slide rail of the capillary copper pipe production transfer device is shown.
[0019] Figure 6 A three-dimensional structure schematic view of a damping assembly of the capillary copper pipe production transfer device is shown.
[0020] Figure 7 A three-dimensional structure schematic view of the cap of the capillary copper pipe production transfer device is shown.
[0021] The signs in the drawings are: 1, transfer trolley; 2, second slide rail; 3, upper cover; 4, circular groove; 5, limiting rod; 6, sliding plate; 7, handle; 101, bearing plate; 102, first groove body; 103, rotating seat; 104, arc plate; 105, fixed bolt; 106, first fixed plate; 107, adjusting rod; 108, buffer plate; 109, first spring; 110, second fixed plate; 111, third groove body; 112, second groove body; 201, first slide rail; 202, first motor; 203, screw rod; 204, sliding block; 205, fourth groove body; 206, connecting block; 301, damper; 302, shock absorbing plate; 303, second spring; 304, mounting plate; 305, wheel; 306, locking plate. DETAILED DESCRIPTION
[0022] The utility model is further explained in connection with the drawings and examples.
[0023] Please refer to Figures 1-7 The utility model provides a kind of example: capillary copper pipe production transfer device, including transfer trolley 1;Further including bearing plate 101 and lifting assembly;Transfer trolley 1 inside is provided with lifting assembly, transfer trolley 1 lower end is provided with damping assembly, bearing plate 101 upper end is equipped with first groove body 102, bearing plate 101 upper end is fixedly connected with rotating seat 103, rotating seat 103 inner side is rotationally provided with arc plate 104, another end of arc plate 104 is provided with fixed bolt 105, fixed bolt 105 passes through arc plate 104 and is fixedly connected with first fixed plate 106, first fixed plate 106 is fixedly connected on the upper end of bearing plate 101, adjusting rod 107 is fixedly connected on the inner wall of arc plate 104, another end of adjusting rod 107 is fixedly connected with buffer plate 108, first spring 109 is fixedly connected on the inner wall of arc plate 104, first spring 109 is sleeved on the outer side of adjusting rod 107.
[0024] Please refer to Figure 2 And Figure 4 In the embodiment, second groove body 112 is formed in the right end of the inner wall of transfer trolley 1, second fixed plate 110 is slidably arranged in the inner wall of second groove body 112, a plurality of third groove bodies 111 are formed in the right end of second fixed plate 110, bearing plate 101 is slidably arranged in the inner wall of third groove body 111, the right end surface of bearing plate 101 is attached to the inner wall of transfer trolley 1, so that bearing plate 101 can be limited, to avoid sliding of bearing plate 101 in the inner wall of third groove body 111 during transportation.
[0025] Referring to Figure 5 In the embodiment, the lifting assembly comprises a first sliding rail 201, a first motor 202, a screw rod 203, a sliding block 204, a fourth groove body 205 and a connecting block 206. The first sliding rail 201 is fixed to the left end of the transfer trolley 1. The first motor 202 is fixed to the upper end of the first sliding rail 201. The output shaft of the first motor 202 penetrates through the upper end of the first sliding rail 201 and is fixed to the screw rod 203. The sliding block 204 is slidably arranged on the outer wall of the screw rod 203. The fourth groove body 205 is arranged on the left side of the inner wall of the transfer trolley 1 and communicates with the first sliding rail 201. The connecting block 206 is fixed to the right end of the sliding block 204 and the left end of the second fixed plate 110. The first motor 202 is started to drive the sliding block 204 to move up and down on the inner wall of the first sliding rail 201. The second fixed plate 110 and the sliding block 204 are connected by the connecting block 206, so that the second fixed plate 110 can move up and down on the inner wall of the transfer trolley 1. Thus, the second fixed plate 110 can be stored in the transfer trolley 1, avoiding damage to the copper pipe during transportation.
[0026] Referring to Figure 6 In the embodiment, the damping assembly comprises a damper 301, a shock-absorbing plate 302, a second spring 303, a mounting plate 304, a wheel 305 and a locking plate 306. The damper 301 is fixed to the lower end of the transfer trolley 1. The other end of the damper 301 is fixed to the shock-absorbing plate 302. The second spring 303 is arranged on the outer side of the damper 301. Two mounting plates 304 are fixed to the lower end of the shock-absorbing plate 302. The wheel 305 is rotatably arranged between the two mounting plates 304. The locking plate 306 is fixed to the outer side of the mounting plate 304. The damper 301 and the second spring 303 can reduce the vibration amplitude of the transfer trolley 1 during movement, thereby protecting the copper pipe inside. The locking plate 306 can lock the wheel 305 during unloading.
[0027] Referring to Figure 7 In the embodiment, the second sliding rail 2 is fixed to the upper end of the transfer trolley 1. The upper cover 3 is arranged on the upper end of the transfer trolley 1. The sliding plates 6 are fixed to the front and rear ends of the upper cover 3. The sliding plates 6 are slidably arranged in the inner wall of the second sliding rail 2. The circular grooves 4 are arranged at the edges of the second sliding rail 2. The limiting rods 5 are fixed to the edges of the upper cover 3 and are matched with the circular grooves 4. The handle 7 is fixed to the right end of the upper cover 3. The second sliding rail 2 can be used to close the upper cover 3 by sliding the upper cover 3, avoiding the falling of sundries into the transfer trolley 1 during transportation. During unloading, the limiting rods 5 are moved into the circular grooves 4 by pulling the handle 7. Then the upper cover 3 can be rotated to be parallel to the right end surface of the transfer trolley 1, so that the upper cover 3 occupies a smaller space during unloading, avoiding the interference of the upper cover 3 with the loading and unloading of goods.
[0028] In use, first, the bearing plate 101 is inserted into the third groove body 111, then the plurality of copper pipes are placed in the first groove body 102, the arc plate 104 is rotated, the buffer plate 108 on the inner wall of the arc plate 104 contacts the copper pipe, at this time the buffer plate 108 extrudes the first spring 109, under the reaction force of the first spring 109, the buffer plate 108 is tightly fixed with the copper pipe, then the arc plate 104 is fixed on the bearing plate 101 through the fixing bolt 105, the problem that the copper pipe is moved in the transportation process, thereby scratching the surface of the copper pipe and affecting the quality of the finished product is solved;
[0029] Then the first motor 202 is started, the slider 204 drives the second fixed plate 110 to move downwards, the second fixed plate 110 can be accommodated into the transfer trolley 1, the right end surface of the bearing plate 101 is attached to the inner wall of the transfer trolley 1, the bearing plate 101 can be limited, the bearing plate 101 is prevented from sliding on the inner wall of the third groove body 111 in the transportation process.
[0030] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, within the knowledge range of the person skilled in the art, various changes can be made without departing from the purpose of the utility model.
Claims
1. A device for transferring capillary copper pipes, comprising a transfer trolley (1), characterized in that: Also include the bearing plate (101) and lifting assembly; transfer trolley (1) inside is provided with lifting assembly, transfer trolley (1) lower end is provided with damping assembly, bearing plate (101) upper end is provided with first slot (102), bearing plate (101) upper end is fixedly connected with rotating seat (103), rotating seat (103) inner side is rotatably provided with arc plate (104), the other end of arc plate (104) is provided with fixed bolt (105), fixed bolt (105) passes through arc plate (104) and is fixedly connected with first fixed plate (106), first fixed plate (106) is fixedly connected on the upper end of bearing plate (101), arc plate (104) inner wall is fixedly connected with adjusting rod (107), the other end of adjusting rod (107) is fixedly connected with buffer plate (108), arc plate (104) inner wall is fixedly connected with first spring (109), first spring (109) is sleeved on the outer side of adjusting rod (107).
2. The capillary copper tube production transfer device according to claim 1, characterized in that: Transfer trolley (1) inner wall right end is provided with second slot (112), second slot (112) inner wall is slidably provided with second fixed plate (110), second fixed plate (110) right end is provided with a plurality of third slot (111), bearing plate (101) is slidably provided in the inner wall of third slot (111), the right end surface of bearing plate (101) is attached to the inner wall of transfer trolley (1).
3. The capillary copper tube production transfer device according to claim 1, characterized in that: Lifting assembly includes first sliding rail (201), first motor (202), screw rod (203), sliding block (204), fourth slot (205) and connecting block (206); transfer trolley (1) left end is fixedly connected with first sliding rail (201), first sliding rail (201) upper end is fixedly connected with first motor (202).
4. The capillary copper tube production transfer device according to claim 3, characterized in that: The output shaft of first motor (202) passes through the upper end of first sliding rail (201) and is fixedly connected with screw rod (203), the outer wall of screw rod (203) is slidably provided with sliding block (204), the fourth slot (205) is throughly provided in the left side of the inner wall of transfer trolley (1), the fourth slot (205) is communicated with first sliding rail (201), the right end of sliding block (204) is fixedly connected with connecting block (206), the left end of connecting block (206) is fixedly connected to the left end of second fixed plate (110).
5. The capillary copper tube production transfer device according to claim 1, characterized in that: Damping assembly includes damper (301), shock absorbing plate (302), second spring (303), mounting plate (304), wheel (305) and locking plate (306); transfer trolley (1) lower end is fixedly connected with damper (301), the other end of damper (301) is fixedly connected with shock absorbing plate (302), the outer side of damper (301) is provided with second spring (303), the lower end of shock absorbing plate (302) is fixedly connected with two mounting plates (304), the wheel (305) is rotatably provided between the two mounting plates (304), the outer side of mounting plate (304) is fixedly connected with locking plate (306).
6. The capillary copper tube production transfer device according to claim 1, characterized in that: Transfer trolley (1) upper end is fixedly connected with second sliding rail (2), transfer trolley (1) upper end is provided with upper cover (3), upper cover (3) front and rear ends are fixedly connected with sliding plate (6), sliding plate (6) is slidably provided in the inner wall of second sliding rail (2).
7. The capillary copper tube production transfer device according to claim 6, characterized in that: The second sliding rail (2) is provided with a circular groove (4) at the edge thereof, the upper cover (3) is fixedly connected with a limiting rod (5) at the edge thereof, the limiting rod (5) is matched with the circular groove (4), and the right end of the upper cover (3) is fixedly connected with a handle (7).