Copper wire coil blanking device
By designing the wire pressing, cage lifting and flip mechanism of the copper wire rolling and cutting device, the problem of inconvenience in cutting copper wire rolling is solved, automatic compression and separation is realized, operating difficulty and labor intensity are reduced, and the cutting efficiency and transportation stability are improved.
Patent Information
- Application Number
- CN202422486031.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-15
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-15
AI Technical Summary
The existing copper wire coiling equipment is inconvenient to operate, time-consuming and labor-intensive, and the copper wire coil is prone to loose collapse during lifting and transportation, which increases the difficulty of operation and labor intensity.
A copper wire coiling and unloading device is designed, including a wire pressing mechanism, a cage lifting mechanism and a flip mechanism. The copper wire coil is pressed through the wire pressing member, and the cage lifting mechanism is automatically separated and the wire collecting cage is adjusted through the flip mechanism to simplify the operation process and improve the cutting efficiency.
The automatic compression and separation of copper wire coils is realized, which reduces the physical labor of operators, reduces the difficulty of unloading, and improves the transportation stability and unloading efficiency of copper wire coils.
Smart Images

Figure CN223210212U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of copper wire winding equipment, in particular to a copper wire coil unloading device. Background Art
[0002] The copper wire is stretched by a wire drawing machine to reach the required diameter, and then enters the winding equipment for winding. When the copper wire is wound, a winding cage is placed below the wire outlet of the winding equipment. The wire wheel of the winding equipment rotates around the winding cage and the weight of the copper wire causes the copper wire to continuously form a loop on the outer ring wall of the winding cage, thus forming a copper wire coil. During the winding process, the copper wire falls freely due to gravity. The copper wire that falls into the winding cage is fluffy, and there is a large gap between the upper and lower layers of copper wire. The operator needs to compact the copper wire along the axial direction of the winding cage before tightening and bundling it, so as to avoid the risk of the copper wire coil becoming loose and collapsing during lifting and transportation.
[0003] To simplify the bundling of copper wire coils by operators, a hydraulic take-up device with publication number CN206751084U is disclosed in the prior art. This device utilizes hydraulic drive to cause a hydraulic plate to press downward on the metal coils in a take-up cage, thereby compacting the loose coils. Since the compacted coils are reduced to half the height of the take-up cage after bundling, the risk of the bundled copper coils collapsing during transportation is greatly reduced, while also simplifying the bundling operation for workers.
[0004] With regard to the above-mentioned related technologies, the inventors believe that the following defects exist: after the copper wires on the take-up cage are compressed and bundled, the operator needs to manually remove the take-up cage from the bundled copper wire roll, which is time-consuming and labor-intensive, and the operation is still not convenient enough. In addition, the axial length of the take-up cage is relatively long, which increases the difficulty for the operator to remove it from the copper wire roll and increases the labor intensity; in addition, after being tied, the copper wire roll is placed on the base plate. Since the opening of the copper wire roll after the take-up cage is raised faces upward, it is not conducive to lifting and forking unloading, which increases the difficulty of unloading. Utility Model Content
[0005] In order to facilitate the unloading of copper wire coils and reduce the difficulty of unloading copper wire coils, the present application provides a copper wire coil unloading device.
[0006] The utility model provides a copper wire coil unloading device adopting the following technical solutions:
[0007] A copper wire coil unloading device includes a machine body, a wire pressing mechanism, and a cage lifting mechanism. The machine body is provided with a placement space and is used to place the copper wire coil rolled on a wire taking-up cage. The wire pressing mechanism includes a support member, which is slidably assembled with the machine body and moves back and forth toward the copper wire coil. The end of the support member facing the copper wire coil is connected to a wire pressing member for pressing the copper wire. The cage lifting mechanism is assembled with the support member and is located above the wire taking-up cage. The cage lifting mechanism is used to separate the wire taking-up cage from the copper wire coil.
[0008] Preferably, the cage lifting mechanism includes a cage lifting cylinder and a cage lifting assembly, the fixed end of the cage lifting cylinder is connected to the support member, the pushing end of the cage lifting cylinder is connected to the cage lifting assembly, and the cage lifting assembly is used to clamp the wire-taking cage.
[0009] Preferably, the lifting cage assembly includes an insertion rod and two groups of cylinders, the two groups of cylinders are respectively located at opposite ends of the wire-taking cage, and the lifting cage cylinder is provided with two groups corresponding to the cylinders. The insertion rod is detachable and inserted into the two groups of cylinders and is used to clamp the wire-taking cage.
[0010] Preferably, the wire pressing mechanism further comprises a wire pressing cylinder, a fixed end of the wire pressing cylinder is connected to the top wall of the machine body, and a pushing end of the wire pressing cylinder is connected to the top wall of the support member.
[0011] Preferably, the machine body includes a base plate, a top plate, and a plurality of groups of vertical rods, and two ends of the vertical rods are respectively connected to the base plate and the top plate to form the placement space.
[0012] Preferably, the wire pressing member includes several groups of pressing arms arranged in an inverted T shape, the length of the pressing arms is greater than or equal to the stroke of the cage lifting cylinder, and when multiple groups of pressing arms are provided, the multiple groups of pressing arms are arranged at equal angles along the center of the support member.
[0013] Preferably, the wire pressing member also includes a connecting arm and a roller. The base plate and the top plate are both arranged in a square shape. There are four groups of vertical rods and they are respectively located at the end corners of the base plate. There are four groups of pressure arms and they are respectively arranged corresponding to the four groups of pressure rods. One end of the connecting arm is connected to the pressure arm, and the other end of the connecting arm is rotatably connected to the roller. The roller is arranged between the connecting arm and the vertical rod.
[0014] Preferably, a turning mechanism is further included, and the turning mechanism includes a rotating plate arranged in an L shape, the end corners of the rotating plate are rotatably assembled with the base plate, and the rotating plate is located below the copper wire coil.
[0015] Preferably, the flipping mechanism includes a pushing cylinder for pushing the rotating plate to flip, and the machine body also includes a bottom plate located below the base plate, the pushing cylinder is located between the bottom plate and the base plate, and the base plate is provided with a long hole for assembling the rotating plate, and the pushing cylinder is assembled with the base plate and is located below the rotating plate.
[0016] Preferably, the flipping mechanism also includes a hinge, the middle part of the hinge is rotatably assembled with the inner wall of the long hole, one end of the hinge is connected to the rotating plate, the pushing end of the pushing cylinder is rotatably assembled with the other end of the rotating hinge, and the fixed end of the pushing cylinder is hingedly assembled with the base plate.
[0017] The beneficial effects of the utility model are:
[0018] By providing a wire pressing mechanism, the wire pressing piece is used to squeeze the copper wire coils in the wire taking-up cage, and the fluffy copper wire is compressed before being bundled. The copper wire coils are squeezed densely after being rolled, which reduces the risk of collapse of the bundled copper wire coils during transportation and transport, and also facilitates the operator to perform bundling operations.
[0019] By providing a lifting cage mechanism and assembling the lifting cage mechanism on the support member, the lifting cage mechanism moves up and down with the support member, reducing the steps for the operator to manually extract the wire taking-up cage, greatly simplifying the operation process, improving work efficiency, reducing the difficulty of unloading the copper wire coil, and reducing the physical labor and work intensity of the operator.
[0020] By providing a turning mechanism, the rotating plate can turn over the copper wire coil after bundling, and adjust the opening direction of the copper wire coil, thereby facilitating the lifting and fork transportation of the copper wire coil and improving the unloading efficiency of the copper wire coil. Secondly, the rotating plate plays a supporting and limiting role on the copper wire coil to a certain extent when pressing the copper wire and taking out the wire cage. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a first-perspective stereogram in the embodiment of the present application;
[0022] Figure 2 yes Figure 1 A partial enlarged view of point A in the middle;
[0023] Figure 3 This is the main view in the embodiment of the present application;
[0024] Figure 4 This is a second perspective stereogram in the embodiment of the present application;
[0025] Figure 5 yes Figure 4 A partial enlarged view of point B in the middle;
[0026] Figure 6 is a cross-sectional view in an embodiment of the present application;
[0027] Figure 7 It is a third perspective stereogram in the embodiment of the present application;
[0028] Figure 8 This is a stereoscopic image from the fourth perspective in the embodiment of the present application.
[0029] Explanation of the accompanying symbols: 1. Machine body; 101. Placement space; 102. Base plate; 1021. Long strip hole; 103. Top plate; 104. Vertical rod; 105. Bottom plate; 2. Wire pressing mechanism; 201. Support member; 202. Wire pressing member; 2021. Pressing arm; 2022. Connecting arm; 2023. Roller; 203. Wire pressing cylinder; 3. Cage lifting mechanism; 301. Cage lifting cylinder; 302. Cage lifting assembly; 3021. Inserting rod; 3022. Cylinder; 4. Flipping mechanism; 401. Rotating plate; 4011. Arc surface; 402. Pushing cylinder; 403. Hinge; 5. Copper wire reel; 6. Wire take-up cage; 601. Support rod; 602. Vertical rod; DETAILED DESCRIPTION
[0030] This section will describe the specific embodiments of the present application in detail. The preferred embodiments of the present application are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that each technical feature and the overall technical solution of the present application can be understood intuitively and vividly, but it cannot be understood as a limitation on the scope of protection of the present application.
[0031] In the description of this application, if there is a description of orientation, such as "upper", "lower", "front", "back", "left", "right", etc., the orientation or position relationship indicated is based on the orientation or position relationship shown in the drawings. It is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, it should not be understood as a limitation on this application. When a feature is referred to as being "disposed", "fixed", or "connected" to another feature, it can be directly disposed, fixed, or connected to the other feature, or indirectly disposed, fixed, or connected to the other feature.
[0032] In the description of this application, if the word "several" is mentioned, it means one or more; if the word "multiple" is mentioned, it means more than two; if the word "greater than," "less than," or "exceeds," it should be understood as excluding the number itself; if the word "above," "below," or "within" is mentioned, it should be understood as including the number itself. If the word "first" or "second" is mentioned, it should be understood as distinguishing technical features, and should not be understood as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.
[0033] In addition, unless otherwise defined, the technical terms and scientific terms used in this application have the same meaning as those commonly understood by those skilled in the art. The terms used in this application are only for describing specific embodiments and are not intended to limit this application. It should be understood that when used in this specification and the appended claims, the terms "comprise" and "include" indicate the presence of the described features, wholes, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components and / or their collections.
[0034] Example: Figure 1-8 As shown, a copper wire coil 5 unloading device includes a machine body 1, a wire pressing mechanism 2, and a cage lifting mechanism 3. The machine body 1 is provided with a placement space 101 and is used to place the copper wire coil 5 rolled on the wire take-up cage 6. The wire pressing mechanism 2 includes a support member 201, which is slidably assembled with the machine body 1 and moves back and forth toward the copper wire coil 5. One end of the support member 201 facing the copper wire coil 5 is connected with a wire pressing member 202 for pressing the copper wire. The cage lifting mechanism 3 is assembled with the support member 201 and is located above the wire take-up cage 6. The cage lifting mechanism 3 is used to take The wire cage 6 is separated from the copper wire coil 5. When the cage lifting mechanism 3 is in the reset state, the cage lifting mechanism 3 is located between the support 201 and the wire pressing member 202. By providing the cage lifting mechanism 3 and assembling the cage lifting mechanism 3 on the support 201, the cage lifting mechanism 3 moves up and down with the support 201. Through the cage lifting mechanism 3, the operator's manual extraction of the wire cage 6 is reduced, which greatly simplifies the operation process, improves work efficiency, reduces the difficulty of unloading the copper wire coil 5, and reduces the operator's physical labor and work intensity.
[0035] During operation, the copper wire coil 5 is placed in the placement space 101 and is located directly below the wire pressing mechanism 2. The support member 201 is driven to move downward, thereby moving toward the copper wire coil 5, so that the wire pressing plate abuts against the copper wire coil 5, and the copper wire wound on the outer ring wall of the wire take-up cage 6 is compressed. After the compression is completed, the operator bundles it to complete the tightening of the copper wire coil 5 for lifting. After the copper wire is compressed, the wire take-up cage 6 is exposed on the top wall of the copper wire coil 5. At this time, the lifting cage mechanism 3 moves downward together with the support member 201, clamps the wire take-up cage 6, and then the wire pressing mechanism 2 moves away from the copper wire coil 5. The support member 201 is driven to move upward, so that the lifting cage mechanism 3 lifts the wire take-up cage 6 from the tightened copper wire coil 5, completing the separation of the wire take-up cage 6 and the copper wire coil 5.
[0036] In order to improve the degree of freedom of the cage lifting mechanism 3 and enable the cage lifting mechanism 3 to adapt to wire-taking cages 6 of different heights, the cage lifting mechanism 3 includes a cage lifting cylinder 301 and a cage lifting assembly 302. The fixed end of the cage lifting cylinder 301 is connected to the support member 201, and the pushing end of the cage lifting cylinder 301 is connected to the cage lifting assembly 302. The cage lifting assembly 302 is used to clamp the wire-taking cage 6. The cage lifting mechanism 3 is provided with the cage lifting cylinder 301, so that during the up and down movement of the support member 201, the cage lifting cylinder 301 can drive the cage lifting assembly 302 to move up and down, thereby realizing secondary adjustment of the cage lifting assembly 302, improving the degree of freedom of the cage lifting assembly 302, and enabling the cage lifting mechanism 3 to adapt to wire-taking cages 6 of different heights, thereby improving the versatility and flexibility of the equipment, improving the degree of automation of the cage lifting mechanism 3, and reducing the need for manual adjustment.
[0037] In order to improve space utilization, the cage lifting cylinder 301 is located above the support 201, and the cage lifting assembly 302 is located below the support 201, so as to ensure that when the cage lifting mechanism 3 is in the reset state, the cage lifting mechanism 3 is located between the support 201 and the wire pressing member 202, avoiding the cylinder body length of the cage lifting cylinder 301 occupying the length of the wire pressing member 202, thereby improving the utilization of the wire pressing structure space and helping to optimize the overall spatial layout of the equipment.
[0038] The wire-taking cage 6 is annular in structure. In actual use, in order to reduce the difficulty of manufacturing the wire-taking cage 6, the vertical rods 602 are arranged at equal angles, and the support rods 601 are welded on the radial direction to keep the vertical rods 602 in an annular shape, so that the wire-taking cage 6 has a cavity for the lifting cage component 302 to be inserted and clamped, or a lifting hole for the lifting cage component 302 to be inserted and clamped is provided on the top wall of the storage cage. Based on this, in the specific embodiment of the lifting cage component 302, the vertical rods 602 are arranged at equal angles, and the support rods 601 are welded on the radial direction to keep the vertical rods 602 in an annular shape, so that the wire-taking cage 6 has a cavity for the lifting cage component 302 to be inserted and clamped. In terms of structure, the cage assembly 302 includes an insertion rod 3021 and two groups of cylinders 3022. The two groups of cylinders 3022 are respectively located at the opposite ends of the wire cage 6. Specifically, the two groups of cylinders 3022 are located at the opposite ends of the same diameter of the wire cage 6. The cage cylinder 301 is provided with two groups of cylinders 3022 corresponding to the cage. The insertion rod 3021 is detachable and inserted into the two groups of cylinders 3022 and is used to clamp the wire cage 6. By providing two groups of cage cylinders 301, the two groups of cage The pushing end of the cylinder 301 is respectively connected to the outer wall of the two groups of cylinders 3022, and the axis of the cylinder 3022 is perpendicular to the pushing end of the pushing cylinder 402, so that the insertion rod 3021 can be radially inserted into the wire cage 6. When the support member 201 moves down to make the wire pressing member 202 press the copper wire roll, the cage lifting cylinder 301 moves so that the cylinder 3022 is located below the support rod 601 of the wire cage 6, and then the insertion rod 3021 is sequentially inserted into one group of cylinders. 3022, below the support rod 601, another set of cylinders 3022, thereby completing the clamping of the wire-taking cage 6. Then, the support member 201 moves upward to drive the wire-taking cage 6 to be lifted out of the copper wire roll. For wire-taking cages 6 of different heights, the lifting cage assembly 302 can be controlled to move up and down by the lifting cage cylinder 301 to make the lifting cage assembly 302 completely lifted out of the copper wire roll 5, thereby improving the degree of automation of copper wire compression and lifting of the wire-taking cage 6, and reducing the difficulty of unloading the copper wire roll 5.
[0039] The push end of the wire pressing cylinder 203 is connected to the top wall of the support member 201 and is used to push the support member 201 up and down. The support member 201 is pushed up and down by the push of the wire pressing cylinder 203, thereby achieving uniform wire pressing on the copper wire reel 5, improving the wire pressing accuracy and stability of the wire reel, and ensuring the structural stability of the copper wire reel 5 during transportation and storage. Secondly, since the wire pressing cylinder 203 is located above the copper wire reel 5, the pushing stroke of the wire pressing cylinder 203 can be easily adjusted according to the height and density of the wire reel, thereby adjusting the wire pressing force, making the operation more flexible and able to adapt to copper wire reels 5 of different specifications and states.
[0040] In terms of the specific structure of the body 1, the body 1 includes a base plate 102, a top plate 103, and several groups of vertical rods 104. The two ends of the vertical rods 104 are respectively connected to the base plate 102 and the top plate 103 to form a placement space 101. The fixed end of the wire pressing cylinder 203 is connected to the top plate 103. By connecting the two ends of the vertical rods 104 to the base plate 102 and the top plate 103, a sturdy frame structure is formed, which can provide good stability and ensure that the body 1 will not tilt or deform when bearing the weight of the copper wire roll 5 and other external forces, thereby ensuring production safety and normal operation of the equipment.
[0041] In terms of the specific structure of the wire pressing member 202, the wire pressing member 202 includes several groups of pressure arms 2021 arranged in an inverted T shape. The length of the pressure arm 2021 is greater than or equal to the stroke of the cage lifting cylinder 301. When there are multiple groups of pressure arms 2021, the multiple groups of pressure arms 2021 are arranged at equal angles along the center of the support member 201. Specifically, the support member 201 is arranged in a cylindrical shape. The diameter of the circle formed by the innermost side of the multiple groups of pressure arms 2021 is equal to the outer diameter of the wire take-up cage 6, and the diameter of the circle formed by the outermost side of the multiple groups of pressure arms 2021 is equal to the outer diameter of the wire take-up cage 6. The diameter is greater than or equal to the outer diameter of the copper wire coil 5. Furthermore, the wire taking-up cage 6 is welded by multiple groups of support rods 601 and vertical rods 602. If the pressure arms 2021 and the vertical rods 602 can be staggered, the diameter of the circle surrounded by the innermost sides of the multiple groups of pressure arms 2021 can be larger than the outer diameter of the wire taking-up cage 6, thereby increasing the pressing area of the pressure arms 2021 on the copper wire, thereby improving the pressing effect of the pressing member on the copper wire. In this embodiment, the wire pressing member 202 includes four groups of pressure arms 2021, and the wire taking-up cage 6 includes four groups of vertical rods 602.
[0042] Furthermore, in order to improve the connection stability between the wire pressing member 202 and the support member 201, reinforcing ribs are provided between the pressing arm 2021 and the support member 201. In order to improve the strength of the inverted T-shaped pressing arm 2021, the pressing arm 2021 is provided with reinforcing ribs.
[0043] In order to improve the stability of the pressing member 202 moving up and down, the pressing member 202 also includes a connecting arm 2022 and a roller 2023. The base plate 102 and the top plate 103 are both arranged in a square shape. The vertical rods 104 are provided with four groups and are respectively located at the end corners of the base plate 102. The pressing arms 2021 are provided with four groups and are respectively arranged corresponding to the four groups of pressing rods. Specifically, the diagonal lines between the four groups of plastic rods coincide with the diameters formed by the two opposite groups of pressing arms 2021. One end of the connecting arm 2022 is connected to the pressing arm 2021. Specifically, the axis of the connecting arm 2022 is perpendicular to the axis of the pressing arm 2021. The other end of the connecting arm 2022 is rotatably connected to the roller 2023. The roller 2023 is rotated to rotate. The wheel 2023 is arranged between the connecting arm 2022 and the vertical rod 104. It should be noted that the connecting arm 2022 is provided with one or more groups of rolling corresponding pressure arms 2021. In this embodiment, the connecting arm 2022 and the roller 2023 are provided with four groups. By providing the connecting arm 2022, the vertical rod 104 can support and limit the pressure arm 2021, thereby improving the rigidity of the pressure arm 2021, thereby improving the pressing effect of the pressure arm 2021 on the copper wire reel 5. At the same time, by providing the roller 2023 between the vertical rod 104 and the connecting arm 2022, the resistance of the support member 201 to the up and down movement is reduced, and the smoothness of the up and down movement of the pressure member is improved.
[0044] Of course, the vertical rod 104 is provided with a guide rail for sliding assembly with the roller 2023 , or the tapered roller 2023 can be used and the vertical rod 104 is made of square steel so that the tapered roller 2023 and the edge of the vertical rod 104 can be slidably assembled.
[0045] In terms of the specific installation structure of the connecting arms 2022 and the rollers 2023 , one set of connecting arms 2022 is equipped with two sets of rollers 2023 , and the rollers 2023 are arranged on the upper and lower sides of the connecting arms 2022 , and the two sets of rollers 2023 and the connecting arms 2022 are arranged in a triangle.
[0046] In order to facilitate the unloading of the copper wire coil 5 after compaction and bundling, it is necessary to flip the opening of the copper wire coil 5 after taking out the take-up cage 6 by 90 degrees, so that the opening of the copper wire coil 5 is flipped from perpendicular to the ground to parallel to the ground. The present embodiment also includes a flipping mechanism 4, which includes an L-shaped rotating plate 401. The end corners of the rotating plate 401 are rotatably assembled with the base plate 102, and the rotating plate 401 is located below the copper wire coil 5. When the copper wire is compacted and bundled, one side of the L-shaped rotating plate 401 is flush with the top surface of the base, so that part of the copper wire The coil 5 is placed on the rotating plate 401. Preferably, the length of the L-shaped plate is greater than the diameter of the copper wire coil 5, and the L-shaped plate passes through the diameter of the copper wire coil 5 and is hinged to the base through the rotating plate 401. The copper wire coil 5 is located on the rotating plate 401. When the rotating plate 401 is flipped 90°, the opening direction of the copper wire coil 5 is adjusted, thereby facilitating the lifting and fork transportation of the copper wire coil 5. Secondly, through the L-shaped rotating plate 401, when the copper wire is pressed and the take-up cage 6 is taken out, the rotating plate 401 plays a certain degree of supporting and limiting role on the copper wire coil 5.
[0047] In terms of the specific structure for realizing the rotation of the rotating plate 401, the flipping mechanism 4 includes a pushing cylinder 402 for pushing the rotating plate 401 to flip, and the body 1 also includes a bottom plate 105 located below the base plate 102. The pushing cylinder 402 is located between the bottom plate 105 and the base plate 102. The base plate 102 is provided with a long hole 1021 for assembling the rotating plate 401. The end angle of the rotating plate 401 is hinged on the inner wall of the long hole 1021. The pushing cylinder 402 is assembled with the base plate 102 and is located below the rotating plate 401. The precise flipping of the rotating plate 401 is achieved by the push of the cylinder, which reduces the uncertainty and labor intensity of manual operation and improves the blanking efficiency.
[0048] In terms of the specific structure of the pushing cylinder 402 pushing the rotating plate 401 to flip, the flipping mechanism 4 also includes a hinge 403, the middle part of the hinge 403 is rotatably assembled with the inner wall of the long hole 1021, one end of the hinge 403 is connected to the rotating plate 401, the pushing end of the pushing cylinder 402 is rotatably assembled with the other end of the rotating hinge 403, and the fixed end of the pushing cylinder 402 is hingedly assembled with the base plate 102. By pushing the pushing cylinder 402, the hinge 403 acts as a lever, thereby causing the rotating part to flip, thereby driving the copper wire roll 5 placed thereon to flip 90°.
[0049] In order to avoid the risk of the copper wire coil 5 rolling when placed in a cylindrical shape on the rotating plate 401 after being flipped, the rotating plate 401 is provided with an arc surface 4011, so that the outer ring wall of the flipped copper wire coil 5 fits with the arc surface 4011, which limits the copper wire coil 5 and prevents the copper wire coil 5 from rotating, ensuring stability and safety during the flipping process, reducing the risk of accidents caused by improper manual operation, and providing a safer working environment for operators.
[0050] The above description is merely a specific embodiment of the present application, but the scope of protection of the present application is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in the present application, and such modifications or substitutions should be included in the scope of protection of the present application. Therefore, the scope of protection of the present application should be based on the scope of protection of the claims.
Claims
1. A copper wire coil unloading device, characterized by: It includes a machine body, a wire pressing mechanism, and a cage lifting mechanism. The machine body is provided with a placement space and is used to place the copper wire coil rolled on the wire taking-up cage. The wire pressing mechanism includes a support member, which is slidably assembled with the machine body and moves back and forth toward the copper wire coil. The end of the support member facing the copper wire coil is connected to a wire pressing member for pressing the copper wire. The cage lifting mechanism is assembled with the support member and is located above the wire taking-up cage. The cage lifting mechanism is used to separate the wire taking-up cage from the copper wire coil.
2. The copper wire coil unloading device according to claim 1, characterized in that: The cage lifting mechanism includes a cage lifting cylinder and a cage lifting assembly. The fixed end of the cage lifting cylinder is connected to the support member, and the pushing end of the cage lifting cylinder is connected to the cage lifting assembly. The cage lifting assembly is used to clamp the wire-taking cage.
3. The copper wire coil unloading device according to claim 2, characterized in that: The lifting cage assembly includes an insertion rod and two groups of cylinders, which are respectively located at opposite ends of the wire-taking cage. Two groups of lifting cage cylinders are provided corresponding to the cylinders. The insertion rod is detachably inserted into the two groups of cylinders and is used to clamp the wire-taking cage.
4. The copper wire coil unloading device according to claim 1, characterized in that: The wire pressing mechanism further includes a wire pressing cylinder, a fixed end of the wire pressing cylinder is connected to the top wall of the machine body, and a pushing end of the wire pressing cylinder is connected to the top wall of the support member.
5. The copper wire coil unloading device according to claim 2, characterized in that: The machine body comprises a base plate, a top plate, and a plurality of vertical rods, and two ends of the vertical rods are respectively connected to the base plate and the top plate to form the placement space.
6. The copper wire coil unloading device according to claim 5, characterized in that: The wire pressing member includes several groups of pressing arms arranged in an inverted T shape, the length of the pressing arms is greater than or equal to the stroke of the cage lifting cylinder. When multiple groups of pressing arms are provided, the multiple groups of pressing arms are arranged at equal angles along the center of the support member.
7. The copper wire coil unloading device according to claim 6, characterized in that: The wire pressing member also includes a connecting arm and a roller. The base plate and the top plate are both arranged in a square shape. There are four groups of vertical rods and they are respectively located at the end corners of the base plate. There are four groups of pressure arms and they are respectively arranged corresponding to the four groups of pressure rods. One end of the connecting arm is connected to the pressure arm, and the other end of the connecting arm is rotatably connected to the roller. The roller is arranged between the connecting arm and the vertical rod.
8. The copper wire coil unloading device according to claim 1, characterized in that: It also includes a turning mechanism, which includes a rotating plate arranged in an L shape, the end corners of the rotating plate are rotatably assembled with the base plate, and the rotating plate is located below the copper wire coil.
9. The copper wire coil unloading device according to claim 8, characterized in that: The flipping mechanism includes a pushing cylinder for pushing the rotating plate to flip, and the body also includes a bottom plate located below the base plate. The pushing cylinder is located between the bottom plate and the base plate. The base plate is provided with a long hole for assembling the rotating plate. The pushing cylinder is assembled with the base plate and is located below the rotating plate.
10. The copper wire coil unloading device according to claim 9, characterized in that: The flipping mechanism also includes a hinge, the middle part of the hinge is rotatably assembled with the inner wall of the long hole, one end of the hinge is connected to the rotating plate, the pushing end of the pushing cylinder is rotatably assembled with the other end of the rotating hinge, and the fixed end of the pushing cylinder is hingedly assembled with the base plate.
Citation Information
Patent Citations
Hydraulic take -up device
CN206751084U