Cutting device for bus processing
By combining a support frame, linear slide, hydraulic cylinder, moving plate, and spring, the problem of repeatedly tightening bolts for fixing existing busbar processing machines is solved, achieving efficient busbar cutting and convenient operation.
Patent Information
- Application Number
- CN202520273494.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Existing busbar processing machines require repeated tightening and loosening of bolts for large-scale cutting, which is cumbersome and affects cutting efficiency.
It adopts a combination structure of support frame, linear slide, hydraulic cylinder, moving plate, spring and pressure plate. The moving plate and pressure plate are driven by hydraulic cylinder, the spring force is used to press the busbar, and the cutting blade is rotated by rotating shaft to cut. Combined with the movement of linear slide, the busbar is cut efficiently.
This design facilitates the tightening or loosening of the busbars, improves the efficiency of mass cutting, avoids damage to the busbar surface, and enhances the convenience and efficiency of operation.
Smart Images

Figure CN223916505U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of busbar processing technology, for example to a cutting device for busbar processing. Background Technology
[0002] The related technology (announcement number: CN220862829U) discloses a multi-station busbar processing machine, including a housing, control components, rubber sleeves, vertical frame, sliding block, first threaded groove, first bolt, first pressure plate, second pressure plate, screw, pad, support frame, placement box, motor, cutting blade, observation box, display, reinforcing plate, second threaded groove, second bolt, housing door, operation box and operation buttons.
[0003] In implementing the above embodiments, at least the following problems were found in the related technology:
[0004] This multi-station busbar processing machine uses a sliding block to move the second pressure plate of the first pressure plate up and down, and then screws the first bolt into the first threaded groove to fix the busbar on the pad. However, when cutting a large number of busbars, it is necessary to repeatedly tighten the first bolt to fix each busbar individually. Therefore, the operation is relatively cumbersome and affects the cutting efficiency.
[0005] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this application, and therefore may include information that does not constitute prior art known to those skilled in the art. Utility Model Content
[0006] To provide a basic understanding of some aspects of the disclosed embodiments, a brief summary is given below. This summary is not intended as a general commentary, nor is it intended to identify key / important components or describe the scope of protection of these embodiments, but rather as a prelude to the detailed description that follows.
[0007] This disclosure provides a cutting device for busbar processing to improve cutting efficiency.
[0008] In some embodiments, the busbar processing cutting device includes: a support frame, the support frame including a first support plate, a second support plate, and a third support plate parallel to each other in a plane, the first support plate, the second support plate, and the third support plate being arranged sequentially from bottom to top along the height direction of the support frame, the second support plate including a strip-shaped hole opened along the width direction of the support frame; a linear slide table, mounted on the top surface of the first support plate along the width direction of the support frame; a first movable plate, mounted on the movable end of the linear slide table; and a bearing with a seat, mounted on the first movable plate. The system comprises: a top surface; a rotating shaft mounted on the bearing seat; a cutting blade mounted on the rotating shaft and passing through the strip hole; a hydraulic cylinder mounted on the third support plate along the height direction of the support frame, with the moving end of the hydraulic cylinder facing the second support plate; a second moving plate mounted on the moving end of the hydraulic cylinder; springs mounted on the bottom surface of the second moving plate along the height direction of the support frame and located on both sides of the strip hole along the length direction of the support frame; and pressure plates respectively mounted on the bottom ends of the springs on both sides. The rotating shaft is controllably rotatable to drive the cutting blade to rotate.
[0009] Optionally, the support frame further includes: support rods, which are respectively installed between the opposing surfaces of the second support plate and the first and third support plates.
[0010] Optionally, the support frame further includes: reinforcing members, which are respectively installed at the connection points between the support rod and the first support plate, the second support plate and the third support plate.
[0011] Optionally, it further includes: a motor, mounted on the top surface of the first movable plate, the rotating end of the motor being coaxially distributed with the rotating shaft; and a coupling, mounted between the rotating end of the motor and the rotating shaft.
[0012] Optionally, it further includes: a first linear bearing, mounted on the third support plate along the height direction of the support frame, and located on both sides of the hydraulic cylinder along the length direction of the support frame; and a first optical axis, respectively mounted on the first linear bearings on both sides, with one end of each of the first optical axes connected to the second movable plate.
[0013] Optionally, it also includes: a first fixing ring, which is respectively installed at the other end of the first optical axis on both sides.
[0014] Optionally, it further includes: a second optical axis, which is slidably inserted through the second movable plate along the height direction of the support frame and located on both sides of the strip hole along the length direction of the support frame, with one end of the second optical axis on both sides respectively connected to the pressure plates on both sides; a second fixing ring, which is respectively installed on the other end of the second optical axis on both sides; wherein the springs on both sides are respectively sleeved on the second optical axis on both sides.
[0015] Optionally, it also includes: a second linear bearing, which is respectively mounted on the second optical axis on both sides and is installed on the top surface of the second movable plate.
[0016] Optionally, it further includes: pads, installed on the top surface of the first support plate, located on both sides of the linear slide along the length direction of the support frame; guide rails, installed on the pads on both sides along the width direction of the support frame; and sliders, installed on the guide rails on both sides, and both connected to the first movable plate.
[0017] The busbar processing cutting device provided in this disclosure can achieve the following technical effects:
[0018] This disclosure provides a busbar processing cutting device, including a support frame, a linear slide, a first movable plate, a seated bearing, a rotating shaft, a cutting blade, a hydraulic cylinder, a second movable plate, a spring, and a pressure plate. The support frame includes a first support plate, a second support plate, and a third support plate, all parallel to each other in their respective planes, arranged sequentially from bottom to top along the height direction of the support frame. The first and third support plates support relevant components of the mounting device, while the second support plate supports the busbar to be cut. The second support plate includes a slotted hole along the width direction of the support frame for the cutting blade to pass through. The linear slide is mounted on the top surface of the first support plate along the width direction of the support frame, providing driving force to enable movement along the width direction of the support frame. The first movable plate is mounted on the movable end of the linear slide and moves along the width direction of the support frame under the drive of the linear slide. The seated bearing is mounted on the top surface of the first movable plate, supporting a rotatable rotating shaft. The rotating shaft is mounted on the seated bearing and can rotate freely. A cutting blade is mounted on a rotating shaft and passes through a slotted hole for cutting the busbar. A hydraulic cylinder is mounted on a third support plate along the height of the support frame, with its moving end facing the second support plate. This provides driving force to move the cylinder towards the second support plate. A second moving plate is mounted on the moving end of the hydraulic cylinder and moves towards the second support plate under its drive. Springs are mounted on the bottom surface of the second moving plate along the height of the support frame and on both sides of the slotted hole along the length of the support frame. Both springs provide elastic force to convert the force on the busbar from the driving force of the hydraulic cylinder to the elastic force generated by the deformation of the springs, thus preventing damage to the busbar surface due to excessive driving force from the hydraulic cylinder. Pressure plates are mounted on the bottom ends of the springs on both sides to press the busbar firmly on both sides. The rotating shaft can be controlled to rotate, driving the cutting blade to rotate.
[0019] During operation, controlling the hydraulic cylinder moves the second moving plate towards the position of the second support plate, ultimately moving the two pressure plates towards the same position. Once the pressure plates abut against the busbar placed in the slotted hole of the second support plate, the second moving plate continues to move downwards. The elastic force generated by the deformation of the springs on both sides then clamps and fixes the busbar. Driven by external force, the rotating shaft rotates, causing the cutting blade to rotate. Finally, controlling the linear slide moves the first moving plate along the width of the support frame, ultimately moving the cutting blade along the width of the support frame to complete the cutting of the busbar. After cutting, controlling the hydraulic cylinder again resets the pressure plates, releasing the busbar. This facilitates clamping and releasing the busbar, improving cutting efficiency during large-scale cutting.
[0020] The above general description and the description below are exemplary and illustrative only and are not intended to limit this application. Attached Figure Description
[0021] One or more embodiments are illustrated by way of example with reference to the accompanying drawings. These illustrations and drawings do not constitute a limitation on the embodiments. Elements having the same reference numerals in the drawings are considered similar elements. The drawings do not constitute a limitation of scale, and wherein:
[0022] Figure 1 This is a front view schematic diagram of a busbar processing cutting device provided in an embodiment of this disclosure;
[0023] Figure 2 yes Figure 1 Enlarged structural diagram at point A;
[0024] Figure 3 yes Figure 1 Enlarged structural diagram at point B;
[0025] Figure 4 This is a side view of a cutting device for busbar processing provided in an embodiment of this disclosure.
[0026] Figure label:
[0027] 1: Support frame; 01: First support plate; 02: Second support plate; 03: Third support plate; 04: Support rod; 2: Linear slide; 3: First moving plate; 4: Bearing with seat; 5: Rotary shaft; 6: Cutting blade; 7: Hydraulic cylinder; 8: Second moving plate; 9: Spring; 10: Pressure plate; 11: Motor; 12: First linear bearing; 13: First optical axis; 14: First fixing ring; 15: Second optical axis; 16: Second fixing ring; 17: Second linear bearing; 18: Pad; 19: Guide rail; 20: Slider. Detailed Implementation
[0028] To provide a more detailed understanding of the features and technical content of the embodiments of this disclosure, the implementation of the embodiments of this disclosure will be described in detail below with reference to the accompanying drawings. The accompanying drawings are for illustrative purposes only and are not intended to limit the embodiments of this disclosure. In the following technical description, for ease of explanation, several details are used to provide a full understanding of the disclosed embodiments. However, one or more embodiments may still be implemented without these details. In other cases, well-known structures and devices may be simplified in their depiction to simplify the drawings.
[0029] The terms "first," "second," etc., used in the specification, claims, and accompanying drawings of this disclosure are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this disclosure described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion.
[0030] In this disclosure, the terms "upper," "lower," "inner," "middle," "outer," "front," and "rear," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for better description of the embodiments of this disclosure and their implementations, and are not intended to limit the indicated devices, elements, or components to having a specific orientation, or to require them to be constructed and operated in a specific orientation. Furthermore, some of the aforementioned terms may be used to indicate other meanings besides orientation or positional relationship; for example, the term "upper" may in some cases indicate a dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in the embodiments of this disclosure according to the specific circumstances.
[0031] Furthermore, the terms "set up," "connect," and "fix" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this disclosure according to the specific circumstances.
[0032] Unless otherwise stated, the term "multiple" means two or more.
[0033] In this embodiment of the disclosure, the character " / " indicates that the objects before and after it are in an "or" relationship. For example, A / B means: A or B.
[0034] The term "and / or" describes an association between objects, indicating that three relationships can exist. For example, A and / or B means: A or B, or A and B.
[0035] It should be noted that, unless otherwise specified, the embodiments and features described in the present disclosure can be combined with each other.
[0036] Combination Figures 1 to 4As shown, this embodiment of the present disclosure provides a busbar processing cutting device, including a support frame 1, a linear slide 2, a first moving plate 3, a bearing with a seat 4, a rotating shaft 5, a cutting blade 6, a hydraulic cylinder 7, a second moving plate 8, a spring 9, and a pressure plate 10. The support frame 1 includes a first support plate 01, a second support plate 02, and a third support plate 03 that are parallel to each other in their respective planes, arranged sequentially from bottom to top along the height direction of the support frame 1. The first support plate 01 and the third support plate 03 are used to support relevant components of the mounting device, while the second support plate 02 is used to support the busbar to be cut. The second support plate 02 includes a strip-shaped hole opened along the width direction of the support frame 1, through which the cutting blade 6 passes. The linear slide 2 is mounted on the top surface of the first support plate 01 along the width direction of the support frame 1, providing driving force to achieve the function of moving along the width direction of the support frame 1. The first movable plate 3 is mounted on the movable end of the linear slide table 2 and moves along the width direction of the support frame 1 under the drive of the linear slide table 2. A bearing 4 with a mounting seat is mounted on the top surface of the first movable plate 3 to support and mount a rotatable shaft 5. The shaft 5 is mounted on the bearing 4 and can rotate freely. A cutting blade 6 is mounted on the shaft 5 and passes through the slotted hole for cutting the main wire. A hydraulic cylinder 7 is mounted on the third support plate 03 along the height direction of the support frame 1, with its movable end facing the second support plate 02, to provide driving force and enable movement in the direction of the second support plate 02. The second movable plate 8 is mounted on the movable end of the hydraulic cylinder 7 and moves in the direction of the second support plate 02 under the drive of the hydraulic cylinder 7. A spring 9 is mounted on the bottom surface of the second movable plate 8 along the height direction of the support frame 1 and is located on both sides of the slotted hole along the length direction of the support frame 1. Both springs 9 on both sides provide elastic force to transform the force on the busbar from the driving force of the hydraulic cylinder 7 to the elastic force generated by the deformation of the two springs 9, thereby avoiding damage to the surface of the busbar due to excessive driving force of the hydraulic cylinder 7. Pressure plates 10 are respectively installed at the bottom ends of the two springs 9 on both sides, and are used to press the two sides of the busbar together. The rotating shaft 5 can be controlled to rotate, thereby driving the cutting blade 6 to rotate.
[0037] This embodiment of the invention provides a busbar cutting device. Controlling the hydraulic cylinder 7 moves the second moving plate 8 towards the position of the second support plate 02, ultimately moving the two pressure plates 10 towards the position of the second support plate 02. After the two pressure plates 10 abut against the busbar placed at the slot in the second support plate 02, the second moving plate 8 continues to move downwards. At this time, the elastic force generated by the deformation of the two springs 9 can press and fix the busbar. Then, driven by external force, the rotating shaft 5 can rotate, thereby driving the cutting blade 6 to rotate. Finally, controlling the linear slide 2 moves the first moving plate 3 along the width direction of the support frame 1, ultimately moving the cutting blade 6 along the width direction of the support frame 1 to complete the cutting of the busbar. After cutting, controlling the hydraulic cylinder 7 again resets the two pressure plates 10, thus releasing the busbar. Therefore, it is convenient to press or release the busbar, improving cutting efficiency when performing large-scale cutting.
[0038] Optionally, combined Figure 1 and Figure 4 As shown, the support frame 1 also includes support rods 04. The support rods 04 are respectively installed between the opposite surfaces of the second support plate 02 and the first support plate 01 and the third support plate 03.
[0039] In this embodiment of the disclosure, the support rod 04 is used to determine the relative positions of the first support plate 01, the second support plate 02 and the third support plate 03.
[0040] Optionally, combined Figure 1 and Figure 4 As shown, the support frame 1 also includes reinforcing members. The reinforcing members are respectively installed at the connection points between the support rod 04 and the first support plate 01, the second support plate 02, and the third support plate 03.
[0041] In this embodiment, the reinforcing member is used to improve the connection strength between the support rod 04 and the first support plate 01, the second support plate 02 and the third support plate 03, so as to prevent the connection between the support rod 04 and the first support plate 01, the second support plate 02 and the third support plate 03 from breaking or deforming under the action of external force.
[0042] Optionally, combined Figure 1 and Figure 4 As shown, it also includes a motor 11 and a coupling. The motor 11 is mounted on the top surface of the first movable plate 3, and the rotating end of the motor 11 is coaxially distributed with the rotating shaft 5 to provide driving force. The coupling is installed between the rotating end of the motor 11 and the rotating shaft 5 to transmit driving force.
[0043] In this embodiment of the disclosure, the control motor 11 operates, and through the coupling, it can drive the rotating shaft 5 to rotate, which in turn drives the cutting blade 6 to rotate, thereby cutting the busbar.
[0044] Optionally, combined Figure 1 and Figure 4 As shown, it also includes a first linear bearing 12 and a first optical axis 13. The first linear bearing 12 is installed on the third support plate 03 along the height direction of the support frame 1, and is located on both sides of the hydraulic cylinder 7 along the length direction of the support frame 1. The first linear bearings 12 on both sides are used to support the installation of the slidable first optical axis 13. The first optical axis 13 is installed on the first linear bearings 12 on both sides, and one end of the first optical axis 13 on both sides is connected to the second movable plate 8.
[0045] In this embodiment, the first linear bearings 12 on both sides and the first optical shafts 13 on both sides are used to provide guidance and support, so as to improve the stability of the second moving plate 8 when it moves and reduce the radial force on the moving end of the hydraulic cylinder 7.
[0046] Optionally, combined Figure 1 good Figure 4 As shown, it also includes a first fixing ring 14. The first fixing ring 14 is respectively installed at the other end of the first optical axis 13 on both sides.
[0047] In this embodiment, the second fixing rings 16 on both sides are used to limit the movement of the first optical axes 13 on both sides from falling out of the first linear bearings 12 on both sides.
[0048] Optionally, combined Figure 1 and Figure 4 As shown, it also includes a second optical axis 15 and a second fixing ring 16. The second optical axis 15 is slidably inserted through the second movable plate 8 along the height direction of the support frame 1, and is located on both sides of the strip hole along the length direction of the support frame 1. One end of the second optical axis 15 on both sides is connected to the pressure plates 10 on both sides, and both second optical axes 15 serve as guides and supports. The second fixing rings 16 are respectively installed on the other end of the second optical axis 15 on both sides, and both second fixing rings 16 serve as limiters to prevent the second optical axes 15 on both sides from falling off the first movable plate 3. Springs 9 on both sides are respectively sleeved on the second optical axes 15 on both sides.
[0049] In this embodiment, under the guiding support of the second optical shafts 15 on both sides, the springs 9 on both sides can be compressed, thereby improving the clamping and fixing effect of the busbar. Furthermore, the design of the springs 9 on both sides being respectively sleeved on the second optical shafts 15 on both sides prevents the springs 9 on both sides from falling off between the second moving plate 8 and the pressure plates 10 on both sides.
[0050] Optionally, combined Figure 1 and Figure 4 As shown, it also includes a second linear bearing 17. The second linear bearings 17 are respectively mounted on the second optical axes 15 on both sides, and are both installed on the top surface of the second movable plate 8.
[0051] In this embodiment, the second linear bearings 17 on both sides are used to reduce the friction between the second optical shafts 15 on both sides and the second moving plate 8, and to improve the accuracy of the second optical shafts 15 on both sides sliding relative to the second moving plate 8.
[0052] Optionally, combined Figure 1 and Figure 3 As shown, it also includes pads 18, guide rails 19, and sliders 20. Pads 18 are installed on the top surface of the first support plate 01, along the length of the support frame 1, located on both sides of the linear slide table 2, serving to provide support and elevation. Guide rails 19 are installed on the pads 18 on both sides along the width of the support frame 1, respectively, to support the sliding sliders 20. Slider 20 are installed on the guide rails 19 on both sides, and both are connected to the first movable plate 3.
[0053] In this embodiment, the guide rail 19 and the slider 20 together serve as guides and supports to improve the stability of the first moving plate 3 during movement and reduce the force on the moving end of the linear slide 2.
[0054] The foregoing description and accompanying drawings fully illustrate embodiments of the present disclosure to enable those skilled in the art to practice them. Other embodiments may include structural and other changes. The embodiments represent only possible variations. Individual components and functions are optional unless explicitly required, and the order of operation may vary. Parts and features of some embodiments may be included or substituted for parts and features of other embodiments. Embodiments of the present disclosure are not limited to the structures described above and shown in the accompanying drawings, and various modifications and changes may be made without departing from its scope. The scope of the present disclosure is limited only by the appended claims.
Claims
1. A cutting device for busbar processing, characterized in that, include: A support frame, comprising a first support plate, a second support plate, and a third support plate that are parallel to each other in a plane, wherein the first support plate, the second support plate, and the third support plate are arranged sequentially from bottom to top along the height direction of the support frame, and the second support plate includes a strip-shaped hole opened along the width direction of the support frame; A linear slide is mounted on the top surface of the first support plate along the width direction of the support frame; The first movable plate is installed on the movable end of the linear slide table; A mounted bearing is installed on the top surface of the first movable plate; The rotating shaft is mounted on the mounted bearing; A cutting disc is mounted on the rotating shaft and passes through the strip hole; A hydraulic cylinder is mounted on the third support plate along the height direction of the support frame, with the moving end of the hydraulic cylinder facing the second support plate; The second movable plate is installed at the movable end of the hydraulic cylinder; A spring is installed on the bottom surface of the second movable plate along the height direction of the support frame, and is located on both sides of the strip hole along the length direction of the support frame; Pressure plates are respectively installed at the bottom ends of the springs on both sides; The rotating shaft can be controlled to rotate, thereby driving the cutting blade to rotate.
2. The busbar processing cutting device according to claim 1, characterized in that, The support frame also includes: Support rods are respectively installed between the opposite surfaces of the second support plate and the first and third support plates.
3. The busbar processing cutting device according to claim 2, characterized in that, The support frame also includes: Reinforcing members are respectively installed at the connection points between the support rod and the first support plate, the second support plate, and the third support plate.
4. The busbar processing cutting device according to claim 1, characterized in that, Also includes: A motor is mounted on the top surface of the first movable plate, and the rotating end of the motor is coaxially distributed with the rotating shaft; A coupling is installed between the rotating end of the motor and the rotating shaft.
5. A busbar processing cutting device according to any one of claims 1 to 4, characterized in that, Also includes: The first linear bearing is mounted on the third support plate along the height direction of the support frame and is located on both sides of the hydraulic cylinder along the length direction of the support frame. The first optical axis is installed on the first linear bearings on both sides, and one end of each of the first optical axis is connected to the second movable plate.
6. The busbar processing cutting device according to claim 5, characterized in that, Also includes: The first fixing ring is installed on the other end of the first optical axis on both sides.
7. A busbar processing cutting device according to any one of claims 1 to 4, characterized in that, Also includes: The second optical axis is slidably inserted through the second movable plate along the height direction of the support frame, and is located on both sides of the strip hole along the length direction of the support frame. One end of the second optical axis on both sides is respectively connected to the pressure plate on both sides. The second fixing rings are respectively installed at the other end of the second optical axis on both sides; The springs on both sides are respectively sleeved on the second optical axis on both sides.
8. The busbar processing cutting device according to claim 7, characterized in that, Also includes: The second linear bearings are respectively mounted on the second optical shafts on both sides and are installed on the top surface of the second movable plate.
9. A busbar processing cutting device according to any one of claims 1 to 4, characterized in that, Also includes: The pads are installed on the top surface of the first support plate and are located on both sides of the linear slide along the length of the support frame; Guide rails are installed on the pads on both sides, along the width direction of the support frame. The sliders are respectively installed on the guide rails on both sides and are connected to the first moving plate.
Citation Information
Patent Citations
Multi-station bus processing machine
CN220862829U