A fully automatic diode corner cutting machine
The fully automatic diode corner cutting machine solves the problems of low efficiency and inconvenient operation of existing equipment in personalized multi-specification production through automatic feeding and limit devices, and realizes efficient and stable material conveying and processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- NINGBO LIHUI PHOTOVOLTAIC TECH CO LTD
- Filing Date
- 2023-04-07
- Publication Date
- 2026-05-05
AI Technical Summary
Existing corner cutting machines have low production efficiency and high cost in personalized multi-specification production. Furthermore, the materials require continuous manual pushing during processing, which leads to inconvenience and arm fatigue.
The fully automatic diode corner cutting machine uses a motor-driven belt to automatically feed the material to the adjusting components and transport wheels. Combined with limit and auxiliary devices, it ensures stable material conveying and processing.
It improves the ease of use and stability of the equipment, reduces fatigue caused by manual feeding and processing errors caused by material bouncing, and enhances production efficiency and equipment adaptability.
Smart Images

Figure CN116638366B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of corner cutting technology, specifically a fully automatic diode corner cutting machine. Background Technology
[0002] During the processing of secondary pipes, a chamfering machine is used to chamfer the surface of the pipes. Pipes are the materials used to make pipe fittings. Different pipe fittings require different pipes, and the quality of the pipes directly determines the quality of the pipe fittings.
[0003] However, existing processing equipment has the following shortcomings:
[0004] In existing equipment, such as CN111015979A, a corner-cutting machine is characterized by comprising a frame, a power transmission mechanism mounted on the frame, a power stop mechanism mounted on the frame and driven by a power moving mechanism, and a power cutting mechanism mounted on the frame above the power transmission mechanism. The power cutting mechanism includes a vertical frame mounted on the frame, a vertical guide rail mounted on the vertical frame, a movable frame that moves up and down along the vertical guide rail, a power source for moving the movable frame up and down, a rotating frame mounted on the movable frame, a rotational power source for rotating the rotating frame, a power cutting head mounted on the rotating frame, and a control device. The control device controls the operation of the power transmission mechanism, the power moving mechanism, the power stop mechanism, the power source for up and down movement, the rotational power source, and the power cutting head. Compared with existing technologies, this invention has the ability to perform individual... The advantages of personalized multi-specification production, high production efficiency, and low production cost solve the problems of existing stone, ceramic, or artificial stone door frames, which are made by cutting stone, ceramic, or artificial stone profiles into segments of different lengths after the outer surface has been shaped and processed. Then, the ends of the segments that need to be joined are cut at a 45-degree angle and then joined into a Π shape. Because it requires vertical cutting and two 45-degree angles in different directions, the existing technology is limited by the technology of the processing equipment. Vertical cutting and angle cutting can only be completed step by step in different equipment. This is not a problem for the production of large-scale products of the same specification. However, if personalized multi-specification production is to be achieved, the existing production method is obviously unable to meet the requirements. Moreover, the use of existing technology for personalized multi-specification production is characterized by low production efficiency and high cost.
[0005] In their daily work, the inventors discovered that during material processing, it is necessary to manually push the material continuously to move it and coordinate with the equipment for cutting corners, which causes operational inconvenience. When the material is too long, it needs to be pushed manually for a long time, which can easily cause arm soreness and fatigue, affecting efficiency and leading to inconvenience in feeding the equipment.
[0006] Therefore, we propose a fully automatic diode corner cutting machine to solve the problems mentioned above. Summary of the Invention
[0007] The purpose of this invention is to provide a fully automatic diode corner cutting machine, in which a motor drives the transport wheels in adjustment component one and adjustment component two to rotate via a belt for feeding operations, thereby solving the problems mentioned in the background art.
[0008] To achieve the above objectives, the present invention provides the following technical solution: a fully automatic diode corner cutting machine, comprising a base, an assembly above the base, a driver on one side of the assembly, the output end of the driver being connected to the assembly via a transmission belt, a feeding guide rail on the surface of the base, a feeding device on the surface of the feeding guide rail, the feeding device comprising two adjusting components, and two adjusting components in total; concave grooves are formed on both sides of the inner wall of the feeding guide rail, and four sets of sliding grooves are formed on the surface of the feeding guide rail, with two sliding grooves in each set; the adjusting components one and two are slidably connected to the inner walls of the four sets of sliding grooves and the concave grooves, respectively; the inner walls of the adjusting components one and two are... The wall is rotatably connected to three sets of transport wheels. A motor is fixedly connected to the surface of the first adjusting component. The motor and the multiple sets of transport wheels are connected by a belt. The motor and the belt can drive the transport wheels on the surfaces of the first and second adjusting components to rotate, which can automatically transport and feed materials. This reduces the inconvenience caused by manual pushing of materials during processing. By setting up a feeding device, it is convenient for the equipment to automatically feed materials during processing. This can effectively reduce the need for continuous manual pushing of materials when the equipment is cutting corners, which can cause inconvenience to operation. It also reduces the need for long-term manual pushing of materials when they are too long, which can easily cause arm fatigue and affect efficiency. In this way, the ease of use of the equipment is improved.
[0009] Preferably, the surface of the transport wheel is covered with and fixedly connected with anti-slip rings. There are multiple anti-slip rings, and the multiple anti-slip rings are arranged in an O-shape. By setting anti-slip rings on the surface of the transport wheel, the situation where the transport wheel slips on the material surface due to the material surface being too smooth can be reduced, thereby preventing automatic feeding.
[0010] Preferably, control components are fixedly connected to the surfaces of the two adjusting components, and two hollow seats are fixedly connected to the surface of the feeding guide rail. A bidirectional screw is rotatably connected to the inner wall of the hollow seat. Threaded holes are opened on the surfaces of the control components fixed to the surfaces of the two adjusting components. The bidirectional screw is threadedly connected to the threaded holes on the surfaces of the two control components respectively. By setting the bidirectional screw, it is easy to control the movement of the two adjusting components, so that the transport wheel can be close to materials of different widths, thereby improving the overall practicality of the equipment.
[0011] Preferably, a connecting block is fixedly connected to one side surface of the adjusting component one and the adjusting component two. The longitudinal section of the connecting block is rectangular. By setting the connecting block, the adjusting block two can be moved by the connecting block when adjusting the two adjusting components one, so as to facilitate simultaneous adjustment.
[0012] Preferably, the surface of the feeding guide rail is provided with two limiting devices. The limiting device includes a fixed rod, which is fixedly connected to the surface of the feeding guide rail. A stop bar is rotatably connected to the surface of the fixed rod, and a handle is rotatably connected to the surface of the stop bar. A hollow rod is fixedly connected to the surface of the feeding guide rail near the handle. A groove is formed on the surface of the stop bar, and the groove engages with the hollow rod. By engaging the groove on the surface of the stop bar with the hollow rod, the stop bar can restrict the material and reduce the swaying of the material on the guide rail, which would affect the processing.
[0013] Preferably, a limiting ring is slidably connected to the inner wall of the hollow rod, a positioning rod is fixedly connected to the surface of the stop rod, a circular hole is opened on the surface of the limiting ring, and the positioning rod is inserted into the inner wall of the circular hole. By fitting the circular hole on the surface of the limiting ring into the positioning rod, the stop rod can be positioned, thereby improving the stability of the limiting position.
[0014] Preferably, the hollow rod has a circular hole on its surface, and a screw is rotatably connected to the inner wall of the circular hole. The limiting ring has a connecting hole on its surface, and the screw is threadedly connected to the connecting hole. A knob is fixedly connected to one end of the screw. By rotating the knob in conjunction with the screw, the limiting ring can be moved, thus improving the overall ease of use.
[0015] Preferably, the surface of the stop bar is provided with an auxiliary device, which includes a fixed frame. The fixed frame is fixedly connected to the surface of the stop bar. The surface of the fixed frame has a drive hole, and a screw rod is threadedly connected to the inner wall of the drive hole. The surface of the fixed frame has two sliding holes, and a stabilizing rod is slidably connected to the inner wall of the sliding holes. One end of the two stabilizing rods is fixedly connected to a pressure member. The screw rod is rotatably connected to the surface of the pressure member, and a gripping rod is fixedly connected to one end of the screw rod. The surface of the stop bar has a rectangular hole through which the pressure member passes. By using the gripping rod in conjunction with the screw rod, the stabilizing rod can be controlled to move the pressure member within the fixed frame, allowing the pressure member to press down on materials of different heights, thereby improving overall stability.
[0016] Preferably, the surface of the pressing component is provided with a connecting groove, and mounting holes are provided on both sides of the connecting groove. Rollers are rotatably connected to the inner wall of the mounting holes. By setting the rollers, damage to the material when it is pressed down can be reduced, and the material can be scratched.
[0017] Preferably, a positioning ring is fixedly connected to the surface of the stabilizer bar. The positioning ring has a circular cross-section. By setting the positioning ring, the stabilizer bar can be positioned and restricted when it moves.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] 1. This invention processes materials by placing them on a feeding guide rail, with the driver using a conveyor belt to move the machine body. A feeding device is included; when the equipment is needed, a bidirectional screw is rotated, moving two control components and adjustment component one. Adjustment component one, via a connecting block, moves adjustment component two together, ensuring the transport wheel and anti-slip ring are in contact with the material. The motor is then turned on, and via a belt, it rotates the transport wheel in adjustment component one and adjustment component two, performing the feeding operation. This feeding device facilitates automatic feeding during processing, effectively reducing the need for continuous manual pushing of materials during chamfering, which is inconvenient and requires prolonged manual pushing when materials are too long, reducing arm fatigue and efficiency. This improves the ease of use of the equipment.
[0020] 2. This invention, by setting a limiting device, allows the handle to rotate the stop bar within the fixed rod when the equipment is in use. The groove on the surface of the stop bar engages with the hollow rod. Rotating the knob and screw causes the threaded rod to move the limiting ring within the hollow rod, allowing the circular hole on the surface of the limiting ring to fit onto the positioning rod. This restricts the material. By setting a limiting device, the material is easily restricted, effectively reducing the phenomenon of material jumping in the guide rail when processing materials. This reduces the possibility of material jumping causing processing errors and scrapping, thereby improving the overall stability of the equipment.
[0021] 3. By incorporating an auxiliary device, when the equipment needs to be used, rotating the handle causes the screw to rotate, which in turn moves the pressure component and stabilizing rod within the fixed frame. The pressure component then drives the rollers to press down on the surface of the material, thus completing the process. This auxiliary device facilitates the use of the auxiliary equipment and allows for precise positioning. It effectively reduces the likelihood of smaller materials bouncing during processing due to varying material thicknesses, thereby improving the overall usability of the equipment. Attached Figure Description
[0022] Figure 1 This is a perspective view of the main structure of a fully automatic diode corner cutting machine according to the present invention;
[0023] Figure 2 This is a three-dimensional view of a portion of the structure of a fully automatic diode corner cutting machine according to the present invention;
[0024] Figure 3 This is a three-dimensional view of a portion of the structure of a fully automatic diode corner cutting machine according to the present invention;
[0025] Figure 4 This is a perspective view of the feeding device in a fully automatic diode corner cutting machine according to the present invention;
[0026] Figure 5 This is a perspective view of the feeding device structure of a fully automatic diode corner cutting machine according to the present invention;
[0027] Figure 6 This is a perspective view of the limiting device in a fully automatic diode corner cutting machine according to the present invention;
[0028] Figure 7 This invention relates to a fully automatic diode corner cutting machine. Figure 6 Enlarged 3D view of the structure at point A in the middle;
[0029] Figure 8 This is a three-dimensional view of the auxiliary device structure in a fully automatic diode corner cutting machine according to the present invention.
[0030] In the diagram: 1. Base; 2. Machine body; 3. Driver; 4. Feeding guide rail; 5. Feeding device; 51. Bidirectional screw; 52. Control component; 53. Adjusting component one; 54. Motor; 55. Transport wheel; 56. Belt; 57. Adjusting component two; 58. Connecting block; 59. Anti-slip ring; 6. Limiting device; 61. Fixing rod; 62. Stop bar; 63. Handle; 64. Hollow rod; 65. Knob; 66. Limiting ring; 67. Screw one; 68. Positioning rod; 69. Groove; 7. Auxiliary device; 71. Fixing frame; 72. Grip bar; 73. Screw two; 74. Pressing component; 75. Stabilizing rod; 76. Positioning ring; 77. Roller; 78. Rectangular hole. Implementation
[0031] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0032] Please see Figure 1-8As shown, the present invention provides a technical solution: a fully automatic diode corner cutting machine, including a base 1, a body 2 disposed above the base 1, a driver 3 disposed on one side of the body 2, the output end of the driver 3 being connected to the body 2 via a transmission belt, a feeding guide rail 4 disposed on the surface of the base 1, a feeding device 5 disposed on the surface of the feeding guide rail 4, the feeding device 5 including an adjusting component 1 53 and an adjusting component 2 57, each having two adjusting components 1 53 and two adjusting components 2 57, concave grooves being formed on both sides of the inner wall of the feeding guide rail 4, and four sets of sliding grooves being formed on the surface of the feeding guide rail 4, one set of sliding grooves... There are two types of adjustment components. Adjustment component 1 (53) and adjustment component 2 (57) are slidably connected to the inner walls of four sets of sliding grooves and concave grooves, respectively. Three sets of transport wheels (55) are rotatably connected to the inner walls of adjustment component 1 (53) and adjustment component 2 (57). A motor (54) is fixedly connected to the surface of adjustment component 1 (53). The motor (54) and multiple sets of transport wheels (55) are connected by a belt (56). The motor (54) and belt (56) can drive the transport wheels (55) on the surface of adjustment component 1 (53) and adjustment component 2 (57) to rotate, which can automatically transport and feed materials, reducing the inconvenience caused by manual pushing of materials during material processing.
[0033] according to Figure 4-5 As shown: Specifically, the surface of the transport wheel 55 is covered and fixedly connected with anti-slip rings 59. There are multiple anti-slip rings 59, which are arranged in an O-shape. By setting anti-slip rings 59 on the surface of the transport wheel 55, the slippage of the transport wheel 55 on the material surface caused by the material surface being too smooth can be reduced, thus preventing the automatic feeding from being impossible.
[0034] according to Figure 4-5 As shown: Specifically, control components 52 are fixedly connected to the surfaces of the two adjusting components 53, and two hollow seats are fixedly connected to the surface of the feeding guide rail 4. A bidirectional screw 51 is rotatably connected to the inner wall of the hollow seat. The control components 52 fixed to the surfaces of the two adjusting components 53 are all provided with threaded holes. The bidirectional screw 51 is threadedly connected to the threaded holes on the surfaces of the two control components 52 respectively. By setting the bidirectional screw 51, it is easy to control the movement of the two adjusting components 53, so that the conveyor wheel 55 can be closely attached to materials of different widths, thereby improving the overall practicality of the equipment.
[0035] according to Figure 5 As shown: Specifically, a connecting block 58 is fixedly connected to one side surface of the adjusting component 1 53 and the adjusting component 2 57. The longitudinal section of the connecting block 58 is rectangular. By setting the connecting block 58, the adjusting block 2 can be moved by the connecting block 58 when adjusting the two adjusting components 1 53, so that they can be adjusted at the same time.
[0036] according to Figure 6-7As shown: Specifically, the surface of the feeding guide rail 4 is provided with two limiting devices 6. The limiting device 6 includes a fixed rod 61, which is fixedly connected to the surface of the feeding guide rail 4. A stop rod 62 is rotatably connected to the surface of the fixed rod 61, and a handle 63 is rotatably connected to the surface of the stop rod 62. A hollow rod 64 is fixedly connected to the surface of the feeding guide rail 4 near the handle 63. A groove 69 is opened on the surface of the stop rod 62, and the groove 69 is engaged with the hollow rod 64. By engaging the groove 69 on the surface of the stop rod 62 with the hollow rod 64, the stop rod 62 can restrict the material and reduce the situation where the material shakes on the guide rail and affects the processing.
[0037] according to Figure 7 As shown: Specifically, a limit ring 66 is slidably connected to the inner wall of the hollow rod 64, and a positioning rod 68 is fixedly connected to the surface of the stop rod 62. A circular hole is opened on the surface of the limit ring 66, and the positioning rod 68 is inserted into the inner wall of the circular hole. By fitting the circular hole on the surface of the limit ring 66 into the positioning rod 68, the stop rod 62 can be positioned, thereby improving the stability of the limit.
[0038] according to Figure 7 As shown: Specifically, a circular hole is opened on the surface of the hollow rod 64, and a screw 67 is rotatably connected to the inner wall of the circular hole. A connecting hole is opened on the surface of the limiting ring 66, and the screw 67 is threadedly connected to the connecting hole. A knob 65 is fixedly connected to one end of the screw 67. By rotating the knob 65 in conjunction with the screw 67, the movement of the limiting ring 66 can be controlled, thereby improving the overall ease of use.
[0039] according to Figure 8 As shown: Specifically, the surface of the stop bar 62 is provided with an auxiliary device 7, which includes a fixed frame 71. The fixed frame 71 is fixedly connected to the surface of the stop bar 62. The surface of the fixed frame 71 has a drive hole, and the inner wall of the drive hole is threaded with a screw 73. The surface of the fixed frame 71 has two sliding holes, and the inner wall of the sliding holes is slidably connected with a stabilizing rod 75. One end of the two stabilizing rods 75 is fixedly connected to a pressure member 74. The screw 73 is rotatably connected to the surface of the pressure member 74. One end of the screw 73 is fixedly connected to a gripping rod 72. The surface of the stop bar 62 has a rectangular hole 78, through which the pressure member 74 passes. By using the gripping rod 72 in conjunction with the screw 73, the stabilizing rod 75 can be controlled to drive the pressure member 74 to move within the fixed frame 71, so that the pressure member 74 can press down on materials of different heights, thereby improving the overall stability.
[0040] according to Figure 8 As shown: Specifically, the surface of the pressure component 74 is provided with a connecting groove, and mounting holes are provided on both sides of the connecting groove. Rollers 77 are rotatably connected to the inner wall of the mounting holes. By setting rollers 77, damage to the material when it is pressed down can be reduced, and the material can be scratched.
[0041] according to Figure 8 As shown: Specifically, a positioning ring 76 is fixedly connected to the surface of the stabilizer bar 75. The cross-section of the positioning ring 76 is circular. By setting the positioning ring 76, the positioning can be restricted when the stabilizer bar 75 moves.
[0042] The overall effect of the mechanism is as follows: by placing the material on the feeding guide rail 4, the driver 3 drives the machine body 2 to work through the conveyor belt to process the material. By setting up the feeding device 5, when the equipment needs to be used, the bidirectional screw 51 is rotated. The bidirectional screw 51 drives the two control components 52 and the first adjustment component 53 to move. The first adjustment component 53 drives the second adjustment component 57 to move together through the connecting block 58, so that the transport wheel 55 and the anti-slip ring 59 are close to the material. The motor 54 is turned on, and the motor 54 drives the transport wheel 55 in the first adjustment component 53 and the second adjustment component 57 to rotate through the belt 56 to perform the feeding operation. By setting up the feeding device 5, it is convenient for the equipment to automatically feed during processing. This can effectively reduce the inconvenience caused by the need for continuous manual pushing of the material when the equipment is cutting corners, and reduce the situation where the material is too long and requires a long time of manual pushing, which can easily cause arm fatigue and affect efficiency. In this way, the ease of use of the equipment is improved.
[0043] By setting the limiting device 6, when the equipment needs to be used, the handle 63 drives the stop bar 62 to rotate in the fixed rod 61. The groove 69 on the surface of the stop bar 62 is engaged with the hollow rod 64. By rotating the knob 65 and the screw 67, the threaded rod drives the limiting ring 66 to move in the hollow rod 64, so that the round hole on the surface of the limiting ring 66 is fitted onto the positioning rod 68. The stop bar 62 can then restrict the material. By setting the limiting device 6, it is easy to restrict the material parts, which can effectively reduce the phenomenon that the material is prone to jumping in the guide rail when the equipment is processing materials. This reduces the situation where material jumping causes processing errors and material scrap, thereby improving the overall stability of the equipment.
[0044] By setting up auxiliary device 7, when the equipment needs to be used, rotating the handle 72 will drive the screw 73 to rotate. The screw 73 will drive the pressure member 74 and the stabilizing rod 75 to move in the fixed frame 71. The pressure member 74 will drive the roller 77 to press down against the surface of the material, thus completing the use. By setting up auxiliary device 7, it is convenient to use the auxiliary equipment and to limit the movement of the auxiliary equipment. This can effectively reduce the situation where smaller materials are prone to jumping and affecting the processing due to different material thicknesses, thereby improving the overall ease of use of the equipment.
[0045] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A fully automatic diode corner cutting machine, characterized in that: The system includes a base (1), an organism (2) is mounted on top of the base (1), a driver (3) is mounted on one side of the organism (2), and the output end of the driver (3) is connected to the organism (2) via a transmission belt. A feeding guide rail (4) is mounted on the surface of the base (1), and a feeding device (5) is mounted on the surface of the feeding guide rail (4). The feeding device (5) includes an adjusting component one (53) and an adjusting component two (57), with two adjusting components one (53) and two adjusting components two (57). The inner walls of the feeding guide rail (4) are provided with concave grooves on both sides. The surface of the rail (4) is provided with four sets of sliding grooves, each set having two grooves. The first adjusting member (53) and the second adjusting member (57) are slidably connected to the inner walls of the four sets of sliding grooves and the concave grooves, respectively. The inner walls of the first adjusting member (53) and the second adjusting member (57) are rotatably connected to three sets of transport wheels (55). The surface of the first adjusting member (53) is fixedly connected to a motor (54), and the motor (54) is connected to the multiple sets of transport wheels (55) via a belt (56). The surface of the transport wheels (55) is covered with and fixedly connected to anti-slip rings (59), the number of which is... Multiple anti-slip rings (59) are arranged in an O-shape; control components (52) are fixedly connected to the surfaces of the two adjustment components (53); two hollow seats are fixedly connected to the surface of the feeding guide rail (4); a bidirectional screw (51) is rotatably connected to the inner wall of the hollow seat; threaded holes are opened on the surfaces of the control components (52) fixed to the surfaces of the two adjustment components (53); the bidirectional screw (51) is threadedly connected to the threaded holes on the surfaces of the two control components (52); a connecting block (58) is fixedly connected to one side of the adjustment component (53) and the adjustment component (57); the connecting block (58) is fixedly connected to the corresponding side of the adjustment component (53) and the adjustment component (57). The longitudinal section of the block (58) is rectangular; the surface of the feeding guide (4) is provided with two limiting devices (6), the limiting device (6) includes a fixed rod (61), the fixed rod (61) is fixedly connected to the surface of the feeding guide (4), the surface of the fixed rod (61) is rotatably connected to a stop rod (62), the surface of the stop rod (62) is rotatably connected to a handle (63), the surface of the feeding guide (4) near the handle (63) is fixedly connected to a hollow rod (64), the surface of the stop rod (62) is provided with a groove (69), the groove (69) is engaged with the hollow rod (64).
2. The fully automatic diode corner cutting machine according to claim 1, characterized in that: The inner wall of the hollow rod (64) is slidably connected to a limiting ring (66), and the surface of the stop rod (62) is fixedly connected to a positioning rod (68). The surface of the limiting ring (66) is provided with a circular hole, and the positioning rod (68) is inserted into the inner wall of the circular hole.
3. The fully automatic diode corner cutting machine according to claim 2, characterized in that: The hollow rod (64) has a circular hole on its surface. A screw (67) is rotatably connected to the inner wall of the circular hole. The limiting ring (66) has a connecting hole on its surface. The screw (67) is threadedly connected to the connecting hole. A knob (65) is fixedly connected to one end of the screw (67).
4. The fully automatic diode corner cutting machine according to claim 3, characterized in that: The surface of the stop bar (62) is provided with an auxiliary device (7), the auxiliary device (7) includes a fixing frame (71), the fixing frame (71) is fixedly connected to the surface of the stop bar (62), the surface of the fixing frame (71) is provided with a driving hole, the inner wall of the driving hole is threadedly connected with a screw rod (73), the surface of the fixing frame (71) is provided with two sliding holes, the inner wall of the sliding holes is slidably connected with a stabilizing rod (75), one end of the two stabilizing rods (75) is fixedly connected with a pressure member (74), the screw rod (73) is rotatably connected to the surface of the pressure member (74), one end of the screw rod (73) is fixedly connected with a gripping rod (72), the surface of the stop bar (62) is provided with a rectangular hole (78), the rectangular hole (78) is for the pressure member (74) to pass through.
5. A fully automatic diode corner cutting machine according to claim 4, characterized in that: The surface of the pressure member (74) is provided with a connecting groove, and mounting holes are provided on both sides of the connecting groove. Rollers (77) are rotatably connected to the inner wall of the mounting holes.
6. A fully automatic diode corner cutting machine according to claim 5, characterized in that: A positioning ring (76) is fixedly connected to the surface of the stabilizer bar (75), and the cross-section of the positioning ring (76) is circular.
Citation Information
Patent Citations
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