Automatic feeding device for magnet photoelectric cutting machine
By designing an automatic feeding device for a magnet photoelectric cutting machine, which adopts a cylinder pushing and adjustable clamping block structure, the problem of low efficiency in traditional manual feeding is solved, achieving efficient automated feeding, reducing costs and adapting to the processing of magnets of various sizes.
Patent Information
- Application Number
- CN202010494470.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-06-03
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2040-06-03
AI Technical Summary
In the traditional magnet production process, manual feeding results in high labor intensity for workers, high production costs, and low efficiency.
Design an automatic feeding device for a magnet photoelectric cutting machine. The device uses a cylinder to push the material in conjunction with a guide trough to load and unload magnet sheets. It utilizes an adjustable fixed clamping block, a movable clamping block, and a guide plate structure to adapt to the processing needs of magnet sheets of different sizes.
It improves work efficiency, reduces the labor intensity of workers, saves labor costs, and can adapt to the processing needs of multi-size magnet sheets.
Smart Images

Figure CN111687670B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of magnet manufacturing technology, specifically an automatic feeding device for a magnet photoelectric cutting machine. Background Technology
[0002] Magnets are composed of atoms such as iron, cobalt, and nickel. Their atoms have a unique internal structure and inherently possess magnetic moments. Magnets generate magnetic fields and have the property of attracting ferromagnetic materials such as iron, nickel, and cobalt. Magnets can be divided into "permanent magnets" and "non-permanent magnets." Permanent magnets can be natural products, also known as natural lodestone, or they can be artificially manufactured. Non-permanent magnets, such as electromagnets, only exhibit magnetism under certain conditions.
[0003] In the traditional magnet production process, manual feeding is generally used to clamp, fix, cut, and unload the magnet sheets. This results in high labor intensity for workers, high production costs, and low work efficiency. Summary of the Invention
[0004] To overcome the shortcomings mentioned above, the present invention aims to provide a technical solution that can solve the above problems.
[0005] An automatic feeding device for a magnet photoelectric cutting machine includes a bottom support and a fixed base fixedly mounted on the bottom support. The device is characterized by a fixed clamping block fixedly mounted on the fixed base, a movable base on the bottom support, a movable clamping block fixedly mounted on the movable base, a connecting plate connecting the movable clamping block and the fixed clamping block, gaps between the bottom of the connecting plate and both the fixed and movable bases, and an adjustable distance between the movable and fixed clamping blocks. Adjustable guide plates are mounted on both the fixed and movable bases, each with a notch at its bottom to form a guide groove between the bottom of the guide plate and both the fixed and movable bases. Adjustable material placement racks are also mounted on both the fixed and movable bases, each with a discharge notch at its bottom communicating with the guide groove. A cylinder mounting plate is fixedly mounted on the bottom support, and a pushing cylinder is fixedly mounted on the cylinder mounting plate. A pushing block, passing through the bottom of the connecting plate, is fixedly connected to the telescopic rod of the pushing cylinder.
[0006] Furthermore, both the fixed clamping block and the movable clamping block are provided with connecting plate mounting slots, and the connecting plate is inserted into the connecting plate mounting slots. The outer sides of the fixed clamping block and the movable clamping block are respectively provided with connecting plate adjusting screws that pass through the connecting plate mounting slots and are threadedly connected to the connecting plate. The back of the fixed clamping block and the movable clamping block are respectively provided with connecting plate locking screws that are threadedly connected to them and pass through the connecting plate mounting slots.
[0007] Furthermore, a material rack guide rod is fixedly connected to the back of the material rack. The fixed base and the movable base are respectively provided with material rack guide holes corresponding to the material rack guide rod. The material rack is installed on the fixed base and the movable base respectively by inserting the material rack guide rod into the material rack guide hole. The top of the fixed base and the movable base are respectively provided with material rack locking screws that are threaded to them and pass through the material rack guide hole.
[0008] Furthermore, the bottom of the material rack is equipped with an arc-shaped guide at the discharge notch.
[0009] Furthermore, both the fixed base and the movable base are equipped with guide plate positioning screws. The guide plate has a long strip-shaped positioning cutout. The guide plate positioning screws pass through the positioning cutout and are threadedly connected to the material plate locking nut.
[0010] Compared with the prior art, the beneficial effects achieved by the present invention are as follows:
[0011] (1) This invention provides an automatic feeding device for a magnet photoelectric cutting machine, which uses a cylinder to push the material in conjunction with a guide groove to feed and unload the magnet pieces, replacing the manual feeding and unloading method, improving work efficiency, saving labor costs, and reducing the labor intensity of workers.
[0012] (2) The distance between the movable clamping block and the fixed clamping block, the position of the guide plate, and the position of the material rack are adjustable, which can meet the processing needs of magnet plates of various sizes.
[0013] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0014] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the structure of the present invention.
[0016] Figure 2 This is another structural schematic diagram of the present invention. Detailed Implementation
[0017] The technical solutions in the embodiments of the present invention will be clearly and completely described below. 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.
[0018] Please see Figure 1-2 An automatic feeding device for a magnet photoelectric cutting machine includes a bottom support 1 and a fixed base 2 fixedly mounted on the bottom support 1. The device is characterized in that a fixed clamping block 3 is fixedly mounted on the fixed base 2, and a movable base 4 is also provided on the bottom support 1. A movable clamping block 5 is fixedly mounted on the movable base 4. A connecting plate 6 connects the movable clamping block 5 and the fixed clamping block 3. Gaps are left between the bottom of the connecting plate 6 and both the fixed base 2 and the movable base 4. The distance between the movable clamping block 5 and the fixed clamping block 3 is adjustable. Adjustable guide plates 7 are installed on each of the following structures. A notch on the bottom of each guide plate 7 forms a guide groove 71 between its bottom and the fixed base 2 and the movable base 4. Adjustable material racks 8 are also installed on the fixed base 2 and the movable base 4. The bottom of the material rack 8 has a discharge notch 84 that communicates with the guide groove 71. A cylinder mounting plate 9 is fixedly installed on the bottom support 1, and a pusher cylinder 91 is fixedly installed on the cylinder mounting plate 9. A pusher block 92, which passes through the bottom of the connecting plate 6, is fixedly connected to the telescopic rod of the pusher cylinder 91. The use of a cylinder to push material, in conjunction with the guide groove 71, for loading and unloading magnet sheets replaces manual loading and unloading, improving work efficiency.
[0019] Furthermore, both the fixed clamping block 3 and the movable clamping block 5 are provided with connecting plate mounting grooves 61. The connecting plate 6 is inserted into the connecting plate mounting grooves 61. The outer sides of the fixed clamping block 3 and the movable clamping block 5 are respectively provided with connecting plate adjusting screws 62 that penetrate through the connecting plate mounting grooves 61 and are threadedly connected to the connecting plate 6. The backs of the fixed clamping block 3 and the movable clamping block 5 are respectively provided with connecting plate locking screws 63 that are threadedly connected to them and penetrate through the connecting plate mounting grooves 61. By adjusting the screw depth of the connecting plate adjusting screws 62 in the connecting plate 6, the distance range between the fixed clamping block 3 and the movable clamping block 5 can be adjusted to accommodate different magnet lengths. The connecting plate locking screws 63 lock the connecting plate 6 to the fixed clamping block 3 and the movable clamping block 5 in place.
[0020] Furthermore, a material rack guide rod 81 is fixedly connected to the back of the material rack 8. The fixed base 2 and the movable base 4 are respectively provided with material rack guide holes 82 corresponding to the material rack guide rod 81. The material rack 8 is installed on the fixed base 2 and the movable base 4 respectively by inserting the material rack guide rod 81 into the material rack guide holes 82. The top of the fixed base 2 and the movable base 4 are respectively provided with material rack locking screws 83 that are threaded to them and pass through the material rack guide holes 82. The cooperation between the material rack guide rod 81 and the material rack guide holes 82 allows the installation position of the material rack 8 to be adjusted to accommodate different magnet widths, while the material rack locking screws 83 lock and fix the material rack in place.
[0021] Furthermore, the bottom of the material rack 8 is provided with an arc-shaped guide at the discharge notch 84. The arc-shaped guide facilitates the smooth discharge of the magnetic sheet and avoids the situation where the front end of the magnetic sheet is raised and blocks the material rack 8.
[0022] Furthermore, both the fixed base 2 and the movable base 4 are equipped with guide plate positioning screws 72. The guide plate 7 has an elongated positioning cutout 73. The guide plate positioning screws 72 pass through the positioning cutout 73 and are threadedly connected to the material-holding plate locking nut 74. The guide plate positioning screws 72 cooperate with the positioning cutout 73 to make the position of the guide plate 7 on the fixed base 2 and the movable base 4 adjustable, providing position adjustment space for the material rack 8.
[0023] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within the present invention.
Claims
1. An automatic feeding device for a magnet photoelectric cutting machine, comprising a bottom support and a fixed base fixedly mounted on the bottom support, characterized in that, A fixed clamping block is fixedly installed on the fixed base, and a movable base is also provided on the bottom support. A movable clamping block is fixedly installed on the movable base. A connecting plate is connected between the movable clamping block and the fixed clamping block. There is a gap between the bottom of the connecting plate and both the fixed base and the movable base. The distance between the movable clamping block and the fixed clamping block is adjustable. An adjustable guide plate is installed on the fixed base and the movable base respectively. A notch is provided on the bottom of the guide plate so that the bottom of the guide plate forms a guide groove with the fixed base and the movable base. An adjustable material rack is also installed on the fixed base and the movable base. The bottom of the material rack has a discharge notch that communicates with the guide groove. A cylinder mounting plate is fixedly installed on the bottom support. A pusher cylinder is fixedly installed on the cylinder mounting plate. A pusher block that passes through the bottom of the connecting plate is fixedly connected to the telescopic rod of the pusher cylinder. Both the fixed clamping block and the movable clamping block are provided with connecting plate mounting slots. The connecting plate is inserted into the connecting plate mounting slots. The outer sides of the fixed clamping block and the movable clamping block are respectively provided with connecting plate adjusting screws that pass through the connecting plate mounting slots and are threadedly connected to the connecting plate. The back of the fixed clamping block and the movable clamping block are respectively provided with connecting plate locking screws that are threadedly connected to them and pass through the connecting plate mounting slots. The back of the material rack is fixedly connected to a material rack guide rod. The fixed base and the movable base are respectively provided with material rack guide holes corresponding to the material rack guide rod. The material rack is installed on the fixed base and the movable base respectively by inserting the material rack guide rod into the material rack guide hole. The top of the fixed base and the movable base are respectively provided with a material rack locking screw that is threaded to it and passes through the material rack guide hole. The bottom of the material rack is equipped with an arc-shaped guide at the material discharge notch; Both the fixed base and the movable base are equipped with guide plate positioning screws. The guide plate has a long strip-shaped positioning cutout. The guide plate positioning screws pass through the positioning cutout and are threadedly connected to the material plate locking nut.
Citation Information
Patent Citations
Full-automatic blade feeding device and feeding method thereof
CN105417083A
Automated material conveying device
CN204433772U