Automatic magnetizing and packaging line with conveying function
By employing a design that combines drive motor control of conveyor belt rolling and transfer components in the automatic magnetization packaging line, the problem of unstable material conveying is solved, enabling stable conveying of both unmagnetized and fully magnetized materials and ensuring precise control of the magnetization process.
Patent Information
- Application Number
- CN202310795879.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-01
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2043-07-01
AI Technical Summary
The existing automatic magnetizing packaging line's conveying mechanism is difficult to accurately control the magnetization of a single material, and the materials are prone to mutual attraction or repulsion, resulting in unstable material conveying after magnetization.
Design an automatic magnetizing packaging line with conveying function. The conveyor belt is controlled by a drive motor to circulate and roll. Unmagnetized materials are placed between the feeding racks and the material is sent to the magnetizing rack by the transfer component. After magnetization, the material is transferred to the storage rack and the material is separated by the material separating component to ensure stable conveying.
It enables stable conveying of both unmagnetized and fully magnetized materials, avoids mutual interference between materials, and improves the precision control of the magnetization process and the stability of conveying.
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Figure CN116573219B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of automatic magnetization, and specifically relates to an automatic magnetization packaging line with a conveying function. BACKGROUND
[0002] The magnetization machine has a simple structure, is similar to an electromagnet and is very strong, but is equipped with iron blocks of various shapes as an addition to form a closed loop with the magnetized body, and the additional magnetic poles and the magnetized body are arranged, and the magnetization work can be completed instantaneously by adding a magnetizing current brush. When the magnetization machine works, a capacitor is first charged with a direct-current high-voltage, and then discharged through a coil with a very small resistance, and the peak value of the discharge pulse current can reach tens of thousands of amperes. A strong magnetic field is generated in the coil, which magnetizes the permanent magnet in the coil. The pulse current peak value is very high when the capacitor works, and the performance of the capacitor is required to be very high.
[0003] The existing Chinese patent document with the publication number of an automatic magnetization equipment with a test function adjusts the gap between the elastic adjusting piece and the gasket transmission track through the extension and retraction of the electric hydraulic rod, facilitates the size and size adjustment of the gasket, facilitates the arrangement of the track, facilitates the conveying of the product, and thereby reduces the manual feeding operation.
[0004] However, in the process of implementing the above technical solution, it is found that the above technical solution has the following technical problems:
[0005] The conveying mechanism of the existing automatic magnetization packaging line mainly uses a conveying machine and a vibrating machine to convey materials, but in the actual use process, it is inconvenient to accurately control single material for magnetization work, and the materials between two adjacent materials are prone to mutual attraction or mutual repulsion, which is not conducive to the stable conveying of the magnetized materials. SUMMARY
[0006] In order to overcome the existing deficiencies, the application provides an automatic magnetization packaging line with a conveying function. The magnetization packaging line is characterized in that: the magnetization packaging line comprises a conveying mechanism, a magnetization mechanism and a conveying mechanism, the conveying mechanism comprises a conveying frame, a conveying belt, a driving motor, four discharge support frames and four storage support frames, the conveying belt is arranged on the inner side of the conveying frame, the driving motor is arranged on the outer side of the conveying frame, the four discharge support frames are arranged on the inner side of the conveying belt, and the four storage support frames are arranged on the outer side of the conveying belt.
[0007] The technical solution adopted by the application to solve the technical problems is as follows:
[0008] The application discloses an automatic magnetizing packaging line with a conveying function.
[0009] The conveying assembly comprises a conveying frame, the inner side of the conveying frame is provided with a conveying belt, one side of the conveying frame is connected with a driving motor through a transmission belt, the top of one end of the conveying frame is provided with a discharging mechanism, and the top of the other end of the conveying frame is provided with a receiving mechanism.
[0010] The conveying assembly is located on the other side of the top of the bottom disc, the discharging mechanism comprises four discharging blocking frames, the bottom ends of the four discharging blocking frames are fixedly connected with a same discharging support, the receiving mechanism comprises four storage blocking frames, the bottom ends of the four storage blocking frames are fixedly connected with a same receiving support, and the four discharging blocking frames and the four storage blocking frames are arranged in a rectangular array.
[0011] In a possible implementation, the bottom of each end of the conveying frame is assembled with a standing frame, and the bottom of the discharging support and the receiving support is assembled with the two standing frames.
[0012] In a possible implementation, the bottom of the center of the conveying frame is assembled with a second air cylinder, the movable end of the second air cylinder is assembled with a material distributing blocking piece, and the material distributing blocking piece is movably connected to the inner side of the conveying belt.
[0013] In a possible implementation, the bottom of the storage blocking frame is processed with a first notch, the inside of the first notch is provided with a first blocking block, and one side of the first blocking block is provided with a first air cylinder.
[0014] In a possible implementation, the first air cylinder is assembled with the discharging support through bolts, the movable end of the first air cylinder is assembled with the first blocking block, and the first blocking block is movably connected to the inside of the first notch.
[0015] In a possible implementation, the bottom of the storage blocking frame is processed with a second notch, the inside of the second notch is provided with a second blocking block, and one side of the second blocking block is provided with a supporting seat.
[0016] In a possible implementation, the top of the second blocking block is hingedly connected with a fork joint, the inside of the fork joint is threadedly connected with a control screw, and one end of the control screw is threadedly connected with a nut.
[0017] In a possible implementation, the bottom of the second block is hingedly connected with the bottom of one side of the support seat, the nut is hingedly connected inside the support seat, and the second block is movably connected inside the second notch.
[0018] In a possible implementation, the height of the discharging block is greater than the height of the storage block, the bottom of the transfer assembly is movably connected between the discharging mechanism and the receiving mechanism, and the bottom of the transfer assembly is movably connected to the top of the storage block.
[0019] The application has the following beneficial effects:
[0020] Firstly, in the scheme, the non-magnetized material is placed between the four discharging blocks, the driving motor controls the circulating rolling of the conveying belt on the inner side of the conveying frame, the material in contact with the surface of the conveying belt on the inner side of the discharging support is removed from the bottom of the discharging support, the transfer assembly is taken out from between the discharging mechanism and the receiving mechanism, and placed on the top of the magnetizing assembly for magnetizing work. When the material completes magnetizing, it can be transferred to the four storage blocks by the transfer assembly, so as to facilitate the simultaneous conveying of non-magnetized material and magnetized material, and the materials do not affect each other.
[0021] Secondly, in the scheme, by controlling the second block to rotate around the hinge point of the support seat and separate from the inside of the second notch, the magnetized material can fall on the top of the conveying belt and be conveyed to one side by the conveying belt. When the second block rotates around the hinge point of the support seat and extends into the inside of the second notch, a block is formed between the bottoms of the four storage blocks, so that the magnetized material can be stored between the four storage blocks, which is simple and convenient. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a schematic diagram of the overall structure of the application;
[0023] Figure 2 It is a schematic diagram of the structure of the transfer assembly of the application;
[0024] Figure 3 It is a schematic diagram of the structure of the conveying assembly of the application;
[0025] Figure 4 It is a schematic diagram of the position structure of the conveying belt and the material dividing block of the application;
[0026] Figure 5 It is a schematic diagram of the connection structure of the conveying frame and the material dividing block of the application;
[0027] Figure 6 It is a schematic diagram of the structure of the discharging mechanism of the application
[0028] Figure 7 It is a schematic diagram of the structure of the receiving mechanism of the application.
[0029] Figure Descriptions: 1. Chassis; 2. Magnetizing Assembly; 3. Gantry; 4. Transfer Assembly; 5. Conveying Assembly; 51. Unloading Mechanism; 511. Unloading Stop; 512. Unloading Support; 513. First Cylinder; 514. First Stop Block; 515. First Groove; 52. Receiving Mechanism; 521. Storage Stop Block; 522. Receiving Support; 523. Second Groove; 524. Second Stop Block; 525. Control Screw; 526. Support Base; 53. Drive Motor; 54. Conveying Frame; 55. Conveying Belt; 56. Erection Frame; 57. Material Distributing Stop; 58. Second Cylinder. Detailed Implementation
[0030] The technical solution in this application embodiment is to solve the problems mentioned in the background art, and the overall idea is as follows:
[0031] Example 1:
[0032] This embodiment describes the specific structure of an automated magnetizing packaging line with a conveying function, as detailed in the following reference. Figures 1-7 As shown, the system includes a chassis 1 and a conveying assembly 5. A magnetizing assembly 2 is mounted on the top of one side of the chassis 1, a gantry 3 is mounted on the top of the center of the chassis 1, and a transfer assembly 4 is mounted on the bottom of the gantry 3. The conveying assembly 5 includes a conveying frame 54, a conveyor belt 55 is provided on the inner side of the conveying frame 54, a drive motor 53 is connected to one side of the conveying frame 54 via a transmission belt, a feeding mechanism 51 is provided on the top of one end of the conveying frame 54, and a receiving mechanism 52 is provided on the top of the other end of the conveying frame 54. The conveying assembly 5 is located on the other side of the top of the chassis 1.
[0033] The conveying assembly 5 is located on the other side of the top of the chassis 1. The unloading mechanism 51 includes four unloading baffles 511, and the bottom of the four unloading baffles 511 is fixed with unloading supports 512. The receiving mechanism 52 includes four storage baffles 521, and the bottom of the four storage baffles 521 is fixed with receiving supports 522. The four unloading baffles 511 and the four storage baffles 521 are arranged in a rectangular shape. By placing the unmagnetized material between the four unloading baffles 511, when the material falls into the top of the conveyor belt 55, when the drive motor 53 drives the conveyor belt 55 to circulate, the inner side of the bottom of the unloading support 512 can be moved out and taken out by the transfer assembly 4 from between the unloading mechanism 51 and the receiving mechanism 52, and placed on the top of the magnetizing assembly 2 for magnetizing.
[0034] Meanwhile, after the material is magnetized, it is removed from the top of the magnetizing component 2 by the transfer component 4. When it is transferred to the top of the receiving mechanism 52, it can be stored between the four storage baffles 521. When the material that has completed the magnetization work falls from between the four storage baffles 521 onto the top of the conveyor belt 55, it can be conveyed to the outside.
[0035] Secondly, the bottom of both ends of the conveying frame 54 is assembled and connected with the erected stand 56, and the bottom of the discharging support 512 and the receiving support 522 is assembled and connected with the two erected stands 56 respectively;
[0036] Further, the bottom of the center of the conveying frame 54 is assembled and connected with the second cylinder 58, and the movable end of the second cylinder 58 is assembled and connected with the distribution stopper 57, when the second cylinder 58 controls the distribution stopper 57 to extend to the top, the distribution stopper 57 is movably connected to the inner side of the conveying belt 55, and the two sides of the top of the conveying belt 55 can form a barrier to separate the non-magnetized material and the magnetized material.
[0037] By adopting the above technical scheme:
[0038] The above design places the non-magnetized material between the four discharging stoppers 511, the driving motor 53 controls the conveying belt 55 to circulate and roll on the inner side of the conveying frame 54, the material on the inner side of the discharging support 512 in contact with the surface of the conveying belt 55 is removed from the bottom of the discharging support 512, the transfer assembly 4 is taken out from between the discharging mechanism 51 and the receiving mechanism 52, and placed on the top of the magnetizing assembly 2 for magnetizing work, when the material completes magnetizing, it is taken down from the top of the magnetizing assembly 2 by the transfer assembly 4, and when it is transferred to the top of the receiving mechanism 52, it can be accommodated between the four storage stoppers 521, which is convenient for simultaneously conveying the non-magnetized material and the magnetized material by means of the circulating and rolling conveying belt 55, in this process, the material is sucked by the transfer assembly 4 and vertically discharged between the storage stoppers 521, which is beneficial to ensure stable conveying of the material.
[0039] Embodiment 2:
[0040] Based on embodiment 1, this embodiment introduces the specific structure of the receiving mechanism 52 and the discharging mechanism 51, the bottom of the storage stopper 521 is processed with a first notch 515, the inside of the first notch 515 is provided with a first stopper 514, one side of the first stopper 514 is provided with a first cylinder 513, the bottom of the storage stopper 521 is processed with a second notch 523, the inside of the second notch 523 is provided with a second stopper 524, one side of the second stopper 524 is provided with a support seat 526;
[0041] Among them, the first cylinder 513 is assembled and connected with the discharging support 512 by bolts, the movable end of the first cylinder 513 is assembled and connected with the first stopper 514, and the first stopper 514 is movably connected in the inside of the first notch 515, when the first cylinder 513 controls the first stopper 514 to extend into the inside of the first notch 515, it can block the non-magnetized material from falling into the inside of the bottom of the discharging support 512;
[0042] Second, the top of the second block 524 is hingedly connected with a fork joint, the fork joint is threadedly connected with a control screw 525, one end of the control screw 525 is threadedly connected with a nut, the bottom of the second block 524 is hingedly connected with the bottom of one side of the support seat 526, and the nut is hingedly connected in the inside of the support seat 526. When the threaded connection of the control screw 525 and the nut is adjusted, the threaded connection of the control screw 525 and the fork joint can be adjusted at the same time, so that the top of the second block 524 is controlled to extend into the inside of the second slot 523 or to be separated from the inside of the second slot 523, thereby facilitating the blocking of the magnetized materials between the storage guards 521 from falling to the bottom.
[0043] The specific operation steps are:
[0044] S1, the first cylinder 513 controls the first block 514 to be separated from the inside of the first slot 515, so that the materials not subjected to magnetization fall between the four discharge guards 511 and are conveyed by the conveying belt 55 from one end to the other end;
[0045] S2, when the materials not subjected to magnetization fall between the discharging mechanism 51 and the receiving mechanism 52, the materials are blocked by the movable blocking piece 57 moved to the inside of the conveying belt 55 and can be taken out from between the discharging mechanism 51 and the receiving mechanism 52 by the transfer assembly 4 and placed on the top of the magnetizing assembly 2 for magnetization work;
[0046] S3, the magnetized materials are taken down from the top of the magnetizing assembly 2 by the transfer assembly 4 and placed between the four storage guards 521. When the second block 524 rotates around the hinge joint between the second block 524 and the support seat 526 and is separated from the inside of the second slot 523, the magnetized materials can fall on the top of the conveying belt 55 and be conveyed by the conveying belt 55 to one side. When the second block 524 rotates around the hinge joint between the second block 524 and the support seat 526 and extends into the inside of the second slot 523, a block is formed between the bottoms of the four storage guards 521, so that the magnetized materials are collected between the four storage guards 521.
[0047] By adopting the above technical scheme:
[0048] The above design controls the second block 524 to rotate around the hinge joint between the second block 524 and the support seat 526 and be separated from the inside of the second slot 523, so that the magnetized materials can fall on the top of the conveying belt 55 and be conveyed by the conveying belt 55 to one side. When the second block 524 rotates around the hinge joint between the second block 524 and the support seat 526 and extends into the inside of the second slot 523, a block is formed between the bottoms of the four storage guards 521, so that the magnetized materials are collected between the four storage guards 521, which is convenient for switching according to actual use requirements.
[0049] It should be noted that the above-mentioned embodiments are merely used to clearly illustrate the technical solutions of the present application, and should not be construed as limitations to the present application. Based on the above-mentioned embodiments, those skilled in the art can make other variations or modifications without departing from the spirit of the present application. The present application is not required to enumerate all of the embodiments, and the variations or modifications made without departing from the spirit of the present application should fall within the scope of the present application.
Claims
1. An automatic magnetizing packaging line with conveying function, characterized in that, include: A chassis (1) is provided with a magnetizing assembly (2) mounted on the top of one side of the chassis (1), a gantry (3) is mounted on the top of the center of the chassis (1), and a transfer assembly (4) is mounted on the bottom of the gantry (3). The conveying assembly (5) includes a conveying frame (54), a conveyor belt (55) is provided on the inner side of the conveying frame (54), a drive motor (53) is connected to one side of the conveying frame (54) via a transmission belt, a feeding mechanism (51) is provided on the top of one end of the conveying frame (54), and a receiving mechanism (52) is provided on the top of the other end of the conveying frame (54). The conveying assembly (5) is located on the other side of the top of the chassis (1). The unloading mechanism (51) includes four unloading baffles (511), and the bottom ends of the four unloading baffles (511) are fixedly connected to the same unloading support (512). The receiving mechanism (52) includes four storage baffles (521), and the bottom ends of the four storage baffles (521) are fixedly connected to the same receiving support (522). The four unloading baffles (511) and the four storage baffles (521) are arranged in a rectangular shape. The bottom of the storage baffle (521) is machined with a second slot (523), and a second block (524) is provided inside the second slot (523). A support seat (526) is provided on one side of the second block (524). The top of the second stop (524) is hinged to a fork-shaped connector, and the inside of the fork-shaped connector is threaded to a control screw (525), and one end of the control screw (525) is threaded to a nut. The bottom of the second stop (524) is hinged to the bottom of one side of the support base (526), the nut is hinged to the inside of the support base (526), and the second stop (524) is movably connected to the inside of the second slot (523).
2. The automatic magnetizing packaging line with conveying function as described in claim 1, characterized in that: The bottom of both ends of the conveyor frame (54) is assembled with a support frame (56), and the bottom of the unloading support (512) and the receiving support (522) are respectively assembled with the two support frames (56).
3. An automatic magnetizing packaging line with conveying function as described in claim 1, characterized in that: The bottom of the center of the conveyor frame (54) is equipped with a second cylinder (58), and the movable end of the second cylinder (58) is equipped with a material distribution baffle (57), which is movably connected to the inside of the conveyor belt (55).
4. An automatic magnetizing packaging line with conveying function as described in claim 1, characterized in that: The bottom of the storage baffle (521) is machined with a first groove (515), and a first stop (514) is provided inside the first groove (515). A first cylinder (513) is provided on one side of the first stop (514).
5. An automatic magnetizing packaging line with conveying function as described in claim 4, characterized in that: The first cylinder (513) is assembled with the unloading support (512) by bolts. The movable end of the first cylinder (513) is assembled with the first stop (514). The first stop (514) is movably connected inside the first slot (515).
6. An automatic magnetizing packaging line with conveying function as described in claim 1, characterized in that: The height of the unloading baffle (511) is greater than the height of the storage baffle (521). The bottom of the transfer component (4) is movably connected between the unloading mechanism (51) and the receiving mechanism (52), and the bottom of the transfer component (4) is movably connected to the top of the storage baffle (521).
Citation Information
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