A magnetoresistive electromagnetic metal sheet stamping and forming device

Through the magnetoresistive electromagnetic metal sheet stamping forming device, the repulsive and attractive effects of the composite magnetic field and the induced magnetic field are used to solve the problem of low per unit mass punch pressure of the existing electromagnetic punch press, and the efficient and low-pollution stamping effect is achieved. It is suitable for automobiles, electronics, aerospace and other fields.

CN120191072BActive Publication Date: 2025-07-18SHAANXI DAGONG XUHANG ELECTROMAGNETIC TECH CO LTD
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Patent Information

Application Number
CN202510681026.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-07-18
Estimated Expiration
2045-05-26

AI Technical Summary

Technical Problem

The existing electromagnetic punch press has a small unit mass punch pressure, a large energy consumption of traditional motor drives, serious pollution of hydraulic drive stamping oil, and low stamping efficiency of double-coil electromagnetic punch presses.

Method used

The magnetoresistive electromagnetic metal sheet stamping forming device is adopted to generate a composite magnetic field through the solenoid coil, cake coil assembly and ring coil assembly. The repulsive force and attraction of the induced magnetic field and the composite magnetic field are used to make the projectile assembly hit the stamping head and achieve efficient stamping.

Benefits of technology

Without increasing the volume and mass of the equipment, the unit mass punching pressure is significantly improved, the stamping efficiency is improved, energy consumption and pollution are reduced, and it is suitable for automated production.

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Abstract

The present invention relates to the technical field of metal stamping, and specifically relates to a magnetoresistive electromagnetic metal sheet stamping and forming device, including: a support assembly, a clamping assembly, a solenoid coil, a stamping head, a projectile assembly, a disc-shaped coil assembly, and a limiting assembly. Among them, the solenoid coil, the disc-shaped coil assembly, and the toroidal coil assembly are connected to an external power supply. After the solenoid coil, the disc-shaped coil assembly, and the toroidal coil assembly are energized, a composite magnetic field is generated. The composite magnetic field is used to generate an attractive force on the projectile assembly, and at the same time, an induced magnetic field is generated inside the projectile assembly. The induced magnetic field and the composite magnetic field generate a repulsive force. Under the combined action of the repulsive force and the attractive force, the projectile assembly impacts the stamping head, and the stamping head impacts the metal sheet to complete stamping. Without increasing the volume and mass of the equipment, this device significantly improves the impact force of the projectile assembly on the stamping head.
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Description

Technical Field

[0001] The present invention relates to the technical field of metal stamping, and particularly relates to a magnetoresistive electromagnetic metal sheet stamping and forming device. Background Art

[0002] Metal stamping and forming is a manufacturing process in which a mold applies pressure to a metal sheet to cause plastic deformation or separation, thereby obtaining parts with the required shape and size. This process has advantages such as high efficiency, high precision, and low cost, and is widely used in fields such as automobiles, electronics, household appliances, and aerospace. A metal stamping and forming press (punch press) and a mold apply an external force to the metal sheet to cause plastic deformation or shearing, involving basic principles such as plastic deformation, separation processing, and flow control.

[0003] As a way to drive an object to move by using the electromagnetic induction effect, electromagnetic loading technology has the advantages of high energy conversion rate, high loading rate, and low environmental pollution. It can be used to solve problems such as high energy consumption of traditional motor-driven flywheel stamping and serious oil pollution in hydraulic-driven stamping. The prior art has proposed an electromagnetic punch press that uses a change in the polarity of a solenoid electromagnet to drive the punch head. This invention is driven by a single-pole solenoid coil, and the punching force per unit mass provided is limited. There is also prior art that has proposed a double-coil electromagnetic punch press to solve the problem of low stamping efficiency of electromagnetic punch presses, but it has not significantly improved the punching force per unit mass of the punch press.

[0004] Therefore, it is necessary to provide a magnetoresistive electromagnetic metal sheet stamping and forming device to solve the above problems. Summary of the Invention

[0005] To solve the technical problem of the small punching force per unit mass of the existing electromagnetic punch press, the present invention provides a magnetoresistive electromagnetic metal sheet stamping and forming device to solve the existing problems.

[0006] A magnetoresistive electromagnetic metal sheet stamping and forming device of the present invention adopts the following technical solutions, including:

[0007] A support assembly, which is sequentially provided with a baffle, a first guide cylinder, a second guide cylinder, an installation cylinder, and a bracket along its length direction. Among them, a sleeve is arranged between the first guide cylinder and the second guide cylinder, and the first guide cylinder, the sleeve, the second guide cylinder, and the installation cylinder are sequentially connected and horizontally coaxially arranged;

[0008] A clamping assembly, which is arranged on the baffle and is used for clamping a metal sheet;

[0009] A solenoid coil, which is wound around the outside of the sleeve;

[0010] A punch head, which is horizontally slidably arranged in the first guide cylinder;

[0011] The projectile assembly is horizontally slidably arranged in the communicating cavity between the second guide cylinder and the sleeve, and a ring coil assembly is arranged concentrically with the projectile assembly on the side of the second guide cylinder facing the mounting cylinder;

[0012] The pancake-shaped coil assembly is installed in the installation cylinder, and the pancake-shaped coil assembly is in contact with the annular coil assembly;

[0013] and a limit assembly, which is arranged on the bracket and has a limit end in contact with the port of the mounting tube;

[0014] Among them, the solenoid coil, the pancake coil assembly, the annular coil assembly and the external power supply are connected. When the solenoid coil, the pancake coil assembly and the annular coil assembly are energized, a composite magnetic field is generated. The composite magnetic field is used to generate an attractive force on the projectile assembly. At the same time, an induced magnetic field is generated inside the projectile assembly under the composite magnetic field. The induced magnetic field and the composite magnetic field repel each other to generate a repulsive force on the projectile assembly toward the punch head. Under the combined action of the repulsive force and the attractive force, the projectile assembly hits the punch head, and the punch head hits the metal sheet to complete the stamping.

[0015] Preferably, the support assembly includes: a support platform, on which a base plate is arranged, wherein the first guide cylinder, the second guide cylinder, and the mounting cylinder are arranged on the base plate, and the baffle and the bracket are arranged on the support platform on both sides of the base plate, and the baffle is arranged close to the first guide cylinder, and the bracket is arranged close to the mounting cylinder.

[0016] Preferably, the clamping assembly includes: a U-shaped part, wherein the baffle is located in the U-shaped groove of the U-shaped part, a clamping part is provided at the end of the U-shaped part located on the side of the punching head, and the end of the U-shaped part away from the side of the punching head is connected to the baffle through an adjusting screw, and the adjusting screw is used to adjust the distance between the clamping part of the U-shaped part and the baffle.

[0017] Preferably, the solenoid coil is a three-coil solenoid coil.

[0018] Preferably, the projectile assembly includes: an iron projectile and an aluminum projectile coaxially connected together, wherein the composite magnetic field is used to magnetize the iron projectile to attract the projectile assembly, and the aluminum projectile is used to generate an induced magnetic field in the composite magnetic field, and the induced magnetic field and the composite magnetic field generate a repulsive force that pushes the projectile assembly.

[0019] Preferably, the annular coil assembly comprises: an annular body on which a conducting wire is wound, the annular body with the conducting wire wound is installed in an annular groove provided on the end surface of the second guide cylinder, and the annular groove and the second guide cylinder are provided concentrically.

[0020] Preferably, the pancake coil assembly comprises: a mounting seat, which is concentrically fixed in the mounting cylinder, and a mounting groove is provided on the outer peripheral surface of the second guide cylinder end, a pancake coil is installed in the mounting groove, and the pancake coil is in contact with the wire of the annular coil assembly.

[0021] Preferably, the annular body is fixed in the annular groove by screws.

[0022] Preferably, the limiting assembly comprises: a screw rod, which is horizontally passed through the bracket and threadedly connected to the bracket; a limiting plate is arranged on one side of the screw rod facing the mounting tube, and a handle is arranged on the end of the screw rod facing away from the limiting plate.

[0023] Preferably, the bracket comprises: a vertically arranged support plate, the support plate is provided with a plurality of mounting holes along the vertical direction, nuts are installed in the mounting holes, and the nuts are used for threaded connection with the screw rod.

[0024] The beneficial effects of the present invention are:

[0025] Compared with the existing electromagnetic stamping method, the stamping forming method of the present invention uses the inductive and magnetic resistance magnetic field acceleration principles in combination, that is, by setting a solenoid coil, a pancake coil assembly, and a ring coil assembly, a composite magnetic field is generated after the solenoid coil, the pancake coil assembly, and the ring coil assembly are energized, and the composite magnetic field generates an attractive force on the projectile assembly, and at the same time, an induced magnetic field is generated inside the projectile assembly, and the induced magnetic field and the composite magnetic field generate a repulsive force, and under the joint action of the repulsive force and the attractive force, the projectile assembly hits the punch head, and the punch head hits the metal sheet to complete the stamping. Under the premise of ensuring that the volume and mass of the equipment are not increased, the present invention uses the attractive force of the composite magnetic field on the projectile assembly, the repulsive force of the induced magnetic field and the composite magnetic field on the projectile assembly, and the attractive force and the repulsive force act on the projectile assembly together, thereby greatly improving the punching force of the projectile assembly on the punch head, thereby increasing the punching force per unit mass of the equipment, while ensuring the molding quality, reducing the volume of the metal molding stamping equipment, and facilitating automation. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0027] Figure 1 It is a schematic diagram of the overall structure of an embodiment of a magnetic resistance type electromagnetic metal sheet stamping forming device of the present invention;

[0028] Figure 2 A schematic diagram of the structure of a pancake-shaped coil assembly in an embodiment of the present invention;

[0029] Figure 3 A schematic diagram of the structure of a toroidal coil assembly in an embodiment of the present invention;

[0030] Figure 4 It is a structural schematic diagram of a solenoid coil in an embodiment of the present invention;

[0031] Figure 5 It is an axonometric view of a magnetoresistive electromagnetic metal sheet stamping and forming device of the present invention.

[0032] In the figure: 1, adjusting screw; 2, U-shaped part; 3, baffle; 4, metal sheet; 5, stamping head; 6, first guide cylinder; 7, sleeve; 8, solenoid coil; 9, connecting screw; 10, bottom plate; 11, iron shot; 12, second guide cylinder; 13, aluminum shot; 14, toroidal coil assembly; 15, disc-shaped coil; 16, mounting cylinder; 17, mounting seat; 18, bracket; 19, nut; 20, screw rod; 21, handle. Specific embodiments

[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0034] An embodiment of a magnetoresistive electromagnetic metal sheet stamping and forming device of the present invention is as Figure 1As shown in the figure, it includes: a support component, on which a baffle 3, a first guide cylinder 6, a second guide cylinder 12, an installation cylinder 16 and a bracket 18 are sequentially arranged along the length direction of the support component. Among them, a sleeve 7 is arranged between the first guide cylinder 6 and the second guide cylinder 12. That is, the end of the sleeve 7 is provided with an annular mounting flange. One end of the sleeve 7 is connected to the end face of the first guide cylinder 6 through the annular mounting flange and screws. A protrusion is arranged on the annular mounting flange at the other end of the sleeve 7, and the protrusion is nested and inserted into the concave hole corresponding to the end face of the second guide cylinder 12, realizing the connection of the sleeve 7 with the first guide cylinder 6 and the second guide cylinder 12, improving the structural strength. The first guide cylinder 6, the sleeve 7, the second guide cylinder 12 and the installation cylinder 16 are sequentially connected and horizontally coaxially arranged, and the inner diameter of the first guide cylinder 6 is smaller than the inner diameter of the sleeve 7; a clamping component for clamping a metal plate 4 is arranged on the baffle 3. A solenoid coil 8 is wound around the outside of the sleeve 7. A punching head 5 is horizontally slidably arranged in the first guide cylinder 6. Among them, the punching head 5 is made of high-strength and non-magnetic 304 stainless steel material; a projectile component is horizontally slidably arranged in the communication cavity between the second guide cylinder 12 and the sleeve 7. That is, in this embodiment, the inner diameter of the sleeve 7 needs to be slightly larger than the diameter of the projectile component to prevent excessive friction between the sleeve 7 and the projectile component, thereby improving the energy utilization rate. On the side of the second guide cylinder 12 facing the installation cylinder 16, an annular coil component 14 concentric with the projectile component is arranged; a disc-shaped coil component is fixed in the installation cylinder 16, and the disc-shaped coil component is in contact with the annular coil component 14; a limiting component is arranged on the bracket 18, and the limiting end of the limiting component is in contact with the port of the installation cylinder 16; among them, the solenoid coil 8, the disc-shaped coil component, the annular coil component 14 are connected to an external power supply. After the solenoid coil 8, the disc-shaped coil component, and the annular coil component 14 are energized, a composite magnetic field is generated. The composite magnetic field is used to generate an attractive force on the projectile component. At the same time, an induced magnetic field is generated inside the projectile component under the composite magnetic field. The induced magnetic field and the composite magnetic field repel each other to generate a repulsive force on the projectile component towards the punching head 5. Under the combined action of the repulsive force and the attractive force, the projectile component impacts the punching head 5, and the punching head 5 impacts the metal plate 4 to complete the punching.

[0035] Exemplarily, such as Figure 1 As shown in the figure, in a specific embodiment, the support component includes: a support table, on which a bottom plate 10 is arranged. Among them, the first guide cylinder 6, the second guide cylinder 12, and the installation cylinder 16 are arranged on the bottom plate 10. The baffle 3 and the bracket 18 are arranged on the support tables on both sides of the bottom plate 10, and the baffle 3 is arranged close to the first guide cylinder 6, and the bracket 18 is arranged close to the installation cylinder 16. Specifically, as Figure 5As shown, the first guide cylinder 6, the second guide cylinder 12 and the mounting cylinder 16 are all provided with mounting ears, the mounting ears are parallel to the base plate 10, and an oblong slot is opened on the mounting ear along the axial direction of the first guide cylinder 6, and the mounting ear and the base plate 10 are connected by passing the positioning screw through the oblong slot, so that the first guide cylinder 6, the second guide cylinder 12 and the mounting cylinder 16 are fixed on the base plate 10.

[0036] For example, Figure 1 As shown, in a specific embodiment, the clamping assembly includes: a U-shaped part 2, wherein the baffle 3 is located in the U-shaped groove of the U-shaped part 2, and the end of the U-shaped part 2 located on the side of the punch head 5 is provided with a clamping part, and the end of the U-shaped part 2 away from the side of the punch head 5 is connected to the baffle 3 through an adjusting screw 1, and the adjusting screw 1 is used to adjust the distance between the clamping part of the U-shaped part 2 and the baffle 3.

[0037] For example, Figure 4 As shown, in a specific embodiment, the solenoid coil 8 is a three-coil solenoid coil. In this embodiment, the coil of the solenoid coil 8 is wound with a copper wire, and the cross-section of the copper wire is a 4 mm×2 mm rectangle.

[0038] For example, Figure 1 As shown, in a specific embodiment, the projectile assembly includes: an iron projectile 11 and an aluminum projectile 13 coaxially connected together, wherein the iron projectile 11 and the aluminum projectile 13 are connected together by a connecting screw 9, the composite magnetic field is used to magnetize the iron projectile 11 to attract the projectile assembly, and the aluminum projectile 13 is used to generate an induced magnetic field in the composite magnetic field, and the induced magnetic field and the composite magnetic field generate a repulsive force that pushes the projectile assembly. It should be noted that the direction of the repulsive force generated by the induced magnetic field and the composite magnetic field to push the projectile assembly is the same as the direction of the suction force generated by the composite magnetic field to magnetize the iron projectile 11 to attract the projectile assembly. The iron projectile 11 is made of No. 10 steel material with good magnetic conductivity, and the aluminum projectile part is made of 7049-t6 aluminum alloy material with good electrical conductivity. Secondly, during installation, the right side surface of the aluminum projectile 13 needs to be tightly attached to the left end surface of the pancake coil assembly to achieve the best magnetic field acceleration efficiency and punching strength.

[0039] For example, Figure 3 As shown, in a specific embodiment, the annular coil assembly 14 includes: an annular body, on which a wire is wound, the annular body with the wire wound is fixed in an annular groove provided on the end face of the second guide cylinder 12 by screws, and the annular groove and the second guide cylinder 12 are concentrically arranged, wherein, in this embodiment, the wire of the annular coil assembly 14 is a copper wire, and the cross-sectional diameter of the wire of the annular coil assembly 14 is Φ3 mm.

[0040] For example, Figure 2As shown, in a specific embodiment, the pancake coil assembly includes: a mounting seat 17, which is concentrically fixed in the mounting tube 16, and a mounting groove is provided on the outer peripheral surface of the second guide tube 12, and a pancake coil 15 is installed in the mounting groove, and the pancake coil 15 is in contact with the conductor of the annular coil assembly 14. In this embodiment, the pancake coil 15 is wound with a copper strip with a width of 10 mm and a thickness of 1 mm to form a composite magnetic field with optimal acceleration.

[0041] Exemplarily, in a specific embodiment, the limit assembly includes: a screw rod 20, which is horizontally penetrated on the bracket 18 and is threadedly connected to the bracket 18; a limit plate is provided on the side of the screw rod 20 facing the mounting tube 16, and the limit plate is used to transmit the reaction force generated by the collision to the bracket 18; a handle 21 is provided on the end of the screw rod 20 away from the limit plate; the bracket 18 is 10 cm away from the end face of the base plate 10 to ensure the overall stability of the device during the stamping process.

[0042] Among them, in a specific embodiment, the bracket 18 includes: a vertically arranged support plate, the support plate is provided with multiple mounting holes along the vertical direction, the nut 19 is installed in the mounting hole by a screw, the nut 19 is used for threaded connection with the screw rod 20, and different mounting holes are convenient for adapting to different stamping environments.

[0043] How it works

[0044] When in use, first, the right side of the aluminum projectile 13 of the projectile assembly is pressed against the left end face of the pancake coil assembly, and then an external power supply is used to pass current through the solenoid coil 8, the annular coil assembly 14 and the pancake coil 15 to generate a composite magnetic field. The composite magnetic field magnetizes the iron projectile 11. According to the principle of minimum magnetic resistance, the composite magnetic field has a strong attraction on the iron projectile 11 (that is, on the projectile assembly); at the same time, under the influence of the composite magnetic field, a strong magnetic field will be induced inside the aluminum projectile 13. According to Lenz's law, the composite magnetic field repels the induced magnetic field, thereby driving the aluminum projectile 13. In the case of Figure 1 Under the relative position relationship of the components of the device shown, the direction of the attraction generated by the composite magnetic field on the iron projectile 11 is the same as the repulsion generated on the aluminum projectile 13. In order to form effective stamping, the right side of the projectile assembly needs to be in close contact with the left end face of the pancake coil assembly, the initial position of the center of mass of the iron projectile 11 needs to be on the right side of the center of the solenoid coil 8, and the initial position of the center of mass of the aluminum projectile 13 needs to be on the left side of the center of the annular coil assembly 14. Therefore, the projectile assembly accelerates in the sleeve 7 under the combined action of the attraction and repulsion of the solenoid coil 8, the annular coil assembly 14 and the pancake coil 15. Until the projectile assembly collides with the punch head 5, the punch head 5 collides with the metal plate 4, achieving the purpose of stamping. It should be noted that the device can control the intensity of the punching pressure by changing the size of the external power supply, with high energy utilization and large impact force per unit mass.

[0045] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A magnetoresistive electromagnetic metal sheet stamping and forming device, characterized in that include: A support assembly, wherein a baffle (3), a first guide cylinder (6), a second guide cylinder (12), a mounting cylinder (16) and a bracket (18) are sequentially arranged along its length direction, wherein a sleeve (7) is arranged between the first guide cylinder (6) and the second guide cylinder (12), and the first guide cylinder (6), the sleeve (7), the second guide cylinder (12) and the mounting cylinder (16) are sequentially connected and horizontally coaxially arranged; A clamping assembly, which is arranged on the baffle (3) and is used to clamp the metal plate (4); A solenoid coil (8) wound outside the sleeve (7); The punch head (5) is horizontally slidably disposed in the first guide cylinder (6); A projectile assembly is horizontally slidably disposed in a communication cavity between the second guide cylinder (12) and the sleeve (7); a ring-shaped coil assembly (14) is disposed concentrically with the projectile assembly on a side of the second guide cylinder (12) facing the mounting cylinder (16); A pancake-shaped coil assembly is installed in the installation cylinder (16), and the pancake-shaped coil assembly is in contact with the annular coil assembly (14); and a limit assembly, which is arranged on the bracket (18) and has a limit end in contact with a port of the mounting tube (16); The solenoid coil (8), the pancake coil assembly, and the annular coil assembly (14) are connected to an external power supply. When the solenoid coil (8), the pancake coil assembly, and the annular coil assembly (14) are energized, a composite magnetic field is generated. The composite magnetic field is used to generate an attractive force on the projectile assembly. At the same time, an induced magnetic field is generated inside the projectile assembly under the composite magnetic field. The induced magnetic field and the composite magnetic field repel each other to generate a repulsive force on the projectile assembly toward the punch head (5). Under the combined action of the repulsive force and the attractive force, the projectile assembly strikes the punch head (5), and the punch head (5) strikes the metal plate (4) to complete the punching.

2. The magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, characterized in that, The support assembly comprises: a support platform, on which a base plate (10) is arranged, wherein a first guide cylinder (6), a second guide cylinder (12), and a mounting cylinder (16) are arranged on the base plate (10), and a baffle plate (3) and a bracket (18) are arranged on the support platform on both sides of the base plate (10), wherein the baffle plate (3) is arranged close to the first guide cylinder (6), and the bracket (18) is arranged close to the mounting cylinder (16).

3. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, wherein The clamping assembly comprises: a U-shaped member (2), wherein a baffle (3) is located in a U-shaped groove of the U-shaped member (2), an end of the U-shaped member (2) located on one side of a punch head (5) is provided with a clamping portion, and an end of the U-shaped member (2) on a side away from the punch head (5) is connected to the baffle (3) via an adjusting screw (1), wherein the adjusting screw (1) is used to adjust the distance between the clamping portion of the U-shaped member (2) and the baffle (3).

4. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, characterized in that, The solenoid coil (8) adopts a three-coil type solenoid coil.

5. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, characterized in that, The projectile assembly comprises: an iron projectile (11) and an aluminum projectile (13) coaxially connected together, wherein the composite magnetic field is used to magnetize the iron projectile (11) to attract the projectile assembly, and the aluminum projectile (13) is used to generate an induced magnetic field in the composite magnetic field, and the induced magnetic field and the composite magnetic field generate a repulsive force that pushes the projectile assembly.

6. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, characterized in that, The annular coil assembly (14) comprises an annular body on which a conductor is wound, the annular body on which the conductor is wound is installed in an annular groove provided on the end surface of the second guide cylinder (12), and the annular groove and the second guide cylinder (12) are arranged concentrically.

7. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 6, characterized in that, The pancake coil assembly comprises: a mounting seat (17) which is concentrically fixed in a mounting cylinder (16), a mounting groove being provided on an outer peripheral surface of an end of the mounting seat facing the second guide cylinder (12), a pancake coil (15) being mounted in the mounting groove, and the pancake coil (15) being in contact with a conducting wire of the annular coil assembly (14).

8. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 6, characterized in that, The annular body is fixed in the annular groove by screws.

9. The magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 1, wherein The limit assembly comprises: a screw rod (20) which is horizontally inserted into the bracket (18) and threadedly connected to the bracket (18); a limit plate is arranged on one side of the screw rod (20) facing the mounting tube (16); and a handle (21) is arranged on the end of the screw rod (20) which is away from the limit plate.

10. A magnetoresistive electromagnetic metal sheet stamping and forming device according to claim 9, characterized in that, The bracket (18) comprises: a vertically arranged support plate, the support plate being provided with a plurality of mounting holes along the vertical direction, nuts (19) being installed in the mounting holes, and the nuts (19) being used for being threadedly connected to the screw rod (20).

Citation Information

Patent Citations

  • Permanent magnet type small punching machine

    CN107565790A

  • Electromagnetic punching machine

    CN1923499A