A health cabin shell stamping forming device

Through the combined structure of the upper magnet and the lower magnetic part, the reciprocating movement mechanism of the movable block and the counterweight block is designed using the action of magnetic force and gravity, which solves the problem of removing residual materials on the lower mold surface and ensures the production quality of the health cabin shell.

CN120347135BActive Publication Date: 2025-08-22CHANGZHOU KANGTAI BIOTECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202510830867.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-20
Publication Date
2025-08-22
Estimated Expiration
2045-06-20

AI Technical Summary

Technical Problem

When the existing stamping forming device stamps the health cabin shell, it is difficult to effectively remove residual materials and fragments on the lower mold surface, resulting in scratching the shell surface and affecting production quality.

Method used

Using a combined structure of upper magnet and lower magnetic parts, through magnetic adsorption and gravity, a reciprocating movement mechanism of the movable block and counterweight block is designed to remove residual material from the lower mold surface.

Benefits of technology

Effectively remove residual material from the lower mold surface to ensure the production quality of the health cabin shell and avoid the formation of scratches and dents.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120347135B_ABST
    Figure CN120347135B_ABST
Patent Text Reader

Abstract

The present invention relates to the field of stamping and forming devices, and in particular to a health cabin shell stamping and forming device, wherein an upper die assembly is vertically movably provided on the stamping and forming device body through a stamping mechanism, and a lower die assembly is adaptively provided on the stamping and forming device body below the upper die assembly; a fixed frame is fixedly installed on the stamping and forming device body, and movable blocks are movably provided on both sides of the fixed frame, a lower magnetic member is fixedly provided between the movable blocks on both sides, and an upper magnet that is adaptively attracted to the lower magnetic member is vertically movably provided above the lower magnetic member. In the present invention, the stamping and forming of the health cabin shell assembly can be achieved by the stamping and forming device body, and the upper magnet and the lower magnetic member can be controlled to move back and forth on the fixed frame by pulling the movable block by the first counterweight block and the second counterweight block, so that the excess material on the surface of the lower die assembly can be removed by the lower magnetic member to ensure the production quality of the health cabin shell assembly.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of stamping and forming devices, and in particular to a stamping and forming device for a health cabin shell. Background Art

[0002] The health cabin is primarily produced using a stamping process. The stamping unit is the core equipment in the production of the cabin's metal shell. It uses a die to stamp sheet metal into cabin components, which are then bent, welded, and spliced ​​together to form the complete shell.

[0003] When stamping the health chamber shell, the stamping forming device produces a large amount of stamping waste. Although the discharge holes in the lower die can discharge most of the waste and debris by gravity, some will still remain on the surface of the lower die. This residual waste and debris may scratch the health chamber shell surface during the next stamping, causing dents or scratches, which will affect the production quality of the health chamber shell. Summary of the Invention

[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a health cabin shell stamping forming device.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A health cabin shell stamping and forming device includes a stamping and forming device body, an upper die assembly is vertically movably provided on the stamping and forming device body via a stamping mechanism, and a lower die assembly is adaptively provided on the stamping and forming device body below the upper die assembly;

[0007] The fixing frame is fixedly mounted on the main body of the stamping and forming device, and movable blocks are movably provided on both sides of the fixing frame, a lower magnetic member is fixedly provided between the movable blocks on both sides, and an upper magnet adapted to attract the lower magnetic member is vertically movably provided above the lower magnetic member;

[0008] A side fixing member is provided on one side of the lower magnetic member, and a plurality of movable magnetic members are vertically movably provided on the side fixing member, and the movable magnetic members are all adapted to attract each other with the upper magnet, and the bottom of the lower magnetic member is provided as an inclined surface, and a scraper is movably provided on the inclined surface through a slide groove, and the bottom of the movable magnetic member is connected to the scraper through a bottom traction rope;

[0009] The first fixed bins are fixedly mounted on the fixed frame and are located on one side of the movable block. A first counterweight block is vertically movably mounted in the first fixed bins, and the first counterweight blocks are connected to one side of the movable block via a first traction rope at the top thereof.

[0010] The second fixed bin is fixed on the fixed frame and is located on the other side of the movable block. A second counterweight block is vertically movably arranged in the second fixed bin. The second counterweight blocks are connected to the other side of the movable block through the second traction rope on their sides, and fixed magnets that are adapted to attract the second counterweight blocks are fixed on both sides of the stamping mechanism.

[0011] In addition, a preferred structure is that fixed plates are fixedly provided at both ends of the outer side of the fixing frame, a plurality of guide columns are fixedly provided between the fixed plates on both sides, and the movable blocks are guided and moved by the guide columns.

[0012] In addition, the preferred structure is that lower guide grooves and upper guide grooves are provided on both sides of the fixing frame, lower connecting columns are fixedly provided at both ends of the lower magnetic part, and the lower connecting columns are adapted to pass through the lower guide grooves and are fixedly connected to the movable block.

[0013] In addition, the preferred structure is that one end of the upper guide groove is inclined upward, and upper connecting columns are fixedly provided at both ends of the upper magnet. The upper connecting columns are adapted to pass through the upper guide groove and are fixedly connected to the vertical slider, and the corresponding vertical sliders on the movable block are adapted to be provided with vertical grooves.

[0014] In addition, the preferred structure is that a partition plate is fixedly provided on one side of the fixing frame, the corresponding partition plates on the upper magnet and the lower magnetic part are adapted to have partition grooves, and the bottom of the fixing frame is located below the partition plate and is fixed with a collection bin by bolts.

[0015] In addition, the preferred structure is that a plurality of vertical cavities are opened on the side fixing member, the movable magnetic members are adapted to move in the vertical cavities, the bottom of the side fixing member corresponding to the bottom traction rope is fixedly provided with an adaptive guide rope ring, and the bottom traction rope at the bottom of the movable magnetic member is fixedly connected to the scraper after passing through the guide rope ring.

[0016] In addition, the preferred structure is that a first fixed bin is fixedly provided on a fixed plate located on one side of the movable block on the fixed frame, a first counterweight block is vertically movably provided inside the first fixed bin, a fixed pulley is fixedly provided on the top of the first fixed bin, and the first traction rope on the top of the first counterweight block is connected to one side of the movable block after passing through the fixed pulley.

[0017] In addition, the preferred structure is that a second fixed bin is fixedly provided on the fixed plate on the other side of the movable block on the fixed frame, a second counterweight block is vertically movably provided inside the second fixed bin, and the second traction ropes on the sides of the second counterweight block are connected to the other side of the movable block.

[0018] In addition, a preferred structure is that the height of the first fixed bin is smaller than that of the second fixed bin, and the weight of the first counterweight is greater than that of the second counterweight.

[0019] In addition, the preferred structure is that a side groove is opened on one side of the second fixed bin, and fixed connecting columns are fixedly provided on both sides of the stamping mechanism, the ends of the fixed connecting columns are located on the outside of the side groove and are installed with fixed magnets, and the fixed magnets and the second counterweight block are adapted to attract each other.

[0020] The beneficial effects of the present invention are as follows: the stamping forming of the health cabin shell assembly can be achieved through the stamping forming device body, and the upper magnet and the lower magnetic part can be controlled to move back and forth on the fixed frame by pulling the movable block by the first counterweight block and the second counterweight block, so that the excess material on the surface of the lower mold assembly can be removed by the lower magnetic part to ensure the production quality of the health cabin shell assembly. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic structural diagram of a health cabin shell stamping and forming device proposed by the present invention;

[0022] Figure 2 This is a schematic structural diagram of the fixing frame, movable block, upper magnet, lower magnetic member, first fixing compartment and second fixing compartment proposed in the present invention;

[0023] Figure 3 for Figure 2 A schematic structural diagram of the fixed frame, movable block, upper magnet and lower magnetic member in FIG.

[0024] Figure 4 for Figure 3 Schematic diagram of the structure after the movable block, upper magnet and lower magnetic part are hidden;

[0025] Figure 5 for Figure 4 Schematic diagram of the upward-looking structure in ;

[0026] Figure 6 Schematic diagram of the structure of the movable block, upper magnet and lower magnetic member proposed in the present invention;

[0027] Figure 7 Schematic diagram of the bottom structure of the lower magnetic member proposed in the present invention;

[0028] Figure 8 for Figure 7 Schematic diagram of the structure after the movable magnetic part moves upward;

[0029] Figure 9 for Figure 2 Detailed enlarged view of the movable block in the figure;

[0030] Figure 10 This is a schematic diagram of the internal structure of the first fixed bin proposed in the present invention;

[0031] Figure 11This is a schematic diagram of the internal structure of the second fixed bin proposed in the present invention;

[0032] Figure 12 It is a schematic structural diagram of the first counterweight block, the second counterweight block and the movable block proposed in the present invention;

[0033] Figure 13 for Figure 12 A schematic diagram of the structure when the second counterweight in FIG falls to the bottom;

[0034] Figure 14 This is a schematic structural diagram of the fixed connecting column proposed in the present invention.

[0035] In the figure: 1 stamping forming device body, 11 stamping mechanism, 12 upper die assembly, 13 lower die assembly, 2 fixed frame, 21 lower guide groove, 22 upper guide groove, 23 fixed plate, 24 guide column, 25 collecting bin, 26 partition plate, 261 partition groove, 3 movable block, 31 vertical groove, 4 upper magnet, 41 upper connecting column, 42 vertical slider, 5 lower magnetic part, 50 side fixing part, 51 lower connecting column, 52 vertical cavity, 53 movable magnetic part, 54 bottom traction rope, 541 guide rope ring, 55 scraper, 551 slide groove, 6 first fixed bin, 61 first counterweight block, 62 first traction rope, 63 fixed pulley, 7 second fixed bin, 71 second counterweight block, 72 second traction rope, 73 side groove, 8 fixed connecting column, 81 fixed magnet. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0037] See Figure 1 The stamping and forming device body 1 is provided with an upper die assembly 12 which is vertically movable through the stamping mechanism 11, and the stamping and forming device body 1 is provided with a lower die assembly 13 which is adapted to be located below the upper die assembly 12. The upper die assembly 12 is fixedly mounted on the bottom of the stamping mechanism 11 by a fixing fixture, and the lower die assembly 13 is fixedly mounted on the stamping and forming device body 1 by a fixing fixture and is located below the upper die assembly 12.

[0038] During operation, the stamping mechanism 11 drives the upper die assembly 12 downward to the lower die assembly 13, thereby stamping the health cabin shell assembly. It is worth noting that the specific structures of the stamping mechanism 1, the stamping mechanism 11, the upper die assembly 12, and the lower die assembly 13, as well as their specific stamping methods, are all prior art and do not contribute to the technical problem of excess material removal addressed by this technical solution. Therefore, they will not be elaborated upon.

[0039] See Figure 1-6 9. The fixing frame 2 is fixedly mounted on the stamping device body 1 by bolts. A lower guide groove 21 and an upper guide groove 22 are provided on both sides of the fixing frame 2, and the lower magnetic member 5 and the upper magnet 4 are guided and moved by the lower guide groove 21 and the upper guide groove 22 respectively.

[0040] The outer side of the fixed frame 2 is fixedly provided with fixed plates 23 on both sides of the lower guide groove 21 and the upper guide groove 22. A plurality of guide columns 24 are fixedly connected between the fixed plates 23 on both sides, and the movable block 3 is guided and moved by the guide columns 24, which can improve the stability of the movable block 3 during the movement.

[0041] The upper connecting posts 41 on both sides of the upper magnet 4 are adapted to pass through the upper guide slots 22 and are fixedly connected to the vertical sliders 42. Furthermore, the corresponding vertical sliders 42 on the movable block 3 are adapted to be provided with vertical slots 31. Since one end of the upper guide slots 22 is tilted upward, the vertical sliders 42 can also be adapted to move within the vertical slots 31 during the upward or downward movement of the upper magnet 4, thereby ensuring that the lateral movement of the movable block 3 and the vertical movement of the upper magnet 4 do not conflict with each other.

[0042] The lower connecting posts 51 on both sides of the lower magnetic member 5 are adapted to pass through the lower guide slots 21 and are fixedly connected to the movable blocks 3 , so that the lower magnetic member 5 can move synchronously with the movable blocks 3 on both sides thereof.

[0043] The upper magnet 4 is a magnet that can absorb magnetic materials such as iron, and the lower magnetic part 5 is a soft magnetic material. When the upper magnet 4 is in contact with the lower magnetic part 5, the lower magnetic part 5 can be magnetized by the upper magnet 4, so that the lower magnetic part 5 can also obtain magnetic force, thereby allowing the lower magnetic part 5 to absorb the remaining material on the surface of the lower mold assembly 13. When the upper magnet 4 is no longer in contact with the lower magnetic part 5, the magnetic force on the lower magnetic part 5 disappears, and the remaining material adsorbed on the lower magnetic part 5 can automatically fall off by gravity. It is worth noting that this device is used to stamp the health cabin shell assembly, and the health cabin shell is made of magnetic materials such as iron, so the remaining material can be adsorbed by magnetic force.

[0044] A partition plate 26 is fixedly mounted on the fixing frame 2 and is fixedly mounted below the inclined portion of the upper guide groove 22. Separation grooves 261 are adapted to be formed on the corresponding partition plates 26 on the upper magnet 4 and the lower magnetic member 5. The adaptation between the partition plates 26 and the separation grooves 261 facilitates separation of the upper magnet 4 and the lower magnetic member 5.

[0045] The bottom of the fixing frame 2 is located below the partition plate 26 and is fixed with a collecting bin 25 by bolts. By setting the collecting bin 25, the residual material falling from the lower magnetic member 5 can be collected. When the collecting bin 25 is almost full, it can be disassembled and cleaned by bolts.

[0046] See Figure 7-8 A side fixing member 50 is fixedly provided on one side of the lower magnetic member 5. The side fixing member 50 is not made of magnetic material. A plurality of vertical cavities 52 are defined on the side fixing member 50, and the movable magnetic members 53 are adapted to be positioned and moved within the vertical cavities 52. It is worth noting that guide members are fixedly provided on both sides of the movable magnetic member 53, and guide grooves are adapted to be provided on the inner walls of the vertical cavities 52 corresponding to the guide members. This not only ensures the stability of the movable magnetic member 53 during movement, but also prevents the movable magnetic member 53 from falling out of the vertical cavities 52.

[0047] The bottom of the lower magnetic member 5 is tilted, and the scraper 55 is adapted to be positioned at the bottom of the lower magnetic member 5 and moveable. When the lower magnetic member 5 loses its magnetic force, although most of the residual material will fall off by gravity, a small amount of residual material may still adhere to the bottom of the lower magnetic member 5. In this case, the scraper 55 can scrape off the remaining residual material.

[0048] The bottom of the lower magnetic part 5 is provided with multiple low-friction slide grooves 551, and the top of the scraper 55 corresponding to the slide grooves 551 are adapted to be provided with sliders, so that the scraper 55 can slide stably on the slope at the bottom of the lower magnetic part 5, so that the scraper 55 can smoothly scrape off the residual material.

[0049] A guide rope ring 541 is fixedly provided at the bottom of the side fixing member 50 below the vertical cavity 52 , and the bottom traction rope 54 at the bottom of the movable magnetic member 53 is fixedly connected to the scraper 55 after passing through the guide rope ring 541 .

[0050] This allows the movable magnetic member 53 to pull the bottom traction rope 54 when it moves upward by magnetic force, thereby pulling the scraper 55 to the top of the bottom slope of the lower magnetic member 5 .

[0051] When the movable magnetic member 53 is no longer magnetically attracted to the upper magnet 4, it automatically falls down due to gravity, and at this time, it no longer pulls the scraper 55 through the bottom traction rope 54. And because the scraper 55 is now located at the top of the bottom slope of the lower magnetic member 5, the scraper 55 can slide to the bottom of the slope due to its own gravity, thereby scraping off the residual material.

[0052] See Figure 1 、 9 -14, a first fixed bin 6 is fixedly provided on the fixed plate 23 on the side of the movable block 3 on the fixed frame 2, a first counterweight block 61 is vertically movably provided inside the first fixed bin 6, a fixed pulley 63 is fixedly provided on the top of the first fixed bin 6, and the first traction rope 62 on the top of the first counterweight block 61 is connected to one side of the movable block 3 after passing through the fixed pulley 63.

[0053] A second fixed bin 7 is fixedly installed on the fixed plate 23 on the other side of the movable block 3 on the fixed frame 2, and a second counterweight block 71 is vertically movable inside the second fixed bin 7, and the second traction ropes 72 on the sides of the second counterweight block 71 are connected to the other side of the movable block 3.

[0054] Multiple guide rods are vertically fixed in the first and second fixed compartments 6, 7. The first and second counterweights 61, 71 are guided by the guide rods during movement, ensuring the stability of the first and second counterweights 61, 71 during movement. Furthermore, through-holes are provided in the first and second fixed compartments 6, 7, and the fixed plate 23 to facilitate the passage of the first and second traction ropes 62, 72.

[0055] In this way, the first traction rope 62 and the second traction rope 72 can be pulled by the movement between the first counterweight block 61 and the second counterweight block 71, thereby adjusting the positions of the movable blocks 3 on both sides.

[0056] A side groove 73 is formed on one side of the second fixed bin 7 , and fixed connecting columns 8 are fixedly provided on both sides of the punching mechanism 11 . The ends of the fixed connecting columns 8 are located outside the side groove 73 and are installed with fixed magnets 81 .

[0057] The second counterweight 71 is made of magnetic material, and the fixed magnet 81 and the second counterweight 71 are adapted to attract each other. In this way, the movement of the punching mechanism 11 can drive the fixed magnet 81 to move, and the adaptive attraction between the fixed magnet 81 and the second counterweight 71 can drive the second counterweight 71 to move synchronously.

[0058] When the stamping mechanism 11 moves upward, it can drive the fixed magnet 81 to move upward synchronously through the fixed connecting column 8, thereby driving the second counterweight block 71 to move upward synchronously through the adaptive attraction between the fixed magnet 81 and the second counterweight block 71.

[0059] When the second counterweight 71 reaches the top of the second fixed chamber 7, the stamping mechanism 11 automatically stops moving via a control program. The upper die assembly 12 and lower die assembly 13 are now separated, allowing the user to remove the completed health capsule shell assembly. It is worth noting that the control program for the stamping mechanism 11 and the method for removing the health capsule shell assembly are both conventional techniques and will not be elaborated upon further.

[0060] The punching mechanism 11 then continues to move upward, driving the fixed connecting column 8 and the fixed magnet 81 to continue moving upward. However, since the second counterweight 71 is already at the top of the second fixed compartment 7, it cannot move further upward. When the punching mechanism 11 reaches the top, the magnetic attraction between the second counterweight 71 and the fixed magnet 81 completely disappears, and the second counterweight 71 automatically falls due to gravity.

[0061] During the downward movement of the second counterweight 71, the gravitational potential energy generated by the second counterweight 71 can pull the second traction rope 72 downward, thereby pulling the movable block 3 toward the second fixed compartment 7 through the second traction rope 72. Furthermore, the movement of the movable block 3 can pull the first traction rope 62, thereby pulling the first counterweight 61 upward.

[0062] When the second counterweight 71 has completely fallen to the bottom, its gravitational potential energy disappears. At this point, since the weight of the second counterweight 71 is less than the weight of the first counterweight 61, the first counterweight 61 automatically falls due to gravity, allowing the first traction rope 62 to pull the movable block 3 back to its original position. Furthermore, the second traction rope 72 can be pulled by the movable block 3 to pull the second counterweight 71 upward again until it is parallel to the bottom of the side groove 73.

[0063] In this embodiment, when the stamping device body 1 is in operation, the stamping mechanism 11 can drive the upper die assembly 12 to move downward to the lower die assembly 13, thereby stamping the health cabin shell assembly. It is worth noting that this is all existing technology, so it will not be described in detail.

[0064] When the user needs to stamp the health cabin shell assembly, he only needs to position the stamping part on the lower die assembly 13, and then start the stamping mechanism 11 to control the upper die assembly 12 to move toward the lower die assembly 13 to stamp the health cabin shell assembly.

[0065] Furthermore, after the stamping is completed, the stamping mechanism 11 can be controlled to drive the upper die assembly 12 to move upward. At this time, the stamping mechanism 11 can drive the fixed connecting column 8 and the fixed magnet 81 to move upward synchronously. During the upward movement of the fixed magnet 81, the magnetic attraction between it and the second counterweight 71 can drive the second counterweight 71 to move upward synchronously.

[0066] When the second counterweight 71 moves to the top of the second fixed chamber 7, the stamping mechanism 11 automatically stops moving through the control program. At this time, the upper mold assembly 12 and the lower mold assembly 13 are separated, and the user can now remove the health cabin shell assembly after stamping.

[0067] The user then simply controls the punching mechanism 11 to continue moving upward, thereby driving the fixed connecting column 8 and the fixed magnet 81 to continue moving upward. At this point, since the second counterweight 71 is already at the very top of the second fixed compartment 7, it cannot move further upward. When the punching mechanism 11 reaches the very top, the magnetic attraction between the second counterweight 71 and the fixed magnet 81 completely disappears, and the second counterweight 71 automatically descends due to gravity.

[0068] During the falling process of the second counterweight 71, the gravitational potential energy generated by the second counterweight 71 can pull one end of the second traction rope 72 downward, thereby pulling the movable block 3 toward the second fixed compartment 7 through the other end of the second traction rope 72. In addition, the movement of the movable block 3 can pull the first traction rope 62, thereby pulling the first counterweight 61 upward.

[0069] By moving the movable blocks 3 on both sides, the upper magnet 4 and the lower magnetic member 5 can be driven to move synchronously toward the second fixed bin 7. Furthermore, during the movement of the upper magnet 4 and the lower magnetic member 5, the upper magnet 4 can move downward from the height of the upper guide slot 22. At this time, the upper magnet 4 and the lower magnetic member 5 come into contact with each other, thereby magnetizing the lower magnetic member 5 through the upper magnet 4, so that the lower magnetic member 5 obtains magnetic force. As a result, during the movement of the lower magnetic member 5 toward the second fixed bin 7, the remaining material on the lower mold assembly 13 can be attracted to the bottom of the lower magnetic member 5 by magnetic force, thereby removing the remaining material on the lower mold assembly 13.

[0070] When the movable blocks 3 on both sides move to the second fixed compartment 7, the second counterweight 71 falls to the bottom of the second fixed compartment 7. At this time, the gravitational potential energy of the second counterweight 71 disappears. Since the gravity of the second counterweight 71 is less than the gravity of the first counterweight 61, the first counterweight 61, which is now pulled up, can automatically fall down by its own gravity.

[0071] As the first counterweight 61 descends, it can pull one end of the first traction rope 62, thereby pulling the movable block 3 back to the first fixed compartment 6 via the other end of the first traction rope 62. Furthermore, as the movable block 3 moves and returns, it can pull the second traction rope 72, thereby pulling the second counterweight 71 upward and returning it to the bottom of the side groove 73. This allows the fixed magnet 81 to be attracted to the second counterweight 71 again when the stamping mechanism 11 subsequently moves downward.

[0072] The resetting movement of the movable blocks 3 on both sides can drive the upper magnet 4 and the lower magnetic member 5 to move synchronously toward the first fixed bin 6. During the resetting process, the lower magnetic member 5 can again use magnetic force to attract the residual material on the lower mold assembly 13 to its bottom, thereby further removing the residual material on the lower mold assembly 13.

[0073] When the upper magnet 4 and the lower magnetic member 5 come into contact with the partition plate 26 during the resetting process, the upper magnet 4 and the lower magnetic member 5 can be separated by the adaptation between the partition plate 26 and the partition groove 261, and in conjunction with the pulling force of the first traction rope 62 on the movable block 3. At this time, the upper magnet 4 can be guided by the slope of the upper guide groove 22, so that the upper magnet 4 moves upward relative to the lower magnetic member 5.

[0074] When the movable block 3 has fully moved to its end, the upper magnet 4 and the lower magnetic member 5 are completely separated. The upper magnet 4 no longer magnetizes the lower magnetic member 5, and the lower magnetic member 5 loses its magnetic force. Since the lower magnetic member 5 is located above the collection bin 25, when the lower magnetic member 5 loses its magnetic force, the remaining material adsorbed on the lower magnetic member 5 can fall into the collection bin 25 by gravity, thereby achieving collection of the remaining material.

[0075] After the residual materials are collected, the user can position the stamping part on the lower die assembly 13 again, and then start the stamping mechanism 11 again to perform a new round of stamping.

[0076] Furthermore, during the process of mutual attraction between the upper magnet 4 and the lower magnetic member 5, the upper magnet 4 can attract the movable magnetic member 53, thereby driving the movable magnetic member 53 upward. The movement of the movable magnetic member 53 can thereby pull the bottom traction rope 54, which in turn pulls the scraper 55, thereby pulling the scraper 55 to the top of the slope at the bottom of the lower magnetic member 5. This ensures that the scraper 55 is always located at the top of the slope at the bottom of the lower magnetic member 5 while the lower magnetic member 5 is attracting the residual material.

[0077] When the upper magnet 4 and the lower magnetic member 5 are separated, the upper magnet 4 no longer attracts the movable magnetic member 53. The movable magnetic member 53 can then fall down due to its own gravity, thereby releasing the pulling force of the movable magnetic member 53 on the bottom traction rope 54. Therefore, the bottom traction rope 54 no longer pulls the scraper 55.

[0078] Since the scraper 55 is located at the top of the slope at the bottom of the lower magnetic member 5 , the scraper 55 can slide downward by its own gravity, thereby scraping off the residual material at the bottom of the lower magnetic member 5 .

[0079] In this way, when the lower magnetic member 5 is attracting the residual material, the magnetic attraction of the upper magnet 4 and the bottom traction rope 54 can pull the scraper 55 to the top of the slope at the bottom of the lower magnetic member 5 to store energy. When the lower magnetic member 5 releases the residual material into the collection bin 25, the scraper 55 can automatically slide downward by gravity to pick up the residual material stuck to the bottom of the lower magnetic member 5.

[0080] Furthermore, the fixing frame 2 is fixedly mounted on the stamping device body 1 by bolts, and the bottom of the fixing frame 2 needs to be flush with the top surface of the lower mold assembly 13, so as to ensure that the lower magnetic part 5 can stably absorb the residual material on the lower mold assembly 13 through magnetic force.

[0081] Furthermore, the gravity of the first counterweight 61 is greater than the gravity of the second counterweight 71, but when the second counterweight 71 falls downward from the top, the gravitational acceleration it generates and the gravitational potential energy enable it to overcome the gravity of the first counterweight 61 and continue to move downward, and pull the first counterweight 61 upward through the first traction rope 62, the second traction rope 72 and the movable block 3.

[0082] When the second counterweight 71 reaches the bottom, the gravitational acceleration and gravitational potential energy generated by it disappear, and the first counterweight 61 automatically falls due to gravity, driving the movable block 3 to reset, thereby achieving the reciprocating movement of the movable block 3. The reset movement of the movable block 3 also simultaneously pulls the second counterweight 71 upward to the middle of the second fixed compartment 7, so that the fixed magnet 81 can continue to attract the second counterweight 71.

[0083] Furthermore, the height of the second fixed compartment 7 is greater than that of the first fixed compartment 6, which enables the second counterweight 71 to move a greater distance than the first counterweight 61. Furthermore, since the second traction rope 72 is disposed on one side of the second counterweight 71, a movable position for the second traction rope 72 is reserved in the second fixed compartment 7 to ensure that the second counterweight 71 will not be caught by the second traction rope 72 during movement.

[0084] In the present invention, the stamping forming of the health cabin shell assembly can be achieved through the stamping forming device body 1. By pulling the movable block 3 by the first counterweight block 61 and the second counterweight block 71, the upper magnet 4 and the lower magnetic part 5 can be controlled to move back and forth on the fixed frame 2, so that the excess material on the surface of the lower mold assembly 13 can be removed by the lower magnetic part 5 to ensure the production quality of the health cabin shell assembly.

[0085] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A health cabin shell stamping forming device, characterized in that: include: A stamping and forming device body (1), wherein an upper die assembly (12) is vertically movably provided on the stamping and forming device body (1) via a stamping mechanism (11), and a lower die assembly (13) is adaptively provided on the stamping and forming device body (1) below the upper die assembly (12); A fixing frame (2), the fixing frame (2) being fixedly mounted on the stamping and forming device body (1), movable blocks (3) being movably provided on both sides of the fixing frame (2), a lower magnetic member (5) being fixedly provided between the movable blocks (3) on both sides, and an upper magnet (4) being adapted to attract the lower magnetic member (5) being movably provided vertically above the lower magnetic member (5); A lower magnetic member (5), wherein a side fixing member (50) is provided on one side of the lower magnetic member (5), a plurality of movable magnetic members (53) are vertically movably provided on the side fixing member (50), the movable magnetic members (53) are all adapted to attract each other with the upper magnet (4), the bottom of the lower magnetic member (5) is provided as an inclined surface, a scraper (55) is movably provided on the inclined surface through a slide groove (551), and the bottoms of the movable magnetic members (53) are all connected to the scraper (55) through a bottom traction rope (54); A first fixed bin (6), wherein the first fixed bin (6) is fixedly mounted on the fixed frame (2) and located on one side of the movable block (3), a first counterweight block (61) is vertically movable in the first fixed bin (6), and the first counterweight block (61) is connected to one side of the movable block (3) via a first traction rope (62) at the top thereof; A second fixed bin (7), the second fixed bin (7) is fixedly arranged on the fixed frame (2) and located on the other side of the movable block (3), a second counterweight block (71) is vertically movably arranged in the second fixed bin (7), the second counterweight block (71) is connected to the other side of the movable block (3) through a second traction rope (72) on its side, and fixed magnets (81) adapted to attract the second counterweight block (71) are fixedly arranged on both sides of the punching mechanism (11); Both sides of the fixing frame (2) are provided with a lower guide groove (21) and an upper guide groove (22), and both ends of the lower magnetic member (5) are fixedly provided with a lower connecting column (51), and the lower connecting column (51) is adapted to pass through the lower guide groove (21) and is fixedly connected to the movable block (3); One end of the upper guide groove (22) is tilted upward, and upper connecting columns (41) are fixedly provided at both ends of the upper magnet (4). The upper connecting columns (41) are adapted to pass through the upper guide groove (22) and are fixedly connected to the vertical slider (42), and the corresponding vertical sliders (42) on the movable block (3) are adapted to be provided with vertical grooves (31). A partition plate (26) is fixedly provided on one side of the fixing frame (2), and a partition groove (261) is adapted to be provided on the upper magnet (4) and the lower magnetic member (5) corresponding to the partition plate (26), and a collection bin (25) is fixedly installed on the bottom of the fixing frame (2) below the partition plate (26) via bolts. The height of the first fixed bin (6) is smaller than that of the second fixed bin (7), and the weight of the first counterweight (61) is greater than that of the second counterweight (71); A side groove (73) is provided on one side of the second fixed bin (7), and fixed connecting columns (8) are fixedly provided on both sides of the punching mechanism (11). The ends of the fixed connecting columns (8) are located outside the side groove (73) and are installed with fixed magnets (81), and the fixed magnets (81) and the second counterweight (71) are adapted to attract each other.

2. The health cabin shell stamping forming device according to claim 1, characterized in that: Fixed plates (23) are fixedly provided at both ends of the outer side of the fixed frame (2), a plurality of guide columns (24) are fixedly provided between the fixed plates (23) on both sides, and the movable blocks (3) are guided and moved by the guide columns (24).

3. The health cabin shell stamping forming device according to claim 1, characterized in that: The side fixing member (50) is provided with a plurality of vertical cavities (52), and the movable magnetic members (53) are adapted to be located and moved in the vertical cavities (52). The bottom of the side fixing member (50) corresponds to the bottom traction rope (54) and is fixedly provided with an adapted guide rope ring (541), and the bottom traction rope (54) at the bottom of the movable magnetic member (53) is fixedly connected to the scraper (55) after passing through the guide rope ring (541).

4. The health cabin shell stamping forming device according to claim 2, characterized in that: A first fixed bin (6) is fixedly provided on a fixed plate (23) on one side of the movable block (3) on the fixed frame (2), a first counterweight (61) is vertically movably provided inside the first fixed bin (6), a fixed pulley (63) is fixedly provided on the top of the first fixed bin (6), and a first traction rope (62) on the top of the first counterweight (61) is connected to one side of the movable block (3) after passing through the fixed pulley (63).

5. The health cabin shell stamping forming device according to claim 4, characterized in that: A second fixed compartment (7) is fixedly provided on a fixed plate (23) on the other side of the movable block (3) on the fixed frame (2), a second counterweight (71) is vertically movably provided inside the second fixed compartment (7), and second traction ropes (72) on the sides of the second counterweight (71) are connected to the other side of the movable block (3).

Citation Information

Patent Citations

  • Scrap recoverer for punching machine

    CN115921697A