Strip magnetizing machine and its leveling mechanism
By introducing a leveling mechanism into the strip magnetizing machine and using a rotating column and a lifting unit to adjust the position of the base plate, the problem of inconvenient adjustment of the parallelism between the magnetizing surface and the strip surface is solved, and the magnetizing efficiency and operational convenience are improved.
Patent Information
- Application Number
- CN202411824635.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-12-12
AI Technical Summary
The existing strip magnetizing equipment is inconvenient to operate when adjusting the parallelism between the magnetizing emission surface of the magnetizer and the strip magnetizing surface, which affects the magnetization efficiency.
A strip magnetizing machine is designed, which includes a leveling mechanism. The horizontal rotation and up and down swing of the base plate are achieved through the rotation column and the lifting unit. The parallelism between the magnetizing generator and the strip surface is adjusted by combining the sliding body and the adjusting bolt.
The parallelism adjustment between the magnetizing generator and the strip surface is realized, thereby improving the magnetizing efficiency and the convenience of operation.
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Figure CN119713062B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of magnetization, in particular to a strip magnetizer and a leveling mechanism thereof for magnetizing a strip. Background Art
[0002] The manufacturing process of electronic products such as new energy batteries utilizes magnetic strips, such as copper foil. During processing, the copper foil is sprayed or coated with a magnetizable material, which is then magnetized using a magnetizing device. Currently, the typical process involves spraying the strip with the magnetizable slurry before transferring it to a magnetizer for magnetization. During magnetization, the magnetizer's magnetizing emitting surface must be aligned parallel to the strip's magnetizing surface to improve magnetization efficiency. Summary of the Invention
[0003] In view of the above, it is necessary for the present invention to provide a strip magnetizing machine that is convenient for adjusting parallelism.
[0004] To achieve the above object, the present invention adopts the following technical solutions:
[0005] A strip magnetizing machine comprises a bottom plate, a carrying plate and a magnetizing generator, the carrying plate can be lifted and lowered on the bottom plate, the magnetizing generator comprises a base plate and a cover, magnetizing components are mounted on the surface of the base plate to form a magnetizing generator, the cover covers the base plate and covers the magnetizing generator, the base plate is mounted on the carrying plate, a height adjustment mechanism is arranged between the carrying plate and the bottom plate, for adjusting the height of the carrying plate relative to the bottom plate, a leveling mechanism is arranged between the carrying plate and the base plate, for adjusting the parallelism of the magnetizing generator and the surface of the strip to be magnetized, the leveling mechanism comprises a rotating column and a lifting unit, the rotating column is mounted on one end of the carrying plate, one end of the base plate can be horizontally rotatable and can swing up and down on the rotating column, the lifting unit is mounted on the end of the carrying plate relative to the rotating column, and cooperates with one end of the base plate to adjust the lifting and lowering of one end of the base plate relative to one end of the rotating column.
[0006] Furthermore, a swing hole is opened at one end of the base plate for inserting the rotating column. The swing hole adopts a hole structure with two opposing conical holes connected at the top ends, and there is a swing gap between the hole wall of the swing hole and the rotating column. An elastic gasket is provided at the swing gap. The elastic gasket is mounted on the rotating column, and the hole wall of the swing hole abuts against the elastic gasket.
[0007] Furthermore, the lifting unit includes a slide rail seat, a sliding body, an adjusting bolt and a plug-in rod. The slide rail seat is fixedly mounted on the supporting plate. A track groove is provided on the slide rail seat. The sliding body is slidably mounted in the track groove. A sloped hole is provided on the side of the sliding body. A threaded hole is provided on the end face of the sliding body. The adjusting bolt is rotatably mounted on the slide rail seat, and the threaded section of the adjusting bolt cooperates with the threaded hole. By rotating the adjusting bolt, the sliding body slides along the track groove; the plug-in rod is fixedly mounted on the side of the end of the base plate, and the plug-in rod is inserted into the sloped hole.
[0008] In addition, the present invention provides a leveling mechanism applied to the strip magnetizer, which is installed between the supporting plate and the base plate of the strip magnetizer. The leveling mechanism includes a rotating column and a lifting unit. The rotating column is installed at one end of the supporting plate, and one end of the base plate can be horizontally rotated and swung up and down on the rotating column. The lifting unit is installed on the end of the supporting plate opposite to the rotating column, and cooperates with one end of the base plate to adjust the lifting and lowering of one end of the base plate relative to one end of the rotating column.
[0009] The beneficial effects of the present invention are:
[0010] The strip magnetizer provided by the present invention is provided with a leveling mechanism, which is mounted on one end of a supporting plate via a rotating column, one end of a base plate can be horizontally rotated and swung up and down on the rotating column, and a lifting unit is mounted on the end of the supporting plate opposite to the rotating column and cooperates with one end of the base plate to adjust the lifting of one end of the base plate relative to the other end of the rotating column. The structure is simple and facilitates the swing adjustment of the base plate in the height direction so as to be parallel to the strip. The swing hole on the base plate adopts a hole structure with two opposing conical holes and the top ends connected, so that the base plate is not interfered with by the rotating shaft when swinging. The lifting unit uses an adjusting bolt to drive the sliding body to slide, and a sloped hole is opened on the sliding body. The plug rod installed on the base plate is inserted into the sloped hole. By rotating the adjusting bolt, the sliding body slides along the track groove, thereby driving one end of the base plate to rise and fall, that is, to swing relative to one end of the rotating column. The above-mentioned leveling mechanism is used to achieve the parallelism adjustment of the strip magnetizer relative to the strip magnetization surface, and the operation is convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a three-dimensional diagram of a strip magnetizing machine;
[0012] Figure 2 for Figure 1 The enlarged view of point A is shown;
[0013] Figure 3 This is an exploded view of the strip magnetizer;
[0014] Figure 4 This is an exploded view of the slider structure;
[0015] Figure 5It is a cross-sectional view of a strip magnetizing machine;
[0016] Figure 6 for Figure 5 The enlarged view of point B is shown;
[0017] Figure 7 This is a partial exploded view of the cooperation between the supporting plate and one end of the magnetizing generator.
[0018] Description of reference numerals:
[0019] Base plate 10; bearing plate 20; magnetizing element 30; rotating shaft 41; slider structure 42; lower abutment protrusion 43; slider 422; slope 4221; sleeve seat 44; elastic reset assembly 45; fixing column 451; column ring 452; elastic member 453; height display structure 46; vertical ruler 461; scale indicator needle 462; slide 11; slide rail 421; alignment groove 4222; sleeve 423; anti-rotation connection block 424; guide connection block 425; locking groove 4 231; locking protrusion 4241; alignment protrusion 4251; base plate 31; cover body 32; rotating column 501; swing hole 311; elastic washer 511; slide rail seat 51; sliding body 52; adjusting bolt 53; plug-in rod 54; track groove 512; ramp hole 521; locking hole 513; limiting nut 531; top cover plate 55; pad 22; adjustment seat 61; supporting rod 62; adjustment display structure 63; push handle 71; guide wheel 72; inclined bottom surface 12. DETAILED DESCRIPTION
[0020] The following describes the specific embodiments of the present application in detail with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to illustrate and explain the present application and are not intended to limit the present application.
[0021] like Figure 1-Figure 3 As shown, an embodiment of the present invention provides a strip magnetizing machine, including a base plate 10, a supporting plate 20 and a magnetizing generator 30. The supporting plate 20 can be raised and lowered on the base plate 10, and the magnetizing generator 30 is installed on the supporting plate 20. The magnetizing generator 30 includes a base plate 31 and a cover 32. Magnetizing components are installed on the surface of the base plate 31 to form a magnetizing generator. The cover 32 covers the base plate 31 and covers the magnetizing generator. The base plate 31 is installed on the supporting plate 20. A height adjustment mechanism is provided between the supporting plate 20 and the base plate 10 for adjusting the height of the supporting plate 20 relative to the base plate 10. A leveling mechanism is provided between the supporting plate 20 and the base plate 31 for adjusting the parallelism of the magnetizing generator 30 and the surface of the strip to be magnetized.
[0022] The height adjustment mechanism includes a rotating shaft 41, a slider structure 42 and a lower abutment protrusion 43. The slider structure 42 can be slidably installed on the base plate 10 and is screwed on the rotating shaft 41. The rotation of the rotating shaft 41 drives the slider structure 42 to slide along the rotating shaft 41 on the base plate 10. The slider structure 42 includes a slider 422. The top surface of the slider 422 is provided with a slope 4221. The lower abutment protrusion 43 is provided on the bottom surface of the supporting plate 20 and abuts against the slope 4221 of the slider 422. The sliding of the slider 422 causes the lower abutment protrusion 43 to rise and fall, thereby driving the supporting plate 20 and the magnetizing generator 30 installed on the supporting plate 20 to rise and fall.
[0023] Furthermore, the height adjustment mechanism includes relatively arranged sleeve seats 44, which are relatively installed on the base plate 10, for sleeve-mounting the two ends of the rotating shaft 41 and allowing the rotating shaft 41 to rotate. Specifically, a bearing is installed in the sleeve seat 44 so that the rotating shaft 41 can be fixedly sleeved in the bearing.
[0024] Furthermore, the height adjustment mechanism includes an elastic reset assembly 45 for maintaining the support plate 20 in elastic contact with the base plate 10. The elastic reset assembly 45 includes fixed posts 451, post rings 452, and elastic members 453. The fixed posts 451 are fixedly mounted at the four corners of the base plate 10, and the support plate 20 is slidably inserted into the fixed posts 451. The post rings 452 are screwed onto the fixed posts 451 and abut against the bottom surface of the support plate 20 to support the support plate 20. It can be understood that by adjusting the position of the post rings 452 on the fixed posts 451, the initial spacing between the base plate 10 and the support plate 20 can be fixed. The elastic member 453 is mounted on the fixed posts 451 and elastically presses downward against the top surface of the support plate 20, providing a resilient force to reset the support plate 20 when the distance between the support plate 20 and the base plate 10 changes. That is, if the support plate 20 moves upward relative to the base plate 10, the elastic member 453 provides a resilient force to press the support plate 20 downward and reset it. In this embodiment, the elastic member 453 is a coil spring. To facilitate force application, the bottom end of the coil spring is connected to a ring sleeve mounted on the fixing column 451 so as to press against the supporting plate 20 .
[0025] Furthermore, the height adjustment mechanism includes a height display structure 46, which is used to know the adjusted height of the supporting plate 20 in real time. The height display structure 46 includes a vertical ruler 461 and a scale indicator needle 462. The vertical ruler 461 is fixedly installed on the base plate 10, and the scale indicator needle 462 is installed on the supporting plate 20 and points to the scale on the vertical ruler 461, so that the height position of the supporting plate 20 can be obtained in real time.
[0026] Furthermore, a slide groove 11 is opened on the bottom plate 10 and is located between the two shaft sleeve seats 44. There are two slider structures 42, which are installed alternately in the slide groove 11 on the bottom plate 10 to support the two ends of the bearing plate 20 for more stable support.
[0027] See also Figure 4 The slider structure 42 includes a slide rail 421, the slider 422, and a shaft connector. The slide rail 421 is fixedly mounted on the base plate 10, and the slider 422 is slidably mounted on the slide rail 421. The shaft connector is sleeved on the shaft 41. The internal thread of the shaft connector mates with the external thread of the shaft 41. The shaft connector is fixedly connected to the slider 422. When the shaft 41 rotates, the shaft sleeve connector moves axially on the shaft 41, thereby driving the slider 422 to move along the slide rail 421.
[0028] In this embodiment, two parallel slide grooves 11 are provided on the base plate 10, and a slide rail 421 is installed in each slide groove 11 along its extension direction; specifically, two sections of slide rails 421 are installed in each slide groove 11, which are respectively installed at the two ends of the slide groove 11; it can be understood that the two sections of slide rails 421 can also be connected into an integral slide rail 421.
[0029] Each slider structure 42 includes two parallel sliders 422, each mounted on a slide rail 421 at the same end of the two slide slots 11. Specifically, a clamping groove is defined on the bottom surface of each slider 422, which clamps onto the slide rail 421 without affecting the slider 422's sliding motion along the slide rail 421. Furthermore, alignment grooves 4222 are defined on opposing sides of the two sliders 422 to facilitate alignment with the anti-rotation connection block 424.
[0030] The shaft connector includes a sleeve 423, an anti-rotation connection block 424, and a guide connection block 425. The sleeve 423 is mounted on the shaft 41 and has an internal thread that mates with the external thread on the shaft 41. A retaining groove 4231 is defined on the circumference of the sleeve 423 for engagement with the anti-rotation connection block 424. The anti-rotation connection block 424 is used to prevent the sleeve 423 from rotating together with the shaft 41. The anti-rotation connection block 424 has a sleeve hole for mounting on the outer circumference of the sleeve 423, and a retaining protrusion 4241 is defined on the wall of the sleeve hole for engagement with the retaining groove 4231.
[0031] The guide connecting block 425 is used to securely connect the anti-rotation connecting block 424 and the slider 422. The guide connecting block 425 is provided with an axial hole for being sleeved on the outer circumference of the shaft sleeve 423 or the rotating shaft 41. The guide connecting block 425 is securely connected to the anti-rotation connecting block 424, specifically by providing connecting holes on the end faces of the guide connecting block 425 and the anti-rotation connecting block 424, and securely connected by screws. The guide connecting block 425 is securely connected to the slider 422, specifically by providing connecting holes on the sides of the guide connecting block 425 and the slider 422, and securely connected by screws. In this embodiment, to facilitate the alignment and securement of the guide connecting block 425 and the slider 422, alignment protrusions 4251 are formed on both sides of the guide connecting block 425 to align and cooperate with the alignment grooves 4222 on the sides of the slider 422.
[0032] In this way, when the rotating shaft 41 rotates, the anti-rotation connecting block 424 and the shaft sleeve 423 are engaged to limit the rotation of the rotating shaft connector together with the rotating shaft 41, thereby forcing the rotating shaft connector to move along the axial direction of the rotating shaft 41, driving the slider 422 to move along the slide rail 421.
[0033] Furthermore, in this embodiment, there are four lower abutting protrusions 43 fixedly mounted on the bottom surface of the carrier plate 20. Specifically, the lower abutting protrusions 43 are arranged in groups of two, corresponding to the two slider structures 42. Each group of lower abutting protrusions 43 is correspondingly abutted against the slopes 4221 of the two sliders 422 of one slider structure 42. Figure 5 When the rotating shaft 41 rotates, the slider 422 slides, and the sliding of the slider 422 causes the lower protrusion 43 to rise and fall, thereby driving the supporting plate 20 and the magnetizing generator 30 installed on the supporting plate 20 to rise and fall, thereby realizing the precise adjustment of the distance between the magnetizing generator 30 and the surface of the strip.
[0034] Furthermore, the strip magnetizer includes a leveling mechanism, which is used to adjust the parallelism between the magnetizing generator 30 and the surface of the strip, thereby improving the magnetization efficiency of the magnetizing generator 30 on the strip.
[0035] The leveling mechanism includes a rotating column 501 and a lifting unit. The rotating column 501 is installed at one end of the supporting plate 20, and one end of the base plate 31 can be horizontally rotated and swung up and down on the rotating column 501. The lifting unit is installed on the supporting plate 20 relative to one end of the rotating column 501, and cooperates with one end of the base plate 31 to adjust the lifting of one end of the base plate 31 relative to one end of the rotating column 501, thereby achieving the adjustment of the horizontality of the top surface of the magnetizing generator 30.
[0036] Please refer to Figure 5-Figure 7 One end of the base plate 31 is provided with a swing hole 311 for the rotation post 501 to pass through, allowing the other end of the base plate 31 to swing horizontally or vertically around the rotation post 501. Specifically, after the rotation post 501 passes through the swing hole 311, a certain swing clearance is provided between the wall of the swing hole 311 and the rotation post 501.
[0037] Furthermore, the swing hole 311 is designed as a hole structure with two opposing conical holes and the top ends connected, so that the contact between the hole wall of the swing hole 311 and the rotating column 501 is roughly point contact, which facilitates the substrate 31 to swing up and down around the rotating column 501 without being interfered with by the rotating column 501; further, an elastic washer 511 is provided at the swing gap (that is, the minimum distance between the hole wall of the swing hole 311 and the rotating column 501), and the elastic washer 511 is sleeved on the rotating column 501, and the hole wall of the swing hole 311 abuts against the elastic washer 511, which can prevent the substrate 31 from sliding up and down along the rotating column 501 during swinging.
[0038] The lifting unit includes a slide rail seat 51, a sliding body 52, an adjusting bolt 53 and a plug-in rod 54. The slide rail seat 51 is fixedly mounted on the supporting plate 20. A rail groove 512 is provided on the slide rail seat 51, and the sliding body 52 is slidably mounted in the rail groove 512. A sloped hole 521 is provided on the side surface of the sliding body 52, and a threaded hole is provided on the end surface of the sliding body 52. The adjusting bolt 53 is rotatably mounted on the slide rail seat 51, and the threaded section of the adjusting bolt 53 cooperates with the threaded hole. By rotating the adjusting bolt 53, the sliding body 52 slides along the rail groove 512; the plug-in rod 54 is fixedly mounted on the side surface of the base plate 31, and the plug-in rod 54 penetrates into the sloped hole 521. In this way, the sliding body 52 slides, and the slope of the sloped hole 521 will cause the plug-in rod 54 to rise and fall, thereby driving the base plate 31 with one end of the plug-in rod 54 to swing up and down relative to one end of the rotating column 501, thereby realizing the horizontal adjustment of the base plate 31.
[0039] Specifically, the slide rail seat 51 includes a track section and end blocks protruding at both ends of the track section. The track section is provided with the track groove 512, and one of the end blocks is provided with a positioning hole 513 for the installation of the adjusting bolt 53; the adjusting bolt 53 includes a nut end, a screw section extending from the nut end as a whole, and a limiting nut 531. The screw section passes through the positioning hole 513 on the end block and extends into the threaded hole on the end face of the sliding body 52, and cooperates with its thread. The limiting nut 531 is screwed on the screw section and cooperates with the nut end. It is relatively located on the two end faces of the end block to limit the axial movement of the adjusting bolt 53.
[0040] Furthermore, the lifting unit includes a top cover plate 55, which is mounted on the top surface of the slide rail base 51 to cooperate with the slide rail base 51 to enhance the sliding stability of the slider 52. Specifically, the two ends of the top cover plate 55 are fixed to the top surfaces of the end blocks at both ends of the slide rail base 51. The bottom surface of the top cover plate 55 is correspondingly provided with a sliding groove (not shown) to accommodate the top end of the slider 52. In this way, the clamping of the track groove 512 and the sliding groove further facilitates the stable sliding of the slider 52.
[0041] Furthermore, to facilitate the up-and-down swinging of the end of the substrate 31 with the plug-in rod 54 relative to the end (i.e., the fulcrum end) that is sleeved on the rotating post 501, a pad 22 is provided on the carrier plate 20 to cushion the end of the substrate 31 sleeved on the rotating post 501. The pad 22 can elevate the fulcrum end of the substrate 31 to a certain height to facilitate subsequent adjustment of the other end to the horizontal plane. Furthermore, the elevated height of the pad 22 creates a swinging gap between the end of the substrate 31 and the surface of the carrier plate 20, facilitating the up-and-down swinging of the fulcrum end of the substrate 31.
[0042] When using the leveling mechanism to adjust the parallelism between the magnetizing generator 30 and the surface of the strip, the adjusting bolt 53 is twisted by hand, which drives the sliding body 52 to slide, and drives the end of the base plate 31 with the plug-in rod 54 to swing up and down relative to the end of the rotating column 501, thereby adjusting the parallelism between the magnetizing generator 30 and the surface of the strip.
[0043] Furthermore, the strip magnetizer includes an offset adjustment mechanism for adjusting the offset of the magnetizing generator 30 relative to the strip surface so that the magnetizing generator 30 is aligned relative to the strip, thereby improving the magnetization accuracy of the magnetizing generator 30 on the strip.
[0044] The offset adjustment mechanism is mounted on one end of the base plate 31 relative to the swing hole 311. Abutments are provided on both sides of one end of the support plate 20 relative to the rotating post 51 to provide support for the offset adjustment mechanism. The offset adjustment mechanism comprises two sets of adjustment units, which are mounted on the base plate 31 and located between the abutments on either side of the support plate 20. Each adjustment unit has an abutment rod that can advance and retract, and is used to abut against the abutment on the corresponding side of the support plate 20 in opposite directions. By simultaneously adjusting the abutment lengths of the two sets of adjustment units, the end of the base plate 31 with the adjustment unit is driven to swing horizontally relative to the end of the swing hole 311, thereby adjusting the offset angle of the base plate 31 relative to the support plate, thereby adjusting the offset of the magnetizing generator 30 relative to the strip surface.
[0045] Specifically, in this embodiment, the slide rail seat 51 on the supporting plate 20 can be used as a supporting body for the adjustment unit to support. Each group of adjustment units includes an adjustment seat 61 and a supporting rod 62. The adjustment seat 61 is fixedly mounted on one end of the base plate 31 relative to the swing hole 311. The adjustment seat 61 is provided with a horizontal adjustment screw hole. The supporting rod 62 is screwed into the adjustment screw hole, and one end of the supporting rod 62 is supported on the slide rail seat 51. The supporting rods 62 of the two groups of adjustment units are oriented left and right, respectively supporting the slide rail seats 51 on both sides of the supporting plate 20. By rotating the supporting rod 62, the supporting rod 62 is moved forward and backward relative to the slide rail seat 51, thereby driving the end of the base plate 31 with the adjustment seat 61 to swing on the horizontal plane relative to the end with the swing hole 311.
[0046] Furthermore, the offset adjustment mechanism includes an adjustment indicating structure 63, which is used to know the offset degree of the substrate 31 in real time. The adjustment indicating structure 63 includes a ruler and a digital pointer. The ruler is horizontally installed on the supporting plate 20, and the digital pointer is installed on the substrate 31 and points to the scale on the ruler. In this way, the offset adjustment position of the substrate 31 can be obtained in real time.
[0047] The strip magnetizer includes a push mechanism to facilitate its overall movement. The push mechanism comprises a push handle 71 and a guide wheel 72. The push handle 71 is mounted at one end of the strip magnetizer, and the guide wheel 72 is mounted at the other end. By grasping and slightly lifting the push handle 71, the strip magnetizer can be moved and conveniently placed under the strip to be magnetized. Specifically, the push handle 71 is mounted at one end of the base plate 10, and the guide wheel 72 is mounted at the other end.
[0048] Preferably, to ensure that the bottom surface of the base plate 10 is level after the strip magnetizer is placed, the lowest point of the circumference of the guide wheel 72 is on the same horizontal plane as the bottom surface of the base plate 10. At the same time, to facilitate the entire strip magnetizer to slide along the guide wheel 72 after being slightly lifted, thereby avoiding a large lifting distance, an upwardly inclined bottom surface 12 is formed on the bottom surface of the base plate 10 at the end where the guide wheel 72 is mounted. The upward inclination angle of the upwardly inclined bottom surface 12 with respect to the horizontal bottom surface of the base plate 10 is within 20 degrees. The provision of the upwardly inclined bottom surface 12 facilitates the installation of the guide wheel 72 and satisfies the requirement that the entire strip magnetizer can be pushed along the guide wheel 72 for sliding guidance after slightly lifting the push handle 71.
[0049] In summary, the strip magnetizer provided by the present invention is provided with a height adjustment mechanism, so that the height between the supporting plate 20 and the base plate 10 is adjustable, so that the height of the magnetizing generator 30 installed on the supporting plate 20 is correspondingly adjustable, and the distance between the magnetizing generator 30 and the strip to be magnetized can be adjusted; by providing a leveling mechanism, the parallelism of the magnetizing generator 30 and the strip surface can be adjusted; by providing a deviation adjustment mechanism, the deviation of the magnetizing generator 30 and the strip surface can be adjusted, so that the magnetizing generator 30 is aligned with the strip; in this way, the position alignment accuracy of the strip magnetizer and the strip to be magnetized is ensured, which can greatly improve the magnetization efficiency.
[0050] The above-described embodiments merely illustrate the implementation methods of the present invention and should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the spirit of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A strip magnetizing machine, characterized in that: The invention comprises a bottom plate (10), a carrier plate (20) and a magnetizing generator (30), wherein the carrier plate (20) is arranged on the bottom plate (10) in a liftable manner, and the magnetizing generator (30) comprises a base plate (31) and a cover body (32), wherein magnetizing components are installed on the surface of the base plate (31) to form a magnetizing generator, and the cover body (32) covers the base plate (31) and covers the magnetizing generator, and the base plate (31) is installed on the carrier plate (20), and a height adjustment mechanism is provided between the carrier plate (20) and the bottom plate (10) for adjusting the height of the carrier plate (20) relative to the bottom plate (10). A leveling mechanism is provided between (20) and the base plate (31) for adjusting the parallelism between the magnetizing generator (30) and the surface of the strip to be magnetized. The leveling mechanism comprises a rotating column (501) and a lifting unit. The rotating column (501) is mounted on one end of the carrier plate (20). One end of the base plate (31) can be mounted on the rotating column (501) in a horizontally rotatable and vertically swingable manner. The lifting unit is mounted on the carrier plate (20) relative to one end of the rotating column (501) and cooperates with one end of the base plate (31) to adjust the lifting of one end of the base plate (31) relative to one end of the rotating column (501). One end of the base plate (31) is provided with a swing hole (311) for inserting the rotating column (501). The swing hole (311) adopts a hole structure with two tapered holes opened opposite each other and the top ends are connected. There is a swing gap between the hole wall of the swing hole (311) and the rotating column (501). An elastic washer (511) is provided at the swing gap. The elastic washer (511) is sleeved on the rotating column (501). The hole wall of the swing hole (311) abuts against the elastic washer (511). The lifting unit comprises a slide rail seat (51), a sliding body (52), an adjusting bolt (53) and a plug rod (54), wherein the slide rail seat (51) is fixedly mounted on the bearing plate (20), a track groove (512) is provided on the slide rail seat (51), the sliding body (52) is slidably mounted in the track groove (512), a slope hole (521) is provided on the side surface of the sliding body (52), a threaded hole is provided on the end surface of the sliding body (52), the adjusting bolt (53) is rotatably mounted on the slide rail seat (51), and the threaded section of the adjusting bolt (53) cooperates with the threaded hole, and the sliding body (52) slides along the track groove (512) by rotating the adjusting bolt (53); the plug rod (54) is fixedly mounted on the side surface of the end portion of the base plate (31), and the plug rod (54) is inserted into the slope hole (521); The slide rail seat (51) includes a track section and end blocks protruding at both ends of the track section. The track section is provided with the track groove (512), and one end block is provided with a positioning hole (513). The adjusting bolt (53) includes a nut end, a screw section integrally extending from the nut end, and a limiting nut (531). The screw section passes through the positioning hole (513) on the end block and extends into the threaded hole on the end face of the sliding body (52), and is threadedly engaged with the nut end. The limiting nut (531) is screwed on the screw section and engaged with the nut end. They are relatively located at both ends of the end block to limit the axial movement of the adjusting bolt (53).
2. The strip magnetizer according to claim 1, characterized in that: The lifting unit includes a top cover plate (55), which is installed on the top surface of the slide rail seat (51), and the two ends of the top cover plate (55) are fixed to the top surfaces of the end blocks at the two ends of the slide rail seat (51), and the bottom surface of the top cover plate (55) is correspondingly provided with a sliding groove to accommodate the top end of the sliding body (52).
3. The strip magnetizer according to claim 1, characterized in that: A pad (22) is provided on the supporting plate (20) to cushion the substrate (31) sleeved with one end of the rotating column (501). The pad (22) is raised to form a swing gap between the end of the substrate (31) and the surface of the supporting plate (20).
4. The strip magnetizer according to claim 1, characterized in that: The invention comprises a deflection adjustment mechanism, which is installed on one end of the base plate (31) relative to the swing hole (311), and abutting bodies are provided on both sides of one end of the supporting plate (20) relative to the rotating column. The deflection adjustment mechanism comprises two groups of adjustment units, which are arranged on the base plate (31) and located between the abutting bodies on both sides of the supporting plate (20). Each adjustment unit has an abutting rod that can move forward and backward, and is used to abut against the abutting body on the corresponding side of the supporting plate (20). The abutting directions of the abutting rods of the two groups of adjustment units are opposite. By simultaneously adjusting the abutting lengths of the two groups of adjustment units, the offset angle of the base plate (31) relative to the supporting plate is adjusted.
5. The strip magnetizing machine according to claim 4, characterized in that: Each group of the adjustment units includes an adjustment seat (61) and a supporting rod (62). The adjustment seat (61) is fixedly mounted on one end of the base plate (31) relative to the swing hole (311). The adjustment seat (61) is provided with a horizontal adjustment screw hole. The supporting rod (62) is screwed into the adjustment screw hole, and one end of the supporting rod (62) is supported against the supporting body. The supporting rods (62) of the two groups of adjustment units are oriented to the left and right, respectively, and are supported against the supporting bodies on both sides of the supporting plate (20).
6. The strip magnetizer according to claim 1, characterized in that: The invention comprises a pushing mechanism, which comprises a pushing handle (71) and a guide wheel (72). The pushing handle (71) is mounted at one end of the strip magnetizer, and the guide wheel (72) is mounted at the other end of the strip magnetizer. The lowest point of the circumference of the guide wheel (72) is on the same horizontal plane as the bottom surface of the bottom plate (10). An upwardly inclined bottom surface (12) is formed on the bottom surface of the bottom plate (10) at one end where the guide wheel (72) is mounted.
7. A leveling mechanism applied to the strip magnetizer according to any one of claims 1 to 6, installed between the carrier plate (20) and the base plate (31) of the strip magnetizer, characterized in that: The leveling mechanism includes a rotating column (501) and a lifting unit, wherein the rotating column (501) is mounted on one end of the supporting plate (20), and one end of the base plate (31) is sleeved on the rotating column (501) in a horizontally rotatable and vertically swingable manner. The lifting unit is mounted on the supporting plate (20) relative to one end of the rotating column (501) and cooperates with one end of the base plate (31) to adjust the lifting of one end of the base plate (31) relative to one end of the rotating column (501).
Citation Information
Patent Citations
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