High-speed motor magnetic steel pressing device

CN120301126BActive Publication Date: 2026-06-12NANJING DYT PERMANENT MAGNET TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANJING DYT PERMANENT MAGNET TECH CO LTD
Filing Date
2025-04-25
Publication Date
2026-06-12

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Abstract

The application discloses a high-speed motor magnetic steel pressing device and belongs to the technical field of motor processing. The device comprises a first anti-toppling bearing metal plate, the upper portion of the first anti-toppling bearing metal plate is provided with a deformable lifting mechanism, the upper portion of the first anti-toppling bearing metal plate is also provided with a third anti-toppling bearing metal plate which is used for limiting and supporting the deformable lifting mechanism, the upper surface of the first anti-toppling bearing metal plate is provided with a plurality of second anti-toppling bearing metal plates which are used for supporting and fixing the third anti-toppling bearing metal plate, the upper portion of the third anti-toppling bearing metal plate is provided with a deformable pressing mechanism which is used for pressing and feeding workpieces and driving the deformable lifting mechanism to rotate. The workpiece is driven to rotate through the cooperation of multiple structures, then the installation of magnetic steel and the feeding of glue are simultaneously performed while the workpiece is rotating, and the dispersion uniformity of the glue is improved through rotation.
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Description

Technical Field

[0001] This invention belongs to the field of motor processing technology, and specifically relates to a high-speed motor magnet pressing device. Background Technology

[0002] An electric motor is a device that converts electrical energy into mechanical energy. It uses a current-carrying coil (i.e., stator winding) to generate a rotating magnetic field, which acts on the rotor to form a magnetoelectric torque. Electric motors are classified into DC motors and AC motors according to the power supply they use. Most motors in the power system are AC motors. High-speed motors require the installation of magnets during the manufacturing process.

[0003] Traditionally, when installing motor magnets, workers typically use a metal rod to press the magnet into the target position. This process requires multiple injections of glue. However, manually installing magnets is not only time-consuming and laborious, but the simple injection of glue also fails to distribute it evenly, resulting in an unsatisfactory installation and fixation effect. Improvement is urgently needed. Summary of the Invention

[0004] The purpose of this invention is to provide a high-speed motor magnet pressing device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a high-speed motor magnet pressing device, comprising a first anti-tipping bearing metal plate, a deformable lifting mechanism disposed above the first anti-tipping bearing metal plate, a third anti-tipping bearing metal plate disposed above the first anti-tipping bearing metal plate for limiting and supporting the deformable lifting mechanism, a plurality of second anti-tipping bearing metal plates disposed on the upper surface of the first anti-tipping bearing metal plate for supporting and fixing the third anti-tipping bearing metal plate, a deformable pressing mechanism disposed above the third anti-tipping bearing metal plate for pressing and feeding the workpiece and for driving the deformable lifting mechanism to rotate, and the third anti-tipping bearing metal plate and the deformable pressing mechanism being fixedly connected.

[0006] As a further aspect of the present invention: the deformable lifting mechanism includes a first anti-deformation mounting metal plate. The upper surface of the first anti-deformation mounting metal plate is provided with a plurality of first limiting mounting metal parts corresponding to the third anti-tipping bearing metal plate. One end of each first limiting mounting metal part is fixedly connected to the first anti-deformation mounting metal plate, and the other end is fixedly connected to the third anti-tipping bearing metal plate. Above the first anti-deformation mounting metal plate is a first limiting receiving metal tube rotatably connected to the third anti-tipping bearing metal plate. The upper surface of the third anti-tipping bearing metal plate has limiting mounting holes for installing the first limiting receiving metal tube. A second anti-deformation mounting metal plate is provided at the top of the first limiting receiving metal tube. The first limiting receiving metal tube passes through the second anti-deformation mounting metal plate. The first limiting receiving metal tube is fixedly connected to the second anti-deformation mounting metal plate, and the second anti-deformation mounting metal plate is slidably connected to the third anti-tipping bearing metal plate.

[0007] As a further embodiment of the present invention: an adjustable lifting metal plate is provided above the first anti-deformation mounting metal plate for supporting the workpiece and adjusting its height. The adjustable lifting metal plate is slidably connected to the first limiting and receiving metal tube. A second deformable position changing member is provided on the upper surface of the first anti-deformation mounting metal plate for adjusting the height of the adjustable lifting metal plate. The second deformable position changing member is fixedly connected to the first anti-deformation mounting metal plate and rotatably connected to the adjustable lifting metal plate.

[0008] As a further embodiment of the present invention: a plurality of first limiting installation metal tubes are provided at one end of the first limiting and receiving metal tube near the second anti-deformation mounting metal plate. The first limiting installation metal tubes are provided through the side wall of the first limiting and receiving metal tube and are fixedly connected to the first limiting and receiving metal tube. A first deformable position changing component is fixedly connected inside the first limiting installation metal tube. A second deformable reinforcing plate is provided at the telescopic end of the first deformable position changing component for anti-slip reinforcement of the workpiece. The second deformable reinforcing plate is fixedly connected to the first deformable position changing component.

[0009] As a further embodiment of the present invention: the deformable pressing mechanism includes a third anti-deformation mounting metal plate, and a plurality of second limiting mounting metal parts corresponding to the third anti-tipping bearing metal plate are fixedly connected to the lower surface of the third anti-deformation mounting metal plate. One end of the second limiting mounting metal part is fixedly connected to the third anti-tipping bearing metal plate, and the other end of the second limiting mounting metal part is fixedly connected to the third anti-deformation mounting metal plate. A deformable pressing component is provided on the lower surface of the third anti-deformation mounting metal plate. A plurality of third limiting mounting metal parts are provided below the third anti-deformation mounting metal plate for cooperating with the deformable pressing component to drive the second anti-deformation mounting metal plate to rotate. The top of the third limiting mounting metal parts is fixedly connected to the deformable pressing component, and the bottom of the third limiting mounting metal parts is fixedly connected to the second anti-deformation mounting metal plate.

[0010] As a further embodiment of the present invention: the deformable pressing assembly includes a fifth anti-deformation mounting metal plate, a storage metal cylinder is fixedly connected to the upper surface of the fifth anti-deformation mounting metal plate, a variable speed power supply component is provided above the storage metal cylinder, a sixth anti-deformation mounting metal plate is fixedly connected to the output end of the variable speed power supply component, a plurality of fourth limiting mounting metal parts are provided on the lower surface of the sixth anti-deformation mounting metal plate for cooperating with the storage metal cylinder to drive the fifth anti-deformation mounting metal plate to rotate, a plurality of hollow pressing metal parts are provided below the fifth anti-deformation mounting metal plate, a fourth anti-deformation mounting metal plate is provided below the fifth anti-deformation mounting metal plate for adjusting the height of the hollow pressing metal parts, the hollow pressing metal parts are provided through the fourth anti-deformation mounting metal plate, the hollow pressing metal parts are fixedly connected to the fourth anti-deformation mounting metal plate, and a plurality of fourth deformable position changing parts are fixedly connected to the lower surface of the fifth anti-deformation mounting metal plate for adjusting the height of the fourth anti-deformation mounting metal plate.

[0011] As a further embodiment of the present invention: the bottom of the storage metal cylinder is provided with a hollow material conveying hose for feeding the hollow pressing metal part, the bottom side of the hollow pressing metal part is provided with a plurality of discharge through holes for discharging material, the top of the fourth limiting installation metal part is fixedly connected to the sixth anti-deformation installation metal plate, the bottom of the fourth limiting installation metal part is fixedly connected to the storage metal cylinder, and the top of the fourth deformable position changing part is fixedly connected to the fifth anti-deformation installation metal plate.

[0012] As a further embodiment of the present invention: a pressure regulating piston plate is provided below the sixth anti-deformation mounting metal plate and is slidably connected to the storage metal cylinder; a plurality of third deformable position changing parts are provided on the lower surface of the sixth anti-deformation mounting metal plate for adjusting the height of the pressure regulating piston plate; the top of the third deformable position changing part is fixedly connected to the sixth anti-deformation mounting metal plate; the bottom of the third deformable position changing part is fixedly connected to the pressure regulating piston plate; and the bottom of the fourth deformable position changing part is fixedly connected to the fourth anti-deformation mounting metal plate.

[0013] As a further embodiment of the present invention: a protective metal tube is fixedly connected to the upper surface of the third anti-tipping bearing metal plate, and a number of detachable warning pieces are provided on the side of the second anti-tipping bearing metal plate for warning purposes, and the number of detachable warning pieces are spaced apart at the bottom of the side of the second anti-tipping bearing metal plate.

[0014] As a further embodiment of the present invention: a plurality of first deformable reinforcing plates are provided below the third anti-tipping bearing metal plate to provide anti-slip reinforcement to the first anti-tipping bearing metal plate. The plurality of first deformable reinforcing plates are spaced apart at both ends of the lower surface of the first anti-tipping bearing metal plate, and the first deformable reinforcing plates are fixedly connected to the first anti-tipping bearing metal plate.

[0015] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. During use, the workpiece is driven to rotate by the cooperation of multiple structures. Then, the magnet is installed and the adhesive is applied while the workpiece is rotating. The rotation improves the uniformity of adhesive dispersion, thereby significantly improving the installation and fixing effect of the magnet. Secondly, the present invention can be applied to the installation of magnets for different types of motors, making the device more widely applicable and worthy of promotion and use. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of a high-speed motor magnet pressing device;

[0017] Figure 2 This is a schematic diagram of the third anti-tipping bearing metal plate in a high-speed motor magnet pressing device;

[0018] Figure 3 This is a schematic diagram of a deformable lifting mechanism in a high-speed motor magnet pressing device.

[0019] Figure 4 An exploded view of the deformable lifting mechanism in a high-speed motor magnet pressing device;

[0020] Figure 5 This is a schematic diagram of the deformable pressing mechanism in a high-speed motor magnet pressing device;

[0021] Figure 6 An exploded view of the deformable pressing component in a high-speed motor magnet pressing device;

[0022] In the diagram: 1-First deformable reinforcing plate, 2-First anti-tipping load-bearing metal plate, 3-Deformable lifting mechanism, 4-Second anti-tipping load-bearing metal plate, 5-Third anti-tipping load-bearing metal plate, 6-Deformable pressing mechanism, 7-Removable warning piece, 8-Protective metal tube, 9-Limiting mounting hole, 30-First anti-deformation mounting metal plate, 31-First limiting mounting metal piece, 32-First limiting mounting metal tube, 33-First limiting storage metal tube, 34-Second anti-deformation mounting metal plate, 35-Second deformable reinforcing plate, 36-First deformable position changing piece, 37-Adjustable lifting metal plate, 38-Second adjustable... 60-Second limit mounting metal part, 61-Third limit mounting metal part, 62-Third anti-deformation mounting metal plate, 63-Deformable pressing component, 630-Fourth anti-deformation mounting metal plate, 631-Hollow material conveying hose, 632-Fifth anti-deformation mounting metal plate, 633-Pressure regulating piston plate, 634-Fourth limit mounting metal part, 635-Variable speed power supply component, 636-Sixth anti-deformation mounting metal plate, 637-Third deformable position changing component, 638-Storage metal cylinder, 639-Fourth deformable position changing component, 640-Hollow pressing metal part, 641-Discharge through hole. Detailed Implementation

[0023] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0024] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation", "connection", "linking", and "setting" should be interpreted broadly. For example, they can refer to fixed connection or setting, detachable connection or setting, or integral connection or setting.

[0025] Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0026] Please see Figures 1-6This embodiment provides a high-speed motor magnet pressing device, including a first anti-tipping bearing metal plate 2, a deformable lifting mechanism 3 above the first anti-tipping bearing metal plate 2, a third anti-tipping bearing metal plate 5 above the first anti-tipping bearing metal plate 2 for limiting and supporting the deformable lifting mechanism 3, a plurality of second anti-tipping bearing metal plates 4 on the upper surface of the first anti-tipping bearing metal plate 2 for supporting and fixing the third anti-tipping bearing metal plate 5, a deformable pressing mechanism 6 above the third anti-tipping bearing metal plate 5 for pressing and feeding the workpiece and for driving the deformable lifting mechanism 3 to rotate, and the third anti-tipping bearing metal plate 5 and the deformable pressing mechanism 6 are fixedly connected.

[0027] Please see Figure 1 , Figure 2 , Figure 3 and Figure 4 In one embodiment, to make the deformable lifting mechanism 3 more reliable, preferably, the deformable lifting mechanism 3 includes a first anti-deformation mounting metal plate 30. The upper surface of the first anti-deformation mounting metal plate 30 is provided with a plurality of first limiting mounting metal parts 31 corresponding to the third anti-tipping bearing metal plate 5. Each first limiting mounting metal part 31 is a metal rod. One end of each first limiting mounting metal part 31 is fixedly connected to the first anti-deformation mounting metal plate 30, and the other end is fixedly connected to the third anti-tipping bearing metal plate 5. Above the first anti-deformation mounting metal plate 30, a support structure corresponding to the third anti-tipping bearing metal plate 5 is provided. The first limiting storage metal tube 33 is rotatably connected to the load-bearing metal plate 5. The upper surface of the third anti-tipping load-bearing metal plate 5 is provided with a limiting installation hole 9 for installing the first limiting storage metal tube 33. The top of the first limiting storage metal tube 33 is provided with a second anti-deformation installation metal plate 34. The first limiting storage metal tube 33 passes through the second anti-deformation installation metal plate 34. The first limiting storage metal tube 33 is fixedly connected to the second anti-deformation installation metal plate 34. The second anti-deformation installation metal plate 34 is slidably connected to the third anti-tipping load-bearing metal plate 5. The first limiting installation metal part 31 cannot slide vertically along the third anti-tipping load-bearing metal plate 5.

[0028] Please see Figure 3 and Figure 4In one embodiment, to further enrich the functionality of the deformable lifting mechanism 3, preferably, an adjustable lifting metal plate 37 is provided above the first anti-deformation mounting metal plate 30 for supporting the workpiece and adjusting its height. The adjustable lifting metal plate 37 is slidably connected to the first limiting and receiving metal tube 33. A second deformable position changing member 38 is provided on the upper surface of the first anti-deformation mounting metal plate 30 for adjusting the height of the adjustable lifting metal plate 37. The second deformable position changing member 38 is an electric telescopic rod, which is fixedly connected to the first anti-deformation mounting metal plate 30 and rotatably connected to the adjustable lifting metal plate 37. A plurality of first limiting installation metal tubes 32 are provided at one end of the first limiting storage metal tube 33 near the second anti-deformation mounting metal plate 34. The first limiting installation metal tubes 32 penetrate the side wall of the first limiting storage metal tube 33 and are fixedly connected to the first limiting storage metal tube 33. A first deformable position changing component 36 is fixedly connected inside the first limiting installation metal tube 32. The first deformable position changing component 36 is an electric telescopic rod. The telescopic end of the first deformable position changing component 36 is provided with a second deformable reinforcing plate 35 for anti-slip reinforcement of the workpiece. The second deformable reinforcing plate 35 is a rubber plate and is fixedly connected to the first deformable position changing component 36.

[0029] In another embodiment, to make the deformable lifting mechanism 3 more reliable, preferably, the deformable lifting mechanism 3 includes a first anti-deformation mounting metal plate 30. The upper surface of the first anti-deformation mounting metal plate 30 is provided with a plurality of first limiting mounting metal parts 31 corresponding to the third anti-tipping bearing metal plate 5. Each first limiting mounting metal part 31 is a metal plate, with one end fixedly connected to the first anti-deformation mounting metal plate 30 and the other end fixedly connected to the third anti-tipping bearing metal plate 5. Above the first anti-deformation mounting metal plate 30, a [missing information - likely a type of mounting metal plate] corresponding to the third anti-tipping bearing metal plate 5 is provided. The first limiting storage metal tube 33 is rotatably connected to the load-bearing metal plate 5. The upper surface of the third anti-tipping load-bearing metal plate 5 is provided with a limiting installation hole 9 for installing the first limiting storage metal tube 33. The top of the first limiting storage metal tube 33 is provided with a second anti-deformation installation metal plate 34. The first limiting storage metal tube 33 passes through the second anti-deformation installation metal plate 34. The first limiting storage metal tube 33 is fixedly connected to the second anti-deformation installation metal plate 34. The second anti-deformation installation metal plate 34 is slidably connected to the third anti-tipping load-bearing metal plate 5. The first limiting installation metal part 31 cannot slide vertically along the third anti-tipping load-bearing metal plate 5.

[0030] In another embodiment, to further enrich the functionality of the deformable lifting mechanism 3, preferably, an adjustable lifting metal plate 37 is provided above the first anti-deformation mounting metal plate 30 for supporting the workpiece and adjusting its height. The adjustable lifting metal plate 37 is slidably connected to the first limiting and receiving metal tube 33. A second deformable position changing component 38 is provided on the upper surface of the first anti-deformation mounting metal plate 30 for adjusting the height of the adjustable lifting metal plate 37. The second deformable position changing component 38 is a hydraulic cylinder, fixedly connected to the first anti-deformation mounting metal plate 30, and rotatably connected to the adjustable lifting metal plate 37. A plurality of first limiting mounting metal tubes 32 are provided at one end of the first limiting and receiving metal tube 33 near the second anti-deformation mounting metal plate 34. The first limiting mounting metal tubes 32 penetrate the side wall of the first limiting and receiving metal tube 33 and are fixedly connected to the first limiting and receiving metal tube 33. A first deformable position changing component 36 is fixedly connected inside the first limiting and receiving metal tube 32. The first deformable position changing component 36 is a hydraulic cylinder. The telescopic end of the first deformable position changing component 36 is provided with a second deformable reinforcing plate 35 for anti-slip reinforcement of the workpiece. The second deformable reinforcing plate 35 is a silicone plate and is fixedly connected to the first deformable position changing component 36.

[0031] Please see Figure 1 , Figure 5 and Figure 6 In one embodiment, to make the deformable pressing mechanism 6 more reliable, preferably, the deformable pressing mechanism 6 includes a third anti-deformation mounting metal plate 62. A plurality of second limiting mounting metal parts 60 corresponding to the third anti-tipping bearing metal plate 5 are fixedly connected to the lower surface of the third anti-deformation mounting metal plate 62. The second limiting mounting metal parts 60 are iron rods, one end of which is fixedly connected to the third anti-tipping bearing metal plate 5, and the other end of which is fixedly connected to the third anti-deformation mounting metal plate 5. The metal plate 62 is fixedly connected. The lower surface of the third anti-deformation mounting metal plate 62 is provided with a deformable pressing component 63. Several third limiting mounting metal parts 61 are provided below the third anti-deformation mounting metal plate 62 to cooperate with the deformable pressing component 63 to drive the second anti-deformation mounting metal plate 34 to rotate. The third limiting mounting metal parts 61 are iron rods. The top of the third limiting mounting metal parts 61 is fixedly connected to the deformable pressing component 63, and the bottom of the third limiting mounting metal parts 61 is fixedly connected to the second anti-deformation mounting metal plate 34.

[0032] Please see Figure 5 and Figure 6In one embodiment, to make the use of the deformable pressing assembly 63 more reliable, preferably, the deformable pressing assembly 63 includes a fifth anti-deformation mounting metal plate 632. A storage metal cylinder 638 is fixedly connected to the upper surface of the fifth anti-deformation mounting metal plate 632. During use, the storage metal cylinder 638 stores the glue. A variable speed power supply component 635, which is an electric motor, is provided above the storage metal cylinder 638. A sixth anti-deformation mounting metal plate 636 is fixedly connected to the output end of the variable speed power supply component 635. A plurality of fourth limiting mounting metal parts 634, which are iron rods, are provided on the lower surface of the sixth anti-deformation mounting metal plate 636 to cooperate with the storage metal cylinder 638 in driving the fifth anti-deformation mounting metal plate 632 to rotate. Below the fifth anti-deformation mounting metal plate 632, there is... Several hollow pressing metal parts 640, each a hollow steel pipe, are provided below the fifth anti-deformation mounting metal plate 632. A fourth anti-deformation mounting metal plate 630 is provided below the fifth anti-deformation mounting metal plate 632 for adjusting the height of the hollow pressing metal parts 640. The hollow pressing metal parts 640 pass through the fourth anti-deformation mounting metal plate 630 and are fixedly connected to the fourth anti-deformation mounting metal plate 630. Several fourth deformable position changing parts 639, each an electric telescopic rod, are fixedly connected to the lower surface of the fifth anti-deformation mounting metal plate 632 and to the bottom of the fourth deformable position changing parts 639.

[0033] Please see Figure 6In one embodiment, to further enrich the functionality of the deformable pressing component 63, preferably, the bottom of the storage metal cylinder 638 is provided with a hollow material conveying hose 631 for feeding the hollow pressing metal part 640, and the bottom side of the hollow pressing metal part 640 is provided with several discharge through holes 641 for discharging material. The top of the fourth limiting mounting metal part 634 is fixedly connected to the sixth anti-deformation mounting metal plate 636, and the bottom of the fourth limiting mounting metal part 634 is fixedly connected to the storage metal cylinder 638. Below the sixth anti-deformation mounting metal plate 636, there is a pressure regulating piston plate 633 that is slidably connected to the storage metal cylinder 638. The lower surface of the sixth anti-deformation mounting metal plate 636 is provided with several third deformable position changing parts 637 for adjusting the height of the pressure regulating piston plate 633. The third deformable position changing parts 637 are electric telescopic rods. The top of the third deformable position changing parts 637 is fixedly connected to the sixth anti-deformation mounting metal plate 636, and the bottom of the third deformable position changing parts 637 is fixedly connected to the pressure regulating piston plate 633.

[0034] In another embodiment, to make the deformable pressing mechanism 6 more reliable, preferably, the deformable pressing mechanism 6 includes a third anti-deformation mounting metal plate 62. A plurality of second limiting mounting metal parts 60 corresponding to the third anti-tipping bearing metal plate 5 are fixedly connected to the lower surface of the third anti-deformation mounting metal plate 62. The second limiting mounting metal parts 60 are made of steel plates, one end of which is fixedly connected to the third anti-tipping bearing metal plate 5, and the other end of which is fixedly connected to the third anti-deformation mounting metal plate 5. The metal plate 62 is fixedly connected. The lower surface of the third anti-deformation mounting metal plate 62 is provided with a deformable pressing component 63. Several third limiting mounting metal parts 61 are provided below the third anti-deformation mounting metal plate 62 to cooperate with the deformable pressing component 63 to drive the second anti-deformation mounting metal plate 34 to rotate. The third limiting mounting metal parts 61 are steel plates. The top of the third limiting mounting metal parts 61 is fixedly connected to the deformable pressing component 63, and the bottom of the third limiting mounting metal parts 61 is fixedly connected to the second anti-deformation mounting metal plate 34.

[0035] In another embodiment, to make the use of the deformable pressing assembly 63 more reliable, preferably, the deformable pressing assembly 63 includes a fifth anti-deformation mounting metal plate 632. A storage metal cylinder 638 is fixedly connected to the upper surface of the fifth anti-deformation mounting metal plate 632. During use, the storage metal cylinder 638 stores the adhesive. A variable speed power supply component 635, which is a pneumatic motor, is provided above the storage metal cylinder 638. A sixth anti-deformation mounting metal plate 636 is fixedly connected to the output end of the variable speed power supply component 635. A plurality of fourth limiting mounting metal parts 634, which are used to cooperate with the storage metal cylinder 638 to drive the fifth anti-deformation mounting metal plate 632 to rotate, are provided on the lower surface of the sixth anti-deformation mounting metal plate 636. The fourth limiting mounting metal parts 634 are steel plates. Below the fifth anti-deformation mounting metal plate 632, a... There are several hollow pressing metal parts 640, each of which is a hollow iron plate. Below the fifth anti-deformation mounting metal plate 632, there is a fourth anti-deformation mounting metal plate 630 for adjusting the height of the hollow pressing metal parts 640. The hollow pressing metal parts 640 pass through the fourth anti-deformation mounting metal plate 630 and are fixedly connected to the fourth anti-deformation mounting metal plate 630. Several fourth deformable position changing parts 639 for adjusting the height of the fourth anti-deformation mounting metal plate 630 are fixedly connected to the lower surface of the fifth anti-deformation mounting metal plate 632. The fourth deformable position changing parts 639 are hydraulic cylinders. The top of the fourth deformable position changing parts 639 is fixedly connected to the fifth anti-deformation mounting metal plate 632, and the bottom of the fourth deformable position changing parts 639 is fixedly connected to the fourth anti-deformation mounting metal plate 630.

[0036] In another embodiment, to further enrich the functionality of the deformable pressing component 63, preferably, the bottom of the storage metal cylinder 638 is provided with a hollow material conveying hose 631 for feeding the hollow pressing metal part 640, and the bottom side of the hollow pressing metal part 640 is provided with a plurality of discharge through holes 641 for discharging material. The top of the fourth limiting mounting metal part 634 is fixedly connected to the sixth anti-deformation mounting metal plate 636, and the bottom of the fourth limiting mounting metal part 634 is fixedly connected to the storage metal cylinder 638. Below the sixth anti-deformation mounting metal plate 636, there is a pressure regulating piston plate 633 that is slidably connected to the storage metal cylinder 638. The lower surface of the sixth anti-deformation mounting metal plate 636 is provided with several third deformable position changing parts 637 for adjusting the height of the pressure regulating piston plate 633. The third deformable position changing parts 637 are hydraulic cylinders. The top of the third deformable position changing parts 637 is fixedly connected to the sixth anti-deformation mounting metal plate 636, and the bottom of the third deformable position changing parts 637 is fixedly connected to the pressure regulating piston plate 633.

[0037] Please see Figure 1 In one embodiment, to enrich the function of the pressing device, preferably, a protective metal tube 8 is fixedly connected to the upper surface of the third anti-tipping bearing metal plate 5, and several detachable warning elements 7 are provided on the side of the second anti-tipping bearing metal plate 4 for warning purposes. The detachable warning elements 7 are LCD screens, which display warning slogans to serve as warnings during use. Several detachable warning elements 7 are spaced apart at the bottom of the side of the second anti-tipping bearing metal plate 4. Several first deformable reinforcing plates 1 are provided below the third anti-tipping bearing metal plate 5 for anti-slip reinforcement of the first anti-tipping bearing metal plate 2. The first deformable reinforcing plates 1 are rubber plates, and several first deformable reinforcing plates 1 are spaced apart at both ends of the lower surface of the first anti-tipping bearing metal plate 2. The first deformable reinforcing plates 1 are fixedly connected to the first anti-tipping bearing metal plate 2.

[0038] In another embodiment, to enrich the function of the pressing device, preferably, the upper surface of the third anti-tipping bearing metal plate 5 is fixedly connected to a protective metal tube 8, and the side of the second anti-tipping bearing metal plate 4 is provided with a number of detachable warning pieces 7 for warning purposes. The detachable warning pieces 7 are handwritten fluorescent boards, which display warning slogans to serve as warnings during use. The number of detachable warning pieces 7 are spaced apart at the bottom of the side of the second anti-tipping bearing metal plate 4. Below the third anti-tipping bearing metal plate 5, a number of first deformable reinforcing plates 1 are provided to provide anti-slip reinforcement for the first anti-tipping bearing metal plate 2. The first deformable reinforcing plates 1 are silicone plates, and the number of first deformable reinforcing plates 1 are spaced apart at both ends of the lower surface of the first anti-tipping bearing metal plate 2. The first deformable reinforcing plates 1 are fixedly connected to the first anti-tipping bearing metal plate 2.

[0039] The working principle and usage process of this invention: Before use, control the third deformable position change part 637 to retract so that the pressure regulating piston plate 633 moves up to the top of the storage metal cylinder 638. Then, the glue to be used is put into the inside of the storage metal cylinder 638. The rotation of the storage metal cylinder 638 can indicate the uniformity of the glue. Then, control the third deformable position change part 637 to extend so that the pressure regulating piston plate 633 moves down and inserts into the inside of the storage metal cylinder 638. Then, further control the third deformable position change part 637 to extend so that the glue in the storage metal cylinder 638 can be discharged to the outside through the discharge hole 641 at the bottom of the hollow pressing metal part 640.

[0040] Then, the high-speed motor component (hereinafter referred to as the workpiece) that needs to be fitted with magnets is inserted into the first limiting storage metal tube 33. At this time, the adjustable lifting metal plate 37 provides support for the workpiece. The user can adjust the lifting metal plate 37 to move up or down accordingly by extending or retracting the second deformable position change part 38, thereby causing the workpiece to move vertically accordingly. This makes it easy for the user to adjust the height of the workpiece so that the user can take out the processed workpiece. It also makes it easy for the user to adjust the high speed of the adjustable lifting metal plate 37 so that the device can be applied to different types of workpieces, thereby improving the applicability of the device.

[0041] Then, the first deformable position changer 36 is extended. At this time, the workpiece is fixed in place by the cooperation of multiple second deformable reinforcing plates 35. The magnet mounting hole of the fixed workpiece is located directly below the hollow pressing metal part 640. Then, the user inserts the bottom of the magnet into the mounting hole. Then, the fourth deformable position changer 639 is extended to make the hollow pressing metal part 640 move down to press the magnet, so as to install the magnet. At this time, the bottom of the hollow pressing metal part 640 is inserted into the workpiece. Then, the variable speed power supply part 635 is controlled to drive the workpiece to reciprocate. At this time, the hollow pressing metal part 640 reciprocates with the workpiece. The hollow pressing metal part 640 is relatively stationary with the workpiece. Then, the third deformable position changer 637 is extended to inject some glue into the workpiece through the discharge hole 641 on the hollow pressing metal part 640. At this time, the glue is evenly distributed by the reciprocating rotation of the workpiece so that the glue can better fix the magnet.

[0042] Then, control the fourth deformable position changer 639 to retract so that the hollow pressing metal part 640 moves up to above the workpiece. At this time, stop driving the workpiece to rotate. Then, the user inserts the magnets to be installed back into the target position. Then, repeat the above installation operation until all magnets are installed. Then, release the fixation on the workpiece. Then, control the second deformable position changer 38 to extend so that the adjustable lifting metal plate 37 moves up to push the workpiece out, thereby facilitating the user to unload the processed workpiece.

[0043] This invention drives the workpiece to rotate through the cooperation of multiple structures. While the workpiece is rotating, the magnets are installed and the adhesive is applied. The rotation improves the uniformity of adhesive dispersion, thereby significantly improving the installation and fixing effect of the magnets. Secondly, this invention can be applied to the installation of magnets for different types of motors, making the device more widely applicable. In addition, this invention has a simple structure, is easy to use, has low cost, and low failure rate, making it worthy of promotion and use.

[0044] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0045] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A high-speed motor magnet pressing device, comprising a first anti-tipping bearing metal plate, characterized in that: A deformable lifting mechanism is provided above the first anti-tipping bearing metal plate. A third anti-tipping bearing metal plate is also provided above the first anti-tipping bearing metal plate to provide limiting support for the deformable lifting mechanism. Several second anti-tipping bearing metal plates are provided on the upper surface of the first anti-tipping bearing metal plate to support and fix the third anti-tipping bearing metal plate. A deformable pressing mechanism is provided above the third anti-tipping bearing metal plate to press and feed the workpiece and to drive the deformable lifting mechanism to rotate. The third anti-tipping bearing metal plate and the deformable... The pressing mechanism is fixedly connected; the deformable pressing mechanism includes a third anti-deformation mounting metal plate, and a plurality of second limiting mounting metal parts corresponding to the third anti-tipping bearing metal plate are fixedly connected to the lower surface of the third anti-deformation mounting metal plate. One end of the second limiting mounting metal part is fixedly connected to the third anti-tipping bearing metal plate, and the other end of the second limiting mounting metal part is fixedly connected to the third anti-deformation mounting metal plate. A deformable pressing component is provided on the lower surface of the third anti-deformation mounting metal plate, and a plurality of components for cooperating with the deformable pressing component to drive the second anti-deformation mounting metal plate are provided below the third anti-deformation mounting metal plate. A third limiting metal component is installed to rotate the metal plate. The top of the third limiting metal component is fixedly connected to a deformable pressing assembly, and the bottom of the third limiting metal component is fixedly connected to a second anti-deformation mounting metal plate. The deformable pressing assembly includes a fifth anti-deformation mounting metal plate. A storage metal cylinder is fixedly connected to the upper surface of the fifth anti-deformation mounting metal plate. A variable speed power supply component is provided above the storage metal cylinder. A sixth anti-deformation mounting metal plate is fixedly connected to the output end of the variable speed power supply component. A plurality of actuators are provided on the lower surface of the sixth anti-deformation mounting metal plate to cooperate with the drive of the storage metal cylinder. The fifth anti-deformation mounting metal plate has a fourth limiting mounting metal component for rotation. Several hollow pressing metal components are provided below the fifth anti-deformation mounting metal plate. A fourth anti-deformation mounting metal plate is provided below the fifth anti-deformation mounting metal plate for height adjustment of the hollow pressing metal components. The hollow pressing metal components pass through the fourth anti-deformation mounting metal plate and are fixedly connected to the fourth anti-deformation mounting metal plate. Several fourth deformable position changing components for height adjustment of the fourth anti-deformation mounting metal plate are fixedly connected to the lower surface of the fifth anti-deformation mounting metal plate.

2. The high-speed motor magnet pressing device according to claim 1, characterized in that: The deformable lifting mechanism includes a first anti-deformation mounting metal plate. The upper surface of the first anti-deformation mounting metal plate is provided with several first limiting mounting metal parts corresponding to the third anti-tipping bearing metal plate. One end of each first limiting mounting metal part is fixedly connected to the first anti-deformation mounting metal plate, and the other end is fixedly connected to the third anti-tipping bearing metal plate. Above the first anti-deformation mounting metal plate is a first limiting receiving metal tube rotatably connected to the third anti-tipping bearing metal plate. The upper surface of the third anti-tipping bearing metal plate has limiting mounting holes for installing the first limiting receiving metal tube. A second anti-deformation mounting metal plate is provided at the top of the first limiting receiving metal tube, and the first limiting receiving metal tube passes through the second anti-deformation mounting metal plate. The first limiting receiving metal tube is fixedly connected to the second anti-deformation mounting metal plate, and the second anti-deformation mounting metal plate is slidably connected to the third anti-tipping bearing metal plate.

3. The high-speed motor magnet pressing device according to claim 2, characterized in that: An adjustable lifting metal plate is provided above the first anti-deformation mounting metal plate for supporting the workpiece and adjusting its height. The adjustable lifting metal plate is slidably connected to the first limiting and receiving metal tube. A second deformable position changing component is provided on the upper surface of the first anti-deformation mounting metal plate for adjusting the height of the adjustable lifting metal plate. The second deformable position changing component is fixedly connected to the first anti-deformation mounting metal plate and rotatably connected to the adjustable lifting metal plate.

4. The high-speed motor magnet pressing device according to claim 3, characterized in that: A plurality of first limiting mounting metal tubes are provided at one end of the first limiting and receiving metal tube near the second anti-deformation mounting metal plate. The first limiting mounting metal tubes are provided through the side wall of the first limiting and receiving metal tube and are fixedly connected to the first limiting and receiving metal tube. A first deformable position changing component is fixedly connected inside the first limiting and receiving metal tube. The telescopic end of the first deformable position changing component is provided with a second deformable reinforcing plate for anti-slip reinforcement of the workpiece. The second deformable reinforcing plate is fixedly connected to the first deformable position changing component.

5. The high-speed motor magnet pressing device according to claim 1, characterized in that: The bottom of the storage metal cylinder is provided with a hollow material conveying hose for feeding the hollow pressing metal part. The bottom side of the hollow pressing metal part is provided with several discharge through holes for discharging material. The top of the fourth limiting installation metal part is fixedly connected to the sixth anti-deformation installation metal plate. The bottom of the fourth limiting installation metal part is fixedly connected to the storage metal cylinder. The top of the fourth deformable position changing part is fixedly connected to the fifth anti-deformation installation metal plate.

6. The high-speed motor magnet pressing device according to claim 5, characterized in that: Below the sixth anti-deformation mounting metal plate is a pressure regulating piston plate that is slidably and sealed with the storage metal cylinder. The lower surface of the sixth anti-deformation mounting metal plate is provided with several third deformable position changing parts for adjusting the height of the pressure regulating piston plate. The top of the third deformable position changing part is fixedly connected to the sixth anti-deformation mounting metal plate, the bottom of the third deformable position changing part is fixedly connected to the pressure regulating piston plate, and the bottom of the fourth deformable position changing part is fixedly connected to the fourth anti-deformation mounting metal plate.

7. The high-speed motor magnet pressing device according to claim 1, characterized in that: The upper surface of the third anti-tipping bearing metal plate is fixedly connected with a protective metal tube, and the side of the second anti-tipping bearing metal plate is provided with several detachable warning pieces for warning purposes. The several detachable warning pieces are spaced apart at the bottom of the side of the second anti-tipping bearing metal plate.

8. The high-speed motor magnet pressing device according to any one of claims 1-7, characterized in that: Below the third anti-tipping load-bearing metal plate, there are several first deformable reinforcing plates that serve to prevent slippage and reinforce the first anti-tipping load-bearing metal plate. The several first deformable reinforcing plates are spaced apart at both ends of the lower surface of the first anti-tipping load-bearing metal plate, and the first deformable reinforcing plates are fixedly connected to the first anti-tipping load-bearing metal plate.

Citation Information

Patent Citations

  • High-speed motor magnetic steel pressing device

    CN115694104A

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    CN119284604A