Strong magnetic force power generation type on-vehicle power apparatus

The strong magnetic vehicle-mounted power device addresses vibration issues by using an elliptical support system and a sealing cylinder with gas pipes, resulting in reduced vibrations, improved heat dissipation, and enhanced operational stability.

JP2025086022AActive Publication Date: 2025-06-06HUAXIANG (SHENせん) HIGH-TECH SERVICE CO LTD
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Patent Information

Application Number
JP2023199790
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-27
Publication Date
2025-06-06
Estimated Expiration
2043-11-27

AI Technical Summary

Technical Problem

Existing strong magnetic vehicle-mounted power generating devices lack a vibration damping structure, leading to significant vibrations during operation that can affect comfort and safety.

Method used

The device incorporates a support plate with an elliptical insertion hole and a matching elliptical support rod, combined with a spring and a sealing cylinder with gas pipes, to absorb and buffer vibrations, ensuring the device only vibrates up and down and maintains stability.

Benefits of technology

This configuration effectively reduces vibrations, enhances heat dissipation through air compression and exhaust ports, and prevents the nut from loosening, ensuring stable operation and improved comfort and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a strong magnetic force power generation type on-vehicle power apparatus capable of effectively buffering vibration.SOLUTION: A strong magnetic force power generation type on-vehicle power apparatus includes a strong magnetic force power generation device 1 and a vehicle body mounting seat 3, and further includes a support plate 2 fixedly connected to the strong magnetic force power generation device and for supporting and fixing the strong magnetic force power generation device, an insertion hole drilled in the support plate, a support rod 4 inserted into and connected to the insertion hole, and a bottom plate 10 provided on the vehicle body mounting seat, where a spring 5 is fixedly connected between the bottom plate and the support plate, the insertion hole is elliptical, the support rod is also elliptical, the top end of the support rod extends from the insertion hole, a threaded portion is fixedly connected to the top end of the support rod, a nut 6 is screwed on the threaded portion, a side ring is provided on the nut, and the side ring abuts against the support plate, thereby, the present invention can reduce vibration generated by the strong magnetic force power generation device, has good heat dissipation effect, and can prevent the nut from loosening.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present invention relates to the technical field of vehicle-mounted power generating equipment, and more particularly to a strong magnetic force generating vehicle-mounted power device. [Background technology]

[0002] A strong magnetic vehicle-mounted power generating device is a device that generates electricity by utilizing the magnetic field generated by a strong magnet. Its core part includes a magnetic field source, a power generating mechanism, a mechanical power transmission system, a control system, a power storage and distribution system and other auxiliary devices. The device can convert the motion of the vehicle into the rotation of a generator shaft and generate an induced current through the relative motion between the generator shaft and a coil. The control system adjusts the current of the magnetic field source to keep the generator output stable. The strong magnetic vehicle-mounted power generating device can be widely applied to various devices that require power, such as electric vehicles, hybrid vehicles, electric bicycles, electric motorcycles, etc., to supply power to the on-board devices and improve the driving range and performance of the vehicle.

[0003] The patent disclosure number is CN217002056U, the publication date is 2022-07-19, and the name is a utility model patent for an on-board power generation system, which discloses an on-board power generation system, the on-board power generation system includes a bottom plate, a vibration control device is provided on the bottom plate, a rectifier device, a heat dissipation device, a control device, a battery, a sound suppression device, an engine and a generator are provided on the vibration suppression device, a transmission assembly is provided between the engine and the generator, the sound suppression device is connected to the engine, a magnetic attraction member is provided on the bottom plate, a vibration suppression member is provided between the vibration suppression device and the bottom plate, an outer shell is provided on the bottom plate, the rectifier device, the generator, the heat dissipation device, the battery and the vibration suppression device are provided in the outer shell, and a heat dissipation part is provided on the outer shell. The invention has a compact and reasonable structure of the entire system, fully meets the portability demands of the on-board power generation system, and has excellent vibration suppression and heat dissipation effects.

[0004] However, the above-mentioned invention does not include a vibration damping structure, and since the operation of the high-magnetic power generating equipment generates large vibrations that may affect comfort and safety during operation, it is necessary to provide a vibration damping mechanism in the high-magnetic power generating equipment. Summary of the Invention [Problem to be solved by the invention]

[0005] SUMMARY OF THE PRESENT EMBODIMENTS The present invention aims to provide a ferromagnetic power generating vehicle-mounted power device in order to solve the problems in the prior art. [Means for solving the problem]

[0006] In order to achieve the above objectives, the present invention adopts the following technical solutions:

[0007] The strong magnetic force generating vehicle-mounted power equipment comprises a strong magnetic force generating device and a vehicle body mounting seat, and further comprises a support plate fixedly connected to the strong magnetic force generating device for supporting and fixing the strong magnetic force generating device, an insertion hole opened in the support plate, a support rod inserted and connected into the insertion hole, and a bottom plate provided on the vehicle body mounting seat, and a spring is fixedly connected between the bottom plate and the support plate.

[0008] Preferably, a clamping plate is provided on the vehicle body mounting seat, and the bottom plate is provided above the clamping plate.

[0009] Preferably, the insertion hole is elliptical and the support rod is also elliptical, with a top end of the support rod extending out of the insertion hole.

[0010] Preferably, a threaded portion is fixedly connected to the top end of the support rod, a nut is screwed onto the threaded portion, a side ring is provided on the nut, and the side ring abuts against a support plate.

[0011] Preferably, a sealing cylinder is provided within the clamping plate, a piston block is slidably connected within the sealing cylinder, and the piston block is fixedly connected to a bottom end of a support rod.

[0012] Furthermore, a first gas pipe and a second gas pipe are connected to the inside of the sealing cylinder.

[0013] Furthermore, the connection portion between the first gas pipe and the seal cylinder is placed at the bottom of the seal cylinder, and the connection portion between the second gas pipe and the seal cylinder is placed at the top of the seal cylinder.

[0014] Furthermore, a first exhaust port and a second exhaust port are formed in the bottom plate, and the first exhaust port and the second exhaust port are connected to a first gas pipe and a second gas pipe, respectively.

[0015] Preferably, a gear is provided on the top surface of the nut, a limit plate is provided on the bottom plate, the limit plate is in close contact with the edge of the support plate, an opening is opened in the limit plate, both the upper and lower surfaces of the opening are set to be arcuate surfaces, a swash plate is slidably connected within the opening, and a chute is opened in the swash plate.

[0016] Furthermore, a slide rail is provided on the support plate, a positioning plate is attached to the slide rail, a screw hole is drilled in the positioning plate, an insertion rod is screwed into the screw hole, the swash plate slides within the positioning plate, the insertion rod slides within the chute, a drive unit is provided on the limit plate, the positioning plate is fixedly connected to the output end of the drive unit, and a push rod that is aligned with a gear is fixedly connected to the swash plate. Effect of the Invention

[0017] Compared with the prior art, the present invention provides a strong magnetic force generating vehicle-mounted power device, and has the following beneficial effects:

[0018] 1. The strong magnetic generating vehicle-mounted power equipment is designed so that the strong magnetic generating device can only vibrate up and down through the alignment of the oval insertion hole and the support rod. Combined with the spring, it can effectively absorb and buffer the vibrations generated by the strong magnetic generating device or the vibrations caused by external forces, which is helpful in improving driving comfort.

[0019] 2. In the strong magnetic generating type vehicle-mounted power equipment, the air at the upper and lower ends of the sealing tube is compressed by the piston block, so that the first exhaust port and the second exhaust port can continuously blow air to the heat dissipation part of the strong magnetic generating device, thereby improving the heat dissipation effect of the strong magnetic generating device.

[0020] 3. In the strong magnetic generating vehicle-mounted power equipment, due to the mutual fitting of the swash plate and the limit plate, when the strong magnetic generating device swings up and down, the push rod rotates the gear and further tightens the nut, preventing the nut from loosening and improving the stability of the operation of the strong magnetic generating device.

[0021] The uninvolved parts of the ferromagnetic power generating vehicle-mounted power equipment are the same as or can be realized using conventional technology, and the present invention can reduce the vibration generated by the ferromagnetic power generating device, has a good heat dissipation effect, prevents the nut from loosening, and ensures the stability of the continuous operation of the ferromagnetic power generating device. [Brief description of the drawings]

[0022] [Figure 1] 1 is a schematic diagram showing the overall structure of a ferromagnetic generating type vehicle-mounted power device according to the present invention; [Diagram 2] 1 is a side view showing a ferromagnetic generating type vehicle-mounted power device according to the present invention. [Diagram 3] 2 is a structural schematic diagram showing the inside of a clamping plate of a ferromagnetic generating type vehicle-mounted power device according to the present invention. FIG. [Figure 4] 4 is an enlarged structural schematic diagram of a portion A in FIG. 3 of a ferromagnetic generating type vehicle-mounted power device according to the present invention. FIG. [Diagram 5] 1 is an exploded view showing a ferromagnetic generating type vehicle-mounted power device according to the present invention; [Figure 6] 6 is an enlarged structural schematic diagram of a portion B in FIG. 5 of a ferromagnetic generating type vehicle-mounted power device according to the present invention. [Figure 7] FIG. 2 is an exploded view showing a ferromagnetic generating type vehicle-mounted power device according to the present invention. [Figure 8] 8 is an enlarged structural schematic diagram of a portion C in FIG. 7 of a ferromagnetic generating type vehicle-mounted power device according to the present invention. FIG. [Figure 9] FIG. 3 is an exploded view showing a ferromagnetic generating type vehicle-mounted power device according to the present invention. [Figure 10] 10 is an enlarged schematic structural view of a portion D in FIG. 9 of a ferromagnetic generating type vehicle-mounted power device according to the present invention. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0023] The following describes the technical solutions in the embodiments of the present application in a clear and complete manner in combination with the drawings in the embodiments of the present application, and the clear and described embodiments are not all the embodiments but only some of the embodiments of the present application.

[0024] In describing the present invention, it will be understood that terms indicating directions and positional relationships, such as "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inside", "outside", etc., are based on the directions or positional relationships shown in the drawings and are merely intended to facilitate and simplify the description of the present invention, and do not indicate or imply that the devices or elements referred to must have a particular orientation, configuration and operation in a particular orientation, and cannot be considered as limiting the present invention.

[0025] Example 1

[0026] 1 to 10, a strong magnetic force generating vehicle-mounted power equipment includes a strong magnetic force generating device 1 and a vehicle body mounting seat 3, and further includes a support plate 2 that is fixedly connected to the strong magnetic force generating device 1 and supports and fixes the strong magnetic force generating device 1, an insertion hole 16 formed in the support plate 2, a support rod 4 that is inserted and connected into the insertion hole 16, and a bottom plate 10 provided on the vehicle body mounting seat 3, and a spring 5 is fixedly connected between the bottom plate 10 and the support plate 2.

[0027] In the present invention, when used by a user, the ferromagnetic generating device 1 is mounted on the vehicle body mounting seat 3, the support plate 2 on the ferromagnetic generating device 1 is mounted by the support rod 4, the support rod 4 is inserted and connected into the insertion hole 16 on the support plate 2, and the cross-sectional shape of the insertion hole 16 and the support rod 4 is elliptical. When the ferromagnetic generating device 1 is subjected to vibration during operation, the ferromagnetic generating device 1 does not rotate or sway left and right, but only vibrates up and down following the support rod 4. When the ferromagnetic generating device 1 vibrates up and down following the support rod 4, the spring 5 absorbs energy from the ferromagnetic generating device 1 to cushion it, and cushions and protects the ferromagnetic generating device 1.

[0028] Example 2

[0029] 1 to 10, the vehicle body mounting seat 3 includes a strong magnetic generating device 1 and a support plate 2 fixedly connected to the strong magnetic generating device 1 for supporting and fixing the strong magnetic generating device 1, an insertion hole 16 formed in the support plate 2, a support rod 4 inserted and connected into the insertion hole 16, and a bottom plate 10 provided on the vehicle body mounting seat 3, a spring 5 is fixedly connected between the bottom plate 10 and the support plate 2, a clamping plate 13 is provided on the vehicle body mounting seat 3, the bottom plate 10 is provided above the clamping plate 13, the insertion hole 16 is elliptical, the support rod 4 is also elliptical, the top end of the support rod 4 extends from the insertion hole 16, a screw portion 15 is fixedly connected to the top end of the support rod 4, and a nut 6 is screwed onto the screw portion 15. A side ring 17 is provided on the nut 6, the side ring 17 is abutted against the support plate 2, a seal tube 7 is provided in the clamping plate 13, a piston block 14 is slidably connected inside the seal tube 7, the piston block 14 is fixedly connected to the bottom end of the support rod 4, a first gas pipe 8 and a second gas pipe 9 are respectively communicated inside the seal tube 7, the connection part between the first gas pipe 8 and the seal tube 7 is placed at the bottom of the seal tube 7, the connection part between the second gas pipe 9 and the seal tube 7 is placed at the top of the seal tube 7, a first exhaust port 11 and a second exhaust port 12 are opened in the bottom plate 10, and the first exhaust port 11 and the second exhaust port 12 are respectively communicated with the first gas pipe 8 and the second gas pipe 9.

[0030] In the present invention, the ferromagnetic generating device 1 is mounted on the vehicle body mounting seat 3, the support plate 2 on the ferromagnetic generating device 1 is mounted by the support rod 4, the top of the support rod 4 and the support plate 2 are fixed and connected by fitting the nut 6 and the threaded portion 15, the side ring 17 is tightly attached to the support plate 2, and the connection strength between the support plate 2 and the support rod 4 is further strengthened, the support rod 4 is inserted and connected into the insertion hole 16 on the support plate 2, and the cross-sectional shape of the insertion hole 16 and the support rod 4 is elliptical, so that when the ferromagnetic generating device 1 is subjected to vibration during operation, the ferromagnetic generating device 1 does not rotate, but only vibrates up and down following the support rod 4, When the ferromagnetic generating device 1 vibrates up and down following the support rod 4, the spring 5 absorbs the energy of the ferromagnetic generating device 1 and cushions it.

[0031] In one embodiment, when the ferromagnetic generating device 1 vibrates up and down, the support rod 4 causes the piston block 14 to move back and forth within the sealing cylinder 7, so that the piston block 14 compresses the air at both the upper and lower ends of the sealing cylinder 7 back and forth. Since the diameters of the first gas pipe 8 and the second gas pipe 9 are much smaller than that of the sealing cylinder 7, when the piston block 14 moves back and forth within the sealing cylinder 7, the sealing cylinder 7 acts as a sort of damper, and can cushion the vibrations that the ferromagnetic generating device 1 receives. At the same time, the piston block 14 reciprocates and compresses the air at the upper and lower ends of the sealing tube 7, and the air at the upper and lower ends of the sealing tube 7 is discharged through the first gas pipe 8 and the second gas pipe 9, and then discharged to the heat dissipation points of the ferromagnetic generating device 1 through the first exhaust port 11 and the second exhaust port 12, thereby enhancing the heat dissipation of the ferromagnetic generating device 1. At the same time, when the piston block 14 compresses the air at the upper end of the sealing tube 7, the lower end of the sealing tube 7 absorbs air from the outside, and vice versa, so that the air near the ferromagnetic generating device 1 circulates, and the heat dissipation effect is high.

[0032] Example 3

[0033] 1 to 10, a gear 19 is provided on the top surface of the nut 6, a limit plate 18 is provided on the bottom plate 10, the limit plate 18 is in close contact with the edge of the support plate 2, an opening 23 is provided on the limit plate 18, both upper and lower surfaces of the opening 23 are set to arc surfaces 24, a swash plate 20 is slidably connected within the opening 23, a chute 21 is provided on the swash plate 20, a slide rail 26 is provided on the support plate 2, a positioning plate 27 is attached to the slide rail 26, a screw hole 29 is provided on the positioning plate 27, an insertion rod 28 is screwed into the screw hole 29, the swash plate 20 slides within the positioning plate 27, and the insertion rod 28 slides within the chute 21, a drive unit 25 is provided on the limit plate 18, the positioning plate 27 is fixedly connected to the output end of the drive unit 25, and a push rod 22 that is aligned with the gear 19 is fixedly connected to the swash plate 20.

[0034] In the present invention, when the ferromagnetic generator 1 vibrates up and down following the support rod 4, the positioning plate 27 synchronously swings the swash plate 20 and the ferromagnetic generator 1 up and down via the insertion rod 28. Due to the shock absorbing and energy absorbing functions of the spring 5 and the seal tube 7, the amplitude of the up and down vibration of the ferromagnetic generator 1 is small. The shape of the swash plate 20 is similar to a triangular plate, and both sides of the swash plate 20 are in contact with the arc surface 24. When the swash plate 20 oscillates up and down synchronously following the ferromagnetic generating device 1, the limit plate 18 does not move and both sides of the swash plate 20 abut against the arcuate surface 24. Therefore, when the swash plate 20 moves downward, the arcuate surface 24 presses against both sides of the swash plate 20, moving the swash plate 20 toward the nut 6 so that the tip of the swash plate 20 is positioned within the opening 23. The swash plate 20 pushes the push rod 22 to move toward the nut 6. The push rod 22 has a plurality of fixed teeth which abut against the gear 19. As the push rod 22 moves toward the nut 6, the fixed teeth on the push rod 22 rotate the gear 19, causing the nut 6 to rotate in the tightening direction, preventing the nut 6 from loosening and further improving the stability of the ferromagnetic generating device 1 when it is in operation.

[0035] The drive unit 25 is an electric push rod. When the swash plate 20 moves up, the drive unit 25 pushes the positioning plate 27 to slide inward, so that the push rod 22 separates from the gear 19. The two upper and lower arcuate surfaces 24 push without being aligned with the gear 19, and the swash plate 20 returns to its original position. At this time, the drive unit 25 controls the push rod 22 to come into close contact with the gear 19 again. There are multiple fixed teeth on the push rod 22. When the drive unit 25 controls the push rod 22 to come into close contact with the gear 19, one fixed tooth is always in contact with the tooth on the gear 19, and the drive unit 25 controls the push rod 22 to come out of contact with the gear 19, so that the gear 19 is interlocked with the push rod 22 when the swash plate 20 returns to its original position, preventing the nut 6 from being loosened. The limit plate 18 is in close contact with the support plate 2, thereby acting as a limit for the ferromagnetic power generating device 1, and aligning the insertion hole 16 with the support rod 4 to prevent the ferromagnetic power generating device 1 from shifting left and right when vibrating, ensuring that the ferromagnetic power generating device 1 only swings up and down; There are two screw holes 29 on the positioning plate 27, one of which penetrates one end of the positioning plate 27 and the other is drilled on the inside of the positioning plate 27. The head and tail of the insertion rod 28 are both threaded, and the two thread grooves are aligned with the two screw holes 29 respectively. The middle of the insertion rod 28 is smooth, so that the swash plate 20 can easily slide on the insertion rod 28 through the chute 21. In one embodiment, when the ferromagnetic generating device 1 is installed, after the nut 6 is tightened, the push rod 22 and the gear 19 on the nut 6 are brought into close contact with each other, the port of the slide rail 26 is removable, when the positioning plate 27 is installed in the slide rail 26, the swash plate 20 is placed in the positioning plate 27, and mounting guide rails are provided on the vehicle body mounting base 3 and the bottom plate 10, and the limit plate 18 is installed by the mounting guide rails, and then the limit plate 18 is fixed with screws, when the limit plate 18 is installed, the swash plate 20 is placed in the opening 23, and after installation, the insertion rod 28 is inserted into the screw hole 29, and the insertion rod 28 is inserted into the chute 21.

[0036] The above are preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any equivalent replacement or change made by anyone skilled in the art based on the technical solutions and inventive concepts of the present invention within the technical scope disclosed in the present invention should be included in the protection scope of the present invention. [Explanation of symbols]

[0037] 1 Strong magnetic force generator 2 Support plate 3 Vehicle mounting base 4 Support Rod 5. Spring 6 Nuts 7 Seal tube 8. First Gas Pipe 9. Second Gas Pipe 10 Bottom plate 11 First exhaust port 12 Second exhaust port 13 Holding plate 14 Piston block 15 Threaded section 16 Insertion Hole 17 Side Ring 18 Limit Board 19 Gears 20 Swash plate 21 SHOTS 22 Push rod 23 Aperture 24 Circular Surface 25 Drive unit 26 Slide rail 27 Positioning plate 28 Insertion Rod 29 screw holes.

Claims

1. A strong magnetic force generating vehicle-mounted power device, comprising a strong magnetic force generating device (1) and a vehicle body mounting base (3), A support plate (2) fixedly connected to the ferromagnetic generating device (1) for supporting and fixing the ferromagnetic generating device (1); An insertion hole (16) formed in the support plate (2); A support rod (4) that is inserted and connected into the insertion hole (16); and a bottom plate (10) provided on the vehicle body mounting seat (3), A strong magnetic force generating vehicle-mounted power device, characterized in that a spring (5) is fixedly connected between the bottom plate (10) and the support plate (2).

2. 2. The ferromagnetic generating vehicle-mounted power device according to claim 1, wherein a clamping plate (13) is provided on the vehicle body mounting seat (3), and the bottom plate (10) is provided above the clamping plate (13).

3. The ferromagnetic generating vehicle-mounted power equipment according to claim 1, characterized in that the insertion hole (16) is elliptical, the support rod (4) is also elliptical, and the top end of the support rod (4) extends from the insertion hole (16).

4. The ferromagnetic generating vehicle-mounted power device according to claim 1, characterized in that a threaded portion (15) is fixedly connected to the top end of the support rod (4), a nut (6) is screwed onto the threaded portion (15), a side ring (17) is provided on the nut (6), and the side ring (17) abuts against a support plate (2).

5. The ferromagnetic generating vehicle-mounted power equipment according to claim 2, characterized in that a sealing tube (7) is provided within the clamping plate (13), a piston block (14) is slidably connected within the sealing tube (7), and the piston block (14) is fixedly connected to the bottom end of the support rod (4).

6. 6. The ferromagnetic generating vehicle-mounted power device according to claim 5, wherein a first gas pipe (8) and a second gas pipe (9) are connected to the inside of the sealing cylinder (7).

7. 7. The ferromagnetic generating vehicle-mounted power device according to claim 6, characterized in that the connection between the first gas pipe (8) and the seal tube (7) is placed at the bottom of the seal tube (7), and the connection between the second gas pipe (9) and the seal tube (7) is placed at the top of the seal tube (7).

8. The ferromagnetic generating vehicle-mounted power device according to claim 7, characterized in that a first exhaust port (11) and a second exhaust port (12) are opened in the bottom plate (10), and the first exhaust port (11) and the second exhaust port (12) are connected to a first gas pipe (8) and a second gas pipe (9), respectively.

9. The ferromagnetic generating vehicle-mounted power device according to claim 4, characterized in that a gear (19) is provided on the top surface of the nut (6), a limit plate (18) is provided on the bottom plate (10), the limit plate (18) is in close contact with the edge of the support plate (2), an opening (23) is opened in the limit plate (18), both the upper and lower surfaces of the opening (23) are set to arcuate surfaces (24), a swash plate (20) is slidably connected within the opening (23), and a chute (21) is opened in the swash plate (20).

10. The ferromagnetic generating vehicle-mounted power device according to claim 9, characterized in that a slide rail (26) is provided on the support plate (2), a positioning plate (27) is attached to the slide rail (26), a screw hole (29) is drilled in the positioning plate (27), an insertion rod (28) is screwed into the screw hole (29), the swash plate (20) slides within the positioning plate (27), the insertion rod (28) slides within the chute (21), a drive unit (25) is provided on the limit plate (18), the positioning plate (27) is fixedly connected to an output end of the drive unit (25), and a push rod (22) that is aligned with a gear (19) is fixedly connected to the swash plate (20).

Citation Information

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