Magnet interaction force one-force-two-purpose device

By designing a magnet interaction force one-force and two-use device, the pushing and pushing action of the iron sheet in the internal and external magnet gaps is solved, and the existing magnet force conduction equipment is achieved with an efficient and environmentally friendly magnetic conduction effect.

CN119945085APending Publication Date: 2025-05-06郑学明
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Patent Information

Application Number
CN202411864430.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

During the magnet interaction process, existing magnet force conduction equipment is difficult to effectively utilize the interaction force, resulting in low force conduction efficiency.

Method used

A magnet interaction force one-force and two-use device is designed. The iron sheet connecting the connecting rod and the disc is rotated downward through the large shaft belt, and the inner magnet on the rotating edge shaft of the gear belt interacts with the outer magnet, so that the iron sheet can be pushed in and out in the gap between the inner and outer magnets, thereby efficiently using the interaction force.

Benefits of technology

It realizes efficient magnetic force transmission, improves force conduction efficiency, and is simple in manufacturing, small in size and environmentally friendly.

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Abstract

The invention discloses a magnet interaction force one-force-two-purpose device which is characterized in that a large shaft is driven to rotate to enable an iron sheet fixed on a connecting rod of a round sheet to downwards turn to the right side, a gear on the large shaft is driven to rotate a side shaft, the gear of the side shaft drives an inner magnet fixed on a short shaft to downwards turn, and when all outer magnets on the lower side are overlapped with the iron sheet, the inner magnet is driven to rotate to the right side; when the iron sheet enters and is overlapped with the lower outer magnet, the front section of the inner magnet is fully overlapped with the lower outer magnet at the same time, the iron sheet firstly comes out and is overlapped with the lower outer magnet, and the iron sheet replaces the inner magnet to be attracted with the outer magnet and replaces the outer magnet to be attracted with the inner magnet. The force applied by the iron sheet out of the gap between the outer magnet and the inner magnet is smaller than the force applied by the iron sheet to attract the outer magnet, and the force applied by the inner magnet out of the outer magnet is approximately equal to the force applied by the inner magnet during entering, so that redundant force exists and is transmitted to the outside through the large shaft.
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Description

Technical field:

[0001] The invention relates to magnetic energy conduction equipment, belonging to a magnetic force conduction machine, and in particular to a machine in which the interaction force is cut off during the magnetic force conduction process. Background technology:

[0002] Humans can convert power into particles, creating a precedent for converting power into object particles, such as using power for power generation, where electric power is composed of electric particles. When a magnet collides with a copper block quickly, it will generate repulsion, and when it leaves the copper block quickly, it will generate attraction. For objects in the gap between the two magnets, the force that reduces the attraction will be pushed out of the gap, and the force that increases the attraction will be pulled into the gap. There is no force that increases or decreases the attraction, and there is no force that is sucked in or pushed out of the gap. The attraction of opposite poles of magnets will reduce the amount of magnetic field particles transmitted at the junction, while the repulsion of like poles will increase the amount of magnetic field particles transmitted at the junction. When the south and north poles of magnets are used to attract objects, the amount of magnetic field transmitted will be reduced, and it will play the role of cutting off and replacing the other side, so that power is transmitted to the outside world. Summary of the invention:

[0003] The present invention provides a device for magnet interaction force with two functions, which rotates the large shaft to make the iron sheet connected with the connecting rod and the round sheet turn downward to the right, and makes the gear drive the side shaft, and the gear of the side shaft drives the inner magnet on the short shaft to turn downward and forward, and when the outer magnet below completely overlaps with the front section of the iron sheet, the front end of the inner magnet begins to overlap with the outer magnet below. When the back of the iron sheet enters and overlaps with the outer magnet below, the front section of the inner magnet also completely overlaps with the outer magnet below at the same time, and when the back of the iron sheet comes out of the outer magnet below, the front end of the iron sheet begins to enter the outer magnet above, and at this time, the back of the inner magnet also enters and overlaps with the outer magnet below at the same time. When the back of the inner magnet comes out of the outer magnet below, the front end of the inner magnet simultaneously begins to overlap with the outer magnet above, and the front section of the iron sheet also completely overlaps with the outer magnet above at the same time. The iron sheet replaces the inner magnet to attract the outer magnet, and replaces the outer magnet to attract the inner magnet. The force when the iron sheet goes out of the gap between the outer magnet and the inner magnet is less than the force when it enters and attracts the outer magnet relatively, and the force used by the inner magnet to go out of the outer magnet is about the same as the force to attract the iron sheet. The two outer magnets are fixed on the outer shell and cannot move. The gear is in the gear box, and the gear box is fixed by a connecting rod, which is fixed on the rear cover and the outer shell respectively. The large shaft passes through the sleeve fixed on the front cover, and the excess force is transmitted by the large shaft.

[0004] The structure of the magnet interaction force dual-purpose device is as follows:

[0005] The outer magnet, the inner magnet and the iron sheet are made into segments that can form a bead shape. The length and width of the outer magnet are about 1 / 6 of the outer circumference of the iron sheet. The length of the iron sheet is about 1 / 3 of the circumference and the width is 1 / 6. The length of the inner magnet is about 1 / 3 of the circumference and the width is 1 / 6. There are two outer magnets, one inner magnet and one iron sheet. The inner magnet and the iron sheet are movable, the two outer magnets are fixed, and the inner magnet is attracted by the south and north pole interfaces of the outer magnet. The front section of the large shaft is connected with two bearings in the sleeve fixed on the front cover, and the front cover is fixed to the front of the shell with screws. The large shaft is connected with a disc, an oil seal, a bearing, and a gear at the back. There are four connecting rods behind the disc, and the four connecting rods are connected with a ring composed of an iron sheet and a balance sheet. The oil seal and the bearing are installed on the convex disc. The disc, the gear and the large shaft are correspondingly provided with grooves, and the bayonet is installed in the groove. The convex disc for installing the oil seal and bearing of the large shaft is the front of the gearbox. The convex part of the convex disc has a hole, and the oil seal and bearing of the side shaft are installed in the hole. The first gear, a bearing and the second gear are connected to the rear of the side shaft. The convex disc is connected to the right side of the box, and the first gear is connected to the gear on the large shaft. The bearing is installed on the convex block on the inner surface of the right side of the gearbox. The first gear, the second gear and the side shaft have corresponding grooves, and the grooves are installed with a bayonet pin. The second gear is connected to the gear on the short shaft. The convex part of the inner surface of the rear section of the right side of the gearbox is opened with a hole, and the bearing of the short shaft is installed. The rear section of the left side of the gearbox has a hole, and the oil seal and bearing of the short shaft are installed in the hole. A gear is connected to the right section of the short shaft, and the gear and the short shaft have corresponding grooves, and the grooves are installed with a bayonet pin. The left side of the gearbox has a convex disc on the front section, the back of the gearbox is fixed with a connecting rod, the right side of the connecting rod is fixed to the connecting rod of the outer shell, the back of the connecting rod is fixed to the back cover, the right connecting rod is fixed to the inner surface of the outer shell with screws, the top of the gearbox is a cover, the gearbox cover is fixed to the gearbox with screws. The left section of the short shaft is strung with discs, the discs and the short shafts are correspondingly grooved, the grooves are installed with bayonet pins, the outer periphery of the discs is inherently ringed, the outer periphery of the ring is grooved, and an inner magnet is inserted into the groove. The connecting rods on the left side of the two convex discs in front of the gearbox are fixed with screws, the back section of the connecting rod is inherently connected to the connecting rod of the outer shell, the back of the connecting rod is connected to the back cover, the two connecting rods are respectively fixed to the outer shell and the back cover with screws, and the back cover is fixed to the back of the outer shell with screws, and the two connecting rods, the back cover and the outer shell have corresponding holes for screws. The external magnet is installed in the frame, and the frame has two protrusions on the side. There are two frames, and an external magnet is installed in each frame. The two frames are fixed to the two openings of the outer shell with screws. The protrusions of the two frames and the outer shell have corresponding holes for screws. The frame is not sealed on the inside and outside. The inner surface is not sealed so that it can be close to the iron sheet, and the outer surface is not sealed for installing the external magnet.

[0006] The theoretical basis of the present invention is: the magnet has permanent attraction and repulsion, the magnetic force transmission at the joint of the two magnets will be reduced, and the object in the gap between the two magnets will have a repulsion force to be pushed out of the gap when the attraction is reduced, and a pulling force to be sucked into the gap when the attraction is increased, and there is no force to be sucked into and pushed out of the gap without increasing or decreasing the attraction. After the south and north poles of the outer magnet are attracted to the iron sheet, the south and north poles of the inner magnet are attracted to the iron sheet, so that the iron sheet is clamped in the gap, and the attraction force between the iron sheet and the inner and outer magnets is about the same. When the iron sheet goes out of the gap between the inner and outer magnets, the attraction force between the inner magnet and the outer magnet is about the same as the attraction force between the inner magnet and the iron sheet. The inner magnet uses the south and north poles of the inner magnet to attract the south and north poles of the outer magnet, so that the force used by the iron sheet when going out of the gap between the inner and outer magnets is less than the attraction force obtained when entering the gap, and the force used by the inner magnet to go out of the overlap line of the outer magnet is about the same as the force obtained when entering, so there is redundant attraction and pulling force. The outer magnet is used for two purposes at once. It pulls the iron sheet in, and when it is attracted by the inner magnet, it pushes the iron sheet out with the inner magnet. The iron sheet replaces the suction force of one side, and cuts off the magnetic force of the other side. The iron sheet can be replaced by an object attracted by a magnet. When working, the large shaft is driven to turn the iron sheet connected to the connecting rod and the disc downward to the right, and the gear of the large shaft is driven to turn the side shaft, and the gear of the side shaft is driven to turn the inner magnet on the short shaft downward to the front. When the outer magnet below completely overlaps with the front section of the iron sheet, the front end of the inner magnet begins to overlap with the outer magnet below. When the back of the iron sheet enters the outer magnet below to overlap, the front section of the inner magnet also completely overlaps with the outer magnet below. When the back of the iron sheet comes out of the outer magnet below, the front end of the iron sheet begins to enter and overlap with the outer magnet above, and at this time, the back of the inner magnet also enters the outer magnet below to overlap. When the rear end of the inner magnet comes out of the outer magnet below, the front end of the inner magnet begins to overlap with the outer magnet above, and the front end of the iron sheet also completely overlaps with the outer magnet above. The large shaft passes through the sleeve fixed on the front cover, and the excess force is transmitted by the large shaft.

[0007] Advantages and effects of the present invention:

[0008] 1. High efficiency.

[0009] 2. Simple manufacturing and small size.

[0010] 3. Environmental protection. Description of the drawings:

[0011] Figure 1 It is a structural schematic diagram of the magnet interaction force dual-purpose device of the present invention.

[0012] Figure number identification: (1) main shaft, (2) side shaft, (3) short shaft, (4, 5) disc, (6, 7, 8, 9, 10, 11, 12) connecting rod, (13) sleeve, (14) front cover, (15) rear cover, (16) housing, (17, 18, 19, 20, 21, 22) screws, (23, 24, 25, 26) gears, (27, 28, 29, 30, 31, 32, 33) bearings, (34, 35, 36) oil seal, (37) inner magnet, (38) bump, (39) ring, (40) balance plate, (41) iron sheet, (42, 43) convex disc, (44, 45) box edge. Specific implementation method:

[0013] As shown in the figure, the front section of the main shaft (1) is connected with the bearings (27, 28) in the sleeve (13) fixed on the front cover (14), and the front cover (14) is fixed to the front end of the housing (16) by screws (17). The main shaft (1) is connected with the disc (4), oil seal (34), bearing (29) and gear (23) backward, the disc (4) has connecting rods and connecting rods (6, 7, 8) behind, and the connecting rods and connecting rods (6, 7, 8) have a ring composed of iron sheet (41) and balance sheet (40), and the disc (4), gear (23) and the main shaft (1) have corresponding grooves, and the grooves are equipped with bayonet pins. Two holes are formed on the convex disc (42), one hole is provided with an oil seal (34) and a bearing (29), and the other hole is provided with an oil seal (35) and a bearing (30). The oil seal (35) and the bearing (30) are sleeved on the front end of the side shaft (2), and the side shaft (2) is connected with a gear (24), a bearing (31) and a gear (25) in series at the rear. The gears (24, 25) and the side shaft (2) are provided with grooves correspondingly, and a bayonet is installed in the grooves. The gear (24) is connected to the gear (23), and the gear (25) is connected to the gear (26). The bearing (31) is installed in a hole formed on a convex block (38) fixed on the inner surface of the box side (45), and the front end of the box side (45) is connected to the convex disc (42). The box side (44) is provided with a hole to hold the oil seal (36) and bearing (32) of the short shaft (3). The left section of the short shaft (3) is connected with a disc (5), and the right section of the short shaft (3) is connected with a gear (26) and a bearing (33). The short shaft (3), the disc (5) and the gear (26) are provided with grooves correspondingly, and a bayonet is installed in the groove. The bearing (33) is installed in a hole opened on the raised part of the inner surface of the rear section of the box side (45). The box side (44) is bent forward to connect the convex disc (43). The disc (5) is provided with a circular ring (39) on the periphery, and a groove is provided on the periphery of the circular ring (39), and an inner magnet (37) is installed in the groove. A connecting rod (12) is fixed on the outside of the rear of the gear box, and a connecting rod (11) is provided on the right side of the connecting rod (12). The connecting rod (11) is fixed to the inner surface of the housing (16) by a screw (22), and the rear end of the connecting rod (12) is connected to the rear cover (15). The upper part of the gearbox is a cover, and the gearbox cover is fixed to the gearbox by screws. The connecting rod (9) is fixed to the front section of the left side of the gearbox by screws (18), and the rear section of the connecting rod (9) is connected to the connecting rod (10). The connecting rod (10) is fixed to the inner surface of the shell (16) by screws (19), and the rear end of the connecting rod (9) is fixed to the inner surface of the rear cover (15) by screws (21), and the rear cover (15) is fixed to the shell (16) by screws (20). The external magnet is installed in the frame, and the frame has two protrusions on the side. There are two frames, and the two frames are fixed to two holes opened on the shell (16) by screws. The protrusions of the shell (16) and the two frames have corresponding holes for screws. The inner and outer surfaces of the frame are not sealed. The inner surface is not sealed so that the external magnet can be close to the iron sheet (41), and the outer surface is not sealed so that the external magnet can be installed.During installation, the gears (24, 25) are placed in the gear box, the bearing (31) is mounted on the convex block (38), the side shaft (2) is inserted into the hole opened on the convex part of the convex disc (42), the gears (24) and the bearing (31) are strung together, two bayonet pins are installed, the side shaft (2) and the gears (24, 25) are installed in place, the bearing (30) and the oil seal (35) are mounted on the convex disc (42), and the bearing (30) and the oil seal (35) are sleeved on the side shaft (2). The bearing (33) is installed on the inner surface of the rear section of the box edge (45), the gear (26) is placed in the gear box, the short shaft (3) is threaded into the gear (26) from the box edge (44), the latch pin is installed on the short shaft (3), the gears (25 and 26) are aligned, the short shaft (3) is threaded into the bearing (33), the gear (26) is installed in place, the bearing (32) and the oil seal (36) are installed on the box edge (44), the bearing (32) and the oil seal (36) are sleeved on the short shaft (3). The inner magnet (37) is installed in the groove opened on the ring (39), the latch pin is installed on the short shaft (3), and the disc (5) connected to the ring (39) is installed on the short shaft (3). Put the gear (23) into the gear box, install the card pin on the main shaft (1), insert the main shaft (1) from the front into the hole opened on the convex disc (42), string the gear (23), align the gears (23 and 24), install the bearing (29) and the oil seal (34) on the convex disc (42), and make the bearing (29) and the oil seal (34) cover the main shaft (1). The gear box cover is fixed to the gear box by screws, and the pin is fixed to the main shaft (1). The disc (4) connected to the connecting rod, the connecting rod (6, 7, 8) and the ring composed of the iron sheet (41) and the balance sheet (40) is placed on the main shaft (1) and installed in place so that the ring composed of the iron sheet (41) and the balance sheet (40) covers the gear box and the disc (5). The connecting rod (9) is fixed to the front section of the gear box by screws (18), and the rear end of the connecting rod (9) is fixed to the inner surface of the rear cover (15) by screws (21). The outer shell (16) is inserted from the front end, and the rear cover (15) is fixed to the rear end of the outer shell (16) by screws (20). The connecting rods (10, 11) are respectively fixed to the inner surface of the outer shell (16) by screws (19, 22). The bearing (28) is mounted on the rear section of the sleeve (13) fixed to the front cover (14), and the front cover (14) is fixed to the front end of the housing (16) with screws (17), so that the bearing (28) and the sleeve (13) are covered with the large shaft (1), and the bearing (27) is mounted in the front section of the sleeve (13), so that the bearing (27) is covered with the large shaft (1). The two frames with external magnets are fixed to the housing with screws.

Claims

1. A magnet interaction force dual-purpose device, characterized in that: The front section of the main shaft (1) is connected with the bearings (27, 28) in the sleeve (13) fixed on the front cover (14), and the front cover (14) is fixed to the front end of the housing (16) by screws (17). The main shaft (1) is connected with a disc (4), an oil seal (34), a bearing (29), and a gear (23) backward. The disc (4) has a connecting rod and a connecting rod (6, 7, 8) behind it. The connecting rod and the connecting rod (6, 7, 8) have a ring composed of an iron sheet (41) and a balance sheet (40). The disc (4), the gear (23) and the main shaft (1) are provided with corresponding grooves, and a bayonet is installed in the groove. The convex disc (42) is provided with two holes, one of which is provided with an oil seal (34) and a bearing (29), and the other is provided with an oil seal (35) and a bearing (30). The oil seal (35) and the bearing (30) are sleeved on the front end of the side shaft (2). The side shaft (2) is connected with a gear (24), a bearing (31) and a gear (25) in series at the rear. The gears (24, 25) and the side shaft (2) are provided with grooves correspondingly, and a bayonet is installed in the grooves. The gear (24) is connected to the gear (23), and the gear (25) is connected to the gear (26). The bearing (31) is installed in a hole on a convex block (38) fixed on the inner surface of the box side (45), and the front end of the box side (45) is connected to the convex disc (42). The box side (44) is provided with a hole, and the oil seal (36) and the bearing (32) of the short shaft (3) are installed. The left section of the short shaft (3) is connected with a disc (5), and the right section of the short shaft (3) is connected with a gear (26) and a bearing (33). The short shaft (3), the disc (5) and the gear (26) are provided with grooves respectively, and a bayonet is installed in the groove. The bearing (33) is installed in a hole opened on the raised part of the inner surface of the rear section of the box side (45), and the box side (44) is bent forward to connect the convex disc (43). The outer periphery of the disc (5) is provided with a circular ring (39), and the outer periphery of the circular ring (39) is provided with a groove, and an inner magnet (37) is installed in the groove. The back of the gear box is provided with a connecting rod (12), and the right side of the connecting rod (12) is provided with a connecting rod (11). The connecting rod (11) is fixed to the housing (16) by a screw (22), and the rear end of the connecting rod (12) is connected to the rear cover (15). The upper part of the gearbox is a cover, and the gearbox cover is fixed to the gearbox by screws. The connecting rod (9) is fixed to the front section of the left side of the gearbox by screws (18), and the rear section of the connecting rod (9) is connected to the connecting rod (10). The connecting rod (10) is fixed to the inner surface of the shell (16) by screws (19), and the rear end of the connecting rod (9) is fixed to the inner surface of the rear cover (15) by screws (21), and the rear cover (15) is fixed to the shell (16) by screws (20). The external magnet is installed in the frame, and the frame has two protrusions on the side. There are two frames, and the two frames are fixed to two openings opened on the shell (16) by screws. The shell (16) and the protrusions of the two frames are correspondingly provided with holes for screws. The inner surface and the outer surface of the frame are not sealed. The inner surface is not sealed so that the external magnet can be close to the iron sheet (41), and the outer surface is not sealed so that the external magnet can be installed.

2. The magnet interaction force dual-purpose device according to claim 1, characterized in that: The iron sheet (41) can be replaced by an object attracted by a magnet, and the inner magnet (37) is attracted relative to the south and north pole interfaces of the outer magnet by the south and north pole interfaces.

3. The magnet interaction force dual-purpose device according to claim 1, characterized in that: The iron sheet (41) and the inner magnet (37) are round segments that can form a bead shape.