Linkage combination, skeleton deformation and lever mechanical device

By combining the lever and the law of bone deformation, a multifunctional mechanical kinetic energy system is formed, which solves the problem of single function of the existing lever device, and realizes the labor-saving and kinetic energy transmission efficiency of the lever device.

CN120537862APending Publication Date: 2025-08-26翁南翔
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Patent Information

Application Number
CN202510637257.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-08-26

AI Technical Summary

Technical Problem

The existing lever devices have single functions and lack systematic multifunctional mechanical power solutions.

Method used

By combining multiple levers and combining bone deformation and the principle of circumferential Rubik's Cube, a new combination lever mechanical kinetic energy system is formed, and two major laws are applied: the circumferential Rubik's Cube and the law of skeleton deformation.

Benefits of technology

A multi-functional mechanical power device is realized, enhancing the labor-saving effect of leverage and kinetic energy transmission efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The basic principle of the invention is that two basic laws form a first law circumference magic cube, and when the circumference is in a vertical state, the distances between the two sides of a 45-degree angle are equal, and the heights of the two sides of the 45-degree angle are unequal. And the second law is that the skeleton deforms and the moment arm is inversely proportional.
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Description

[0001] Linked combination, skeleton deformation, lever mechanism

[0002] Linked combination, skeleton deformation, lever mechanical device (belongs to mechanical power category)

[0003] Technical field of the invention

[0004] The inventor has formed a new type of mechanical kinetic energy system of combined levers by combining the overall and local skeletal deformation of the levers. This new mechanical kinetic energy system belongs to the field of mechanical power. Background Art

[0005] The background technology of this invention is the lever. A single lever has the function of saving effort. Based on this function of the lever, the inventor created a large, systematic and multifunctional mechanical power device composed of multiple levers, opening a new era of mechanical power. Summary of the Invention

[0006] The core content of this invention mainly consists of two points. The first is the background technology, which mainly explains the origin and support of the invention, namely, the lever. The second is that the basic principle of this invention is composed of two major laws.

[0007] First Law:

[0008] Circular Demon

[0009] When the circle is vertical, the distances on both sides of the 45-degree angle are equal but the heights are different.

[0010] Second Law:

[0011] The moment arm is inversely proportional to the bone deformation. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The basic structure of the invention is:

[0013] 1. Two 2 vertical poles are fixed longitudinally on the 1 base. 3 ends of the 3 horizontal poles are fixed on the top of the two 2 vertical poles, and the 42 slide rail fixing plate is fixed on the 3 horizontal poles.

[0014] 2. Resistance Arm Lever System

[0015] 16 drooping fixed plate is fixed under 3 crossbars, 17 long bearing is fixed on the top of 16 lower part (see attached Figure 1 The center of the resistance arm lever 18 is fixed on top of 17, and the left and right ends of the center 18 are respectively fixed with 19 angle plates and 19 angle rods. The connecting rod 21 is fixed to the end point of the left section of the center 18, and the weight block 22 is installed on top of 21.

[0016] 3. Combined power arm lever system

[0017] (1) Slide rail and A-shaped power arm lever combination system (on the drawing, the long bearing is A on the right and B on the left). Slide rail mounting plate 42 is fixed to 3, and slide rail 8 is fixed to 42. Slide block 5 is mounted on slide rail 8. Long bearing 6 is fixed to the center of 5, and the centers of the two levers 7 are fixed to the ends of 6, forming a rectangular frame structure.

[0018] Vertical plate 10 is fixed to 3, located behind (to the left of) 5. Long bearing 11 is fixed to the top of 10. The center of lever 12 is fixed to 11, with shaft discs 15 fixed to the left and right ends of the center of 12. The center of the right section of center 12 is connected to the end point of the left section of center 7 via long bearing 9, forming an A-shaped combined lever.

[0019] (2) Vertical plate 25 is fixed above vertical plate 3 and located behind vertical plate 10 (left). Long bearing 26 is fixed to the top of 25, and the center of the first horizontal lever 27 is fixed on 26.

[0020] The 56-angle plate is fixed to the front lower part of the right center section 27. The 15-axis plate fixed to the top of the right center section 12 is attached to the front lower part of the right horizontal section 27 and to the rear part of the inclined surface of the 56-angle rod (see attached). Figure 1 ) 27 left section same position, also inherent 56 and 28 length rod (see attached Figure 1 ).

[0021] (3) The second inclined lever is connected to the first horizontal lever

[0022] Vertical plate 30 is fixed to 3, located in front (right) of 5. Long bearing 31 is fixed to the top of 30, and the center of the second inclined lever 32 is fixed to 31. Axle discs 33 are fixed to the left and right end points of 32 (the axle discs at the left and right end points of 32 are both composite coaxial or axle discs).

[0023] The 33 shaft disc fixed to the 32 center left segment endpoint is pressed on the 27 center right segment endpoint and is attached before the 28 angle plate.

[0024] The third inclined lever is connected to the second inclined lever

[0025] Vertical rod 35 is fixed to horizontal rod 3, to the right of vertical rod 30. A long bearing 36 is fixed to the top of rod 35. The center of the third inclined lever 41 is fixed to rod 36. The center of angle lever 29 is fixed obliquely to the front side of the left center section of rod 41. The lower part of the left section of rod 29 presses on rod 33, which is fixed to the top of the left center section of rod 32.

[0026] The fourth inclined lever is connected to the third inclined lever

[0027] The vertical rod 43 is fixed to the top of rod 3, to the left of rod 30. The long bearing 45 is fixed to the top of rod 43. The center of the fourth inclined lever 46 is fixed to rod 45. The left and right ends of the center of rod 45 have fixed bearing plates 50. The right end of the center section of rod 46 presses on the right section of rod 29, connecting rods 46 and 41 into a whole.

[0028] The second horizontal lever is connected to the fourth inclined lever

[0029] Crossbar 38 is fixed to 35, vertical bar 40 is fixed to the front end of 38, and long bearing 39 is fixed to the top of 40. The center of the second horizontal lever 37 is fixed to 39, and connecting rod 47 is fixed to the left and right end points of 37. Its left section 47 is equipped with a weight 48. Angle rod 51 is fixed obliquely to the rear of the left section of 37, with the left section of 51 pressing against 50 at the right end point of 46.

[0030] At this point, the mechanical power device with two flat and four oblique parts connecting the resistance arm lever is connected. DETAILED DESCRIPTION

[0031] First, the gravity test scheme will be divided into a single group scheme (two flat and four oblique) and a six-group test scheme. The gravity test of the single group scheme (two flat and four oblique) has been successful, and the test results prove that the two major laws of the invention are scientific.

[0032] Second, power generation test: after successful power generation, invite experts from the Intellectual Property Office to Shanghai for acceptance.

[0033] Explanation of the Figures Technical Field

[0034] The inventor formed a new type of mechanical kinetic energy system of combined levers by combining the overall and local skeletal deformation of the levers.

[0035] Attachment Figure 1 : The overall skeletal deformation of the invention is demonstrated through a schematic diagram of the entire side structure of the invention.

[0036] Attachment Figure 2 : The local structure of the A-shaped power arm lever shows its local bone deformation. Summary of the invention:

[0038] The core content of this invention mainly lies in two aspects. First, the origin and basis of the background technology is levers. Second, the basis of skeleton deformation and circular magic cube is combined levers.

[0039] Attachment Figure 3 ,4 shows the state of the resistance arm lever's bone deformation from the static state to the end of work.

[0040] Attachment Figure 5 , 6 shows the state of bone deformation from the static state to the end of work after the first, second horizontal levers and the second, third and fourth inclined levers are connected to each other.

[0041] Attachment Figure 7 It is a schematic diagram of the basic principle of the circular Rubik's Cube.

Claims

1. Based on Figure 1: Two vertical rods are arranged longitudinally and fixed to base 1. The ends of horizontal rod 3 are fixed to the tops of two rods 2. Resistance arm lever 18 is fixed to 17. The long bearing 6 on the A-shaped power arm lever is attached to the front of the angle plate 19 at the center right end of 18. The shaft plate 15 at the center right end of 12 is attached to the bottom of angle rod 56. The first horizontal lever and the A-shaped power lever are connected as a whole. The second, third, and fourth inclined levers are connected to the second horizontal lever as shown in Figures 1 and 5 and 6. At this point, the two-flat and four-slanted combination lever is formed. A: This invention is a lever mechanical power device composed of several levers.