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Inner-drive power method and mechanism

An internal drive and power technology, applied in the direction of engines, machines/engines, mechanical equipment, etc., can solve problems such as power gain and neglect

Inactive Publication Date: 2018-02-02
黄得锋
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] I have failed many experiments in the past and related prior documents. The reasons mainly include: various power technologies based on centrifugal force must have the problem of force cycle, that is, the internal driving force is in a working cycle. , there will be a part of power gain and another part of damping; and in the design of overcoming damping, the design idea is to reduce the value of motion (such as: speed, radius of motion, etc.) to reduce damping, but also by This ignores the force that will inevitably cause the damping effect on the system due to the formation of overcoming inertia when changing the motion parameters

Method used

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  • Inner-drive power method and mechanism

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0023] like Figure 1-3 The shown internal drive mechanism includes a counterweight, a counterweight transverse reciprocating motion device and a counterweight axial reciprocating motion device.

[0024] like Figure 1-3 As shown, the counterweight lateral reciprocating motion device includes a motor 11, an annular crawler 12, four axial bearings 13 with a uniform ring fixed on the annular crawler 12, and a pair of crawler wheels 14; the motor 11 drives the crawler. The wheel 14 rotates, which in turn drives the endless crawler belt 12 sleeved on the crawler wheel 14 to rotate.

[0025] The counterweight axial reciprocating motion device includes an inner concave baffle 21 and an outer convex baffle 22, the arc radius of the inner concave baffle 21 and the outer convex baffle 22 are both R, and the inner concave baffle 21 and the outer convex baffle 22 are both The arc surfaces of the plate 22 face each other so that the centerlines of the two arc surfaces are on the same st...

Embodiment 2

[0047] It includes more than one pair of inner drive mechanisms M1, and each pair of inner drive mechanisms M1 includes two sets of rotating counterweight groups M11 with opposite directions; the rotary counterweight group M11 includes counterweight G3 and counterweight G4, and counterweight G3 and counterweight G4 Taking O1 and O2 as the centers of circle rotation respectively, the two counterweights have the same circular motion radius and opposite directions of rotation speed, and make symmetrical motion with the center point O of O1O2 as the center, that is, at any point in time, O1G3 and O2G4 are symmetrical Distributed on both sides of the center line of O1O2; at the same time, the rotating balance group M11 revolves with the point O as the axis, and the revolution speed is equal to the rotation speed of the counterweight G3 and the counterweight G4; the two groups of rotary counterweight groups M11 revolve at the midpoint of OO Symmetrical motion for the center.

Embodiment 3

[0049] It includes more than one pair of inner driving mechanisms M2, each pair of inner driving mechanisms M2 is provided with a pair of driving brackets 21 with opposite directions and a 2-group balancing group M21; The inner side of 21 is provided with a pair of toothed belts 2 that match with the gear 1, through the relative movement of the gear 1 and the toothed belt 2, so that the counterweight M21 and the driving bracket 21 can move relative to each other; the driving bracket 21 is connected to the two toothed belts. The center point is provided with a pivot point O3, which can be rotated as the center of the circle.

[0050] Work steps:

[0051] 1) The power mechanism drives the gear to rotate, so that the counterweight M21 and the drive bracket 21 move relative to each other. Assuming that the interaction force between the two is F, because the mass of the counterweight is much larger than the drive bracket, the displacement of the drive bracket is also much larger than...

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Abstract

The invention provides an inner-drive power method. According to the inner-drive power method, one or more counterweights are included and are made to carry out two or more branch movements, and at least one branch movement is the first movement; the first movement is the regular movement which is continuously and repeatedly executed; if executing of the complete regular movement serves as a cycle, in each cycle, the following situations are satisfied, specifically, the sum of impulses to a system when all the counterweights execute the first movement is larger than zero, and the direction ofthe impulses is the same as the power direction; and the sum of corresponding impulses when all counterweights carry out other branch movements is zero. According to the inner-drive power method, theimportant concept of inner drive is introduced for the first time, and displacement can be obtained by utilizing inner drive without providing relative movement medium through the movement environmentand without working on an inner-drive mechanism through external force; and according to the inner-drive mechanism, kinetic energy of each cycle is fully and effectively utilized to play a gaining role on movement of the next cycle, and inner driving force can be generated through the inner-drive mechanism at any point in time.

Description

technical field [0001] The present invention mainly relates to a dynamic method and mechanism that can obtain displacement without the need for a motion environment to provide a relative motion medium and without external force to perform work on it. Background technique [0002] Many of my previous experiments and related previous literatures have not been successful. The main reasons include: the power cycle based on centrifugal force must have the problem of force cycle, that is, the internal driving force is in a cycle of work. , there will be a part that acts as a power gain, and the other part acts as a damping; in the design of overcoming the damping, the design idea is to reduce the motion value (such as speed, motion radius, etc.) to reduce the damping, but also by This ignores the damping force that must be caused to the system due to overcoming inertia when changing the motion parameters. SUMMARY OF THE INVENTION [0003] The present invention aims to provide a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F03G3/00
CPCF03G3/00
Inventor 黄得锋
Owner 黄得锋