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Internal 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 neglect

Inactive Publication Date: 2018-06-01
黄得锋
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Relevant prior documents, such as: "Centrifugal Rotating Device with Periodic Output Force" with application number 200710010455.1, "Centrifugal Force Power Device" with application number 200810037904.6, "Centrifugal Drive" with application number 90100270.4, and US2002 / The "CENTRIPETAL LINEAR AND ROTARY PROPULSTION DEVICE" of 0104392A1 failed. The main reasons include: the power technology based on centrifugal force must have the problem of force cycle, that is, the internal driving force will exist for a period of time during a working cycle. In one point of time, it plays the role of power gain, and in another period or point of time, it plays the role of dynamic damping; in the design of overcoming damping, it is designed to reduce the value of motion (such as: speed, radius of motion, etc.) to reduce damping Thoughts, but it also ignores that when changing the motion parameters, it will inevitably cause the system to implement the damping force formed by overcoming the inertia

Method used

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  • Internal drive power method and mechanism

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0053] Such as figure 1 - An internal drive mechanism shown in -3, which includes a power counterweight 1 and an unloading rotating body 2, the power counterweight 1 and the unloading rotating body 2 are sleeved on the same rotating shaft, so that both can revolve around the rotating shaft axis rotation.

[0054] Such as figure 2 As shown: the power counterweight 1 is installed on a fan-shaped panel 13, and the fan-shaped panel 13 is provided with two completely identical baffles 11 and 12; the baffles 11 and 12 are symmetrically distributed in the sector Both sides of the center line of the panel 13, and the action surfaces of the baffles 11 and 12 and the unloading rotating body 2 all pass through the axis of the rotating shaft.

[0055] Such as figure 1 As shown: the unloading rotating body 2 is provided with a shaft hole, and 4 counter-baffles are evenly distributed, respectively A B CD, and the action surfaces of each counter-baffle and the baffle of the power count...

Embodiment 2

[0075] Such as Figure 7-10 A kind of inner driving mechanism shown, it comprises a power counterweight group 1, unloading rotating body 2 and cylinder 3, and described power counterweight group 1 includes counterweight 11 and 12; Figure 5 As described above, the counterweights 11 and 12 are respectively fixed with a piston head B1 and E1, and the piston heads B1 and E1 are both arranged between the center of mass of the counterweight and the axis of the shaft; the unloading rotating body 2 is evenly and symmetrically distributed 4 A piston head A1, C1, D1, F1; such as Figure 9 Shown, described cylinder 3 comprises two cylinder chambers, is provided with A, B, C, D, E, F district altogether; As Figure 9 As shown, piston heads A1, B1, C1, D1, E1 and F1 move in areas A, B, C, D, E, and F respectively.

[0076] established as Figure 6 The coordinate system is centered at any o point on the 2 axis of the unloading rotating body, so that the x axis is parallel to the horizon...

Embodiment 3

[0098] Such as figure 1 - An internal drive mechanism shown in -3, which includes a power counterweight 1 and an unloading rotating body 2, the power counterweight 1 and the unloading rotating body 2 are sleeved on the same rotating shaft, so that both can revolve around the rotating shaft axis rotation.

[0099] Such as figure 2 As shown: the power counterweight 1 is provided with two identical counterweights 11 and 12 on a fan-shaped surface; the counterweights 11 and 12 are symmetrically distributed on both sides of the center line of the fan-shaped panel, and the counterweights 11 and counterweight 12 and the action surface of unloading rotating body 2 all pass through the axis of rotating shaft.

[0100] Such as figure 1 As shown: the unloading rotating body 2 is provided with a shaft hole, and four "T" parts are evenly distributed, and the acting surface of the T parts and the power counterweight passes through the axis of the rotating shaft.

[0101] established ...

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PUM

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Abstract

The invention relates to an internal drive power method. The internal drive power method is characterized in that a driving system relates to one or more additional weights and rotating bodies, the rotating bodies can idle on the axes of the rotating bodies, and the vector addition of all component forces acting on the system and being vertical to the axes during idling is zero; the additional weights and the rotating bodies execute the following steps that (1) the system acts on the additional weights, and in the action process, the conditions that the system and the additional weights do relative movement, and the accelerated speed direction of the additional weights relative to the system is opposite to the power direction are met; and (2) when the accelerated speed direction of the additional weights relative to the system is the same as the power direction or before the additional weights break away from the system, each additional weight acts on one point of the corresponding rotating body, the action force direction is on the tangent line of the point, and in the process that the additional weights act on the rotating bodies, the system does not apply action force generatingrotation accelerated speed on the rotating bodies. According to the internal drive power method, the important concept of internal drive is introduced, the internal drive is used for providing a relative movement medium without depending on the movement environment, and displacement can be obtained without external force action. By means of an internal drive mechanism, kinetic energy in each period is sufficiently used for achieving the gain effect on motion of a next period, and internal drive power can be generated in any time point through the mechanism.

Description

technical field [0001] The present invention mainly relates to a dynamic method and mechanism capable of obtaining displacement without providing a relative motion medium by the motion environment and without external force acting on it. Background technique [0002] Relevant prior documents, such as: "Centrifugal Rotating Device with Periodic Output Force" with application number 200710010455.1, "Centrifugal Force Power Device" with application number 200810037904.6, "Centrifugal Drive" with application number 90100270.4, and US2002 / The "CENTRIPETAL LINEAR AND ROTARY PROPULSTION DEVICE" of 0104392A1 failed. The main reasons include: the power technology based on centrifugal force must have the problem of force cycle, that is, the internal driving force will exist for a period of time during a working cycle. In one point of time, it plays the role of power gain, and in another period or point of time, it plays the role of dynamic damping; in the design of overcoming damping...

Claims

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Application Information

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