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Eccentric double-acting wing

A technology of wing and power mechanism, applied in the field of full-motor wing, can solve the problems of uncoordinated space at the root of the full-motor wing, limited function, complex structure, etc.

Inactive Publication Date: 2020-06-23
罗灿
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

If you want to rotate around two axes, you need to set up two stages of traditional rotating machinery. The output end of the first stage of traditional rotating machinery is connected to the base of the second stage of traditional rotating machinery. The purpose of rotating around the two axes can be achieved through two stages of traditional rotating machinery. Such a complex structure is extremely inconsistent with the narrow space at the root of the wing of the whole machine
Therefore, the traditional fully mobile wing only rotates around a single axis and has limited functions.

Method used

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  • Eccentric double-acting wing
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  • Eccentric double-acting wing

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Embodiment 1: The embodiment 1 of partial dual-motor wing of the present invention adopts the partial dual-motor wing of machinery input in the form of two bevel gears. Schematic see figure 1 . figure 1 No. 1 center driving wheel (9) is connected with a center wheel (5) by the outer shaft of quill shaft, and No. 2 center driving wheel (12) is connected with another center wheel (6) by the inner shaft of quill shaft. Example 1 includes a double action clutch, two input mechanisms, wings, etc. in:

[0017] The double-acting clutch includes a bevel gear planetary row, a fixed-axis support (4), a moving-axis support (3) and an output end (1), etc.: the fixed-axis support (4) is set on the fuselage, and a cone Gear planetary row, one center wheel (5) of the bevel gear planetary row is on the same axis as the other center wheel (6), and the shafts of the two center wheels are set on the fixed shaft support (4) in the form of a sleeve shaft , the two center wheels are not ...

Embodiment 2

[0020] Embodiment 2: The embodiment 2 of the partial dual-motor wing of the present invention adopts two gear forms to input the partial dual-motor wing of the machine. Schematic see figure 2 . figure 2 No. 1 center driving wheel (9) is connected with a center wheel (5) by the outer shaft of quill shaft, and No. 2 center driving wheel (12) is connected with another center wheel (6) by the inner shaft of quill shaft. Example 2 includes a double action clutch, two input mechanisms, wings, etc. in:

[0021] The double-acting clutch includes a bevel gear planetary row, a fixed-axis support (4), a moving-axis support (3) and an output end (1), etc.: the fixed-axis support (4) is set on the fuselage, and a cone Gear planetary row, one center wheel (5) of the bevel gear planetary row is on the same axis as the other center wheel (6), and the shafts of the two center wheels are set on the fixed shaft support (4) in the form of a sleeve shaft , the two center wheels are not direc...

Embodiment 3

[0024] Embodiment 3: The embodiment 3 of the partial dual-motor wing of the present invention adopts the partial dual-motor wing of the input machine in the form of two racks and pinions. Schematic see image 3 . image 3 No. 1 center driving wheel (9) is connected with a center wheel (5) by the outer shaft of quill shaft, and No. 2 center driving wheel (12) is connected with another center wheel (6) by the inner shaft of quill shaft. Example 3 includes a double action clutch, two input mechanisms, wings, etc. in:

[0025] The double-acting clutch includes a bevel gear planetary row, a fixed-axis support (4), a moving-axis support (3) and an output end (1), etc.: the fixed-axis support (4) is set on the fuselage, and a cone Gear planetary row, one center wheel (5) of the bevel gear planetary row is on the same axis as the other center wheel (6), and the shafts of the two center wheels are set on the fixed shaft support (4) in the form of a sleeve shaft , the two center whe...

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PUM

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Abstract

The invention discloses an eccentric double-acting wing. The eccentric double-acting wing comprises a double-acting clutch, two input machines, a wing body and the like; the double-acting clutch comprises a bevel gear planet set, a fixed shaft support, a movable shaft support and an output end; center wheels are arranged on the fixed shaft support; the movable shaft support is arranged on a centerwheel shaft and can rotate around the center gear shaft; one planet gear penetrates through the planet gear shaft bearing of the movable shaft support; a planet gear shaft serves as an output end tobe connected with the wing body; the two input machines comprise a first input end, a first driving machine, a first center driving wheel, a second input end, a second driving machine and a second center driving wheel; the input ends are connected with control power mechanisms respectively; the center driving wheels are connected with the center wheel; the two central wheels are respectively controlled and driven by the two control power mechanisms; the output end drives the wing body to rotate around the central wheel shaft and the planet gear shaft. An eccentric double-acting wing provided with one input machine or not provided with any input machine also belongs to the protection range of the invention.

Description

technical field [0001] The invention relates to a full-motion wing, specifically a full-motion wing equipped with a double-action clutch, two control power mechanisms biased to one side of the double-action clutch, and a full-motion wing that rotates around two axes, referred to as a partial double-motion wing wing. Background technique [0002] The traditional fully mobile wing is a wing that rotates around a single axis, and its traditional rotating mechanism includes a base, a rotating mechanism, and an output end. If you want to rotate around two axes, you need to set up two stages of traditional rotating machinery. The output end of the first stage of traditional rotating machinery is connected to the base of the second stage of traditional rotating machinery. The purpose of rotating around the two axes can be achieved through two stages of traditional rotating machinery. Such a complex structure is extremely inconsistent with the narrow space at the root of the wing o...

Claims

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Application Information

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IPC IPC(8): B64C3/38
CPCB64C3/385
Inventor 罗灿
Owner 罗灿