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A low-impact energy storage pre-tightening hinge

A low-impact, energy-storage technology, applied in the aerospace field, can solve problems such as hinge reverse unlocking and unfolding impact

Active Publication Date: 2022-03-15
北京微纳星空科技有限公司 +4
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The present invention provides a low-impact energy storage pre-tightening hinge in order to avoid the problems of reverse unlocking of the hinge and large impact of deployment.

Method used

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  • A low-impact energy storage pre-tightening hinge
  • A low-impact energy storage pre-tightening hinge
  • A low-impact energy storage pre-tightening hinge

Examples

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Embodiment Construction

[0058] The principles and features of the present invention are described below in conjunction with the accompanying drawings, and the examples given are only used to explain the present invention, and are not intended to limit the scope of the present invention.

[0059] like Figure 1~Figure 21 As shown, a low-impact energy-storage preload hinge in this embodiment includes a male hinge 1, a female hinge 2 and an energy-storage preload device 3. The male hinge 1 and the female hinge 2 are hinged through a rotary shaft assembly 4, so The energy storage pretensioning device 3 is installed between the male hinge 1 and the female hinge 2, and the energy storage pretensioning device 3 includes an energy storage member 31, a locking rod 32, a first stop 33 and a second stop 34, so The energy storage member 31 is connected between the first block 33 and the second block 34; the first elastic lock pin 5 is provided in the first block 33, and the second block 34 is provided with The ...

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PUM

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Abstract

The invention relates to a low-impact energy storage pretensioning hinge, which includes a male hinge, a female hinge and an energy storage pretensioning device. The male hinge and the female hinge are hinged through a rotary shaft assembly, and the energy storage pretensioning device is installed between the male hinge and the female hinge. Between, the energy storage pretensioning device includes an energy storage part, a locking lever, a first stopper and a second stopper, and the energy storage part is connected between the first stopper and the second stopper; wherein, the male hinge and the female hinge are closed state, the first stopper is locked with the male hinge through the first elastic lock pin, and the second stopper is locked with the locking rod through the second elastic lock pin; during the unfolding process of the male hinge and the female hinge, the female hinge abuts against one end of the locking rod And push the locking rod to move axially, the locking rod drives the second block to move to the first block and store energy in the energy storage part; when the male hinge and the female hinge are unfolded, the female hinge is locked with the locking rod, and the first stop The male hinge is unlocked, the first stopper is locked with the locking rod through the first elastic lock pin, the second stopper is unlocked with the locking rod, and the second stopper is locked with the male hinge through the second elastic lock pin.

Description

technical field [0001] The invention relates to the field of aerospace technology, in particular to a low-impact energy storage pre-tightening hinge. Background technique [0002] As a common and commonly used deployable mechanism in the aerospace field, hinges have a wide range of applications. For the space deployment mechanism, according to its deployment driving mode, it can be divided into passive drive and active drive. Among them, the passive drive forms mainly include scroll spring drive, torsion spring drive, constant moment spring drive and other forms. Due to the passive drive High reliability, ultra-simple and other advantages are widely used in aerospace folding and unfolding mechanisms. However, due to the relatively fast release of torque after the passive drive is deployed, the impact on the unfolded parts is relatively large after deployment, which seriously affects the accuracy of deployment. The high-stiffness hinge in the master's thesis "High Stiffness ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16C11/04F16C11/10
CPCF16C11/04F16C11/10
Inventor 李全贺高恩宇姜秀鹏阎凯
Owner 北京微纳星空科技有限公司
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