探测与控制学报2014,Issue(1) :37-41.

基于弹性支撑结构的微机械滑块闭锁机构

MEMS Slide Block Locking Mechanism on the Basis of A Flexible Supporting Structure

范晨阳 田中旺 王发林 张聪
探测与控制学报2014,Issue(1) :37-41.

基于弹性支撑结构的微机械滑块闭锁机构

MEMS Slide Block Locking Mechanism on the Basis of A Flexible Supporting Structure

范晨阳 1田中旺 1王发林 1张聪2
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作者信息

  • 1. 机电动态控制重点实验室,陕西 西安 710065
  • 2. 中航工业西安飞机工业 集团 有限责任公司,陕西 西安 710089
  • 折叠

摘要

针对试验中引信微机电安全系统承受后坐/离心过载时,后坐/离心滑块卡头在进入基板卡座时出现较大变形导致滑块不能被基板卡座顺利闭锁的情况,提出了弹性支撑结构的 MEMS滑块闭锁机构。该结构与原结构相反,卡头上是硬倒刺,弹性支撑臂做在基板上。ANSYS有限元仿真表明,基于弹性支撑结构的闭锁机构卡头和卡臂在承受过载时闭锁机构危险截面处的应力比原有机构降低了52%,避免了塑性变形,滑块能够顺利进入卡座并被闭锁。

Abstract

When a fuze MEMS (micro electro mechanical system)safety system bears setback/centrifugal over-load in an experiment,the clamp of a setback/centrifugal slide block deforms considerably when entering the clamping seat of a base plate,so that the slide block cannot be locked successfully by the clamping seat of the base plate.Aiming at the problem,this paper presented an MEMS slide block locking mechanism on the basis of a flexible supporting structure.The structure of the mechanism was contrary to the original structure,that rigid barbs were arranged on the clamp,and a flexible supporting arm was arranged on the base plate.ANSYS finite element simulation showed that when the clamp and the clamping arm of the locking mechanism on the basis of the flexible supporting structure beared overload,the stress of the dangerous cross-section of the locking mechanism was reduced by 5 2%,compared with that of the original mechanism,so that plastic deformation was avoided,and the slide block can enter the clamping seat smoothly and locked.

关键词

引信/微机电系统/闭锁机构

Key words

fuze/MEMS (micro electro mechanical system)/locking mechanism

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出版年

2014
探测与控制学报
中国兵工学会 西安机电信息研究所 机电工程与控制国家级重点实验室

探测与控制学报

CSTPCDCSCD北大核心
影响因子:0.267
ISSN:1008-1194
被引量3
参考文献量2
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