Please wait a minute...
空天防御  2023, Vol. 6 Issue (2): 49-54    
0
  耦合动力学仿真与试验技术 本期目录 | 过刊浏览 | 高级检索 |
基于多应力仿真分析的舵机加速试验剖面设计方法
王海东,刘博,王肇喜,蒋刚
上海航天精密机械研究所,上海 201600
Design and Analysis of Accelerated Test for Steering Engine Under Multi-Stress Condition
WANG Haidong, LIU Bo, WANG Zhaoxi, JIANG Gang
Shanghai Spaceflight Precision Machinery Institute, Shanghai 201600, China
全文: PDF(1064 KB)  
输出: BibTeX | EndNote (RIS)      
摘要 多应力条件下的加速试验中,利用仿真分析定量指导试验剖面的设计,可以大幅缩短试验周期。针对航天器舵机这一典型机电产品,通过有限元分析,得到舵机在不同载荷类型与量级的应力应变响应,进一步确定舵机的工作载荷极限,建立初始加速试验剖面。根据应力应变响应结果,计算得到对应的疲劳寿命,建立舵机在多应力下的加速因子模型。在此基础上,按照加速比≥5的要求,修正舵机的初始加速试验剖面,得到最终的多应力加速试验剖面,以此为后续开展此类航天器机电产品的多应力加速试验提供参考。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
关键词 舵机多应力加速试验载荷剖面    
Abstract:Simulation can guide the quantitative design of accelerated tests under multi-stress conditions, to shorten the test period. This paper has acquired the stress and strain responses of spacecraft steering gear under different load types and amplitudes using Finite Element Analysis (FEA). Hereby, the working load limit of the steering gear was determined, and the initial accelerated test profile had been established. According to the stress and strain responses, the fatigue life was calculated and the accelerated factor model of steering gear under multi-stress was established. Based on the above, the initial accelerated test profile was modified when the accelerated ratio was no less than 5, and the final test profile was obtained. The method provides a reference for the multi-stress accelerated test of such spacecraft electromechanical products.
Key wordssteering engine    multi-stress    accelerated test    load profile
收稿日期: 2022-11-30      出版日期: 2023-07-06
ZTFLH:  TJ761  
作者简介: 王海东(1975—),男,学士,研究员,主要研究方向为航天装备强度环境试验。
引用本文:   
王海东, 刘博, 王肇喜, 蒋刚. 基于多应力仿真分析的舵机加速试验剖面设计方法[J]. 空天防御, 2023, 6(2): 49-54.
WANG Haidong, LIU Bo, WANG Zhaoxi, JIANG Gang . Design and Analysis of Accelerated Test for Steering Engine Under Multi-Stress Condition. Air & Space Defense, 2023, 6(2): 49-54.
链接本文:  
https://www.qk.sjtu.edu.cn/ktfy/CN/      或      https://www.qk.sjtu.edu.cn/ktfy/CN/Y2023/V6/I2/49

参考文献
[1] 李 想, 刘 晓, 李 森, 刘程程, 刘晓彬, 高 爽. 玻璃纤维增强乙烯基酯复合材料耐海水腐蚀寿命预测[J]. 海洋工程装备与技术, 2023, 10(4): 107-.
[2] 王泽坤, 张福曦. 3D电子封装锡晶须建模与实验验证[J]. 上海交通大学学报, 2021, 55(11): 1445-1452.
[3] 徐巧宁,艾青林,杜学文,刘毅. 模型-数据联合驱动的船舶舵机电液伺服系统早期故障检测[J]. 上海交通大学学报, 2020, 54(5): 451-464.
沪ICP备15013849号-1
版权所有 © 2017《空天防御》编辑部
主管单位:中国航天科技集团有限公司 主办单位:上海机电工程研究所 上海交通大学出版社有限公司