首页> 外文会议>Aerospace Mechanisms Symposium >Brake Failure from Residual Magnetism in the Mars Exploration Rover Lander Petal Actuator
【24h】

Brake Failure from Residual Magnetism in the Mars Exploration Rover Lander Petal Actuator

机译:MARS勘探路虎着陆器花瓣执行器的储物失败

获取原文

摘要

In January 2004, two Mars Exploration Rover spacecraft arrived at Mars. Each safely delivered an identical rover to the Martian surface in a tetrahedral lander encased in airbags. Upon landing, the airbags deflated and three Lander Petal Actuators opened the three deployable Lander side petals enabling the rover to exit the Lander. Approximately nine weeks prior to the scheduled launch of the first spacecraft, one of these mission-critical Lander Petal Actuators exhibited a brake stuck-open failure during its final flight stow at Kennedy Space Center. Residual magnetism was the definitive conclusion from the failure investigation. Although residual magnetism was recognized as an issue in the design, the lack of an appropriately specified lower bound on brake drop-out voltage inhibited the discovery of this problem earlier in the program. In addition, the brakes had more unit-to-unit variation in drop-out voltage than expected, likely due to a larger than expected variation in the magnetic properties of the 15-5 PH stainless steel brake plates. Failure analysis and subsequent rework of two other Lander Petal Actuators with marginal brakes was completed in three weeks, causing no impact to the launch date.
机译:2004年1月,两个火星勘探罗孚航天器到达火星。每个人都安全地将一个相同的流动站交付给火炭表面,以在安全气囊中的四面体着陆器中。降落后,空气袋流放,三个着陆器花瓣执行器打开了三个可部署着陆侧花瓣,使火车站能够退出着陆器。大约9周前的预定推出的第一艘,这些关键任务兰德花瓣致动器之一的展出制动在肯尼迪航天中心的最后一次飞行期间,垫木卡住打开失败。残余磁性是故障调查的明确结论。虽然残留磁性被认为是设计中的问题,但缺乏适当指定的制动辍学电压的下限禁止在程序之前发现了这个问题的发现。此外,制动器的掉落电压具有比预期更多的单元到单元变化,可能由于15-5 pH不锈钢制动板的磁性特性的大于预期变化。在三周内完成了两个其他兰德·佩尔执行器的2个其他着色机花瓣执行器的故障分析和随后的返工,对发布日期没有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号