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Reliability testing analysis of Sating Arming devices for Army fuzes

机译:军队Fuzes安全臂装置的可靠性测试与分析

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To address the lack of micro-electro-mechanical systems (MEMS) reliability data as well as a standardized methodology for assessing reliability, the Metallic Materials Technology Branch at Picatinny Arsenal has initiated a MEMS Reliability Assessment Program. This lack of data has been identified as a barrier to the utilization the MEMS in Department of Defense (DoD) systems. Of particular concern are the impacts of long-term storage and environmental exposure on the reliability of devices. Specific objectives of the Metallic Materials Technology Branch (MMTB) program include: 1. Identify MEMS devices to be utilized in weapon systems 2. Determine the relevant categories of MEMS materials, technologies and designs in these applications 3. Assess the operational environments in which the military MEMS device may be utilized 4. Analyze the compatibility of MEMS devices with energetic and other hazardous materials 5. Identify physics of failure, failure mechanisms and failure rates 6. Develop accelerated test protocols for assessing the reliability of MEMS according to the categories 7. Develop of reliability models for these devices 8. Conduct testing and modeling on representative devices of interest to Army and DoD 9. Develop of a methodology and capability for conducting independent assessments of reliability that cannot be obtained from private industry In support of this effort, some testing has been performed on prototype mechanical Safing and Arming (S&A) devices for the 25-mm XM25 Air Burst Weapon. The objective is to test the S&A as a representative device for the identification of potential failure modes and effects for devices of the same class. Information derived from this testing will be used to develop standardized test protocols, formulate reliability models and establish design criteria and to identify critical parameters in support of the S&A development effort. To date, Environmental Stress Screening (ESS) tests have been performed on samples of the device. Along with the ESS testing, a failure modes and effects analysis has been developed and reliability modeling is under way.
机译:为了解决微机电系统(MEMS)可靠性数据以及用于评估可靠性的标准化方法,PICATINNY Arsenal的金属材料技术分支发起了MEMS可靠性评估计划。这种缺乏数据被确定为利用国防部(DOD)系统中的MEMS的障碍。特别关注的是长期储存和环境暴露对设备可靠性的影响。金属材料技术分支机构(MMTB)程序的具体目标包括:1。识别要在武器系统中使用的MEMS器件2.确定这些应用中的MEMS材料,技术和设计的相关类别3.评估其中的操作环境可以使用军用MEMS器件4.分析MEMS器件与能量和其他危险物质的兼容性5.识别故障,故障机制和故障率的物理学6.开发加速的测试协议,用于根据类别7评估MEMS的可靠性。为这些设备的可靠性模型开发8.对陆军和国防部的感兴趣的代表性设备进行测试和建模9.制定用于对无法从私营行业获得的可靠性进行独立评估的方法和能力,以支持这项努力,有些在原型机械安全和布防(S&A)设备上进行了测试25毫米XM25气爆武器。目的是测试S&A作为代表性设备,用于识别同一类的设备的潜在故障模式和效果。源自该测试的信息将用于开发标准化的测试协议,制定可靠性模型并建立设计标准,并确定支持S&A开发工作的关键参数。迄今为止,已经对设备的样品进行了环境应激筛查(ESS)测试。随着ESS测试,已经开发出故障模式和效果分析,并正在进行可靠性建模。

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