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A novel class of MEMS accelerometers for guidance and control of gun-fired munitions

机译:一种新型MEMS加速度计,用于指导和控制枪支弹药

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The state of art in shock resistant MEMS accelerometer design is to reduce the size of the proof-mass, thereby reducing the generated forces and moments due to shock loading. Physical stops are also provided to limit proof-mass motion to prevent damage to various moving components. The reduction of the proof-mass size reduces the sensor sensitivity. In addition, to increase the sensor dynamic response, proof-mass motion needs to be minimally damped, resulting in a significant sensor settling time after experiencing a high shock loading such as those experienced by gun-fired munitions during firing. The settling time is particularly important for accelerometers that are used in gun-fired munitions and mortars for navigation and guidance. This paper describes the development of a novel class of accelerometers that are provided with the means of locking the sensor proof-mass in its "null" position when subjected to acceleration levels above prescribed thresholds, thereby protecting the moving parts of the accelerometer. In munitions applications, the proof-mass is thereby locked in its null position during the firing and released during the flight to begin to measure flight acceleration with minimal settling time. Details of the design and operation of the developed sensors and results of their prototyping and testing are presented. The application of the developed technology to other types of inertial sensors and devices is discussed.
机译:抗冲击性MEMS加速度计设计的最新状态是减小验证的尺寸,从而减少由于冲击负载引起的产生力和时刻。还提供物理停止以限制防范质量运动以防止损坏各种移动部件。减少验证质量尺寸可降低传感器灵敏度。此外,为了增加传感器动态响应,需要对枪支载荷高度减震,导致诸如在射击过程中枪支弹药经历的高冲击载荷后产生显着的传感器稳定时间。稳定时间对于用于导航和指导的枪支弹药和迫击炮中使用的加速度计尤为重要。本文介绍了一种新颖的加速度计的开发,该加速度计提供了当经受高于规定阈值的加速水平时锁定传感器样本的装置,从而保护加速度计的移动部件。在弹药应用中,证明质量在射击过程中锁定在射击过程中,并且在飞行期间发布开始测量飞行加速度,最小的沉降时间。提出了开发传感器的设计和操作的细节和原型设计和测试的结果。讨论了开发技术将开发技术应用于其他类型的惯性传感器和装置。

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