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Strategies for failure prevention in a gas motor of launch vehicle control actuation system

机译:发动车辆控制致动系统气体电机中防止故障防护策略

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Hydraulic servo actuators are employed for the thrust vector control of the liquid engines. Vane type gas motor, the prime mover of the system, is a critical subsystem with intricate dynamic elements such as rotor, bearings, vanes and speed regulator. Failure prevention of such critical systems, which is of paramount importance to the success of a launch vehicle mission, depends on making the design robust and ensuring that the critical parameters of the system hardware are within the specified range to give optimal performance. This paper addresses the strategies for achieving the design robustness through severe environmental stress testing and realisation of system hardware complying with quality requirements, which are essential for failure prevention. Towards this, critical environments for the gas motor have been identified and testing extended much beyond the system qualification levels, inducing failures. The test observations and data are analysed critically and design modifications made for broadening the operating environments. The quality systems and procedures for the system hardware are strengthened to assure reliable performance of the gas motor.
机译:液压伺服致动器用于液体发动机的推力矢量控制。叶片式气动电机,系统的主要动力,是具有复杂动态元件的关键子系统,如转子,轴承,叶片和速度调节器。预防这些关键系统的失败,这对发射车辆任务成功至关重要,取决于使设计稳健和确保系统硬件的关键参数在指定范围内以提供最佳性能。本文介绍了通过严重的环境压力测试实现设计稳健性的策略,并符合质量要求的系统硬件,这对防止预防至关重要。朝向这一点,已经确定了气动电机的关键环境,并延长了系统资格水平,诱导失败。分析测试观察和数据,并对扩大操作环境进行设计修改。强化系统硬件的质量系统和程序以确保气动电机的可靠性。

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