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Study on calibration technology of port quick leak detector for spacecraft

机译:航天器端口快速检漏仪标定技术研究

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In order to reduce measure standard uncertainty and achieve precise calibration of Port Quick Leak Detector in different temperatures under full range, the special calibration apparatus was designed on basis of theoretical studies. This apparatus consists of pressure standard leak system, calibration system, temperature control system, gas supply and pump system. Pressure standard leak system is made up of a series of standard leaks, it provides standard leak by adjusting the inlet gas and outlet gas pressures of standard leak. Calibration system includes measure instrument, calibration chamber, reference chamber, which used for measure the pressure leakage of leak. Temperature control system consists of constant temperature box, temperature control unit, temperature sensor etc. it can change the environment temperature of calibration system from -50°C to 20°C. Gas supply and pumping system comprised of high pressure gas cylinder, vacuum pump. It provides known pressure gas to pressure standard leak system and calibration system, and pumps all the apparatus. This apparatus is based on direct comparison calibration method of constants volume pressure reduction method, the apparatus and Port Quick Leak Detector are measured under same flow leak, which is provided by pressure standard flow system, and its correction factor in full range is gained by comparing both measure values. This apparatus is used symmetry structure for calibration chamber and reference chamber, and hence which can reduce the influence of calibration environment temperature on calibration results, calibration lower limit is extended to 2×10Pa·m/s. By using cycle water system, the influence of initiative constant temperature and passivity constant temperature techniques on the calibration of detector was studied systematically, and the accurate calibration of Port Quick Leak Detector under different temperature was achieved. The effect of inlet and outlet pressures of leak on leakage was investigated, and a corrected formula about the change of leakage with pressure was derived successfully, and a series of standard leaks were provided and the full range calibration of detector is achieved. The calibration range of the resultant apparatus is 2×10~1×10Pam/s with a combined standard uncertainty about 4.7 %, and its calibration temperature is in the range from -50°C to 20°C.
机译:为了减少测量标准不确定度并在不同温度下在全范围内实现端口快速检漏仪的精确校准,在理论研究的基础上设计了专用校准设备。该设备由压力标准泄漏系统,校准系统,温度控制系统,气源和泵系统组成。压力标准泄漏系统由一系列标准泄漏组成,它通过调节标准泄漏的进气和出口气体压力来提供标准泄漏。校准系统包括测量仪器,校准室,参考室,用于测量泄漏的压力泄漏。温度控制系统由恒温箱,温度控制单元,温度传感器等组成。它可以将校准系统的环境温度从-50°C更改为20°C。供气和抽气系统由高压气瓶,真空泵组成。它向压力标准泄漏系统和校准系统提供已知的压力气体,并泵送所有设备。该装置是基于恒压降压法的直接比较校正法,在同一流量泄漏下对装置和油口快速检漏仪进行测量,由压力标准流量系统提供,通过比较得出其全量程修正系​​数。两种测量值。该仪器采用校准室和参考室的对称结构,因此可以减少校准环境温度对校准结果的影响,校准下限扩展到2×10Pa·m / s。利用循环水系统,系统地研究了主动恒温和无源恒温技术对探测器标定的影响,实现了Port Quick Leak Detector在不同温度下的精确标定。研究了泄漏的进,出口压力对泄漏的影响,成功推导了泄漏随压力变化的修正公式,并提供了一系列标准泄漏,实现了探测器的全范围标定。所得设备的校准范围为2×10〜1×10Pam / s,组合标准不确定度约为4.7 \%,其校准温度为-50°C至20°C。

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