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A new experimental procedure of outgassing rate measurement to obtain more precise deposition properties of materials

机译:测量除气率的新实验程序以获得更精确的材料沉积性能

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Outgassing rate measurement, or dynamic outgassing test, is used to obtain outgassing properties of materials, i.e., Total Mass Loss, "TML," and Collected Volatile Condensed Mass, "CVCM." The properties are used as input parameters for executing contamination analysis, e.g., calculating a prediction of deposition mass on a surface in a spacecraft caused by outgassed substances from contaminant sources onboard. It is likely that results obtained by such calculations are affected by the input parameters. Thus, it is important to get a sufficient experimental data set of outgassing rate measurements for extract good outgassing parameters of materials for calculation. As specified in the standard, ASTM E 1559, TML is measured by a QCM sensor kept at cryogenic temperature; CVCMs are measured at certain temperatures. In the present work, the authors propose a new experimental procedure to obtain more precise VCMs from one run of the current test time with the present equipment. That is, two of four CQCMs in the equipment control the temperature to cool step-by-step during the test run. It is expected that the deposition rate, that is sticking coefficient, with respect to temperature could be discovered. As a result, the sticking coefficient can be obtained directly between -50 and 50 degrees C with 5 degrees C step. It looks like the method could be used as an improved procedure for outgassing rate measurement. The present experiment also specified some issues of the new procedure. It will be considered in future work.
机译:除气速率测量或动态除气测试用于获得材料的除气性能,即总质量损失“ TML”和收集的挥发性冷凝质量“ CVCM”。该性质用作执行污染分析的输入参数,例如,计算由来自船上污染物源的除气物质引起的航天器表面上沉积质量的预测。通过这种计算获得的结果可能会受到输入参数的影响。因此,重要的是要获得足够的除气速率测量值的实验数据集,以提取良好的材料除气参数进行计算。根据标准ASTM E 1559,TML是通过保持在低温下的QCM传感器进行测量的; CVCM在某些温度下测量。在当前的工作中,作者提出了一种新的实验程序,可以使用当前的设备从当前测试时间的一次运行中获得更精确的VCM。也就是说,设备中的四个CQCM中的两个控制温度在测试运行期间逐步降温。期望可以发现相对于温度的沉积速率,即粘附系数。结果,可以在-5℃至50℃之间以5℃的阶跃直接获得粘着系数。看来该方法可以用作除气率测量的改进程序。本实验还指定了新程序的一些问题。它将在以后的工作中予以考虑。

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