首页> 外文会议>Space Technology and Applications International Forum (STAIF 2002), Feb 3-6, 2002, Albuquerque, New Mexico >Outgassing and Vaporization Considerations in MilliWatt Generators Designed for 20-Year Missions
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Outgassing and Vaporization Considerations in MilliWatt Generators Designed for 20-Year Missions

机译:专为20年任务而设计的MilliWatt发电机的除气和汽化注意事项

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Ongoing experimental work and theoretical models indicate that milliwatt thermoelectric generators that operate in a sealed-off vacuum environment will be useful for long-term operation, such as the PASCAL 20 year Mars mission and the CryoScout mission. Considerations for long-term operation include out gassing of the multifoil vacuum insulation before pinch off and vaporization of the (Bi,Sb)_2(Se,Te)_3 thermoelectric materials during long-term operation. Tests underway indicate the multi-foil insulation can be pre-outgassed before assembly so further outgassing in the sealed generator is minimized. Experimental data and vaporization models for a Th of 250 ℃ thus far indicate that the small amount of vaporization of materials used in the thermoelectric module do not significantly effect the generator vacuum or the module power output. These tests and models indicate that both potential modes of degradation can be controlled and minimized. Although performance data on the generator materials only extend for several hundred hours, the good performances in a limited time, combined with an understanding of the materials behavior, indicate that milliwatt generator holds promise for providing sufficient and reliable power for space missions lasting up to 20 years.
机译:正在进行的实验工作和理论模型表明,在密闭真空环境中运行的毫瓦热电发电机对于长期运行非常有用,例如PASCAL 20年火星任务和CryoScout任务。长期运行的考虑因素包括:夹断前多箔真空绝缘体放气以及长期运行期间的(Bi,Sb)_2(Se,Te)_3热电材料的汽化。正在进行的测试表明,可在组装前对多箔绝缘材料进行预除气,以使密封发电机中的进一步除气降至最低。到目前为止,实验数据和250℃Th的汽化模型表明,热电模块中所用材料的少量汽化不会显着影响发生器的真空度或模块的功率输出。这些测试和模型表明,两种潜在的降解模式都可以得到控制和最小化。尽管有关发生器材料的性能数据仅能持续数百小时,但在有限的时间内良好的性能以及对材料性能的了解表明,毫瓦发生器有望为持续20多次的太空飞行任务提供充足而可靠的动力年份。

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