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Design and flight qualification of a paraffin-actuated heat switch for Mars surface applications

机译:用于火星表面应用的石蜡驱动热开关的设计和飞行资格

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The Mars Exploration Rover (MER) flight system uses mechanical, paraffin-actuated heat switches as part of its secondary battery thermal control system. This paper describes the design, flight qualification, and performance of the heat switch. Although based on previous designs by Starsys Research Corporation, the MER mission requirements have necessitated new design features and an extensive qualification program. The design utilizes the work created by the expansion of a paraffin wax by bringing into contact two aluminum surfaces, thereby forming a heat conduction path. As the paraffin freezes and contracts, compression springs separate the surfaces to remove the conduction path. The flight qualification program involved extensive thermal performance, structural, and life testing. Thermal performance testing both at the component level and in a simulated flight configuration has shown thermal conductance values greater than 1.2 W/K in the closed position and less than 0.018 W/K in the open position. The dynamics tests included random vibration, hard landing loads, and pyrotechnic shock. The life testing included 20,000 mechanical cycles on the seal boot containing paraffin and 350 temperature-induced cycles. The switch has met all performance and qualification requirements and is flight qualified for use on the MER mission.
机译:MARS勘探揽胜(MER)飞行系统使用机械,石蜡致动热开关作为其二次电池热控制系统的一部分。本文介绍了热开关的设计,飞行资格和性能。虽然基于以前的STARSYS研究公司的设计,但MER任务要求需要新的设计特征和广泛的资格计划。该设计利用通过引入两个铝表面而通过膨胀石蜡蜡而产生的工作,从而形成导热路径。作为石蜡冻结和收缩,压缩弹簧将表面分开以去除传导路径。飞行资格计划涉及广泛的热性能,结构和寿命测试。在组件等级和模拟飞行配置中的热性能测试在打开位置处的闭合位置大于1.2W / k的热传导值,在打开位置小于0.018W / k。动力学测试包括随机振动,硬着陆载荷和烟火震动。寿命测试包括含有石蜡和350个温度诱导的循环的密封靴上的20,000个机械周期。该开关符合所有性能和资格要求,并且有资格用于MER任务的航班。

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