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Alloy chemistry and microstructural control to meet the demands of the automotive Stirling engine

机译:合金化学和微结构控制可满足汽车斯特林发动机的要求

摘要

The automotive Stirling engine now under development by DOE/NASA as an alternative to the internal combustion engine, imposes severe materials requirements for the hot portion of the engine. Materials selected must be low cost and contain a minimum of strategic elements so that availability is not a problem. Heater head tubes contain high pressure hydrogen on the inside and are exposed to hot combustion gases on the outside surface. The cylinders and regenerator housings must be readily castable into complex shapes having varying wall thicknesses and be amenable to brazing and welding operations. Also, high strength, oxidation resistance, resistance to hydrogen permeation, cyclic operation, and long-life are required. A research program conducted by NASA Lewis focused on alloy chemistry and microstructural control to achieve the desired properties over the life of the engine. Results of alloy selection, characterization, evaluation, and actual engine testing of selected materials are presented.
机译:DOE / NASA目前正在开发的汽车斯特林发动机,作为内燃机的替代品,对发动机热部分提出了严格的材料要求。选择的材料必须是低成本的,并且包含最少的战略要素,这样可用性就不会成为问题。加热头管的内部含有高压氢气,并在外表面暴露于热的燃烧气体中。气缸和蓄热室壳体必须易于铸造成具有变化的壁厚的复杂形状,并且适合于钎焊和焊接操作。而且,需要高强度,抗氧化性,抗氢渗透性,循环操作性和长寿命。美国宇航局刘易斯(NASA Lewis)进行的一项研究计划专注于合金化学和微观结构控制,以在发动机的使用寿命内达到所需的性能。介绍了所选材料的合金选择,表征,评估和实际发动机测试的结果。

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    Stephens J. R.;

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  • 年度 1986
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