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Considerations on the selection of alloys for use in pressure cells at low temperatures

机译:选择低温压力电池用合金的注意事项

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摘要

Issues surrounding the choice of metals subject to large tensile stresses in a cryogenic environment are discussed. Problems with the kuse of materials under such conditions often arise from their loss of ductility and toughness. The focus of the present article is therefore mainly on these properties; their dependency on temperature, crystal structure, grain size and purity level; and their application to the quantitative prediction of fracture behaviour. It also discusses the selection of alloys (on the basis of their toughness ductility and freedom from flaws) that can be used safely under ambient and cryogenic conditions. A recent proposal to employ a particular titanium alloy for the above purpose is considered, in light of the tendency of metals with a bcc crystal structure (including B-phase titanium alloys) to become brittle at low temperatures. Other materials, which are known to be (or are likely to be) satisfactory under such conditions are examined. For example, certain platinum alloys may possess very high cryogenic tensile strengths and ductilities, and low magnetic susceptibilities. Nanocrystalline metals have the potential to provide these characteristics, as well as low specific heats and high thermal conductivities. Such properties could make nanocrystalline materials very useful in (for example) work at microkelvin temperatures, or more generally where very accurate cryogenic temperature control is needed. Sources of cryogenic mechanical property information on a wide range of materials are also presented.
机译:讨论了在低温环境中承受较大拉应力的金属的选择问题。在这种条件下,材料的起因问题通常是由于它们失去延展性和韧性而引起的。因此,本文的重点主要放在这些属性上。它们对温度,晶体结构,晶粒尺寸和纯度水平的依赖性;及其在骨折行为定量预测中的应用。它还讨论了可以在环境和低温条件下安全使用的合金的选择(基于其韧性,延展性和无缺陷)。考虑到具有bcc晶体结构的金属(包括B相钛合金)在低温下变脆的趋势,考虑了针对上述目的采用特定钛合金的最新提议。研究了在这种条件下已知(或可能令人满意)的其他材料。例如,某些铂合金可能具有很高的低温拉伸强度和延展性,以及低磁化率。纳米晶体金属具有提供这些特性以及低比热和高导热率的潜力。这种性质可以使纳米晶体材料在微开尔文温度下非常有用,例如在需要非常精确的低温控制的情况下更有用。还介绍了多种材料的低温机械性能信息的来源。

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