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Reversible deformation in metals at elevated temperatures

机译:高温下金属可逆变形

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At elevated temperatures elastic limits become increasingly difficult to define and,in conditions relevant to fatiigue,where stresses may vary in amplitude and frequency,appropriate laws of deformation are difficult to establish.Data have been obtained through the construction and use of equipment permitting the measurement of the time dependence of strains down to 10~-7 tha tfollow small stress changes at elevated temperatures.The factors influencing primary creep and anelastic strain recovery have been determined and compared.Whilst the former showed a power law dependence and the latter a logarithmic dependence on time,their initial strain rates were similar on application and removal of a given stress.Reversible dislocation bowing through pipe diffusion is ocnsidered to contribute to such behaviour,though these initial strain rates were faster than those expected by this mechanism alone.
机译:在升高的温度下,弹性极限变得越来越难以定义,并且在与疲劳相关的条件下,应力可能在振幅和频率上变化,因此难以建立适当的变形定律。已经通过构造和使用可进行测量的设备获得了数据在高温下随应力变化小至10〜-7的应变的时间依赖性。确定并比较了影响一次蠕变和非弹性应变恢复的因素。前者表现出幂律依赖性,而后者表现出对数依赖性随着时间的推移,它们的初始应变速率在施加和去除给定应力时相似。通过管道扩散而产生的可逆位错弯曲也有助于这种行为,尽管这些初始应变速率比单独通过这种机制预期的要快。

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