低应力下晶界扩散对蠕变的贡献

B. Burton, G. W. Greenwood
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引用次数: 114

摘要

摘要本文对铜的长直线型和螺旋形变形进行了实验,目的是评估扩散蠕变过程的重要性,特别是在晶界扩散影响占主导地位的范围内。结果表明,在低应力和高温条件下,多晶铜具有牛顿蠕变特性,其初始蠕变阶段的重要性可以忽略不计。在特定温度以上,蠕变速率与晶粒尺寸的对数成反比,与Nabarro-Herring方程非常吻合,活化能与晶格自扩散的活化能相同。在此温度以下,发现活化能接近晶界自扩散所期望的值,并且蠕变速率现在与Coble推导的方程(J. Applied Physics, 1963,34,1679)成反比。在目前的范围内……
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The Contribution of Grain-Boundary Diffusion to Creep at Low Stresses
AbstractExperiments are described on the deformation of copper, both in the form of long straight wires and in the form of helices, with the aim of evaluating the importance of diffusion-creep processes, especially in the range where the effect of grain-boundary diffusion is expected to predominate. It is established that at low stresses and elevated temperatures, polycrystalline copper can behave in a Newtonian manner with the primary creep stage of negligible importance. Above a specific temperature, which is shown to vary inversely as the logarithm of the grain size, creep rates agree closely with the Nabarro–Herring equation, and the activation energy is identical with that for lattice self-diffusion. Below this temperature the activation energy is found to be near the value expected for grain-boundary self-diffusion, and the creep rate now varies inversely as the cube of the grain size in agreement with the equation derived by Coble (J. Applied Physics, 1963, 34, 1679). Within the range of the presen...
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