稳态蠕变过程中随应力变化的瞬态蠕变曲线形状

D. Northwood, I. Smith
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引用次数: 4

摘要

摘要本文研究了AI、AI - mg合金、AI - li合金、Cu和Zr−1 wt-%Nb在一定温度范围内稳态蠕变过程中突然应力变化(下降或增加)后的瞬态应变形状。应变瞬态分为N型和I型,即蠕变速率初始较高,但随着时间的推移逐渐减小,最终达到恒定值。应力增量后的形状可以作为纯金属和2类合金蠕变速率控制过程的指导,2类合金的恢复速率控制为N型瞬态,1类合金的粘性滑动速率控制为I型瞬态。突然应力下降后瞬态应变的形状不能明确指示速率控制机制,因为一般来说,纯金属和1类和2类合金都表现为I型瞬态。
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Shape of transient creep curves following stress change during steady state creep
AbstractThe shape of the strain transient following a sudden stress change (drop or increment) during steady state creep has been investigated for AI, AI–Mg alloys, AI–Li alloys, Cu, and Zr−1 wt-%Nb over a range of temperatures. The strain transients were classified as N type, for which the initial creep rate is high but decreases with time eventually reaching a constant value, or I type, for which the creep rate gradually increases to a constant value. The shape after a stress increment can be used as a guide to the rate controlling process of creep with pure metals and Class 2 alloys in which recovery is rate controlling showing an N type transient, and Class 1 alloys in which viscous glide is rate controlling showing I type transients. The shape of the strain transient after a sudden stress drop gives no clear indication of the rate controlling mechanism since, in general, pure metals and Class 1 and Class 2 alloys each show I type transients.
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