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Fatigue in precipitation hardened materials: a three-dimensional discrete dislocation dynamics modelling of the early cycles

机译:沉淀硬化材料中的疲劳:早期循环的三维离散位错动力学模型

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Three-dimensional dislocation dynamics ( DD) fatigue simulations in precipitation hardened metals is a major challenge in terms of numerical development. Several precipitate configurations have been investigated with an original treatment of precipitate-dislocation interactions and a parallelized DD code. In grains containing single- sized shearable particles ( rp = 160 nm), strain is localized in clear bands where the precipitates are totally sheared-off. The fatigue behaviour involves an initial hardening followed by severe cyclic softening and significant surface slip irreversibility. In the presence of large single- sized particles ( rp = 400 nm), the persistent slip band (PSB) structure is accompanied by highly reversible surface displacements. Slip dispersion originates from Orowan loops that have little effect on the mechanical response. The mechanical behaviour of a bimodal distribution is intermediate between the two above cases with the above microstructural features coexisting within the same grain. Unlike in the monomodal large-particle case, where all the particles retain their initial strength, some of the large particles of the bimodal distribution undergo a significant strength reduction.
机译:沉淀硬化金属中的三维位错动力学(DD)疲劳模拟是数值发展方面的主要挑战。用沉淀物-位错相互作用的原始处理方法和平行化的DD码研究了几种沉淀物构型。在含有单一尺寸可剪切颗粒(rp = 160 nm)的晶粒中,应变位于清晰的条带中,其中沉淀物被完全剪切掉。疲劳行为包括最初的硬化,然后是严重的循环软化和明显的表面滑移不可逆性。在存在大尺寸单一颗粒(rp = 400 nm)的情况下,持久滑带(PSB)结构伴有高度可逆的表面位移。滑移色散源自对机械响应影响很小的Orowan环。双峰分布的机械行为介于上述两种情况之间,且上述微观结构特征共存于同一晶粒内。与单峰大颗粒情况不同,在单峰大颗粒情况下,所有颗粒均保持其初始强度,而双峰分布的一些大颗粒则经历了明显的强度降低。

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