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首页> 外文期刊>Modelling and simulation in materials science and engineering >Void growth in high strength aluminium alloy single crystals: a CPFEM based study
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Void growth in high strength aluminium alloy single crystals: a CPFEM based study

机译:VOID高强度铝合金单晶的生长:基于CPFEM的研究

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摘要

High strength aluminium alloys that are produced through forming and joining processes are widely used in aerospace components. The ductile failure in these metals occurs due to the evolution and accumulation of microscopic defects, such as microvoids and shear bands. The present work investigates the underlying physical mechanisms during ductile failure by performing a rigorous, fully-validated, three-dimensional crystal plasticity, finite element study with aluminium alloy single crystals. Representative volume element (RVE) based simulations of single crystalline aluminium alloys (AA-5xxx) with different void geometries and orientations have been performed. Both local and nonlocal crystal plasticity constitutive models have been implemented in a finite element framework and are used to seek new insights into the interrelationships among void growth, initial porosity, initial void size, plastic anisotropy, and local/nonlocal size effects.
机译:通过成形和连接过程生产的高强度铝合金广泛用于航空航天组分。 由于微观缺陷的演化和积累,例如微脂糖和剪切带,发生这些金属中的延展性衰竭。 通过进行严格,完全验证的三维晶体可塑性,用铝合金单晶进行有限元研究,研究了韧性失效期间的底层物理机制。 已经进行了基于具有不同空隙几何形状和取向的单晶铝合金(AA-5XXX)的基于单晶铝合金(AA-5XXX)的代表性体积元素模拟。 局部和非局部晶体塑性塑性构成型模型已经在有限元框架中实施,并且用于在空隙生长,初始孔隙率,初始空隙尺寸,塑性各向异性和局部/非本地尺寸效应中寻求新的洞察中的相互关系。

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