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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Concurrent high strength and high ductility in isotropic bulk Cu-Al alloy with three-dimensional nano-twinned structure
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Concurrent high strength and high ductility in isotropic bulk Cu-Al alloy with three-dimensional nano-twinned structure

机译:具有三维纳米孪晶结构的各向同性块状Cu-Al合金的同时高强度和高延展性

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摘要

A structure with extensive randomly oriented nanoscale deformation twins and twin intersections was introduced in a bulk Cu-Al alloy by multi-directional forging at room temperature. This three-dimensional nano-twinned structure led to isotropic mechanical properties with concurrent high strength and high ductility, attributed to enhancing the strain hardening rate. The strategy described here can be scaled up to produce large three-dimensional nanostructured materials for practical applications.
机译:通过在室温下多方向锻造,在块状Cu-Al合金中引入了具有广泛随机取向的纳米级变形孪晶和孪晶相交的结构。这种三维纳米孪生结构导致各向同性的机械性能,同时具有高强度和高延展性,这归因于应变硬化速率的提高。此处描述的策略可以按比例放大以生产大型的三维纳米结构材料,供实际应用。

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