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首页> 外文期刊>Materials Characterization >Microstructure and mechanical behavior of a titanium-to-stainless steel dissimilar joint brazed with Ag-Cu alloy filler and an Ag interlayer
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Microstructure and mechanical behavior of a titanium-to-stainless steel dissimilar joint brazed with Ag-Cu alloy filler and an Ag interlayer

机译:用Ag-Cu合金填料和AG层间钎焊的钛 - 不锈钢不同接头的微观结构和力学行为

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摘要

The microstructure and mechanical behavior of a titanium-to-stainless steel dissimilar joint with a characteristic Ti(base)/TiAg/Ag-rich solid solution/stainless steel(base) layered structure were investigated under tensile loading. Elastic deformation in the layered joint structure occurred under the isostress condition observed in multi-phase materials, and the elastic interaction stresses were readily generated at the interphase boundaries to maintain strain continuity. This elastic interaction retarded mechanical yielding in the Ag-rich solid solution layer, thereby leading to the high joint strength. After yielding, the plastic deformation was mostly concentrated on the Ag-rich solid solution layer, and the final fracture proceeded in a ductile mode.
机译:在拉伸载荷下研究了钛 - 不锈钢不同接头的微观结构和富含特性Ti(碱)/ TiAg / Ag固溶体/不锈钢(碱)层状结构的基础结构。 层状关节结构中的弹性变形在多相材料中观察到的肌腱条件下发生,并且在相位边界处容易地产生弹性相互作用应力以保持应变连续性。 该弹性相互作用在富含Ag的固溶层中延迟机械,从而导致高接合强度。 在屈服后,塑性变形大多浓缩在富抗Ag的固溶层上,并且在延性模式下进行最终断裂。

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