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Tensile Behavior of High Temperature Cu-Cr-Zr Alloy

机译:高温Cu-Cr-Zr合金的拉伸行为

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The tensile behavior of Cu-Cr-Zr alloy was investigated at different temperatures. The material investigated was heat treated to the following condition: solutionizing 980°C-40 min then water quenching, aging 460°C-4 h. The test temperature was ranged from room temperature to 600°C at intervals of 100°C. Curves describing the tensile properties were obtained. The Vickers hardness, microstructure and fracture surface of the tested alloys were also studied. The results reveal that the tensile strength of Cu-Cr-Zr alloys decreases with the increase of temperatures. Additionally, due to fully recrystallization, a combination of a high tensile strength with a fairly good plasticity can be achieved at 200°C. The suitable working temperature of Cu-Cr-Zr alloy ranges form room temperature to 300°C. The results also indicate that the mechanism of Cu-Cr-Zr alloy fracture is the nucleation, growth, extension and join of microvoid caused by second phase particle.
机译:在不同温度下研究了Cu-Cr-Zr合金的拉伸行为。将研究的材料进行热处理到以下条件:溶液980℃-40分钟然后水猝灭,老化460℃-4h。在100℃的间隔,测试温度范围为室温至600℃。获得了描述拉伸性质的曲线。研究了测试合金的维氏硬度,微观结构和裂缝表面。结果表明,Cu-Cr-Zr合金的拉伸强度随温度的增加而降低。另外,由于完全重结晶,可以在200℃下实现具有相当良好的可塑性的高拉伸强度的组合。 Cu-Cr-Zr合金范围的合适工作温度将室温为300℃。结果还表明,Cu-Cr-Zr合金骨折的机制是由第二相颗粒引起的微伏糖的成核,生长,延伸和加入。

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