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Microstructure Evolution of As-Cast Nickel Aluminum Bronze under Electropulsing

机译:电赋制下铸造镍铝青铜的微观结构演变

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In this work, the microstructure evolution of as-cast NAB under different electropulsing parameters were studied. The microstructure of the electropulsing treatment (EPT) sample was characterized by mircohardness test and optical microscopy. The results show that compared with heat treatment, when the peak current density reaches 5.84×10~8A/m~2 (no significant change in the structure when the peak current density is lower), the β' phase region undergo phase transition in a shorter time. When the peak current density reaches 7.25×10~8A/m~2, the sample is significantly affected by the Joule heating effect, and the Km and kiv phases are successively dissolved to form Widmanst?tten a structure. As the β' phase increases and the Widmanst?tten a structure forms, the hardness value of the microstructure increases by 80%.
机译:在这项工作中,研究了在不同的电禁忌参数下进行的铸氮的微观结构演变。 通过Mircohardness测试和光学显微镜表征电禁忌处理(EPT)样品的微观结构。 结果表明,与热处理相比,峰值电流密度达到5.84×10〜8A / m〜2(当峰值电流密度较低时没有明显变化)时,β'相位区域在a中经历相变 较短的时间。 当峰值电流密度达到7.25×10〜8A / m〜2时,样品受到焦耳加热效果的显着影响,并且km和kiv阶段连续地溶解以形成Widmanst?TTEN A结构。 随着β'相增加和Widmanst?TTEN的结构形式,微观结构的硬度值增加了80%。

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