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Effect of Volume Fraction Solid and Injection Speed on Mechanical Properties in New Type Semi-solid Injection Process

机译:体积分数固体和注射速度对新型半固体注射工艺力学性能的影响

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We have developed new type semi-solid injection process, that is, runner-less injection process which can obtain high material yield of about 90% for magnesium alloy. In this process, alloy billets are heated to the semi-solid temperature in the injection cylinder and are injected into a permanent mold. In order to investigate the effects of volume fraction solid and injection speed on microstructure and mechanical properties of AZ91D magnesium alloy injected into the permanent mold, semi-solid forming testing machine which has the same system as a runner-less injection machine, has been made on an experimental basis. The magnesium billet precisely controlled at given temperature has been injected into a permanent mold with two kinds (slow and high) of speed and plate-like specimens with each fraction solid have been fabricated. Microstructure has been observed by optical microscopy and X-ray computerized tomography (CT) scanner. Mechanical properties have been measured by tensile test. The effects of volume fraction solid of the alloy slurry and injection speed on mechanical properties have been clarified.
机译:我们开发了新型半固体注射工艺,即较少的流道注射过程,其可以获得镁合金约90%的高材料产率。在该过程中,合金坯料在注射缸中加热到半固体温度,并注入永久模具中。为了研究体积分数固体和注射速度对注入永久模具中的AZ91D镁合金的微观结构和机械性能的影响,已经制造了具有与较少的流道注射器具有相同系统的半固体成型试验机。在实验基础上。在给定温度下精确地控制的镁坯已经注入到具有两种(慢且高)的速度和板状样本的永久模具中,并制造了每个级分固体。光学显微镜和X射线计算机断层扫描仪(CT)扫描仪已经观察到微观结构。通过拉伸试验测量机械性能。已经阐明了合金浆料和注射速度对机械性能的体积分数固体的影响。

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