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Microstructures and Casting Defects of Magnesium Alloy Made By A New Type of Semisolid Injection Process

机译:新型半固态注射法制备镁合金的组织和铸造缺陷

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We have developed a new type of semisolid injection process that allows magnesium alloys to be formed in high material yields approximating 90%. In this process, generic magnesium billets are heated into their semisolid temperature range in an injection cylinder, without cover gas, and then the material is injected into a mold.In this study, several billets were precision-heated in the cylinder to obtain a desired fraction solid. Plate specimens were produced by injecting the material at different injection speeds. Microstructures were observed by optical microscopy, and casting defects were detected on an X-ray computed tomography scanner. As injection speed was increased, the size and shape of α-Mg solid particles became smaller and more spherical, and the defect volume fraction increased. In contrast, as the fraction solid was increased, the defect volume fraction decreased. Spheroidization and miniaturization of solid particles were attributed to shear stress at the nozzle, and defects were affected by viscosity.
机译:我们开发了一种新型的半固态注射工艺,该工艺可使镁合金以大约90%的高材料产率形成。在此过程中,将普通的镁锭在没有覆盖气体的情况下在注射筒中加热到半固态温度范围,然后将材料注射到模具中。分数固体。通过以不同的注射速度注射材料来生产板状样品。通过光学显微镜观察微观结构,并在X射线计算机断层扫描仪上检测铸件缺陷。随着注射速度的增加,α-Mg固体颗粒的尺寸和形状变得更小,更球形,并且缺陷体积分数增加。相反,随着固体分数的增加,缺陷体积分数降低。固体颗粒的球化和微型化归因于喷嘴处的剪切应力,缺陷受到粘度的影响。

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