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A new methodology for measurement of semi-solid constitutive behavior and its application to examination of as-cast porosity and hot tearing in aluminum alloys

机译:一种测量半固态本构行为的新方法及其在铝合金铸态孔隙率和热撕裂检测中的应用

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摘要

Hot tearing and as-cast porosity are the two defects which impede the performance of cast products. The effect of porosity on hot tearing was investigated using a novel semi-solid tensile deformation methodology combined with X-ray micro-tomography. Semi-solid deformation tests were conducted on the commercial aluminium-magnesium alloy AA5182 in the as-cast state. This material was tested in two forms: as-received and hot isostatically pressed. In all cases, processing via hot isostatic pressing was found to increase the semi-solid tensile strength and ductility by reducing the number of pre-existing nucleation sites for strain accommodation. Further, it was shown that the failure in this material is localized to the fracture surface with very little internal damage occurring in other areas. These results support the hypothesis that as-cast porosity is intimately linked to the hot tearing susceptibility of aluminum alloys. © 2008 Elsevier B.V. All rights reserved.
机译:热撕裂和铸件孔隙率是阻碍铸造产品性能的两个缺陷。使用新颖的半固态拉伸变形方法结合X射线显微断层扫描技术研究了孔隙度对热撕裂的影响。在铸态下对商用铝镁合金AA5182进行了半固态变形测试。该材料以两种形式进行了测试:接收时和热等静压。在所有情况下,发现通过热等静压进行的加工可通过减少用于应变调节的预先成核位点的数量来提高半固态拉伸强度和延展性。此外,已表明,这种材料的破坏仅限于断裂表面,而在其他区域发生的内部破坏很小。这些结果支持这样的假设,即铸态孔隙率与铝合金的热撕裂敏感性密切相关。 ©2008 Elsevier B.V.保留所有权利。

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