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Effects of Post-Sinter Processing on an Al–Zn–Mg–Cu Powder Metallurgy Alloy

机译:烧结后工艺对Al-Zn-Mg-Cu粉末冶金合金的影响

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The objective of this work was to study the effects of several post-sinter processing operations (heat-treatment, sizing, shot peening) on a press-and-sinter 7xxx series aluminum powder metallurgy (PM) alloy. The characterization of the products was completed through a combination of non-contact surface profiling, hardness measurements, differential scanning calorimetry (DSC), transmission electron microscopy (TEM), X-ray diffraction (XRD), tensile, and three-point bend fatigue testing. It was determined that sizing in the as-quenched state imparted appreciable reductions in surface hardness (78 HRB) and fatigue strength (168 MPa) relative to counterpart specimens that were sized prior to solutionizing (85 HRB and 228 MPa). These declines in performance were ascribed to the annihilation of quenched in vacancies that subsequently altered the nature of precipitates within the finished product. The system responded well to shot peening, as this process increased fatigue strength to 294 MPa. However, thermal exposure at 353 K (80 °C) and 433 K (160 °C) then reduced fatigue performance to 260 MPa and 173 MPa, respectively, as a result of residual stress relaxation and in-situ over-aging.
机译:这项工作的目的是研究几种烧结后加工操作(热处理,施胶,喷丸处理)对压制和烧结7xxx系列铝粉末冶金(PM)合金的影响。通过非接触表面轮廓分析,硬度测量,差示扫描量热法(DSC),透射电子显微镜(TEM),X射线衍射(XRD),拉伸和三点弯曲疲劳的组合来完成产品的表征测试。已确定,相对于在固溶之前定尺寸的相应样本,在淬火状态下施胶会明显降低表面硬度(78 HRB)和疲劳强度(168 MPa)。这些性能下降归因于空位淬灭的an灭,其随后改变了成品中沉淀物的性质。该系统对喷丸处理反应良好,因为此过程将疲劳强度提高到294 MPa。但是,由于残余应力松弛和原位过时效的结果,在353 K(80°C)和433 K(160°C)下的热暴露将疲劳性能分别降低到260 MPa和173 MPa。

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