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Damage mechanisms at room and high temperature in notched specimens of Al6061/Al2O3 particulate composites

机译:Al6061 / Al2O3颗粒复合材料缺口试样在室温和高温下的损伤机理

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摘要

he aim of the present study was the investigation of the effects of macroscopic stress triaxiality on the presence and evolution of\uddamage in particulate MMC. Two Al6061/Al2O3/10p and 20p particulate reinforced composites were investigated on smooth and differently\udnotched specimens pulled in tension at 20 and 250 C. Fractographic analyses and microstructural observations were carried out\udin order to identify and to map damage mechanisms. Particle fracture was the prominent form of material damage at 20 C, while debonding\udwas the main damage mechanism at 250 C. The distribution of the two damage forms within the specimen volume was interpreted\udon the basis of the results of finite element analyses. At a given level of triaxiality (considered as the hydrostatic to Von Mises\udstress ratio), particle fracture localized in regions of high maximum principal stress, generally associated to the high hydrostatic stress.\udIt was further observed that matrix/interface debonding concentrated in the same regions, but developed on other particles at higher/\udlower load level depending on test temperature.
机译:本研究的目的是研究宏观应力三轴性对颗粒MMC中\ dage的存在和发展的影响。研究了两种Al6061 / Al2O3 / 10p和20p颗粒增强复合材料,它们分别在20和250 C的拉力下经过光滑且有不同缺口的试样进行了研究。进行了断口分析和微观结构观察,以识别并绘制损伤机理。颗粒断裂是20℃时材料破坏的主要形式,而脱键是250℃时的主要破坏机理。基于有限元分析的结果解释了两种破坏形式在试样体积内的分布。在给定的三轴性水平下(被认为是静压与冯·米塞斯的比\非应力比),颗粒断裂位于最大主应力高的区域,通常与高静压相关。\ ud进一步观察到,基体/界面的脱胶集中在相同的区域,但根据测试温度,在更高/更低负载水平下会在其他粒子上显影。

著录项

  • 作者

    E. GARIBOLDI; A. LO CONTE;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 eng
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