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首页> 外文期刊>Journal of Materials Science >Low cycle fatigue behaviour of particulate reinforced metal matrix composites
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Low cycle fatigue behaviour of particulate reinforced metal matrix composites

机译:颗粒增强金属基复合材料的低周疲劳行为

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The low cycle fatigue (LCF) resistance of two different 6061 Al/20 vol% alumina particulate metal matrix composites (MMCs) in a peaked-aged condition has been evaluated under fully reversed strain control testing. Test results were combined with scanning electron and optical microscopy investigations to determine the effects of reinforcement particles and strain amplitude on the LCF behaviour of these MMCs. Both materials show three stages of response to LCF: initial fast hardening or softening in the first few cycles; gradual softening for most of the fatigue life; and a rapid drop in the stress carrying capability prior to failure. Both MMCs exhibit short LCF life which follows a Coffin-Manson relationship. All tested specimens domonstrate ductile fracture morphology at final failure. The experimental results are discussed in respect of strain amplitude, matrix composition and reinforcement shape and crack initiation.
机译:在完全逆向应变控制测试下,已经评估了两种不同的6061 Al / 20 vol%氧化铝颗粒金属基复合材料(MMC)在峰值时效条件下的低循环疲劳(LCF)耐受性。测试结果与扫描电子显微镜和光学显微镜研究相结合,以确定增强颗粒和应变幅度对这些MMC的LCF行为的影响。两种材料均显示出对LCF的三个响应阶段:在最初的几个循环中开始快速硬化或软化;在大部分疲劳寿命中逐渐软化;失效前的应力承受能力迅速下降。两种MMC均具有遵循Coffin-Manson关系的LCF寿命短的特点。所有测试的样品在最终破坏时都表现出韧性断裂形态。从应变幅度,基体组成,钢筋形状和裂纹萌生方面讨论了实验结果。

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