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Fatigue properties of ceramic hollow sphere filled aluminium matrix syntactic foams

机译:陶瓷空心球填充铝基复合泡沫的疲劳特性

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摘要

Metal matrix syntactic foams, consisting of two grades of aluminium alloys and a set of oxide ceramic hollow spheres, were investigated in the aspect of cyclic loading. The results of the compressive - compressive cyclic loading with the load asymmetry factor of R=0.1 ensured full reliability design data for the investigated material in the lifetime region, while the fatigue limits were determined by staircase method. Based on the measurements the Wohler curves of the foams were constructed, including the median curves, their confidence boundaries and the fatigue strength. Regarding the matrix material, the softer matrix ensured higher load levels for the fatigue strength than the more rigid matrix. Considering the size of the reinforcing ceramic hollow spheres, larger spheres performed better than the more vulnerable smaller ones. One common failure mode was isolated for the investigated foams: the samples were broken along a shear band, similar to the case of quasi-static loading.
机译:在循环载荷方面研究了由两种等级的铝合金和一组氧化物陶瓷空心球组成的金属基体复合泡沫。载荷-不对称系数为R = 0.1的压缩-压缩循环载荷的结果确保了所研究材料在寿命范围内的完整可靠性设计数据,而疲劳极限是通过阶梯法确定的。基于这些测量,构建了泡沫的Wohler曲线,包括中值曲线,置信度边界和疲劳强度。关于基体材料,较坚硬的基体而言,较软的基体可确保更高的疲劳强度负荷水平。考虑到增强陶瓷空心球的尺寸,较大的球的性能优于较脆弱的较小的球。对于研究的泡沫,一种常见的失效模式是隔离的:样品沿剪切带断裂,类似于准静态载荷的情况。

著录项

  • 来源
    《Materials Science and Engineering》 |2017年第2期|350-357|共8页
  • 作者单位

    Department of Materials Science and Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Bertalan Lajos utca 7., Budapest 1111, Hungary;

    Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Mueegyetem rakpart 3., Budapest 1111, Hungary,MTA-BME Research Group for Composite Science and Technology, Muegyetem rakpart 3., Budapest 1111, Hungary;

    Department of Materials Science and Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Bertalan Lajos utca 7., Budapest 1111, Hungary,MTA-BME Research Group for Composite Science and Technology, Muegyetem rakpart 3., Budapest 1111, Hungary;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mechanical characterization; Composites; Porous materials; Fatigue;

    机译:机械特性复合材料;多孔材料疲劳;

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