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Studying the fatigue behavior of zirconium-based bulk-metallic glasses and composites.

机译:研究锆基大块金属玻璃和复合材料的疲劳行为。

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摘要

As excellent candidates for structural materials, the mechanical behavior of bulk metallic glasses (BMGs) is being widely studied. Although their fatigue behavior is very important for engineering applications, there are few studies on their fatigue behavior. Moreover, the understanding of the fatigue behavior is pretty limited.; High-cycle fatigue experiments were conducted on notched Zr-based BMGs under tension-tension loading in air and vacuum at room temperature. A sparking phenomenon was found by infrared camera at the final fracture moment of Zr 50Al10Cu30Ni10 in air. The fatigue-endurance limit (983 MPa) of Zr50Cu37Al10Pd3 was greatest among these Zr-base BMGs in air. The fatigue lives in vacuum and air are generally similar.; LM001 and LM002 are commercial Zr-based BMGs. The X-ray diffraction results show that LM001 is a monolithic BMG and LM002 is a BMG composite containing crystalline phases. The fatigue-endurance limit (239 MPa) of LM002 was found to be significantly lower than that (567 MPa) of LM001, which indicates that the crystalline phase could degrade the resistances to fatigue.; The compression strengths of Zr-based BMGs with partial crystallization are comparable to those of their fully amorphous alloys. However, the fatigue-endurance limits of these BMGs with partial crystallization were much lower than those of their fully amorphous alloys, which suggested that the fatigue behavior of a BMG is very sensitive to the microstructure.; Fatigue cracks initiate from the outer surface of the sample, inclusions, and/or porosity. The propagation region exhibits a typical striation-type fracture. The final fast fracture region was very rough and occupied most of the fracture surface. The vein pattern and droplets with a melted indication were observed in the apparent melting region. A mechanistic understanding of the fatigue behavior of the Zr-based BMGs is suggested.; The ratio of the fatigue-endurance limit to the tensile strength seems to increase with increasing Poisson's ratio. Moreover, The fatigue endurance limits of Zr-based, Cu-based, and Fe-based BMGs and composites were comparable to those of ductile crystalline alloys. The fatigue-endurance ratios of Zr-based BMGs were found to be comparable with those of high strength crystalline alloys.
机译:作为结构材料的极佳候选材料,块状金属玻璃(BMG)的机械性能正在得到广泛研究。尽管它们的疲劳行为对于工程应用非常重要,但对其疲劳行为的研究很少。此外,对疲劳行为的理解还很有限。在室温下,在空气和真空中的拉力-拉力载荷下,对带缺口的Zr基BMG进行了高周疲劳实验。红外照相机在空气中Zr 50Al10Cu30Ni10的最终断裂时刻发现了火花现象。在这些Zr基BMG中,Zr50Cu37Al10Pd3的疲劳极限(983 MPa)最大。真空和空气中的疲劳寿命通常相似。 LM001和LM002是商业的基于Zr的BMG。 X射线衍射结果表明,LM001是整体的BMG,LM002是含有结晶相的BMG复合材料。 LM002的疲劳极限(239 MPa)明显低于LM001的疲劳极限(567 MPa),这表明晶相会降低抗疲劳性。具有部分结晶的Zr基BMG的压缩强度与其完全非晶态合金的压缩强度相当。然而,这些具有部分结晶的BMG的疲劳强度极限远低于其完全非晶态合金的疲劳极限,这表明BMG的疲劳行为对微观结构非常敏感。疲劳裂纹从样品的外表面,夹杂物和/或孔隙开始。传播区域表现出典型的条纹型断裂。最终的快速断裂区域非常粗糙,并占据了大部分断裂面。在表观熔融区域观察到具有熔融指示的静脉图案和液滴。建议对基于Zr的BMG的疲劳行为有一个机械的理解。疲劳耐久性极限与抗拉强度的比率似乎随着泊松比的增加而增加。此外,Zr基,Cu基和Fe基BMG和复合材料的疲劳耐久性极限与韧性晶体合金相当。发现基于Zr的BMG的疲劳强度比与高强度结晶合金的疲劳强度比相当。

著录项

  • 作者

    Wang, Gongyao.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 228 p.
  • 总页数 228
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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