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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Fatigue Crack Growth in a Particulate TiB_2-Reinforced Powder Metallurgy Iron-Based Composite
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Fatigue Crack Growth in a Particulate TiB_2-Reinforced Powder Metallurgy Iron-Based Composite

机译:TiB_2增强粉末冶金铁基复合材料的疲劳裂纹扩展

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摘要

Fatigue crack growth behavior has been examined in a particulate titanium diboride (TiB_2)-reinforced iron-based composite that had been produced via a mechanical alloying process. Comparison with equivalent unreinforced material indicated that fatigue crack growth resistance in the composite was superior to monolithic matrix material in the near-threshold regime. The composite exhibited relatively low crack closure levels at threshold, indicative of a high intrinsic (effective) threshold growth resistance compared to the unreinforced iron. The lower closure levels of the composite were consistent with reduced fracture surface asperity sizes, attributable to the reinforcement particles limiting the effective slip distance for stage I-type facet formation. The observed shielding behavior was rationalized in terms of recent finite-element analysis of crack closure in relation to the size of crack wake asperities and the crack-tip plastic zone. The different intrinsic fatigue thresholds of the composite and unreinforced iron were closely consistent with the influences of stiffness and yield strength on cyclic crack-tip opening displacements. Cracks in the composite were generally seen to avoid direct crack-tip-particle interaction.
机译:在通过机械合金化工艺生产的颗粒状二硼化钛(TiB_2)增强的铁基复合材料中,研究了疲劳裂纹的扩展行为。与等效的非增强材料进行比较表明,复合材料的抗疲劳裂纹扩展性能在接近阈值范围内优于整体式基质材料。该复合材料在阈值处表现出相对较低的裂纹闭合水平,表明与未增强的铁相比,其固有的(有效的)阈值增长阻力较高。复合材料的较低闭合水平与减小的断裂表面凹凸不平尺寸相一致,这归因于增强颗粒限制了阶段I型小平面形成的有效滑移距离。根据最近对裂纹闭合的有限元分析,相对于裂纹尾部粗糙度和裂纹尖端塑性区,合理化了观察到的屏蔽行为。复合材料和未增强铁的不同固有疲劳阈值与刚度和屈服强度对循环裂纹尖端开口位移的影响密切相关。通常认为复合材料中的裂纹可避免裂纹尖端与颗粒之间的直接相互作用。

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