Fiber Breakage and Affected Region of Unidirectional Boron Fiber-reinforced Titanium Matrix Composites
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摘要: 研究了硼纖維增強鈦基復合材料中纖維斷裂后的影響區域,在裂紋擴展統計理論的基礎上,經過理論分析和實驗得到了1種合理的簡化模型.結果表明,復合材料中1根纖維斷裂后引起的應力再分布和應力集中明顯影響其鄰近的未斷裂纖維.伴隨著貫穿纖維的原始裂紋逐步擴展,其影響區域(即纖維的影響長度區域)亦逐步擴大.當增強纖維的體積分數較小時,金屬基體的加工硬化也影響纖維和復合材料的破壞過程.Abstract: A study about fiber breakage and its affected region was presented.Some results of numerical analysis and experiment were obtained by evaluating a feasible simple model based on crack propagation statistic theory.The cxperiment studied the boron fiber breakage and its affected region in titanium matrix composites.The results indicate stress redistribution and concentration due to broken fibers obviously affect the stress-strain condition of the other neighboring unbroken fibers.Accompanying with cumulative process of fiber breakage,the original crack extend and its affected region (also affected length)successively enlarge.In metal matrix lower volume fraction fiber-reinforced composites,the work hardening of matrices also affect the process of fiber and composites damage.
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Key words:
- fiber breakage /
- affected region /
- boron fiber /
- titanium matrix /
- composite
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