首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >High temperature tensile fracture characteristics of the oriented TiB whisker reinforced TA15 matrix composites fabricated by pre-sintering and canned extrusion
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High temperature tensile fracture characteristics of the oriented TiB whisker reinforced TA15 matrix composites fabricated by pre-sintering and canned extrusion

机译:通过预烧结和罐装挤压制造的取向TIB晶须增强TA15基质复合材料的高温拉伸裂缝特性

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AbstractIn this paper, the high-temperature (range from 673?K to 973?K with an interval of 100?K) tensile mechanical properties, fracture mechanism and fracture process of the monolithic TA15 alloy and 5?vol% in situ synthesized oriented TiB whisker-reinforced TA15 titanium matrix composites (TiBw/TA15) fabricated by pre-sintering and canned extrusion were investigated. The results showed that the TiBw/TA15 composites fabricated by this method possessed an upper high temperature tensile strength, at the same time, had better high temperature plastic deformation capacity compared to TiCp (TiBw) reinforced TA15 composites fabricated by other methods. TiBw/TA15 showed an obvious improvement in high temperature tensile strength compared to monolithic TA15 alloy while the plasticity was the opposite. The fracture results suggested that TiBw could reinforce the TA15 matrix below 873?K, while the debonding between the matrix and TiBw occurred when the stretching temperature reached 973?K. The presence of micro-pores would not become the source of crack initiation during the tensile process and therefore did not adversely affect the high temperature properties of the composites. With the addition of TiBw, the fracture mechanism was changed to a mixture of brittle fracture and ductile failure (composites) from ductile failure (monolithic TA15 alloy). Additionally, analyzing the different parts of the fracture sample could qualitatively analyze the fracture process of the composites and maybe could replace the in-situ tensile observation at high temperature.Highlights?The oriented TiB whisker would increase the high temperature performance of the composites to a large extent.?The presence of micropores did not degrade the high temperature properties of the materials.?Analyzing the different parts of the fracture sample could qualitatively analyze the fracture process.]]>
机译:<![CDATA [ 抽象 在本文中,高温(范围从673?k到973?k,间隔为100 αk)抗拉机械性能,裂缝机理和整体Ta15合金的断裂过程,5?Vol%原位合成的取向Tib晶须增强TA15钛基质复合材料(Tibw / Ta15)进行预烧结和罐头挤出制成。结果表明,通过该方法制造的TIBW / TA15复合材料同时具有更好的高温塑性变形容量,与其他方法制造的TICP(TIBW)增强TA15复合材料相比具有更好的高温塑性变形容量。与整体式Ta15合金相比,Tibw / Ta15显示出高温拉伸强度的明显改善,而可塑性相反。裂缝结果表明,TIBW可以加强低于873Ω·k的TA15矩阵,而当拉伸温度达到973Ω·k时,基质和TIBW之间的剥离发生。微孔的存在不会成为拉伸过程中裂纹引发的源,因此对复合材料的高温性质没有不利影响。随着TIBW的添加,将断裂机制改变为来自延性衰竭(整体TA15合金)的脆性断裂和延性失效(复合材料)的混合物。另外,分析裂缝样品的不同部分可以定性地分析复合材料的断裂过程,并且可能可以在高温下取代原位拉伸观察。 < / ce:abstract> 突出显示 面向的Tib晶须将在很大程度上提高复合材料的高温性能。 分析不同的部分裂缝样品可以定性分析骨折过程。 ]]>

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