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Effect of stress level on the high temperature deformation and fracture mechanisms of Ti-45Al-2Nb-2Mn-0.8 vol. pct TiB²: an 'In Situ' experimental study

机译:应力水平对Ti-45al-2Nb-2mn-0.8 vol。高温变形和断裂机制的影响。 pctTiB²:'原位'实验研究

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摘要

The effect of the applied stress on the deformation and crack nucleation and propagation mechanisms of a gamma-TiAl intermetallic alloy (Ti-45Al-2Nb-2Mn (at. pct)-0.8 vol. pct TiB2) was examined by means of in situ tensile (constant strain rate) and tensile-creep (constant load) experiments performed at 973 K (700 °C) using a scanning electron microscope. Colony boundary cracking developed during the secondary stage in creep tests at 300 and 400 MPa and during the tertiary stage of the creep tests performed at higher stresses. Colony boundary cracking was also observed in the constant strain rate tensile test. Interlamellar ledges were only found during the tensile-creep tests at high stresses (sigma > 400 MPa) and during the constant strain rate tensile test. Quantitative measurements of the nature of the crack propagation path along secondary cracks and along the primary crack indicated that colony boundaries were preferential sites for crack propagation under all the conditions investigated. The frequency of interlamellar cracking increased with stress, but this fracture mechanism was always of secondary importance. Translamellar cracking was only observed along the primary crack.
机译:通过现场拉伸研究了外加应力对γ-TiAl金属间合金(Ti-45Al-2Nb-2Mn(at。pct)-0.8 vol。pct TiB2)的形变,裂纹成核和扩展机制的影响。使用扫描电子显微镜在973 K(700°C)下进行的“恒定应变率”和“拉伸蠕变”(恒定载荷)实验。在300和400 MPa的蠕变试验的第二阶段以及在较高应力下进行的蠕变试验的第三阶段,都出现了集落边界裂纹。在恒定应变率拉伸试验中也观察到菌落边界裂纹。层间壁架仅在高应力(σ> 400 MPa)的拉伸蠕变测试期间以及在恒定应变率拉伸测试期间发现。定量测量沿次要裂纹和沿主要裂纹的裂纹扩展路径的性质表明,在所有研究条件下,菌落边界都是裂纹扩展的优先位置。层间开裂的频率随着应力的增加而增加,但是这种断裂机理始终是次要的。跨片裂纹仅在初级裂纹处观察到。

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