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TC11钛合金的组织及塑性与其断裂韧性及裂纹扩展速率的关系
引用本文:刘锡江,张宝昌,何明.TC11钛合金的组织及塑性与其断裂韧性及裂纹扩展速率的关系[J].航空学报,1992,13(4):222-226.
作者姓名:刘锡江  张宝昌  何明
作者单位:西北工业大学401教研室,西北工业大学401教研室,西北工业大学401教研室 西安 710072,西安 710072,西安 710072
摘    要: 研究了TCll合金的组织及拉伸塑性(ψ)与断裂韧性(K_(IC)及裂纹扩展(da/dN)的关系。指明:K_(IC)及da/dN与ψ的关系取决于合金的组织类型。对片状组织及等轴组织进行了具体分析。

关 键 词:钛合金  显微组织  拉伸塑性  断裂韧性  裂纹扩展速率  

THE RELATIONSHIP OF MICROSTRUCTURE AND TENSILE DUCTILITY OF TCll TI-ALLOY WITH ITS FRACTURE TOUGHNESS AND CRACK PROPAGATION
Liu Xi-jiang,Zhang Bao-chang,He Ming.THE RELATIONSHIP OF MICROSTRUCTURE AND TENSILE DUCTILITY OF TCll TI-ALLOY WITH ITS FRACTURE TOUGHNESS AND CRACK PROPAGATION[J].Acta Aeronautica et Astronautica Sinica,1992,13(4):222-226.
Authors:Liu Xi-jiang  Zhang Bao-chang  He Ming
Institution:Faculty 401 of Northwestern Polytechnical University, Xi'an, 710072
Abstract:The relationship of microstructure and tersile ductility (ψ) with fracture toughness (KIc) and crack propagation (da/dN) of TCI 1 Ti alloy is researched into. The results show that the relation of KIC and da/dNwith ψ is dependent on structure type of alloy. For plate-like strucrture KIC increases with increase of ψ, and then invariable. But for equiaxed structure with increase of ψ KIC firstly increases, and then decreases, da / dNof plate-like structure changes along a curve with minimum, but for equiaxde structure da/dNis invariabe with increase of ψ in the researched range up to 30% ψ KIC of equiaxed structure increases with incerase of thickness of a plates preaent in the transformed ft, cooling slowly through temperature range of 950~850°C during heat-treatment, many particles of Ti3Al will precipifate along the periphery of widmanstatten a platelets, resulting in serious decrease of ψ and KIC Optimum synthetic mechanical properties can be obtained by using the heat- treatment of 990°C, 80min ,A.C. +950°C, 2h A.C. +530°C , 5h A.C. Maximum KIC and minimum da/dNmay be obtained by 1030°C , 80min, A.C. +850°C, 2h A.C. +530°C, 5h A.C., notwithstanding the ψ of alloy is very low (6.9%).
Keywords:titanium-alloy microstructure  tensile ductility  fracture toughness  crack propaga- tion  
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