首页> 外文会议>International Conference on Superplasticity in Advanced Materials >Superplastic Properties of γ+α{sub}2 Titanium Aluminide Alloy Ti-43Al-(Nb,Mo,B) in Cast + Post-Solidification Heat Treated Condition
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Superplastic Properties of γ+α{sub}2 Titanium Aluminide Alloy Ti-43Al-(Nb,Mo,B) in Cast + Post-Solidification Heat Treated Condition

机译:施加+后凝固热处理条件下γ+α{亚} 2钛铝合金合金Ti-43Al-(Nb,Mo,B)的超塑性性能

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A novel approach to fabrication of globularized fine-grained structure in γ+α{sub}2 titanium aluminide alloys has been proposed. The approach included the use of a specially designed alloy Ti-43Al-X(Nb,Mo,B) and heat treatment. It was found that the ingot structure of the alloy might be partially globularized on a scale of bulk material using only globularization anneal excluding any hot working procedure. The microstructure and tensile mechanical properties of the alloy in the cast + heat treated condition were investigated. The tensile mechanical tests were performed in air in the temperature range of T=900-1130°C at an initial strain rate of ε'=1.7×10{sup}(-4) s{sup}(-1). High elongation (δ=160-230%) and low flow stresses (σ=36-100 MPa) typical of superplastic behavior were measured at T=1050-1130°C. It was demonstrated that the sheet material produced by spark cutting of the cast + heat treated alloy might be successfully hot formed.
机译:已经提出了一种在γ+α} 2钛铝合金中制备球状细粒化结构的新方法。该方法包括使用专门设计的合金Ti-43Al-X(Nb,Mo,B)和热处理。发现合金的铸锭结构可以仅使用除了任何热工作程序的球形退火的散装材料的块状物料的等级上是部分球状的。研究了铸造+热处理条件下合金的微观结构和拉伸力学性能。以ε'= 1.7×10 {sup}( - 4)的初始应变速率,在T = 900-1130℃的温度范围内在空气中进行拉伸机械试验。在T = 1050-1130℃下测量典型的超塑性行为的高伸长率(δ= 160-230%)和低流量应力(σ= 36-100mPa)。证明,通过火花切割生产的铸+热处理合金的片材可以成功形成。

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