Formation of Grain Boundary α in β Ti Alloys: Its Role in Deformation and Fracture Behavior of These Alloys

被引:0
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作者
John W. Foltz
Brian Welk
Peter C. Collins
Hamish L. Fraser
James C. Williams
机构
[1] The Ohio State University,Quad Cities Manufacturing Laboratory
[2] Arsenal Rock Island,undefined
关键词
Crack Initiation; Scan Transmission Electron Microscopy; Bimodal Condition; Lath Size; Average Ultimate Tensile Strength;
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学科分类号
摘要
Beta-Ti alloys contain sufficient concentrations of β stabilizing alloy additions to permit retention of the metastable β phase after cooling to room temperature. Decomposition of the metastable β phase results in the formation of several possible phases, at least two of which are metastable. Concurrently, equilibrium α phase often forms first by heterogeneous nucleation at the α grain boundaries with an accompanying precipitate free zone observed adjacent to the grain boundary α. The grain boundary regions are softer than the precipitation hardened matrix. As a consequence, fracture follows the prior β grain boundaries, especially in high-strength conditions. This fracture mode results in low tensile ductility and/or fracture toughness. This article will describe methods of minimizing or eliminating grain boundary α formation by using metastable transition precipitates to nucleate α more rapidly. The effects on fracture behavior also will be described.
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页码:645 / 650
页数:5
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