首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of aging heat treatment on microstmcture and tensile properties of a new (3 high strength titanium alloy
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Effect of aging heat treatment on microstmcture and tensile properties of a new (3 high strength titanium alloy

机译:时效热处理对新型(3高强度钛合金)组织和拉伸性能的影响

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摘要

Microstructure and tensile properties of a new p high strength titanium alloy Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe were investigated. Microstructure observation indicates that the primary α phase, which formed during solution treatment, can effectively limit the growth of p grains. Aging treatments were performed at temperatures ranging from 440 °C to 560 °C for 8 h to study the effect of aging temperature on microstructure and tensile properties. Finer acieular α precipitates in β matrix during aging treatments and tends to coarser with increasing of temperature. This trend leads to the variation of tensile properties that the strength decreased and ductility changed in opposite way. A highest yield strength value of 1637 Mpa is obtained by strengthening of acieular α phase with a width of 50 nm in aging at 440 °C for 8 h, with an acceptable elongation of 5.6% due to small β grain size. The ductility is up to 18% at 560 °C with a high strength of 1400 MPa. Further aging treatments were performed at 560 °C ranging from 2 h to 24 h to investigate the effect of aging time on microstructures and tensile properties. The grain boundary α growth and coarsen with increasing of aging time. EBSD analysis shows that grain boundary α phase followed by Burgers orientation relationship randomly with one adjacent p grain. The coarsening of grain boundary α layer is deleterious to mechanical properties of alloys both of strength and ductility.
机译:研究了新型p高强度钛合金Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe的组织和拉伸性能。显微组织观察表明,固溶处理期间形成的初生α相可以有效地限制p晶粒的生长。在440°C至560°C的温度范围内进行了8小时的时效处理,以研究时效温度对显微组织和拉伸性能的影响。在老化过程中,较细的α-α沉淀在β基质中,并随着温度的升高而趋于粗大。这种趋势导致拉伸性能的变化,即强度下降而延性以相反的方式变化。通过在440°C下老化8 h宽度为50 nm的蜂窝状α相强化8h,可获得最大的屈服强度值1637 Mpa,由于小的β晶粒尺寸,可接受的伸长率为5.6%。在560°C下具有1400 MPa的高强度,延展性高达18%。在560°C下进行2小时至24小时的进一步时效处理,以研究时效时间对显微组织和拉伸性能的影响。随着时效时间的增加,晶界α生长并粗化。 EBSD分析表明,晶界α相与随后的Burgers取向关系与一个相邻的p晶粒随机相关。晶界α层的粗化对强度和延展性的合金的机械性能都是有害的。

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