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Isothermal and continuous cooling decomposition of alpha and beta phases in gamma titanium aluminides

机译:γ钛铝化合物中α和β相的等温和连续冷却分解

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The last decade led to significant engineering advances and component demonstrations for gamma-alloy products. The variety of alloy chemistries and process variations available for these products results in a spectrum of microstructures and property variation for the alloys. However, the quantitative aspects of solid-state reactions and microstructural evolution kinetics, as well as the influences of alloy composition upon these, are relatively unstudied. This manuscript succinctly describes the isothermal and continuous-cooling transformations for gamma alloys across a range of compositions from binary, and ternary bases to complex multicomponent chemistries of commercial interest. Time-temperatrue-transformation curves are compared, and the effects of Al concentration and selected alloying additions are highlighted. Both beta-phase forming elements (Cr, Mo & W) and boron in the alloys are examined as grain-size controlling agents. When the alloy contains such agents, the transformation kinetics may be significantly altered relative to other gamma alloys, thus changing the thermal process path and affecting the perfection of lamellar microstructures.
机译:最后十年导致了伽玛合金产品的重大工程进展和部件演示。可用于这些产品的各种合金化学和工艺变化导致合金的微观结构和性能变化。然而,相对不含外,固态反应和微结构进化动力学以及合金组合物对这些的影响。该稿件简洁地描述了γ合金的等温和连续冷却转化,这些组合物在二元组合物中,以及三元基础对商业兴趣复杂的多组分化学品。比较时间温度 - 转化曲线,突出显示Al浓度和选择合金化添加的影响。将β相形成元素(Cr,Mo&W)和合金中的硼均被检查为晶粒尺寸控制剂。当合金含有这样的试剂时,相对于其他γ合金可以显着改变转化动力学,从而改变热处理路径并影响层状微观结构的完美。

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