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Influence of powder characteristics on sintering behaviour and properties of PM Ti alloys produced from prealloyed powder and master alloy

机译:粉末特性对预合金粉末和中间合金pm钛合金烧结性能和性能的影响

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摘要

The use and development of titanium and titanium alloys have been strongly correlated to high technology industries where costs are not the most important aspect. Titanium could see its market grow by the application of lower cost and more efficient processing methods such as powder metallurgy. This work deals with the characterisation of two types of powders: commercial prealloyed powder and powder produced from master alloy combining mechanical milling and conventional blending to adjust the particle size. The characteristics of the powders, sintering behaviour and final properties of the parts indicate that the master alloy approach leads to better compressibility than the prealloyed powders and, therefore, to lower dimensional change during sintering. The most important result is that it is possible to obtain Ti alloys with properties similar to or better than alloys from prealloyed powders and to obtain homogeneous microstructures, which allows the composition to be adjusted to requirements.
机译:钛和钛合金的使用和开发与成本不是最重要的方面的高科技产业紧密相关。钛可以通过应用低成本和更高效的加工方法(例如粉末冶金)来看到其市场的增长。这项工作涉及两种粉末的表征:商业预合金粉末和由母合金生产的粉末,结合机械研磨和常规掺混以调节粒径。粉末的特性,烧结行为和零件的最终性能表明,与预合金粉末相比,中间合金法可产生更好的可压缩性,因此在烧结过程中尺寸变化较小。最重要的结果是可以从预合金粉末中获得性能与Ti合金相似或更好的Ti合金,并获得均匀的微观结构,从而可以将组成调整到要求的水平。

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