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PM Based Titanium Matrix Composites for Aerospace Applications: Processing, Mechanical Properties and Scale Up

机译:用于航空航天的PM基钛基复合材料:加工,机械性能和放大

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摘要

The reinforcement of titanium with a hard phase is an efficient way to increase the stiffness and strength of conventional titanium alloys. The high reactivity of titanium is a critical challenge in the processing of Titanium Matrix Composites (TMCs). For this reason, Powder Metallurgy is considered a very promising route for the manufacturing of TMCs. In this work, a master alloy (Ti-TiC) was developed by combustion synthesis. This alloy was further blended with conventional titanium alloy and the final consolidation was performed by Spark Plasma Sintering. In addition to the processing details, microstructural and thermomechanical characterization is presented. Materials obtained present higher Young Modulus and strength than conventional Ti-6Al-4V, with higher thermal conductivity and maintaining similar thermal expansion coefficient (CTE). The good corrosion resistance of the material makes it a candidate for possible applications in aerospace. This work presents also the scale up of the process to obtain aerospace demonstrators.
机译:用硬质相增强钛是增加常规钛合金刚度和强度的有效方法。钛的高反应性是钛基复合材料(TMC)加工中的关键挑战。因此,粉末冶金被认为是制造TMC的非常有前途的途径。在这项工作中,通过燃烧合成开发了中间合金(Ti-TiC)。将该合金与常规钛合金进一步混合,并通过火花等离子体烧结进行最终固结。除了工艺细节外,还介绍了微观结构和热机械特性。获得的材料比传统的Ti-6Al-4V具有更高的杨氏模量和强度,并具有更高的导热率并保持相似的热膨胀系数(CTE)。材料的良好耐腐蚀性使其成为航空航天中可能应用的候选材料。这项工作还提出了获得航空航天示威者的过程的扩大规模。

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    TECNALIA, Industry and Transport division, Paseo Mikeletegi, 2 - Parque Tecnológico E-20009 San Sebastian, Spain miguel.lagos@tecnalia.com;

    TECNALIA, Industry and Transport division, Paseo Mikeletegi, 2 - Parque Tecnológico E-20009 San Sebastian, Spain;

    TECNALIA, Industry and Transport division, Paseo Mikeletegi, 2 - Parque Tecnológico E-20009 San Sebastian, Spain;

    European Space Agency ESA-ESTEC, Materials and Processes Section, Noordwijk, The Netherlands;

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