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Influence of Distinct Manufacturing Processes on the Microstructure of Ni-Based Metal Matrix Composites Submitted to Long Thermal Exposure

机译:不同制造工艺对长热曝光的Ni基金属基复合材料微观结构的影响

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Metal Matrix Composites (MMCs) are known for their remarkable properties, by combining materials from different classes. Ni-based MMCs are a promising group of heat-resistant materials, targeting aerospace applications. A discontinuously reinforced Inconel X-750/TiC 15 vol.% MMC was proposed for use in lighter, creep resistant turbine elements, with the aim to endure service temperatures up to 1073 K (800 °C). However, their microstructural stability at high temperatures for long periods of time remained to be further investigated. To address this need, specimens were produced by both conventional hot pressing and spark plasma sintering, using powders milled by low and high energy processes, followed by long isothermal aging. The treatments were conducted at 973 and 1073 K, for times between 50 and 1000 hours. The resulting samples were investigated with XRD and EDS techniques for phase analysis. In addition, measurements of hardness were made to monitor changes in mechanical behavior. It was found that, for each different manufacturing process, the amount, distribution and size of y' and other precipitates notably vary during the overaging process. Consequently, the amount of elements kept in solid solution also shifted with time. Furthermore, the study shows how distinct initial microstructures, resulting from diverse fabrication processes, differently impact the microstructural stability over long times of exposure to high temperatures.
机译:金属基复合材料(MMC)通过组合来自不同类的材料而已知其显着性质。基于NI的MMC是一个有希望的耐热材料组,瞄准航空航天应用。不连续增强的X-750 / Tic15 Vol.%MMC被提出用于较轻,抗耐火涡轮元件,旨在恢复高达1073k(800°C)的服务温度。然而,它们在长时间的高温下的微观结构稳定性仍然进一步研究。为了解决这种需求,通过常规的热压和火花等离子体烧结产生标本,使用由低和高能量过程研磨的粉末,然后是长等温老化。将处理在973和1073k下进行,达到50至1000小时。研究得到的样品用XRD和EDS技术进行相位分析。此外,对硬度进行测量以监测机械行为的变化。发现,对于每个不同的制造过程,Y'和其他沉淀的量,分布和尺寸在过度过程中尤其变化。因此,固体溶液保持的元素的量也随时间转移。此外,该研究表明,由于多样化的制造过程产生了不同的初始微观结构,从而在长时间暴露于高温下不同地影响微观结构稳定性。

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