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首页> 外文期刊>Results in Physics >Development of spark plasma sintered TiAlSiMoW multicomponent alloy: Microstructural evolution, corrosion and oxidation resistance
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Development of spark plasma sintered TiAlSiMoW multicomponent alloy: Microstructural evolution, corrosion and oxidation resistance

机译:放电等离子体烧结TiAlSiMoW多组分合金的开发:组织演变,耐腐蚀和抗氧化性

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TiAlMoSiW high entropy alloy was fabricated using spark plasma sintering under different sintering temperatures. The microstructural and morphological characteristics of the alloy were investigated using X-ray diffractometry (XRD) and scanning electron microscope (SEM) equipped with energy dispersive spectroscopy (EDS). The mechanical and corrosion properties of the alloy were tested using diamond base indentor and potentiodynamic polarization. Thermogravimetric analysis and density measurements were used to check the thermal stability and densification of the samples. Microstructural analysis of the samples showed that the samples exhibited a bcc matrix with secondary phase precipitate of TiSi2. The microhardness was found to be subject to sintering temperature and densification with high microhardness values obtained 1000?°C and 98% densification. The presence of elements that form stable protective film were attributed to the high corrosion performance of the samples. These elements also form stable oxide scales in elevated temperatures improving the thermal stability of the alloy. Excessive oxidation was noticed to occur at temperatures above 535?°C showing that the alloy has superior thermal stability than Ti-6V-4Al.
机译:TiAlMoSiW高熵合金是在不同的烧结温度下通过火花等离子体烧结制备的。使用X射线衍射仪(XRD)和配有能量色散谱仪(EDS)的扫描电子显微镜(SEM)研究了合金的显微组织和形态特征。使用金刚石基压头和电位动力学极化测试了合金的机械性能和腐蚀性能。使用热重分析和密度测量来检查样品的热稳定性和致密化。样品的微观结构分析表明,样品显示出bcc基质,并伴有TiSi2的第二相沉淀。发现显微硬度受烧结温度的影响,并且致密化具有高的显微硬度值,获得了1000℃和98%的致密化。形成稳定保护膜的元素的存在归因于样品的高腐蚀性能。这些元素还在高温下形成稳定的氧化皮,从而改善了合金的热稳定性。注意到在535℃以上的温度下会发生过度氧化,这表明该合金具有比Ti-6V-4Al更好的热稳定性。

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