首页> 外文会议>European Congress and Exgibition on Powder Metallurgy(Euro PM 2003) v.1; 20031020-20031022; Valencia; ES >Iron Based Materials With Improved Oxidation Resistance Prepared By Powder Metallurgy
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Iron Based Materials With Improved Oxidation Resistance Prepared By Powder Metallurgy

机译:粉末冶金法制备的具有改善的抗氧化性的铁基材料

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If oxidation resistance of iron based materials at elevated temperatures is required stainless steels like 316L are used. However the manufacturing process of stainless steel parts is more expensive compared to conventional Fe-based materials. The approach of the presented work is the development of oxidation resistant Fe-based materials using a cost effective technology. Aluminium and/or Silicon were used as alloying elements added to iron as a pre-alloyed powder (CuAl, NiSi). The sintering of the mixtures consolidated at 600MPa was performed at 1120℃ under hydrogen. During sintering a liquid phase is formed at 1000℃ leading to a homogeneous distribution of the alloying elements in the already formed iron skeleton. The investigation of mechanical properties have shown that strength and ductility values are comparable to copper alloyed iron based materials. The oxidation resistance is considerably improved and comparable with 316L up to temperatures of 800℃.
机译:如果需要铁基材料在高温下的抗氧化性,请使用316L等不锈钢。然而,与常规的铁基材料相比,不锈钢零件的制造过程更加昂贵。提出的工作的方法是使用经济高效的技术开发抗氧化的铁基材料。铝和/或硅用作添加到铁中的合金元素,作为预合金粉末(CuAl,NiSi)。在1120℃和氢气下对600MPa固结的混合物进行烧结。在烧结过程中,液相在1000℃形成,导致合金元素在已经形成的铁骨架中均匀分布。机械性能研究表明,强度和延展性值可与铜合金铁基材料相媲美。耐氧化性大大提高,在800℃的温度下仍可与316L媲美。

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