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首页> 外文期刊>Powder Metallurgy >Structure and properties of SiC and emery powder reinforced PM 316l matrix composites produced by microwave and conventional sintering
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Structure and properties of SiC and emery powder reinforced PM 316l matrix composites produced by microwave and conventional sintering

机译:微波和常规烧结制备的SiC和金刚砂粉末增强的PM 316l基复合材料的结构和性能

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In this work, PM 316L based composite materials reinforced with SiC and emery powders in amounts of 5, 10 and 15 vol.-% were produced. The mixed powders were compacted by uniaxial pressing at 700 MPa and processed at 1160 and 1250 degrees C for 1 h by means of conventional sintering and microwave sintering. The sintering atmospheres were Ar/H-2 95/5% for conventional sintering and Ar/H-2 90/10% for microwave sintering. Mechanical properties were evaluated with transverse rupture strength (TRS) tests. Densities and porosities were determined using Archimedes method. Sintered samples were characterised by optical microscopy and SEM. All of the composite materials had lower TRS values compared with 316L base material. Among all compositions, 5 vol.-% emery powder reinforced 316L alloy composite samples exhibited the most favourable mechanical and physical properties. The 10 vol.-% SiC containing composite samples also had acceptable properties. Moreover, microwave sintering yields better mechanical and physical properties.
机译:在这项工作中,生产了以5%和10和15体积%的SiC和金刚砂粉增强的PM 316L基复合材料。通过在700MPa下单轴压制将混合的粉末压实,并通过常规烧结和微波烧结在1160和1250℃下处理1小时。对于常规烧结,烧结气氛为Ar / H-2 95/5%,对于微波烧结,烧结气氛为Ar / H-2 90/10%。力学性能通过横向断裂强度(TRS)测试进行评估。使用阿基米德法测定密度和孔隙率。通过光学显微镜和SEM对烧结样品进行表征。与316L基材相比,所有复合材料的TRS值均较低。在所有组合物中,5体积%的金刚砂粉末增强316L合金复合材料样品表现出最有利的机械和物理性能。含10%(体积)SiC的复合材料样品也具有可接受的性能。而且,微波烧结产生更好的机械和物理性能。

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