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首页> 外文期刊>Journal of King Saud University >Effect of silicon carbide addition on the microstructure, hardness and densification properties of spark plasma sintered Ni-Zn-Al alloy
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Effect of silicon carbide addition on the microstructure, hardness and densification properties of spark plasma sintered Ni-Zn-Al alloy

机译:碳化硅添加量对火花等离子体烧结Ni-Zn-Al合金显微组织,硬度和致密化性能的影响

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摘要

Effect of silicon carbide (SiC) additions on the physico-chemical properties of nickel-zinc-aluminium (Ni-Zn-Al) alloy prepared by spark plasma sintering technique is investigated. Elemental powder matrix samples were prepared with different amounts of SiC (1–4?wt%) and were mixed in a tubular mixer for 5?h at 49?rpm. The metal-ceramic composite powders were pressed and sintered at 850?°C with 100?°C/min heating rates, 10?min holding time and a pressure of 50?MPa. Hard disk-shaped metal matrix composite pellets (??=?40?mm, thickness?=?5?mm) were obtained. Chemical, physical and microstructural properties of sintered composite samples were studied. The results show that SiC addition particles influence the physical and microstructural characteristics metal matrix composites. The samples demonstrated significant increase in relative density (83–96.53%) and hardness (132–228.36 HV) with increase in SiC additions. Compositional analysis indicated predominant nickel and silicon carbide in identified phases.
机译:研究了碳化硅(SiC)的添加对火花等离子体烧结技术制备的镍锌铝(Ni-Zn-Al)合金的理化性能的影响。用不同量的SiC(1-4%wt%)制备元素粉末基质样品,并在管式混合器中以49?rpm的转速混合5?h。将金属-陶瓷复合粉末压制并在850℃下以100℃/ min的加热速率,10μmin的保持时间和50μMPa的压力烧结。得到了硬盘状的金属基质复合颗粒(Δθ=≤40μmm,厚度θ=≤5μmm)。研究了烧结复合样品的化学,物理和微观结构性能。结果表明,SiC添加颗粒影响金属基复合材料的物理和微观结构特征。样品显示,随着SiC添加量的增加,相对密度(83–96.53%)和硬度(132–228.36 HV)显着增加。成分分析表明,在确定的相中主要存在镍和碳化硅。

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