Quantitative Study of Magnetic, Physical Properties And Microstructural Composition of Tungsten Carbide

Joeseph Owolavi
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引用次数: 1

Abstract

Tungsten Carbide is a hard and dense material with very high rigidity. The density is about 15.0g/cm3 with thermal conductivity of 110w/moc and coefficient of thermal expansion of 6.2µm-1K-1. The melting and decomposition point is about 2,560oc and boiling point of 6,200oc. It is hardness varies with WC grain size and co content. The poisson’s ratio is 0.31 and the compressive strength at 20oc is about 6200N/mm2 with young’s modulus ranging from 400 to 630 GPa. Tungsten Carbide is slightly magnetic and as an alloy, the magnetic property depends upon either mixed with cobalt or nicked. It is combination with other metals as an alloy make it so strong and durable as well as shiny and expensive looking. Tungsten Carbide is prepared by heating powered Tungsten with carbon black in the presence of hydrogen at 1600oc (2,900oF). Tungsten Carbide is an important material for metal machining, rock drilling, coal cutting, metal mixing and oil drilling due to an excellent combination of hardners, strength, wear resistance and fracture toughness.  
碳化钨磁性、物理性能及显微组织组成的定量研究
碳化钨是一种坚硬致密的材料,刚性非常高。密度约为15.0g/cm3,导热系数为110w/moc,热膨胀系数为6.2µm-1K-1。熔点和分解点约为2560℃,沸点约为6200℃。其硬度随WC晶粒度和co含量的变化而变化。泊松比为0.31,20℃时抗压强度约为6200N/mm2,杨氏模量为400 ~ 630 GPa。碳化钨具有轻微的磁性,作为一种合金,其磁性取决于是否与钴混合或是否有缺口。它与其他金属结合成为合金,使它如此坚固耐用以及闪亮和昂贵的外观。碳化钨是在1600摄氏度(2900华氏度)的氢存在下,用炭黑加热钨制成的。碳化钨是金属加工、岩石钻探、煤切削、金属搅拌和石油钻探的重要材料,因为它具有优异的硬度、强度、耐磨性和断裂韧性。
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Journal of Technology Innovations and Energy
Journal of Technology Innovations and Energy Social Sciences and Management Studies-
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期刊介绍: Journal of Technology Innovations and Energy aims to report the latest developments and share knowledge on the various topics related to innovative technologies in energy and environment.
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