首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The development of nickel-tungsten carbide functionally graded materials by a laser-based direct metal deposition process for industrial slurry erosion applications
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The development of nickel-tungsten carbide functionally graded materials by a laser-based direct metal deposition process for industrial slurry erosion applications

机译:通过基于激光的直接金属沉积工艺开发镍-碳化钨功能梯度材料,用于工业浆料侵蚀应用

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摘要

Functionally graded materials (FGMs) consisting of Ni-tung (nickel-tungsten carbide) powders with different concentrations of tungsten carbide particles are successfully deposited by a laser-based direct metal deposition (LBDMD) process on 4140 steel substrates. The slurry erosion behaviour of the Ni-tung FGMs is studied at different impingement angles. The slurry erosion tests are performed at Southern Methodist University's Center for Laser-Aided Manufacturing using a centrifugal-force-driven erosion-testing machine. For the purpose of comparison, Ni-tung 40 depositions and 4140 steel samples are also tested. The results indicate that the LBDMD process is able to deposit defect-free Ni-tung FGMs with uniform distribution of tungsten carbide particles in a nickel-based matrix. The slurry erosion resistance of Ni-tung FGMs as observed to be much better than that of the Ni-tung 40 and 4140 steels. The superior slurry erosion resistance of Ni-tung FGMs is attributed to the presence of large amounts of very hard tungsten carbide particles. The material removal rate (MRR) values by erosion decrease with a decrease in the impingement angle, except at a 45° impingement angle on 4140 steel. The relationship among the MRRs, the craters' depth of penetration, the areas of the craters formed, the average surface roughness values, and the impingement angles are established for Ni-tung FGMs, Ni-tung 40, and 4140 steels. The surface profiles of the eroded samples are analysed by measuring the depth of penetration of the craters formed by the slurry jet using a needle-shaped probe and a linear scale with a digital readout. The damaged surfaces are characterized by scanning electron microscopy to investigate the possible application of a material failure model, called damage initiation and damage propagation, to the case of the impingement of a mixture of solid and liquid particles on the Ni-tung FGMs, Ni-tung 40, and 4140 steels. The potentiodynamic polarization curves are generated for the three tested materials and to discover the susceptibility of the material in an erosive environment.
机译:通过基于激光的直接金属沉积(LBDMD)工艺,成功地将包含不同浓度的碳化钨颗粒的镍钨(镍钨合金)粉末组成的功能梯度材料(FGM)沉积在4140钢基材上。研究了镍钨FGM在不同撞击角度下的泥浆侵蚀行为。浆液腐蚀测试是在南部卫理公会大学激光辅助制造中心使用离心力驱动的腐蚀测试机进行的。为了进行比较,还对Ni-tung 40沉积物和4140钢样品进行了测试。结果表明,LBDMD工艺能够沉积无缺陷的镍钨FGM,并且碳化钨颗粒均匀分布在镍基基体中。观察到,镍钨FGM的抗泥浆侵蚀性比镍钨40和4140钢要好得多。镍钨FGM的优异的耐泥浆侵蚀性归因于大量硬质碳化钨颗粒的存在。腐蚀引起的材料去除率(MRR)值随冲击角的减小而减小,除非在4140钢上的冲击角为45°时。建立了镍钨FGM,镍钨40和4140钢的MRR,弹坑穿透深度,形成的弹坑面积,平均表面粗糙度值和撞击角度之间的关系。通过使用针状探针和带有数字读数的线性刻度尺测量由浆液喷射形成的凹坑的穿透深度,可以分析侵蚀样品的表面轮廓。损坏的表面通过扫描电子显微镜进行表征,以研究将固体和液体颗粒撞击镍-镍FGM的情况下,材料破坏模型(称为破坏引发和破坏传播)的可能应用。桐40和4140钢。生成了三种测试材料的电位动力学极化曲线,以发现该材料在腐蚀性环境中的敏感性。

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