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Effect of Niobium on the Microstructure of High Chromium White Cast Iron

机译:铌对高铬白铸铁微观结构的影响

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Equipment wear is caused by the disintegration of material due to the contact between the machines components and the ore, resulting in stress to the surface of the material. Wear causes loss of efficiency, vibration, misalignment and, in severe cases, cracks that may lead to fracture and damage to the equipment. In mining, wear is caused by operational problems in which generate high costs. Some researchers studied white cast iron alloys with high chromium and the addition of niobium for wear plates manufacturing and therefore, plates to protect structural parts of the equipment have been developed. This study presents the characterization of the microstructure of two alloys of white cast iron with high chromium containing 3.8 wt.% C and 27.1 wt.% Cr and the addition of 0.9 wt.% Nb (alloy 1) and 1.6 wt.% Nb (alloy 2), respectively. Samples of the two alloys were subjected to metallographic tests, microhardness and abrasion type rubber wheel tests, according to the ASTM: G65-91 standard. Complexes carbides have been identified in both alloys. The results of microhardness and wear resistance tests were correlated and identified the effect of niobium addition. The findings suggest that the addition of niobium in these alloys contributes to the formation of NbC and increase of Cr in the matrix; consequently increase in the hardenability of the material. The wear resistance of alloy 2 was 47.95% higher than alloy 1 in abrasion type rubber wheel tests. It demonstrates that the increase of niobium in the alloy has contributed to improve wear resistance due to the substantial change in the microstructure and distribution of NbC carbides.
机译:设备磨损是由于机器部件和矿石之间的接触而导致材料的崩解引起的,导致材料表面的应力。磨损导致效率,振动,未对准,并且在严重情况下,可能导致设备骨折和损坏的裂缝。在采矿中,磨损是由产生高成本的操作问题引起的。一些研究人员研究了具有高铬的白铸铁合金,并为耐磨板制造添加了铌,因此已经开发了保护设备的结构部件的板。本研究介绍了具有3.8重量%的高铬的白铸铁两种合金微观结构的表征。%C和27.1重量%Cr,加入0.9重量%Nb(合金1)和1.6重量%NB(合金2)分别。根据ASTM:G65-91标准,对两种合金的样品进行金相试验,显微硬度和耐磨型橡胶轮测试。在两种合金中已经鉴定了复合物碳化物。微硬度和耐磨性试验的结果相关,并确定了铌的作用。研究结果表明,这些合金中的铌的添加有助于形成Nbc和基质中Cr的增加;因此增加了材料的淬透性。合金2的耐磨性高于耐磨型橡胶轮测试的合金1的47.95%。结果表明,由于NBC碳化物的微观结构和分布的显着变化,铌中铌的增加有助于提高耐磨性。

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