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Mechanical Properties and Microstructure Evaluation of High Manganese Steel alloyed with vanadium

机译:高锰钢合金化钒的力学性能和微观结构评价

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Austenitic manganese steel has a high toughness, high ductility, high strain hardening capacity and excellent wear resistance, the material is mostly used in the mining industry for crushing and loading equipment. High manganese steel shows superior wear resistance when used under primary crushing system than when used under secondary and tertiary modes of crushing. This work presents the effect of vanadium content on the mechanical properties and microstructure evaluation of high manganese steel. The addition of vanadium to high manganese steels has a direct increase on the hardness and wear resistance. Impact testing for alloys containing vanadium showed low impact energies compared to the standard manganese steel. The increase in hardness and the wear resistance of the alloys was explained based on the vanadium carbide which had formed on the austenitic matrix. It was observed that the carbon and vanadium content will influence the mechanical properties of high manganese steel alloyed with vanadium. Microstructural examination showed that the size and distribution of vanadium carbides influences the mechanical properties and the wear behaviour. Therefore, this work shows that the addition of vanadium to high manganese steel will increase the hardness and wear resistance while decreasing the impact energy of high manganese steel alloyed with vanadium.
机译:奥氏体锰钢具有高韧性,高延展性,高应变硬化容量和优异的耐磨性,材料主要用于采矿工业中进行破碎和装载设备。在初级破碎系统下使用时,高锰钢显示出优于初级破碎系统的耐磨性,而不是在次级和三级破碎模式下使用时。该工作介绍了钒含量对高锰钢机械性能和微观结构评价的影响。向高锰钢的加入钒具有直接增加的硬度和耐磨性。与标准锰钢相比,含有钒的合金的影响测试显示出低冲击能量。基于在奥氏体基质上形成的钒碳化碳化钙来解释合金的硬度和耐磨性的增加。观察到碳和钒含量将影响与钒合金的高锰钢的机械性能。微观结构检查表明钒碳化物的尺寸和分布会影响机械性能和磨损行为。因此,这项工作表明,加入钒对高锰钢将增加硬度和耐磨性,同时降低了与钒合金的高锰钢的冲击能量。

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