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Changes in Abrasive Wear Resistance during Miller Test of High-Manganese Cast Steel with Niobium Carbides Formed in the Alloy Matrix

机译:用合金基质中形成高锰铸钢磨削磨削磨削耐磨性的变化

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摘要

High-manganese Hadfield cast steel is commonly used for machine components operating under dynamic load conditions. The high fracture toughness and abrasive wear resistance of this steel are the result of an austenitic structure, which—while being ductile—at the same time tends to surface harden under the effect of cold work. Absence of dynamic loads (e.g., in the case of sand abrasion) causes rapid and premature wear of parts. To improve the abrasive wear resistance of high-manganese cast steel for operation under the conditions free from dynamic loads, primary niobium carbides are produced in this cast steel during the melting process to obtain in castings, after melt solidification, the microstructure consisting of an austenitic matrix and primary niobium carbides uniformly distributed in this matrix. The measured hardness of the tested samples as cast and after solution heat treatment is 260–290 HV and is about 30–60 HV higher than the hardness of common Hadfield cast steel, which is 230 HV. Compared to common Hadfield cast steel, the abrasive wear resistance of the tested high-manganese cast steel measured in the Miller test is at least three times higher at the niobium content of 3.5 wt%. Increasing the niobium content to 4.5 wt%. in the tested samples increases this wear resistance even more.
机译:高锰HADFIELD铸钢通常用于动态负荷条件下运行的机器部件。该钢的高断裂韧性和磨蚀性耐磨性是奥氏体结构的结果,即延性的奥氏体结构 - 同时倾向于在冷工作的作用下表面硬化。没有动态载荷(例如,在砂磨损的情况下)导致零件的快速和过早磨损。为了改善高锰铸钢的磨料耐磨性在没有动态载荷的条件下进行操作,在熔化过程中在该铸钢中生产原发性铌,以在熔化后获得,熔化凝固后,由奥氏体组成的微观结构在该基质中均匀分布的基质和原发性铌碳化物。作为浇铸和溶液热处理的测试样品的测量硬度为260-290HV,比普通哈尔野铸钢的硬度高约30-60HV,这是230HV。与普通HADFIELD铸钢相比,在米勒试验中测得的测试高锰铸钢的研磨耐磨性在铌含量为3.5wt%的铌含量下至少三倍。将铌含量增加到4.5重量%。在测试的样品中,甚至增加这种耐磨性。

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    Grzegorz Tęcza;

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  • 年度 2021
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