High-stress abrasive wear characteristics of ultra-high strength press-hardening steel

Q3 Engineering
O. Haiko, K. Valtonen, A. Kaijalainen, V. Javaheri, J. Kömi
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引用次数: 0

Abstract

Ultra-high strength steels are widely utilized in many applications operating in harsh abrasive wear conditions. For instance, the machineries used in mining and mineral handling or in agricultural sector require robust, but cost-effective wear-resistant materials. Steels provide excellent combination of mechanical properties and usability. This study encompasses mechanical and wear testing of an experimental medium-carbon press-hardening steel. The as-received material was austenitized at two different temperatures and quenched in water. Additionally, low-temperature tempering was applied for one variant. In total, three variants of the press-hardening steel were produced. Microstructural characterization and mechanical testing were conducted for the steel samples. The wear testing was carried out with high-stress abrasive method, in which the samples were rotated inside a crushed granite bed. A commercial 400 HB grade wear-resistant steel was included in the wear testing as a reference. The experimental steel showed very high mechanical properties reaching tensile strength up to 2600 MPa with hardness of 750 HV10. Wear testing resulted in only minimal differences between the three variants indicating that the improved impact toughness by tempering did not significantly affect the wear resistance. The reference steel had nearly two times greater mass loss compared to the higher hardness press-hardening steels. Microhardness measurements on the worn surface showed drastic increase in hardness for the deformed structure for all samples. It was concluded that even the high-hardness martensitic steels exhibit notable wear surface work-hardening. Therefore, hardness was determined to be the most significant factor affecting the wear performance of studied steels.
超高强度压淬钢的高应力磨料磨损特性
超高强度钢被广泛用于在苛刻的磨料磨损条件下工作的许多应用中。例如,用于采矿和矿物处理或农业部门的机械需要坚固但具有成本效益的耐磨材料。钢具有良好的机械性能和可用性。这项研究包括一种实验性中碳压力硬化钢的机械和磨损测试。将收到的材料在两个不同的温度下进行奥氏体化并在水中淬火。此外,一种变体采用了低温回火。总共生产了三种不同的压淬钢。对钢样品进行了微观结构表征和力学测试。磨损试验采用高应力研磨法进行,其中样品在破碎的花岗岩床内旋转。作为参考,在磨损测试中包括商业400HB级耐磨钢。实验钢表现出非常高的机械性能,抗拉强度高达2600MPa,硬度为750HV10。磨损测试结果表明,三种变体之间的差异很小,这表明通过回火提高的冲击韧性对耐磨性没有显著影响。与较高硬度的压淬钢相比,参考钢具有几乎两倍大的质量损失。磨损表面的显微硬度测量显示,所有样品的变形结构的硬度都急剧增加。结果表明,即使是高硬度马氏体钢也表现出显著的磨损表面加工硬化。因此,硬度被确定为影响所研究钢的磨损性能的最重要因素。
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来源期刊
Tribologia: Finnish Journal of Tribology
Tribologia: Finnish Journal of Tribology Materials Science-Surfaces, Coatings and Films
CiteScore
2.20
自引率
0.00%
发文量
4
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