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Variations in the microstructure and mechanical properties of the oxide layer on high speed steel hot rolling work rolls

机译:高速钢热轧工作辊上氧化层的组织和力学性能变化

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This paper is part of a larger study to understand the wear of hot rolling rolls. A significant cost of the hot rolling process is associated with the consumption of rolls, which is why a comprehensive understanding of the wear of the roll material is important. Given that the surface of the rolls is covered by an oxide layer, it is important to know the tribological and mechanical properties of the oxides. Research in this area concentrates mainly on the morphologies and microstructures of the oxide layers. Previously published works give very little, if any, information of the mechanical properties of the layers on high speed steel. This paper presents a methodology to study the mechanical properties of the oxide layer formed on the surface of a high speed steel roll using combined nanoindentation tests and finite element simulations. Mechanical properties such as the elastic modulus (E), hardness (H), yield strength (σ_y), and Poisson's ratio (v), have been determined, and the work has revealed a variation of microstructure, porosity (f), and mechanical properties of the oxide layer across its thickness. The outer sub-layer has a higher E and H than the inner sub-layer. This variation of mechanical properties in the oxide layer was consistent with variations in the porosity and grain sizes in the two sub-layers.
机译:本文是了解热轧辊磨损的一项较大研究的一部分。热轧过程的大量成本与轧辊的消耗有关,这就是为什么全面了解轧辊材料的磨损很重要的原因。考虑到辊的表面被氧化物层覆盖,重要的是要知道氧化物的摩擦学和机械性能。该领域的研究主要集中在氧化物层的形态和微观结构上。以前发表的作品很少提供(如果有的话)高速钢上各层的机械性能信息。本文提出了一种方法,用于结合纳米压痕测试和有限元模拟研究高速钢辊表面形成的氧化层的机械性能。确定了机械性能,例如弹性模量(E),硬度(H),屈服强度(σ_y)和泊松比(v),并且工作揭示了微观结构,孔隙率(f)和机械强度的变化整个厚度上的氧化物层的特性。外子层具有比内子层更高的E和H。氧化物层中机械性能的这种变化与两个子层中孔隙率和晶粒尺寸的变化一致。

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