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Wear Resistance of Hardened Nanocrystalline Structures in the Course of Friction of Steel-Grey Cast Iron Pair in Oil-Abrasive Medium

机译:耐油型纳米晶体结构在油磨料介质钢 - 灰铸铁对摩擦过程中的耐磨性

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The results of the research studying the influence of modified hardened surface layer after friction hardening on wear resistance in the course of oil-abrasive wear of steel-grey cast iron friction pairs are presented. Friction hardening is one of the surface hardening methods with the use of highly concentrated energy sources. A nanocrystalline hardened (white) layer is formed in the surface layers after the friction hardening. The thickness and microhardness of the hardened layer depends on carbon content in the steel and its preliminary heat treatment. Thus, thickness of the hardened layer was 120 μm, and microhardness was 5.6 GPa, with the initial structure hardness of 3.2 GPa, in hardened and high-tempered test-pieces of Steel C45 (EN) after the friction hardening. Grain size of the hardened surface layer was equal to 20-40 nm near the treated surface. It is shown that the hardened layer significantly increases performance of the pair "Steel 41Cr4 (EN)-Grey cast iron EN-GJL-200" during sliding friction in oil-abrasive medium. When increasing the unit load area from 2 to 6 MPa, wear rate of the hardened pair decreased by 2.1-3.7 times in comparison with an unhardened pair. Only one component of the friction panwas hardened.
机译:研究研究改性表面硬化层的在钢灰铸铁的摩擦对油磨料磨损的过程中对耐磨性摩擦硬化后的影响的结果。摩擦硬化是与使用高度浓缩的能源的表面硬化方法之一。硬化的纳米晶体形成在摩擦后硬化的表面层(白色)层。硬化层的厚度和硬度依赖于钢的碳含量和它的预备热处理。因此,硬化层的厚度为120μm,和显微硬度为5.6 GPA,3.2吉帕初始结构的硬度,在硬化和高回火摩擦硬化后钢C45(EN)的试件。的表面硬化层的粒径为等于所述处理过的表面附近20-40纳米。结果表明,在油中研磨介质滑动摩擦时的硬化层显著增加了对“钢41Cr4(EN)-grey铸铁EN-GJL-200”的性能。当从2增加单位负载区域至6MPa,硬化的对磨损率在比较未硬化的一对减少2.1-3.7倍。只有摩擦的一个组成部分panwas硬化。

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