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Laser-Plasma Surface Modification of Steels and Fe-based Alloys

机译:钢和Fe基合金的激光等离子体表面改性

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This paper presents the results of experimental research concerning the laser-plasma processing (hardening) of the following steel grades: 65Mn, 40Cr, GCr15, 30CrMnSiA, grade "2" steel used in accordance with GOST 398-2010 in production of wheel tyres for railway locomotives; as well as alloys Fe_(71.75)C_(4.81)Cr_(3.33)Si_(3.54)B_(14.10)Mn_(1.74)V_(0.73) and Fe_(66.8)Mn_(2.84)C_(2.85)Si_(5.3)B_(11.42)Cr_(10.79) in addition to the aforementioned. It is shown that the thickness of the hardened layer of processed steels is dependent on the processing mode and varies between 0.3-1 mm, while its hardness reaches values of 10-14 GPa, 2-4 times higher than the base material. The sample studies of the grade "2" steel after the processing have demonstrated the substantial increase (by approx. 10 times) in wear resistance. The laser-plasma processing of alloys leads to the formation of a fine-crystalline layer with a characteristic crystallite size of 0.5-1 μm and a thickness of 3-5 μm. The hardness of said layer is increased by approx. 1.2 times.
机译:本文提出了关于以下钢等级激光等离子加工(硬化)的实验研究结果:65Mn,40cr,GCR15,30crmnsia,根据GOST 398-2010用于生产轮胎的GOST 398-2010铁路机车;以及合金Fe_(71.75)C_(4.81)CR_(3.33)SI_(3.54)B_(14.10)MN_(1.74)V_(0.73)和FE_(66.8)MN_(2.84)C_(2.85)SI_(5.3)B_ (11.42)除了上述之外,CR_(10.79)。结果表明,加工钢的硬化层的厚度取决于加工模式并在0.3-1mm之间变化,而其硬度达到10-14GPa的值,比基材高2-4倍。加工后级“2”钢的样品研究表明耐磨性的大幅增加(约10倍)。合金的激光等离子体加工导致形成细晶层,具有0.5-1μm的特征晶体尺寸,厚度为3-5μm。所述层的硬度增加了约。 1.2次。

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