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Plasma Electrolytic Cementation of 0.3C-1Cr-1Mn-1Si-Fe Steel

机译:0.3C-1CR-1MN-1SI-FE钢的等离子体电解胶粘剂

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This work is devoted to research of the structural-phase condition and changes in the mechano-tribological properties of 0.3C-1Cr-1Mn-1Si-Fe structural steel after plasma electrolytic cementation. Using metallographic and X-ray analysis, mechano-tribological tests, it was found that 0.3C-1Cr-1Mn-1Si-Fe steel in the initial state belongs to the ferritic-pearlitic class, which contains ~ 65% of pearlite grain and 35% of ferrite grain. When samples of 30HGSA steel are saturated with carbon, a modified surface layer with a thickness of 25?m is formed on the surface of the studied samples, including α-Fe ferrite, cementite Fe3C, iron Fe_3C_2 carbide and an alloying element. It was established that the intensity of wear of the samples after modifying decreased by 2 times, and the surface microhardness after cementation increased 3 times, depending on the original sample.
机译:该工作致力于研究血浆电解质后0.3C-1CR-1MN-1SI-FE结构钢的结构相条件和机械摩擦摩擦性质的变化。使用金相和X射线分析,机械摩擦学检验,发现初始状态下的0.3C-1CR-1MN-1SI-FE钢属于铁素体 - 珠菌级,其含有〜65%的珠光体谷物和35铁氧体粒的百分比。当30HGSA钢的样品用碳饱和时,在所研究的样品的表面上形成厚度为25μm的改性表面层,包括α-Fe铁氧体,渗碳石,铁Fe_3C_2碳化物和合金元件。建立了修饰后样品磨损的强度减少2次,胶泥后表面显微硬度增加3倍,这取决于原始样品。

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