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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Microstructure and properties of low carbon steel after surface alloying induced by high current pulsed electron beam
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Microstructure and properties of low carbon steel after surface alloying induced by high current pulsed electron beam

机译:大电流脉冲电子束诱导表面合金化后低碳钢的组织和性能

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摘要

To improve the surface properties of low carbon steels, Cr alloying layer was introduced on the steel substrate irradiated by high current pulsed electron beam (HCPEB) alloying treatment. The microstructures of the Cr alloying layer were studied by means of XRD, OM, SEM and TEM. The properties of microhard-ness and corrosion resistance were also tested. Microstructure observations revealed that after HCPEB alloying, the surface was remelted and the thickness of the remelted layer was about 4-6 µm. The content of Cr in the remelted layer was higher than that of the matrix. TEM results revealed that the cemen-tite in pearlite was dissolved, and a high density of dislocations and tiny reinforcing phases were formed in the alloying layer. Both of the microhardness and corrosion resistance of the irradiated samples were significantly improved after HCPEB alloying treatment.
机译:为了改善低碳钢的表面性能,在经过大电流脉冲电子束(HCPEB)合金化处理的钢基底上引入了Cr合金层。通过XRD,OM,SEM和TEM研究了Cr合金层的显微组织。还测试了显微硬度和耐腐蚀性的性质。显微组织观察表明,在HCPEB合金化之后,表面被重熔并且重熔层的厚度为约4-6μm。重熔层中的Cr含量高于基体中的Cr含量。 TEM结果表明,珠光体中的铈锰矿被溶解,在合金化层中形成高位错密度和微小的强化相。经过HCPEB合金化处理后,被辐照样品的显微硬度和耐蚀性均得到显着改善。

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