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On the microstructure and wear resistance of Fe-based composite coatings processed by plasma cladding with B4C injection

机译:B4C注浆等离子熔覆铁基复合涂层的组织与耐磨性

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摘要

Fe-based composite coatings were fabricated on Q235 steel substrate by plasma cladding. B4C particles were injected at the center and edge of the melting pool as strengthening phase. Scanning electron microscopy and pin-on-disc tribometer were applied to study the microstructure and wear resistance of the coatings. The results showed that the central injected B4C particles dissolved during plasma cladding and cementite generated. Edge injected B4C particles remained and performed metallurgical bonding with the metal matrix. With Fe-based coating containing edge injected B4C particles, wear resistance increased largely and the wear rate became 1/8 of the Q235 substrate. Afterwards, Fe-based coatings with edge injected B4C particles were prepared on real pieces of 50 picks and 12 chutes, which were taken into field probations. Average service lives of the coated picks and chutes increased 3.4 times and 5.6 times, respectively, compared with the conventional 16Mn and 42CrMo pick and chute components. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:通过等离子熔覆在Q235钢基底上制备了铁基复合涂层。将B4C颗粒注入熔池的中心和边缘作为强化相。运用扫描电子显微镜和针盘摩擦计研究涂层的微观结构和耐磨性。结果表明,在等离子熔覆过程中,中心注入的B4C颗粒溶解并生成渗碳体。边缘注入的B4C颗粒保留下来并与金属基体进行冶金结合。使用包含边缘注入的B4C颗粒的铁基涂层,耐磨性大大提高,磨损率达到Q235基板的1/8。之后,在50个截齿和12个斜槽的真实块上制备带有边缘注入的B4C颗粒的铁基涂层,并将其用于现场试用。与传统的16Mn和42CrMo镐和斜槽组件相比,涂层镐和斜槽的平均使用寿命分别增加了3.4倍和5.6倍。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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