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首页> 外文期刊>Journal of Composite Materials >A new composite material - low-carbon Stellite alloy reinforced with nickel-coated carbon fibers
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A new composite material - low-carbon Stellite alloy reinforced with nickel-coated carbon fibers

机译:一种新型复合材料-镀镍碳纤维增强的低碳司太立合金

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A group of nickel-coated carbon fiber reinforced Stellite 25 composites are produced using the hot isostatic pressing technique. The focus of this research is on obviating the problems related to the presence of carbides in Stellite alloys by substituting carbides as the main strengthening agent in Stellite alloys with nickel-coated carbon fibers. The principal reason for selecting Stellite 25 is because of its low carbon content and thereby relatively carbide free microstructure. The nickel coating is intended to eliminate any chance of carbide formation due to the possible reaction between carbon fibers and the matrix alloying additions. The tribomechanical and corrosion properties of the composites are characterized. The results show that the composites exhibit better corrosion resistance than medium-carbon Stellite alloys. The addition of carbon fibers into Stellite 25 improves its hardness and tribological properties. The wear rates of the composites are lower than that of medium-carbon Stellite alloys and comparable with that of high-carbon Stellites.
机译:使用热等静压技术生产了一组镀镍碳纤维增强的Stellite 25复合材料。这项研究的重点是通过用镀镍碳纤维代替碳化物作为Stellite合金中的主要增强剂,从而消除与Stellite合金中存在碳化物有关的问题。选择Stellite 25的主要原因是因为它的碳含量低,因此相对不含碳化物。镍涂层旨在消除由于碳纤维与基体合金添加物之间可能发生的反应而形成碳化物的任何可能性。表征了复合材料的摩擦力学和腐蚀性能。结果表明,复合材料比中碳司太立合金具有更好的耐腐蚀性。在Stellite 25中添加碳纤维可改善其硬度和摩擦学性能。复合材料的磨损率低于中碳司太立合金,与高碳司太立相当。

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