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Iron based hardfacing alloys for abrasive and impact wear

机译:用于磨料和冲击磨损的铁基干合金

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Iron-based hardfacing alloys are widely used to counteract abrasive and impact wear of industrial components in soil, sand and mineral processing applications. These alloys show a high performance to cost ratio as well as a low environmental impact. The wear resistance of the components hardfaced with these alloys depends on achieved coating microstructure i.e. on the alloys chemical composition, the coating method and process parameters selected. The present work focuses on iron based hardfacing alloys with varying amount of chromium, vanadium, tungsten, molybdenum, boron and carbon deposited by plasma transferred arc (PTA) overlay welding. Weldability, hardness, abrasive and impact wear of the overlays are presented and interpreted through their microstructure. The performance of the iron based overlays is compared with that of nickel-based metal matrix composite coatings with tungsten carbide (MMC) commonly used for hardfacing of parts subjected to severe abrasive wear. The hardness of the iron based overlays investigated ranges between 60 and 65 HRC while abrasive wear is typically below 20 mm~3 (ASTM G65, procedure A). Microstructure consists of different primary precipitated carbides or borides, a martensitic matrix and eutectic structures.
机译:铁基耐磨堆焊合金广泛用于抵消在土壤,沙子和矿物处理应用工业部件的磨料和冲击磨损。这些合金显示出高的性能成本比以及低的环境影响。用这些合金表面硬化的部件的耐磨损性取决于实现涂层微观结构,即对合金的化学组​​成,涂布方法和工艺参数选择。基于堆焊具有变化的铬,钒,钨,钼,通过等离子体沉积的硼和碳的量合金本工作集中在铁转移弧(PTA)堆焊。焊接性,硬度,在覆盖的研磨和冲击磨损呈现,并通过他们的组织解释。基于铁覆盖的性能与基于镍的金属基质复合涂层与碳化钨(MMC)通常用于遭受严重的磨损零件的表面硬化的比较。基于铁叠加的硬度研究60和65之间HRC范围而磨损通常是20mm以下〜3(ASTM G65,过程A)。微结构由不同的主析出碳化物或硼化物,马氏体基质和共晶结构。

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