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Bond Strength of Multicomponent White Cast Iron Coatings Applied by HVOF Thermal Spray Process

机译:HVOF热喷涂工艺在多组分白口铸铁涂层中的结合强度

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摘要

Multicomponent white cast iron is a new alloy that belongs to system Fe-C-Cr-W-Mo-V, and because of its excellent wear resistance it is used in the manufacture of hot rolling mills rolls. To date, this alloy has been processed by casting, powder metallurgy, and spray forming. The high-velocity oxyfuel process is now also considered for the manufacture of components with this alloy. The effects of substrate, preheating temperature, and coating thickness on bond strength of coatings have been determined. Substrates of AISI 1020 steel and of cast iron with preheating of 150℃ and at room temperature were used to apply coatings with 200 and 400μm nominal thickness. The bond strength of coatings was measured with the pull-off test method and the failure mode by scanning electron microscopic analysis. Coatings with thickness of 200μm and applied on substrates of AISI 1020 steel with preheating presented bond strength of 87 ± 4 MPa.
机译:多组分白口铸铁是一种属于Fe-C-Cr-W-Mo-V系的新型合金,由于其优异的耐磨性而被用于热轧机轧辊的制造中。迄今为止,该合金已经通过铸造,粉末冶金和喷涂成型加工。现在也考虑使用高速含氧燃料工艺来制造这种合金的零件。已经确定了基材,预热温度和涂层厚度对涂层结合强度的影响。将AISI 1020钢和铸铁的基材在室温下预热150℃并用于标称厚度为200和400μm的涂层。涂层的结合强度通过拉拔试验法和破坏模式通过扫描电子显微镜分析来测量。在预热的AISI 1020钢基材上涂覆200μm厚度的涂层,其粘结强度为87±4 MPa。

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