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Anti-carburizing Coating for Resin Sand Casting of Low Carbon Steel Based on Composite Silicate Powder Containing Zirconium

机译:含锆复合硅酸盐粉的低碳钢树脂砂铸造抗渗碳涂层

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This paper studied the structure and properties of anticarburizing coating based on composite silicate powder containing zirconium by X-ray diffraction analyzer, thermal expansion tester, digital microscope and other equipment. It is introduced that the application example of the coating in the resin-sand casting of ZG1Cr18Ni9Ti stainless steel impeller. The anti-carburizing effect of the coating on the surface layer of the cast is studied by using direct reading spectrometer and spectrum analyzer. The change of the micro-structure of the coating after casting and cooling is observed by scanning electron microscope. The analysis of anti-carburizing mechanism of the coating is presented. The results indicate that the coating possesses excellent suspension property, brush ability, permeability, levelling property and crackresistance. The coating exhibits high strength and low gas evolution. Most of the coating could be automatically stripped off flakily when the casting was shaken out. The casting possesses excellent surface finish and antimetal penetration effect. The carburizing layer thickness of the stainless steel impeller casting with respect to allowable upper limit of carbon content is about 1mm and maximum carburizing rate is 23.6%. The anticarburizing effect of casting surface is greatly improved than that of zircon powder coating whose maximum carburizing rate is 67.9% and the carburizing layer thickness with respect to allowable upper limit of carbon content is greater than 2mm. The composite silicate powder containing zirconium coating substantially reduces the zircon powder which is expensive and radioactive and mainly dependent on imports. The coating can be used instead of pure zircon powder coating to effectively prevent metal-penetration and carburizing of resin-sand-casting surface of low carbon steel, significantly improve the foundry production environment and reduce the production costs.
机译:本文通过X射线衍射分析仪,热膨胀测试仪,数字显微镜等设备研究了含锆复合硅酸盐粉末的抗渗碳涂层的结构和性能。介绍了涂层在ZG1Cr18Ni9Ti不锈钢叶轮的树脂砂铸造中的应用实例。使用直读光谱仪和光谱分析仪研究了铸件表面层上涂层的抗渗碳作用。通过扫描电子显微镜观察浇铸和冷却后涂层的微观结构的变化。介绍了涂层的抗渗碳机理。结果表明该涂料具有优异的悬浮性能,刷涂性能,渗透性,流平性能和抗裂性。该涂层表现出高强度和低气体逸出。摇动铸件时,大部分涂层会自动剥落。铸件具有出色的表面光洁度和抗金属渗透效果。相对于碳含量的容许上限,不锈钢叶轮铸件的渗碳层厚度为约1mm,最大渗碳率为23.6%。与最大渗碳率为67.9%且渗碳层厚度相对于允许的碳含量上限大于2mm的锆石粉末涂层相比,铸件表面的抗渗碳效果大大提高。含有锆涂层的复合硅酸盐粉末大大减少了锆石粉末,锆石粉末昂贵且具有放射性,并且主要取决于进口。该涂层可代替纯锆石粉末涂层,有效防止低碳钢的树脂砂型铸件表面金属渗透和渗碳,显着改善铸造生产环境,降低生产成本。

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