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Fabrication and wear properties of Al2O3-SiC ceramic coatings using aluminum phosphate as binder

机译:以磷酸铝为粘结剂的Al2O3-SiC陶瓷涂层的制备与耐磨性能

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Refractory and wear-resistant Al2O3-SiC ceramic coatings have been fabricated on A(3) steel using abrasive ceramics (Al2O3, SiC), aluminum phosphate binder ( inorganic binder), and aluminate (Al2O3.CaO) as starting materials. The Powder X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques are used to investigate the chemical compositions of the in-house synthesized aluminum phosphate binder and the morphologies of the fabricated ceramic coatings after abrasion test. The XRD results indicate that monoaluminium phosphate (Al(H2PO4)(3)) is the most effective binding phase in aluminum phosphate binder, and that aluminum phosphate binder at high temperatures is a mixture of several phases. It is also found that the addition amount of the stabilizer (oxalic acid) has remarkable effect on the storage life of aluminum phosphate binder. The wear test results show that the wear resistance of the A(3) steel covered with Al2O3-SiC ceramic coatings is about two times higher than that of the uncoated A(3) steel. The results also indicate that the wear properties of Al2O3-SiC ceramic coatings are dependent on fabrication conditions, such as the weight ratio of ceramics to the binder (RCB), the particle size distribution of ceramics, the density of the aluminum phosphate binder, and the Al/P atomic ratio in the aluminum phosphate binder. The optimal fabrication conditions for achieving good wear resistance of Al2O3-SiC ceramic coatings are suggested based on the above results. (C) 2004 Kluwer Academic Publishers.
机译:已经使用磨料陶瓷(Al2O3,SiC),磷酸铝粘合剂(无机粘合剂)和铝酸盐(Al2O3.CaO)作为起始材料在A(3)钢上制造了耐火且耐磨的Al2O3-SiC陶瓷涂层。粉末X射线衍射(XRD)和扫描电子显微镜(SEM)技术用于研究内部合成的磷酸铝粘合剂的化学组成以及磨耗试验后制备的陶瓷涂层的形貌。 XRD结果表明,磷酸一铝(Al(H2PO4)(3))是磷酸铝粘合剂中最有效的结合相,而磷酸铝粘合剂在高温下是多个相的混合物。还发现稳定剂(草酸)的添加量对磷酸铝粘合剂的储存寿命具有显着影响。磨损测试结果表明,覆盖有Al2O3-SiC陶瓷涂层的A(3)钢的耐磨性是未涂覆的A(3)钢的两倍。结果还表明,Al2O3-SiC陶瓷涂层的磨损性能取决于制造条件,例如陶瓷与粘合剂的重量比(RCB),陶瓷的粒度分布,磷酸铝粘合剂的密度以及磷酸铝粘合剂中的Al / P原子比。根据上述结果,提出了获得良好的Al2O3-SiC陶瓷涂层耐磨性的最佳制造条件。 (C)2004 Kluwer学术出版社。

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