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Evolution of the phases and the polishing performance of ceria-based compounds synthesized by a facile calcination method

机译:简便煅烧法合成二氧化铈基化合物的相演变和抛光性能

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Ceria-based compounds with additions of La and F (CLF compounds) were prepared by using industrial-grade fluorinated lanthanum cerium carbonate as a precursor via a facile calcination method. The evolution of phase structures of the compounds during preparation and the relationship between the structure and the polishing performance were investigated. The compounds consist of three phases: CeO _(2) , LaOF, and LaF _(3) . The phase component could be controlled by tuning the calcination process. A higher degree of fluorination and a higher calcination temperature led to the formation of more LaOF and less LaF _(3) phases. The LaOF phase performs a higher stock removal rate. The best polishing efficiency was achieved with LaOF phase ratio around 18%. Intermetallic LaF _(3) is a low-hardness phase and is easily crushed during polishing, which lowers the removal rate and shortens the useful life of the polishing powder.
机译:通过工业煅烧氟化镧铈铈作为前体,制备了添加了La和F的二氧化铈基化合物(CLF化合物)。研究了化合物在制备过程中相结构的演变以及结构与抛光性能之间的关系。化合物由三个相组成:CeO _(2),LaOF和LaF _(3)。可以通过调整煅烧过程来控制相成分。较高的氟化度和较高的煅烧温度导致形成更多的LaOF和更少的LaF_(3)相。 LaOF阶段执行更高的切削速度。 LaOF相比约为18%时,可获得最佳抛光效率。金属间化合物LaF_(3)是低硬度相,在抛光过程中很容易破碎,从而降低了去除率并缩短了抛光粉的使用寿命。

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