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Effect of cerium and lanthanum addition on mechanical properties of bismuth titanate ceramics

机译:添加铈和镧的作用对钛酸铋陶瓷铋机械性能

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Cerium- and lanthanum- substituted bismuth titanate (Bi_(1-x)A_xTi_3O_(12); where A=La or Ce, and x=0, 0.5 and 1) ceramics were prepared from nanopowders synthesized by coprecipitation method. The as-synthesized powders were calcined, uniaxially pressed and finally sintered at 1050°C. It was shown that sintering behaviour, phase composition and grain morphology of the obtained ceramics were influenced by the presence of lanthanum and especially cerium ions in the titanate structure. Mechanical properties (hardness and fracture toughness) were measured at room temperature on polished sample surfaces using a Vickers microhardness tester. The hardness values for of bismuth titanate based ceramics were in the range for some other important perovskite titanate, whereas their fracture toughness was somewhat higher.
机译:铈和镧和镧 - 取代的钛酸铋(Bi_(1-x)A_xti_3O_(12);其中由通过CopRecipitip方法合成的纳米粉粉制备陶瓷和X = 0,0.5和1)陶瓷。煅烧单次粉末,单轴压制,最后在1050℃下烧结。结果表明,所获得的陶瓷的烧结行为,相组合物和晶粒形态受钛酸盐结构中镧和尤其是铈离子的存在影响。使用Vickers Micro硬度测试仪在室温下在室温下测量机械性能(硬度和断裂韧性)。钛酸铋基陶瓷的硬度值在一些其他重要的钙钛矿钛酸盐的范围内,而它们的断裂韧性略高。

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