首页> 外文期刊>Journal of Materials Science >Effects of MnO_2 and sintering temperature on microstructure, ferroelectric, and piezoelectric properties of Ba_(0.85_Ca _(0.15)Ti_(0.90)Zr_(0.10)O_3 lead-free ceramics
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Effects of MnO_2 and sintering temperature on microstructure, ferroelectric, and piezoelectric properties of Ba_(0.85_Ca _(0.15)Ti_(0.90)Zr_(0.10)O_3 lead-free ceramics

机译:MnO_2和烧结温度对Ba_(0.85_Ca_(0.15)Ti_(0.90)Zr_(0.10)O_3无铅陶瓷的显微结构,铁电和压电性能的影响

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摘要

Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O _3 + xmol% MnO_2 lead-free ceramics have been prepared by a conventional sintering method and the effects of MnO_2 and sintering temperature on microstructure, ferroelectric, and piezoelectric properties of Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O _3 lead-free ceramics have been studied. The addition of 0.25 mol% MnO_2 promotes grain growth, improves the ferroelectricity of the ceramics and strengthens ferroelectric tetragonal-ferroelectric orthorhombic phase transition near 40 C. Because of the coexistence of tetragonal and orthorhombic phases and the combinatory effects of soft and hard doping of Mn ions, the ceramic with x = 0.25 exhibits the optimum piezoelectric properties (d _(33) = 306 pC/N and k _p = 42.2 %, respectively). Excess MnO_2 inhibits the grain growth and degrades the ferroelectric and piezoelectric properties of the ceramics. Sintering temperature has an important influence on the microstructure, tetragonal-orthorhombic phase transition near 40 °C, ferroelectric and piezoelectric properties of the ceramics. The increase in sintering temperature leads to large grains and more noticeable tetragonal-orthorhombic phase transition near 40 °C, enhances ferroelectricity and thus improves effectively the piezoelectricity of the ceramics. The Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr 0.10O3 ceramic sintered at 1350 C possesses the optimum piezoelectric constant d _(33) value of 373 pC/N.
机译:通过常规烧结方法制备了Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O _3 + xmol%MnO_2无铅陶瓷,并考察了MnO_2和烧结温度对微结构,铁电和压电性能的影响。研究了Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr_(0.10)O _3的无铅陶瓷。 0.25 mol%MnO_2的添加促进了晶粒的生长,改善了陶瓷的铁电性,并增强了40°C附近铁电四方-铁电正交晶相的转变。由于四方相和正交相的共存以及Mn软,硬掺杂的组合效应离子,x = 0.25的陶瓷表现出最佳的压电性能(d _(33)= 306 pC / N和k _p = 42.2%)。过量的MnO_2会抑制晶粒长大,并降低陶瓷的铁电和压电性能。烧结温度对陶瓷的微观结构,四方正斜方晶相转变(在40°C附近),铁电和压电性能具有重要影响。烧结温度的升高导致晶粒大,在40°C附近出现更明显的四方斜方晶相变,增强铁电性,从而有效地改善了陶瓷的压电性。在1350 C烧结的Ba_(0.85)Ca_(0.15)Ti_(0.90)Zr 0.10O3陶瓷的最佳压电常数d _(33)值为373 pC / N。

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