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Anelastic Behavior of Barium-Titanate-Based Ceramic Materials

机译:钛酸钡基陶瓷材料的弹性行为

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摘要

The internal friction (Q~(-1)) and Young's modulus.(Q~(-1)) of-BaTiO_3-based ceramics were measured V5 temperature from -100 deg C to 150 deg C. Rectangular bars of high-density (96 to 99 pet) materials were driven electrostatically in flexural vibration at-a resonance frequency of about 3 kHz, at maximum strain levels of about 10~(-6). The curves of Q~(-1)(T) and E(T) allow the study of the following three phase transformations: tetragonal to cubic (about 130 deg C in pure material), orthorhombic to tetragonal (about 0 deg C in pure material), and rhombohedral to orthorhombic (about -80 deg C in pure material). Internal friction and modulus data were obtained on pure material and on materials doped with niobium and cobalt to give semiconducting and insulating X7R behavior. Permittivity, dielectric loss, and microstructure data are given and used to aid interpretation of the mechanical measurement data.
机译:在-5的温度范围(-100°C至150°C)下测量了BaTiO_3基陶瓷的内摩擦(Q〜(-1))和杨氏模量(Q〜(-1))。高密度矩形棒(在挠曲振动中以96到99 pet的材料以静电方式驱动-共振频率约为3 kHz,最大应变水平约为10-(-6)。 Q〜(-1)(T)和E(T)的曲线允许研究以下三个相变:四方到立方(纯材料中约为130摄氏度),正交至四方(纯材料中约为0摄氏度)材料),以及菱形至斜方晶(纯材料中约为-80℃)。在纯材料上以及掺杂铌和钴的材料上获得内摩擦和模量数据,以给出半导体和绝缘X7R行为。给出了介电常数,介电损耗和微结构数据,并用于帮助解释机械测量数据。

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