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Size Dependent Thermal Expansion Coefficient of Rod-Shaped Oxide Eutectic Ceramic

机译:棒状氧化共晶陶瓷的尺寸相关热膨胀系数

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摘要

Rod-shaped oxide eutectic ceramics fabricated through SHS process can acquire outstanding mechanical properties. First, Eshebly-Mori-Tanaka method was used to study Thermal Stress Field of rod-shaped oxide eutectic ceramics, and then average strain of rod-shaped oxide eutectic ceramics aroused thermal inconsistency is obtained. The effective thermal expansion longitudinal strain and transverse strain of rod-shaped oxide eutectic ceramics are determined by the average strain. Rod-shaped oxide eutectic ceramics is transverse isotropy and has two independent thermal expansion coefficients. The results show that the thermal expansion coefficients of rod shaped oxide eutectic ceramics are dependent on the diameter of nano-fiber. The thermal expansion coefficients will decrease when the diameter of nano-fiber decrease. When the diameter of nano-fiber is bigger than 300nm, the thermal expansion coefficients of rod shaped oxide eutectic ceramics is constants.
机译:通过SHS工艺制造的棒状氧化物共晶陶瓷可以获得出色的机械性能。首先,采用Eshebly-Mori-Tanaka方法研究了棒状氧化物共晶陶瓷的热应力场,然后求出了引起热不稳定性的棒状氧化物共晶陶瓷的平均应变。棒状氧化物共晶陶瓷的有效热膨胀纵向应变和横向应变由平均应变确定。棒状氧化物共晶陶瓷具有横向各向同性,并且具有两个独立的热膨胀系数。结果表明,棒状氧化物共晶陶瓷的热膨胀系数取决于纳米纤维的直径。当纳米纤维的直径减小时,热膨胀系数将减小。当纳米纤维的直径大于300nm时,棒状氧化物共晶陶瓷的热膨胀系数是恒定的。

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