多孔陶瓷材料中弹性波的速度:孔隙结构的影响

B. O. Aduda, A. Boccaccini
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引用次数: 4

摘要

摘要对近年来发表的各种多孔陶瓷材料的超声速度-孔隙率数据进行了综述,包括孔隙结构的信息。将这些实验数据与使用包含孔隙体积分数、形状和方向信息的球体孔隙模型计算的数据进行了比较。实验值与计算值吻合良好,特别是当分数孔隙率小于0.25时,即使在计算中采用单一的“有效”孔隙形状。如果对每个孔隙度级别使用不同的孔隙形状(逐点分析),则一致性会提高。从而证明了球形孔隙模型的预测能力。
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Velocity of elastic waves in porous ceramic materials: influence of pore structure
Abstract A review has been undertaken of recently published data on ultrasonic velocity-porosity for a variety of porous ceramic materials, including information on pore structure. These experimental data have been compared with data calculated using a spheroidal pore model incorporating information on pore volume fraction, shape, and orientation. Good agreement is obtained between experimental and calculated values, especially when fractional porosity is less than about 0·25, even when a single 'effective' pore shape is employed in the calculation. The agreement improves if a different pore shape for each porosity level (point by point analysis) is used. The predictive ability of the spheroidal pore model is thus demonstrated.
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