High-damping and high-rigidity composites of Al2TiO5–MgTi2O5 ceramics and acrylic resin

被引:0
|
作者
T. Shimazu
H. Maeda
E. H. Ishida
M. Miura
N. Isu
A. Ichikawa
K. Ota
机构
[1] Tohoku University,Graduate School of Environmental Studies
[2] INAX Corporation,General Research Institute of Technology
[3] Sanwa Yuka Kogyo Co.,undefined
[4] Ltd,undefined
[5] Q INVERSE Incorporated,undefined
来源
关键词
Acrylic Resin; Internal Friction; Storage Modulus; High Rigidity; Base Ceramic;
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学科分类号
摘要
High-damping materials are widely used in engineering fields. In order to increase the precision of vibration control to different levels, high-damping materials with high-rigidity are required. This study attempts to develop a new high-damping high-rigidity material using ductile ceramics based on the Al2TiO5–MgTi2O5 system, which has many continuous microcracks along the grain boundaries. Ductile ceramics have high internal friction (Q−1 = 0.01–0.037), but very low rigidity (<10 GPa). The rigidity of Al2TiO5–MgTi2O5 ceramics was improved by combining them with a polymer such as acrylic resin. The Young’s modulus and internal friction of the composites of Al2TiO5–MgTi2O5 ceramics and acrylic resin are investigated. They show high-damping capacity (Q−1 = 0.03–0.04) with high rigidity (E = 50–60 GPa), and their properties depend on those of the polymer. Thus, the composites fabricated using the above method can serve as high-damping high-rigidity materials.
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页码:93 / 101
页数:8
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