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Microstructure-Property Linkages in Multi-phase Ceramics


Effective properties of multi-phase ceramics are strongly dependent on their microstructure. By changing ceramic microstructure through various combinations of different materials with different properties, ceramic performance can be enhanced or improved, i.e., producing so-called '1+1>2 composite effect', or 'new' materials properties of ceramics can be expected, i.e., producing so-called '0+0>0 composite effect'. Our capability of tailoring existing multi-phase ceramics and deigning new multi-phase ceramics depends on our understanding of linkages between micro-structure and properties of multi-phase ceramics. As a practical example, a two-phase piezoelectric/ magnetostrictive ceramic will be presented and discussed.......

【作者名称】: Ce Wen Nan, Yuanhua Lin
【作者单位】: State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China
【关 键 词】: composite effect, piezoelectric, magnetostrictive, magnetoelectric
【会议名称】: High-performance ceramics 2001
【期刊论文数据库】: [DBS_Articles_01]
【期刊论文编号】: 101,177,318
【摘要长度】: 728
【会议地点】: Kunming(CN);Kunming(CN)
【会议组织】: State Key Laboratory of New Ceramics and Fine Processing, Department of Materials Science and Engineering, Tsinghua University, Beijing 100084, China
【会议时间】: 2001
【上篇论文】: 外文会议 - Preparation of Nano-sized Strontium Containing Tricalcium Phosphate Particles
【下篇论文】: 外文会议 - Autocatalytic kinetics analysis in the condensed phase

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