Failure by Fracture and Fatigue in "Nano" and "Bio" Materials(<Special Issue>Advanced Technology of Experimental Mechanics)
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概要
- 論文の詳細を見る
The behavior of nanostructured materials/small-volume structures and biological/bio-implantable materials, so-called "nano" and "bio" materials, is currently much in vogue in materials science. One aspect of this field, which has to date received only limited attention, is their fracture and fatigue properties. In this paper, we examine two topics in this area, namely the premature fatigue failure of silicon-based micron-scale structures for microelectromechanical systems (MEMS), and the fracture properties of mineralized tissue, specifically human bone.
- 一般社団法人日本機械学会の論文
- 2004-07-15
著者
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NALLA R.
Materials Sciences Division, Lawrence Berkeley National Laboratory
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RITCHIE R.
Materials Sciences Division, Lawrence Berkeley National Laboratory
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Nalla R.
Materials Sciences Division Lawrence Berkeley National Laboratory
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Nalla R.
Materials Sciences Division Lawrence Berkeley National Laboratory And Dept. Of Materials Science And
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Ritchie R
Materials Sciences Division Lawrence Berkeley National Laboratory And Dept. Of Materials Science And
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Ritchie R.
Materials Sciences Division Lawrence Berkeley National Laboratory
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MUHLSTEIN C.
Department of Materials Science and Engineering, The Pennsylvania State University, University Park
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Muhlstein C.
Materials Sciences Division Lawrence Berkeley National Laboratory And Dept. Of Materials Science And
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MUHLSTEIN C.
Department of Materials Science and Engineering, The Pennsylvania State University
関連論文
- Dentin Erosion Simulation by Cantilever Beam Fatigue and pH Change
- On the in vitro Fatigue Behavior of Human Dentin : Effect of Mean Stress
- Failure by Fracture and Fatigue in "Nano" and "Bio" Materials(Advanced Technology of Experimental Mechanics)
- PL-2(PL2W0466) On the Fatigue and Fracture of "Nano" and "Bio" Materials
- Role of Alcohol in the Fracture Resistance of Teeth
- Small Fatigue Cracks: Mechanics, Mechanisms and Engineering Applications