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牙用Vita Mk Ⅱ陶瓷材料切削性能的研究 被引量:1
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作者 付强 覃峰 +1 位作者 严伟浩 赵云凤 《新医学》 北大核心 2002年第11期668-669,共2页
目的:研究牙科切削陶瓷材料切削性能的定量评估方法。方法:采用钻孔实验方法,测定Vi-taMkⅡ陶瓷材料600秒的钻孔深度。结果:VitaMkⅡ陶瓷材料600秒的钻孔深度为0.71mm。结论:钻孔实验可较好地评估牙科切削陶瓷材料的切削性能。
关键词 牙科陶瓷 切削性能 钻孔实验 生物陶瓷学 口腔材料
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解决技术陶瓷加工难题的新方法
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作者 王业 《全国新产品》 1990年第10期44-45,共2页
关键词 微波烧结 生物陶瓷学 凝胶注塑
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Numerical Simulation of Mechanical Behaviors of Degradable Porous Bioceramics with Cracks
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作者 CHEN Jinlong LIU Qian ZHAN Nan 《Transactions of Tianjin University》 EI CAS 2012年第1期21-25,共5页
Hydroxyapatite bioceramics is simulated by using finite element method (FEM). The influences of porosity, hole shape, angle of crack and other parameters on the ceramics are analyzed. The results show that with the ... Hydroxyapatite bioceramics is simulated by using finite element method (FEM). The influences of porosity, hole shape, angle of crack and other parameters on the ceramics are analyzed. The results show that with the increase of the angle between crack and horizontal direction, the stress intensity factor KⅠ decreases gradually, but stress intensity factor KⅡ increases at first and then it decreases. The value of KⅡ reaches maximum when the angle between crack and horizontal direction is 45°. KⅠ and KⅡ rise with the increase of porosity, and they are almost the same for the circular and hexagonal holes. For elliptical holes, KⅠ and KⅡ reach maximum when the long axis of ellipse is perpendicular to the loading direction and they reach minimum when the same axis is parallel to the loading direction. Moreover, with the increase of the angle between the long axis and loading direction, KⅠ and KⅡ increase gradually. 展开更多
关键词 porous bioceramics DEGRADATION finite element method (FEM) POROSITY stress intensity factor
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