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木基陶瓷材料制造技术的研究进展 被引量:11
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作者 吴庆定 向仕龙 《中南林学院学报》 CSCD 北大核心 2006年第4期132-140,共9页
木材具有多层次、纤维状胞管结构和各向异性等结构特征,正是这种高气孔率结构特征造就了木材较好的刚性、强度和韧性.以可再生资源木材等木质材料为基础模板,借助物理的、化学的、冶金的方法进行陶瓷化转变,获得一系列结构功能一体化的... 木材具有多层次、纤维状胞管结构和各向异性等结构特征,正是这种高气孔率结构特征造就了木材较好的刚性、强度和韧性.以可再生资源木材等木质材料为基础模板,借助物理的、化学的、冶金的方法进行陶瓷化转变,获得一系列结构功能一体化的木基陶瓷材料,为材料的结构与功能设计提供了新思路.木基陶瓷材料制造技术的研究正如日中天、与时俱进,通过木质材料的陶瓷化转变不仅可以制备无机改性“陶木”、高温烧成C/C型木基陶瓷、高温反应性渗入复合S i/S iC型木基陶瓷,更可制备具有网络互穿结构的金属化木基陶瓷材料等,具有广阔的发展空间和应用前景. 展开更多
关键词 材料科学 木基陶瓷材料 制造技术/工艺 现状 前景
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Numerical and experimental analysis of quenching process for cam manufacturing 被引量:2
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作者 唐倩 裴林清 肖寒松 《Journal of Central South University》 SCIE EI CAS 2010年第3期529-536,共8页
In order to obtain satisfactory mechanical properties for the cam used in high-power ship diesel engines, a new quenching technology was proposed by designing a two-stage quenching process with an alkaline bath as the... In order to obtain satisfactory mechanical properties for the cam used in high-power ship diesel engines, a new quenching technology was proposed by designing a two-stage quenching process with an alkaline bath as the quenching medium. To demonstrate the effectiveness of the proposed new quenching technology, both numerical analysis and experimental study were performed. The new quenching technology was analyzed using finite element method. The combined effects of the temperature, stress and microstructure fields were investigated considering nonlinear material properties. Finally, an experimental study was performed to verify the effectiveness of the proposed new quenching technology. The numerical results show that internal stress is affected by both thermal stress and transformation stress. In addition, the direction of the internal stress is changed several times due to thermal interaction and microstructure evolution during the quenching process. The experimental results show that the proposed new quenching technology significantly improves the mechanical properties and microstructures of the cam. The tensile strength, the impact resistance and the hardness value of the cam by the proposed new quenching technology are improved by 4.3%, 8.9% and 3.5% compared with those by the traditional quenching technology. Moreover, the residual stress and cam shape deformation are reduced by 40.0% and 48.9% respectively for the cam manufactured by the new quenching technology. 展开更多
关键词 quenching process cam manufacturing finite element method NUMERICAL simulation experimental study
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