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颗粒簇增强金属基复合材料的细观力学行为 被引量:1
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作者 叶亚琴 熊黎明 《武汉化工学院学报》 CAS 2005年第4期19-22,共4页
基于SiC/Al基复合材料中的SiC颗粒簇周期性排布假设,通过三维有限元体胞方法,探讨了不同堆积形式下的颗粒簇微结构对基体材料中热残余径向应力的分布,所得结果对于深入理解金属基复合材料的损伤过程有参考价值.
关键词 三维体胞 有限元热残余应力 颗粒簇 径向应力
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单晶高温材料中铸造微孔洞的扩长
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作者 万建松 吕震宙 岳珠峰 《计算力学学报》 EI CAS CSCD 北大核心 2006年第6期737-742,共6页
基于有限变形晶体塑性本构关系及三维体胞模型,采用有限元的方法,分析了在不同应力三维度、不同罗德参数、不同滑移系开动及不同加载取向下,单晶高温合金中铸造微孔洞扩长的力学行为。分析结果表明:累积剪切应变在铸造微孔洞的扩长中起... 基于有限变形晶体塑性本构关系及三维体胞模型,采用有限元的方法,分析了在不同应力三维度、不同罗德参数、不同滑移系开动及不同加载取向下,单晶高温合金中铸造微孔洞扩长的力学行为。分析结果表明:累积剪切应变在铸造微孔洞的扩长中起着很重要的作用,大的累积剪切应变对应高含量的铸造微孔洞;开动滑移系族的类型对铸造微孔扩长的影响不容忽视,故准确的确定开动滑移系的类型,对于评估单晶热端部件的寿命至关重要。由于不同的取向具有不同的Schmid因子、弹性模量及开动滑移系,单晶高温合金中的铸造微孔洞的扩长还与取向密切相关,因此根据热端部件工况,合理的选择其取向是有必要的。 展开更多
关键词 铸造微孔洞 单晶高温合金 塑性本构关系 三维体胞
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Bioprinting-Based High-Throughput Fabrication of Three-Dimensional MCF-7 Human Breast Cancer Cellular Spheroids 被引量:3
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作者 凌楷 黄国友 +4 位作者 刘俊聪 张晓慧 马玉菲 卢天健 徐峰 《Engineering》 2015年第2期269-274,共6页
Cellular spheroids serving as three-dimensional(3D) in vitro tissue models have attracted increasing interest for pathological study and drug-screening applications. Various methods, including microwells in particular... Cellular spheroids serving as three-dimensional(3D) in vitro tissue models have attracted increasing interest for pathological study and drug-screening applications. Various methods, including microwells in particular, have been developed for engineering cellular spheroids. However, these methods usually suffer from either destructive molding operations or cell loss and non-uniform cell distribution among the wells due to two-step molding and cell seeding. We have developed a facile method that utilizes cellembedded hydrogel arrays as templates for concave well fabrication and in situ MCF-7 cellular spheroid formation on a chip. A custom-built bioprinting system was applied for the fabrication of sacrificial gelatin arrays and sequentially concave wells in a high-throughput, flexible, and controlled manner. The ability to achieve in situ cell seeding for cellular spheroid construction was demonstrated with the advantage of uniform cell seeding and the potential for programmed fabrication of tissue models on chips. The developed method holds great potential for applications in tissue engineering, regenerative medicine, and drug screening. 展开更多
关键词 MCF-7 cellular spheroids BIOPRINTING hydrogels concave wells tissue on a chip
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