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本书是为土木工程以及相关专业房屋建筑学课程编写的教科书。 本书主要讲述民用与工业建筑的设计原理与构造方法,具体内容包括建筑环境、建筑场地、民用建筑 设计、民用建筑构造、工业建筑设计、工业建筑构造等内容。 本书内容精炼,配有大量插图,突出新材料、新结构、新技术,既有实用性又有理论深度
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1概述 2滑动轴承的主要类型 3轴瓦结构 4滑动轴承材料 5滑动轴承的条件性计算 6液体动力润滑的基本方程式 7液体动力润滑径向轴承的计算
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基于通用有限元软件ANSYS建立了某大型铝电解槽结构的三维实体模型和热应力场耦合分析的有限元模型.考虑材料非线性和接触非线性的基础上对电解槽结构强度进行了仿真计算,给出了槽壳和摇篮架的应力、应变云图,分析了电解槽结构的变形规律,并提出了结构优化的途径.以槽壳近似弹性体为目标,对不同组合载荷工况进行了反算,得出与实际更接近的荷载条件
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§14-1 轴的功用和类型 §14-2 轴的材料 §14-3 轴的结构设计 §14-4 轴的强度设计 §14-5 轴的刚度设计 带传动和链传动都是通过中间挠性件传递运动和动力的,适用于两轴中心距较大的场合。与齿轮传动相比,它们具有结构简单,成本低廉等优点
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1.哪些体系包含非晶态结构? 2.非晶态中高分子链形态的基本物理图像 3.高分子链的形态 4.高分子链的凝聚缠结 5.物理老化 6.单链凝聚态 7.部分结晶高聚物的非晶区
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Lecture 3: Degradable Materials with Biological Recognition Last time: Theory of hydrolytic polymer erosion Enzymatic degradation of polymers Designing Biodegradable Macromolecules Today: Biological recognition in vivo Engineering biological recognition of biomaterials: cell adhesion/migration Reading: S.E. Sakiyama-Elbert and J.A. Hubbell, 'Functional Biomaterials: Design of Novel
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Molecular switches in the cell: fibronectin as a mechanical switch (vogel, 2002) Fibronectin is an adhesion protein secreted by cells and assembled into fibrils to support adhesion and migration Composed of\ of fibronectin repeats Fnl, Fnll, and Fnlll connected by short linkers of varying flexibility One particular Fnlll repeat, Fnlll10
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Lecture 11: Molecular Design and Synthesis of Biomaterials Il: Inorganic Biomaterials Last time: hydrogel applications: molecular imprinting and responsive drug delivery Today biomineralization and biomimetic inorganic/organic composites Inorganic biomaterials Reading L A. Estroff and A D. Hamilton, ' At the interface of organic and inorganic chemistry
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1. (4 pts) An early study in the development of peptide-presenting biomaterials showed that polymer surfaces bearing RGD peptides at a density equivalent to -10 peptides per each cell was sufficient to promote cell attachment, spreading and subsequent cell growth. In contrast, when whole fibronectin protein was adsorbed to polymer surfaces, it was found that many more copies of the
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Lecture 16: Intracellular drug delivery Last time nano- and micro-particle drug carriers Delivery to tissues from systemic circulation Today. Intracellular drug delivery Reading A.S. Hoffman et aL., Design of \smart polymers that can direct intracellular drug delivery, Polym. Adv. Technol. 13, 992-999(2002) Ph gradients and drug delivery: cancer res. 56, 1194(1996): adv drug deliv rev 25, 3 (1997); see asokan minireview
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