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缩写 “CDL” 指本门课程所指定的教材: Crandall, S. H., T. J. Lardner, and N. C. Dahl. An Introduction to the Mechanics of Solids. 2nd ed. McGraw Hill, 1999.
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日程 # |
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单元 |
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阅读内容 |
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讲座 # |
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讲座题目 |
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实验 |
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1 |
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静力学: 平衡的基本原理 |
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CDL 1.1-1.9 |
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讲座 #1 |
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课程大纲,复习力,力矩,和向量 |
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2 |
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静力学: 平衡的基本原理 |
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CDL 1.1-1.9 |
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讲座 #2 |
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力,力矩,隔离体示意图的平衡, 局部隔离 |
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3 |
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静力学: 平衡的基本原理 |
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CDL 1.1-1.9 |
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讲座 #3 |
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内力, 摩擦力 |
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实验1: 酒瓶架 |
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4 |
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细长构件传递的力和力矩 |
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CDL 3.1-3.5 |
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讲座 #4 |
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剪力,弯距图 |
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5 |
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细长构件传递的力和力矩 |
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CDL 3.1-3.5 |
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讲座 #5 |
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剪力,弯距图 |
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6 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #6 |
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力-变形, (一维)力-变形的关系 |
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7 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #7 |
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桁架结构 |
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实验2:弹性系数 |
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8 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #8 |
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静定和静不定情形 |
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9 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #9 |
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卡氏定理 |
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10 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #10 |
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桁架设计练习 |
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11 |
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可变形体的力学: 介绍 |
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CDL 2.1-2.5 |
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讲座 #11 |
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测验 1 |
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实验3:测量扬氏模量 |
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12 |
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应力和应变 |
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CDL 4.1-4.6; 4.8-4.12 |
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讲座 #12 |
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应力,平衡 |
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13 |
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应力和应变 |
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CDL 4.1-4.6; 4.8-4.12 |
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讲座 #13 |
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应力变换 |
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14 |
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应力和应变 |
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CDL 4.1-4.6; 4.8-4.12 |
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讲座 #14 |
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应变-位移的关系 |
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15 |
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线弹性问题:材料的行为 |
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CDL 5.1-5.7 |
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讲座 #15 |
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多向应力-应变的关系 |
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实验4:双向负载实验 |
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16 |
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线弹性问题:材料的行为 |
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CDL 5.1-5.7 |
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讲座 #16 |
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应力-应变-温度的关系 |
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17 |
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线弹性问题:材料的行为 |
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CDL 5.1-5.7 |
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讲座 #17 |
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实例 |
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18 |
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扭转 |
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CDL 6.1-6.6 |
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讲座 #18 |
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极坐标 |
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19 |
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扭转 |
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CDL 6.1-6.6 |
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讲座 #19 |
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扭转 |
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20 |
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扭转 |
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CDL 6.1-6.6 |
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讲座 #20 |
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测验 2 |
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21 |
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弯曲: 应力和应变 |
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CDL 7.1-7.6 |
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讲座 #21 |
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纯弯曲:应变,应力 |
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22 |
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弯曲: 应力和应变 |
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CDL 7.1-7.6 |
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讲座 #22 |
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力矩-曲率 |
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实验5:梁的弯曲 #1 |
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23 |
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弯曲: 挠曲 |
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CDL 8.1-8.5 |
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讲座 #23 |
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挠曲 |
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24 |
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弯曲: 挠曲 |
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CDL 8.1-8.5 |
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讲座 #24 |
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实例 |
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实验6:梁的弯曲 #2 |
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25 |
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平衡的稳定性 |
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CDL 9.1-9.6 |
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讲座 #25 |
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平衡的稳定性 |
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26 |
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平衡的稳定性 |
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CDL 9.1-9.6 |
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讲座 #26 |
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屈服 |
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