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1、西安理工大學(xué)碩士學(xué)位論文II萬方數(shù)據(jù)萬方數(shù)據(jù)西安理工大學(xué)碩士學(xué)位論文boundaryconditions,theuseofdoubletrigonometricseriesmethodforsolvingthedeformationmaximumdynamicanalysis,themaximumstressunderdynamicloadscorrespondingcorrugatedsandwichpanels,strain.Then,theobtainedstrainintegralstrainenergyabsorbedbydeformationofthe
2、energyobtained.Inthispaperthedeformationanddynamicloadenergyrelationsunderthisanalysiscanprovideatheoreticalreferenceforthesandwichstructureapplicationinthefieldoftransportpackaging.Keywords:Corrugatedsandwichstructure,Dynamiccarryingcapacity,Nonlinearanalysis,EnergyabsorbingIV萬方數(shù)據(jù)目錄1
3、緒論....................................................................11.1研究背景與意義.......................................................11.2國內(nèi)外研究狀況.......................................................11.2.1國內(nèi)研究狀況.....................................................11.2.2國外研究狀況......
4、...............................................31.3本課題主要研究內(nèi)容...................................................32瓦楞夾層結(jié)構(gòu)的力學(xué)模型..................................................52.1瓦楞夾層結(jié)構(gòu).........................................................52.2瓦楞夾層板的動態(tài)承載模型............................
5、.................62.3瓦楞夾層板的動態(tài)特性分析.............................................72.3.1基本假設(shè).........................................................72.3.2理論基本關(guān)系式....................................................72.3.3瓦楞夾層結(jié)構(gòu)的平衡微分方程.......................................103瓦楞夾層結(jié)構(gòu)的線彈性變形..
6、.............................................153.1夾層板線彈性基本理論................................................153.1.1線彈性概述......................................................153.1.2瓦楞夾層板的線彈性變形過程......................................153.2瓦楞夾層結(jié)構(gòu)的撓度算法.....................................
7、.........163.2.1線彈性階段的平衡微分方程.........................................163.2.2撓度求解........................................................183.3瓦楞夾結(jié)構(gòu)線彈性階段的能量吸收......................................203.3.1吸能機制........................................................203.3.2能量吸收圖介紹..........
8、.....