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加强柱形壳体在风型载荷作用下的屈曲特性 被引量:1
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作者 吴连元 张任易 《海洋工程》 CSCD 北大核心 1994年第1期42-49,共8页
本文研究了加强柱形壳体在风型载荷作用下的静力屈曲特性。由于前屈曲薄膜应力状态是非均匀的应力场,因而使问题求解的难度增加。本文应用能量近似法,求解带环肋加筋的柱形壳体的整体稳定性。
关键词 加强柱形壳体 水下爆炸 冲击载荷 能量法
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应用无矩理论设计柱形壳体
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作者 邱坤 《机械工程师》 北大核心 1996年第2期47-48,共2页
应用无矩理论设计柱形壳体东北重型机械学院邱坤一、前言壳体设计计算主要是从弹性力学壳体理论方面研究壳体强度,壳体结构除在冶金设备中常会遇到外,在工程中也经常遇到。如建筑物的屋顶,化工设备中的压力容器等等。在设计这些薄壳... 应用无矩理论设计柱形壳体东北重型机械学院邱坤一、前言壳体设计计算主要是从弹性力学壳体理论方面研究壳体强度,壳体结构除在冶金设备中常会遇到外,在工程中也经常遇到。如建筑物的屋顶,化工设备中的压力容器等等。在设计这些薄壳结构时.要尽可能使其处于无矩应力状... 展开更多
关键词 机械设计 柱形壳体 无矩理论
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轴对称载荷柱形壳基本微分方程的求解及应用
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作者 邱坤 富铁铮 +1 位作者 王英杰 王振西 《齐齐哈尔轻工业学院学报》 1997年第1期12-17,共6页
本文推导和求解了受轴对称载荷柱形壳体的基本微分方程,并创举实际应用的例子,为轴对称载荷柱形壳体的设计提供了参考。
关键词 轴对称载荷 柱形壳体 边界效应 微分方程
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变壁厚柱壳的轴对称弯曲问题
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作者 王慎行 《化工设计与开发》 1990年第1期13-35,共23页
关键词 变壁厚 柱形壳体 轴对称 弯曲
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钟形谐波齿轮平面啮合的几何条件及杯底应力分析
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作者 邢静忠 庞满意 +1 位作者 陈晓霞 姚云鹏 《机械传动》 北大核心 2020年第6期96-102,共7页
为实现齿轮齿圈的径向平面变形和齿廓间的平面啮合,依据圆柱壳理论的几何方程,提出钟形筒体与齿圈连接处的变形条件;建立参数化钟形柔轮壳体接触模型,迭代求解实现齿圈平面变形的钟形曲线的几何条件,即齿圈中面半径和钟形曲线半径比值... 为实现齿轮齿圈的径向平面变形和齿廓间的平面啮合,依据圆柱壳理论的几何方程,提出钟形筒体与齿圈连接处的变形条件;建立参数化钟形柔轮壳体接触模型,迭代求解实现齿圈平面变形的钟形曲线的几何条件,即齿圈中面半径和钟形曲线半径比值与钟形曲线中心角的关系,并用五次样条曲线拟合表达。求解满足齿圈平面变形时筒体和杯底连接处的变形条件,并依据圆形薄板理论提出杯底变形及应力的计算方法。研究发现,从动轴半径大于0. 65倍杯底半径时,钟形柔轮杯底应力随从动轴半径的增加呈指数级增大;但实现齿圈平面变形的钟形曲线几何条件与从动轴半径无关。 展开更多
关键词 锥度变 有限元 柱形壳体 平面变
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单向控制肋弓牵拉装置研制与应用
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作者 车军 曹广运 董中校 《黑龙江医学》 1997年第4期23-24,共2页
关键词 单向控制 装置研制 钢丝绳 牵拉 肋弓 门静脉高压症 柱形壳体 径向孔 控制器 钢球
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单向控制肋弓牵拉装置研制与应用
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作者 李泮泉 竭福 +5 位作者 王江滨 宋春芳 齐兴国 闫树禹 于文友 闫淑杰 《黑龙江医学》 1996年第8期41-41,共1页
关键词 单向控制 钢丝绳 装置研制 哈尔滨医科大学 牵拉 肋弓 支承杆 柱形壳体 宽度限制 绥棱县
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Vibration and Instability of Third⁃Order Shear Deformable FGM Sandwich Cylindrical Shells Conveying Fluid
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作者 LI Zhihang ZHANG Yufei WANG Yanqing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第1期47-57,共11页
The vibration and instability of functionally graded material(FGM)sandwich cylindrical shells conveying fluid are investigated.The Navier-Stokes relation is used to describe the fluid pressure acting on the FGM sandwi... The vibration and instability of functionally graded material(FGM)sandwich cylindrical shells conveying fluid are investigated.The Navier-Stokes relation is used to describe the fluid pressure acting on the FGM sandwich shells.Based on the third-order shear deformation shell theory,the governing equations of the system are derived by using the Hamilton’s principle.To check the validity of the present analysis,the results are compared with those in previous studies for the special cases.Results manifest that the natural frequency of the fluid-conveying FGM sandwich shells increases with the rise of the core-to-thickness ratio and power-law exponent,while decreases with the rise of fluid density,radius-to-thickness ratio and length-to-radius ratio.The fluid-conveying FGM sandwich shells lose stability when the non-dimensional flow velocity falls in 2.1-2.5,which should be avoided in engineering application. 展开更多
关键词 FGM sandwich shell FLUID third-order shear deformation shell theory VIBRATION stability
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Research on vibration and near-field sound radiation of ring-ribbed cylindrical shell coated deadening and decoupling materials
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作者 YAO Xiong-liang LIU Qing-jie YU Xiu-bo 《Journal of Marine Science and Application》 2007年第1期21-30,共10页
The research on structural vibration and sound radiation of underwater ring-ribbed cylindrical shell, which is coated with a kind of deadening and decoupling materials, becomes a focus in recent years. This paper anal... The research on structural vibration and sound radiation of underwater ring-ribbed cylindrical shell, which is coated with a kind of deadening and decoupling materials, becomes a focus in recent years. This paper analyzes the problem on two aspects: model experiment and numerical calculation. The model experiment is carried out including three cases firstly, in which the structural vibration response and radiating acoustic field are measured respectively, and the results gained in these three cases are analyzed to discuss the effect of reducing structural vibration and radiating noise of the deadening and decoupling materials. The coupling FEM/BEM and the SEA methods are both used in numerical calculation, i.e. the arithmetic of the coupling FEM/BEM method is adopted to calculate the low frequency characteristics and the SEA method is adopted to calculate the medium-high frequencies characteristics of the model. By comparing experimental results with numerical calculation results, it is proved that the algorithm adopted in this paper is reasonable. 展开更多
关键词 ring-fibbed cylindrical shell vibration and sound radiation model experiment coupling FEM/BEM method SEA
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Natural Convection of Nanofluid in Cylindrical Enclosure Filled with Porous Media
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作者 Manal Hadi A1-Hafidh Hayder Ibrahim Mohammed 《Journal of Energy and Power Engineering》 2013年第12期2263-2272,共10页
A numerical study has been carried out to investigate the effect of aspect ratio on heat transfer by natural convection of nanofluid taking Cu nano particles and the water as based fluid. The flow is laminar, steady s... A numerical study has been carried out to investigate the effect of aspect ratio on heat transfer by natural convection of nanofluid taking Cu nano particles and the water as based fluid. The flow is laminar, steady state, axisymmetric two-dimensional in a vertical cylindrical channel filled with porous media. Heat is generated uniformly along the center of the channel with its vertical surface remain with cooled constant wall temperature and insulated horizontal top and bottom surfaces. The governing equations which used are continuity, momentum and energy equations using Darcy law and Boussinesq's approximation which are transformed to dimensionless equations. The finite difference approach is used to obtain all the computational results using the MATLAB-7 program. The parameters affected on the system are Rayleigh number ranging within (10≤ Ra ≤ 103), aspect ratio (1 ≤ As 〈 5) and the volume fraction (0 ≤0 〈 0.2). The results obtained are presented graphically in the form of streamline and isotherm contour plots and the results show that as ~ increase from 0.01 to 0.2 the value of the mean Nusselt number increase 50.4% for Ra = 1,000. 展开更多
关键词 Laminar natural convection NANOFLUID porous media vertical cylinder heat generation.
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