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学以致用 理论联系实际——工程力学教学新模式初探 被引量:3
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作者 赵德敏 胡玉林 +1 位作者 侯密山 薛世峰 《科技信息》 2012年第15期21-22,29,共3页
先进工程技术和前沿交叉学科的飞速发展,给大学工程力学教学提出了新的挑战,将如何增强学生解决工程实际问题的能力提到了首位。有鉴于此,本文将探讨新形势下工程力学教学的新模式,即如何能够在授课过程中做到学以致用,理论联系实际,从... 先进工程技术和前沿交叉学科的飞速发展,给大学工程力学教学提出了新的挑战,将如何增强学生解决工程实际问题的能力提到了首位。有鉴于此,本文将探讨新形势下工程力学教学的新模式,即如何能够在授课过程中做到学以致用,理论联系实际,从而提高学生的创新和解决实际问题的能力。因此,本文列举了机械、航天和新材料等领域中力学应用的工程实例,并提出了应该在教学中加强力学实验和计算机软件Matlab和Maple方面的训练。 展开更多
关键词 理论联系实际 工程实例 力学实验 Matlab和Maple
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浅析大学物理教学“简易化”
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作者 展凯云 李欣 《科技视界》 2012年第15期67-69,共3页
针对目前理工科学生普遍反应大学物理内容设置较难的情况,从大学物理授课模式角度出发阐述了几种使大学物理教学简易化的方法,包括自制演示仪器的应用,理论与实际结合、与学生专业相结合,生动的举例方式,matlab软件的应用和商业化... 针对目前理工科学生普遍反应大学物理内容设置较难的情况,从大学物理授课模式角度出发阐述了几种使大学物理教学简易化的方法,包括自制演示仪器的应用,理论与实际结合、与学生专业相结合,生动的举例方式,matlab软件的应用和商业化电子游戏的应用。 展开更多
关键词 大学物理 教学简易化 教学方法
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浅析大学物理教学“简易化”
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作者 展凯云 李欣 《科技信息》 2012年第25期190-191,共2页
针对目前理工科学生普遍反应大学物理内容设置较难的情况,从大学物理授课模式角度出发阐述了几种使大学物理教学简易化的方法,包括自制演示仪器的应用,理论与实际结合、与学生专业相结合,生动的举例方式,matlab软件的应用和商业化电子... 针对目前理工科学生普遍反应大学物理内容设置较难的情况,从大学物理授课模式角度出发阐述了几种使大学物理教学简易化的方法,包括自制演示仪器的应用,理论与实际结合、与学生专业相结合,生动的举例方式,matlab软件的应用和商业化电子游戏的应用。 展开更多
关键词 大学物理 教学简易化 教学方法
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浅埋偏压软岩隧道数值模拟及方案比选 被引量:9
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作者 程旭东 秦鹏举 《探矿工程(岩土钻掘工程)》 2011年第1期77-80,共4页
围岩的应力应变是分析隧道开挖中围岩稳定性的重要依据。目前比较成熟的隧道施工力学方法主要是对隧道开挖过程进行数值模拟。通过大型有限元软件ANSYS,计算了不同埋深、不同坡度角、不同覆盖层厚度条件下,马鞍形浅埋偏压软岩隧道围岩... 围岩的应力应变是分析隧道开挖中围岩稳定性的重要依据。目前比较成熟的隧道施工力学方法主要是对隧道开挖过程进行数值模拟。通过大型有限元软件ANSYS,计算了不同埋深、不同坡度角、不同覆盖层厚度条件下,马鞍形浅埋偏压软岩隧道围岩的应力应变,分析其规律并进行方案比选,确定了此类隧道比较合理的设计方案。分析结果表明:以2倍洞径的埋深作为偏压隧道深埋或浅埋的判断依据是合理的;在保证围岩稳定不发生片帮冒顶的前提下,减小埋深和覆盖层厚度是比较合理的;隧道内壁各点的应力应变规律可以为隧道开挖中支护结构参数的选取提供参考。 展开更多
关键词 浅埋偏压 软岩隧道 数值模拟 方案比选
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Study on size-dependent bending behavior of axially functionally graded microbeams via nonlocal strain gradient theory 被引量:1
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作者 Kang Zetian Wang Zhiyong +1 位作者 Zhou Bo Xue Shifeng 《Journal of Southeast University(English Edition)》 EI CAS 2019年第4期453-463,共11页
Based on the nonlocal strain gradient theory(NSGT),the static bending behaviors of an axially functionally graded(AFG)Bernoulli-Euler microbeam subjected to concentrated and distributed loads are studied.The material ... Based on the nonlocal strain gradient theory(NSGT),the static bending behaviors of an axially functionally graded(AFG)Bernoulli-Euler microbeam subjected to concentrated and distributed loads are studied.The material property of the AFG microbeam changes continuously along the longitudinal direction.On the basis of the minimum potential energy principle,the equations of motion and associated classical and non-classical boundary conditions are derived.Then,Galerkin’s weighted residual method in conjunction with the normalization technique are utilized to solve the governing differential equations.The transverse deformations of the AFG microbeam suffering the sinusoidal distributed load within the framework of NSGT,nonlocal elasticity theory(NET),strain gradient theory(SGT)and classical elasticity theory(CET)are compared.It is observed that the bending flexibility of the microbeam decreases with the increase in the ratio of the material length scale parameter to the beam height.However,the bending flexibility increases with the increase in the material nonlocal parameter.The functionally graded parameter plays an important role in controlling the transverse deformation.This study provides a theoretical basis and a technical reference for the design and analysis of AFG micro-beams in the related regions. 展开更多
关键词 axially functionally graded microbeam nonlocal strain gradient theory bending Galerkin method normalization method
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Size-dependent behaviors of viscoelastic axially functionally graded Timoshenko micro-beam considering Poisson effects 被引量:1
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作者 Zhou Bo Zheng Xueyao +1 位作者 Kang Zetian Xue Shifeng 《Journal of Southeast University(English Edition)》 EI CAS 2020年第2期170-180,共11页
A size-dependent continuum-based model is developed for the functionally graded(FG)Timoshenko micro-beams with viscoelastic properties,in which material parameters vary according to the power law along its axial direc... A size-dependent continuum-based model is developed for the functionally graded(FG)Timoshenko micro-beams with viscoelastic properties,in which material parameters vary according to the power law along its axial direction.The size effect is incorporated by employing the modified couple stress theory and Kelvin-Voigt viscoelastic model,so that viscous components are included in the stress and the deviatoric segments of the symmetric couple stress tensors.The components of strain,curvature,stress and couple stress are formulated by combining them with the Timoshenko beam theory.Based on the Hamilton principle,the governing differential equations and boundary conditions for the micro-beam are expressed with arbitrary beam section shape and arbitrary type of loads.The size effect,FG effect,Poisson effect,and the influence of the beam section shape on the mechanical behaviors of viscoelastic FG micro-beams are investigated by taking the simply supported micro-beam subjected to point load as an example.Results show that the size effect on deflection,normal stress and couple stress are obvious when the size of the micro-beam is small enough,and the FG effects are obvious when the size of the micro-beam is large enough.Moreover,the Poisson ratio influences the size effect significantly and the beam section shape is also an important factor influencing the mechanical behavior of the micro-beam. 展开更多
关键词 viscoelastic functionally graded micro-beam size-dependent behaviors size effect functionally graded effect Poisson effect space
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Thermo-mechanical Behaviors of Functionally Graded Shape Memory Alloy Timoshenko Composite Beams 被引量:1
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作者 ZHOU Bo KANG Zetian +2 位作者 MA Xiao XUE Shifeng YANG Jie 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2021年第1期29-43,共15页
This paper focuses on the thermo-mechanical behaviors of functionally graded(FG)shape memory alloy(SMA)composite beams based on Timoshenko beam theory.The volume fraction of SMA fiber is graded in the thickness of bea... This paper focuses on the thermo-mechanical behaviors of functionally graded(FG)shape memory alloy(SMA)composite beams based on Timoshenko beam theory.The volume fraction of SMA fiber is graded in the thickness of beam according to a power-law function and the equivalent parameters are formulated.The governing differential equations,which can be solved by direct integration,are established by employing the composite laminated plate theory.The influences of FG parameter,ambient temperature and SMA fiber laying angle on the thermo-mechanical behaviors are numerically simulated and discussed under different boundary conditions.Results indicate that the neutral plane does not coincide with the middle plane of the composite beam and the distribution of martensite is asymmetric along the thickness.Both the increments of the functionally graded parameter and ambient temperature make the composite beam become stiffer.However,the influence of the SMA fiber laying angle can be negligent.This work can provide the theoretical basis for the design and application of FG SMA structures. 展开更多
关键词 shape memory alloy(SMA) shear deformation thermal effect laminated plate theory functionally graded(FG)beam
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以学生为中心的城市规划原理课程教学研究与实践 被引量:3
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作者 李欣 展凯云 《科技视界》 2018年第9期18-19,30,共3页
"以学生为中心"的教学模式是高等教育发展的必然趋势,是提高高等教育质量,培养创新人才的必然要求。本文主要论述了在城市规划原理课程教学过程中实行"以学生为中心"的教学理念,对教学内容、教学方法、教学模式和... "以学生为中心"的教学模式是高等教育发展的必然趋势,是提高高等教育质量,培养创新人才的必然要求。本文主要论述了在城市规划原理课程教学过程中实行"以学生为中心"的教学理念,对教学内容、教学方法、教学模式和考核方式各个教学环节进行有效设计,构建高效的教学体系,以激发学生学习的热情,培养学生的创新意识。 展开更多
关键词 以学生为中心 城市规划原理 教学实践
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