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1.
采用分子动力学与有限元耦合的多尺度方法,求解二维刚性圆柱表面压头与弹性平面的微/纳尺度粘着滑动接触问题,通过与全分子动力学模拟结果的比较验证了多尺度方法的有效性。对压头半径、滑动速度、下压深度以及是否考虑粘着效应等对滑动接触性能的影响进行了全面研究,通过不同条件下摩擦力及接触力分布的比较,揭示了上述各参数对粘着滑动接触...  相似文献   

2.
微电子机械系统和流体流动   总被引:9,自引:4,他引:9  
Ho.  CM 方新 《力学进展》1998,28(2):250-272
出现于80年代后期的微机械工艺技术可提供微米尺度的传感器和致动器.这些微型转换器与信号调节和处理电路集成后,组成了可执行分布式实时控制的微电子机械系统(MEMS).这种性能为流动控制研究开辟了一个崭新的领域.另一方面,由于微米尺度结构中表面积与体积之比很大,在流体流经这些微小机械器件时,表面效应占据了主导地位.为此需要重新审视动量方程中的各类表面力项.由于它们非常小,气体流动具有很大的Knudsen数,所以边界条件也应加以修正.总之,微电子机械系统(MEMS)不但是一项实用技术,也为流动机理的基础研究提出了许多挑战.  相似文献   

3.
粘着摩擦系数的分形几何研究   总被引:4,自引:0,他引:4  
计及作用于接触斑点上的切向力,通过比较作用于接触斑点上的法向弹性载荷与法向塑性载荷,确定了区分弹性接触与塑性接触区域的临界接触斑点面积.总的粘着摩擦系数被表示为弹性接触区与塑性接触区的粘着摩擦系数的组合.假设屈服压力及局部粘着摩擦系数不依赖于接触斑点且等于塑性接触区中的平均值,则总的粘着摩擦系数可用简单的表达式描述.分形几何参数及归一接触面积对于粘着摩擦系数的效应已通过算例表明,研究中,分别考虑了忽略与计及接触斑点的微粒间的相互作用,两种情况的结果完全不同.  相似文献   

4.
工程粗糙表面粘着磨损的分形学研究   总被引:10,自引:2,他引:8  
建立了分形接触模型,并在Archard粘着磨损理论基础上,结合磨损过程中剪切应力对实际接触表面的影响,建立了弹、塑性接触条件下的粘着磨损分形模型,通过试验得出了磨损体积损失与分形参数的关系,为降低磨损与加工成本及确定表面最佳分形维数提供了实验依据.  相似文献   

5.
针对严重影响MEMS性能和可靠性的微梁粘着问题,根据W-S微观连续介质理论,建立了粘着力数学模型;针对粘着力对微梁刚度的强非线性影响,利用单元离散法,通过对粘着力时空变量相分离,对500μm×1μm×0.1μm表面镀金的微悬臂梁粘着进行了动力仿真,发现了“跳跃粘着”现象,从而为微梁的系统研究提供理论基础。  相似文献   

6.
钢闸门支承滑道摩擦随时间变化的研究   总被引:6,自引:2,他引:4  
研究了胶木、油尼龙和铜塑固体自润滑复合材料(TS-70)3种平面滑动钢闸门支承滑道的摩擦时间效应,介绍了胶木和TS-70滑道摩擦时间效应的原型试验结果,用粘着理论解释胶木与油尼龙滑道摩擦时间效应强、TS-70滑道摩擦时间效应弱的原因在于粘弹性材料的蠕变大,引起实际接触面积增大,粘弹性材料的剪切模量的时间效应也大,使界面剪切强度增大。  相似文献   

7.
表面力仪及固体表面微观接触机理的实验研究   总被引:4,自引:0,他引:4  
利用以等色序条纹技术为核心的表面力仪,使2个分子级光滑的圆柱状云母表面在一定载荷下接触,测量其接触区尺寸和接触表面和变形情况。在两表面间使用不同介质以进行有粘着接触和无粘着接触2种条件下的实验,并将测量结果与Hertz理论(无粘着接触)和JKR理论(有粘着接触)进行对比。发现在无粘着接触条件下的试验结果与Hertz理论相吻合;而在有粘着接触条件下则测量到了JKR理论所预言的“颈缩”现象。  相似文献   

8.
微/纳尺度接触问题计算方法研究进展   总被引:7,自引:0,他引:7  
刘更  刘天祥  温诗铸 《力学进展》2008,38(5):521-544
接触问题广泛存在于现实生活的众多领域, 近来随着微/纳米技术的不断发展, 接触力学在基础理论和研究方法上面临许多新的挑战. 本文在摩擦学的范畴内, 对近年发展的若干求解微/纳尺度接触问题的计算方法及理论进行了综述. 按发展先后及所解决问题的尺度范围划分, 主要有3类评估微/纳尺度接触性能的计算方法:(1)连续介质力学方法; (2)分子动力学模拟; (3)多尺度方法. 介绍了这3类计算方法的典型理论和主要数学描述, 给出了这些方法对解决若干微/纳观接触问题如黏着效应、粗糙表面描述、表面摩擦及润滑、表面热效应、生物接触等的主要应用. 最后, 探讨了微/纳尺度接触问题计算方法可能的发展方向及应用领域.  相似文献   

9.
形状记忆合金(Shape Memory Alloys, SMAs)因其具有形状记忆效应和超弹性,在航空航天、生物医疗、微机电系统领域中得到了广泛的应用.当微结构尺度达到微纳米,表面效应对微结构力学性能的影响是十分显著的.本文基于梁弯曲变形理论以及Gurtin-Murdoch表面弹性理论,考虑拉压不对称、温度对于SMA纳米梁的影响,建立了考虑表面效应的SMA纳米梁相变力学模型.分析了弯曲载荷、温度、表面残余应力以及表面弹性模量对SMA纳米梁力学性能的影响规律.研究表明在SMA纳米梁相变阶段,忽略和考虑表面效应所得的截面应力及应变相对误差较为明显;在相同弯矩下,随温度的增加SMA纳米梁的截面应力随之增加,并且表面效应对其影响有减小趋势;表面残余应力对SMA纳米梁的影响显著.该文研究结果为SMA纳米梁在微机电领域的设计以及应用提供了一定基础与依据.  相似文献   

10.
本文在非线性Von Karman板理论基础上,通过引入表面弹性研究了弹性条带状薄膜在简单支撑条件下的非线性尺度相关屈曲行为.按照Mindlin 假设,用Hamilton变分原理导出带有表面效应影响的一般控制方程及非经典边界条件,同时引入了非零的正应力和大变形的影响.得到了平面应变情况下简单支撑薄膜的屈曲行为和准确解,并详细阐明了归因于表面效应的薄膜尺寸相关屈曲行为.  相似文献   

11.
At small length scales, the adhesion and surface effect are of great significance, both of which play important roles in the contact between two elastic solids. In this study, the classical Johnson–Kendall–Roberts (JKR) adhesive contact theory is generalized to the nanoscale at which the surface effect is considered. The influence of the surface stress on the JKR adhesive contact is investigated by employing the non-classical Boussinesq fundamental solutions. It is found that, compared with the classical theory, the pull-off force increases while the critical contact radius decreases as a result of the surface effect. Numerical results show that a relative error of 10% can be introduced in the pull-off force when the indenter radius is less than 20 nm. A detailed theoretical analysis of this interesting phenomenon is presented based on dimensional analysis, and two scaling laws for the adhesive contact at the nanoscale are constructed. These two new scaling laws reveal that the pull-off force is relevant to the elastic properties of the bulk materials, which is different from the classical adhesive contact theory. The present work is promising for the engineering applications in micro-electro-mechanical systems (MEMS) and nano-intelligent devices.  相似文献   

12.
In order to analyse the scale effect of roughness and adhesion in contact between solids, we introduce in this work a 3D model of elastic contact combined with the adhesive theory. The model of roughness with different fractal dimension is introduced to study the adhesive contact in the elastic state at different length scales.The results of this study show that the scale of roughness modifies the distribution law of the contact pressure and stiffness. The introduction of the adhesive force and fractal property of roughness clearly shows the combined influence of roughness scale and adhesive force on contact stiffness.  相似文献   

13.
With the rapid development of Micro-Electro-Mechanical System (MEMS), we enter a field in which the surface effects have dominated many of the micro-scale phenomena, and the adhesive contact is one of the focuses. In this paper, a feasible model for finite element computation is presented via a macroscopic and microscopic combination approach, in which the adhesive forces are simulated by some non-linear spring elements considering the softening stage. Two basic problems concerning the adhesion effect were considered; through specific quantitative analysis, the results show a consistency with the current elastic continuum theories of adhesion and a brief investigation into the effects of adhesion on plastic deformation and tangential contact will be carried out as well. The project supported by the National Natural Science Foundation of China (10172050, 90205022) and Key Grant Project of Chinese MoE (0306)  相似文献   

14.
Detailed mathematical derivation and simple closed form results for the size-dependent elastic properties of micro- and nano-sized honeycombs are presented in this paper. The results indicate that at micrometer scale, strain gradient has a dominant effect and at nano-meter scale, surface elasticity dominates the effect on the honeycomb elastic properties. The in-plane elastic properties of a nano- or micro-honeycomb could be controlled to vary over a range of around 10% by adjusting the initial stress in the cell walls by applying an electric potential. In addition, the bending and shear rigidities of some commonly used micro- and nano-structural elements have been obtained and presented in this paper, which could be of important applications in the design of MEMS and NEMS.  相似文献   

15.
The paper aimed to study the effect of large deformation and material nonlinearity on the adhesive contact between a smooth rigid spherical indenter and a Neo-Hookean layer of finite thickness, for the cases of the layer thickness/indenter radius ratio between 1 and 2. Our analysis was based on the large-deformation JKR (LDJKR) theory, which models the adhesive contact of two elastic solids in large-deformation regime by knowing the solution of the corresponding non-adhesive contact problem. In this paper, the non-adhesive contact between a spherical indenter and a Neo-Hookean layer was solved by finite element analysis. Combined these numerical results and the LDJKR theory, approximate analytic expressions of the applied load and displacement of adhesive contact of Neo-Hookean layers were obtained. The effects of layer thickness were also discussed.  相似文献   

16.
With the emergence of micro- and nano-technology, the contact mechanics of MEMS and NEMS devices and components is becoming more important. Thus it is important to gain a better understanding of the role of coatings and thin films on micro- and nano-scale contact phenomena, and to understand the interactions of measurement devices, such as an atomic force microscope (AFM), with layered media.More specifically, in this work the frictionless contact, with adhesion, between a spherical indenter and an elastic-layered medium is investigated. This configuration can be viewed as either a single contact model or as a building block of a multi-asperity rough surface contact model. As the scale decreases to the nano level, adhesion becomes an important issue. The presence of adhesion affects the relationships among the applied force, the penetration of the indenter, and the size of the contact area. This axisymmetric problem includes the effect of adhesion using a Maugis type of adhesion model. This model spans the range of the Tabor parameter between the JKR and DMT regions. The key parameters in this analysis are the elastic moduli ratio of the layer and the substrate, the dimensionless layer thickness, and the Maugis adhesion parameter. The results can be applied to a rigid or to an elastic indenter.  相似文献   

17.
Considering the adhesive effect and geometric nonlinearity, the adhesive contactbetween an elastic substrate and a clamped miniature circular plate with two different centralrigid bumps under the action of uniform transverse pressure and in-plane tensile force in theradial direction was analyzed. And an analytical solution is presented by using the perturbationmethod. The relation of surface adhesive energies with critical load to detach the contacted surfacesis obtained. In the numerical results, the effects of adhesive energy, in-plane tensile force, rigidbump size and contact radius on the critical load are discussed, and the relation of critical contactradius with the gap between the central rigid bump and the substrate for different adhesive energiesis investigated.  相似文献   

18.
应用大规模分子动力学方法,模拟了具有原子级光滑和原子级粗糙形貌的刚性球形探头与弹性平面基体的干摩擦行为,研究了无/有粘附条件下的载荷与摩擦力、载荷与真实接触面积,以及摩擦力与真实接触面积之间的关系,对纳米尺度下的摩擦行为规律进行了分析。几种系统的真实接触面积-载荷关系都与相应的连续力学接触模型定性的一致,它们分别是Hertz光滑表面接触模型、Greenwood-Williamson粗糙表面接触模型和Maugis-Dugdale粘着接触模型。无论是由光滑表面还是粗糙表面构成的摩擦系统,在无粘附条件下摩擦力与载荷成正比,而摩擦力与真实接触面积之间没有一个简单的关系;在粘附条件下摩擦力与真实接触面积成正比,而摩擦力与载荷之间表现为Maugis-Dugdale模型预测的亚线性关系。我们的研究表明,当表面作用从无粘附到粘附时,控制摩擦力的决定因素从载荷转变为接触面积,摩擦行为从载荷控制摩擦转变为粘着控制摩擦。  相似文献   

19.
郑志军  虞吉林 《力学学报》2007,39(3):382-388
通过线性叠加Sneddon方法和Lowengrub-Sneddon方法分别给出的解, 得到了一个弹性半空间 轴对称混合边值问题的一般解,进而研究了两个一般轴对称弹性体的正向无摩擦吸附接触问 题. 考虑任意有效的表面形状(要求中心部分首先进入接触)和任意的表面吸附作用,推广 得到了广义Maugis模型. 该模型是一个半解析的模型,它可以分解成表面形状和表面吸附 作用的分别独立影响的两部分,以及一个关联变形和吸附作用的式子. 利用Dugdale模型近 似表面吸附作用,得到了具有任意有效的表面形状的广义M-D模型. 它在强吸附或软材料条 件下的极限形式是广义JKR模型,而在弱吸附或硬材料下的另一个极限形式是广义DMT模型.  相似文献   

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