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1.
层流等离子体表面强化技术可大幅提高钢轨表面的硬度和耐磨性。为了揭示强化处理对轮轨滚动接触行为的影响,建立同时考虑钢轨表面选区强化和短波波磨的三维轮轨瞬态滚动接触有限元模型,数值计算了车轮高速滚过一个波磨周期的轮轨力、接触斑黏滑分布和残余应力应变。对比发现:表面选区强化对轮轨力和接触斑黏滑分布的影响较小,不影响钢轨承载性能;对钢轨表面残余应力应变分布的影响明显,残余应力主要集中在屈服强度较高的强化斑内而残余应变主要集中在韧性较好的基体材料上,表面选区强化有效结合了强化斑和基体材料的力学性能,形成了一种强韧的良好匹配。结果可为现场生产服务提供一定的理论指导和应用参考。  相似文献   
2.
根据摩托车工况排放曲线、过量空气系数λ等,来评价各种催化剂的性能,选择成本增加最少、排放控制效果最合适的催化剂方案。在选定过量空气系数λ的条件下,通过改变催化剂的体积、孔密度、贵金属及涂层的配方,对催化剂性能进行表征,用于催化剂方案的选择。  相似文献   
3.
阐述船舶操纵模拟器在港口航道设计中的应用情况。通过上海港外高桥挖入式港池设计研究的实例说明模拟器的成功运用。这些模拟技术和方法对于降低航道费用、增强船舶营运安全和提高港口生产效率都有较大作用。  相似文献   
4.
Oceanographic survey, or other similar applications should be the applications of multiple AUVs. In this paper, the skill & simulation based hybrid control architecture (S^2BHCA) as the controller's design reference was proposed. It is a multi-robot cooperation oriented intelligent control architecture based on hybrid ideas. The S^2BHCA attempts to incorporate the virtues of the reactive controller and of the deliberative controller by introducing the concept of the "skill". The additional online task simulation ability for cooperation is supported, too. As an application, a multiple AUV control system was developed with three "skills" for the MCM mission including two different cooperative tasks. The simulation and the sea trials show that simple task expression, fast reaction and better cooperation support can be achieved by realizing the AUV controller based on the S^2BHCA.  相似文献   
5.
地铁逆变牵引系统中平衡电抗器的存在对减少大功率逆变器体积、降低造价不利。为此,运用磁集成技术将平衡电抗器与变压器有机结合,构造出新型12脉波二重逆变牵引供电系统,实现利用集成磁件的等效电感取代平衡电感的设计思想。采用基于边单元的稳态非线性有限元法,建立地铁变压器的三维有限元模型,对各绕组间的等效电感进行分析计算。仿真结果与样机现场试验数据非常接近,验证了所提出的有限元计算方法的正确性和可行性。  相似文献   
6.
Among all environmental forces acting on ocean structures and marine vessels, those resulting from wave impacts are likely to yield the highest loads. Being highly nonlinear, transient and complex, a theoretical analysis of their impact would be impossible without numerical simulations. In this paper, a pressure-split two-stage numerical algorithm is proposed based on Volume Of Fluid (VOF) methodology. The algorithm is characterized by introduction of two pressures at each half and full cycle time step, and thus it is a second-order accurate algorithm in time. A simplified second-order Godunov-type solver is used for the continuity equations. The method is applied to simulation of breaking waves in a 2-D water tank, and a qualitative comparison with experimental photo observations is made. Quite consistent results are observed between simulations and experiments. Commercially available software and Boundary Integral Method (BIM) have also been used to simulate the same problem. The results from present code and BIM are in good agreement with respect to breaking location and timing, while the results obtained from the commercial software which is only first-order accurate in time has clearly showed a temporal and spatial lag, verifying the need to use a higher order numerical scheme.  相似文献   
7.
At present, the method of calculating the turbulent flow width around the bridge pier is not given in the "Standard for Inland River Navigation" (GB50139-2004) in China, and the bridge designer usually increases the bridge span in order to ensure the navigation safety, which increases both of the structural design difficulty and the project investments. Therefore, it is extremely essential to give a research on the turbulent flow width around the bridge pier. Through the experiments of the fixed bed and the mobile bed, the factors influencing the turbulent flow width around the bridge pier have been analyzed, such as the approaching flow speed, the water depth, the angles between the bridge pier and the flow direction, the sizes of bridge pier, the shapes of the bridge pier, and the scouring around the bridge pier, etc. Through applying the dimension analytic method to the measured data, the formula of calculating the turbulent flow width around the bridge pier is then inferred.  相似文献   
8.
 This article presents a mixed method of analyzing shell elements and solid elements using the overlaying mesh method. In the structural design of a ship's hull, the shell elements are used for the global model. However, the solid elements are necessary to analyze the stress concentration zones or the vicinity of a crack. In such cases, the models are analyzed using zooming analysis, in which the results of a global model analysis are transferred to a local model analysis by imposing boundary conditions. This method is more advantageous than zooming analysis in terms of the accuracy of the solution and the modeling flexibility. Some examples of a plate model with a cracked surface or with a projection are shown in order to demonstrate the effectiveness of the method. Received: August 6, 2002 / Accepted: November 25, 2002 Address correspondence to: S. Nakasumi (sumi@nasl.t.u-tokyo.ac.jp) Updated from the Japanese original, which won the 2002 SNAJ prize (J Soc Nav Archit Jpn 2001;189:219–224; and 190:655–662)  相似文献   
9.
功率压力智能测控仪的研制   总被引:1,自引:0,他引:1  
论述了人造金刚石合成压力机的功率压力智能测控仪的硬件工作原理和软件系统结构.  相似文献   
10.
In this paper, a smart crank and slider mechanism is analyzed mostly from a dynamic view. By means of dynamic explicit finite element method, 3D nonlinear structure is simulated. It is proved that the mechanism can effectively accomplish smart movement prescribed. And in order to ensure reciprocal movement with higher frequency, measures should be taken to avoid over heating of parts. Compared with internal energy, kinetic energy of total rigid body is dominating, and Y direction equivalent rigid velocity is much higher than X direction velocity. Equivalent rigid velocity of all parts is consistent with respective movement condition. For both energy and velocity, slider effect is dominating. Three direction equivalent inertia force oscillates. Force amplitude in Y -direction is comparitively the greatest.  相似文献   
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