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排序方式: 共有2164条查询结果,搜索用时 15 毫秒
91.
92.
本文在分析 2 0 0 0年“派比安”、“桑美”台风影响上海的特点后 ,针对上海市在防洪抗台上存在的种种问题 ,提出若干建议。 相似文献
93.
考虑胎体复杂变形的轮胎非稳态侧偏特性理论模型 总被引:14,自引:1,他引:14
本文从肥体的一般变形模式出发,根据胎体的侧向弯曲变形及扭转变形计算出胎面的侧向瞬时变形,从而建立了小幅运动时轮胎非稳态侧偏特性理论模型。考虑胎体的复杂变形之后,模型能真实地反映轮台力学特性和物理实质。 相似文献
94.
本文基于汽车车身工装夹具基础内容展开分析,结合气动系统的基础组成和应用特征。通过研究气缸的应用、控制阀应用、气动三联件、管路应用、消声器应用等内容。其目在于明确气动系统的应用要点,为后续应用体系的完善奠定基础。 相似文献
95.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(5):575-587
In this study, experiments are conducted to investigate tyre-enveloping characteristics. Four different types of tyres are tested. Parameters such as different tyre inflation pressures, vertical loads and types of obstacles (cleats) are considered. In addition to vertical stiffnesses of all tyres, vertical and horizontal force variations while traversing different obstacles at low speed are studied. The effects of inflation pressure and vertical load on variations of force and moment are investigated. Static test results showed that after a certain vertical displacement, all curves in force–deflection diagrams plotted with and without cleat intersect regardless of cleat and tyre types, depending on the inflation pressure of the tyre, which can be called typical static tyre-enveloping characteristics. Test results at low speed show that there is a considerable influence of the vertical load on vertical and lateral force responses of a tyre. 相似文献
96.
以跨径为720 m、桥面距地面516 m的世界第一高钢桁梁斜拉桥—北盘江大桥为例,采用有限元软件MIDAS/CIVIL2016建立有限元模型,进行大桥自振特性理论分析。介绍了钢桁架斜拉桥动力荷载试验方法和过程,对大桥的固有频率、动应变等实测参数与理论进行了对比。试验结果表明,大桥数值分析与实测数据吻合较好,实测整体刚度大于理论刚度,具有一定的安全储备,结构受力特性正常,可为同类钢桁梁斜拉桥检测评定提供参考。 相似文献
97.
刘娇月 《武汉船舶职业技术学院学报》2009,8(2):32-35
在光电技术产业化过程中,光电器件的重要性日益显现。光电器件的种类很多,功能各异。如何掌握各种光电器件的特性及正确选用光电器件是光电技术实际应用中的关键。在对一个光电系统的性能指标进行评价时,系统所选用的光电器件的性能参数指标已经成为最重要的影响因素之一。本文介绍了常用光电器件的主要特性,对常用光电器件进行了对比。讨论了光电器件应用选择时的注意事项与技巧,并对选用光电器件的基本原则进行了总结。 相似文献
98.
Patrick Riehm Hans-Joachim Unrau Frank Gauterin Stefan Torbrügge Burkhard Wies 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2019,57(1):17-43
A 3D tyre brush model, which aims to predict the longitudinal tyre characteristic under steady-state conditions by modelling the occurring physical effects in the tyre–road contact patch, is presented. The model includes an analytical method to describe the tyre footprint geometry, the pressure distribution, the slip due to the lateral tyre contour, the slip due to braking or traction and the longitudinal as well as the lateral shear stresses on a flattened tyre. The presented development tool offers a method to investigate different rubber friction data (caused by different tread compounds and/or surface textures) and to analyse its influence on longitudinal tyre characteristics. The tyre design is fixed (same casing, dimension and pattern). The results include the shear stresses as well as the different sliding velocities in the contact patch for different slip conditions. The model was developed for a standard summer pattern design and a standard tyre dimension (205/55R16). It can also be adapted to other tread designs and tyre dimensions. To offer a good comparability between model results and test bench measurements, the surface curvature of an internal test rig is considered. 相似文献
99.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(12):1929-1950
In this paper, a method for selecting the dynamic characteristics of seat suspension systems is presented. The basic principle of such a method consists in the shaping of nonlinear seat suspension dynamic behaviour for the different requirements defined by machine operators. A combined optimisation procedure has allowed to find the Pareto-optimal system configuration with simultaneous minimisation of conflicted optimisation criteria: the suspended body acceleration and suspension travel. As an example of the proposed method, the seat with a viscous-elastic passive suspension is investigated and its vibro-isolation properties are shaped by the air-spring and shock-absorber force characteristics. 相似文献
100.