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151.
本文以上海市轨道交通三号线一期工程二标预应力简支箱梁的施工为例 ,介绍了作为现浇钢筋混凝土结构承重支架的扣件式钢管支架及桁架式龙门支架的设计与验算方法 ,从而保证桥梁现浇混凝土结构的施工质量及施工安全 ,并有效降低工程成本 相似文献
152.
某箱肋拱桥主拱圈出现了大量的裂缝,荷载试验结果表明结构刚度偏低、冲击系数偏大。为了解决以上问题,通过增设拱肋之间的斜撑以增强横向联系,加强结构的整体性,并结合空间梁格有限元模型分析对比了加固前后的拱圈内力变化情况。结果表明,增设斜撑后,活载内力将下降20%左右,效果明显。 相似文献
153.
154.
随着预应力混凝土梁桥的迅速发展,桥梁收缩和徐变影响的分析、计算成为设计、施工、监控越来越关心的问题。该文以某独塔单跨悬吊自锚式悬索桥方案为例,进行结构成桥后的收缩徐变效应分析,研究混凝土收缩徐变效应对结构的影响。 相似文献
155.
156.
Prediction of fatigue life and estimation of its reliability on the parts of an air suspension system 总被引:1,自引:0,他引:1
K. J. Jun T. W. Park S. H. Lee S. P. Jung J. W. Yoon 《International Journal of Automotive Technology》2008,9(6):741-747
Air suspension systems have been implemented in various commercial vehicles, such as buses and special purpose trucks, because
of the comfortable ride and easy height control. An evaluation of the durability of vehicle parts has been required for service
life and safety starting in the early stages of design. The cyclic load applied to the vehicle can cause fatigue failure of
parts, such as the suspension frame. This paper presents a method to predict the fatigue life of the suspension frame at the
design stage of the air suspension system used in a heavy-duty vehicle. To estimate the fatigue life using the SN method,
the Dynamic Stress Time History (DSTH) is necessary for the part of interest. DSTH can be obtained from the results of the
flexible body dynamic analysis using the Belgian road simulation and the Modal Stress Recovery (MSR) method. Furthermore,
the reliability of the predicted fatigue life can be evaluated by considering the variations in material properties. The probability
and distribution of the expected life cycle can be obtained using experimental design with a minimum number of simulations.
The advantage of using statistical methods to evaluate the life cycle is the ability to predict replacement time and the probability
of failure of mass-produced parts. This paper proposes a rapid and simple method that can be effectively applied to the design
of vehicle parts. 相似文献
157.
Undesired lateral force inevitably exists in a MacPherson suspension system, which is liable to damper rod’s side wear and
promotes the damper’s inner friction decreasing the ride performance from the suspension system. Substituting a new side load
spring with curved centerline for the conventional coil spring has been proven able to solve these problems and Multi-body
Dynamics combining with Finite Elements Analysis may be an efficient method in optimizing its design. Therefore, taking a
passenger car as example, a detailed multi-body dynamics model for the suspension system is built to simulate forces exerted
on the damper and the minimization of its lateral component is selected as the design target for the spring. When the structure
optimization of the side load spring is performed using FEA software ANSYS, its vertical and lateral elastic characteristics,
supported by test data, are analyzed. After importing FEA results back to the suspension system, the dynamics simulation can
be performed to validate the optimization result. 相似文献
158.
This paper proposes a new neuron control strategy for an active vehicle suspension system, with the emphasis on the study
of multivariable and uncertain suspension characteristics. The novelty of this strategy is in the use of integrated error,
which consists of multiple output errors in the regulated plant. By combining the integrated error approach with the traditional
neuron control (TNC), integrated error neuron control (IENC) is presented. It provides a direct control to the multiple outputs
of the control plant simultaneously. Taking a quarter-car model as an example, the proposed control strategy is applied and
comparative simulations are carried out with various vehicle parameters and road input conditions. Simulation results prove
the effectiveness and robustness of the proposed IENC method. In addition, the newly proposed neuron scheme provides a simple
yet efficient new possibility for the control of a class of uncertain multivariable systems similar to an active vehicle suspension. 相似文献
159.
大跨度悬索管道桥桥面窄,宽跨比小,结构十分轻柔,结构参数的改变对其动力特性有较大的影响。以川气东送野山河悬索跨越工程为例,采用大型有限元分析软件ANSYS10.0分析了风缆预张力和风缆面与水平面夹角变化对该悬索管道桥动力特性的影响。研究表明,提高风缆预张力和选取适当的风缆与水平面的夹角能有效地提高全桥结构刚度。 相似文献
160.