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阐述了Sap2000程序中的Pushover方法的基本原理和方法,给出桥梁Pushover分析的实现步骤,最后用一个双柱墩结构实例予以说明。结果表明,Sap2000程序可以较方便的实现桥梁结构的Pushover分析,且Pushover方法可以对一般桥梁结构的抗震性能做出合理的评价。  相似文献   
2.
A binary decision diagram(BDD) is a data structure that is used to represent a Boolean function.Converting fault tree into BDD can effectively simplify counting processes and improve the accuracy and effectiveness of the results. However, due to various types of uncertainties in reliability data, we cannot obtain precise failure probabilities. In order to accurately quantify the certainties and obtain much more reliable results, we use BDD method based on fuzzy set theory for reliability quantitative analysis. In this regard, we take W-axis feeding system of heavy-duty computer numerical control(CNC) machine as a project example and adopt fuzzy BDD quantitative analysis method to analyze its reliability. The analysis results(aided by computer calculation)illustrate the effectiveness of the method proposed in this paper.  相似文献   
3.
The lathes are basic machine tools for manufacturing cylindrical parts. In recent years, the DLseries computer numerical control(CNC) heavy-duty horizontal lathes(HDHLs) have been widely used in the transportation, energy and aviation industries. High availability of the CNC heavy-duty lathes is demanded to guarantee the efficiency and benefit of these manufacturing industries. As one of the key subsystems of the HDHLs, the feeding control system is studied in this paper on reliability modeling and reliability analysis. The fault tree analysis(FTA) method is used for reliability modelling of the feeding control system. Considering the multiple common cause failure groups(CCFGs) existing in the system, a modified beta factor parametric model is introduced to model the common cause failure(CCF) in system. The reliability of feeding control system is then obtained and the effect of CCF on the reliability of the whole system is studied as well.  相似文献   
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磁流变减振器是一种阻尼力连续可变、反应迅速、机械装置简单、外部输入能量小的新型减振器。近年来,不可再生能源日益枯竭、碳排放量过高等问题受到人们的重视,基于可持续发展的原则,新能源汽车和电动汽车将成为汽车发展的必然选择,电子化、智能化的磁流变减振器必将取得长足的发展与应用。文章首先介绍了磁流变减振器的核心技术,研究了磁流变材料的沉降稳定性和磁流变减振器能给问题的解决方法,然后讨论了磁流变减振器未来的发展趋势,最后对磁流变减振器现阶段的研究进行了总结。  相似文献   
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