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The Calculation of the Supporting Stress of Track Plate in Ballastless High-speed Rail Structure

机译:碴高速轨结构轨道板支撑应力计算

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The slab track is a new sort of track structure, which has been widely used in high-speed rail and special line for passenger. However, the ballastless track structure design theory is still not perfect and can not meet the requirements of current high-speed rail and passenger line ballastless track. In this paper, composite beam method is used to calculate the deflection of the track plate and in this way the vertical supporting stress distribution of the track plate can be gotten which set a basis for the follow-up study of the dynamic stress distribution in the subgrade. Slab track plate's bearing stress under moving load is analyzed through Matlab program. By calculation and analysis, it is found that the deflection of track plate and the rail in the double-point-supported finite beam model refers to the rate of spring coefficient of the fastener and the mortar. The supporting stress of the rail plate is inversely proportional to the supporting stress of the rail. The two boundary conditions of that model, namely, setting the end of the model in the seams of the track plate or not, have little effect on the results. We can use the supporting stress of the track plates on state 1to get the distribution of the supporting stress in the track plate when bogies pass. Also, when the dynamic load magnification factor is 1.2, the track plate supporting stress of CRST I & CRST II-plate non-ballasted structure is around 40kPa.
机译:板式轨道是一种新的轨道结构,已广泛用于高速铁路和乘客的特殊线路。然而,无碴轨道结构设计理论仍然不完美,不能满足当前高速铁路和乘客线禁止轨道的要求。在本文中,复合梁方法用于计算轨道板的偏转,以这种方式可以得到轨道板的垂直支撑应力分布,其为动态应力分布的后续研究设定了基础路基。通过Matlab程序分析了移动负载下的板式轨道板的轴承应力。通过计算和分析,发现双点支撑的有限梁模型中的轨道板和轨道的偏转是指紧固件和砂浆的弹簧系数的速率。导轨板的支撑应力与轨道的支撑应力成反比。该模型的两个边界条件,即,在轨道板的接缝中设置模型的末端,对结果几乎没有影响。我们可以在第1状态上使用轨道板的支撑应力来获得轨道板上的支撑应力的分布。而且,当动态负荷放大系数为1.2时,CRST I&CRST II板非压载结构的轨道板支撑应力约为40kPa。

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