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EFFECT OF DESIGN RAIL CANT ON CONCRETE CROSSTIE RAIL SEAT PRESSURE DISTRIBUTION

机译:设计轨道箱对混凝土横梁轨道支座压力分布的影响

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Previous research has focused on the effect of rail cant on rail wear and wheel/rail interaction, indicating that a steeper rail cant results in increased wear on rails and wheels. However, no research has investigated the effect of rail cant on the crosstie rail seat pressure distribution. Past research at the University of Illinois at Urbana-Champaign (UIUC) looked into the effect of negative (reverse) rail cant on pressure distribution across the rail seat utilizing matrix-based tactile surface sensors (MBTSS) on artificially created rail seat wear profile at TTC, Pueblo. These results showed that the pressure distribution became more non uniform with increasing negative rail cant. This paper looks into the effect of 'design' rail cant on pressure distribution across the rail seat. Static tests were carried out on 1:30 and 1:40 cant crossties imparting a predefined sequence of vertical and lateral load combinations. MBTSS and potentiometers were used to measure pressure distribution and rail rotation respectively. The 1:30 cant distributed load more evenly than 1:40 cant at lateral to vertical force ratios greater than 0.4. The two rail cants did not show significant differences in the values of average pressure, contact area, or rail rotation.
机译:先前的研究集中在轨道倾斜对轨道磨损和车轮/轨道相互作用的影响上,表明更陡峭的轨道倾斜会导致轨道和车轮的磨损增加。但是,尚无研究调查铁轨倾斜对交叉结铁轨座压力分布的影响。伊利诺伊大学香槟分校(UIUC)的过去研究使用基于矩阵的触觉表面传感器(MBTSS)人工创建的钢轨座椅磨损状况,研究了负(反向)钢轨倾斜对钢轨座椅上压力分布的影响。 TTC,普韦布洛。这些结果表明,随着负轨倾斜的增加,压力分布变得更加不均匀。本文探讨了“设计”导轨倾斜对整个导轨座压力分布的影响。在1:30和1:40斜交上进行了静态测试,给出了预定义的垂直和横向载荷组合顺序。 MBTSS和电位计分别用于测量压力分布和导轨旋转。在横向力与垂直力之比大于0.4时,1:30的倾斜分布载荷比1:40的倾斜分布更均匀。两个轨道倾斜度在平均压力,接触面积或轨道旋转值上没有显示出显着差异。

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