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首页> 外文期刊>International Journal of Fatigue >Crane runways - Fatigue evaluation of crane rail welds using local concepts
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Crane runways - Fatigue evaluation of crane rail welds using local concepts

机译:起重机跑道-使用当地概念对起重机钢轨焊缝进行疲劳评估

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摘要

The introduction of the wheel loads into a crane runway with a hot rolled I-section and a block rail fastened by longitudinal fillet welds forms a multiaxial fatigue problem. At the point of wheel load application the top region of the runway girder is subjected to a stress field comprising local stress components induced by the concentrated load, i.e. local transverse pressure and local shear stress in addition to the direct and shear stress components due to global bending. The superposition of all aforementioned stress components (and stress ranges, resp.) during each single crane pass results in a so-called non-proportional cyclic stressing of the rail welds with alternating principal stress direction. Due to the variation of the principal stress direction the conventional fatigue evaluation procedures appear not to be reliable. To approach the complex issue two crane runway girders were tested under proportional multiaxial loading, i.e. under flexural bending and stationary wheel load, both simultaneously pulsating. The paper presents the fatigue evaluation of these tests using different local concepts.
机译:将车轮载荷引入具有热轧工字型截面和通过纵向角焊缝固定的滑轨的起重机跑道中,会形成多轴疲劳问题。在施加车轮载荷时,跑道大梁的顶部区域会受到应力场的影响,该应力场包括由集中载荷引起的局部应力分量,即局部横向压力和局部剪应力,以及由于整体引起的直接和剪切应力分量。弯曲。在每个单次起重机通过过程中,所有上述应力分量(和应力范围,分别)的叠加导致轨道焊缝具有交替的主应力方向的所谓非比例循环应力。由于主应力方向的变化,传统的疲劳评估程序似乎不可靠。为了解决这个复杂的问题,在比例多轴载荷下,即在弯曲弯曲和固定轮载荷下同时脉动的情况下,测试了两个起重机跑道梁。本文介绍了使用不同的本地概念对这些测试的疲劳评估。

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