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首页> 外文期刊>Journal of Cold Regions Engineering >Snow Friction Coefficient for Commercial Roofing Materials
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Snow Friction Coefficient for Commercial Roofing Materials

机译:商业屋面材料的雪摩系数

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06017005.1-06017005.6%Redistribution of snow loads on two adjacent buildings of different heights is addressed. The term slippery roofs is used but it is not defined. Measurements of friction between snow and commercial roofing materials are carried out to help specify the term. In order to determine a static coefficient of friction, the Coulomb friction principle of measuring inclination increase until specimen movement begins is applied. A test apparatus is designed and produced. Single-ply roofing materials such as membranes made of polyvinyl chloride (PVC), thermoplastic polyolefin (TPO), ethylene propylene diene monomer (EPDM), and modified bitumen (MB), as well as painted industrial metal profile specimens are tested. Snow specimens from fresh snow are prepared and tests are carried out under laboratory conditions. For the given conditions, although deviating from full-scale realistic conditions, snow samples slid at different angles depending on the roofing material type. Average values of sliding angle for PVC, TPO, EPDM, and MB membranes and metal sheet are determined to be 6 degrees, 15 degrees, 20 degrees, 57 degrees, and 22 degrees, respectively. Based on the published provisions and given test conditions, commercial roofing materials can be categorized as slippery. (C) 2017 American Society of Civil Engineers.
机译:06017005.1-06017005.6%解决了两个不同高度的相邻建筑物上雪荷载的重新分配问题。使用术语“光滑屋顶”,但未定义。测量雪和商用屋面材料之间的摩擦以帮助指定该术语。为了确定静摩擦系数,采用了测量倾斜度的库仑摩擦原理,直到样品开始移动为止。设计并生产了一种测试设备。测试了单层屋顶材料,例如由聚氯乙烯(PVC),热塑性聚烯烃(TPO),乙烯丙烯二烯单体(EPDM)和改性沥青(MB)制成的膜,以及涂漆的工业金属型材样品。准备新鲜雪中的雪标本,并在实验室条件下进行测试。对于给定的条件,尽管与实际的实际条件有所不同,但根据屋顶材料的类型,雪样会以不同的角度滑动。确定PVC,TPO,EPDM和MB膜和金属板的滑动角平均值分别为6度,15度,20度,57度和22度。根据已发布的规定和给定的测试条件,可以将商业屋面材料归类为湿滑。 (C)2017年美国土木工程师学会。

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