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Effect of self-tapping screws on moisture induced stresses in glulam

机译:自攻螺钉对胶合木中水分引起的应力的影响

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Glulam structures in service may exhibit considerable moisture induced stresses perpendicular to grain that may affect the load-bearing capacity. An option to enhance the low tensile strength of glulam perpendicular to grain is the use of self-tapping screws, which has shown promising results in constant climates. In varying climates, however, the performance of such screw reinforcements is currently not well understood. The present paper reports results of both experiments and numerical simulations investigating the effect of self-tapping screws on moisture induced stresses arising in glulam exposed to single wetting and drying climate changes. It is shown that during wetting, the screw reinforcement significantly reduces the maximum tensile stresses arising in the cross section centre. With screw distances from 70 to 210 mm, stress reductions by 70-30% are achieved (compared to unreinforced glulam beams). The tensile stresses arising between the reinforcing screws depend not only on the screw distance, but also strongly on the cross section width and the annual ring pattern of the laminates. During drying, the additional restraint caused by the reinforcing screws resulted in a slight increase of the tensile stresses at the cross section border. These were, however, rather low compared to the tensile stresses arising during wetting.
机译:使用中的胶合木结构可能会在垂直于谷物的方向上表现出相当大的水分诱导应力,这可能会影响承重能力。自攻螺钉的使用是增强胶合木垂直于谷物的低抗拉强度的一种选择,这种螺钉在恒定的气候下显示出令人鼓舞的结果。然而,在气候变化的情况下,目前尚不十分了解这种螺钉增强件的性能。本文报道了实验和数值模拟的结果,研究了自攻螺钉对暴露于单一湿润和干燥气候变化的胶合层中水分引起的应力的影响。结果表明,在润湿过程中,螺钉加固明显降低了横截面中心产生的最大拉应力。螺钉距离从70到210 mm,可将应力降低70-30%(与未加固的胶合梁相比)。加强螺钉之间产生的拉应力不仅取决于螺钉的距离,而且还强烈取决于层压板的横截面宽度和年轮样式。在干燥过程中,由增强螺钉引起的额外约束导致横截面边界处的拉应力略有增加。然而,与润湿期间产生的拉伸应力相比,这些应力相当低。

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