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Experimental investigation of the load-deformation behaviour of pultruded GFRP modular and custom safety barriers

机译:拉挤GFRP模块化和定制安全栅栏的荷载-变形行为的实验研究

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摘要

Two two-bay pultruded glass fibre reinforced polymer (GFRP) post and rail safety barriers have been fabricated. One, a modular barrier, was fabricated from circular cross-section tubes, bolted sheet moulded composite (SMC) two-part multi-way connectors and bases. The other, a custom barrier, was fabricated from three profiles: square cross-section tubular posts, a circular cross-section tubular knee rail and a C-section hand rail. Rivets connected the hand rail to the tops of the posts and bolted bases connected the posts to the foundation. The continuous knee rail was located by means of holes in the posts' walls. Both barriers were loaded incrementally up to the general duty load applied to the hand rail and then unloaded. Their load deformation responses were monitored and both barriers were able to support the general duty load undamaged. After unloading the maximum residual deflection of the hand rail was about 5 mm. The barriers' mean transverse stiffnesses were evaluated and the custom barrier's stiffness was about 46% greater than that of the modular barrier. The custom barrier was re-tested up to the heavy duty load and was able to support the load without visible signs of damage. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经制造了两个两托架拉挤玻璃纤维增​​强聚合物(GFRP)立柱和轨道安全屏障。一种是模块化屏障,它是由圆形横截面管,螺栓连接的片状模塑料(SMC)两部分式多路连接器和底座制成的。另一个是定制的屏障,它是由三种轮廓制成的:方形横截面的管状立柱,圆形横截面的管状护膝和C形扶手。铆钉将扶手连接到立柱的顶部,而螺栓固定的基座将立柱连接到基础。连续的膝部导轨通过柱子壁上的孔定位。将两个障碍物逐渐加载,直到施加到扶手的一般负载后再卸载。监视了它们的载荷变形响应,并且两个障碍物都能够支撑未损坏的一般负载。卸载后,扶手的最大残余挠度约为5毫米。对障碍物的平均横向刚度进行了评估,定制障碍物的刚度比模块化障碍物的刚度高约46%。定制障碍物经过了重新测试,直到达到重型负载,并能够支撑负载,而没有明显的损坏迹象。 (C)2015 Elsevier Ltd.保留所有权利。

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