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IMPROVING THE IMPACT RESISTANCE OF GRC PLANKS USING GRP BARS

机译:使用GRP棒改善GRC板的抗冲击性

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Glass-fibre reinforced concrete (GRC) planks are commonly used as an integral part of the walkways in floating marina systems and are so chosen because of their lightness relative to their strength and flexibility, their durability and their non-slip surface. Planks can be single or multi-span and are thin (circa 3cm) to minimise their weight. However, use in practice has very occasionally given rise to flexural failures of the planks due to impact loading, usually by dropping of gas cylinders or a heavy person jumping off a moored boat, or by accidental impact of a berthing boat into a service bollard. Failures tend to be catastrophic and leave the pontoon in an unserviceable condition, such that immediate replacement is necessary to ensure continuation of a safe walkway for sailors. To mitigate against such failures, the incorporation of glass-fibre reinforced plastic (GRP) re-bar was investigated, GRP being non-corrosive and of relatively high tensile strength capacity. Two 6mm parallel bars were introduced close to the soffit of the planks over their entire length. This research project characterised the flexural response and failure modes of the GRP re-bar planks under static and impact loads. Considerably enhanced load carrying capacity and ductility were observed under static loading. More importantly,the response of the strengthened planks to simulated human impact over a series of jump heights provided evidence that considerable additional toughness was introduced by the GRP bars, enabling much better energy absorption. Although some cracking still occurred on impact, the planks remained serviceable and safe,ensuring that they could be replaced in due course without undue disruption to normal pedestrian traffic.
机译:玻璃纤维钢筋混凝土(GRC)板通常用作浮动码头系统的人行道的组成部分,因此由于它们的光照而相对于它们的强度和柔韧性,其耐用性和防滑表面而被选择。板可以是单跨度或多跨度,薄(大约3cm),以最小化其重量。然而,在实际的使用已非常偶然通常是由气瓶或重的人跳的脱落停泊的船引起了由于冲击载荷木板的弯曲故障,或停泊的船的意外影响到服务的安全岛。失败往往是灾难性的,并将浮子留在不可用的情况下,这样即可替换是必要的,以确保延续水手安全走道。为了防止这种故障,研究了玻璃纤维增​​强塑料(GRP)RE-BAR的掺入,GRP是非腐蚀性和相对高的抗拉强度的能力。将两个6mm并联条靠近整个长度靠近板条的拱区引入。该研究项目表征了静态和冲击载荷下GRP重新杆板的弯曲响应和故障模式。在静态载荷下观察到显着增强的载荷承载能力和延展性。更重要的是,强化木板在一系列提供的证据是相当大的额外的韧性是由GRP条出台,使更好的能量吸收跳跃高度模拟人类影响的响应。虽然撞击仍然发生一些破裂,但木板保持可维修和安全,确保它们可以在适当的时候更换,而不会对正常的行人交通过度破坏。

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