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Evaluation of Sheet-Coated Composite Waterproofing Joint Types by Analysis of Tensile Strength Change and Concrete Displacement Resistance Testing under Environmental Degradation

机译:通过分析环境降解下拉伸强度变化和混凝土位移抗性检测的涂层复合防水接头类型的评价

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摘要

Sheet-coated composite waterproofing (SCCW) have been developed to overcome the natural weakness of singly-ply coating or sheet waterproofing systems for roofing, but there are currently multiple types of SCCW joints. Conventional standard tensile strength testing results show that all SCCW joint types seem to pass the minimum requirement and current selection of SCCW type is dictated on the principle of ‘higher tensile strength is better’, but it has not been experimentally studied as to which type is the optimal to respond to environmental degradation while under the effect of zero-span tensile stress occurring during concrete joint displacement. In this study, five types of SCCW joints were tested: Overlap Bond (OB) type, Overlap Heated-Air Welding (OH) type, Butt Joint I Type (BI), Butt Joint T Type (BT), and Butt Joint Separation Movement Type (BS). These types of joint designs were subjected to Alkali, NaCl, and H2SO4 exposure, and temperature change (60 °C and −20 °C) for determining changes to tensile strength in the joint section. Tensile strength change results are compared to joint displacement resistance test results of specimens that were treated with chemical and temperature degradation. With the exception of chemical exposure conditioning, the Overlap type joints generally had higher tensile strength compared to the butt joint types, but joint displacement test results showed the opposite results, suggesting that complex joints found in SCCW require new evaluation method for quality assessment.
机译:片包覆复合防水(单晶铜线材)已被开发来克服单独使用帘布层涂层或片材防水屋面系统的天生的弱点,但目前有多种类型的单晶铜线材接头。传统的标准拉伸强度测试结果表明,所有起重运输机械厂联合类型似乎通过最低要求和单晶铜线材类型的当前选择所决定的原则“较高的拉伸强度较好”,但它并没有被实验研究哪个类型最优到环境恶化响应而混凝土关节位移期间发生零跨度拉伸应力的作用下。在这项研究中,五种类型的单晶铜线材接头进行了测试:重叠债券(OB)型,重叠热风焊接(OH)型,对接接头Ⅰ型(BI),对接接头(T)型(BT),以及对接接头分离运动类型(BS)。这些类型的接头设计进行碱,NaCl和H 2 SO 4接触,和温度变化(60℃,-20℃),用于确定在关节部变化到拉伸强度。抗张强度变化的结果进行比较,以那用化学和温度降解处理的样品关节位移性试验的结果。与化学品接触调节之外,该重叠型接头通常相比于对接接头类型具有更高的拉伸强度,但关节位移测试结果显示相反的结果,这表明复合关节单晶铜线材发现需要用于质量评估的新的评价方法。

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