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Quality Assurance Program for Soldering Copper Roofs

机译:用于焊接铜屋顶的质量保证计划

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Since the early 1700s, the art of coppersmithing has been used to construct watertight roofing systems. For low slope, flat seam roofing systems, soldered locked seams and riveted lap joints are essential for the success of this type of system. However, industry standards for testing and monitoring quality assurance to produce a watertight metal roofing product are vague and are not adequately equated to contractor performance. This paper will trace the development of a soldering quality assurance program developed for historical roofing restoration projects requiring watertight seams.The replacement of the original copper roofing on Kingswood School, Cranbrook Educational Community, a National Historic Landmark in Michigan, serves as a model for this current research. Designed by noted architect Eliel Saarinen and constructed in 1931, the building's extensive copper roof is a character-defining feature of the Prairie Style structure. Because of the importance of the architectural feature, a quality assurance program during reconstruction was necessary to develop a confidence level that performance of the copper roofing would meet or exceed expectations. Procedures were developed for certifying coppersmiths for flat locked and riveted seams. Standardized field observations and reports were created to provide continuous documentation of the contractor's work. Variables examined in the work included joint geometry and soldering necessary for the production of watertight seams. Field observations include solder consumption rates to ensure adequate penetration of the seam.This quality assurance program is designed to identify crucial aspects of a copper roofing system in order to effectively evaluate compliance with design requirements. The program recognizes the need for traditional artistry while incorporating new technology to improve roofing performance. The methodology presented in this paper can be directly employed to develop standards for monitoring copper roof system construction.
机译:自17世纪初以来,铜粉丝的艺术已经用于构建水密屋顶系统。对于低斜坡,平面缝屋顶系统,焊接锁定接缝和铆接圈接头对于这种系统的成功至关重要。然而,用于测试和监测质量保证以生产防水金属屋顶产品的行业标准模糊,并且没有充分等同于承包商性能。本文将追踪为历史屋顶修复项目开发的焊接质量保证计划的开发,需要防水缝线。更换原装铜屋顶,克兰布鲁克教育社区,密歇根州全国历史地标,作为这个典范目前的研究。由注意的建筑师Eliel Saarinen设计并于1931年构建,该建筑的广泛铜屋顶是大草原风格结构的特征。由于建筑功能的重要性,重建期间的质量保证计划是制定型铜屋顶的置信水平所符合或超过期望的置信水平。开发了用于认证用于扁平锁定和铆接接缝的Coppersmith的程序。创建了标准化的现场观察和报告,以提供承包商工作的持续文件。在工作中检查的变量包括生产水密接缝所需的联合几何和焊接。现场观察包括焊接消耗速率,以确保接缝的充分渗透。本质保证计划旨在确定铜屋顶系统的关键方面,以便有效地评估符合设计要求的遵守情况。该计划认识到需要传统艺术性的,同时采用新技术来提高屋顶性能。本文提出的方法可以直接用于开发监测铜屋顶系统结构的标准。

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