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A Systematic Approach to the Study of Accelerated Weathering of Building Joint Sealants

机译:建筑物联合密封剂加速风化研究的系统方法

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An accurate service life prediction model is needed for building joint sealants in order to greatly reduce the time to market of a new product and reduce the risk of introducing a poorly performing product into the marketplace. A stepping stone to the success of this effort is the precise control of environmental variables in a laboratory accelerated test apparatus in order to produce reliable weathering data that can be used to generate a predictive model. This contribution reports a systematic study, using a novel laboratory test apparatus, investigating the individual and synergistic impacts of four environmental factors (cyclic movement, temperature, relative humidity, and ultraviolet radiation) on the durability of a sealant system. The apparatus used is unique because it not only allows the precise control of environmental factors but also permits in situ characterization tests so that the specimens need not be removed from the apparatus chamber. Graphical and quantitative statistical approaches have been used to analyze the data. The study shows that the critical role of each individual factor, as well as synergism among the different factors, can be readily quantified, and modes of degradation possibly can be identified.
机译:建立联合密封剂需要准确的使用寿命预测模型,以大大减少新产品的市场时间,并降低将产品良好的产品引入市场的风险。这种努力成功的踩踏石是在实验室加速测试装置中的环境变量的精确控制,以产生可用于产生预测模型的可靠风化数据。这种贡献报告了使用新型实验室测试装置的系统研究,研究了四种环境因素(循环运动,温度,相对湿度和紫外线)对密封胶系统的耐久性的个体和协同影响。所用的装置是独特的,因为它不仅允许精确控制环境因子,而且还允许原位表征测试,以便不需要从装置室中除去样本。已经使用图形和定量统计方法来分析数据。该研究表明,可以容易地量化每个单独因素,以及不同因素之间的协同作用的关键作用,并且可以鉴定可能的降解模式。

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