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A method to measure retro-reflectance and durability of retro-reflective materials for building outer walls

机译:一种用于测量外墙建筑用回射材料的回射率和耐久性的方法

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A method of determining the retro-reflectance of retro-reflective materials used for building coatings is proposed in this article. In addition, the durability of retro-reflective materials over long-term outdoor exposure is also estimated. Retro-reflective materials are currently limited to use in specific purposes, such as road traffic signs in Japan. To consider their application as a building coating, it is also necessary to examine the thermal performance and durability of retro-reflective materials. We proposed a method of determining the retro-reflectance of retro-reflective materials (capsule retro-reflective material and prism retro-reflective material were used in this experiment) by experiment To explore the durability of retro-reflective materials over long-term outdoor exposure, we measured the changes in solar reflectance and retro-reflectance of retro-reflective materials exposed to the outdoors over about 25 months. The solar reflectance of capsule retro-reflective material decreased from 0.69 to 0.51 and that of prism retro-reflective material decreased from 0.83 to 0.81. The retro-reflectance of capsule retro-reflective material decreased from 0.18 to near 0 (0.0072) and that of prism retro-reflective material decreased from 0.44 to 0.42. At the end of the test period, we cleaned the surface of the retro-reflective materials. Both of the retro-reflective materials recovered about 50% of the lost solar reflectance by cleaning. The retro-reflectance of capsule retro-reflective material increased by about 0.08 (46% recovered) by cleaning and that of prism retro-reflective material increased by only 0.01 (with 50% recovered) by cleaning. We concluded that the durability of prism retro-reflective material is better than that of capsule retro-reflective material for use on building coatings.
机译:本文提出一种确定用于建筑涂料的后向反射材料的后向反射率的方法。另外,还估计了逆向反射材料在长期户外暴露下的耐久性。逆向反射材料目前仅限用于特定目的,例如日本的道路交通标志。要考虑将其用作建筑涂料,还必须检查逆向反射材料的热性能和耐久性。我们提出了一种通过实验确定逆向反射材料的回射率的方法(本实验中使用了胶囊逆向反射材料和棱镜逆向反射材料),以探索逆向反射材料在长期户外暴露下的耐久性,我们测量了暴露在户外约25个月的太阳光反射率和向后反射材料的向后反射率的变化。胶囊后向反射材料的太阳反射率从0.69降低到0.51,而棱镜后向反射材料的太阳反射率从0.83降低到0.81。胶囊后向反射材料的后向反射率从0.18降低到接近0(0.0072),而棱镜后向反射材料的后向反射率从0.44降低到0.42。在测试结束时,我们清洁了逆反射材料的表面。两种逆向反射材料都可以通过清洁来恢复约50%的太阳反射率损失。通过清洁,胶囊后向反射材料的后向反射增加了约0.08(恢复了46%),而棱镜后向反射材料的后向反射仅通过清洁增加了0.01(恢复了50%)。我们得出的结论是,棱镜逆反射材料的耐久性优于用于建筑涂料的胶囊逆反射材料的耐久性。

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