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Effects of Ultraviolet Radiation,High Temperature and Alkaline Chemicals on Ageing of Silicone Sealants Used in Ballastless Track Expansion Joints 被引量:2

Effects of Ultraviolet Radiation, High Temperature and Alkaline Chemicals on Ageing of Silicone Sealants Used in Ballastless Track Expansion Joints
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摘要 Expansion joints silicone sealants used in high speed railway construction suffer from ultraviolet radiation(UV), high temperature combined with the alkaline environment. To evaluate the durability and analyse the ageing mechanism, six one-component silicone sealants from different companies were selected and subjected to accelerated ageing tests including UV, thermal and alkali ageing treatments. The ageing effects on the performance of the sealants were evaluated via the appearance and the mechanical property changes. The changes in molecular structure were studied by means of Fourier transform infrared spectroscopy(FTIR), differential scanning calorimetry(DSC) and thermogravimetry(TG). This study revealed that different materials displayed different sensibilities to the ageing methods, in which 15 %-20 % decreases of mechanical properties could be observed under UV radiation test, owning the most significant effects. Structure analysis showed that the physical changes of aggregative states were the principal factors to the performance, along with the chemical slight changes. The glossiness dropped significantly in ageing test, which could be used as one of the effective evaluation parameters for ageing conditions in the field. Expansion joints silicone sealants used in high speed railway construction suffer from ultraviolet radiation(UV), high temperature combined with the alkaline environment. To evaluate the durability and analyse the ageing mechanism, six one-component silicone sealants from different companies were selected and subjected to accelerated ageing tests including UV, thermal and alkali ageing treatments. The ageing effects on the performance of the sealants were evaluated via the appearance and the mechanical property changes. The changes in molecular structure were studied by means of Fourier transform infrared spectroscopy(FTIR), differential scanning calorimetry(DSC) and thermogravimetry(TG). This study revealed that different materials displayed different sensibilities to the ageing methods, in which 15 %-20 % decreases of mechanical properties could be observed under UV radiation test, owning the most significant effects. Structure analysis showed that the physical changes of aggregative states were the principal factors to the performance, along with the chemical slight changes. The glossiness dropped significantly in ageing test, which could be used as one of the effective evaluation parameters for ageing conditions in the field.
作者 李化建 YI Zhonglai CHENG Guanzhi WEN Hao XIE Yongjiang LI Huajian;YI Zhonglai;CHENG Guanzhi;WEN Hao;XIE Yonjiang(Institute of Railway Construction,China Academy of Railway Sciences,Beijing 100081,China;State key Laboratory of High Speed Railway Track Technology,Beijing 100081,China)
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第5期1015-1021,共7页 武汉理工大学学报(材料科学英文版)
基金 Funded by National Natural Science Foundation of China(Nos.51578545,51378499 and 51708557) Technological Research and Development Programs of China Railways Corporation(Nos.2008G031-N,2013G008-A-3) Technological Research and Development Programs of China Academy of Railways Sciences(Nos.2012YJ025,2016YJ047)
关键词 化学药品 密封剂 高温度 紫外 放射 硅酮 关节 FOURIER silicon sealant durability ageing expansion joints
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