肖敏,赵全成,杨华明,符朝旭,罗丹,杨万均.硅橡胶自然环境加速试验方法与自然环境试验方法等效性研究[J].装备环境工程,2020,17(11):71-78. XIAO Min,ZHAO Quan-cheng,YANG Hua-ming,FU Zhao-xu,LUO Dan,YANGWan-jun.Equivalence between Natural Environmental Accelerated Test Methods and Natural Environmental Test Methods of Silicone Rubber[J].Equipment Environmental Engineering,2020,17(11):71-78.
硅橡胶自然环境加速试验方法与自然环境试验方法等效性研究
Equivalence between Natural Environmental Accelerated Test Methods and Natural Environmental Test Methods of Silicone Rubber
投稿时间:2020-04-11  修订日期:2020-04-27
DOI:10.7643/issn.1672-9242.2020.11.011
中文关键词:  硅橡胶  自然环境加速试验方法  自然环境试验方法  等效性
英文关键词:silicone rubber  natural environmental accelerated test method  natural environmental test method  equivalence
基金项目:
作者单位
肖敏 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;海南万宁大气环境材料腐蚀国家野外科学观测研究站,海南 万宁 571500 
赵全成 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;甘肃敦煌大气环境材料腐蚀国家野外科学观测研究站,甘肃 敦煌 736200 
杨华明 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;西藏拉萨大气环境材料腐蚀国家野外科学观测研究站,拉萨400039 
符朝旭 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;海南万宁大气环境材料腐蚀国家野外科学观测研究站,海南 万宁 571500 
罗丹 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;海南万宁大气环境材料腐蚀国家野外科学观测研究站,海南 万宁 571500 
杨万均 西南技术工程研究所,重庆 400039;国防科技工业自然环境试验研究中心,重庆 400039;海南万宁大气环境材料腐蚀国家野外科学观测研究站,海南 万宁 571500 
AuthorInstitution
XIAO Min Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Hainan Wanning National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Wanning 571500, China 
ZHAO Quan-cheng Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Gansu Dunhuang National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Dunhuang 736200, China 
YANG Hua-ming Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Tibet Lhasa National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Lhasa 850000, China 
FU Zhao-xu Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Hainan Wanning National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Wanning 571500, China 
LUO Dan Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Hainan Wanning National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Wanning 571500, China 
YANGWan-jun Southwest Research Institute of Technology and Engineering, Chongqing 400039, China;Natural Environmental Test and Research Center of National Defense and Science Industry, Chongqing 400039, China;Hainan Wanning National Observation & Research Station for Materials Corrosion in Atmospheric Environment, Wanning 571500, China 
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中文摘要:
      目的 研究自然环境加速试验方法与自然环境试验方法的等效性。方法 针对6141硅橡胶,在高原、沙漠、湿热三个自然环境条件下,采用玻璃框、黑箱、强制通风玻璃框、单轴跟踪太阳4种已有自然环境加速试验装置,开展4种自然环境加速试验方法与户外暴露自然环境试验方法的对比试验,运用图形与秩和检验法分析不同自然环境加速试验方法与自然环境试验方法的等效性。结果 在高原、沙漠、湿热三个典型环境条件下,采用6141硅橡胶对比开展的玻璃框、黑箱、强制通风玻璃框、单轴跟踪太阳4种自然环境加速试验与三个典型环境条件下的户外暴露试验中,其拉伸强度服从同一性能变化规律。结论 在高原、沙漠、湿热三个典型环境条件下,开展的6141硅橡胶玻璃框、黑箱、强制通风玻璃框、单轴跟踪太阳4种自然环境加速试验与三个典型环境条件下的户外暴露试验具有等效性。
英文摘要:
      The work aims to study the equivalence between several natural environmental accelerated test methods and natural environmental test methods. In plateau, desert and hygrothermal atmospheric environment, the comparative tests of four natural environmental accelerated test methods and outdoor exposure natural environmental test methods were carried out to 6141 silicone rubber according to four existing natural environment accelerated test devices, such as glass frame, black box, forced ventilation glass frame and tracking solar shelf. Graphic method and rank sum test were adopted to analyze the equivalence between different natural environmental accelerated test methods and natural environmental test methods. In plateau, desert and hygrothermal atmospheric environment, the tensile strength of 6141 silicone rubber was subject to the same performance change rule in four natural environmental accelerated tests, i.e. glass frame, black box, forced ventilation glass frame and tracking solar shelf, and outdoor exposure tests under three typical environmental conditions. In plateau, desert and hygrothermal atmospheric environment, four natural environmental accelerated tests of glass frame, black box, forced ventilation glass frame and tracking solar shelf for 6164 silicone rubber are equivalent to the outdoor exposure tests under three typical environmental conditions.
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