摘要
公路桥梁橡胶支座比建筑橡胶支座更容易受到气候的影响,为了研究公路桥梁板式氯丁橡胶支座经过冻融循环后的承载力变化情况,采用标准冻融试验箱对氯丁橡胶支座进行25、50、75、100次的冻融循环处理并进行轴心受压试验,研究其在不同冻融循环次数的承载力、极限抗压强度、竖向刚度、弹性模量等各项性能指标的变化,并与标准试件进行对比分析。结果表明经过冻融循环处理的氯丁橡胶支座更容易发生脆性破坏,且钢板外露、裂缝等破坏现象比标准试件更严重。随着冻融循环次数的增加,冻融程度的加深,氯丁橡胶支座极限承载力、极限抗压强度、抗压弹性模量都逐渐降低;采用最小二乘法得出50a抗压强度和抗压弹性模量的衰减曲线和衰减公式,其变化趋势基本符合指数函数规律。冻融循环后的公路桥梁板式氯丁橡胶支座的各项力学性能指标显著降低,因此应严格控制公路桥梁板式氯丁橡胶支座的温度适用范围,并建议提高其最低适用温度,在寒冷地区尽量采用天然橡胶支座。
The climate has a great impact on highway bridge rubber bearings than on building rubber bearings. In order to study the change of the mechanical properties during the life of the plain chloroprene rubber bearings of highway bridge under freeze-thaw cycle condition, the plain chloroprene rubber bearings were processed 25, 50, 75, 100 times by freeze-thaw cycle in the standard freeze-thaw chamber, then the axial compression tests were carried. The changes of the performance indicators in the bearing capacity , the ultimate compressive strength, vertical stiffness, elastic modulus under different freeze-thaw cycles were analyzed comparatively. The results show that the plain chloroprene rubber bearings are more prone to brittle failure after the freeze-thaw cycle, and the failure phenomena of steel plate exposing or cracks is more serious than the phenomena of the standard specimen. With the increase of the number of freeze-thaw cycle, the ultimate bearing capacity, ultimate compressive strength and compressive elastic modulus of the plain chloroprene rubber bearings decrease. The attenuation formula and decay curve in 50 years of ultimate compressive strength and elastic modulus of compression are analyzed by least square method, the trends of change are both in line with the exponential function. The mechanical properties of plain chloroprene rubber bearings of highway bridge significantly decreased under freeze-thaw cycle condition. therefore, the temperature ranges of plain chloroprene rubber bearings of highway bridge should be strictly controlled, and some suggestions, such as increasing its minimum applicable temperature, usng the natural rubber bearings as much as possible in cold regions, have been given.
出处
《土木建筑与环境工程》
CSCD
北大核心
2013年第6期40-45,共6页
Journal of Civil,Architectural & Environment Engineering
基金
"十二五"国家科技支撑计划项目(2012BAJ16B05)
重庆市科技攻关计划项目(CSTC2011AC6157)
辽宁省高等学校杰出青年学者成长计划(LJQ2011061)
辽宁省教育厅科研项目(LS2010135)
关键词
氯丁橡胶支座
轴心受压试验
承载力
竖向刚度
plain chloroprene rubber bearings
axial compression test
carrying capacity
vertical stiffness