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首页> 外文期刊>Journal of Structural Engineering >Evaluation of Elastomeric Bearing Performance at Low Temperatures
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Evaluation of Elastomeric Bearing Performance at Low Temperatures

机译:低温下弹性体轴承性能评估

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Recent studies on elastomeric bearings led to changes in the design specifications, which tend to indicate that bearings fabricated in the past, would fail the current test requirements. This is contrary to the fact that there have been no reported problems of poor bearing performance in low-temperature regions. AASHTO requires low-temperature tests to determine the change in the shear modulus, which is limited to a certain value. This criterion does not adequately address the performance of the bearings, because in-service conditions of an elastomeric bearing are not sufficiently taken into account. The field performance of the bearings depends primarily on the temperature characteristics of the geographic location where the bearing is installed, which also determines the probable amplitude of shear strain the bearing would experience. Thus, to adequately evaluate the in-service performance of the bearings, a performance-based procedure should be employed. In this paper, a variety of bearings were tested and checked at four different low-temperature locations. The test results have been reported in a companion paper. It was established that most of the bearings could in fact serve satisfactorily in spite of the fact that the bearings in many instances fail the current test procedures. This indicates that the current testing requirements related to cold-temperature performance are too severe. Hence, a procedure that relies on the historic temperature records of the region where the bearing would be installed is recommended to determine the performance requirements at a particular location. In this procedure, the acceptance criterion is based on the maximum expected shear force and the potential slip of the bearings.
机译:最近对弹性轴承的研究导致了设计规范的变化,这往往表明过去制造的轴承将无法满足当前的测试要求。这与在低温地区没有报告轴承性能差的问题相反。AASHTO要求进行低温测试以确定剪切模量的变化,剪切模量限制在一定值内。该标准没有充分考虑轴承的性能,因为弹性轴承的使用条件没有得到充分考虑。轴承的现场性能主要取决于轴承安装地理位置的温度特性,这也决定了轴承可能经历的剪切应变幅度。因此,为了充分评估轴承的使用性能,应采用基于性能的程序。本文在四个不同的低温位置对各种轴承进行了测试和检查。测试结果已在一篇配套论文中报告。可以确定的是,尽管轴承在许多情况下未能通过当前的测试程序,但大多数轴承实际上都可以令人满意地使用。这表明目前与低温性能相关的测试要求过于严格。因此,建议采用依赖于轴承安装区域的历史温度记录的程序来确定特定位置的性能要求。在此过程中,验收标准基于最大预期剪切力和轴承的潜在滑移。

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