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Fatigue of Deformed Welded-Wire Reinforcement

机译:焊丝变形疲劳

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摘要

Using welded-wire reinforcement (WWR) as an alternative to traditional mild steel reinforcing bars has many advantages. WWR has a higher yield strength and is produced under higher quality control standards. Its use also results in fewer labor costs associated with construction. However, many designers are reluctant to use WWR as an alternative to mild steel reinforcing bars due to the unavailability of fatigue design guidance in the American Association of State Highway and Transportation Officials' AASHTO LRFD Bridge Design Specifications. This paper reports on a fatigue testing program of deformed, high-strength WWR. Based on the results of this testing program, a conservative stress range formula for WWR is presented. This same formula has been adopted for use in the 2007 Interim AASHTO LRFD Bridge Design Specifications. In addition, full monotonic axial tensile stress-strain relationships are presented.
机译:使用焊丝增强(WWR)替代传统的低碳钢增强棒具有许多优势。 WWR具有更高的屈服强度,并且是在更高的质量控制标准下生产的。使用它还可以减少与施工相关的人工成本。但是,由于没有美国国家公路和运输官员协会的AASHTO LRFD桥梁设计规范中的疲劳设计指南,许多设计人员不愿使用WWR替代低碳钢钢筋。本文报告了变形高强度WWR的疲劳测试程序。根据该测试程序的结果,提出了WWR的保守应力范围公式。 2007年中期AASHTO LRFD桥梁设计规范中也采用了相同的公式。此外,提出了完整的单调轴向拉伸应力-应变关系。

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