日本新设计疲劳曲线的发展:基于大型管道疲劳试验数据的最佳拟合曲线探讨

M. Bodai, Y. Fukuta, S. Asada, K. Hayashi
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引用次数: 2

摘要

为了开发新的奥氏体碳钢、低合金钢和不锈钢的设计疲劳曲线和一种合理的、有明确设计依据的设计疲劳评价新方法,日本焊接工程学会原子能研究委员会成立了设计疲劳曲线(DFC)第一阶段和第二阶段小组委员会。小组委员会积极开展设计疲劳曲线研究。在小组中,收集了国内外空气中小试件的疲劳数据,建立了一个全面的疲劳数据库。利用该疲劳数据库,将抗拉强度作为曲线参数,得到了奥氏体碳钢、低合金钢和不锈钢的精确最佳拟合曲线。针对设计疲劳曲线上的设计因素,研究了数据散点、平均应力修正、表面整理效应、尺寸效应和变载荷效应,并确定了每个设计因素在设计疲劳曲线上单独考虑。日本某公用事业项目采用奥氏体不锈钢管、碳钢和低合金钢平板进行了大型疲劳试验,并采用小试件进行了疲劳试验,不仅获得了基本数据,而且获得了平均应力效应和表面整理效果的疲劳数据。这些测试结果已提供给小组委员会,并利用了上述研究。本文讨论了奥氏体不锈钢管道的大型疲劳试验及奥氏体不锈钢的最佳拟合曲线。
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Development of New Design Fatigue Curves in Japan: Discussion of Best Fit Curves Based on Fatigue Test Data With Large Scale Piping
In order to develop new design fatigue curves for austenitic carbon steels & low alloy steels and stainless steels and a new design fatigue evaluation method that are rational and have clear design basis, Design Fatigue Curve (DFC) Phase 1 subcommittee and Phase 2 subcommittee were established in the Atomic Energy Research Committee in the Japan Welding Engineering Society. The study on design fatigue curves was actively performed in the subcommittees. In the subcommittees, domestic and foreign fatigue data of small test specimens in air were collected and a comprehensive fatigue database was constructed. Using this fatigue database, the accurate best-fit curves of austenitic carbon steels & low alloy steels and stainless steels were developed by applying tensile strength to a parameter of the curve. Regarding design factors on design fatigue curves, data scatter, mean stress correction, surface finishing effect, size effect and variable loading effect were investigated and each design factor was decided to be individually considered on the design fatigue curves. A Japanese utility project performed large scale fatigue tests using austenitic stainless steel piping and carbon and low-alloy steel flat plates as well as fatigue tests using small specimens to obtain not only basic data but also fatigue data of mean stress effect and surface finishing effect. Those test results were provided to the subcommittee and utilized the above studies. In this paper, the large scale fatigue tests using austenitic stainless steel piping and the best-fit curve of austenitic stainless steel are discussed.
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