[1]谢彩霞, 李海锋, 南子森, 等. 低屈服点钢LYP100单调与循环拉伸试验研究[J]. 建筑材料学报, 2020, 23(3): 713-720. Xie Caixia, Li Haifeng, Nan Zisen, et al. Experimental study of low yield point steel LYP100 under monotonic and cyclic tensile loading[J]. Journal of Building Materials, 2020, 23(3): 713-720. [2]许立言, 聂 鑫, 樊健生, 等. 低屈服点钢剪切型阻尼器试验研究[J]. 清华大学学报(自然科学版), 2016, 56(9): 991-996. Xu Liyan, Nie Xin, Fan Jiansheng, et al. Experimental investigation of low-yield-point steel shear panel dampers[J]. Journal of Tsinghua University (Science and Technology), 2016, 56(9): 991-996. [3]付 磊, 张应迁, 罗云蓉, 等. 阻尼器用低屈服点钢BLY160的低周疲劳性能[J]. 钢铁研究学报, 2015, 27(3): 65-69. Fu Lei, Zhang Yingqian, Luo Yunrong, et al. Low cycle fatigue properties of steel BLY160 with low yield point for damper[J]. Journal of Iron and Steel Research, 2015, 27(3): 65-69. [4]宋凤明, 温东辉, 李自刚, 等. 低屈服点钢的发展及应用[J]. 热加工工艺, 2008, 37(6): 85-88. Song Fengming, Wen Donghui, Li Zigang, et al. Application and development of low yield point steel[J]. Hot Working Technology, 2008, 37(6): 85-88. [5]王佼姣, 石永久, 严 红, 等. 低屈服点全钢防屈曲支撑抗震性能试验研究[J]. 土木工程学报, 2013, 46(10): 9-16. Wang Jiaojiao, Shi Yongjiu, Yan Hong, et al. Experimental study on the seismic behavior of all-steel buckling-restrained brace with low yield point[J]. China Civil Engineering Journal, 2013, 46(10): 9-16. [6]施 刚, 王 珣, 高 阳, 等. 国产低屈服点钢材循环加载试验研究[J]. 工程力学, 2018, 35(8): 30-38. Shi Gang, Wang Xun, Gao Yang, et al. Experimental study on domestic low yield point steels under cyclic loading[J]. Engineering Mechanics, 2018, 35(8): 30-38. [7]陈润农. 极低屈服点钢的组织与第二相调控研究[D]. 马鞍山: 安徽工业大学, 2019. [8]陈润农, 李昭东, 张明亚, 等. 铌微合金化极低屈服点钢的组织与性能[J]. 钢铁, 2019, 54(1): 63-70. Chen Runnong, Li Zhaodong, Zhang Mingya, et al. Microstucture and properties of Nb microalloyed ultra low yield point steel[J]. Iron and Steel, 2019, 54(1): 63-70. [9]闵 杰, 盛光敏, 吴结才, 等. 热轧H型钢的高应变低周疲劳性能研究[J]. 钢铁研究学报, 2009, 21(11): 40. Min Jie, Sheng Guangmin, Wu Jiecai, et al. Analysis of high strain low cycle fatigue properties of hot rolled H beam steel[J]. Journal of Iron and Steel Research, 2009, 21(11): 40. [10]王栓柱. 金属疲劳[M]. 福州: 福建科学技术出版社, 1986. [11]宋凤明, 温东辉, 李 陈, 等. 极低屈服点钢低周疲劳特性[J]. 钢铁研究学报, 2010, 22(5): 37-40. Song Fengming, Wen Donghui, Li Chen, et al. Low cycle fatigue characteristic of ultra-low yield point steel[J]. Journal of Iron and Steel Research, 2010, 22(5): 37-40. [12]张永健, 惠卫军, 项金钟, 等. 晶粒尺寸对42CrMoVNb钢超高周疲劳性能的影响[J]. 金属学报, 2009, 45(7): 880-886. Zhang Yongjian, Hui Weijun, Xiang Jinzhong, et al. Effect of grain size on ultra-high-cycle fatigue properties of 42CrMoVNb steel[J]. Acta Metallurgica Sinica, 2009, 45(7): 880-886. |