[1] 王明伟,王春燕,杨继新,等. BT20钛合金高温应力松弛行为研究[J]. 稀有金属材料与工程,2012,41(3):502-505. WANG M W,WANG C Y,YANG J X,et al. Study of high temperature stress relaxation behavior of BT20 alloy[J]. Rare Metal Materials and Engineering,2012,41(3):502-505. [2] 桑聪,郑小涛,文翔,等. 疲劳载荷下高温柔性石墨金属波齿复合垫片的实验研究[J]. 武汉工程大学学报,2016,38(1):78-81. SANG C,ZHENG X T,WEN X,et al. Creep fluctuation behavior of high temperature flexible graphite corrugated metal gaskets under fatigue loading[J]. Journal of Wuhan Tnstitute of Technology,2016,38(1):78-81. [3] 郑小涛,陈瑶,喻九阳,等. 螺栓法兰连接系统的热应力场[J]. 武汉工程大学学报,2014,36(6):37-40. ZHENG X T,CHEN Y,YU J Y,et al. Thermal stress of bolted flanged system[J]. Journal of Wuhan Institute of Technology,2014,36(6):37-40. [4] BOUZID A, NECHACHE A. An analytito cal solution for evaluating gasket stress change in bolted flange connections subjected high temperature loading[J]. Journal of Pressure Vessel Technology 2005,127(4): 414-427. [5] BOUZID A, NECHACHE A. Thermally induced deflection in bolted flanged connections [J]. ASME Journal of Pressure Vessel Technology, 2005,127(4): 394-401. [6] BOUZID A, CHAABAN A. An accurate method for evaluating relaxation in bolted flanged connections[J].Journal of Pressure Vessel Technology,1997,119(4):10-17. [7] NECHACHE A, BOUZID A H. On the use of plate theory to evaluate the load relaxation in bolted flanged joints subjected to creep[J]. International Journal of Pressure Vessel and Piping,2008,85(7):486-497. [8] ALKELANI AA, HOUSARI BA, NASSAR SA. A proposed model for predicting clamp load loss due to gasket creep relaxation in bolted joints[J]. ASME Journal of Pressure Vessel Technology,2012, 134(2):517-522. [9] 许珊珊,张营营,张其林. PTFE膜材的应力松弛性能及预测模型分析[J]. 应用数学和力学, 2016,37(3):266-276. XU S S,ZHANG Y Y,ZHANG Q L. Stress relaxation properties and the prediction models for PTFE membranes[J]. Applied Mathematics and Mechanics.2016,37(3):266-276. [10] 张红才,郑小涛,轩福贞,等. 蠕变-疲劳载荷下25Cr2MoVA钢的循环应力松弛行为[J]. 压力容器,2014,31(9):23-27. ZHANG H C,ZHENG X T,XUAN F Z,et al. Cyclic stress relaxation behavior of 25Cr2MoVA steel under creep-fatigue loadings[J]. Pressure Vessel Technology,2014,31(9):23-27. [11] 喻九阳,王明伍,张红才,等. 25Cr2MoVA和15CrMo钢的高温蠕变特性[J]. 武汉工程大学学报,2014,36(5):48-52. YU J Y,WANG M W,ZHANG H C,et al. Creep behavior of 25Cr2MoVA steel and 15CrMo steel[J]. Journal of Wuhan Institute of Technology,2014,36(5):48-52. [12] 中国国家标准化管理委员会. GB/T 12621-2008管法兰用垫片应力松弛试验方法[S]. 北京:中国标准出版社,2008. [13] 郑小涛,文翔,桑聪,等. 高温波齿复合垫片的循环压缩回弹性能[J]. 武汉工程大学学报,2016,38(4):382-384. ZHENG X T,WEN X,SANG C,et al. Cyclic compression-resilience of flexible graphite corrugated metal gaskets at elevated temperature[J]. Journal of Wuhan Institute of Technology,2016,38(4):382-384. [14] 罗文波,杨挺青. 固态高聚物的应力松弛行为[J]. 高分子材料科学与工程,2002,18(2):100-101. LUO W B,YANG T Q. Stress relaxation behavior of solid polymers[J]. Polymer Materials Science and Engineering,2002,18(2):100-101. [15] 陈艳,陈宏善,康永刚. 分数Maxwell模型应用于PTFE松弛模量的研究[J]. 高等学校化学学报,2006,27(11):2160-2163. CHEN Y,CHEN H S,KANG Y G. Relaxation modulus of PTFE studied by fractional maxwell model[J]. Chemical Journal of Chinese University,2006,27(11):2160-2163.