[1]
|
李跃光,姬战国.国内高频疲劳试验机的技术现状及其发展[J].试验技术与试验机,2006,45(1):1-4 Li Y G, Ji Z G. The technical present situation and development of china's domestic high frequency fatigue testing machines[J]. Test Technology and Testing Machine, 2006,45(1):1-4 (in Chinese)
|
[2]
|
郑铭章.PLG系列高频疲劳试验机[J].试验技术与试验机,1996,36(3-4):9-11 Zheng M Z. PLG series of high frequency fatigue testing machines[J]. Test Technology and Testing Machine, 1996,36(3-4):9-11 (in Chinese)
|
[3]
|
宋欣,唐文明,沙宇,等.高频疲劳实验机薄板试件夹具研究[J].机械工程师,2009, (3):113-115 Song X, Tang W M, Sha Y, et al. Study of thin-plate specimen fixture of high-frequency fatigue testing machine[J]. Mechanical Engineer, 2009,(3):113-115 (in Chinese)
|
[4]
|
黄小平,崔维成,张锦飞,等.板试件疲劳实验夹具设计及使用经验[J].实验室研究与探索,2003,22(6):98-101 Huang X P, Cui W C, Zhang J F, et al. Design and using experience of the fatigue testing clamp for plate specimens[J]. Research and Exploration in Laboratory, 2003,22(6):98-101 (in Chinese)
|
[5]
|
王胜辉,陈进,吴益文.小试样的疲劳实验及其夹具设计[J].理化检验:物理分册,2009,45(4):246-247 Wang S H, Chen J, Wu Y W. Fatigue test and clamping design of small specimen[J]. Physical Testing and Chemical Analysis (Part: A Physical Testing), 2009,45(4):246-247 (in Chinese)
|
[6]
|
米亦农.国外内高频疲劳试验机的发展状况[J].试验技术与试验机,1980,(3):1-13 Mi Y N. The development of international high frequency fatigue testing machines[J]. Material Testing Machine, 1980,19(3):1-13 (in Chinese)
|
[7]
|
王学智,李春明.我国试验机标准化工作的回顾与展望[J].试验技术与试验机,2006,46(3):69-77 Wang X Z, Li C M. Review and prospect of the National standardization of testing machines in China[J]. Test Technology and Testing Machine, 2006,46(3):69-77 (in Chinese)
|
[8]
|
中华人民共和国国家质量监督检验检疫总局,中国国家标准化管理委员会.GB/T3075-2008 金属材料 疲劳试验 轴向力控制方法[S].北京:中国标准出版社,2008 AQSIQ, SAC. GB/T3075-2008 Metallic materials-Fatigue testing-Axial-force-controlled method[S]. Beijing: Standards Press of China, 2008 (in Chinese)
|
[9]
|
赵少汴.抗疲劳设计[M].北京:机械工业出版社,1994 Zhao S B. Anti-fatigue design[M]. Beijing: China Machine Press, 1994 (in Chinese)
|
[10]
|
张继旺,鲁连涛,张艳斌,等.疲劳极限小样本评估方法[J].哈尔滨工程大学学报,2010,31(3):336-339 Zhang J W, Lu L T, Zhang Y B, et al. Evaluating fatigue limits with Small data samples[J]. Journal of Harbin Engineering University, 2010,31(3):336-339 (in Chinese)
|
[11]
|
石长伟,刘志明.小样本评估方法[J].质量与可靠性,2006,(6):24-26 Shi C W, Liu X M. Evaluting with small data samples[J]. Quality and Reliability, 2006,(6):24-26 (in Chinese)
|
[12]
|
周利东,温玉全,王玮,等.引信可靠性小样本评估方法研究[J].北京理工大学学报,2010,30(7):761-764,770 Zhou L D, Wen Y Q, Wang W, et al. Method of fuse reliability evaluation based on small size of sample[J]. Transaction of Beijing Institute of Technology, 2010,30(7):761-764,770 (in Chinese)
|
[13]
|
Silva F S. The importance of compressive stresses on fatigue crack propagation rate[J]. International Journal of Fatigue, 2005,27(10-12):1441-1452
|
[14]
|
杨务滋,杨国庆,杨超,等.焊接中残余应力的大小与分布及减少措施[J].上海有色金属,2003,24(4):152-155,165 Yang W Z, Yang G Q, Yang C, et al. Magnitude and distribution of residual stress and methods for reducing them during welding[J]. Shanghai Nonferrous Metals, 2003,24(4):152-155,165 (in Chinese)
|
[15]
|
罗利伟,付小超.焊接残余应力的产生及其消除方法[J].山西建筑,2008,34(20):134-135 Luo L W, Fu X C. Generation and erase method of residual stress by welding[J]. Shanxi Architecture, 2008,34(20):134-135 (in Chinese)
|