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计及湿热效应的层板复合材料疲劳寿命的试验及数据处理方法 被引量:2

EXPERIMENTAL AND DATA PROCESSING METHOD FOR FATIGUE LIFE OF COMPOSITE LAMINATES UNDER HYDROTHERMAL CONDITION
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摘要 湿热环境严重影响复合材料的物理及力学性能 ,为研究湿热效应对疲劳寿命的影响 ,建立考虑湿热影响的复合材料疲劳性能试验方法。文中以剩余强度衰减模型为基础 ,对考虑湿热效应的层板复合材料的拉—拉疲劳性能试验的全过程进行介绍 ,阐述试件准备过程、试验中测试的项目 ,详细介绍基于剩余强度衰减模型中的参数的确定以及试验中试件个数确定的计算方法 ,并且指出试验中一些必要的注意事项 ,对试验中的有关数据处理也给出相应的理论基础。 Humidity and temperature greatly affect the physical and mechanical performances of composite materials. For studying hydrothermal effects on composite material fatigue life,establishes an experimental method of fatigue properties under the hydrothermal condition are estabished. This method, based on the model of residual strength degradation, introduces the whole process of tensile-tensile fatigue tests in detail in certain hydrothermal condition, and expatiates how to prepare the specimens, the testing contents of experimentation. In addition, author brings up a method of ascertaining unknown parameters in the model and the quantity of specimens in the test. Announcements in the experiment are mentioned at the same time. Theoretical basis of data processing in the tests were indicated. On the bases of this experimental method, the prediction and analysis of fatigue life can be convenience.
出处 《机械强度》 CAS CSCD 北大核心 2004年第z1期124-126,共3页 Journal of Mechanical Strength
基金 金属腐蚀与防护国家重点实验室开放基金资助项目~~
关键词 层板复合材料 湿热效应 疲劳寿命预测 剩余强度 疲劳试验 Composite laminates Hydrothermal effects Fatigue life prediction Residual strength Fatigue test
作者简介 林文强,男,1961年4月生,浙江温岭人,汉族.副教授,研究方向为机械设计与分析、疲劳断裂.Correspneing author: LIN WenQiang , E-mail: lgh _ sum@ sohu. com, Tel: + 86-24-83678622, Fax: + 86-24-23906969
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参考文献5

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  • 2程起有,童小燕,郑翔,周俊,姚磊江,李斌.平纹编织C/SiC复合材料高温疲劳特性的试验研究[J].机械强度,2010,32(5):819-823. 被引量:3
  • 3吕小军,张琦,项民,刁鹏,栗晓飞,谢国君.环境因素对复合材料力学性能的影响[J].中国腐蚀与防护学报,2007,27(2):97-100. 被引量:16
  • 4沈真.复合材料结构设计手册[M].北京:航空工业出版社,2004:312-367.
  • 5SHIVA E, FATHOLLAH T B, FARID T. Long-term hy- grothermal response of perforated GFRP plates with/without application of constant external loadingrJ~. Polymer Compos- ites, 2012, 33(4)~ 467-475.
  • 6VALERIE B, PAUL G, ERIK M. Carbon-fiber-reinforced YMAS glass-ceramic-matrix composites--IV. Thermal resid- ual stresses and fiber/matrix interfaces[J]. Composites Sci- ence and Technology, 1998, 58(3 4): 409-418.
  • 7IRISARRI F X, LAURIN F, CARRERE N. Progressive damage and failure of mechanically fastened joints in CFRP laminates--Part II: Failure prediction of an industrial june- tion[J]. Composite Structures, 2012, 94(8): 2278-2284.
  • 8ERMIAS G K, GIOVANNI B, ALEM T B. Bending fatigue behavior of twill fabric E-glass/epoxy composite[J]. Com- posite Structures, 2014, 111(11): 169-178.
  • 9DAGGUMAT S, BAERE I D, PAEPEGEM W V. Fatigue and post-fatigue stress-strain analysis of a 5-harness satin weave carbon fibre reinforced composite[J]. Composites Sci- ence and Technology, 2013, 74(4): 20-27.
  • 10KOIMTZOGLOU C, KOSTOPOULOS V, GALIOTIS C. Micromechanics of reinforcement and damage initiation in car- bon fibre/epoxy composites under fatigue loadingFJ~. Com- posites Part A: Applied Science and Manufacturing, 2001, 32 (3-4) : 457-471.

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