{"title":"A model for ageing visco-elastic tension softening materials","authors":"S. Sathikumar, B. L. Karihaloo, S. G. Reid","doi":"10.1002/(SICI)1099-1484(199801)3:1<27::AID-CFM39>3.0.CO;2-%23","DOIUrl":null,"url":null,"abstract":"<p>An analytical constitutive model similar to the Kelvin chain rheological model associated with solidification theory, is developed for time-dependent tension softening of ageing materials like concrete. The stiffness of spring elements is allowed to vary with time via a function of load bearing volume fraction as in the solidification theory. The development of cracks reduces the load bearing volume fraction with time, so that the overall behaviour of springs is a softening type. A reduction in the load bearing volume with time ensures a gradual reduction in the spring stiffness without violating prescribed retardation times. In some circumstances, depending on the boundary conditions, the stress in a structure can remain unchanged over a period of time. During this period, any cracks in the structure will continue to experience an increased opening due to creep. In other parts of the structure, again depending on the boundary conditions, the crack opening displacements may remain unchanged over a period of time, so that the stress will relax over these parts of the structure. In a large concrete structure, creep and relaxation may be taking place simultaneously in different parts or in the same part but at different times. There is thus a need for a visco-elastic tension softening model for ageing concrete that will cater for both creep and relaxation. © 1998 John Wiley & Sons, Ltd.</p>","PeriodicalId":100899,"journal":{"name":"Mechanics of Cohesive-frictional Materials","volume":"3 1","pages":"27-39"},"PeriodicalIF":0.0000,"publicationDate":"1999-05-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Mechanics of Cohesive-frictional Materials","FirstCategoryId":"1085","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1002/%28SICI%291099-1484%28199801%293%3A1%3C27%3A%3AAID-CFM39%3E3.0.CO%3B2-%23","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
An analytical constitutive model similar to the Kelvin chain rheological model associated with solidification theory, is developed for time-dependent tension softening of ageing materials like concrete. The stiffness of spring elements is allowed to vary with time via a function of load bearing volume fraction as in the solidification theory. The development of cracks reduces the load bearing volume fraction with time, so that the overall behaviour of springs is a softening type. A reduction in the load bearing volume with time ensures a gradual reduction in the spring stiffness without violating prescribed retardation times. In some circumstances, depending on the boundary conditions, the stress in a structure can remain unchanged over a period of time. During this period, any cracks in the structure will continue to experience an increased opening due to creep. In other parts of the structure, again depending on the boundary conditions, the crack opening displacements may remain unchanged over a period of time, so that the stress will relax over these parts of the structure. In a large concrete structure, creep and relaxation may be taking place simultaneously in different parts or in the same part but at different times. There is thus a need for a visco-elastic tension softening model for ageing concrete that will cater for both creep and relaxation. © 1998 John Wiley & Sons, Ltd.
粘弹性拉伸软化材料老化模型
针对混凝土等老化材料的时效拉伸软化问题,建立了一种与凝固理论相关的开尔文链流变模型类似的解析本构模型。在凝固理论中,弹簧元件的刚度通过承载体积分数的函数随时间变化。随着时间的推移,裂纹的发展降低了承载体积分数,因此弹簧的整体行为是一种软化类型。随着时间的推移,承载体积的减少确保了弹簧刚度的逐渐减少,而不会违反规定的延迟时间。在某些情况下,取决于边界条件,结构中的应力可以在一段时间内保持不变。在此期间,由于蠕变,结构中的任何裂缝将继续经历扩大的开放。在结构的其他部分,同样取决于边界条件,裂缝张开位移可能在一段时间内保持不变,因此应力将在结构的这些部分上松弛。在大型混凝土结构中,徐变和松弛可能在不同部位同时发生,也可能在同一部位不同时间发生。因此,需要一种粘弹性拉伸软化模型,以适应老化混凝土的徐变和松弛。©1998 John Wiley &儿子,有限公司
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