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钢纤维混凝土压力与体积应变关系的分形计算方法
引用本文:龙源,万文乾,纪冲,周翔,唐献述.钢纤维混凝土压力与体积应变关系的分形计算方法[J].解放军理工大学学报,2007,8(2):152-155.
作者姓名:龙源  万文乾  纪冲  周翔  唐献述
作者单位:解放军理工大学工程兵工程学院,江苏南京210007
摘    要:为研究钢纤维混凝土在压力作用下与体积应变之间的关系,采用分形理论中的分形插值方法,对压力-应变关系进行了计算,导出了压力与体积应变关系曲线的迭代函数系统IFS(iterated function system).结合钢纤维混凝土材料的试验数据,计算了3种钢纤维混凝土材料与素混凝土的IFS的参数,得出了IFS的吸引子,即最终迭代得到的压力与体积应变关系曲线.试验中所有数据点均落在该曲线上,能够更为真实地反映压力与体积应变的关系.

关 键 词:分形  插值  迭代函数系统  钢纤维混凝土  钢纤维  素混凝土  土压力  体积应变  应变关系  分形理论  计算方法  fractal  geometry  strain  calculation  关系曲线  试验数据  迭代函数系统  吸引子  参数  纤维混凝土材料  结合  function  system  插值方法
文章编号:1009-3443(2007)02-0152-04
收稿时间:2006-11-16
修稿时间:2006年11月16

Methods of calculation pressure -volume strain relations with fractal geometry
LONG Yuan,WAN Wen-qian,JI Chong,ZHOU Xiang and TANG Xian-shu.Methods of calculation pressure -volume strain relations with fractal geometry[J].Journal of PLA University of Science and Technology(Natural Science Edition),2007,8(2):152-155.
Authors:LONG Yuan  WAN Wen-qian  JI Chong  ZHOU Xiang and TANG Xian-shu
Institution:Engineering Institute of Corps of Engineers,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Corps of Engineers,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Corps of Engineers,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Corps of Engineers,PLA Univ.of Sci.& Tech.,Nanjing 210007,China;Engineering Institute of Corps of Engineers,PLA Univ.of Sci.& Tech.,Nanjing 210007,China
Abstract:The present paper dealt with pressure-volume strain relations of SFRC(steel fiber reinforce concrete) materials under compaction.Fractal interpolation functions were used to calculate the data and then the iterated function system(IFS) of SFRC materials were presented.By using test data of three SFRC materials and concrete,parameters in iterated function system were calculated.Finally,the attractors(figure of final iterated function system) of iterated function system were presented.The attractors pass through all test data and can express relationship between pressure and volume strain more correctly.
Keywords:fractal  fractal interpolation method  iterated function system  SFRC
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