武汉轻工大学学报
武漢輕工大學學報
무한경공대학학보
Journal of Wuhan Polytechnic University
2015年
2期
98-102
,共5页
王展展%刘肖凡%郭巍%白晓辉
王展展%劉肖凡%郭巍%白曉輝
왕전전%류초범%곽외%백효휘
透水混凝土%孔隙率%三维建模%数值模拟
透水混凝土%孔隙率%三維建模%數值模擬
투수혼응토%공극솔%삼유건모%수치모의
porous concrete%porosity%3D modeling%numerical simulation
为了能够利用数值分析方法研究透水混凝土的物理、力学性能,基于蒙特卡罗法随机分布原理,采用APDL语言结合有限元软件建立了孔隙率分别为5%、7.5%、10%和12.5%的4组透水混凝土试块三维结构模型,孔隙随机分布,计算分析各组试块在不同荷载作用下的受力情况。结果表明:建立的三维模型孔隙分布特征接近真实的透水混凝土结构;受力分析显示:透水混凝土的强度值随着孔隙率的增大而降低;剖面云图显示孔隙率越大,试块内部的应力集中现象也愈加明显,在相同位移荷载作用下,孔隙率高的试块在内部孔隙附近最先出现最大应力,并随之破坏,受力不再增加,抗压强度低。
為瞭能夠利用數值分析方法研究透水混凝土的物理、力學性能,基于矇特卡囉法隨機分佈原理,採用APDL語言結閤有限元軟件建立瞭孔隙率分彆為5%、7.5%、10%和12.5%的4組透水混凝土試塊三維結構模型,孔隙隨機分佈,計算分析各組試塊在不同荷載作用下的受力情況。結果錶明:建立的三維模型孔隙分佈特徵接近真實的透水混凝土結構;受力分析顯示:透水混凝土的彊度值隨著孔隙率的增大而降低;剖麵雲圖顯示孔隙率越大,試塊內部的應力集中現象也愈加明顯,在相同位移荷載作用下,孔隙率高的試塊在內部孔隙附近最先齣現最大應力,併隨之破壞,受力不再增加,抗壓彊度低。
위료능구이용수치분석방법연구투수혼응토적물리、역학성능,기우몽특잡라법수궤분포원리,채용APDL어언결합유한원연건건립료공극솔분별위5%、7.5%、10%화12.5%적4조투수혼응토시괴삼유결구모형,공극수궤분포,계산분석각조시괴재불동하재작용하적수력정황。결과표명:건립적삼유모형공극분포특정접근진실적투수혼응토결구;수력분석현시:투수혼응토적강도치수착공극솔적증대이강저;부면운도현시공극솔월대,시괴내부적응력집중현상야유가명현,재상동위이하재작용하,공극솔고적시괴재내부공극부근최선출현최대응력,병수지파배,수력불재증가,항압강도저。
In order to be able to use the numerical analysis method to study the physical and mechanical properties of permeable concrete, based on monte carlo method random distribution principle, using APDL language combined with finite element software established porosity were 5%, 7.5%, 10% and 5% respectively the four groups of permeable concrete block 3D structure model , random pore distribution, calculation and analysis each block stress distribution under different load.The results show that the established 3D model of pore distribution close to the re-al permeable concrete structure ;the strength of the force analysis shows that the strength of the permeable concrete is decreased with the increase of porosity;profile cloud images show that the greater the block internal stress con-centration phenomenon is more obvious under the big porosity.In addition, under the same displacement load, the first maximum stress appear near the inner pore of high porosity block, and then destruction and can't bear the load, the compressive strength is low.