广西大学学报(自然科学版)
廣西大學學報(自然科學版)
엄서대학학보(자연과학판)
JOURNAL OF GUANGXI UNIVERSITY (NATURAL SCIENCE EDITION)
2015年
4期
908-914
,共7页
刘源%马瑞洁%杨建森%崔莹%杨福强
劉源%馬瑞潔%楊建森%崔瑩%楊福彊
류원%마서길%양건삼%최형%양복강
硅粉混凝土%收缩%收缩率%收缩模型%极差分析%方差分析
硅粉混凝土%收縮%收縮率%收縮模型%極差分析%方差分析
규분혼응토%수축%수축솔%수축모형%겁차분석%방차분석
silica fume concrete%shrinkage%shrinkage ratio%shrinkage model%range analysis%va-
为了研究硅粉混凝土的收缩性能,以收缩率为表征指标,采用正交试验研究了水胶比、砂率和硅粉掺量对硅粉混凝土收缩率的影响规律,通过对数据拟合和回归分析建立了硅粉混凝土的收缩模型。试验结果表明:水胶比、砂率及硅粉掺量对硅粉混凝土收缩的影响比较显著。水胶比在0.35~0.45范围内取值越大,硅粉混凝土收缩率越小;硅粉的掺入使硅粉混凝土的收缩增大,硅粉掺量在5%~10%时收缩率增长较快,而硅粉掺量大于10%以后的收缩趋于平缓。当硅粉掺量为5%,水胶比为0.45,砂率为38%时,硅粉混凝土的收缩变形最小;硅粉混凝土的收缩模型为ε= aln( t)+b ,在显著性水平α=0.01下其相关关系显著,应用该模型可以预测和设计硅粉混凝土的收缩性能。
為瞭研究硅粉混凝土的收縮性能,以收縮率為錶徵指標,採用正交試驗研究瞭水膠比、砂率和硅粉摻量對硅粉混凝土收縮率的影響規律,通過對數據擬閤和迴歸分析建立瞭硅粉混凝土的收縮模型。試驗結果錶明:水膠比、砂率及硅粉摻量對硅粉混凝土收縮的影響比較顯著。水膠比在0.35~0.45範圍內取值越大,硅粉混凝土收縮率越小;硅粉的摻入使硅粉混凝土的收縮增大,硅粉摻量在5%~10%時收縮率增長較快,而硅粉摻量大于10%以後的收縮趨于平緩。噹硅粉摻量為5%,水膠比為0.45,砂率為38%時,硅粉混凝土的收縮變形最小;硅粉混凝土的收縮模型為ε= aln( t)+b ,在顯著性水平α=0.01下其相關關繫顯著,應用該模型可以預測和設計硅粉混凝土的收縮性能。
위료연구규분혼응토적수축성능,이수축솔위표정지표,채용정교시험연구료수효비、사솔화규분참량대규분혼응토수축솔적영향규률,통과대수거의합화회귀분석건립료규분혼응토적수축모형。시험결과표명:수효비、사솔급규분참량대규분혼응토수축적영향비교현저。수효비재0.35~0.45범위내취치월대,규분혼응토수축솔월소;규분적참입사규분혼응토적수축증대,규분참량재5%~10%시수축솔증장교쾌,이규분참량대우10%이후적수축추우평완。당규분참량위5%,수효비위0.45,사솔위38%시,규분혼응토적수축변형최소;규분혼응토적수축모형위ε= aln( t)+b ,재현저성수평α=0.01하기상관관계현저,응용해모형가이예측화설계규분혼응토적수축성능。
In order to investigate the shrinkage performance of silica fume concrete, an orthogonal experiment was adopted to study the influence of water-cement ratio, sand ratio and silica fume dos-age on the shrinkage performance using the shrinkage ratio as the index. On the basis of the work, test data regression analysis was carried out to establish a shrinkage model of silica fume concrete. The results show that the water-cement ratio, sand ratio and silica fume dosage have significant influ-ence on the shrinkage of concrete. The shrinkage ratio decreases with the increase of water-cement ratio from 0. 35 to 0. 45. With the increase of sand ratio, the shrinkage ratio decreases and then de-clines, and it reaches the minimum when the sand ratio is 38%. Silica fume leads to the increase of concrete shrinkage, and the shrinkage ratio increases faster when the silica fume dosage is between 5% to 10%. The ratio increases slower after the silica fume dosage is more than 10%. The shrink-age ratio of silica fume concrete is the minimum when the concrete is made with 0 . 45 of water-ce-ment ratio, 38% of sand ratio and 5% of silica fume dosage. F test further shows that the shrinkage model of silica fume concreteε=aln(t) +b is significant when the significant levelαis 0. 01. The model can be used to predict or design shrinkage performance of silica fume concrete.riance analysis.