Title of article :
Early Age Shrinkage Behavior of Triple Blend Concrete
Author/Authors :
Kanthe, V.N Department of Civil Engineering - National Institute of Technology Raipur, Chhattisgarh, India , Deo, S.V Department of Civil Engineering - National Institute of Technology Raipur, Chhattisgarh, India , Murmu, M Department of Civil Engineering - National Institute of Technology Raipur, Chhattisgarh, India
Abstract :
The early age shrinkage is responsible for the early age cracking of concrete. It is very critical for durability of concrete. The change in volume of concrete due to evaporation of water or dehydration process is known as shrinkage. To reduce the early age shrinkage utilized the supplementary cementitious material (SCM) in concrete. In present research industrial and agricultural waste byproduct like fly ash (FA) and rice husk ash (RHA) along with cement were used as SCM. The triple blend concrete was prepared by the combination of 20%, 30% and 40% partial cement replacement with FA and RHA for 0.30, 0.35 and 0.40 water-cement ratio. The concrete samples were tested by advanced instrument as shrinkage cone meter were used for measure the shrinkage. The result shows that the early age shrinkage reduced with increasing the SCM content. The microstructure characteristics enhanced with raising the content of FA and RHA up to 30% replacement; that was due to the dense particle packing.
Farsi abstract :
انقباض زودرس موجب ترك زودرس بتن است. براي دوام بتن بسيار حياتي است. تغيير حجم بتن به دليل تبخير آب يا فرآيند كم آبي ، به عنوان كوچك شدن شناخته مي شود. براي كاهش انقباض بتن ، از مواد سيماني تكميلي (SCM) در بتن استفاده شده است. در پژوهش حاضر از فرآورده هاي زائد صنعتي و كشاورزي مانند خاكستر احتراق (FA) و خاكستر پوسته برنج (RHA) به همراه سيمان به عنوان SCM استفاده شده است. بتن مخلوط سه گانه با تركيب 20، 30٪ و 40٪ جايگزيني سيمان جزئي با FA و RHA براي 0/30، 0/35 و 0/40
نسبت سيمان آب تهيه گرديد. نمونه هاي بتني با استفاده از دستگاه پيشرفته مورد آزمايش قرار گرفتند. نتيجه نشان مي دهد كه با افزايش محتواي SCM
انقباض بيش از حد كاهش مي يابد. خصوصيات ريزساختار با افزايش محتواي FA و RHA تا 30٪ جايگزيني افزايش يافته است. اين به دليل بسته بندي ذرات متراكم بود.
Keywords :
Rice Husk Ash , Fly Ash , Concrete , Early Age Shrinkage
Journal title :
International Journal of Engineering