E. Boateng, C. K. Kankam, A. K. Danso, J. Ayarkwa, A. Acheampong
{"title":"Bond Characteristics of Deformed Steel Rebar in Palm Kernel Shell (PKS)-Rubberised Concrete Composite","authors":"E. Boateng, C. K. Kankam, A. K. Danso, J. Ayarkwa, A. Acheampong","doi":"10.32732/jcec.2023.12.2.69","DOIUrl":null,"url":null,"abstract":"The bond mechanism between concrete and steel is an important input parameter in the design of reinforced concrete elements. The reuse of waste materials as aggregates in concrete has led to the discovery of different types of concrete with unique bond characteristics. This paper reports on the bond characteristics of concrete produced from waste automobile tire chips and palm kernel shell aggregates and deformed mild steel rebars. A total of 125 concrete cubes (150 x 150 x 150mm) with metal inserts were cast from 21 concrete mixes with varied content of PKS and waste automobile tire aggregates. Pullout test was carried out to evaluate the strength of the bond mechanism between the steel and the various concrete mixes. The results revealed that bond strength decreased with increasing PKS and tire content. Moreover, increasing the bar size and embedment length reduced the bond stress. The ratio of the bond stress and compressive strength was found to be averagely 63.88%. Regarding the bond failure mechanism, it was identified that failure of the specimen occurred through either rebar pullout or tensile splitting of the concrete. Based on the results obtained, it was concluded that PKS and tire can be used as partial replacement of granite aggregates in concrete since the resultant concrete can develop adequate bond with steel bars in structural applications.","PeriodicalId":243788,"journal":{"name":"Journal of Civil Engineering and Construction","volume":"04 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-05-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Civil Engineering and Construction","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.32732/jcec.2023.12.2.69","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
The bond mechanism between concrete and steel is an important input parameter in the design of reinforced concrete elements. The reuse of waste materials as aggregates in concrete has led to the discovery of different types of concrete with unique bond characteristics. This paper reports on the bond characteristics of concrete produced from waste automobile tire chips and palm kernel shell aggregates and deformed mild steel rebars. A total of 125 concrete cubes (150 x 150 x 150mm) with metal inserts were cast from 21 concrete mixes with varied content of PKS and waste automobile tire aggregates. Pullout test was carried out to evaluate the strength of the bond mechanism between the steel and the various concrete mixes. The results revealed that bond strength decreased with increasing PKS and tire content. Moreover, increasing the bar size and embedment length reduced the bond stress. The ratio of the bond stress and compressive strength was found to be averagely 63.88%. Regarding the bond failure mechanism, it was identified that failure of the specimen occurred through either rebar pullout or tensile splitting of the concrete. Based on the results obtained, it was concluded that PKS and tire can be used as partial replacement of granite aggregates in concrete since the resultant concrete can develop adequate bond with steel bars in structural applications.
混凝土与钢的粘结机制是钢筋混凝土构件设计中的一个重要输入参数。废旧材料作为混凝土骨料的再利用,使人们发现了具有独特粘合特性的不同类型的混凝土。本文报道了用废旧汽车轮胎碎片、棕榈仁壳骨料与变形低碳钢钢筋配制混凝土的粘结性能。共有125个混凝土立方体(150 x 150 x 150mm),金属镶块由21种混凝土混合料浇铸而成,其中含有不同含量的PKS和废汽车轮胎骨料。进行了拉拔试验,以评价钢与各种混凝土配合比之间的粘结机制强度。结果表明,粘结强度随PKS和轮胎含量的增加而降低。增加钢筋尺寸和埋置长度可以减小粘结应力。粘结应力与抗压强度之比平均为63.88%。在粘结破坏机制方面,确定了试件的破坏是通过钢筋拔出或混凝土的拉伸分裂发生的。根据所得结果,认为PKS和轮胎可以部分替代混凝土中的花岗岩骨料,因为合成的混凝土在结构应用中可以与钢筋形成充分的粘结。