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   Mechanical properties of self-compacting geopolymer concrete containing spent garnet as replacement for fine aggregate  
   
نویسنده muttashar h.l. ,hussin m.w. ,ariffin m.a.m. ,mirza j. ,hasanah n. ,shettima a.u.
منبع jurnal teknologi - 2017 - دوره : 79 - شماره : 3 - صفحه:23 -29
چکیده    Millions of tons of spent garnet,a by-product of surface treatment operations,are disposed of in landfills,oceans,rivers,and quarries,among others every year,thus it causes environmental problems. the main objective of this study is to evaluate spent garnet as a sand replacement in concrete prepared with ground granulated blast furnace slag (ggbs)-based self-compacting geopolymer concrete (scgc). concrete mixtures containing 0%,25%,50%,75% and 100% spent garnet as a replacement for river sand were prepared with a constant liquid/binder (l/b) mass ratio equal to 0.4. compressive,flexural and splitting tensile strengths as well as workability tests (slump,l-box,u-box and t50) were conducted on concrete containing spent garnet. as per specification and guidelines for self-compacting concrete (efnarc) standard,the test results showed that the concrete’s workability increased with the increase of spent garnet,while all the other strength values were consistently lower than conventional concrete (scgc) at all stages of replacement. the results recommended that spent garnet should be used in concrete as a sand replacement up to 25% to reduce environmental problems,costs and the depletion of natural resources. © 2017 penerbit utm press. all rights reserved.
کلیدواژه Garnet; Geopolymer concrete; Self-compacting geopolymer concrete; Spent garnet
آدرس department of structure and materials,faculty of civil engineering & utm construction research centre universiti teknologi malaysia,81310 utm johor bahru,johor, Malaysia, department of structure and materials,faculty of civil engineering & utm construction research centre universiti teknologi malaysia,81310 utm johor bahru,johor, Malaysia, forenlic engineering center,faculty of civil engineering,universiti teknologi malaysia,81310 utm johor bahru,johor, Malaysia, department of materials science,research institute of hydro-québec,1740 lionel boulet,varennes,québec, Canada, department of structure and materials,faculty of civil engineering & utm construction research centre universiti teknologi malaysia,81310 utm johor bahru,johor, Malaysia, department of civil engineering,federal polytechnic damauruyobe state, Nigeria
 
     
   
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