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- Title
Effect of Industrial Waste on Strength Properties of Concrete.
- Authors
Kavyateja, Bode Venkata; Reddy, Panga Narasimha
- Abstract
Industrial wastes generally pumped into water bodies and soil that would pollute the atmosphere. As a control measure, industrial wastes products utilized as waste building materials. In the present research, waste products from various industries like illuminate sludge and glass bottle powder used in different dosages as a replacement for fine aggregate and metakaolin used as a cement replacement. Split tensile strength and compressive strength of the concrete samples examined for M30 grade. Fine aggregate is substituted by glass bottle powder (i.e. 10 to 40%) and illuminate sludge (i.e. 10 to 30%). Metakaolin substituted for cement replacement (i.e. 4 to 12%). Glass bottle does not pollute the atmosphere, but the disposal of waste glass results wastage of land. Thereby glass bottle powder can be utilized as a cement replacement in the construction industry. Then the metakaolin and illuminate sludge are the waste products from the titanium product. The experiment performed to assess the strength properties by incorporating various industrial wastes in different dosages. Physical tests of all three products have carried out according to the code requirements. Three specimens have been tested for each industrial waste products ratio to examine the tensile and compressive strength of concrete at 7th day, 14th day and 28th day and eventually to cure to achieve the optimum strength of concrete. Addition of these industrial wastes into the concrete showed an outstanding improvement in modulus of rupture, split tensile strength and compressive strength at an early and later ages.
- Subjects
INDUSTRIAL wastes; WASTE products as building materials; POWDERED glass; GLASS waste; GLASS bottles; CONSTRUCTION materials; CRUMB rubber; WASTE products
- Publication
Annales de Chimie Science des Matériaux, 2020, Vol 44, Issue 5, p353
- ISSN
0151-9107
- Publication type
Article
- DOI
10.18280/acsm.440508