MyJournals Home  

RSS FeedsMaterials, Vol. 12, Pages 634: The Influence of Granite Cutting Waste on The Properties of Ultra-High Performance Concrete (Materials)

 
 

20 february 2019 16:00:20

 
Materials, Vol. 12, Pages 634: The Influence of Granite Cutting Waste on The Properties of Ultra-High Performance Concrete (Materials)
 


This study analyzes the effect of using waste by-products generated in the process of granite cutting as part of the granular structure of Ultra High Performance Concrete (UHPC). The manufactured concrete has a compressive strength greater than 115 MPa. This study substitutes 35%, 70% and 100% of the volume of micronized quartz powder (<40 μm) with granite cutting waste. This is an innovative study where the feasibility of using waste from granite quarries as a replacement for micronized quartz in UHPC has been analyzed. The results show an improvement in the workability and compressive strength of UHPC, for all substitution ratios. The flexural strength and tensile strength increase when the substitution ratio is 35%, and even the values obtained for 100% substitution are acceptable. In view of the results obtained in this study, granite cutting waste, instead of the micronized quartz powder usually used, is a viable alternative for the manufacture of expectedly more sustainable UHPC.


 
46 viewsCategory: Chemistry, Physics
 
Materials, Vol. 12, Pages 631: A Computational Thermodynamics-Assisted Development of Sn-Bi-In-Ga Quaternary Alloys as Low-Temperature Pb-Free Solders (Materials)
Materials, Vol. 12, Pages 633: A Double Barrier Technique with Hydrotalcites for Pb Immobilisation from Electric Arc Furnace Dust (Materials)
 
 
blog comments powered by Disqus


MyJournals.org
The latest issues of all your favorite science journals on one page

Username:
Password:

Register | Retrieve

Search:

Physics


Copyright © 2008 - 2024 Indigonet Services B.V.. Contact: Tim Hulsen. Read here our privacy notice.
Other websites of Indigonet Services B.V.: Nieuws Vacatures News Tweets Nachrichten