The Compaction of Concrete Using Dust Stone Substitute Sand
Abstract
Keywords
Full Text:
PDF 63-71References
ASTM C33 / C33M – 18. Standard Specification for Concrete Aggregates.
ASTM C39 / C39M – 18. Standard Test Method for Compressive Strength of Cylindrical Concrete Specimens.
ASTM D1557 – 07. Standard Test Methods for Laboratory Compaction Characteristics of Soil Using Modified Effort (56,000 ft-lbf/ft3 (2,700 kN-m/m3)).
ASTM D6913 / D6913M – 17. Standard Test Methods for Particle-Size Distribution (Gradation) of Soils Using Sieve Analysis.
C. Chhorn., S. Jae Hong and S. Woo Lee. (2017). A study on performance of roller-compacted concrete for pavement. Construction and Building Materials, 2017 (Vol.153), 535-543.
J.L. Larson, Roller-Compacted Concrete Pavement Design Practices for Intermodal Freight Terminals at the Port of Tacoma. In: Presented at Facing the Challenge. The intermodal Terminal of the Future, New Orleans, Louisiana, 1986. 22–29.
K. Surachai. (2013). The Investigation of Compressive Strength of Concrete in Case Study using Granite Dust from Thai Crushing Plant as Replacement for Sand. Princess of Naradhiwas University Journal, 2013 (Vol.5), 44-53.
N. Phaopong and K. Prachoom (2005). Substitution of Sand to Mineral Dust in Concrete. Research Information Repository Journal, Bangkok. 2005.
S. Nippon. (1998). Compressive Strength of Concrete Composed of Crushed Dust Instead of Sand. The Journal Engineering khonkaen University, 1998 (Vol.25), 1-5.
Refbacks
- There are currently no refbacks.
Copyright (c) 2019 The Journal of Industrial Technology Suan Sunandha Rajabhat University
Faculty of Industrial Technology Suan Sunandha Rajabhat University 1 U-tongnok Dusit Bangkok 10300 Tel. 66 2160 1438#22 E-mail. fit@ssru.ac.th