GCP R&D Delves into Rheology Control for Shotcrete
GCP Applied Technologies' advanced TYTRO® Shotcrete System is specially formulated to meet job requirements in underground tunnel construction, among other demanding shotcrete spray applications. GCP's Research & Development team won an award from the American Shotcrete Association (ASA) at the World of Concrete 2016 for their revolutionary research into rheology control, as a replacement for silica fume.
For more background on this research into cutting-edge shotcrete admixtures, read GCP's R&D studies below…
GCP's award-winning research into rheology control for shotcrete
EVALUATION OF THE USE OF COLLOIDAL SILICA AS A SILICA FUME REPLACEMENT IN WET-MIX SHOTCRETE
The objective of this project was to evaluate the suitability of colloidal silica as a replacement for silica fume in wet-mix shotcrete.
Goin’ Underground: Enhancement of Shotcrete Performance with a Pozzolanic-Based Rheology Control Agent
In underground applications such as mining and tunneling, shotcrete is widely used for structural support of permanent openings, linings, and rock stabilization.
Effect of Pozzolanic-Based Rheology Control Agent on Wet-Mix Shotcrete Performance
The purpose of this article is to present the performance evaluation of wet-mix shotcrete containing a pozzolanic-based rheology control (RC) agent as a replacement for silica fume (SF).
A Case Study on the Impact of Pozzolanic-Based Rheology Control Agent on Wet-Mix Shotcrete Performance in Underground Applications
This paper presents the results of a case study conducted with a major mining operation to assess the impact of pozzolanic-based rheology control agent on the performance of a wet-mix having a specified mix design.
THE USE OF POZZOLANIC-BASED RHEOLOGY CONTROL AGENT IN WET-MIX SHOTCRETE
The objective of this paper is to present the performance evaluation of wet-mix shotcrete incorporating a pozzolanic-based rheology control agent which is a liquid-based product that contains nano-scaled colloidal silica particles with high pozzolanic reactivity.
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