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Multi-hazard Approaches to Civil Infrastructure Engineering
Published 2016Full-text access
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International Congress on Polymers in Concrete (ICPIC 2018) Polymers for Resilient and Sustainable Concrete Infrastructure /
Published 2018Table of Contents: “…-- Mechanical Properties of Polymer Cement - Fiber Reinforced Concrete (PC-FRC) - Comparison Based on Experimental Studies -- Environmental Temperature and Humidity Adaptability of Polymer Modified Cement Mortar -- Innovative Polymer-Modified Pervious Concrete -- Combined Methods to Investigate the Crack-Bridging Ability of Waterproofing Membranes -- Polymer Concrete for A Modular Construction System - Investigation of Mechanical Properties and Bond Behaviour by Means of X-Ray CT -- Bending and Crack Characteristics of Polymer Lattice-Reinforced Mortar -- The Influence of Specimen Shape and Size on The PCC Compressive Strength Values -- Long-term Investigation on the Compressive Strength of Polymer Concrete with Fly Ash -- Overlays: A Great Use for Polymer Concrete -- PC with Superior Ductility using Mixture of Pristine and Functionalized Carbon Nanotubes -- Contribution of Concrete-Polymer Composites and Ancient Mortar Technology to Sustainable Construction -- Smart Monitoring of Movement and Internal Temperature Changes Within Polymer Modified Concrete Repair Patches -- PIC: Does It Have Potential? -- A Perspective on 40 Years of Polymers in Concrete History -- Development Length of Steel Reinforcement in Polymer Concrete for Bridge Deck Closure -- Developmentof Ultra Rapid-Hardening Epoxy Mortar for Railway Sleepers -- Contribution of C-PC to Resilience of Concrete Structures in Seismic Country Japan -- Precast Polymer Concrete Panels for Use on Bridges and Tunnels -- Part IV Polymer Fiber Concrete -- The Effect of Combinations of Treated Polypropylene Fibers on the Energy Absorption of Fiber Reinforced Shotcrete -- Bond Performance of Steel Reinforced Polymer (SRP) Subjected to Environmental Conditioning and Sustained Stress -- High-Strength Strain-Hardening Cement-Based Composites (HS-SHCC) Made with Different High-Performance Polymer Fibers -- Uniaxial Tensile Creep Behavior of Two Types of Polypropylene Fiber Reinforced Concrete -- Dynamic Behavior of Textile Reinforced Polymer Concrete Using Split Hopkinson Pressure Bar -- Steel-Fiber Self-Consolidating Rubberized Concrete Subjected to Impact Loading -- Effect of Fiber Combinations on the Engineering Properties of High Performance Fiber Reinforced Cement Composites -- Application of Fibre Reinforced Polymer Reinforced Concrete for Low Level Radioactive Waste Disposal -- Efficiency of Polymer Fibers in Lightweight Plaster -- Part V Polymer Concrete with Recycled Waste -- Properties of Ceramic Waste Powder Based Geopolymer Concrete -- Use of Recycled Polymers in Asphalt Concrete for Infrastructural Applications -- Influence of Method of Preparation of PC Mortar with Waste Perlite Powder on Its Rheological Properties -- Design and Manufacture of a Sustainable Lightweight Prefabricated Material Based on Gypsum Mortar with Semi-Rigid Polyurethane Foam Waste -- Cement Mortars Lightened with Rigid Polyurethane Foam Waste Applied on Site. …”
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