The age-old question: When it comes to blast-resistant buildings, should you go with concrete or steel? Luckily that’s what our recent whitepaper is all about! >>Steel Sandwich Panels: Light, cost-effective for lower blast rates, but not ideal for high blast rates. Penetrations can be installed after placement which makes it more flexible. >>Precast Concrete: Best for higher blast rates with better economic viability and a lower carbon footprint at higher pressures but penetrations need to be cut before installation. >>In-Situ Concrete: Strong and reliable, but labor-intensive and not the easiest to install in all climates. The verdict? For lower blast pressures, steel sandwich panels are your best bet. But as the pressure cranks up, precast concrete becomes more reliable. Curious about which material suits your project? Check out the detailed comparison in the paper, and let's talk about building safer, smarter structures together! Read the full paper and join the conversation here! https://lnkd.in/edxA7CxJ #Hydrogen #Onshore #InterDam #YourShieldInTheField #Concrete #SandwichPanel #Precast #steelVSConcrete
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Fibre Concrete Solutions offer leading solutions and designs that allow for joint free large panel industrial slabs up to 35m x 35m. Eliminating the sawn induced joints provides much more flexibility with racking systems and useability of the building, reduces maintenance, and can reduce the slab depth leading to savings in cost and CO2. Of course, there are also the additional logistical, labour saving and time saving benefits associated with using a fibre reinforced concrete solution. #fibrereinforcedconcrete #warehouses #concreteflooring #flooringcontractors #structuralengineers #structuralengineering #concretefloors #industrialflooring #readymixconcrete #civilengineering #concreteconstruction #fibreconcrete #steelfibres #concretejoints #construction #warehouseconstruction
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As you kick off your 2025 projects, choosing the right materials is key to maximizing your ROI. 🔗 Our blog explores the pros and cons of steel vs. concrete, from upfront costs to long-term savings. Start the year strong with insights that can make all the difference in your next build! Discover why cold-formed steel is increasingly the go-to choice for builders focused on efficiency and value. Read our blog ➡️ https://buff.ly/4fJVgJn #ISF #InternationalSteelFraming #KeyTruss
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The concrete mix development and materials evaluation for our ready-mix concrete customers. The compositions of the concrete mix involve 66% replacement of cement with Ground Granulated Blast Furnace Slag (GGBS), whereas another mix incorporates 25% replacement of cement with Class F Fly Ash. The laboratory test runs were conducted in order to emphasize the importance of mix design development and materials evaluation in helping concrete manufacturers gain a comprehensive understanding of the fundamentals of concrete technology. At Ceracre, the team makes efforts to elevate the concrete consulting service to customers by offering a variety of tests and analyses of raw materials and concrete, assisting them with optimizing concrete mix designs, designing and optimizing manufacturing plants, providing comprehensive training programs, and reducing the carbon footprint of concrete significantly. #concrete #concretedesign #design #innovation #concreteinnovation #buildingmaterials #construction #constructionindustry #builtenvironment #sustainability #lowcarbonconcrete #greenbuilding #buildingprogress #sustainableconstruction #responsiblemanufacturing
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PS=Ø® is featured in the Tech Spotlight of this month’s issue of Concrete International (CI), American Concrete Institute magazine. The article titled "Designing for Construction Productivity and Safety—In Practice, New applications for PS=Ø® couplers,” discusses how our system is being used to eliminate pour strips and mitigate restraint to shortening (RTS) in projects all over North America. Several post-tensioned (PT) and reinforced concrete applications are highlighted, and of particular interest are the applications showing how (PT) stressing can be achieved using temporary stressing strips. PS=Ø® couplers are easy to implement and cost-effective, resulting in higher-quality, more durable, and longer-lasting concrete structures that enables faster construction—truly a win-win for the concrete industry. #concreteconstruction #eliminatepourstrips
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Understanding Steam Curing in Concrete Construction In the construction industry, achieving optimal concrete strength and durability is crucial. One effective method to accelerate this process is steam curing. Steam curing involves exposing concrete to steam at elevated temperatures, which speeds up the hydration of cement. This method is especially beneficial in precast concrete production, where time is critical, and early strength gain is essential. Key Benefits: Accelerated Strength Development: Helps concrete reach its designed strength faster, especially in cold weather. Improved Durability: Ensures better hydration, leading to enhanced long-term durability. Reduced Construction Time: Ideal for fast-track projects, as it shortens the time needed to demold and handle concrete elements. However, careful control of temperature and humidity is essential to avoid potential issues like thermal cracking. Proper planning and monitoring ensure steam curing delivers its full benefits. How have you incorporated steam curing in your projects? Let’s discuss the best practices and lessons learned! #ConcreteTechnology #SteamCuring #ConstructionInnovation #PrecastConcrete #CivilEngineering
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IS CARBONATION IN CONCRETE ALWAYS BAD? Not always ... We are used to hearing that concrete carbonation is very bad as it causes concrete cancer and deterioration. Yes, this is very true! But … #Concrete #carbonation occurs when using concrete mixes with higher levels of permeable voids, a higher shrinkage rate, a poorly designed #structure, and a lack of #ConcreteCuring. However, this applies to concrete elements reinforced with traditional black steel. We also need to know that carbonation increases the concrete compressive and tensile strengths thanks to the carbon atoms in the calcium carbonate. It also changes the concrete structure to close the pores making the concrete denser and less permeable. Read Full Article >>> https://lnkd.in/gs4Xk_gs Therefore, what structure are you dealing with? What do you want to achieve? Do you require concrete optimisation, assessment and repair methods, or a technical presentation to your team? Please get in touch. info@balehconsulting.com.au 02 8880 6750 Baleh Consulting - Below Ground Waterproofing #concretedurability #waterproofing #facade #engineering #
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Self-Compacting Concrete (SCC) Self-compacting concrete (SCC) is a specialized type of concrete that flows under its own weight and does not require mechanical vibration for placement and compaction. This characteristic makes it particularly advantageous in complex construction scenarios where traditional methods of compaction may be challenging. SCC is distinguished from conventional concrete by three main characteristics: excellent flowability, resistance to segregation, and minimal blocking tendency. These features ensure that the concrete maintains a uniform mix throughout the processes of transportation, placement, and curing. The workability of SCC is primarily achieved through the use of superplasticizers and viscosity-modifying agents. By utilizing lower water content and a higher proportion of fine materials, SCC significantly reduces the risk of bleeding— a common issue in traditional concrete mixes. Additionally, its superior rheological properties contribute to fewer cracks and greater strength compared to conventional concrete. SCC is ideal for applications involving complex reinforcements, such as bridges, tunnels, earth retention walls, and various foundation types including raft and pile foundations. The benefits of using self-compacting concrete include: 1. Reduced construction time and labor costs. 2. Lower noise pollution during placement. 3. Enhanced filling capabilities in highly intricate structures. 4. Improved structural durability. 5. Increased overall strength of the structure. Overall, SCC represents a significant advancement in concrete technology, providing a reliable solution for modern construction challenges. #goldennexusllp #goldendrop #constructionmaterial #selfcompactingconcrete #SCC #civilengineering
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How To Calculate The Water-Cement Ratio Explore the vital role of quality raw materials and precise proportions in construction on our site. Learn about the critical importance of the water-to-cement ratio in concrete mixes for building lasting structures. #cementratio #cementcalculation #cementwaterratio https://lnkd.in/dvNvVFx9
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Precisely Monitor Concrete Temperature with SmartRock® 💪 Maintaining the appropriate temperature throughout the curing process is essential for properly hydrating the concrete and ensuring optimal strength development in hot weather concreting. ☀️ There may be serious consequences that can be irreparable under drastic temperatures. That's why concrete temperature monitoring is crucial in construction projects as it directly influences the quality, strength, and durability of the final structure! Learn more about you can safeguard the concrete’s structural integrity and performance with SmartRock 👇 https://hubs.ly/Q02C4N1D0 #Solutions #Concrete #TemperatureMonitoring
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Steel Fibers: Enhancing Concrete Strength and Durability Steel fibers with hooked ends revolutionize concrete by: ✅ Improving Durability: Interrupting micro-cracks and preventing their growth. ✅ Boosting Strength: Adding residual load-bearing capacity even after cracking. ✅ Enhancing Toughness: Essential in high-performance applications like Ultra-High-Performance Concrete (UHPC). Ideal for industrial floors, precast elements, and infrastructure projects, steel fibers empower concrete to withstand dynamic loads and environmental stressors, making it a top choice for resilient construction. 🔗 Let’s build stronger, longer-lasting structures! Share your thoughts or experiences with steel fiber-reinforced concrete. #ConcreteInnovation #SteelFibers #StructuralIntegrity #UHPC #ConstructionTechnology
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