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Construction Tech Review | Thursday, August 12, 2021
In the discipline of civil engineering, new construction materials are being developed. Self-healing concrete is one of the most innovative building materials currently being studied for bridge design.
FREMONT, CA: The rapid development of new technologies and materials has resulted in significant modifications in bridge design. Engineers used to be unable to offer accurate models or extensive analyses of bridges due to a lack of tools and software. However, with today's technological advancements, bridge engineers now have access to new innovative building processes, materials, tools, and software.Top new advanced bridge design and construction technologies include:
Innovative New Construction Materials for Bridges
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In the discipline of civil engineering, new construction materials are being developed. Self-healing concrete is one of the most innovative building materials currently being studied for bridge design. Concrete is prone to cracking during its life cycle and as a result of the various loads that occur in bridges. On the other hand, new concrete combinations, including limestone-producing bacteria, are being developed to fill fractures as they form. This new cutting-edge technology can help to avoid the costly consequences of not filling or repairing concrete fractures.
Natural calamities, such as earthquakes and tornadoes, are also crucial considerations when engineering bridges. The damage caused by these seismic and wind stresses causes irreversible damage to the various structural elements of bridges, necessitating highly costly repairs in the future. New construction materials, alternately, are now being employed to avoid such problems. Superelasticreinforcement is one of these materials. This material, also known as a Shape Memory Alloy (SMA), is used in reinforced concrete to replace the original steel reinforcement. When concrete steel reinforcement is subjected to forces that cause it to bend beyond its yield point, it becomes permanently distorted and does not return to its previous shape. Superelastic SMAsrevert to their original shape after being subjected to severe pressures.
Smart Construction
Digital technology is rapidly changing and influencing the construction sector today. Every construction site now employs Artificial Intelligence (AI), drones, Virtual Reality (VR), site robots, and other smart construction techniques and concepts. Bridges are not an exception to this rule. Drones with LIDAR sensors and GPS tracking are among the most commonly employed smart construction technologies in bridge design. With these drones, bridge engineers can determine the exact place on which the bridge stands, lowering errors greatly.
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