Leave your feedback Share Copy URL https://gographicsoutput.com/video/K1aHuG2dfCu.html Email Facebook Twitter LinkedIn Pinterest Tumblr Share on Facebook Share on Twitter The Kobe Earthquake Changed Concrete Forever [Wzwiph7IIxs] Health Updated on August 08, 2026 EDT — Published on August 08, 2026 EDT In January 1995, the Great Hanshin (Kobe) Earthquake devastated parts of Kobe, Japan, exposing hidden weaknesses in reinforced concrete construction. Engineers discovered that traditional concrete often trapped air pockets and failed to completely fill around dense reinforcing steel, leaving unseen weak spots. This disaster accelerated the adoption of Self-Compacting Concrete (SCC)—a revolutionary mix that flows under its own weight, filling every corner of complex forms without vibration. Today, SCC is used around the world to build stronger, more durable bridges, tunnels, skyscrapers, and critical infrastructure. #engineering #construction #science #concrete #earthquake #japan #kobe #civilengineering #technology #infrastructure 1q9azv2WdQb 3KxyDozYCSI zShq8fNKj5s shzyhGBOdwg lYpCroHd3AQ CWybON2Mw2N 8l2mfQBef5D 7zHQ8oFNeQ9
In January 1995, the Great Hanshin (Kobe) Earthquake devastated parts of Kobe, Japan, exposing hidden weaknesses in reinforced concrete construction. Engineers discovered that traditional concrete often trapped air pockets and failed to completely fill around dense reinforcing steel, leaving unseen weak spots. This disaster accelerated the adoption of Self-Compacting Concrete (SCC)—a revolutionary mix that flows under its own weight, filling every corner of complex forms without vibration. Today, SCC is used around the world to build stronger, more durable bridges, tunnels, skyscrapers, and critical infrastructure. #engineering #construction #science #concrete #earthquake #japan #kobe #civilengineering #technology #infrastructure 1q9azv2WdQb 3KxyDozYCSI zShq8fNKj5s shzyhGBOdwg lYpCroHd3AQ CWybON2Mw2N 8l2mfQBef5D 7zHQ8oFNeQ9