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How Can Understanding Elastic and Plastic Deformation Enhance Earthquake Resistance in Buildings?

Understanding how buildings bend and stretch is key to making them safer during earthquakes.

1. Elastic Deformation:

  • Buildings can flex a little, up to 0.5% strain, without any lasting harm.
  • This flexibility helps them bounce back to their original shape after the earthquake is over.

2. Plastic Deformation:

  • This happens when a building absorbs more energy than it can handle.
  • It makes buildings tougher, allowing them to handle larger changes in shape.

3. Statistics:

  • Buildings designed with these ideas can cut down damage by up to 40% during earthquakes.
  • Using strong materials like steel can help buildings hold much more weight, even 200-300% more!

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Click HERE to see similar posts for other categories

How Can Understanding Elastic and Plastic Deformation Enhance Earthquake Resistance in Buildings?

Understanding how buildings bend and stretch is key to making them safer during earthquakes.

1. Elastic Deformation:

  • Buildings can flex a little, up to 0.5% strain, without any lasting harm.
  • This flexibility helps them bounce back to their original shape after the earthquake is over.

2. Plastic Deformation:

  • This happens when a building absorbs more energy than it can handle.
  • It makes buildings tougher, allowing them to handle larger changes in shape.

3. Statistics:

  • Buildings designed with these ideas can cut down damage by up to 40% during earthquakes.
  • Using strong materials like steel can help buildings hold much more weight, even 200-300% more!

Related articles