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The new rolled section of castellated beam will have depth
  • a)
    50% more than original section
  • b)
    50% less than original section
  • c)
    25% less than original section
  • d)
    depth does not change
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
The new rolled section of castellated beam will have deptha)50% more t...
Understanding Castellated Beams
Castellated beams are structural elements formed by cutting a standard beam and then reassembling it to create a section with openings. This design enhances the beam's strength-to-weight ratio and allows for the passage of services.
Depth Modification
When creating a castellated beam, the depth of the beam is influenced by the process of cutting and reconfiguring.
Why 50% More Depth?
- Increased Structural Capacity: The new design with castellations allows for a greater depth, improving the beam’s moment of inertia, which is crucial for resisting bending.
- Enhanced Load Distribution: A deeper section allows the beam to distribute loads more efficiently across its span, making it suitable for larger load applications.
- Design Flexibility: The increased depth provides more space for services such as HVAC, plumbing, and electrical systems, making it a versatile option in construction.
Applications
- Commercial Buildings: Used in offices and warehouses where large open spaces are required without columns.
- Bridges: Offers reduced self-weight with high load-carrying capacity, ideal for long spans.
Conclusion
The decision to make the new castellated beam 50% deeper than the original section is rooted in engineering principles aimed at enhancing structural performance. This modification results in a beam that is not only stronger but also more functional in modern construction applications.
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Community Answer
The new rolled section of castellated beam will have deptha)50% more t...
The new rolled section of castellated beam will have depth at least 50% more and its section modulus increases by 2.25 times the original section. This allows the beam to span further than parent rolled section.
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