Simpson BA2.56/24 Strong-Tie Top-Flange Joist Hanger for 2-1/2 x 24 Engineered Wood
$33.26
$41.58
Simpson Strong-Tie BA2.56/24 Description The Simpson Strong-Tie BA2.56/24 Beam Hanger is designed for secure and reliable connections for I-joists and structural composite lumber (SCL). Simpson Strong-Tie BA2.56/24 Includes (1) BA2.56/24 Beam Hanger Simpso
Simpson Strong-Tie BA2.56/24 Description
The Simpson Strong-Tie BA2.56/24 Beam Hanger is designed for secure and reliable connections for I-joists and structural composite lumber (SCL).
Simpson Strong-Tie BA2.56/24 Includes
- (1) BA2.56/24 Beam Hanger
Simpson Strong-Tie BA2.56/24 Features
- Cost-effective one-piece design compared to welded hangers
- Full-height joist flange prevents rotation and eliminates the need for web stiffeners
- Available for special order to accommodate sloped and/or skewed members
- Designed for I-Joists and SCL
- Top-Flange Installation for straightforward placement
- High Load Capacity for demanding structural requirements
- Versatile Application for beams, headers, and floor framing systems
Simpson Strong-Tie BA2.56/24 Applications
- Floor Framing: Provides secure support for I-joists and SCL in multi-story buildings.
- Roof Framing: Ensures stability in engineered wood roof truss and rafter connections.
- Deck Construction: Ideal for attaching joists in covered outdoor structures.
- Beams & Headers: Strong, load-bearing connection for supporting beams in residential and commercial builds.
- Commercial & Industrial Projects: Suited for large-scale engineered wood framing applications requiring long-term strength and reliability.
Simpson Strong-Tie BA2.56/24 Installation Overview
- Use specified fasteners to ensure maximum load capacity and structural integrity.
- Secure the hanger over the supporting beam or ledger before setting the I-joist into place.
- Ensure the joist seats fully inside the hanger for proper load transfer.
Simpson Strong-Tie BA2.56/24 Specifications
NOTE: Ensure the correct fasteners are used in the specified positions to achieve the published load values.

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