Types of Beam Designs
There are many different types of beam designs and materials to choose from when designing a structure. Engineers can choose from various shapes, sizes, construction materials, and construction techniques. Deciding on the proper beam design for a particular structure can be a complicated process. Structural engineers and builders have many different beam designs and materials to choose from when attempting to create a sound structural design.
Cantilever Beams
Cantilever beam designs create a suspended effect. These beams allow the creation of a bay window, balconies, and some bridges. In cantilever beam designs, the weight load is distributed back into the main beams of the structure, allowing a portion of the structure to extend beyond the supported perimeters of the structure’s foundation.
Steel I Beam
Steel I beams are very popular choice in construction. The I beam is shaped like a capital I also know as a W shape. The I beam design is the most efficient use of structural steel since it moves the bulk of the steel into the portions of the beam actually resisting the loads. The I beam design is the most common foundational beam design found in commercial structures but can be used in Residential design.
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Flitch Beam
Flitch beam designs are composite beams made from layering steel and wood to create a lightweight beam with adequate strength. The addition of wood elements allows the beams to be nailed to existing wooden structures. Flitch beams are less expensive than solid steel beam designs. They are used to support heavy vertical loads while maintaining a strict construction budget. Flitch beams are also very useful when adding additional load carrying capacity to an existing beam.
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Hip Beam Designs
Hip beam designs are popular in roofing designs. A hip beam provides support for other load bearing beams branching off at symmetrical angles. This design is often used in residential construction.
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Beam Materials
The various types of beams may be constructed of various materials as well as a mixture of shapes and sizes. Some beams are made of pre-stressed concrete, poured concrete, iron, wood, glulams, and other composite materials.
Beam designs vary so greatly that making the correct choice when designing a structure can be challenging. Structural engineering software can help take the guesswork out of the design process. Structural engineering software can also help an engineer decide if the desired beam designs are appropriate for the structure.
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Beams & Columns
- Wood
- Concrete
- LVL & Glulam
- Masonry
- Steel

Retaining Walls
- Gravity Retaining Walls
- Cantilever Retaining Walls
- Counterfort Retaining Walls

Posts & Footings
- Isolated Footings
- Continuous Footings
- Embedded Posts

Roofs
- Roof Beams
- Roof Rafters
- Hip & Valley Beams
- Collar Ties
- I-Joists

Floors
- Floor Beams
- Floor Joists

Decks
- Deck Footings
- Deck Beams

Walls & Framing
- Shear wall
- Stud Wall
- Bearing Wall
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Personalized Onboarding | |||
1:1 Engineering Support | |||
2024 IBC | |||
User Themes | |||
Concrete Beams | |||
Masonry Beams | |||
Wood Shearwalls | |||
2024 NDS | |||
2021 IBC | |||
2018 IBC | |||
2018 NDS | |||
Imperial Units | |||
Concrete Columns | |||
Metric Units | |||
Steel | |||
Solid Sawn | |||
I-Joists | |||
Glulams | |||
Structural Composite | |||
24+ Load Combinations | |||
LRFD | |||
ASD | |||
Beam & Joist Spans | |||
Live & Dead Loads | |||
Isolated Footings | |||
Continuous Footings | |||
Collar Ties | |||
Embedded Posts | |||
Hip & Valley Beams | |||
Flitch Beam | |||
Stud Walls | |||
Wind, Snow, & Seismic Loads | |||
Advanced Footing Loads | |||
Out of Plane Loading | |||
Multi-span Columns | |||
Bearing Walls | |||
Retaining Walls | |||
Linked Load Tracking | |||
Beam Analysis | |||
Wall Analysis | |||
Masonry Columns | |||
Concrete Walls | |||
Masonry Walls | |||
Wood Hangers | |||
Curved Glulams |
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