Advanced Design of Reinforced and Post-tensioned Concrete Slabs and Mats

Increased productivity and efficiency for slab and mat designs
RAM Concept saves you precious time and money. Its finite element-based analysis provides major advantages over conventional strip methods, allowing you to handle complex floor design more accurately and with more confidence in the results.

RAM Concept lets structural engineers model, analyze, and design virtually any cast-in-place geometry, no matter how complex. Efficiency and quality control are realized through the advanced analysis and design tools for reinforced and post-tensioned concrete slabs and mats. Integration allows for analysis and design of a multi-story concrete structure therefore streamlining workflows.

RAM Concept easily accounts for steps, openings, complicated loadings, and other irregularities through the flexible modeling environment. Its finite element-based analysis provides major advantages over conventional strip methods, letting you handle complex floor design more accurately and with increased confidence in the results.


The integration with RAM Structural System and STAAD.Pro lets engineers perform gravity and lateral analysis and design on multi-story 2-way slab (post-tensioned or mild reinforced) concrete buildings. Not only does this streamline workflows but it also reduces cost related to errors in transferring model data.

Improve your quality control and efficiency through the advanced analysis capabilities of RAM Concept, such as comprehensive and flexible punching shear calculations and long-term deflections considering cracking, creep, and shrinkage.

Developed for reinforced or post-tensioned slabs and mats, RAM Concept will save you precious time and money in the design of concrete structures.



RAM Concept used to design the David Brower Center: Post-Tensioned Concrete Walls and Frames for Seismic-Resistance – A Case Study of the David Brower Center


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