Comprehensive 3D modeling and shop drawings for all types of structural steel projects. Using Tekla Structures, we deliver accurate, clash-free drawings that help fabricators and erectors work efficiently and reduce costly field errors.
Detailed 3D models and fabrication drawings for stairs, handrails, ladders, embeds, and other miscellaneous steel and plate work. We ensure precise fit and finish while maintaining full compliance with project specifications and AISC standards.
Accurate material take-offs, bills of material, and customized reports generated directly from Tekla models. We tailor lists to your specific fabrication and ERP requirements to streamline ordering, inventory control, and production planning.
Professional engineering and detailing of steel connections. Our experienced team provides connection designs that meet AISC and project requirements while optimizing for fabrication efficiency and structural performance.
Support for accurate steel project estimating using detailed Tekla models. We provide material quantities, connection details, and labor estimates that help you bid with confidence and reduce risk on competitive projects.
Full BIM services including 3D coordination, model sharing, and lifecycle data management. We create intelligent Tekla models that integrate seamlessly with architects, engineers, and other trades for better collaboration and fewer RFIs.
In the steel industry, a single error can cost thousands in field rework. We prioritize accuracy at the model level to ensure a seamless fit in the field.
"MKA models are among the cleanest we've seen. Field errors are practically non-existent."
— Senior Fabricator
From initial model to final delivery, we follow a rigorous quality control process to ensure shop-ready drawings.
Detailed 3D modeling using Tekla Structures based on engineer drawings.
Generating precise fabrication drawings, assembly lists, and CNC data.
Rigorous internal checking for clash detection and code compliance.
Timely delivery of approved drawings, reports, and digital models.