The Team Behind the Files
About
The team behind the files.
GMR3D Engineering is a mechanical design studio led by Mohammed Ramzi G. We make sure drawings survive contact with a real machine. Not renderings. Not concepts. Files that get cut, bent, machined and assembled. Recent work spans solar-mounting structures, laser-cut privacy screens and full machine layouts.
How we work
Manufacturability first, not last.
Most design problems are not design problems. They are handoff problems — a model that looks correct, a drawing that leaves questions open, and a shop floor that has to guess. That guess costs money, and it usually costs it twice.
So we work backwards from the process. Before geometry gets locked, we already know how the part will be cut, how it will bend, what the tooling can hold, and where the tolerances actually matter. By the time a drawing leaves our desk, the person quoting it has everything they need and nothing they have to interpret.
That is the whole difference between a file that looks right and a file that builds.
Credentials
Trained in precision. Time spent on the machines.
Two things shape how we work: a formal grounding in precision mechanics, and years standing at the machines that actually make the parts.
Master’s in Precision Mechanics
From the Institute of Optics and Precision Mechanics (UFAS1) in Sétif, Algeria. The grounding behind the work — GD&T, finite element analysis, manufacturing processes, and design for manufacture and assembly.
Time on the machines
Fibre laser, tube laser, press brake, CNC punch, MIG welding and 3D printing — operated, not just specified. It is the reason our drawings respect what the tooling can actually hold rather than what the model allows.
Analysis & validation
The work that happens before the drawing ships.
Manufacturability is not only about bend radii and tooling access. It is also about knowing the part will hold, breathe and go together. Three checks carry most of that weight.
Finite Element Analysis
Load cases, stress concentrations and deflection modelled in SolidWorks Simulation — so a bracket is sized for the job rather than guessed, and the material that is doing nothing gets removed.
Computational Fluid Dynamics
Airflow, pressure drop and heat behaviour run through SolidWorks Flow Simulation. It matters the moment a design has to move air or fluid to a spec instead of just looking like it should.
Design for Manufacture & Assembly
Part count, fastener strategy, tooling access and build order reviewed before release. Most cost is locked in at design stage, and this is where we get it back.
Toolchain
Every stage, one studio.
From first sketch to a file the machine accepts. We do not hand you off between specialists — the same people who design the part prepare it for the floor.
01Design
SolidWorksArtCAMCorelDRAWAdobe Illustrator
02Simulate
SolidWorks SimulationFlow Simulation
03CAM
CNCKAD (Metalix)CypcutTubesT
04Print
CuraBambu Studio
05Visualise
KeyShot
Work with us
Got something that needs building?
Send the sketch and the process. We will tell you straight whether it will build, what it will cost you in tooling, and what we would change.