Beyond the Model
Mechanical Design & Structural Analysis
Helping engineering teams build reliable products through design, analysis and engineering judgment. Open to potential collaborations — feel free to reach out.

Engineering Decisions Grounded in Reality.
Engineering is not only about creating models. It's about understanding the real system behind the model — boundary conditions, manufacturing effects, tolerance, assembly, testing, and the engineering judgment that connects them.
Explore the Beyond the Model series →Expertise
Structural Analysis
FE-based structural evaluation grounded in real boundary conditions, manufacturing effects, and test correlation — not just nominal-model output.
Mechanical Design Review
Independent design review to catch load-path, tolerance, and assembly risks before they become expensive late-stage failures.
Engineering Automation
Automating repetitive analysis and design workflows so engineering time goes toward judgment, not manual setup.
Test Data Interpretation
Turning raw test data into engineering conclusions — correlating physical results back to the assumptions behind the model.
Engineering Blog
View allStructural analysis, structural dynamics, testing, and design methodology — how a structural engineer thinks.

Beyond the Model
Is Your Electronic Board Ready — Mechanically and Thermally?
A working PCB is not the same as a field-reliable one. A board is also a mechanical system with its own mass, stiffness, connection points, and thermal paths.

Structural Analysis Learning Series
Three Ways to Model a Bolted Joint
Solid bolt, beam with couplings, or a tie constraint — the same joint modeled three ways in Abaqus, then compared through preload, modal and static analysis. A matching global curve is not proof that the local model is correct.

Beyond the Model
The Cost of Finding It Late
A prevented problem being invisible does not make it unimportant. A design review costs a few engineering hours; a failure in the field can cost the project.
Case Studies
View allBattery Simulation Optimization
Reducing simulation runtime for battery pack structural evaluation without sacrificing correlation to physical test.
Structural Joint Reliability
Diagnosing recurring joint failures by tracing the gap between nominal assembly assumptions and as-built conditions.
PCB Dynamic Characterization
Characterizing dynamic response of PCB assemblies to ground vibration test predictions ahead of qualification.