Architecture & Engineering · Mechanical Engineer

Shape the Force.

I turn motion, heat, material behavior and manufacturing constraints into dependable physical systems.

8 Years engineering
42 Design iterations
18 Systems delivered
6 Core disciplines
01 / Engineering philosophy

Make every constraint useful.

Fabrication grids, rotating assemblies and force paths as a visual language for engineering that is built to be tested.

Evidence before elegance.

I work from first principles, measurable performance and manufacturable decisions. The goal is not simply a clever mechanism, it is a system that can be built, tested, maintained and trusted.

Model the real forces. Translate assumptions into loads, tolerances, temperatures and operating conditions.
Prototype the uncertainty. Test the parts of a system that matter most before complexity becomes expensive.
Design for the factory. Balance performance with sourcing, assembly, inspection and serviceability.
02 / Selected engineering

Systems under load.

Representative mechanisms, thermal systems and manufacturing work.

Featured · Product mechanism

Modular Lift Drive

A compact electromechanical lifting concept redesigned around lower part count, clearer load paths and easier field service.

Thermal system

Heat Loop

Cooling architecture study balancing airflow, heat transfer and packaging constraints.

Manufacturing

Fixture Zero

Production fixture concept focused on repeatability, faster setup and operator ergonomics.

03 / Technical toolkit

Depth across the assembly.

Engineering-style calibration meters visualize expertise without turning the portfolio into generic percentage bars.

Mechanical Design

Assemblies, tolerance stacks and detail design.

CAD & Drawings

Parametric modeling and technical documentation.

FEA Thinking

Stress, deflection and simulation-guided iteration.

DFM / DFA

Manufacturing-aware choices from prototype to production.

Thermal Systems

Heat transfer, airflow and operating-temperature reasoning.

Testing & Validation

Instrumentation, test plans and failure analysis.

04 / Professional journey

From component to system.

A vertical timeline emphasizing increasing engineering ownership.

Senior Mechanical Engineer · Industrial Systems

Leading concept-to-validation work across mechanisms, enclosures and manufacturable assemblies.

Mechanical Design Engineer · Product Development

Developed precision components and assemblies and supported prototype and production validation.

Mechanical Engineer · Testing & Analysis

Built test methods, analyzed failures and converted findings into practical design improvements.

05 / Working method

From force to finish.

A disciplined workflow that makes assumptions visible early and decisions easier to defend later.

01

Frame

Clarify function, constraints, interfaces and failure modes.

02

Model

Develop concepts, calculations and geometry around dominant physics.

03

Test

Prototype critical uncertainty and measure what models cannot guarantee.

04

Release

Document a manufacturable solution with clear validation evidence.

06 / Contact

Build the next system.

For product development, mechanical design, testing or engineering collaboration, send a message.

✉ marek@kineticanvil.eng
☎ +1 555 0164
◈ Detroit, MI