Failure analysis & recovery
Establish the failure mode, mechanism, containment and corrective path using available evidence.
Resolve physical and technical problems with evidence—then turn the answer into a manufacturable, testable and controlled definition.
Engineering starts with function, evidence and constraints—not a preferred process. Work can span concept development, 3D definition, DFM, DFA, DFC, reverse engineering, failure recovery and complete drawing packages when the requirement calls for it.
Establish the failure mode, mechanism, containment and corrective path using available evidence.
Recover geometry, interfaces and function from an existing part or assembly, then convert that information into usable CAD, drawing and redesign inputs.
Refine concepts and technical definition around DFM, DFA and design-for-cost, then align tolerances, datums, inspection strategy and process capability with manufacturing reality.
The definition should survive tooling, test, inspection and production. Specialist work branches from Engineering when deeper validation or documentation is needed.
Test strategy, fixtures, ICT/FCT/ESS/EOL interfaces and evidence that the requirement is actually met.
Explore →Production aids, gauges and fixtures designed around repeatability, access, verification and maintainability.
Explore →Production-ready drawings, specifications, work instructions and complete documentation packages that turn technical intent into controlled execution.
Explore →Bring the failed part, requirement, drawing, CAD, test result or inspection evidence you have. SharpSigma can help define the next technical step.