Functional Drift-Gauge Screening Study
A functional gauge study establishing when a local drift screen is valid under a specific material-condition boundary.
A browser tool for two-pin fixture/part fit analysis with position and size tolerances and deterministic scenario checks.
Change the inputs and explore the engineering results.
ENGINEERING VALUE
Demonstrates practical tolerance analysis applied to fixture location strategy.
PROJECT SCOPE
Fixture fit calculator with deterministic and sampled scenarios
Explore the project checks ↗Engineering concept illustration.
01 / THE PROBLEM
Two-pin location schemes can bind or misfit when pin, base-hole, part-hole, and positional tolerances stack unfavorably.
02 / CONSTRAINTS
03 / ENGINEERING APPROACH
Evaluate both explicit worst-case configurations and sampled tolerance combinations, while keeping geometry and tolerance sources separate.
Pin/base/part-hole inputs; Pattern and positional tolerances; Deterministic boundary scenarios; Fit-rate simulation; Result export.
04 / DESIGN & IMPLEMENTATION
The tool evaluates size and position tolerance combinations through worst-case scenarios and sampled fit-rate exploration.
05 / VALIDATION
Fit-rate results depend on the statistical model and selected tolerance inputs. Compare the stack with drawing requirements and a reference calculation before selecting a locating scheme.
06 / OUTCOME
Demonstrates practical tolerance analysis applied to fixture location strategy.
THE ENGINEERING PRINCIPLE
Each hole may clear its pin at the size limits while the pair still fails because of pattern error. Size, center distance, position tolerance and datum references need to be evaluated together.
When would a round-and-diamond locating scheme avoid unnecessary overconstraint?
LET’S BUILD SOMETHING THAT WORKS
Considering a role in mechanical design, manufacturing methods,
fixture design, or estimation? Let’s connect.