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ManufacturingcalculatorEngineering workflow

Fixture ROI Calculator

A browser and workbook calculator for comparing conventional and fixture-assisted workholding economics.

MY FOCUSDeveloped the cost model, scenario comparison, cycle-basis controls, break-even logic, and chart/export workflow.
HTMLJavaScriptExcel

ENGINEERING VALUE

Supports evidence-based fixture prioritization while making economic assumptions visible.

PROJECT SCOPE

Working native calculator port of the original v3.3 batch-cost formulas; exact source-function parity tested

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ENGINEERING STUDY / METHODSJS—02

Engineering concept illustration.

01 / THE PROBLEM

The engineering challenge.

Fixture proposals need a transparent connection between setup/cycle improvement, quantity, labor, machine time, tooling cost, and payback.

02 / CONSTRAINTS

What the solution must consider.

  • Results depend on user-supplied volumes, rates, setup and machining time, batch capacity and partial-run rules. The current model excludes scrap/rework and assumes full labor attendance.

03 / ENGINEERING APPROACH

Reasoning before geometry.

01

Engineering method

Calculate baseline and proposed total cost over quantity, expose the delta, and solve for payback or break-even under the selected operating basis.

02

Workflow features

Conventional vs fixture scenarios; Setup and cycle time; Batch/partial rules; Labor and machine inputs; Break-even quantity; Savings, cost-per-part, ROI, and charts.

04 / DESIGN & IMPLEMENTATION

Connecting intent to execution.

The working website ports HTML v3.3 machining/run-cost formulas into typed calculation functions with responsive scenario controls, cost curves, exact target reconciliation and CSV/print outputs. Setup is charged per loaded run and investment once. Break-even reporting scans the bounded quantity range to distinguish an early tie from sustained positive savings.

  • Conventional vs fixture scenarios
  • Setup and cycle time
  • Batch/partial rules
  • Labor and machine inputs
  • Break-even quantity
  • Savings, cost-per-part, ROI, and charts

05 / VALIDATION

The checks behind the design.

Engineering workflow

Forty-eight original-source parity cases cover sequential/parallel processing, single-part/loaded-batch bases, partial-run rules and batch boundaries. Checks also reconcile cost/time, investment exclusion, identical scenarios, zero rates, input validation and CSV quoting. Example rates are editable inputs; no measured company savings or approved capital case is claimed.

06 / OUTCOME

The value of the work.

Supports evidence-based fixture prioritization while making economic assumptions visible.

THE ENGINEERING PRINCIPLE

A fixture investment needs a stated operating basis.

Payback depends on recurring setup and cycle savings, quantity, cost rates and fixture investment. Changing batch frequency or machine utilization can change the answer even when the geometry stays the same.

A question for a technical conversation

Which assumptions would you challenge before recommending a fixture investment?

Open the working tool ↗

LET’S BUILD SOMETHING THAT WORKS

Good design belongs
on the shop floor.

Considering a role in mechanical design, manufacturing methods,
fixture design, or estimation? Let’s connect.