Good Engineering Gets Substituted Away

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Why “Or Equal” Is Where Good Engineering Gets Substituted Away


BathSelect® — Engineering Library
Specification Engineering / Article 06

Specification Engineering

Why “Or Equal” Is Where Good Engineering Gets Substituted Away

A fixture can have the right alloy, the right plating stack, the right cartridge platform — and still lose the job to a cheaper substitute, because the spec that named it never actually required any of that.

Every article in this library so far has covered engineering that happens before a fixture ships: the alloy, the plating, the flow design, the tolerances, the serviceable cartridge, the lifecycle commitment. None of it matters if the specification that puts a fixture on a project doesn’t actually capture it. This is the stage where good engineering either gets locked in — or quietly substituted away by a contractor’s “or equal” submittal that matches on price and nothing else.

Why “or equal” is where specs get won or lost

Most commercial plumbing specifications name a basis-of-design product, then add language allowing substitutions that are “equal” to it. That clause exists for good reason — it keeps bidding competitive and avoids sole-sourcing. But it’s also the exact point where a carefully engineered fixture gets quietly swapped for a look-alike, if the spec never defined what “equal” actually has to mean.

If a spec section only lists a brand name, a model number, and a flow rate, then almost any faucet that looks similar and hits that flow number qualifies as “equal” — regardless of its alloy grade, plating thickness, tolerance control, or whether a replacement cartridge will exist in eight years. The performance characteristics this whole library has covered are invisible to a substitution review unless the spec explicitly asks for them.

The anatomy of a spec section that actually holds

Commercial plumbing specs are typically organized under CSI MasterFormat Division 22 (Plumbing), following a three-part structure: Part 1 – General (submittals, warranty, quality assurance requirements), Part 2 – Products (the actual performance and material criteria), and Part 3 – Execution (installation requirements). Part 2 is where the substitution battle actually happens — and where vague language does the most damage.

Fig. 1 — Redline: vague spec language vs. performance-locked spec language

Redlined comparison of spec language Side-by-side comparison of weak, vague plumbing specification language against strong, performance-based specification language covering material, plating, flow, and parts availability, shown as a redlined document with annotations explaining why the stronger language closes each substitution loophole.

WEAK — AS WRITTEN

2.1 FAUCETS A. Basin faucet, chrome finish, 1.5 gpm, or approved equal.

✕ No alloy or lead-free standard cited

✕ No plating layer or corrosion test referenced

✕ Flow rate only — no test standard, no min flow at low pressure

✕ No tolerance or QC requirement

✕ No parts-availability commitment required

STRONG — PERFORMANCE-LOCKED

2.1 FAUCETS A. Basin faucet, DZR lead-free brass per NSF/ANSI 61/372. B. Min. 8µ nickel + chrome or PVD top coat; pass ASTM B117 240-hr salt spray. C. Max 1.5 gpm @ 60 psi, min. 0.8 gpm @ 20 psi per ASME A112.18.1/CSA B125.1. D. CNC-machined cartridge bore, documented QC per ISO 9001 process. E. Mfr. to warrant cartridge parts availability min. 10 yrs from discontinuation.

✓ Substitutes must document each criterion, not just match on appearance or price.

Illustrative spec language for comparison purposes — always adapt exact wording, standards citations, and values to the actual project and current standard editions before use in a real specification.

Performance-based language vs. proprietary language

There’s a useful distinction between writing a spec around a brand name and writing it around performance criteria. Naming only a brand and model invites a challenge on competitive-bidding grounds and, in public work, can run into procurement rules against sole-sourcing. Naming performance criteria — alloy standard, plating thickness and test method, flow rate and test standard, tolerance and QC process, parts-availability term — does something more useful: it lets any manufacturer bid, but only ones who can actually document meeting the bar. A fixture engineered the way this library describes doesn’t need brand protection in the spec. It needs the performance criteria written down, because those numbers are exactly where a lesser-engineered substitute will fail to qualify.

APPROACH 01

Proprietary spec

Names a brand and model only. Easy to write, but vulnerable to challenge and offers no protection against a substitute that merely looks similar.

APPROACH 02

Performance spec

Names measurable criteria and test standards. Stays competitive and open, but only qualifies substitutes that can actually document meeting them.

6
engineering disciplines covered across this library — material, hydraulic, manufacturing, serviceability, and lifecycle — all of which can be written into Part 2 performance criteria instead of left to a brand name alone.

A submittal review checklist for evaluating “equal” alternates

When a substitution request comes in, the review is only as rigorous as the checklist behind it. A short, consistent checklist tied to the performance criteria in the spec — not a visual comparison of cut sheets — is what actually protects the design intent.

  • Does the submittal document the base alloy and cite the relevant lead-free/potable-water standard?
  • Is plating layer thickness and corrosion test data provided, or only a finish name?
  • Is flow rate documented at multiple pressures, per the cited test standard — not just a single headline number?
  • Is there documentation of a quality process (e.g., ISO 9001) or is conformance simply asserted?
  • Does the manufacturer commit, in writing, to a specific parts-availability period after discontinuation?
  • Is the warranty term for the cartridge stated separately from the warranty for the fixture body?

A substitution clause isn’t the risk. An unmeasurable spec is. Write the performance down, and “or equal” stops being a loophole.

Authority Reference

Worth reviewing directly when drafting or evaluating Division 22 plumbing specifications.

csiresources.org/standards/masterformat

Publishes and maintains MasterFormat, the numbering and section structure used across most U.S. commercial construction specifications, including Division 22 Plumbing. Why it matters: using the current MasterFormat structure and section numbering is what keeps a spec compatible with how contractors, estimators, and submittal review software actually organize a project.

This closes the loop this library opened with material engineering: an alloy choice, a plating stack, a flow curve, a machining tolerance, and a parts-availability commitment are only as valuable as the document that requires them. Specification engineering is where the rest of this library either becomes enforceable — or becomes optional.

BathSelect Engineering Library — Full Series
  1. Material Engineering — brass alloys, plating stack, corrosion testing
  2. Hydraulic Engineering — flow standards, pressure compensation, aerator design
  3. Manufacturing Engineering — casting, CNC tolerances, quality checkpoints
  4. Serviceability Engineering — field-replaceable vs. factory-sealed design
  5. Lifecycle Engineering — cost curves, parts commitments, end-of-life
  6. Specification Engineering — writing performance into the spec
Explore the Full Engineering Library

See the complete set of BathSelect engineering disciplines

Every article in this series links back to the source engineering pages — material, hydraulic, manufacturing, serviceability, and lifecycle.

BathSelect Engineering Library
Specification Engineering — Article 06


About the Author

Elina Henry

Hospitality & Environmental Design Specialist

Elina Henry is a Design & Specification Consultant at BathSelect, supporting architects, designers, contractors, and project teams with bathroom fixture selection, product coordination, and specification-focused planning. Her work focuses on helping commercial, hospitality, residential, and public-space projects choose fixtures that balance design quality, performance, accessibility, and long-term value.