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How to Specify Titanium Fluid Manifolds

Specify titanium fluid manifolds by media, flow diagram, ports, passages, wall, sealing, pressure/leak testing, cleaning, inspection and RFQ requirements.

  • Standards-aware sourcing guidance
  • Grade and application comparisons
  • Inspection and RFQ considerations

How to Specify Titanium Fluid Manifolds

2026-08-11

Precision-machined titanium fluid manifolds

A titanium fluid-manifold RFQ should start with the flow diagram and service conditions, then translate them into a controlled machined-part drawing. Port names alone do not define passage walls, sealing interfaces, pressure integrity or cleanliness.

Functional Definition Matrix

AreaRequired data
ServiceMedia, concentration, temperature, compatibility and cleanliness
HydraulicsFlow direction, passage size, pressure drop, drainability and dead volume
PortsStandard, size, class/thread, orientation, engagement and sealing face
IntegrityDesign/test pressure, wall between bores, plugs and leak criterion

Passages, Intersections and Plugs

Control drill-point penetration, intersecting bores, minimum wall, burr removal, internal-surface acceptance and inspection access. Define plug type, material, seal, installation method and whether plugs are permanent or serviceable.

Material and Machined-Part Controls

Specify titanium grade, source form and standard, condition, drawing revision, datums, tolerances, surface finish and traceability. Corrosion suitability must include media, crevices, plugs, seals and all connected materials.

Pressure, Leak and Cleanliness Testing

Separate proof-pressure testing from leak-rate testing. Choose hydrostatic, pneumatic or helium methods from service requirements and an approved safe procedure. Define pressure, hold time, allowable leakage, test medium, drying, cleaning chemistry, particle/residue limits, caps and packaging.

Send the Flow and Port Drawing

Review Titanium Manifolds and the Titanium Machining Parts category.

RFQ Checklist

  • Flow diagram, service media and operating range
  • Drawing, grade, source form and condition
  • Ports, passages, walls, plugs and seals
  • Pressure/leak test and acceptance criteria
  • Cleaning, inspection, reports and traceability

FAQ

Why are intersecting-passage burrs a risk?

They can obstruct flow, contaminate instruments or damage seals; removal and verification must be planned.

Is a pressure test the same as a leak test?

No. A proof test demonstrates pressure integrity under its criteria; a leak test measures leakage to a stated limit.

Related Reading

CNC Machining RFQ Guide · Tolerance and Inspection · Machined Component Applications


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