Home / Resources / Valve End Connection Types and Selection
Piping interfaces selected as engineered joints

Valve End Connections: Flanged, Butt-Weld, Socket-Weld, Threaded and Wafer

A valve end connection controls installation geometry, joint integrity, maintainability and often the applicable pressure-temperature route. “Flanged” does not identify standard, series, facing or drilling; “butt-weld” does not identify pipe schedule, bore or preparation; threaded and socket-weld ends need material, size and service limitations. Wafer and lug bodies add bolt, gasket and pipeline-load considerations. Every quote should define the complete mating interface and verify it on an approved drawing.

Flanged jointsButt-weld endsCompact connectionsMating-system compatibility
Technical scope

Choose the connection around installation and lifecycle duty

Pressure and temperature

The connection standard, material, class/PN and joint components must suit every design case.

Leakage consequence

Toxic, flammable, vacuum, emissions or cyclic service may influence joint type and inspection needs.

Installation access

Bolting clearance, welding space, heat treatment, NDE and valve removal must be feasible.

Pipeline loads

Weight, thermal movement, nozzle loads and misalignment should not be forced through the valve body.

Maintenance strategy

Flanged joints support removal; welded joints reduce detachable leak paths but complicate replacement.

Cleanliness and bore

Crevices, pockets, internal mismatch, weld penetration and full-bore/piggable needs can govern.

Evidence matrix

Compare valve end connections by complete interface requirements

ConnectionAdvantagesCritical specification fieldsCommon risk
FlangedDetachable joint, familiar installation and broad size/rating availability.Exact flange standard/series, size, class/PN, facing, finish, gasket, bolting and face-to-face.Non-mating drilling/facing or treating the flange designation as the valve-length standard.
Butt-weldPermanent compact joint with no detachable flange gasket at the valve ends.Pipe OD, schedule/wall, material, end-preparation standard, bore transition, welding/PWHT and NDE.Ordering before mating pipe dimensions and heat-treatment restrictions are known.
Socket-weldCompact connection commonly used in limited smaller-bore applications within governing scope.Size/class, socket dimensions, gap/workmanship, material, welding procedure and examination.Crevice/fit-up concerns or use outside project service and size restrictions.
ThreadedSimple compact assembly for selected services without field welding.Thread standard, form, size, direction where relevant, sealant and engagement.Mixing NPT/BSP or other thread forms and ignoring leakage/fatigue/fire-service limitations.
WaferShort, light valve body installed between mating flanges.Compatible flange standard, bolt pattern, centering, gasket/seat arrangement, face-to-face and dead-end limits.Interference with flange bore/bolt geometry or unsuitable gasket selection.
LuggedFlange-lug bolting can support selected isolation or dead-end arrangements when designed and rated for them.Thread/bolt engagement, flange compatibility, directional/dead-end rating and installation sequence.Assuming every lug valve has full bidirectional dead-end capability.
Engineering evidence

Interface details to show on the approved valve drawing

Standard identity

Document number, edition, flange series or weld/thread form.

Geometry

Face-to-face, end thickness, facing, drilling, bore and transition.

Joint components

Gasket, bolting, weld consumables and any insulating kit.

Orientation

Flow arrow, shaft/stem position, eccentricity and access.

Loads and supports

Allowable piping loads, valve weight, supports and lifting points.

Field work

Welding, PWHT, NDE, coating repair, alignment and commissioning steps.

Technical boundaries

Claims and shortcuts this page does not support

Nominal size does not guarantee a mating connection

Standards, classes, series, facings, schedules and thread forms must match.

The valve must not be used to pull piping into alignment

Installation strain can distort bodies, increase torque and damage seats or joints.

A welded end is not maintenance-free

Weld quality, heat treatment, NDE, corrosion and future cut-out/replacement planning remain necessary.

Controlled workflow

From requirement to auditable evidence

1. Define piping interfaceCollect line class, drawings, pipe/flange data and design conditions.
2. Screen connection optionsCompare containment, installation, removal, weight and lifecycle needs.
3. Specify complete designationState standards, size/rating, geometry, facing/thread/weld details.
4. Coordinate materials and proceduresConfirm gasket/bolting or WPS, consumables, PWHT and NDE.
5. Review supplier drawingCheck face-to-face, bore, clearance, orientation and mating details.
6. Inspect installationVerify alignment, cleanliness, joint assembly/welding and final testing.
Project checklist

Information and records to define

Line size, pipe OD/schedule and material class
Design pressure-temperature and service hazards
Connection standard, edition, class/PN and series
Flange facing/finish, gasket and bolting
Weld preparation, bore transition, WPS/PWHT/NDE
Thread form, engagement and approved sealant
Face-to-face, bolt/clearance and operator envelope
Pipeline support, alignment, installation and test plan
Technical authority and scope

How this resource should be used

Primary search intent

Selection and specification guidance for engineers comparing flanged, welded, threaded, wafer and lug valve connections and preventing mating-interface errors.

Technical content owner

Raymon Valve technical content team. Final project decisions require the controlled documents and responsible engineer or quality reviewer.

Standards boundary

Connection suitability and dimensions come from the controlled end-connection, valve product, piping and project standards. This page omits dimensional tables; verify the exact standard, edition, size, rating, material and mating components.

Review status

Technical scope reviewed 27 July 2026. Editions, procedures, acceptance criteria and product evidence must be reconfirmed before order.

Frequently asked questions

Valve End Connection Types and Selection FAQ

What information is needed to specify a flanged valve?

State flange standard and series, nominal size, class or PN, material, facing and finish, gasket/bolting requirements and valve face-to-face dimensional route.

When is a butt-weld valve preferred?

It may be chosen for permanent high-integrity joints or weight/space reasons, but pipe dimensions, welding, heat treatment, NDE and future maintenance must be planned.

Can NPT and BSP threads connect directly?

They are different thread systems and should not be treated as interchangeable. Specify the exact form and use compatible fittings and sealing practice.

Can every lug butterfly valve be used for dead-end service?

No. Dead-end direction and rating depend on the valve design, lug/bolt engagement and manufacturer qualification. Require explicit approved capability for the actual condition.

Technical evidence review

Send the requirement and the evidence you need to verify

We will identify the applicable scope, missing records and approval path without inventing compliance claims.

en_USEnglish
Scroll to Top