Double Gimbal Expansion Joint
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Double Gimbal Expansion Joint


产品概述

产品概述

Tied Universal Gimbal Expansion Joint

A tied universal gimbal expansion joint is a complete spatial movement system, rather than two ordinary bellows placed in the same assembly.

Two gimbaled bellows units are separated by an intermediate pipe. Angular rotation at each end allows the intermediate pipe to translate, producing lateral displacement of the assembly.

Movement Geometry

When the connected piping moves laterally, each bellows rotates through a controlled angle. The combined angular movement shifts the intermediate pipe relative to the two connection ends.

The lateral displacement is therefore developed through bellows rotation and geometric offset, rather than by directly shearing or pulling a single bellows sideways.

For a given allowable bellows rotation, increasing the distance between the two rotation centers can provide greater lateral movement capacity.

The resulting increase in overall length, weight and installation envelope must also be considered.

Dual Gimbal Hardware

Each end of the assembly incorporates a gimbal ring, hinge plates, pins and structural lugs.

The two perpendicular rotational axes in each gimbal permit angular movement in more than one plane.

Using gimbal hardware at both bellows enables the complete joint to accommodate lateral displacement whose direction is not limited to a single piping plane.

Role of the Intermediate Pipe

The intermediate pipe establishes the lever distance between the two flexible rotation centers.

Its length directly influences required bellows rotation, available lateral movement and the overall dimensions of the assembly.

It is therefore an engineered component and should not be shortened, extended or replaced at site without design approval.

Pressure-Thrust Restraint

Internal pressure acting on the effective bellows area generates axial pressure thrust.

The gimbal rings, hinge plates, pins and structural lugs provide a permanent load path that restrains this thrust within the assembly.

This reduces pressure thrust transmitted to external anchor points. The hardware must therefore remain complete and correctly assembled.

Pressure-thrust restraint does not mean that the expansion joint should support pipe weight, equipment weight or unapproved external bending loads.

Difference from a Single Gimbal Joint

A single gimbal expansion joint contains one bellows and primarily provides angular rotation in multiple planes.

The tied universal gimbal design contains two gimbaled bellows and an intermediate pipe. Their combined rotation produces useful lateral movement within one assembly.

Difference from an Untied Universal Joint

An untied universal expansion joint also contains two bellows and an intermediate pipe, but it does not necessarily include hardware capable of restraining pressure thrust.

The tied universal gimbal joint adds load-carrying gimbal structures that control movement and contain pressure thrust.

This makes it suitable for large-diameter, higher-pressure or nozzle-load-sensitive piping systems.

Movement Boundaries

The main function of this design is lateral movement and approved angular rotation.

The gimbal hardware normally restrains unrestricted axial extension or compression. Axial thermal growth should therefore not be added directly to the specified lateral movement requirement.

The assembly must not be subjected to torsion around the pipe centerline.

Where the Design Is Most Useful

  • Three-dimensional high-temperature piping
  • Pipelines with lateral movement in changing directions
  • Connections between vessels, exchangers and process equipment
  • Large-diameter steam and hot-gas piping
  • Petrochemical, power and metallurgical process lines
  • Locations where pressure thrust at anchors must be limited
  • Long pipe spans requiring substantial lateral movement

Support Strategy

Pipe guides and load-bearing supports should direct movement into the intended gimbal rotations and prevent uncontrolled axial motion or torsion.

Pipe and process-medium weight should be carried by external supports.

For long horizontal assemblies, the weight of the intermediate pipe and its effect on the gimbal hardware should be evaluated during design.

Internal Liner Arrangement

High-velocity, turbulent or particle-laden service may require an internal flow liner to protect the bellows and provide a smoother flow path.

Because relative lateral movement occurs between the two ends, liners require sufficient overlap and operating clearance.

Bidirectional flow, reverse purging and solids accumulation should be identified before the liner is designed.

Installation Checks

  • Verify the orientation of both gimbal assemblies
  • Confirm the cold face-to-face length and preset offset
  • Provide full lateral clearance for the intermediate pipe
  • Do not remove permanent rings, pins, hinges or structural lugs
  • Do not twist the joint to align flange holes
  • Do not force the assembly to correct piping errors
  • Protect bellows and pin surfaces during site welding
  • Handle temporary shipping restraints as instructed

What to Inspect in Service

Inspection should compare the angular movement of the two bellows and confirm that movement is being shared as intended.

Uneven bellows deformation, worn pins, bent hinge plates, intermediate-pipe sagging or liner interference may indicate incorrect movement, inadequate support or installation misalignment.

Engineering Data Required

This expansion joint must be selected from the complete piping geometry. Nominal diameter and pressure alone are not sufficient for design.

  • Piping layout and proposed joint location
  • Required lateral movement and movement direction
  • Any simultaneous angular rotation
  • Design and operating pressure
  • Design, operating and installation temperatures
  • Process medium, flow direction and velocity
  • Available face-to-face and lateral clearance
  • Pipeline and intermediate-pipe support conditions
  • Flanged, welded or other connection requirements
  • Material, cycle-life and inspection requirements

Final bellows rotation, intermediate-pipe length, gimbal dimensions, lateral movement, structural loads and material selection are subject to the approved calculations, technical specification and manufacturing drawing.

技术规格与选型

技术规格与选型

参考尺寸仅供选型。可根据项目定制尺寸和法兰标准。

应用领域

应用领域

安装使用

安装使用

质量控制

质量控制

Quality control and inspection items are determined by product structure, order requirements and the order quality plan.

Dimensional Inspection

Dimensional Inspection

Dimensional inspection

Pressure Testing

Pressure Testing

Pressure testing

Plywood Case / Safe Export Packing

Plywood Case / Safe Export Packing

Plywood case export packing

Material documents, non-destructive testing, performance tests, third-party inspection and other deliverables are provided according to the order confirmation.
常见问题

常见问题

What movement does Double-row Universal Joint-type Expansion Joint compensate?
Depending on structure, metal bellows expansion joints can absorb axial, lateral, angular or combined movement. Movement direction, amount and anchor conditions should be confirmed.
What is the purpose of a pressure-balanced design?
A pressure-balanced structure helps reduce or balance pressure thrust, suitable for pipelines where anchor load is critical.
How is bellows material selected?
Common materials include 304, 316L or project-specified stainless/alloy materials. Selection depends on corrosion, temperature, pressure and fatigue requirements.
Are guides and anchors required?
Yes. Metal bellows expansion joints normally require anchors and guides to avoid instability, side load and over-stroke.
What information is needed for a quotation?
Please provide DN/NPS, pressure class, working temperature, medium, connection type, movement, quantity and application position for Double-row Universal Joint-type Expansion Joint. Drawings or site photos help speed up confirmation.
Can this product be customized by project drawing?
Yes. Double-row Universal Joint-type Expansion Joint can be confirmed according to drawings, operating conditions, flange standard, material, installation space and packing requirements. Final specifications follow the confirmed drawing and order.
What inspections are made before shipment?
Typical checks include appearance, key dimensions, connection areas, sealing surfaces, welding or assembly quality and packing condition. Pressure, airtightness or material checks can be added when required by the order.
How are packing and export documents confirmed?
Packing can be confirmed according to product size, weight, shipping method and destination requirements. Packing list, invoice and project documents follow the confirmed order.

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