High-Temperature Flue Gas Expansion Joint
Joints de dilatation en tissu

High-Temperature Flue Gas Expansion Joint


产品概述

产品概述

High-Temperature Flue Gas Expansion Joint Overview

A high-temperature flue gas expansion joint is a non-metallic flexible compensator designed for boiler ducts, hot-air systems, SCR units, flue-gas treatment equipment, dust-collection lines and metallurgical gas ducting.

Its multilayer flexible element accommodates movement caused by thermal expansion, equipment vibration and installation variation. Depending on the engineered construction, the joint can absorb axial, lateral, angular and selected combined movements.

For high-temperature, high-velocity, dusty or abrasive service, an internal flow liner and insulation arrangement can be incorporated to reduce direct exposure of the outer sealing layers to hot gas and solid particles.

Key Features

  • Designed for high-temperature flue gas and hot-air ducting
  • Accommodates axial, lateral, angular and combined movement
  • Requires relatively short installation length
  • Helps isolate vibration generated by fans and equipment
  • Reduces thermal movement loads transferred to adjoining ductwork
  • Optional internal flow liner and thermal-insulation arrangement
  • Available for round, rectangular and custom duct openings
  • Material construction can be selected for heat, corrosion and abrasion
  • Available as a complete framed assembly or project-specific flexible belt

Construction

A high-temperature flue gas expansion joint generally consists of metal connection frames, a non-metallic flexible belt, a gas-sealing barrier, reinforcement layers, thermal-insulation layers, compressible insulation, clamping bars and an internal flow liner.

The metal frames connect the joint to the ductwork or equipment. The flexible belt accommodates movement and maintains the system seal. Reinforcement layers improve dimensional stability, while thermal barriers reduce the temperature reaching the outer flexible sealing materials.

The internal flow liner improves the flow path and helps protect the flexible element and insulation from high-velocity gas, dust and abrasive particles.

Multilayer Flexible Construction

High-temperature flue gas expansion joints commonly use a multilayer construction in which individual layers perform heat-resistance, sealing, reinforcement, insulation and external-protection functions.

Depending on project requirements, the flexible element may incorporate high-temperature fabrics, glass-fibre reinforcement, coated fabric layers, fluoropolymer barriers and other engineered non-metallic materials.

The actual layer arrangement should be selected according to gas temperature, chemical composition, moisture, pressure conditions, required movement and design service life.

Thermal Protection and Flow Liner

Where the gas temperature exceeds the suitable continuous-use condition of the external sealing layer, internal insulation and a flow liner can be used to reduce the temperature reaching the flexible belt.

For high-velocity or particle-laden gas, the flow liner helps reduce direct impingement and abrasion on the flexible construction.

In applications subject to dust accumulation, a compressible insulation pillow or accumulation-control arrangement may be evaluated according to the duct orientation and operating conditions.

Material Selection

Flexible materials should be selected according to operating temperature, gas composition, corrosion, moisture, oxygen content, pressure or vacuum, gas velocity and dust abrasion.

Metal frames, clamping bars and flow liners can be manufactured from carbon steel, stainless steel, heat-resistant steel or other specified materials according to the project conditions.

If the gas temperature may fall below the dew point, material selection should also consider acidic condensate and wet flue-gas corrosion rather than only the maximum temperature.

Movement Capability

The flexible element can be engineered to accommodate axial compression, axial extension, lateral movement, angular deflection and selected combinations of these movements.

Actual allowable movement depends on joint dimensions, installed length, flexible-element profile, layer construction, operating temperature, pressure conditions and required cycle life.

The expansion joint should not support the weight of ductwork, equipment or insulation. Suitable anchors, guides and load-bearing structures remain necessary.

Suitable Service

This product is primarily intended for hot air, flue gas, industrial exhaust and selected corrosive process gases in relatively low-pressure or negative-pressure ducting systems.

Wet flue gas, acidic gas, severe corrosion, heavy dust loading, abnormal temperature excursions and pulsating pressure require project-specific material and structural evaluation.

It should not be selected as a conventional pressurized-liquid pipe joint, and rubber-joint pressure classes or hydrostatic test assumptions should not be applied without engineering confirmation.

Typical Applications

  • Power-plant boiler flue-gas ducting
  • SCR reactor inlet and outlet ducts
  • Flue-gas desulfurization and treatment systems
  • Industrial furnaces and high-temperature hot-air ducts
  • Fan inlet and outlet connections
  • Dust-collection and particle-laden gas systems
  • Cement, steel, metallurgical and chemical plants
  • Gas-turbine and heat-recovery exhaust systems

Installation Guidelines

  • Confirm the gas-flow direction and product orientation
  • Arrange the flow-liner overlap to suit the direction of flow
  • Verify duct dimensions, installed length and preset movement
  • Keep connection frames aligned and avoid twisting the flexible belt
  • Do not stretch or compress the joint to correct duct misalignment
  • Protect flexible materials from welding sparks and sharp objects
  • Protect insulation and flexible layers during site welding
  • Do not use the joint to support ductwork or equipment weight
  • Inspect the liner, flexible belt, clamps and sealing areas before operation

Operation and Maintenance

The flexible belt, metal frames, clamping components, internal flow liner, insulation and adjacent supports should be inspected periodically.

Inspection intervals should reflect the actual gas temperature, corrosion, dust loading, vacuum, vibration and frequency of operating-temperature changes.

Discoloration, hardening, cracking, abrasion, leakage, excessive deformation or localized overheating should prompt a review of the actual temperature, liner condition, insulation, system movement and duct support arrangement.

Information Required for Quotation

Please provide the following information so that the flexible layers, insulation, flow liner and metal frames can be properly evaluated:

  • Round diameter or rectangular duct dimensions
  • Installed length and available installation space
  • Normal, maximum and excursion gas temperatures
  • Ambient temperature and external surface-temperature requirements
  • Operating pressure, vacuum and pressure fluctuations
  • Gas composition, corrosion, moisture and dew-point conditions
  • Gas velocity, dust loading and particle abrasion
  • Required axial, lateral, angular and combined movement
  • Flange, frame, drilling or welded-connection requirements
  • Flow-liner, insulation and accumulation-control requirements
  • Installation position, quantity, packaging and destination port

We can review and customize high-temperature flue gas expansion joints according to operating conditions, duct dimensions, site sketches and project drawings. Final materials, dimensions, movement capacity and inspection requirements are subject to the approved 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

Which working conditions is High-Temperature Flue Gas Expansion Joint suitable for?
It is used for flue gas, ducting, dust collection, desulfurization, hot air and some corrosive gas pipelines. Structure should be confirmed by temperature, medium and movement.
What layers are used in a non-metallic expansion joint?
Typical layers include fabric belt, insulation, sealing layer, reinforcement, flange or clamp plates. Material combination depends on temperature and corrosion.
Is a liner or flow sleeve required?
For high velocity, dusty, abrasive or high-temperature service, a liner or flow sleeve is recommended to protect flexible layers and reduce wear.
Can non-standard sizes be supplied?
Yes. Non-metallic and flue duct expansion joints are commonly customized by duct size, flange hole layout and movement requirement.
What information is needed for a quotation?
Please provide DN/NPS, pressure class, working temperature, medium, connection type, movement, quantity and application position for High-Temperature Flue Gas Expansion Joint. Drawings or site photos help speed up confirmation.
Can this product be customized by project drawing?
Yes. High-Temperature Flue Gas 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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