HP 5000

 

HP 5000

HP 5000 has an extensive range of twin and single wall components with 25mm and 50mm cavity insulation, giving it the versatility required to meet the widest range of applications. It can be used internally and externally.

 

A typical range of applications would include:

  • Diesel generators and turbines
  • Boilers (high or low temperature)
  • Smoke and waste extraction
  • Refuse and laundry chutes
  • Lightweight particle movement
  • Kitchen extraction

Application

An engineered multi purpose prefabricated ducting system suitable for high or low temperatures and fire rated applications.

HP 5000 is a lightweight twin wall insulated and single wall duct system specifically designed to handle both pressure and non-pressurised applications. As outlined in the product’s CE designation, the system is designed to operate under pressure up to 5000Pa (European Standard Designation H1) and with continuous operating flue gas temperatures up to 600°C (EuropeanStandard Designation T600).

The system is tested for Thermal Shock at 1000°C.

Product Description

The Twin Wall System consists of:

 

Inner Liner 316L Stainless Steel; seam welded continuous construction with an engineered flange at each end. Available in 0.6mm and 1mm inner liner thickness.

 

Internal Diameters: 120, 130, 150, 180, 200, 230, 250, 300, 350, 400, 450, 500, 550, 600, 650, 700, 750 & 800mm.

 

The 0.6mm option is available for diameters from 120 to 350mm. 25mm or 50mm cavity filled with a mineral fibre insulating blanket. (25mm and 50mm air cavity versions are available on request).

 

Outer casing 304 stainless steel; 0.6mm for 120 to 550mm diameters and 0.7mm for 600 to 800mm diameters.

 

The specially designed joint between the components creates a pressure resistant and structural liner.

 

Forming the joint

 

The components are flanged at both ends with a spigot at the male end. The spigot protrudes by 25mm to ensure correct alignment of the joint and seating of the gasket on the engineered flanges.

 

A gasket is pre-installed on the male end of the component for ease of installation.

 

When two components are butted together the joint is secured using a V Band.

 

No sealants are required as the joints come with a pre-installed gasket.

The Single Wall System consists of:

 

316L Stainless Steel; seam welded continuous construction with an engineered flange at each end. Available in 0.6mm and 1mm.

 

Internal Diameters: 120, 130, 150, 180, 200, 230, 250, 300, 350, 400, 450, 500, 550, 600, 650, 700, 750 & 800mm.

 

The 0.6mm option is available for diameters from 120 to 350mm.

 

The specially designed joint between the components creates a pressure resistant and structural liner.

 

Forming the joint

 

The components are flanged at both ends with a spigot at the male end. The spigot protrudes by 25mm to ensure correct alignment of the joint and seating of the gasket on the engineered flanges.

 

A gasket is pre-installed on the male end of the component for ease of installation.

 

When two components are butted together the joint is secured using a V Band.

 

No sealants are required as the joints come with a pre-installed gasket.

Expansion Allowance

 

As the method of assembly for HP 5000 provides a continuous structural inner wall, normal expansion of the duct in its entirety must be allowed for by the use of

expansion components.

 

Performance

Working pressure:

With Expansion Lengths up to 40Pa

With Expansion Bellows up to 5000Pa

 

Maximum Temperature Rating: continuous 600°C (European Standard Designation T600).

 

HP 5000 is available in a range of 18 internal diameters from 120mm to 800mm. The flange to flange installed straight lengths are 307, 470 and 960mm long. The external diameter is dependent on the width of the cavity – 25mm or 50mm. Specialised components can be manufactured to suit application requirements.

 

Supports

 

HP 5000 must be supported using only Schiedel Rite-Vent approved components, in conjunction with suitable steel work as necessary. Care is needed to ensure that supports are capable of accommodating expansion.

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