Urban Infrastructure Krah Pipe Spiral Structured Wall Pipe Electrofusion

Lieu d'origine:CHINE
Nom de marque:xinsen
Quantité minimum de commande:Négociable
Emballage standard:Emballage standard
Délai de livraison:7-15 jours ouvrables
Conditions de paiement:LC, D/A, D/P, T/T, Western Union, MoneyGram
Caractéristiques
Mettre en évidence:

Urban Infrastructure Krah Pipe

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Spiral Structured Wall Pipe

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Krah Pipe Spiral Structured

Joint Type:
Électrofusion
Chemical Resistance:
H2S, sols acides/alcalins
Pipe Type:
Mur structuré en spirale
Material:
Polyéthylène (PE)
Exterior Structure:
Côte enroulée en spirale
Interior Surface:
Ultra-lisse
Description de produit
Product Profile

Polyethylene (PE) Spiral Structured Wall Pipe (Krah Pipe) is an advanced large-diameter piping system optimally suited for trenchless installation methodologies and urban infrastructure renewal projects. Fabricated from premium HDPE resin using a hot-state spiral winding process with controlled air cooling, it delivers the unique combination of high ring stiffness, lightweight handling, and joint integrity essential for micro-tunneling, pipe jacking, slip-lining, and horizontal directional drilling applications.

Krah Pipes incorporate a factory-integrated socket-and-spigot electrofusion jointing mechanism with permanently embedded electrical heating elements. Field jointing requires only standard electrical power to achieve a homogeneous molecular fusion weld, producing a 100% leak-proof system that eliminates the gasket deterioration, joint displacement, and infiltration problems that compromise mechanically jointed pipes during trenchless installation and long-term service.

Widely specified for urban utility tunnel drainage, underground cable ducting, trenchless sewer rehabilitation, pipe-jacked culvert crossings, and municipal drainage network expansion beneath existing infrastructure, Krah pipes enable infrastructure development with minimal surface disruption. This technology has received official designation as a Top-Priority Promoted Product by MOHURD for urban underground infrastructure modernization.

Trenchless Installation Advantages
Optimized for Pipe Jacking & Micro-Tunneling

The Krah Pipe's smooth external profile and high axial compressive strength make it ideally suited for pipe jacking operations. The continuous spiral construction provides uniform load transfer along the full pipe length during jacking, while the integrated electrofusion joint ensures the pipeline remains fully sealed after installation beneath roadways, railways, and waterways.

Unlike segmented concrete jacking pipes that rely on gasketed joints susceptible to displacement during installation, the molecularly fused Krah Pipe joint maintains 100% integrity throughout the jacking process and the entire service life.

Superior Slip-Lining & Rehabilitation Performance

With its exceptionally smooth outer surface and high ring stiffness-to-weight ratio, Krah Pipe can be inserted into deteriorating existing pipelines with minimal hydraulic capacity reduction. The lightweight construction enables longer insertion lengths and reduced handling equipment compared with concrete and steel rehabilitation alternatives.

Ground Movement & Seismic Resilience

The flexible pipe-soil interaction characteristic of HDPE structured wall pipes provides outstanding resistance to differential settlement, seismic ground motion, and traffic-induced vibration. This ductile behavior eliminates the brittle fracture and joint separation failures that compromise rigid piping systems in unstable ground conditions and earthquake-prone regions.

Trenchless & Infrastructure Applications
  • Urban Utility Tunnel Drainage: Integrated drainage networks within multi-utility underground corridors serving power, telecom, water, and gas infrastructure.
  • Micro-Tunneling & Pipe Jacking: Culvert and drainage crossings beneath highways, railways, airport runways, and protected structures with zero surface disruption.
  • Slip-Lining Rehabilitation: Structural renewal of failing concrete, brick, and metal sewers and culverts without open-cut excavation in congested urban environments.
  • Underground Cable Duct Banks: Protective conduit systems for high-voltage power transmission cables and fiber optic communication networks in urban infrastructure corridors.
  • Railway & Highway Drainage: Track-side and roadside subsurface drainage systems requiring rapid installation with minimal disruption to transportation operations.
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