Ligne de production d'extrusion d'isolant à haute vitesse

Ligne de production à grande vitesse pour l'extrusion d'isolants destinés aux câbles en PVC, XLPE, PE et LSHF. Vitesses de ligne pouvant atteindre 500 à 1 200 m/min, tolérance d'épaisseur de paroi de ±5% et excellente concentricité. Idéale pour les fils de bâtiment, les câbles THHN/THWN, ainsi que les câbles d'alimentation et de commande. Configurations sur mesure, régulation en boucle fermée et assistance technique complète. Demandez dès maintenant des solutions sur mesure.

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Description

In today’s competitive global wire and cable market, insulation and sheathing quality directly determines electrical performance, mechanical durability, fire safety compliance and total cost of ownership. The RLB Ligne de production d'extrusion d'isolant à haute vitesse (models REK-100, REK-120, REK-150, REK-180) is a robust, technology-driven solution engineered specifically for high-precision extrusion of PVC, PE, XLPE and Low Smoke Halogen-Free (LSHF/HFFR) compounds onto power cables, building wires, control cables and telephone lines.

This advanced building wire extrusion line and extrusion machine for THHN cables supports conductor cross-sections from 10 mm² to 1000 mm² and finished diameters up to Φ140 mm, with maximum line speeds reaching 180 m/min. It performs both single-layer insulation and dual-layer (insulation + sheath) processes, including dedicated tandem nylon jacketing for premium THHN/THWN conductors that dominate North American, European, Canadian and Middle Eastern building-wire markets.

Insulation and Sheathing Extrusion Production Line in modern cable factory

What Is a High Speed Insulation Extrusion Production Line and How Does It Function?

A High Speed Insulation Extrusion Production Line continuously coats conductors with insulation materials such as PVC, XLPE (silane or peroxide cross-linkable), PE or Low-Smoke Halogen-Free (LSHF/HFFR) compounds. The conductor is paid off, optionally preheated, guided through a precision cross-head where molten polymer is extruded under controlled pressure and temperature, then rapidly cooled in multi-pass troughs, diameter-monitored in closed loop, spark-tested, and taken up at synchronized speed. Advanced lines support single-layer, dual-layer (insulation + skin/stripe) or tandem processes and can incorporate nylon jacketing for THHN/THWN conductors.

Core process sequence:

  1. Motorized or dual-shaft pay-off with tension control
  2. Conductor preheater (optional, improves adhesion and reduces voids)
  3. Main extruder (screw diameters typically Φ45–Φ200 mm, L/D 25:1–26:1) with multi-zone temperature control
  4. Precision cross-head (center-fed or adjustable) for concentric application
  5. Multi-pass water cooling trough with air wipe
  6. Laser diameter gauge + closed-loop feedback to extruder and haul-off
  7. Spark tester (typically 5–15 kV)
  8. Capstan or caterpillar haul-off
  9. Automatic dual take-up or coiling system

Sheathing Line for Building Wire & Cables3

Technical Comparison: High-Speed vs Conventional Insulation Extrusion

ParamètreHigh-Speed Insulation Extrusion LineConventional Extrusion Line
Typical max line speed350–1200 m/min (small sizes); 45–180 m/min (large)50–200 m/min
Wall-thickness tolerance±5 % or better with closed-loop control±8–10 % common
ConcentricityHigh (European-style cross-heads)Modéré
Materials supportedPVC, XLPE, PE, LSHF/HFFR, NylonMainly PVC/PE
Système de contrôlePLC + laser feedback closed-loopOften open-loop
Scrap rateLow (real-time adjustment)Plus haut
Suitable conductor range0.5–1000 mm²Limité
Typical applicationsBuilding wire, power, control, THHNGeneral low-speed production

High-speed lines reduce unit production cost through higher throughput while maintaining dielectric integrity required for modern power and building cables.

Core Technology & Process Advantages

Flexible Material Compatibility

Optimized screw geometry and multi-zone temperature control ensure excellent melt homogeneity for PVC (cost-effective processing), XLPE (90–110°C heat resistance plus moisture/chemical protection), PE and LSHF/HFFR compounds, minimizing scorch risk and supporting consistent crosslinking when required.

Intelligent Closed-Loop Automation

Mitsubishi PLC + MMI system with real-time laser diameter feedback automatically adjusts extruder output and line speed. This closed-loop control reduces scrap, maintains tight dimensional tolerances and ensures consistent compliance with UL 83, IEC 60502 and GB standards — a key differentiator versus conventional open-loop lines.

THHN-Specific Tandem Extrusion

Dedicated configuration applies PVC insulation and Nylon (PA) outer jacket in a single continuous pass. The result is superior abrasion resistance, chemical protection and low-friction conduit performance while eliminating intermediate handling steps and improving overall productivity.

Complete Auxiliary Integration

On-line aluminum strip longitudinal taping, asphalt/graphite coating, automatic feeding, granule dryers, color masterbatch metering, laser/ink printers, spark testers, diameter gauges and stamping machines create a true turnkey production system.

Configurable Layout Flexibility

Multiple pay-off and take-up options (drum, coil or dual) minimize downtime and allow seamless integration with existing upstream drawing/stranding lines or downstream armoring and jacketing equipment.

Machines for the production of high and extra-high voltage cables

Typical Technical Parameters of Current High-Speed Lines

Model / Screw ConfigConductor Cross-SectionFinished OD (approx.)Max Line SpeedMax Extrusion Output (PVC)Applications typiques
70/45 or 80/450.5–10 mm²1.9–7.6 mmup to 350 m/min150–230 kg/hBuilding wire, flexible cable
REK-100 / Φ10010–240 mm²up to 45 mm180 m/minSmall power & building cables
REK-120 / Φ12025–630 mm²up to 80 mm150 m/minMedium power cables
REK-150 / Φ15050–800 mm²up to 100 mm60 m/minPower & control cables
REK-180 / Φ180120–1000 mm²up to 140 mm45 m/minLarge power cables
Fine-wire high-speed<0.5 mm diameter500–2000 m/minlowerMagnet wire, automotive, data

Screw L/D ratios of 25:1–26:1, multi-zone heating, and optimized screw geometry ensure melt homogeneity and minimize scorch risk for heat-sensitive compounds such as XLPE and LSHF.

High Speed Cable Extruing Machine Production Line Wire Cable-DoingCable

Principales applications dans la fabrication de câbles

  • Câbles d'alimentation — Low-, medium- and high-voltage cables requiring XLPE or LSHF insulation and sheathing for excellent electrical performance and fire safety in infrastructure, utility and industrial projects.
  • Fils pour bâtiment et installation — PVC-insulated and sheathed cables (BV, BVV, NYY) and premium THHN/THWN conductors with tandem nylon jacketing for superior abrasion resistance and fast, low-friction conduit installation.
  • Câbles de commande et d'instrumentation — Precise, concentric insulation and sheathing for reliable signal transmission in demanding industrial environments.
  • Câbles de télécommunication et de données — High-quality PE or LSHF compounds for LAN, telephone and data cables where low attenuation and fire performance are critical.
  • Câbles spéciaux — Flame-retardant, fire-resistant and low-smoke halogen-free constructions meeting the most demanding international fire safety standards.

Finished THHN and THWN building wires – typical high-quality output

Standards, Material Performance and Process Data Support

Insulation thickness and concentricity must satisfy IEC 60502 (power cables), UL 83 (building wire) and corresponding GB standards. Typical operating temperatures: PVC 160–190 °C, PE 180–210 °C, XLPE up to 280–290 °C (process), with final cable ratings of 70–90 °C continuous for PVC and 90 °C continuous / 130 °C emergency for XLPE.

Modern lines incorporate Mitsubishi or equivalent PLC systems with real-time laser feedback that automatically adjusts extruder output and line speed, ensuring dimensional stability and reducing material waste. Spark testing verifies dielectric integrity online.

Industry data from 2024–2026 production lines confirm that closed-loop high-speed systems achieve lower scrap rates and consistent compliance compared with open-loop conventional equipment.

Practical Considerations and Failure Prevention

  • Scorch and gelation of XLPE/LSHF: Maintain precise multi-zone temperature profiles and avoid excessive residence time; select screw geometry matched to compound viscosity.
  • Wall-thickness variation: Closed-loop laser control and stable haul-off tension are mandatory at high speeds.
  • Cooling insufficiency: Cooling trough length must scale with speed and wall thickness (approximate rule: 1 m trough per 1 mm wall thickness per 10 m/min).
  • Concentricity loss: Use precision European-style or adjustable cross-heads; ensure conductor is straight and properly preheated.
  • Surface defects: Proper melt homogenization, clean die and correct air-wipe settings prevent bubbles or voids.
  • Line synchronization: All drives (extruder, haul-off, take-up) must operate under coordinated PLC control to avoid stretching or buckling.

Proper process control yields insulation with uniform dielectric properties, high mechanical strength and long-term reliability under thermal and electrical stress.

Sheathing Line for Building Wire & Cables2

Key Takeaways

The High Speed Insulation Extrusion Production Line delivers high throughput (up to 350–1200 m/min depending on size), tight dimensional control (±5 % wall thickness), excellent concentricity and full compatibility with PVC, XLPE, PE and LSHF compounds required by modern power and building-cable specifications. Closed-loop automation, optimized screw design and multi-zone temperature control minimize scrap while ensuring compliance with IEC 60502, UL 83 and GB standards.

Demande d'informations for a detailed technical quotation, custom configuration options, layout design recommendations or factory visit arrangement. Our engineering team provides complete turnkey solutions, installation support, operator training and long-term technical partnership tailored to your production goals.

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