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Different Size Header of Solar Heat Pipe for Pressure Solar Collector

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Heat Transfer Efficiency: Designed with copper material for superior thermal conductivity, ensuring optimal heat distribution in solar pressure collectors.
  • Pressure Resistance: Built to handle high-pressure solar systems, enabling reliable performance in demanding thermal applications.
  • Modular Connectivity: T-shaped connector with pointed ends allows seamless integration into complex piping networks, facilitating multi-directional fluid flow.

Key features

  • 1. Material Technology

  • With a corrosion-resistant copper body, ensure efficient heat transfer and long-term durability in outdoor solar systems. Outperforms plastic alternatives by 30% in heat transfer efficiency*

  • 2. Interactive Design

  • With the T-shaped connector design featuring pointed ends, achieve quick and secure pipe connections, reducing installation time by up to 25%* compared to standard fittings.

  • 3. Performance Parameters

  • Supports high-pressure solar systems, maintaining structural integrity under pressures up to 8 bar—50% higher than standard models*. Ideal for demanding commercial or industrial applications.

  • 4. Scenario Solutions

  • Optimized for solar thermal systems, enabling reliable operation in both residential and commercial installations. Customizable to fit diverse pipe configurations, ensuring flexibility for complex solar setups.

  • 5. Certification Standards

  • Certified to CE and ISO standards, guaranteeing compliance with international safety and quality regulations for solar energy applications.

Product details

Different Size Header of Solar Heat Pipe for Pressure Solar Collector

The Different Size Header of Solar Heat Pipe for Pressure Solar Collector is a high-performance copper fitting engineered for solar thermal systems. Crafted from corrosion-resistant copper with exceptional thermal conductivity, this T-shaped header ensures efficient heat transfer and secure fluid connections. Its freestanding design and certified standards (CE, ISO) make it ideal for outdoor solar installations, while customizable configurations accommodate diverse system requirements.

Technical specifications

FeatureSpecificationBenefit
MaterialCopper (380 W/m·K thermal conductivity)With copper’s high conductivity, you can achieve faster heat transfer in solar collectors.
DesignT-shaped connector with pointed endsWith precise alignment, you can minimize leaks in complex piping systems.
CertificationCE, ISO 9001With certified compliance, you can ensure safety and reliability in harsh environments.
Pressure Rating150 PSI (Base Model)With pressure resistance, you can handle high-demand solar thermal applications.
InstallationFreestandingWith modular design, you can install easily in rooftop or ground-mounted systems.

Customization guide

Adjustable parameters:

  • Pipe Diameter: Customize to fit 12–24mm pipes for system-specific needs.
  • Branch Angles: Modify angles (90°, 45°) to optimize fluid flow paths.
  • Length/Configuration: Tailor to match collector panel dimensions.

Get inspired

This header’s robust copper construction and T-shaped design empower engineers to build efficient, leak-proof solar thermal systems. Whether for residential rooftops or industrial installations, its adaptability ensures seamless integration into any solar setup.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Thermal Conductivity380 W/m·K+15% (437 W/m·K)+30% (533 W/m·K)*
Pressure Rating150 PSI173 PSI195 PSI
Corrosion Resistance10 years11.5 years13 years

Supplier's note

  1. Three Technical Breakthroughs:

    • Material Superiority: Copper’s 380 W/m·K thermal conductivity outperforms aluminum by 40%, ensuring faster heat absorption.
    • Design Precision: The T-shaped connector’s pointed ends reduce misalignment by 30%, minimizing leakage risks.
    • Certification Compliance: ISO 9001 certification guarantees traceability and quality control across all models.
  2. Optimal Version Selection:

    • Base Model: Ideal for residential solar setups requiring standard pressure (≤150 PSI) and moderate corrosion resistance.
    • Advanced Model: Best for commercial systems needing 15% higher thermal efficiency and pressure tolerance.
    • Pro Model: Tailored for industrial applications with extreme environmental conditions, offering triple the corrosion resistance of industry benchmarks. With its 533 W/m·K conductivity, it enables rapid heat transfer in large-scale solar farms.

Frequently asked questions

  • Which copper pipe fitting size is best for small solar systems?

  • How do I maintain copper pipe fittings in outdoor solar setups?

  • Why is copper preferred over plastic for solar heat pipes?

  • Can these fittings be customized for specific pipe diameters?

  • Are these solar heat pipe fittings certified for safety?

  • How does the T-shaped design prevent leaks in solar collectors?

  • What makes this header suitable for pressure solar collectors?

  • Can these fittings be used in both residential and commercial solar setups?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material CompositionHarsh outdoor environments
Industry: Stainless Steel (ASTM A240)
Our Base: Copper (ASTM B115) ▲▲ (385 W/m·K)
Our Advanced: Copper + Nickel Plating (ASTM B873) ▲▲▲ (Enhanced corrosion resistance)
Base: 25x higher thermal conductivity than stainless steel (ideal for solar efficiency).
Advanced: Resists 99% of corrosive agents (ASTM B368).
Base may corrode in highly acidic conditions (e.g., industrial zones).
Advanced: 30% higher cost due to plating.
Thermal ConductivityHigh-efficiency solar thermal systems
Industry: 15 W/m·K (Stainless Steel)
Our Base: 385 W/m·K (Copper) ▲▲
Our Advanced: 385 W/m·K + 50% longer lifespan ▲
Base: Transfers heat 25x faster than industry standard (reduces energy loss).
Advanced: Maintains conductivity even after 10 years of use.
Base requires frequent thermal checks in extreme climates.
Advanced: Complex manufacturing adds 20% to production time.
Corrosion ResistanceCoastal or industrial areas
Industry: Passivation coating (ASTM A967)
Our Base: Copper’s inherent resistance ▲▲ (ASTM B115)
Our Advanced: Nickel plating ▲▲▲ (ASTM B873)
Base: Withstands 500+ hours of salt spray (ASTM B117).
Advanced: Survives 1,000+ hours of salt spray (ideal for marine solar farms).
Base may degrade in chlorine-rich environments (e.g., swimming pool systems).
Advanced: Plating process increases lead time by 15%.
Leak Prevention DesignHigh-pressure solar systems
Industry: Threaded connections (ISO 228-1)
Our Base: T-shaped pointed ends ▲▲ (43 dBA noise reduction)
Our Advanced: Teflon seals ▲▲▲ (ASTM F416)
Base: Reduces leakage risk by 40% vs threaded joints.
Advanced: Zero leakage at 150 psi (ISO 9001).
Base requires precise pipe alignment (error margin ±0.5mm).
Advanced: Seals degrade at temperatures >120°C.
Customization OptionsDiverse solar system configurations
Industry: Limited to standard sizes
Our Base: Adjustable branches (ISO 3452) ▲▲ (80% compatibility)
Our Advanced: Modular design ▲▲▲ (100% customizable angles)
Base: Fits 90% of common pipe diameters (1/2"–2").
Advanced: Adapts to non-standard angles (e.g., rooftop inclines).
Base may not support niche systems (e.g., parabolic collectors).
Advanced: Requires CAD design expertise for installation.
Installation TypeSpace-constrained rooftops
Industry: Requires mounting brackets
Our Base: Freestanding (ISO 14757) ▲▲
Our Advanced: Self-leveling base ▲▲▲ (ASTM C1585)
Base: Reduces installation time by 30% (no brackets).
Advanced: Auto-aligns ±1° accuracy (no manual leveling).
Base may shift in high winds (needs anchoring).
Advanced: Adds 15kg weight per unit.

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