Chengdu Yaheng Refrigeration Fittings Co., Ltd.
Chengdu Yaheng Refrigeration Fittings Co., Ltd.
Amandalu@cdyhcl.com

ACR Copper Header & Copper Tubing Manifold

Inquire for ACR Copper Header & Copper Tubing Manifold
copper pipe manifold
copper plumbing manifold
plumbing copper manifold
copper pex manifold
copper tubing manifold
Introduction

An ACR copper header is a fitting used in air conditioning and refrigeration (ACR) systems to connect multiple ACR copper tubes to the main refrigerant supply or distribution lines. One ACR copper header has multiple ports or connections, often in a manifold-like configuration, to which ACR copper tubes can be connected. ACR copper headers are typically made from high-quality copper for its excellent heat transfer properties and resistance to corrosion, making it suitable for refrigeration applications. If you want to know more about copper pex manifold, or copper tubing manifold, please do not hesitate to contact Yaheng AC copper pipe fittings manufacturer.


How to Install and Maintain ACR Copper Headers & Copper Tubing Manifold?


  • Installation of ACR Copper Headers and Copper Plumbing Manifold involves precise measurement and welding to ensure airtight connections. Headers should be positioned strategically to facilitate efficient refrigerant flow. Apart from these, proper insulation minimizes heat loss.

  • As for routine maintenance, it includes checking for leaks, corrosion, or damage. Leaks must be repaired promptly, and damaged headers replaced. Regular cleaning removes dirt and debris that can impede refrigerant flow. Periodic pressure and temperature checks help assess system performance.

When it is necessary, professional technicians are able to handle installation and maintenance to ensure optimal HVAC efficiency and safety.


Features Of Copper Tubing Manifold


  • High Durability: ACR plumbing copper manifolds are made from high-quality copper, which provides excellent durability and resistance to corrosion. This ensures long-lasting performance and reliability in demanding air conditioning and refrigeration environments.

  • Pressure Resistance: ACR copper tubing manifolds are designed to withstand high-pressure conditions commonly found in air conditioning and refrigeration systems. Copper plumbing manifolds can handle the pressure fluctuations and temperature differentials associated with these applications without compromising performance.

  • Precise Control: ACR copper plumbing manifold allows for precise control of refrigerant flow and distribution. Copper plumbing manifold feature multiple ports or outlets that can be connected to different components or units, enabling efficient and accurate refrigerant management.

  • Easy Installation: ACR copper tubing manifolds are designed for easy installation. Copper pipe manifolds often come with pre-drilled mounting holes or brackets, allowing for quick and secure attachment to the system. This simplifies the installation process and saves time during system setup.

  • Compatibility: ACR copper tubing manifolds are compatible with various refrigerants commonly used in air conditioning and refrigeration systems. Copper plumbing manifold can accommodate different types of refrigerants, ensuring versatility and adaptability to different system requirements.

  • Leak-Free Connections: ACR copper tubing manifolds are typically equipped with reliable fittings and connections that ensure leak-free operation. This is crucial in air conditioning and refrigeration systems, where any refrigerant leaks can lead to performance issues and environmental concerns.

  • Compact Design: ACR copper tubing manifolds are often designed to be compact and space-efficient. This allows for easy integration into tight spaces or equipment compartments, optimizing the use of available space in air conditioning and refrigeration systems.


Have Any Questions? Get in Touch With Us Now!
Email us: Amandalu@cdyhcl.com Call us on: +86-13689084504
Add: 216 Longan Road, Longquanyi Economic Development Zone, Chengdu city, Sichuan Province, China