DHP Copper Coil, also known as Deoxidized High Phosphorus Copper, is widely used in electrical and heat transfer applications due to its excellent thermal and electrical conductivity. The C12200 grade ensures high durability and superior corrosion resistance. With its deoxidized composition, it minimizes the risk of porosity during manufacturing processes. This copper coil is highly reliable for plumbing, HVAC, and refrigeration systems. Its uniform mechanical properties make it ideal for bending, forming, and drawing. Additionally, DHP copper maintains stable performance under high temperatures. It is recognized for both domestic and industrial applications.
The primary composition of C12200 DHP Copper Coil includes copper with a phosphorus content ranging between 0.015% to 0.040%. This phosphorus addition enhances corrosion resistance, especially against acidic environments. It also contributes to the material’s improved strength and fatigue resistance. The coil is free from oxygen, preventing potential defects during thermal processing. This makes it an optimal choice for seamless tube manufacturing. Its high purity copper content ensures excellent electrical conductivity. The consistent chemical makeup allows predictable mechanical performance in critical applications.
DHP Copper Coil exhibits outstanding electrical conductivity, typically around 97% IACS (International Annealed Copper Standard). This high conductivity makes it ideal for electrical wiring and electronic components. Thermal conductivity is also superior, allowing efficient heat transfer in heat exchangers and refrigeration systems. The coil’s structure enables uniform heat distribution during manufacturing processes. Its performance remains stable even under repeated heating and cooling cycles. As a result, C12200 coils are preferred in high-reliability electrical and thermal applications. These properties combine durability with performance efficiency.
DHP Copper Coil offers a good balance of strength and flexibility. With tensile strength typically ranging from 210–250 MPa, it can withstand significant mechanical stress without deformation. Its elongation percentage ensures the material can bend and form into various shapes without cracking. This makes it ideal for coil and tube production. The material also exhibits excellent fatigue resistance, ensuring long service life in demanding applications. DHP copper is resistant to wear, making it suitable for repeated use. Its mechanical consistency allows it to meet strict engineering standards.
C12200 DHP Copper Coil is naturally resistant to corrosion due to its phosphorus content. This property makes it highly suitable for plumbing and water supply systems. The coil can withstand exposure to mild acids and alkaline solutions without significant degradation. Its resistance to dezincification and stress corrosion cracking enhances longevity in industrial systems. DHP copper maintains surface integrity, ensuring reliable performance over time. The corrosion resistance reduces maintenance requirements. This makes it a cost-effective solution for long-term applications.
DHP Copper Coils are easy to manufacture and form into tubes, sheets, and wires. The deoxidized nature of the material reduces porosity, ensuring smooth processing during extrusion and rolling. Its ductility allows bending, flaring, and shaping without compromising mechanical strength. The coil can be brazed or soldered easily, providing flexibility in assembly. It is also suitable for precision machining processes. Manufacturers favor DHP copper for seamless and welded tube production. This versatility supports diverse industrial and commercial applications.
DHP Copper Coil is widely used in plumbing due to its corrosion resistance and durability. It ensures safe and reliable water transport in residential, commercial, and industrial buildings. The material resists microbial growth, making it hygienic for potable water systems. Its flexibility allows easy installation around corners and complex layouts. DHP copper coils reduce the risk of leaks and maintenance issues. They also withstand pressure variations without failure. Plumbing systems using C12200 enjoy extended service life.
In HVAC applications, DHP Copper Coils are used for air conditioning and refrigeration tubing. Their high thermal conductivity improves heat transfer efficiency. The material’s durability ensures long-lasting performance under high temperature and pressure conditions. DHP copper is compatible with refrigerants, preventing corrosion and leaks. The coil’s flexibility allows efficient routing through HVAC units. It reduces energy consumption by maintaining optimal thermal performance. HVAC systems using C12200 are reliable and maintenance-friendly.
| Property | Unit | Value / Range | Remarks |
|---|---|---|---|
| Grade | - | C12200 | Deoxidized High Phosphorus Copper |
| Purity | % | ≥ 99.9% | High conductivity copper |
| Phosphorus Content | % | 0.015 - 0.040 | Enhances corrosion resistance |
| Electrical Conductivity | % IACS | ≥ 97% | Excellent electrical performance |
| Tensile Strength | MPa | 210 - 250 | High mechanical strength |
| Elongation | % | 30 - 45 | Good ductility |
| Hardness | HB | 60 - 90 | Suitable for forming and bending |
| Melting Point | °C | 1083 | High thermal stability |
| Coil Size | mm | Standard OD: 6 - 200, Thickness: 0.1 - 3.0 | Custom sizes available on request |
| Standard | - | ASTM B152 / JIS H3300 | International quality compliance |
C12200 DHP Copper Coil is also ideal for electrical components and wiring. Its high electrical conductivity ensures minimal power loss. The coil is used in transformers, motors, and other electrical devices requiring stable conductivity. Phosphorus content prevents oxidation during high-temperature applications. Its mechanical flexibility enables easy winding and shaping into coils. DHP copper’s reliability enhances the longevity of electrical equipment. Safety and performance are ensured in critical industrial installations.
DHP Copper Coil is fully recyclable, contributing to sustainable manufacturing practices. It maintains performance even after multiple recycling cycles. The material does not release harmful substances during its lifecycle. Its durability reduces the need for frequent replacement, minimizing environmental impact. Water and energy efficiency are improved in plumbing and HVAC systems. Choosing C12200 copper supports green building certifications. This makes it a preferred material for eco-friendly projects.
C12200 DHP Copper Coil complies with international standards such as ASTM B152 and JIS H3300. These standards ensure consistent chemical and mechanical properties. Quality checks include conductivity, tensile strength, and corrosion resistance testing. Suppliers provide certification to guarantee material performance. Compliance ensures safety and reliability in industrial and commercial applications. The coil meets requirements for both domestic and global markets. This gives manufacturers confidence in product performance.
| Element | Symbol | Content (%) | Remarks |
|---|---|---|---|
| Copper | Cu | ≥ 99.9 | Main constituent for high conductivity |
| Phosphorus | P | 0.015 - 0.040 | Improves corrosion resistance and strength |
| Oxygen | O | ≤ 0.02 | Low oxygen due to deoxidation process |
| Silver | Ag | ≤ 0.02 | Minor impurity |
| Lead | Pb | ≤ 0.005 | Trace amounts only |
| Iron | Fe | ≤ 0.05 | Minor impurity affecting mechanical properties |
| Other Elements | - | ≤ 0.05 | Total of all other residuals |
Proper handling and storage of DHP Copper Coil are essential to maintain its quality. Coils should be stored in dry, ventilated areas to prevent surface oxidation. Avoid contact with acidic or alkaline materials during storage. Use protective packaging to prevent scratches and dents. During transport, secure the coils to minimize mechanical damage. Proper handling ensures long-term durability and performance. Regular inspection prevents any early-stage corrosion or deformation.
Compared to ETP Copper (C11000), DHP Copper (C12200) offers enhanced corrosion resistance. Its mechanical strength is slightly higher, making it suitable for demanding applications. DHP copper can be used in both hot and cold water systems without degradation. It also allows easier brazing and joining due to deoxidized properties. These advantages make C12200 the preferred choice in plumbing, HVAC, and electrical systems. It balances cost, durability, and performance efficiently.
| Property | Unit | Value / Range | Remarks |
|---|---|---|---|
| Tensile Strength | MPa | 210 - 250 | High strength suitable for bending and forming |
| Yield Strength | MPa | ≥ 70 | Ensures structural integrity under load |
| Elongation | % | 30 - 45 | Good ductility for fabrication and bending |
| Hardness | HB | 60 - 90 | Brinell hardness indicating mechanical resistance |
| Conductivity | % IACS | ≥ 97 | Excellent electrical conductivity |
| Fatigue Resistance | - | High | Resistant to repeated stress cycles |
| Bending Ability | - | Excellent | Can be formed into coils, tubes, and sheets without cracking |
DHP Copper Coil, also known as Deoxidized High Phosphorus Copper, is a high-purity copper alloy with added phosphorus for corrosion resistance and mechanical strength. It is commonly used in plumbing, HVAC, refrigeration, and electrical applications.
C12200 DHP Copper Coil offers excellent electrical and thermal conductivity, good ductility, high tensile strength, and superior corrosion resistance. It is also easy to form, bend, and join through brazing or soldering.
The phosphorus content typically ranges from 0.015% to 0.040%. This small addition improves corrosion resistance, reduces porosity, and enhances mechanical strength without affecting conductivity.
It is widely used in plumbing systems, HVAC and refrigeration coils, electrical wiring, heat exchangers, and industrial applications that require corrosion resistance and high thermal/electrical conductivity.
Yes, DHP Copper Coil is highly ductile and can be bent, flared, or shaped into coils and tubes without cracking, making it ideal for complex plumbing and HVAC installations.
DHP Copper has added phosphorus which improves corrosion resistance and mechanical strength compared to ETP Copper. Both have high conductivity, but DHP is preferred for applications involving water or heat exposure.
DHP Copper Coil generally complies with ASTM B152, JIS H3300, and other international standards to ensure consistent chemical and mechanical properties for industrial and commercial applications.
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