Copper Link International is a prominent manufacturer, stockist, and exporter of copper forged fasteners, offering high-quality solutions for various industries, including electrical, construction, automotive, and industrial applications. Copper forged fasteners are highly sought after for their exceptional strength, durability, and resistance to corrosion, making them ideal for use in environments where reliability and performance are critical. These fasteners, such as bolts, nuts, screws, washers, and custom parts, are produced through a forging process that improves their mechanical properties, ensuring they meet stringent industry standards and customer specifications.
As a manufacturer, Copper Link International utilizes advanced forging techniques, including hot and cold forging, to produce copper fasteners that exhibit superior strength and precision. The forging process aligns the copper's grain structure, making the fasteners stronger and more durable than cast alternatives. The company’s manufacturing facilities are equipped with state-of-the-art machinery capable of producing both standard and custom-sized copper fasteners, designed to meet the specific needs of a wide range of industries. Their copper fasteners are available in various grades, such as Electrolytic Tough Pitch (ETP) copper and oxygen-free copper (OFC), offering superior conductivity and corrosion resistance.
Copper Link International is also a trusted stockist of copper forged fasteners, maintaining a large inventory to meet the immediate needs of its global clientele. The company stocks an extensive range of copper fasteners, available in a variety of sizes, grades, and finishes, ensuring customers can find the exact components they require for their projects. Whether for large-scale industrial applications or smaller, specialized needs, Copper Link International’s stock of forged copper fasteners provides quick and easy access to high-quality materials. Their reliable supply chain ensures customers experience minimal lead times, helping to maintain efficiency in production and construction timelines.
Specification | Description | Copper Forged Fasteners |
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Material Grade | The composition of the copper alloy used for the fasteners. | Electrolytic Tough Pitch (ETP) Copper (C11000), Oxygen-Free Copper (C10200), Copper Alloys (e.g., Brass, Bronze) |
Size/Dimensions | The range of sizes and dimensions available for forged fasteners. | Diameter: 5 mm to 100 mm, Length: Customizable based on application (e.g., bolts, nuts, screws, washers) |
Thread Type | Type of thread design for fastening applications. | Unified Thread Standard (UTS), Metric Thread, Custom Threads as per requirements |
Strength/Hardness | Measurement of the fastener’s strength or resistance to deformation. | High tensile strength and hardness (typically around 150-250 MPa for ETP Copper) |
Tensile Strength | The maximum stress a fastener can withstand while being stretched before breaking. | 210–300 MPa (depending on copper grade and alloy) |
Yield Strength | The amount of stress at which the fastener will deform plastically. | 140–250 MPa (varies based on alloy and temper) |
Corrosion Resistance | The ability of copper fasteners to withstand corrosion in various environments. | Excellent resistance to corrosion and oxidation, especially in non-acidic environments |
Electrical Conductivity | The ability to conduct electricity, important for electrical applications. | High electrical conductivity (58-60% IACS for ETP Copper) |
Thermal Conductivity | The ability to conduct heat, suitable for high-temperature applications. | 398 W/m·K (for pure copper) |
Finish/Coating | Surface treatment or coating applied to enhance properties. | Bright finish, Satin finish, Nickel Plating, Tin Plating (for additional corrosion resistance) |
Temperature Resistance | The operational temperature range of the fasteners. | Typically withstands temperatures up to 200°C for long-term use, with higher thresholds in specific alloys. |
Standard Compliance | Industry standards and certifications the fasteners comply with. | ISO 9001, ASTM B154 (for copper fasteners), DIN 934 (for nuts), BS 1083 (for bolts and washers) |
Applications | Industries and applications where these fasteners are typically used. | Electrical systems, Power generation, Telecommunications, HVAC, Marine, Automotive, Industrial machinery |
Finishing Options | The surface finish to improve durability or appearance. | Polished, Electroplated, Passivated, Blackened (for aesthetic or corrosion protection |
As an exporter, Copper Link International has built a strong reputation for delivering high-quality copper forged fasteners to customers worldwide. The company exports its products to regions including North America, Europe, the Middle East, and Asia, catering to industries that require dependable fasteners for critical applications. Copper Link International’s efficient logistics network allows for timely deliveries and ensures compliance with international quality standards, making it a trusted supplier for clients around the globe. With a focus on customer satisfaction, the company provides comprehensive support throughout the ordering and delivery process, ensuring smooth transactions from start to finish.
Copper Link International stands out as a leading manufacturer, stockist, and exporter of copper forged fasteners, offering products that meet the highest standards of quality, durability, and performance. With a strong emphasis on advanced manufacturing processes, comprehensive inventory management, and efficient export operations, the company is well-equipped to serve diverse industries with reliable, high-performance copper fasteners. Whether you're looking for high-conductivity components for electrical systems or durable fasteners for mechanical applications, Copper Link International is your go-to partner in the copper fastener industry.
Chemical Property | Description | Copper Forged Fasteners |
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Chemical Composition | The elemental makeup of the copper alloy used for the fasteners. | Copper (C11000 - 99.9% purity), Oxygen-Free Copper (C10200), Brass (Cu-Zn), Bronze (Cu-Sn), Copper Alloys |
Density | Mass per unit volume. | 8.96 g/cm³ (for pure copper) |
Melting Point | Temperature at which the copper or its alloys transition from solid to liquid. | 1,085°C (for pure copper), slightly lower for copper alloys (e.g., 900–1,050°C for brass) |
Boiling Point | Temperature at which copper or copper alloys transition from liquid to gas. | 2,562°C (for pure copper), alloys typically have higher boiling points |
Electrical Conductivity | The ability of copper to conduct electric current. | 58-60% IACS (International Annealed Copper Standard) for pure copper; alloys have lower conductivity |
Thermal Conductivity | The ability to conduct heat. | 398 W/m·K (for pure copper); alloys like brass and bronze have lower thermal conductivity (120-180 W/m·K) |
Corrosion Resistance | The ability of copper and its alloys to resist environmental corrosion. | Excellent resistance to corrosion (especially in non-acidic environments), better in alloys like bronze compared to brass |
Oxidation Resistance | Resistance to the formation of oxide layers (typically copper oxide) in contact with air or moisture. | Forms a protective oxide layer (patina) on exposure to air; the oxide layer protects from further corrosion |
Hardness | The resistance to surface deformation or abrasion. | 60–120 HB (Brinell hardness for pure copper); higher for alloys like brass and bronze (120-250 HB) |
Reactivity | The tendency of copper and its alloys to chemically react with other substances. | Low reactivity with most substances, but reacts with sulfur, acids, and ammonia |
Tensile Strength | The maximum stress a fastener can withstand without breaking. | 210–300 MPa (for pure copper); higher in copper alloys like bronze and brass |
Yield Strength | The amount of stress at which the material begins to deform plastically (without returning to original shape). | 140–250 MPa (varies by alloy) |
Electrochemical Potential | Copper’s tendency to participate in electrochemical reactions, important for corrosion in galvanic cells. | -0.34 V (compared to the standard hydrogen electrode) |
Acid Resistance | The ability to withstand corrosion when exposed to various acids. | Highly resistant to hydrochloric and sulfuric acids in pure copper; alloys like brass and bronze are more susceptible to corrosion by hydrochloric acid |
Alloying Flexibility | Copper’s ability to form alloys with other metals (e.g., zinc, tin, aluminum). | Excellent, allowing for alloys like brass (Cu-Zn), bronze (Cu-Sn), and others, enhancing mechanical properties |
Phosphorous Content | The presence of phosphorus in certain copper alloys, improving wear resistance and lubrication. | Often present in small quantities in deoxidized copper (C12200), improving strength and workability |
Sulfur Resistance | Resistance to damage from sulfur or sulfur-containing compounds. | Pure copper is susceptible to sulfur corrosion; alloys like bronze have better resistance to sulfur exposure |
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