Copper Nickel suppliers
Cupro Nickel Price Per Kg in India
Dealers & distributor of Copper Nickel Grades, Copper Nickel Alloy, Cuni Material Grades in UK, UAE. Check Copper Nickel seawater corrosionTable of contents
- Copper Nickel Alloy Suppliers
- Cupro Nickel Price Per Kg
- Copper Nickel Specification
- Copper Nickel Alloy Properties
- Cupronickel Uses
- Equivalent of copper nickel grades
- Why copper-nickel is required in Navy?
- Why copper-nickel is required in Navy?
Copper Nickel Alloy Suppliers
Copper Nickel Grades Suppliers in Mumbai, India
Looking to buy Alloy 600 Tubing? Inconel 600 Tubing?
Cupro Nickel Price Per Kg
| Copper Nickel Price | Origin | Price in INR (per kg) | Price in USD (per kg) | Price in Euro (per kg) |
|---|---|---|---|---|
| Copper Nickel Price in India | Indian | Rs 560 – 660/- as per your requirement size | $7.95 | €6.94 |
| Cuni Material Price in Japan | Japanese | Rs 650 – 750/- as per your requirement size | $9 | €8 |
| Cupro Nickel Price in UK / Europe | European | Rs 850 – 950/- as per your requirement size | $12 | €10 |
| Copper Nickel Price in USA | USA | Rs 1000 – 1100/- as per your requirement size | $14 | €12 |
Cupro Nickel Density & Price per KG in India
With reference to Cupro Nickel Density & Price per KG in India, the Density of Copper-Nickel is 0.323 lb/in³ (8.94 g/cc). Cupro Nickel price per kg in India is Rs 560. That means that the price of Cupro Nickel per kg would be roughly around 6.30 Pounds. Of course, this would not mean that Cupro Nickel would be available at this very same price in other parts of the globe such as USA, Singapore, China, Japan, Europe, UK, etc. For instance, the price of Cupro Nickel is roughly 5% higher in India, than it is in China. Yet, you could buy Cupro Nickel in India, for 35% lesser than you could buy it in America. Also, the price of Cupro Nickel is always fluctuating.
Copper Nickel Specification
| Copper Nickel Product | Specification |
|---|---|
| Bar | ASTM B122, B151, MILITARY MIL-C-15726, SAE J461, J463 |
| Bolts | ASTM F468 |
| Electrode, Welding | AWS A5.6, MILITARY MIL-E-22200/4 |
| Nuts | ASTM F467 |
| Pipe, Seamless | ASME SB466, ASTM B466 |
| Pipe, Welded | ASTM B608, B467 |
| Plate | ASTM B122, MILITARY MIL-C-15726, SAE J461, J463 |
| Plate, Clad | ASTM B432 |
| Plate, Condenser Tube | ASME SB171, ASTM B171, SAE J463, J461 |
| Rod | ASTM B151, MILITARY MIL-C-15726 |
| Screws | ASTM F468 |
| Sheet | ASTM B122, MILITARY MIL-C-15726, SAE J463, J461 |
| Strip | ASTM B122, MILITARY MIL-C-15726, SAE J461, J463 |
| Studs | ASTM F468 |
| Tube, Condenser | ASME SB111, ASTM B552, B111, MILITARY MIL-T-15005, SAE J463, J461 |
| Tube, Finned | ASME SB359, ASTM B359, MILITARY MIL-T-22214 |
| Tube, Seamless | ASME SB466, ASTM B466, MILITARY MIL-T-16420 |
| Tube, U-Bend | ASME SB395, ASTM B395 |
| Tube, Welded | ASME SB543, ASTM B543 |
| Wire | MILITARY MIL-C-15726 |
Copper Nickel Alloy Properties
Specified Minimum Properties
ASTM B111 Copper & copper alloy
| Temper | Code | 0.5% Proof Stress MPa |
Tensile Strength MPa |
Elongation % |
|---|---|---|---|---|
| Annealed | O61 | 105 | 275 | (40) |
| Cold Drawn | H55 | 240 | 310 | (10) |
Copper Nickel Physical Properties
| Property | Metric Units | Imperial Units |
|---|---|---|
| Melting Point (Liquidus) | 11,500°C | 21,000°F |
| Melting Point (Solidus) | 11,000°C | 20,100°F |
| Density | 8.94 gm/cm³ @ 20°C | 0.323 lb/in³ @ 68°F |
| Specific Gravity | 8.94 | 8.94 |
| Coefficient of Thermal Expansion | 17.1 x 10 -6 / °C (20-300°C) | 9.5 x 10 -5 / °F (68-392°F) |
| Themal Conductivity | 40 W/m. °K @ 20°C | 23 BTU/ft³/ft/hr/°F @ 68°F |
| Thermal Capacity (Specific Heat) | 380 J/kg. °K @ 20°C | 0.09 BTU/lb/°F @ 68°F |
| Electrical Conductivity (Annealed) | 5.26 microhm?.cm?.¹ @ 20°C | 9.1% IACS |
| Electrical Resistivity (Annealed) | 0.190 microhm.cm @ 20°C | 130 ohms (circ mil/ft) @ 68°F |
| Modulus of Elasticity (tension) | 140 GPa @ 20°C | 20 x 10 6 psi @ 68°F |
| Modulus of Rigidity (torsion) | 52 GPa @ 20°C | 7.5 x 10 6 psi @ 68°F |
Environmental Properties
Resistance Factors
1=Poor 5=Excellent
| Environment / Factor | Rating |
|---|---|
| Flammability | 5 |
| Fresh Water | 5 |
| Organic Solvents | 5 |
| Oxidation at 500C | 3 |
| Sea Water | 5 |
| Strong Acid | 2 |
| Strong Alkalis | 5 |
| UV | 5 |
| Wear | 5 |
| Weak Acid | 4 |
| Weak Alkalis | 5 |
Cupronickel Uses
Cupronickel for Offshore & marine- Salt water pipes and fittings, hot water tanks, salt water baffles, propeller sleeves, valve and pump components, flanges, boat hulls, marine fittings and marine hardware
Copper nickel uses in Chemical processing- Heat exchanger and cooling plant, evaporator tubes, pump and valve trim
Other uses of Cupro nickel – Power steering tube, brake lines, condenser plates, pressure vessels and distiller tubes
Copper Nickel seawater corrosion
| Crevices can normally be tolerated in designs using these materials. They may foul but rarely pit. |
Titanium Hastelloy C Inconel 625 |
Titanium will pit at temperatures above 120°C. Inconel 625 after 2-3 years shows signs of incipient pitting in some tests in quiet seawater |
|
90/10 copper-nickel (1.5 Fe) Admiralty Brass |
Shallow to no pitting. 90/10 copper-nickel is standard seawater piping alloy. | |
|
70/30 copper-nickel Copper Tin and aluminium bronzes |
Good resistance to pitting. Useful in piping applications |
|
| Crevices cannot be tolerated in designs (But usable in above the waterline marine applications) | Nickel | Many deep pits develop. Cathodic protection from less noble alloys required |
| Grade 304 Stainless Steel | Many deep pits develop. Cathodic protection from steel may not be fully effective | |
| Precipitation Hardening Grades of Stainless Steel | Many deep pits develop. Cathodic protection with zinc or aluminium may induce cracking from hydrogen | |
| Severe crevice corrosion limits usefulness | Grade 303 Stainless Steel | Severe pitting. Cathodic protection may not be effective. |
| Series 400 (ferritic or martensitic) Stainless Steel | Severe pitting. Cathodic protection with zinc or aluminium may induce cracking from hydrogen. | |
| Useful although cathodic protection required on critical surfaces | Monel 400 (nickel-copper alloy) | Pits tend to be self-limiting in depth at about 1-6 mm. No protection required for heavy sections. Cathodic protection from steel or copper base alloys will prevent pitting on O Ring, valve seats, and similar critical surfaces. |
|
CN7M (Alloy 20) Incoloy 825 |
Occasional deep pits will develop. Protection not normally required for all alloy 20 pumps. Cathodic protection from less noble alloys may be necessary for O Ring and similar critical surfaces. | |
| Grade 316 Stainless Steel | Cathodic protection from zinc, aluminium, or steel is required except when part is frequently removed from seawater and thoroughly cleaned |
Comparison of Copper Nickel alloy corrosion resistance
CuNi10Fe and CuNi30Fe seawater corrosion (in Heat Exchanger Service)
| Environmental Conditions | Type of Corrosion | Service Experience | |
|---|---|---|---|
| CuNi10Fe | CuNi30Fe | ||
| Waterside Conditions | |||
| Clean Seawater at velocities up to 1m/sec | Uniform, General | 0.0025-0.025 mm/yr | 0.0025-0.025 mm/yr |
| Clean Seawater at velocities up to 3.5 m/sec* | Impingement Attack | Satisfactory | Satisfactory |
| Polluted Seawater | Accelerated General & Pitting | Less Resistant | Preferred but not immune |
| Entrained Sand in Seawater | Accelerated General & Erosion | Unsuitable, except in mild conditions | Use CuNi30Fe2Mn2 |
| Accumulated Deposits on Surface | Local Attack | Generally Good | Tendancy to Pit |
| Hot Spots due to Local Overheating | Local Attack by Denickelification | Good | Good but some failures in extreme conditions |
| Corrosion Plus Stress | Stress Corrosion | Very Resistant | Very Resistant |
| Vapour Side Conditions | |||
| Feedwater Heaters working under cyclic conditions | Exfoliation Attack | Resistant | Susceptible |
| Non-condensable gases † | Local Attack & General Thinning | Highly Resistant | Most Resistant |
| Hydrogen Sulphide in Desalination Plant | General Attack | Less Resistant | Resistant ‡ |
* Local velocities caused by obstructions can be very high.
† lf concentration of CO2 is extremely high, stainless steel may be better cholce.
‡ Attack will increase in concentration or temperature.
Comparison of the mechanical & physical properties of copper, important copper and unalloyed steel
| Material group | Expansion coefficient [10-6 / K] | electrical conductivity [m / (ohm * m ^ 2] | Thermal conductivity at 20 ° C [W / m * K] | 0.2% strain limit Rp0.2 approximately [N / mm ^ 2] | Tensile strength Rm min. [N / mm ^ 2] | Break elongation A min. [%] |
|---|---|---|---|---|---|---|
| Cu | 17 | 60 | 395 | 40-80 | 200 – 250 | Max. 60 |
| CuZn | 18 – 20.3 | 15.0 – 33.3 | 117 – 243 | 60 – 420 | 240 – 460 | 4 – 20 |
| CuNiZn | 16.5 – 17 | 3.5 – 4.0 | 27 – 33 | 270 – 580 | 380-650 | 0 – 9 |
| CuSn | 18.4 – 18.5 | 7.5 – 10 | 67-85 | 220 – 550 | 330 – 620 | 0 – 5 |
| CuNi | 14.5 – 17.6 | 2.04 – 6.4 | 21 – 48 | 90 – 500 | 280 – 560 | 0 – 14 |
| CuAl | 17.0 – 18 | 5 – 10 | 40 – 83 | 110 – 680 | 350 – 830 | 0 – 25 |
| Steel, unalloyed | 12 | 5.5 – 7 | 48 – 58 | 175-355 | 290 – 630 | 18-26 |
Nickel Copper Fouling Resistance in Quiet Sea Water compare to Various Alloys
| Arbitrary Rating Scale of Fouling Resistance | Rating | Materials |
|---|---|---|
| 90-100 | Best | Copper 90/10 Copper Nickel Alloy |
| 70-90 | Good | Brass & Bronze 70/30 Copper Nickel Alloy |
| 50 | Fair | Aluminium Bronzes |
| 10 | Very Slight | Zinc Monel 400 (Nickel Copper Alloy) Carbon and Low Alloy Steels |
| 0 | Least | Stainless Steels Nickel Chromium Molybdenum Alloys Titanium |
Equivalent of copper nickel grades
| Alloy Name | BS | UNS | BS EN | Others |
|---|---|---|---|---|
| Copper Nickel 90/10 | CN102 | C70600; C70610 | CW352H | 2.0872 |
| Copper Nickel 70/30 / NES 780 | CN107 | C71500; C71520 | CW354H | NES780 |
| DEF STAN 02-835 | C72420 | DGS357 | ||
| NIBRON SPECIAL® | DTD900/4805 | C72400 | 2.1504 | |
| DTD498 / BSB25 | DTD498 | C64700 | CW111C | BSB25 |
| COLSIBRO® | DTD498 | C64700; C18000 | CW111C | 2.0855 |
| TROJAN | C70250; C70252 | CW112C | 2.0857 | |
| Beryllium Copper (BECOL-25) | CB101 | C17200 | CW101C | ASTM B196; CDA 17200 |
| CHROMZIRC-3 | CC101 | C18200 | CW105C | BS 4577 A/2/1 |
| CHROMZIRC-328 | CC102 | C18150 | CW106C | BS4577 A/2/2; ISO5182 |
| COLDUR-A® | CS101 | C65500; C65600 | CW116C | ASTM B98; ASTM B249 |
| COLDUR-B | C65100 | CW115C | ASTM B98 |
Why copper-nickel is required in Navy?
The reason why copper-nickel is required in Navy is because it shows excellent corrosion resistance to sea water, it has low macrofouling rates and it also has superb fabricability. As copper-nickel is resistant to sea water, it is used in hulls, propellers and crankshafts of fishing boats, tugboats, working boats and other types of boats. Copper-nickel is also used in marine hardware and in seawater system condensers.
Where are copper-nickel scrap buyers & why?
The answer to where are copper-nickel scrap buyers & why, is that there are scrap buyers of copper-nickel located all over the globe. The reason for this is because there is a huge demand for copper-nickel all over the world, as it is used in many applications and industries. Copper nickel scrap plays a very important role in many different kinds of industries, all over the globe. Also, there is a lot of money to be made from selling and trading in copper nickel scrap. This is why there are so many sellers and traders of copper nickel scrap today, selling this kind of scrap, in all parts of the globe.
Special Steel
- Carbon Steel Pipe
- ASTM A106 Grade B Pipe
- ASTM A53 Grade B Pipe
- ASTM A333 Grade 6 Pipe
- IS 4923 Steel Pipes
- ASTM A179 Pipe
- ASTM A192 Tube
- BS 3059 Boiler Tube
- SA 210 Boiler Tube
- DIN 2391 ST 52
- ASTM A671 Pipe
- ASTM A671 Grade CC60
- ASTM A671 Grade CC65
- ASTM A671 Grade CC70
- ASTM A672 Pipe
- ASTM A672 Grade C55
- ASTM A672 Grade C60
- ASTM A672 Grade C65
- ASTM A672 Grade C70