Steber Steel Solutions is an acknowledged manufacturer and exporter of Copper Nickel 70 / 30 Round Bars, which are availed in best possible rates for our clients.
Proper maintenance and care are crucial to ensure the optimal performance and longevity of chemical reactors made of Cupronickel 70 / 30 Hollow Bars:
Regular Inspection: Routine inspections should be conducted to identify any signs of corrosion, erosion, or mechanical wear. This allows for timely repairs or replacements, minimizing the risk of reactor failure and ensuring safe operation.
Cleaning and Decontamination: Periodic cleaning and decontamination of the reactor help remove any deposits or contaminants that may compromise its performance. This includes the removal of scale, fouling, or residual chemicals to maintain efficient heat transfer and prevent corrosion. Monitoring and Control: Continuous monitoring of operating conditions, such as temperature, pressure, and chemical concentrations, is essential to detect any deviations or anomalies. Implementing a robust monitoring and control system ensures the reactor operates within its specified parameters, maximizing efficiency and safety.
We provide the best quality UNS C71500 Forged Round Bar Specification Standard, Werkstoff 2.0882 Square Bar, Pure Copper Nickel 70/30 Hot Rolled Round Bar, CuNi 70/30 Cold Drawn Bar Stockist.
The continuous advancements in chemical processing technologies drive ongoing research and development efforts to further improve the performance and efficiency of Copper Nickel WNR 2.0882 Hexagonal Bars in chemical reactors:
a. Alloy Optimization: Researchers are exploring ways to enhance the properties of this alloy, such as corrosion resistance, mechanical strength, and thermal conductivity. This involves alloy modifications and the incorporation of additives or coatings to tailor the material for specific applications and operating conditions.
b. Reactor Design Innovations: Engineers and scientists are continuously working on innovative reactor designs to improve process efficiency, reduce energy consumption, and minimize environmental impact. These developments may include optimized flow patterns, improved heat transfer surfaces, and advanced mixing mechanisms to enhance reaction kinetics and yield.
c. Sustainable Manufacturing Practices: With a growing emphasis on sustainability, efforts are being made to develop environmentally friendly manufacturing processes for Copper Nickel UNS C71500 Triangular Bars. This includes reducing energy consumption, minimizing waste generation, and exploring recyclability options to ensure the sustainable use of resources.
Standard | ASTM B111, ASME SB111 |
Round Bar Size | 3mm~ 800mm |
Square Bar Size | 4mm* 4mm ~100mm* 100mm |
Flat Bar Size | 2mm ~ 100mm |
Hex Bar Size | 2mm ~ 100mm |
Angle Size | 3mm* 20mm* 20mm~ 12mm* 100mm* 100mm |
Thickness | 50 mm to 6000 mm Long |
Length | 1 To 6 Meters, Custom Cut Length |
Form | Round, Square, Hex(A/F), Rectangle, Billet, Ingot, Forging Etc |
STANDARD | UNS | WNR. | AFNOR | EN | JIS | BS | GOST | OR |
---|---|---|---|---|---|---|---|---|
Copper Nickel 70/30 | C71500 | 2.0882 | NC15FE11M | NiCr15Fe | NCF 600 | NA 13 | МНЖМц 28-2,5-1,5 | ЭИ868 |
Diameter | Weight Chart | Dia | Weight Chart |
---|---|---|---|
(mm) | per metre (kg) | (in) | per metre (kg) |
3mm | 0.06 | 1/8″ | 0.06 |
4mm | 0.10 | 3/16″ | 0.14 |
5mm | 0.16 | 1/4″ | 0.25 |
6mm | 0.22 | 5/16″ | 0.39 |
7mm | 0.30 | 3/8″ | 0.56 |
8mm | 0.40 | 7/16″ | 0.77 |
10mm | 0.62 | 1/2″ | 1.00 |
12mm | 0.89 | 9/16″ | 1.22 |
14mm | 1.22 | 5/8″ | 1.56 |
15mm | 1.40 | 11/16″ | 1.89 |
16mm | 1.59 | 3/4″ | 2.25 |
18mm | 2.01 | 7/8″ | 3.07 |
20mm | 2.48 | 1″ | 4.03 |
22mm | 3.00 | ||
24mm | 3.57 | ||
25mm | 3.88 |
Metric | US Bar | ASTM/ Canadian | Japanese | ||||
---|---|---|---|---|---|---|---|
Bar Size | Diam. (mm) | Bar Size | Diam. (Inch) | Bar Size | Diam. (mm2) | Bar Size | Diam. (mm) |
5 | 5 | #2 | 0.250 | 10M | 100 | 6 | 6 |
5.5 | 5.5 | #3 | 0.375 | 15M | 200 | 10 | 10 |
6 | 6 | #4 | 0.500 | 20M | 300 | 13 | 13 |
7 | 7 | #5 | 0.625 | 25M | 500 | 16 | 16 |
8 | 8 | #6 | 0.750 | 30M | 700 | 19 | 19 |
9 | 9 | #7 | 0.875 | 35M | 1000 | 22 | 22 |
10 | 10 | #8 | 1.000 | 45M | 1500 | 25 | 25 |
11 | 11 | #9 | 1.125 | 55M | 2500 | 29 | 29 |
12 | 12 | #10 | 1.250 | 32 | 32 | ||
14 | 14 | #11 | 1.375 | 35 | 35 | ||
16 | 16 | #12 | 1.500 | 38 | 38 | ||
18 | 18 | #13 | 1.625 | 41 | 41 | ||
20 | 20 | #14 | 1.750 | 44 | 44 | ||
22 | 22 | #15 | 1.875 | 48 | 48 | ||
25 | 25 | #16 | 2.000 | 51 | 51 | ||
28 | 28 | #18 | 2.250 | 57 | 57 | ||
32 | 32 | ||||||
36 | 36 | ||||||
40 | 40 | ||||||
44 | 44 | ||||||
50 | 50 |
Grade | Cu | Mn | Pb | Ni | Fe | Zn |
---|---|---|---|---|---|---|
Cupro Nickel 70/30 | 65 min | 1.0 max | 0.05 max | 29-33 max | 0.4-1.0 max | 1 max |
Density | Melting Point | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
---|---|---|---|---|
0.323 lb/in3 at 68 F | 2260 F | 50000 psi | 70 / 3000 psi | 30 % |