Specification
Chemical Composition
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Detailed Information
Admiralty Brass C44300 Tubes Manufacturer
Amardeep Steel Centre is a renowned maker and retailer of brass tubes for Admiralty. Thanks to their excellent efficiency and usability, the ASTM B135 UNS C44300 SMLS TUBES that we manufacture have acquired a reputation in the industry. We manufacture ASME SB111 UNS C44300 SMLS TUBES in various sizes and diameters that are ideal for multi-industry applications. Because of the resistant properties they provide, they are ideal for applications in a variety of ambient temperatures and circumstances. The Admiralty brass tubes are made by Amardeep Steel Centre, which is incredibly tough and ductile. For the manufacture of the ASTM B135 UNS C44300 SMLS TUBES, we use the best available raw materials and produce coils of different thicknesses. We also take custom orders from our customers and, according to their needs and specifications, manufacture the ASME SB111 UNS C44300 SMLS Tubing. We manufacture these brass tubes from Admiralty that are at par with national and international production standards.
Admiralty Brass Tubes are usually used without suspended abrasive solids from river lakes and canals in fresh, clean waters. Brackish or even saline water may also be used for it. The arsenic inhibitory activity prevents Admiralty Brass Tubes from dezincification and can also tolerate stress-corrosion cracking by the completely annealed alloy. In waters with less than 2000 ppm of dissolved solids, a maximum speed of 1 m/s (3,0 ft/s) is recommended for use at flow speeds up to 3 m/s (10 ft/s) in coastal waters. In marginally polluted (sulphurised) water, the inclusion of tin increases resistance to general corrosion.
Brass is predominantly an alloy composed of zinc-added copper. Brasses are capable of adding various concentrations of zinc or extra elements. These variable mixtures produce a wide variety of properties and color variations. Improved quantities of zinc provide greater strength and ductility to the material. Based on the overall zinc applied to the alloy, brass will range in colour from red to yellow. If the zinc happy brass varies from 32% to 39%, it will have enhanced hot-working capacity, but it will be imperfect for cold-working.
Admiralty Brass is an alloy of copper-zinc, which also contains a small amount of tin and arsenic. In reasonably impure river water and sanitary saltwater, both stagnant and specific flowing water, these admiralty brass tubes are outstanding for their function of enhanced corrosion battle. A tube for heat button equipment is the most common and wrought type. In diverse uses, these tubes are widely used.
In addition, the material informed tubes for the flow of liquids in coolers and evaporators is commonly found in Admiralty brass, which comprises 30 percent zinc and 1 percent tin and prevents dezincification in most conditions. High thermal conductivity, lightweight, strength, corrosion-resistance tube, long longevity & durability are some of the individualities required by this manufacturing.
Thanks to its excellent electrical and thermal conductivity, good resilience, good formability, and corrosion control, copper is used in a wide variety of goods. Due to their corrosion battle, tube and pipe fittings are usually fabricated from these metals.
Uses of Admiralty Brass Pipes:
Admiralty Brass is an alloy of copper-zinc, which sometimes contains a small amount of tin and arsenic. These admiralty brass tubes are well-known for their characteristic of improved corrosion resistance in moderately polluted river water and clear sea water both stagnant and calculated flowing water.Admiralty Brass tubes have high resistance to corrosion and are used specifically for steam condenser tubing cooled with dry, salt, or brackish water. Admiralty metal tubes are also used in oil refineries for heat exchangers where corrosion from sulfur compounds and polluted water can be very high, as well as for feed-water heaters and heat exchangers, and other industrial process equipment.
Packaging of Admiralty Brass Pipes:
These are next to you individually (large diameter Brass Tubing) or in bundles (small diameter Brass Tubing) depending on the dimension of the diameter of the pipes. In a cross-wise way, brass pipes in bunches are taken together with metal strips or wires.Cities We Delivered
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Grade Specification Of Admiralty Brass C44300 Tubes:
Admiralty Brass Tubes |
|
Admirality Brass Tubes Composition
Copper | 70.0 to 73.0% |
Tin | 1.0 to 1.5% |
Arsenic | 0.02 to 0.06% |
Zinc | Remainder |
Total Imp. | 0.30% max. |
Admiralty Brass C44300 Tube Physical Properties
Condition | Hardness |
Annealed (O) | 75 max |
Temper Annealed (TA) | 80 to 105 |
As manufactured (M) | 150 min. |
Properties of Admirality Brass Tubes
UNS No. | C44300 – BSI No. CZ111 ISO Name CuZn28Sn1 |
Chemical Comp. (%) | Cu 70 ~ 73 / Sn 0.9 ~ 1.2 / Pb 0.07 / Fe 0.06 max / Zn rem / As 0.02 ~ 0.06 |
ASTM Spec. | B 111, B 395 |
ASME Spec. | SB 111, SB 395 |
Applications | Condenser, Evaporator and Heat Exchanger tubes; Distiller tubing. |
Temper | O61 Annealed |
Further Tests
Drift Test Flattening Test Microstructure Test MN Test Eddy Current Optiona Hydraulic Testl |
Mechanical Properties of Admiralty Brass C44300 Tubes
Properties * | Metric | English |
Density | 8.53 g/cc | 0.308 lb/in³ |
Tensile Strength, min. | 310 MPa | 45 ksi |
Yield Strength, min. | 105 MPa | 15 ksi |
CTE, linear | 20.2 10-6/°C @ 20.0 – 300 °C | 11.2 10-6/°F @ 70.0 – 570 °F |
Specific Heat Capacity | 0.09 cal/g-°C @ 20ºC | 0.09 BTU/lb-°F @ 70ºF |
Thermal Conductivity | 109 W/m-K @ 20.0 °C | 64 BTU/ft2/ft/h/°F @ 70.0 °F |
Melting Point | 899 ~ 938 °C | 1650 ~ 1720 °F |
Other Details :
Standard | BS 2871 PART3 | ASTM B 111 | DIN 1785 | NFA 51 102 | JIS H3300 | IS 1545 |
Symbol | CZ 111 | C 44300 | CuZn28Sn1 | CuZn29Sn1 | C 4430 | CuZn29Sn1As |
Cu | 70.0-73.0 | 70.0-73.0 | 70.0-72.5 | 70.0-73.0 | 70.0-73.0 | 70.0-73.0 |
Sn | 1.0-1.5 | 0.9-1.2 | 0.9-1.3 | 0.9-1.2 | 0.9-1.2 | 1.0-1.5 |
Pb | 0.07 | 0.07 | 0.07 | 0.07 | 0.07 | 0.07 |
Ni | – | – | 0.1 | – | – | – |
Fe | 0.06 | 0.06 | 0.07 | 0.06 | 0.06 | 0.06 |
Zn | REM’DER | REM’DER | REM’DER | REM’DER | REM’DER | REM’DER |
As | 0.02-0.06 | 0.02-0.06 | 0.02-0.035 | 0.02-0.06 | 0.02-0.06 | 0.02-0.06 |
P | – | – | 0.01 | – | – | – |
Total Impurities Max. | – | |||||
0.03 | – | 0.1 | 0.3 | – | 0.3 | |
Condition | M | 61 | F36 | – | – | O |
TA | – | F32 | – | O | TA | |
O | – | – | – | – | D | |
Yield Strength N/MM2 | – | – | 140-220 | – | – | – |
– | 105 | 100-170 | – | – | – | |
Tensile N/MM2 Minimum | – | 310 | 360 | – | – | 375 Mpa Max. |
– | – | 320 | – | 314Min. | 340 Mpa Min. | |
– | – | – | – | – | 385 Mpa Min. | |
Elng’Tion Percent (%) Minimum | – | – | 45Min. | – | -. | – |
– | – | 55Min. | – | 30 Min. | – | |
Hardness HV5 – | 150Min | – | – | – | – | 80 Max. |
85-105 | – | – | 80-120 | – | 80-105 | |
75Max. | – | – | – | – | 130 Min. | |
Grain Size mm (75X) | 0.05Max. | 0.010-0.045 | – | 0.010-0.045 | 0.010-0.045 | 0.010-0.04 |
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