SALES@ADITYASTEEL.IN – Manufacturer and exporters of heat exchanger and boiler Brass Taper Tube Plug, Brass Taper Tube Plug, Brass Tube Plugs, Brass Taper Plugs in India, Maharashtra and Mumbai.
Manufacturer of Brass Two-Piece Tube Plugs, Brass Boiler Tube Plugs manufacturer , Brass tapper Header Plugs manufacturer, Brass Metal Tapered Plugs For Heat Exchangers tube end, Brass Expansion tapered Tube Plugs.
Brass Tapered Tube plug.
Aditya Steel Engg. Co. is high slit enthusiastic manufacturer and distributor of high-quality Brass tapered tube plugs for stop tube leakage. Since over 20 years, we have comprehended our clients’ needs and applications and have been a trustworthy partner in the production of Brass tapered tube plugs for the authorised market. We go where our consumers go – all around the world.
In the meantime, we provide these Brass taper Tube Plug in a variety of sizes, grades, and thicknesses to meet our clients’ specific needs at a very affordable price. Our team of quality controllers tests the Brass taper Tube Plug on specific criteria to supply our clients with a high-performance range. These Brass taper Tube Plugs are valued for their high strength, solid construction, ease of installation, corrosion resistance, and exceptional quality.
Content of Brass Taper Tube Plugs.
Equivalent Grade Brass Taper Tube Plug
Brass Taper Tube Plug Specification
Types Of Brass Taper Tube Plug
Chemical Composition of Brass Taper Tube Plug
Mechanical Properties of Brass Taper Tube Plug
Brass Taper Tube Plug Sizes
Export Destinations For Brass Taper Tube Plug
Brass is offered in a range of grades, each of which is distinguished by the precise material composition. Sequoia Brass & Copper offers the following brass grades:
- Alloy 260. Also known as cartridge brass, Alloy 260 demonstrates good cold working properties. It is suitable for use in ammunitions, automobiles, fasteners, and hardware.
- Alloy 272. This alloy—also referred to as yellow brass—consists of 33% zinc. It is typically used in industrial and architectural applications.
- Alloy 330. Brass alloy 330 is suitable for application where high machinability is critical. It contains a low lead content sufficient for cold-working and is commonly used to produce pipes.
- Alloy 353. Alloy 353 (also referred to as clock brass) is often used to fabricate precision components, such as clock and watch parts, because of its excellent machinability.
- Alloy 360. Also known as free cutting brass, this alloy is the most common type of brass. It exhibits excellent machinability and formability, as well as suitability for soldering and brazing operations. It commonly finds application in the manufacture of hardware components, fittings, valves, and fasteners.
- Alloy 385. Also known as architectural bronze this alloy can be used for construction & architectural applications. Alloy 385 is available in a wide variety of extruded & drawn shapes such as angles, channels, square tube, hand rail moulding & more.
- Alloy C48200 – C48500. Leaded naval brass meanto for machining. Typically available in rounds.
- Alloy 464. Alloy 464 (or naval brass) is known for its excellent resistance to corrosion from seawater across a wide range of temperatures. Additionally, it demonstrates suitability for hot forming and hot forming, as well as drawing, bending, heading, soldering, brazing, and welding.
Properties of Brass.
As a copper-alloy, brass demonstrates many of the properties characteristic of copper. However, the alloy does exhibit a few distinct properties compared to pure copper and other copper alloys. For example:
- Susceptibility to stress-cracking. As brass is stronger and stiffer than pure copper, it is more susceptible to developing stress cracks.
- Malleability and formability. Compared to bronze, brass is more malleable. Additionally, it is easy to cast or work.
- High melting point. Brass has a melting point of approximately 900°C. The exact melting point differs based on the concentration of different metals in the alloy.
- Non-ferromagnetic. As brass is not ferromagnetic, it is much easier to process for recycling.
Depending on the additional metals added to the alloy, it can demonstrate varying characteristics, such as a variable melting point or greater corrosion resistance (due to the presence of manganese).
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