Alloy Steel T23 Welded Round Tube
Alloy Steel T23 Round Welded Tube Stockist, Alloy Steel T23 Welded Round Tube Supplier, Alloy Steel T23 Welded Round Tube.
What are the common applications of alloy steel T23 welded tube in various industries?
Alloy steel T23 welded tube finds its common applications in various industries due to its unique properties. One prominent application is in the power generation sector, where T23 welded alloy steel is utilized in high-temperature and high-pressure environments such as boilers and superheaters. Its excellent resistance to oxidation and corrosion at elevated temperatures makes it well-suited for these demanding conditions. The automotive industry also employs T23 welded alloy steel in components that require high strength and toughness, such as engine parts and exhaust systems. Furthermore, the oil and gas industry relies on T23 welded alloy steel for pipelines and equipment exposed to corrosive environments, especially in offshore drilling operations.
Its robustness against corrosion and resistance to cracking make it a reliable choice for such applications. Other industries that commonly utilize Alloy steel T23 welded tube include chemical processing, petrochemical, and refineries, where it is employed in vessels, reactors, and heat exchangers. The versatility and superior performance of alloy steel T23 welded tube make it an essential material in various sectors that demand strength, durability, and resistance to harsh operating conditions.
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How does alloy steel T23 welded tube compare to other types of welded alloys in strength and durability?
Alloy steel T23 welded tube exhibits favourable strength and durability characteristics compared to other welded alloys. Its strength properties make it well-suited for applications that require high structural integrity and resistance to mechanical stress. T23 welded alloy steel possesses excellent tensile strength, allowing it to withstand heavy loads and pressures. It demonstrates good toughness, enabling it to withstand impact and vibrations without compromising its structural integrity.
In terms of durability,Alloy steel T23 welded tubeoffers notable advantages. It demonstrates remarkable resistance to oxidation and corrosion, particularly at elevated temperatures. This attribute is crucial for industries such as power generation, where components are exposed to high heat and potentially corrosive environments. The ability of T23 welded alloy steel to maintain its mechanical properties even under extreme conditions contributes to its durability and longevity.
Welded Tube Sizes | 1 / 2" NB - 24" NB |
Tube Outside Diameter | 6.00 mm OD up to 914.4 mm OD, Sizes up to 24” NB available Ex-stock, OD Size Steel Tubes available Ex-stock |
Tube Manufacturing Process | Welded |
Alloy steel T23 | SCH 5, SCH10, SCH 40, SCH 80, SCH 80S, SCH 160, SCH XXS, SCH XS |
Tube Length | Single Random, Double Random, Standard & Cut length |
Tube End Types | Plain Ends (PE), Threaded Ends (TE), Bevelled Ends (BW), Grooved Mechanical Joints or Grooved Ends, TBE (Treaded Both Ends) |
Delivery Condition | Annealed and Pickled, Polished, Bright Annealed, Cold Drawn |
Outside Finish | 2B, No.4, No.1, No.8 Mirror Finish for Alloy steel T23 Tubes, Finish as per customer Requirements |
Value Added Services | Cutting, Beveling, Polishing, Threading, Destructive, Non Destructive, Ultrasonic Testing |
Alloy Steel T23 Round Welded Tube Stockist, Alloy Steel T23 Welded Round Tube Supplier, Alloy Steel T23 Welded Round Tube.
Alloy Steel T23 ERW Tube Stockist, Alloy Steel T23 ERW Tubing, Alloy Steel T23 ERW Tube Supplier.
UNS K41650 Welded Rectangle Tube Supplier, UNS K41650 Welded Tube, UNS K41650 Welded Tube Stockist.
Chromium-Molybdenum Steel T23 Welded Tube Supplier, CrMo T23 Welded Tube, Chromium-Molybdenum Steel T23 Welded Tube Stockist.
Product | Price |
Alloy Steel T23 Welded Tube Price | $1,082.00 - $3,489.00/ Ton |
Chrome Moly T23 Welded Tube Price List | $700.00 - $1,900.00/ Ton |
Alloy Steel T23 Welded Tube Price Per Kg | $4 - 23 / Kg |
Alloy Steel T23 Welded Tubing Price List | US $ 12 - 45 / Pound |
Chrome Moly T23 Welded Tube Price In India | $698.00 - $1,480.00/ Ton |
CrMo T23 Welded Tubing Price | US $ 1000 - 3000 / Ton |
Alloy Steel T23 Welded Tube Price | US $ 1100 - 2000 / Ton |
½Mo Alloy Steel Welded Tubing Price | US $ 1400 - 12000 / Ton |
Alloy Steel T23 Welded Tubes Price Per Piece | $4.00 - $100.00/ Piece |
Avoid those problems that occur with low-quality Alloy Steel T23 welded tubes by getting high-quality Alloy Steel T23 welded tubing at competitive prices from us. Give us a call or send us an email to discuss how we can help you build your business. Working with such an esteemed client as you will make us happy.
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Preparing The Sheets
Before being selected to roll, the stainless steel sheets go through a number of inspections. Trimming them around the edges is the first step in preparing them.
Rolling Through Rollers
The desired size is then achieved by running the sheets through many rollers. You can see the sheets evolving into tubular shapes in this stage.
Rollers Through The Fitted Welding Machine
The tubular shape must pass through a customised welding equipment in this step. You get precisely rolled tubes by removing the weld beads and scraps from inside these tubular shapes.
Welding Process
The grade and application requirements have an impact on tube welding and forming. For the manufacturing of tiny diameter tubes, we employ TIG welding. Steel sheets are coiled and welded inside of a welding machine. The steel sheets are shaped into a coil before entering the machine. The seam between these coils is then welded to create a tube.
Electric Resistance Welding (ERW) Process
Tube is made using the Electric Resistance Welding (ERW) technique, which involves cold-forming a flat sheet of steel into a cylindrical shape. The steel is then heated by applying current to either of the cylinder's edges, forcing the edges to bond together firmly without the use of welding filler material.
Submerged Arc Welding (SAW) Process
An arc is created between a workpiece and a continuously fed bare wire electrode during the Submerged Arc Welding (SAW) procedure. Additionally, flux is used to create slag, produce protective gases, and provide alloying materials to the weld pool. Gas shielding is not required.
Electric Flash Welding Process
A steel sheet being transformed into a cylinder using the electric flash welding process. The edges are heated until they become semi-molten in this instance, and then they are pressed together until molten steel is squeezed out of the junction and forms a bead.
Annealing
Metal is heated above the point of re-crystallization and cooled to room temperature during the annealing process. The molecular bonds in metal tighten when it is shaped, making it rigid. The metal is put through an annealing process to regain its ductility.
Sinking Process
Tube sinking is a drawing technique that reduces the diameter of tubes. In this drawing technique, a tube is run through a die without the need of a mandrel. Good inner surface quality is not ensured when using a mandrel. The die angel determines the integrity of the outer surface. The die being used produces a uniform surface. A tube can be significantly smaller than it was originally. When cost is a factor, tube sinking is ideal.
Inspection and Testing
Before sending our items to our consumers, we conduct inspection procedures to verify their integrity.
Grade | C | Mn | Si | P | S | Si | Cr |
P23 | 0.04-0.10 | 0.10-0.60 | 0.030 | 0.010 | 0.50 | 1.90-2.60 | 0.05-0.30 |
T23 | 0.04~0.10 | 0.1~0.6 | 0.03max | 0.01 max | 0.5 max | - | 0.05~0.30 |
ASTM A335 Grade | Tensile Strength | Yield Strength | Elongation % | Hardness(HB) | |||
ksi | MPa | ksi | MPa | Longitudinal | Transverse | ||
P23 | 74 | 510 | 58 | 400 | 20 | - | - |
T23 | - | 510 min | - | 400 min | 20 min | - | 220 max |
Intergranular Corrosion (IGC) Test | Impact Test |
Macro Test | Dye Penetrant Test (DP Test) |
Flaring Test | Bend Test |
Positive Material Identification – PMI Testing | Hydrostatic Test |
Pitting Resistance Test | Eddy Current Testing |
Micro Test | Radiography Test |
Chemical Analysis – Spectro Analysis | Hydrogen-Induced Cracking (HIC) Test |
Mechanical Testing Such as Tensile, Elongation, Reduction of Area | Sulfide Stress Corrosion Cracking (SSC), NACE TM 0177 |
Hardness Test | Ultra Sonic Test (UT) |
Flattening Test |
BWG | BWG | BWG | BWG | BWG | BWG | BWG | BWG | ||
25 | 22 | 20 | 18 | 16 | 14 | 12 | 10 | ||
WT mm | WT mm | WT mm | WT mm |
WT mm | WT mm | WT mm | WT mm |
||
Outside Diameter | Outside Diameter | 0.508 | 0.711 | 0.889 | 1.245 | 1.651 | 2.108 | 2.769 | 3.404 |
mm | inch | kgs/m | kgs/m | kgs/m | kgs/m | kgs/m | kgs/m | kgs/m | |
6.35 | 1/4 | 0.081 | 0.109 | 0.133 | 0.174 | 0.212 | |||
9.53 | 3/8 | 0.126 | 0.157 | 0.193 | 0.257 | 0.356 | 0.429 | ||
12.7 | 1/2 | 0.214 | 0.263 | 0.356 | 0.457 | 0.612 | 0.754 | ||
15.88 | 5/8 | 0.271 | 0.334 | 0.455 | 0.588 | 0.796 | 0.995 | ||
19.05 | 3/4 | 0.327 | 0.405 | 0.553 | 0.729 | 0.895 | 1.236 | ||
25.4 | 1 | 0.44 | 0.546 | 0.75 | 0.981 | 1.234 | 1.574 | 2.05 | |
31.75 | 1 1/4 | 0.554 | 0.688 | 0.947 | 1.244 | 1.574 | 2.014 | 2.641 | |
38.1 | 1 1/2 | 0.667 | 0.832 | 1.144 | 1.514 | 1.904 | 2.454 | 3.233 | |
44.5 | 1 3/4 | 1.342 | 1.774 | 2.244 | 2.894 | 3.5 | |||
50.8 | 2 | 1.549 | 2.034 | 2.574 | 3.334 | 4.03 | |||
63.5 | 2 1/2 | 1.949 | 2.554 | 3.244 | 4.214 | 5.13 | |||
76.2 | 3 | 2.345 | 3.084 | 3.914 | 5.094 | 6.19 | |||
88.9 | 3 1/2 | 2.729 | 3.609 | 4.584 | 5.974 | 7.27 | |||
101.6 | 4 | 4.134 | 5.254 | 6.854 | 8.35 | ||||
114.3 | 4 1/2 | 4.654 | 5.924 | 7.734 | 9.43 |
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Letter of Guarantee | Material Test Certificates |
ROHS Certificate | Certificate of Compliance/Conformity |
Certificate of Origin | Raw Material Test Reports |
Packing List | Quality Assurance Plan (QAP) |
Commercial Invoice | Heat Treatment Charts |
Fumigation Certificates | NABL approved Laboratory Test Reports |
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