Welded Steel Tube P460NL2, EN-10217-3
Supplier: | Tapgroup internation.,JSC |
Address: | Số 32 Lô N4D, đường X2A, Yên Sở, Hoàng Mai, Hà Nội |
Phone: | 0084 933 86 77 86 |
Email: | info@tapgroup.vn |
Website: | https://supplier-pipe-tube-ongthep.com |
Insurance: | 12 tháng |
Status: | Mới 100% |
Origin: | China, Korea, Malaysia, Thailand, Japan, EU, G7 |
Product Name: | Welded Steel Tube P460NL2, EN-10217-3 | ||||||||||||||||
The alternative name or alias of a product: | Welded Steel Pipe P460NL2, EN-10217-3 | ||||||||||||||||
Product Description: | |||||||||||||||||
• Material: P460NL2, – Steel Number: 1.8918 • Type: Welded • Standard: EN-10217-3 • Size: • Outer Diameter (OD): OD10.2 to OD2540 • Wall Thickness (WT): 0.5mm, 0.6mm, 0.8mm, 1.0mm, 1.2mm, 1.4mm, 1.6mm, 1.8mm, 2.0mm, 2.3mm, 2.6mm, 2.9mm, 3.2mm, 3.6mm, 4.0mm, 4.5mm, 5.0mm, 5.6mm, 6.3mm, 7.1mm, 8.0mm, 8.8mm, 10.0mm, 11mm, 12.5mm, 14.2mm, 16.0mm, 17.5mm, 20.0mm, 22.2mm, 25mm, 28mm, 30mm, 32mm, 36mm, 40mm • Length: 6000mm To 12000mm • Surface Treatment: Fusion Bonded Epoxy (FBE, Three-Layer Polyethylene (3LPE), Three-Layer Polypropylene (3LPP), Coal Tar Enamel (CTE), Concrete Weight Coating (CWC), Hot-Dip Galvanizing (HDG), Zinc-Rich Paint Coating: Zinc-rich paint, Aluminum, Ceramic Coating, Polymer Coating, Polyurethane Coating, Quality Control: • ISO 9001:, ISO 14001:2015, OHSAS 18001:2007 Quality management systems – Requirements • Other: • Certification: • EN 10204 3.1: Inspection certificate type 2.1, 3.1 and 3.2 issued in accordance with EN 10204 • Shipping: Delivery of goods to the address requested by the customer |
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Chemical composition | |||||||||||||||||
Welded Steel Tube P460NL2, EN-10217-3 is a high-strength, low-alloy steel tube designed for use in high-pressure and high-temperature applications, such as in the oil and gas industry, petrochemical plants, and power generation facilities. The chemical composition of P460NL2 is specified in the EN-10217-3 standard and includes the following elements: | |||||||||||||||||
Steel grade | C | Si max | Mn | P max | S max | Cr max | Mo | Ni max | Al totb | Cu max | N max | Nb max | Ti max | V max | Nb+Ti+V max | ||
Steel name | Steel number | ||||||||||||||||
P460NL2 | 1.8918 | 0.2 | 0.6 | 1.0 to 1.7 | 0,025 | 0,020 | 0.3 | 0.10 | 0.80 | 0.02 | 0.70e | 0.02 | 0.05 | 0.03 | 0.20 | 0.22 | |
The chemical composition of P460NL2 is carefully controlled to ensure that the steel tube exhibits the necessary mechanical properties to withstand high-pressure and high-temperature conditions. The alloying elements in the composition, such as manganese, nickel, and molybdenum, contribute to the tube's high strength and toughness, while elements like silicon and copper aid in the steel's formability and weldability. It is essential to ensure that the chemical composition of the P460NL2 steel tube meets the specified requirements to guarantee its mechanical properties and suitability for the intended application. At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we work with trusted manufacturers and suppliers to ensure that all our welded steel tubes, including P460NL2, meet the required specifications and standards. |
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Mechanical Properties | |||||||||||||||||
The mechanical properties of Welded Steel Tube P460NL2, EN-10217-3 are crucial in determining its suitability for high-pressure and high-temperature applications. The EN-10217-3 standard specifies the following minimum mechanical properties for P460NL2: | |||||||||||||||||
Steel name: P460NL2 | Steel number: 1.8918 | Tensile strength: 570-750 Mpa | |||||||||||||||
Yield strength: 460 Mpa | |||||||||||||||||
Elongation: 17% min | |||||||||||||||||
Impact strength: 27J at -50°C | |||||||||||||||||
The yield strength of P460NL2 is the minimum stress level at which the steel tube starts to deform permanently, while the tensile strength is the maximum stress that the tube can withstand before breaking. The elongation represents the ductility of the material, which is the ability to stretch without breaking. The impact energy measures the toughness of the steel tube, which is its ability to absorb energy during sudden loading, such as in a collision. The specified minimum mechanical properties of P460NL2 ensure that the steel tube can withstand high-pressure and high-temperature conditions without deforming or failing. The high yield and tensile strengths of the tube enable it to resist deformation and withstand the loads imposed on it. The elongation ensures that the tube can be formed and bent without breaking, while the high impact energy guarantees its toughness and ability to withstand sudden loads. At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we ensure that all our Welded Steel Tube P460NL2, EN-10217-3, meets the specified minimum mechanical properties to guarantee its suitability for the intended application. |
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Inspection and testing | |||||||||||||||||
Inspection and testing of Welded Steel Tube P460NL2, EN-10217-3 are critical to ensure that the tube meets the specified requirements and standards for its intended use. The EN-10217-3 standard specifies several inspection and testing methods to be performed on P460NL2, including: 1. Chemical analysis: This test is performed to verify that the chemical composition of the steel tube meets the required specifications. The chemical composition of P460NL2 must comply with the standard, including the maximum allowable percentages of various elements. 2. Tensile testing: Tensile testing is used to determine the tensile strength, yield strength, and elongation of the steel tube. The test involves stretching a specimen of the tube to failure while measuring the applied force. 3. Charpy impact testing: Charpy impact testing is used to determine the toughness of the steel tube by measuring the energy absorbed when a notched specimen is struck by a pendulum hammer at a specified temperature. 4. Dimensional inspection: Dimensional inspection is performed to verify that the Welded Steel Tube P460NL2, EN-10217-3 meets the required dimensions and tolerances specified in the standard. This includes measurements of diameter, wall thickness, length, and straightness. 5. Non-destructive testing (NDT): NDT methods are used to detect and assess defects that may be present in the tube without damaging it. These methods include ultrasonic testing, radiography, magnetic particle testing, and liquid penetrant testing. At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we perform all the required inspection and testing on our Welded Steel Tube P460NL2, EN-10217-3, to ensure that it meets the specified standards and requirements. We use advanced testing equipment and highly qualified technicians to ensure accurate and reliable results. Our commitment to quality ensures that our customers receive high-quality products that meet their specific needs and applications. |
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Pressure and Temperature Ratings of | |||||||||||||||||
The pressure and temperature ratings of Welded Steel Tube P460NL2, EN-10217-3 depend on various factors, including the tube's size, wall thickness, and material properties. These ratings are important as they help ensure the safe and reliable operation of the tube in its intended application. According to the EN-10217-3 standard, Welded Steel Tube P460NL2 is designed for use in high-temperature applications, specifically in pressure systems that involve elevated temperatures. The maximum allowable temperature for P460NL2 is 400°C. The pressure rating of Welded Steel Tube P460NL2 is determined by its wall thickness, outside diameter, and the material's yield strength. The allowable pressure can be calculated using various formulas, such as the Barlow's formula or the ASME Boiler and Pressure Vessel Code. The pressure rating for P460NL2 varies depending on the specific application, and it is important to consult the appropriate standards and codes to determine the appropriate pressure rating. At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we provide Welded Steel Tube P460NL2 that meets the required pressure and temperature ratings. Our tubes are manufactured in compliance with the EN-10217-3 standard, and we work closely with our customers to ensure that our products meet their specific application requirements. |
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Standard marking for welded steel tubes | |||||||||||||||||
According to the EN-10217-3 standard, Welded Steel Tube P460NL2 must be marked with several specifications to ensure traceability and quality control. The marking should be applied on the tube at intervals not exceeding 1.5 meters and should be clear, durable, and legible. The standard marking for Welded Steel Tube P460NL2, EN-10217-3 should include the following information: 1. Manufacturer's name or trademark 2. Tube size (outside diameter and wall thickness) 3. Steel grade (P460NL2) 4. EN-10217-3 standard designation 5. Heat number or cast number for traceability purposes 6. Batch number or production code for quality control purposes 7. Any additional symbols or markings specified by the customer or applicable standards The standard marking is important as it allows for easy identification and traceability of the tube throughout its lifecycle. At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we ensure that our Welded Steel Tube P460NL2 is marked in compliance with the EN-10217-3 standard and any additional customer requirements. This helps us maintain the highest levels of quality control and ensure customer satisfaction. |
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Standard packing for steel Tubes | |||||||||||||||||
The standard packing of Welded Steel Tube P460NL2, EN-10217-3 is designed to protect the tube during transportation and storage, ensuring that it arrives at its destination in good condition. The packing must be appropriate for the size and weight of the tube, as well as the mode of transportation used. According to the EN-10217-3 standard, Welded Steel Tube P460NL2 must be packed in bundles or crates. The bundles must be securely strapped with steel strapping to prevent movement during transportation. The maximum weight of each bundle should not exceed 5,000 kg. Each bundle or crate of Welded Steel Tube P460NL2 must be marked with the following information: 1. Manufacturer's name or trademark 2. Tube size (outside diameter and wall thickness) 3. Steel grade (P460NL2) 4. EN-10217-3 standard designation 5. Heat number or cast number for traceability purposes 6. Bundle or crate number for easy identification 7. Any additional symbols or markings specified by the customer or applicable standards At TAP Vietnam International Investment Joint Stock Company (TAP Vietnam), we ensure that our Welded Steel Tube P460NL2 is packed in compliance with the EN-10217-3 standard and any additional customer requirements. This helps us maintain the highest levels of quality control and ensure customer satisfaction. |
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Supplier | |||||||||||||||||
TAP Vietnam International Investment Joint Stock Company (TAP Vietnam) is a leading supplier of high-quality Welded Steel Tube P460NL2, EN-10217-3. Our company has been serving the needs of various industries for many years, providing a wide range of steel tubes that meet international standards and customer requirements. The Welded Steel Tube P460NL2, EN-10217-3 is a high-strength low-alloy steel tube that is designed for use in pressure vessels and boilers. It is commonly used in the petrochemical, chemical, and power generation industries, among others. The tube is produced through a welding process that ensures the material's structural integrity and reliability. At TAP Vietnam, we offer Welded Steel Tube P460NL2, EN-10217-3 in various sizes and dimensions to meet the diverse needs of our customers. Our tubes are produced using the latest technology and equipment, ensuring high-quality and consistent products. We understand the importance of quality and safety in the industries we serve, which is why we prioritize these factors in every aspect of our operations. Our Welded Steel Tube P460NL2, EN-10217-3 undergoes rigorous testing and inspection processes to ensure they meet the highest standards of quality and safety. In addition to the EN-10217-3 standard, we also adhere to other international standards and customer requirements. This includes pressure and temperature ratings, chemical composition, and mechanical properties, among others. At TAP Vietnam, we take pride in providing our customers with exceptional products and services. We work closely with our clients to understand their specific needs and provide customized solutions that meet their requirements. Our commitment to quality, safety, and customer satisfaction has earned us a reputation as a trusted supplier of Welded Steel Tube P460NL2, EN-10217-3 in Vietnam and around the world. In conclusion, TAP Vietnam International Investment Joint Stock Company (TAP Vietnam) is a reliable and experienced supplier of Welded Steel Tube P460NL2, EN-10217-3. With a commitment to quality, safety, and customer satisfaction, we are dedicated to providing our customers with exceptional products and services that meet their specific needs. |
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Dimensions of Steel tube EN 10217-3 | ||||||||||||||||||||
dimensions in mm | ||||||||||||||||||||
Outside diameter D series a |
Wall thickness T | |||||||||||||||||||
1 | 2 | 3 | 0.5 | 0.6 | 0.8 | 1 | 1.2 | 1.4 | 1.6 | 1.8 | 2 | 2.3 | 2.6 | 2.9 | 3.2 | 3.6 | 4 | 4.5 | 5 | 5.6 |
10.2 | ||||||||||||||||||||
12 | ||||||||||||||||||||
12.7 | ||||||||||||||||||||
13.5 | ||||||||||||||||||||
14 | ||||||||||||||||||||
16 | ||||||||||||||||||||
17.2 | ||||||||||||||||||||
18 | ||||||||||||||||||||
19 | ||||||||||||||||||||
20 | ||||||||||||||||||||
21.3 | ||||||||||||||||||||
22 | ||||||||||||||||||||
25 | ||||||||||||||||||||
25.4 | ||||||||||||||||||||
26.9 | ||||||||||||||||||||
30 | ||||||||||||||||||||
31.8 | ||||||||||||||||||||
32 | ||||||||||||||||||||
33.7 | ||||||||||||||||||||
35 | ||||||||||||||||||||
38 | ||||||||||||||||||||
40 | ||||||||||||||||||||
42.4 | ||||||||||||||||||||
44.5 | ||||||||||||||||||||
48.3 | ||||||||||||||||||||
51 | ||||||||||||||||||||
54 | ||||||||||||||||||||
57 | ||||||||||||||||||||
60.3 | ||||||||||||||||||||
63.5 | ||||||||||||||||||||
70 | ||||||||||||||||||||
73 | ||||||||||||||||||||
76.1 | ||||||||||||||||||||
82.5 | ||||||||||||||||||||
88.9 | ||||||||||||||||||||
101.6 | ||||||||||||||||||||
108 | ||||||||||||||||||||
114.3 | ||||||||||||||||||||
127 | ||||||||||||||||||||
133 | ||||||||||||||||||||
139.7 | ||||||||||||||||||||
141.3 | ||||||||||||||||||||
152.4 | ||||||||||||||||||||
159 | ||||||||||||||||||||
168.3 | ||||||||||||||||||||
177.8 | ||||||||||||||||||||
193.7 | ||||||||||||||||||||
219.1 | ||||||||||||||||||||
244.5 | ||||||||||||||||||||
273 | ||||||||||||||||||||
323.9 | ||||||||||||||||||||
355.6 | ||||||||||||||||||||
406.4 | ||||||||||||||||||||
457 | ||||||||||||||||||||
508 | ||||||||||||||||||||
559 | ||||||||||||||||||||
610 | ||||||||||||||||||||
660 | ||||||||||||||||||||
711 | ||||||||||||||||||||
762 | ||||||||||||||||||||
813 | ||||||||||||||||||||
864 | ||||||||||||||||||||
914 | ||||||||||||||||||||
1 016 | ||||||||||||||||||||
1 067 | ||||||||||||||||||||
1 118 | ||||||||||||||||||||
1 168 | ||||||||||||||||||||
1 219 | ||||||||||||||||||||
1.321 | ||||||||||||||||||||
1.422 | ||||||||||||||||||||
Preferred dimensions (concluded) | ||||||||||||||||||||
dimensions in mm | ||||||||||||||||||||
Outside diameter D series a |
Wall thickness T | |||||||||||||||||||
1 | 2 | 3 | 6.3 | 7.1 | 8 | 8.8 | 10 | 11 | 12.5 | 14.2 | 16 | 17.5 | 20 | 22.2 | 25 | 28 | 30 | 32 | 36 | 40 |
30 | ||||||||||||||||||||
31.8 | ||||||||||||||||||||
32 | ||||||||||||||||||||
33.7 | ||||||||||||||||||||
35 | ||||||||||||||||||||
38 | ||||||||||||||||||||
40 | ||||||||||||||||||||
42.4 | ||||||||||||||||||||
44.5 | ||||||||||||||||||||
48.3 | ||||||||||||||||||||
51 | ||||||||||||||||||||
54 | ||||||||||||||||||||
57 | ||||||||||||||||||||
60.3 | ||||||||||||||||||||
63.5 | ||||||||||||||||||||
70 | ||||||||||||||||||||
73 | ||||||||||||||||||||
76.1 | ||||||||||||||||||||
82.5 | ||||||||||||||||||||
88.9 | ||||||||||||||||||||
101.6 | ||||||||||||||||||||
108 | ||||||||||||||||||||
114.3 | ||||||||||||||||||||
127 | ||||||||||||||||||||
133 | ||||||||||||||||||||
139.7 | ||||||||||||||||||||
141.3 | ||||||||||||||||||||
152.4 | ||||||||||||||||||||
159 | ||||||||||||||||||||
168.3 | ||||||||||||||||||||
177.8 | ||||||||||||||||||||
193.7 | ||||||||||||||||||||
219.1 | ||||||||||||||||||||
244.5 | ||||||||||||||||||||
273 | ||||||||||||||||||||
323.9 | ||||||||||||||||||||
355.6 | ||||||||||||||||||||
406.4 | ||||||||||||||||||||
457 | ||||||||||||||||||||
508 | ||||||||||||||||||||
559 | ||||||||||||||||||||
610 | ||||||||||||||||||||
660 | ||||||||||||||||||||
711 | ||||||||||||||||||||
762 | ||||||||||||||||||||
813 | ||||||||||||||||||||
864 | ||||||||||||||||||||
914 | ||||||||||||||||||||
1 016 | ||||||||||||||||||||
1 067 | ||||||||||||||||||||
1 118 | ||||||||||||||||||||
1 168 | ||||||||||||||||||||
1 219 | ||||||||||||||||||||
1 321 | ||||||||||||||||||||
1 422 | ||||||||||||||||||||
1 524 | ||||||||||||||||||||
1 626 | ||||||||||||||||||||
1 727 | ||||||||||||||||||||
1 829 | ||||||||||||||||||||
1 930 | ||||||||||||||||||||
2 032 | ||||||||||||||||||||
2 134 | ||||||||||||||||||||
2 235 | ||||||||||||||||||||
2 337 | ||||||||||||||||||||
2 438 | ||||||||||||||||||||
2.540 | ||||||||||||||||||||
a series 1 = diameters for which all the accessories needed for the construction of piping system are standardised; series 2 = diameters for which not all the accessories are standardised; series 3 = diameters for special application for which very few standardised accessories exist. |
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Tolerances Tolerances on diameter and thickness The diameter and the wall thickness of the tubes shall be within the tolerance limits given |
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Tolerances on outside diameter and wall thickness | ||||||||||||||||||||
dimension in mm | ||||||||||||||||||||
Outside diameter D |
Tolerance on | |||||||||||||||||||
outside diameter D |
wall thickness T a | |||||||||||||||||||
T ≤ 5 | 5 < T d ≤ 40 | |||||||||||||||||||
D ≤ 219,1 |
± 1% or ± 0,5 whichever is the greater |
± 10 % or ± 0,3 whichever is the greater |
± 8 % or ± 2 whichever is the smaller |
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D > 219,1 |
± 0,75 % or ± 6 whichever is the smaller |
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Height of the weld seam The height of the external and internal weld seam shall be within the limits indicated |
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Maximum height of the weld seam for EW and BW tubes | ||||||||||||||||||||
dimension in mm | ||||||||||||||||||||
Manufacturing Process | Quality TR1 | Quality TR2 | ||||||||||||||||||
Outside | Inside | Outside | Inside | |||||||||||||||||
EW | Trimmed | 1,5 | Trimmed | 0,5 + 0,05 T | ||||||||||||||||
BW | As rolled | 0,5 + 0,05T | — | — | ||||||||||||||||
Maximum height of the weld seam for SAW tubes | ||||||||||||||||||||
dimensions in mm | ||||||||||||||||||||
Wall thickness T |
Maximum height of the weld seam | |||||||||||||||||||
Inside | Outside | |||||||||||||||||||
T ≤ 12,5 | 3,5 | 3,5 | ||||||||||||||||||
T > 12,5 | 4,8 | 4,8 | ||||||||||||||||||
Height of the weld seam The height of the external and internal weld seam shall be within the limits indicated Radial offset of plate or strip edges at the weld for SAW tubes The radial offset of the abutting plate or strip edges shall be within the limits indicated |
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Maximum radial offset of the abutting plate or strip | ||||||||||||||||||||
dimensions in mm | ||||||||||||||||||||
Wall Thickness T | Maximum radial offset | |||||||||||||||||||
T ≤ 12,5 | 1.6 | |||||||||||||||||||
T > 12,5 | 0,125 T with a max. of 3,2 | |||||||||||||||||||
Misalignment of the weld seam of SAW tubes Misalignment of the weld seam shall be acceptable provided complete penetration and complete fusion are achieved. Tolerances on exact length The tolerances for exact lengths shall be as given |
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Tolerances on exact length | ||||||||||||||||||||
dimensions in mm | ||||||||||||||||||||
Length | Tolerances on exact length for outside diameter (D) | |||||||||||||||||||
L | < 406,4 | ≥ 406,4 | ||||||||||||||||||
L ≤ 6000 |
+10 0 |
+25 0 |
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6000 < L ≤ 12000 |
+15 0 |
+50 0 |
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L > 12000 |
+ by agreement 0 |
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