| Payment Terms | L/C,D/A,D/P,T/T,Western Union,MoneyGram |
| Supply Ability | 5000Tons per Year |
| Delivery Time | 4-8weeks |
| Packaging Details | in bundles or in wooden box |
| Product | Seamless internally rifled boiler tube |
| Length | 1–12 m; fixed, random, or cut-to-length supply available |
| Material | Carbon steel |
| Manufacturing Process | Hot-finished or cold-finished seamless tube followed by controlled internal rifling |
| Wall Thickness | Typically 3.0–12.0 mm, based on the minimum wall remaining below the rib root |
| Outside Diameter | Typically 31.8–76.2 mm; other dimensions by engineering review |
| Primary Standards | ASTM A192/A192M, ASME SA-192/SA-192M, ASTM A210/A210M, ASME SA-210/SA-210M |
| Principal Grades | ASTM A192, ASTM A210 Grade A-1, ASTM A210 Grade C |
| Brand Name | TORICH |
| Model Number | ASTM A192 |
| Certification | ISO9001, ISO14001, TS16949 |
| Place of Origin | China,zhejiang |
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Product Specification
| Payment Terms | L/C,D/A,D/P,T/T,Western Union,MoneyGram | Supply Ability | 5000Tons per Year |
| Delivery Time | 4-8weeks | Packaging Details | in bundles or in wooden box |
| Product | Seamless internally rifled boiler tube | Length | 1–12 m; fixed, random, or cut-to-length supply available |
| Material | Carbon steel | Manufacturing Process | Hot-finished or cold-finished seamless tube followed by controlled internal rifling |
| Wall Thickness | Typically 3.0–12.0 mm, based on the minimum wall remaining below the rib root | Outside Diameter | Typically 31.8–76.2 mm; other dimensions by engineering review |
| Primary Standards | ASTM A192/A192M, ASME SA-192/SA-192M, ASTM A210/A210M, ASME SA-210/SA-210M | Principal Grades | ASTM A192, ASTM A210 Grade A-1, ASTM A210 Grade C |
| Brand Name | TORICH | Model Number | ASTM A192 |
| Certification | ISO9001, ISO14001, TS16949 | Place of Origin | China,zhejiang |
| High Light | Seamless Carbon Steel Structural Pipe ,ASTM A500 Seamless Steel Tube ,High Pressure Boiler Seamless Steel Tube | ||
ASTM A192 and ASTM A210 internally rifled boiler tubes are seamless carbon steel tubes manufactured with controlled internal helical ribs. The ribbed internal surface generates rotational flow, improves water-side mixing, disrupts the thermal boundary layer, and helps maintain stable tube-wall cooling under high heat-flux conditions.
These tubes are commonly selected for high-pressure boiler furnace circuits where conventional smooth-bore tubes may provide insufficient internal turbulence at reduced mass flow. Material grade, minimum remaining wall thickness, rib geometry, dimensional tolerances, heat treatment, and pressure testing must be specified separately in the purchase order.
| Item | Available Specification |
|---|---|
| Product | Seamless internally rifled boiler tube |
| Material | Carbon steel |
| Primary Standards | ASTM A192/A192M, ASME SA-192/SA-192M, ASTM A210/A210M, ASME SA-210/SA-210M |
| Principal Grades | ASTM A192, ASTM A210 Grade A-1, ASTM A210 Grade C |
| Alternative Grades | EN 10216-2 P235GH, JIS G3461 STB410, GB/T 5310 20G |
| Manufacturing Process | Hot-finished or cold-finished seamless tube followed by controlled internal rifling |
| Outside Diameter | Typically 31.8-76.2 mm; other dimensions by engineering review |
| Wall Thickness | Typically 3.0-12.0 mm, based on the minimum wall remaining below the rib root |
| Length | 1-12 m; fixed, random, or cut-to-length supply available |
| Rib Type | Single-start or multi-start internal helical ribs |
| Rib Geometry | Rib height, width, pitch, lead angle, and number of starts according to approved drawing |
| OD Tolerance | According to the applicable ASTM, ASME, EN, JIS, or GB standard |
| Wall Tolerance | Controlled on the minimum wall at the rib root; project-specific tolerance available |
| Straightness | Typically ≤1.5 mm per metre, or as specified in the purchase order |
| End Condition | Plain ends, square cut, deburred, or prepared for tube-panel welding |
| Surface Condition | Pickled, shot-blasted, phosphate-coated, lightly oiled, or uncoated |
| Heat Treatment | Full annealing, normalizing, or stress-relief treatment according to grade and manufacturing route |
| Inspection | Dimensional inspection, rib-profile measurement, tensile testing, flattening or flaring testing, hardness testing, hydrostatic testing, and NDT |
| Certification | EN 10204 3.1; third-party inspection available |
Rib height, rib pitch, lead angle, rib-root radius, and number of starts are controlled according to an approved cross-sectional drawing. Rib-profile inspection should be conducted at both tube ends and at agreed intermediate positions.
The purchase specification should clearly distinguish between:
The helical ribs induce a rotational component in the water-steam flow. This increases internal mixing and reduces the thickness of the thermal boundary layer adjacent to the tube wall.
The performance benefit depends on the complete combination of:
Rifling geometry should therefore be selected from the boiler designer's thermal-hydraulic calculation rather than from a generic catalogue dimension.
For pressure calculations, the critical wall dimension is normally the minimum remaining wall measured below the rifling groove or at the rib root, not the apparent wall measured across the raised rib.
Our dimensional inspection can include:
ASTM A192 covers seamless carbon steel boiler tubes for high-pressure service, while ASTM A210 covers seamless medium-carbon steel boiler and superheater tubes in Grades A-1 and C.
Typical verification includes:
A frequent purchasing error is specifying only the nominal wall thickness while ignoring the metal displaced during rifling.
Before production, we confirm:
This prevents a tube from meeting the outside dimensions while failing the pressure-design minimum wall requirement.
The material standard alone does not define the thermal-performance geometry of an internally rifled tube. Rib dimensions must be separately agreed between the boiler designer, purchaser, and tube manufacturer.
Inspection records can include:
This provides traceable evidence that the supplied tube matches the approved boiler design.
An internally rifled tube may meet material properties but still create fabrication problems if tube ends, ovality, residual stress, or rib termination are not controlled.
Available controls include:
| Standard | Scope |
|---|---|
| ASTM A192/A192M | Seamless carbon steel boiler tubes for high-pressure service |
| ASME SA-192/SA-192M | ASME boiler-code material specification corresponding to ASTM A192 |
| ASTM A210/A210M | Seamless medium-carbon steel boiler and superheater tubes |
| ASME SA-210/SA-210M | ASME boiler-code material specification corresponding to ASTM A210 |
| ASTM A450/A450M | General requirements for carbon and low-alloy steel boiler and heat-exchanger tubes |
| EN 10216-2 | Seamless steel tubes for pressure purposes at elevated temperature |
| JIS G3461 | Carbon steel tubes for boilers and heat exchangers |
| GB/T 5310 | Seamless steel tubes and pipes for high-pressure boilers |
Internally rifled tubes are used as pressure-bearing water-wall tubes in high-heat-flux furnace zones. The ribs increase water-side turbulence and help stabilize tube cooling where the operating design permits lower mass flow than would normally be acceptable for smooth-bore tubing.
For this application, the purchase specification should define:
The values below are maximum or range requirements in mass percent. Final acceptance must follow the exact edition of the specified standard and the certified mill test report.
| Grade | C | Si | Mn | P | S |
|---|---|---|---|---|---|
| ASTM A192 / ASME SA-192 | 0.06-0.18 | ≤0.25 | 0.27-0.63 | ≤0.035 | ≤0.035 |
| ASTM A210 Grade A-1 / ASME SA-210 A-1 | ≤0.27 | ≥0.10 | ≤0.93 | ≤0.035 | ≤0.035 |
| ASTM A210 Grade C / ASME SA-210 C | ≤0.35 | ≥0.10 | 0.29-1.06 | ≤0.035 | ≤0.035 |
| EN 10216-2 P235GH | ≤0.16 | ≤0.35 | 0.60-1.20 | ≤0.025 | ≤0.020 |
| JIS G3461 STB410 | ≤0.32 | ≤0.35 | 0.30-0.80 | ≤0.035 | ≤0.035 |
The published ASTM A192 composition includes 0.06-0.18% carbon, 0.27-0.63% manganese, maximum 0.035% phosphorus, maximum 0.035% sulfur, and maximum 0.25% silicon.
Mechanical properties vary with product dimensions, test orientation, heat treatment, and the edition of the governing standard. Values below are commonly specified minimum room-temperature properties.
| Grade | Minimum Tensile Strength | Minimum Yield Strength | Minimum Elongation | Typical Hardness Limit |
|---|---|---|---|---|
| ASTM A192 / ASME SA-192 | 325 MPa | 180 MPa | 35% | 77 HRB |
| ASTM A210 Grade A-1 / ASME SA-210 A-1 | 415 MPa | 255 MPa | 30% | 79 HRB |
| ASTM A210 Grade C / ASME SA-210 C | 485 MPa | 275 MPa | 30% | 89 HRB |
| EN 10216-2 P235GH | 360-500 MPa | 235 MPa | 25% | According to delivery condition |
| JIS G3461 STB410 | 410 MPa | 245 MPa | 25% | According to JIS requirements |
If you have another question, please feel free to contact with me.
Company Details
Business Type:
Manufacturer,Distributor/Wholesaler,Importer,Exporter,Trading Company,Seller
Year Established:
1997
Total Annual:
25000000-30000000
Employee Number:
100~200
Ecer Certification:
Verified Supplier
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