| 1. Material Receiving and Identification | Confirm that the steel grade, dimensions, heat number, and documentation match the purchase requirements. | Plate or coil receiving area, weighing equipment, dimensional gauges, and positive material identification when specified. | Material thickness, width, outside diameter range, heat number, carbon equivalent, and mechanical properties. | ASTM A530/A530M for general requirements; product standards such as API 5L, ASTM A106/A106M, or ASTM A53/A53M when applicable. | Mill test certificate review, traceability marking, visual inspection, thickness measurement, and surface condition checks. | Material mix-up, unidentified steel, laminations, excessive rust, or out-of-tolerance plate thickness. | Material traceability record |
| 2. Plate or Coil Preparation | Prepare clean, dimensionally stable feedstock for forming and welding. | Leveler, edge milling machine, plate shears, decoiler, straightener, and automatic edge-trimming equipment. | Edge squareness, bevel angle, root face, plate flatness, surface cleanliness, and cut length. | Purchasing specification and the dimensional requirements of the selected pipe standard. | Edge profile measurement, flatness checks, removal of burrs, and verification of heat-number continuity. | Uneven edges, incorrect bevel geometry, residual scale, burrs, and loss of material identity. | Prepared material inspection |
| 3. Forming | Convert plate or strip into a cylindrical pipe body while controlling roundness and residual stress. | Three-roll bending, UOE forming, JCO forming, spiral forming, or continuous roll forming, depending on pipe type and size. | Forming sequence, roll or die position, springback compensation, ovality, diameter, and longitudinal edge alignment. | API 5L, ASTM A53/A53M, ASTM A106/A106M, ASTM A252, or project-specific requirements. | Outside diameter, wall thickness, ovality, end squareness, straightness, and edge mismatch measurements. | Excessive ovality, buckling, edge offset, local dents, cracking, or high residual stress. | Dimensional inspection report |
| 4. Welding | Produce a sound longitudinal or helical seam with adequate penetration, fusion, and mechanical integrity. | High-frequency electric resistance welding (ERW), submerged arc welding (SAW), or other qualified welding processes. | Welding current, voltage, travel speed, heat input, electrode or wire feed, shielding conditions, and interpass temperature. | ASME Section IX for procedure and personnel qualification; API 5L or the applicable product specification for acceptance requirements. | Welding procedure qualification, operator qualification, seam alignment, bead profile, and visual examination. | Lack of fusion, incomplete penetration, porosity, undercut, cracks, inclusions, and excessive weld reinforcement. | Weld visual examination |
| 5. Weld Seam Treatment | Remove excessive reinforcement and improve the geometry of the weld area before subsequent inspection or heat treatment. | Internal and external weld bead scarfing, grinding, seam conditioning, and controlled local repair equipment. | Reinforcement height, transition profile, grinding depth, repair length, and surface finish. | Product specification, approved welding procedure, and applicable repair requirements. | Visual examination, weld profile gauges, dimensional checks, and repair documentation. | Over-grinding, sharp notches, remaining weld defects, unauthorized repairs, or reduced wall thickness. | Conditioned seam record |
| 6. Heat Treatment | Achieve the required microstructure and mechanical properties while reducing harmful welding or forming stresses. | Normalizing furnace, stress-relief furnace, full-body heat-treatment line, or localized seam heat treatment. | Heating rate, soaking temperature, holding time, furnace atmosphere, cooling rate, and temperature uniformity. | Relevant product standard, approved heat-treatment procedure, and ASTM A370 for mechanical testing methods when applicable. | Calibrated thermocouples, furnace temperature mapping, chart recording, batch traceability, and hardness checks. | Insufficient transformation, overheating, decarburization, distortion, nonuniform temperature, or incorrect cooling. | Heat-treatment chart and batch record |
| 7. Sizing, Straightening, and End Finishing | Bring the pipe to final dimensional tolerances and prepare the ends for joining, threading, or shipment. | Sizing mill, hydraulic expander, mechanical straightener, facing machine, beveling machine, and threader when required. | Outside diameter, wall thickness, straightness, end bevel angle, root face, end squareness, and thread dimensions. | API 5L, ASTM A530/A530M, ASTM A999/A999M, or the relevant customer specification. | Caliper and micrometer checks, bevel gauges, thread gauges, straightness measurement, and visual examination. | Out-of-roundness, damaged ends, incorrect bevel, excessive straightening marks, and dimensional drift. | Final dimensional record |
| 8. Non-Destructive Examination (NDE) | Detect surface or internal discontinuities without damaging the finished pipe. | Ultrasonic testing (UT), radiographic testing (RT), magnetic particle testing (MT), liquid penetrant testing (PT), and electromagnetic inspection. | Calibration block response, scanning coverage, sensitivity, probe frequency, radiographic density, and indication evaluation. | ISO 10893 series, ASME Section V, API 5L, ASTM E213, ASTM E273, ASTM E709, or the specified inspection standard. | Equipment calibration, operator qualification, system checks, scan coverage, indication logging, and acceptance evaluation. | Missed indications, poor coupling, inadequate coverage, incorrect calibration, geometric interference, or misinterpretation. | NDE report and acceptance status |
| 9. Hydrostatic or Pressure Testing | Verify pressure-containing integrity and identify through-wall leakage or unacceptable deformation. | Hydrostatic test pump, calibrated pressure gauges, test chamber, end closures, and automated pressure recording system. | Test pressure, holding time, water quality, pressure stability, temperature, and visible leakage criteria. | API 5L, ASTM A53/A53M, ASTM A106/A106M, or the applicable purchase specification. | Gauge calibration, pressure chart recording, test duration, leakage inspection, and post-test drainage. | Leakage, pressure loss, end-closure failure, excessive permanent deformation, or corrosion from poor drying. | Pressure test certificate |
| 10. Mechanical and Metallurgical Testing | Confirm that the pipe meets specified strength, ductility, toughness, and material quality requirements. | Tensile testing machine, bend or flattening equipment, impact tester when required, hardness tester, and metallographic laboratory. | Yield strength, tensile strength, elongation, impact energy, hardness, flattening behavior, and weld-zone properties. | ASTM A370, ASTM E23, ASTM E18, API 5L, and the applicable material specification. | Sampling plan, specimen orientation, test temperature, machine calibration, and fracture or failure evaluation. | Low strength, insufficient elongation, brittle fracture, excessive hardness, or nonrepresentative sampling. | Mechanical test report |
| 11. Final Inspection, Coating, and Marking | Release conforming pipe with complete identification, protection, and documentation. | Final visual inspection station, coating line, paint or varnish applicator, stencil printer, and packing area. | Coating thickness, surface cleanliness, marking legibility, pipe length, quantity, end protection, and packing configuration. | ISO 8501-1 for surface preparation when applicable; project coating specification and product standard marking rules. | Final dimensional review, coating thickness measurement, marking verification, document review, and traceability audit. | Incomplete markings, coating holidays, transport damage, mixed heat numbers, or missing certificates. | Release package and shipping record |