EN10216-2

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  • OD: 10.2mm-720mm
  • WT: 1.2mm~12mm
  • Length: 5-12m or as to customer requirement
  • Surface: Painting, oil coating, Anti-corrosion & Insulation.
  • Delivery state: Hot Rolled, Cold Drawn.
  • Steel Grade: P195GH, P235GH, P265GH, 16Mo3, 14MoV6-3, 13CrMo4-5, 10CrMo9-10.

Alloy Steel Pipe EN10216-2 Grade Available Specification

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EN
Product NameExecutive StandardDimension (mm)Steel Code / Steel Grade
Seamless Ferritic Alloy Steel Pipes for High Temperature UseEN10216-2Ø8″~42″ x WT15~10013CrMo4-5, 1-CrMo9-10, X10CrMoVNb9-1, 15NiCuMoNb5-6-4

Product Scope:

EN10216-2 is a specification for seamless steel pipes for specific high temperature applications such as boiler tubes and power plants. It has the following steel grades: P195GH, P235GH, P265GH, 16Mo3, 14MoV6-3, 13CrMo4-5, 10CrMo9-10, including non Alloy and alloy steel. EN 10216-2 specifies the technical delivery conditions for 2 test categories for circular section seamless pipes, ANSON is an experienced supplier of boiler and pressure steel pipes that can supply you with EN10216-2 pipes in all grades and size ranges .

Inspection and Test For EN 10216-2 Alloy Steel Pipe

Inspection and test typeTest frequencyTest category
Mandatory testsLadle analysisOne per ladle12
Tensile testing in room temperatureOne per every test pipeXX
Flattening test for D<600mm and the ratio of D≤0.15 but T≤40mm or ring testing for D>150mm and T ≤40mmXX
Rolling test on a mandrel bar for D≤150mm and T≤10mm or ring testing for D≤114,3mm and T ≤12,5mmXX
Resilience testing at the temperature of 20 ºCXX
Tightness testingEvery pipeXX
Dimensional testing XX
Visual inspection XX
NDT in order to identify longitudinal discontinuityEvery pipeXX
Material identification for alloy steelXX
Optional testsFinal product analysisOne per ladleXX
Tensile testing at elevated temperatureOne per ladle and for the same thermal processing conditionsXX
Resilience testingOne per every test pipeXX
Resilience testing in the machine direction at the temperature of -10ºC for non-alloy steel gradesXX
Wall thickness measurement at a distance from pipe ends XX
NDT in order to identify transverse discontinuity
Every pipe
XX
NDT in order to identify delaminationXX
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