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EN1026

EN 10216 seamless tube 16MO3

EN 10216 seamless tube 16MO3

This part of EN1026 specifies the technical delivery conditions in two test categories for seamless tubes for circular cross section, with specified elevated temperature properties, made of non-alloy and alloy steel.

Chemical composition(%) of EN 10216

Steel gradeCSiMnPSCr   bMo   bNi   bAl   totCu  b cNb   bCr+Cu +Mo+Ni
Steel nameSteel numbermax. max. max.Max.max.max.max.max.min.max.max.max.   b
P195TR11.01070,130,350,700,0250,0200,300,080,30-0,300,0100,70
P195TR21.01080,130,350,700,0250,0200,300,080,300,02   d0,300,0100,70
P235TR11.02540,160,351,200,0250,0200,300,080,30-0,300,0100,70
P235TR21.02550,160,351,200,0250,0200,300,080,300,02   d0,300,0100,70
P265TR11.02580,200,401,400,0250,0200,300,080,30-0,300,0100,70
P265TR21.02590,200,401,400,0250,0200,300,080,300,02   d0,300,0100,70
a Elements not included in this Table shall not be intentionally added to the steel without the agreement of the purchaser, except for elements which may be added for finishing the cast. All appropriate measures shall be taken to prevent the addition of undesirable elements from scrap or other materials used in the steelmaking process.

b The content of these elements need not be reported unless intentionally added to the cast.

c Option 2: In order to facilitate subsequent forming operation, an agreed maximum copper content lower than indicated and an agreed specified maximum tin content shall apply.

d This requirement is not applicable provided the steel contains a sufficient amount of other nitrogen binding elements which shall be reported.

Steel gradeTensile propertiesImpact properties
Steel nameSteel numberUpper yield strength ReH b min. for Wall Thickness T mmTensile Strength
Rm
Elongation A min.   % 
b c
Minimum average absorbed energy KV J at a temperature of °C c
T =1616 < T =4040 < T =60lt
MpaMpaMpaMpalt0-100
P195TR1 e1.0107195185175320 to 4402725---
P195TR21.0108195185175320 to 44027254028 d27
P235TR1 e1.0254235225215360 to 5002523---
P235TR21.0255235225215360 to 50025234028 d27
P265TR1 e1.0258265255245410 to 5702119---
P265TR21.0259265255245410 to 57021194028 d27

Application

EN 10216 Seamless steel tubes for pressure purposes

Inspection and test for EN 10216 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 testingXX
Visual inspectionXX
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 endsXX
NDT in order to identify transverse discontinuityEvery pipeXX
NDT in order to identify delaminationXX

DIN EN 10216-1

Seamless steel tubes for pressure purposes – Technical delivery conditions -Part 1: Non-alloy steel tubes with specified room temperature properties
Specifies the technical delivery conditions for two qualities, T1 and T2, of seamless tubes of circular cross section, with specified room temperature properties, made of non-alloy quality steel…

DIN EN 10216-2

Seamless steel tubes for pressure purposes – Technical delivery conditions – Part 2: Non alloy and alloy steel tubes with specified elevated temperature properties; German version EN 10216-2:2002+A2:2007
The document specifies the technical delivery conditions in two test categories for seamless tubes of circular cross section, with specified elevated temperature properties, made of non-alloy and alloy steel.

DIN EN 10216-3

Seamless steel tubes for pressure purposes -Technical delivery conditions – Part 3: Alloy fine grain steel tubes
Specifies the technical delivery conditions in two categories for seamless tubes of circular cross section, made of weldable alloy fine grain steel

DIN EN 10216-4

Seamless steel tubes for pressure purposes – Technical delivery conditions -Part 4: Non-alloy and alloy steel tubes with specified low temperature properties
Specifies the technical delivery conditionsin two categories for seamless tubes of circular crossection, made with specified low temperature properties, made of non-alloy and alloy steel…

DIN EN 10216-5

Seamless steel tubes for pressure purposes – Technical delivery conditions-Part 5: Stainless steel tubes; German version EN 10216-5:2004, Corrigendum to DIN EN 10216-5:2004-11; German version EN 10216-5:2004/AC:2008

This Part of this European Standard specifies the technical delivery conditions in two test categories for seamless tubes of circular cross-section made of austenitic (including creep resisting steels) and austenitic-ferritic stainless steel which are applied for pressure and corrosion resisting purposes at room temperature, at low temperatures or at elevated temperatures. It is important that the purchaser, at the time of enquiry and order, takes in account the requirements of the relevant national legal regulations for the intended application.

EN 10216-1 Tubes Inspection and test type

EN 10216-1 Grade P235TR2 Alloy Steel Seamless Tubes & heat exchanger tube in many sizes & surface finish
Inspection and test typeTest frequency
Mandatory testsLadle analysisOne ladle
Tensile testingOne per every tested batch
Resilience testing at the temperature of 0ºC
Tightness testingEvery pipe
Dimensional testing-
Visual inspection-
Optional testsLadle analysisOne ladle
Resilience testing on longitudinal samples at the temperature of -10ºCOne per every tested batch
Wall thickness measurements at a distance from pipe ends-
Non-destructive testing in order to identify any longitudinal discontinuityEvery pipe
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