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Steel 20Х12НМВБФАР (CHS139)

Steel 16Х12В2ФТаР (EC181) Steel 17Х18Н9 (2Х18Н9) Steel 15Х16Н2АМ (EP479) Steel 14Х20Н25В5МБ (LZhT) Steel 14Х17Н2 (ЭИ268) Steel 13Х16Н3М2АФ (VNS57) Steel 12Х18Н9 (Х18Н9) Steel 12Х12М1БФР (EP450) Steel 11Х17Н Steel 10Х25Н6АТМФ Steel 10Х20Н33Б 10X18H9 steel 10X18N10T steel (EP502) Steel 10Х12Н3М2БФ Steel 10Х12Н20Т2 (EP452) 09Cr18Ni9 steel Steel 09X17N (ChS130) Steel 08Х20Н12АБФ Steel 08X19H12TF Steel 08Х16Н11М3 45X25H35BS steel Steel CS 116-ID (EP753U-ID) Steel 9Х13Н6ЛК4 (ЭИ928) Steel 80X20NS (EP992) Steel 50X25H35S2B Steel 50Х25Н35В5К15С Steel 50Х20Н35С2Б Steel 50Kh15MFasch Steel 4Х13Н6ЛВФ (EP354) Steel 45Х28Н49В5С Steel 08Cr13 (EI496) Steel 45X25H20C2 Steel 45X25H20S Steel 35Х24Н24Б Steel 32Х13Н6К3М2БДЛТ (VNS-32; SES1) Steel 30X23H7S Steel 23Х15Н5АМ3 (18Х15Н6АМ3; VNS-9) Steel 20Х13Н2ДМЮФ (DI96) Steel 20X13 (02X13) Steel 20Х12НМВБФАР (ЧС139) Steel 02N15K10M5F5 Steel 03N18K8M3TU (ЗИ25) Steel 03N18K1M3TU (ZI80) Steel 03N17K10V10MT (EP836) Steel 03N15K10M5F5 (EK169) Steel 03N14Cr5M3Tu (OMC-2) Steel 03N14H5M3T (EP777) Steel 03N10Cr12D2T Steel 02X8H22S6 (EP794) Steel 02N18M3K3T (EK165; ČS101) Steel 03N18K9M5TU (ChS4) Steel 01N18K9M5T (EP637U) Steel 015Cr18Nr15P30 (EP168B) Steel 015Х18Н15Р26 (EP168А) Steel 015Cr18Nr15P22 (EP167B) Steel 015Cr18Nr15P17 (EP167A) Steel 015Х18Н15Р13 (EP166Б) Steel 015Cr18Nr15P09 (EP166A) Steel 015N18M4TU (EP989; ČS5U) Steel 015N18K13M5TU (EP948; ČS35) Steel 05X12H2M Steel 07Х25Н16АГ6Ф (EP750) Steel 07Х15Н30В5М2 (ChS81) Steel 07Х12НМФБ (ChS80) Steel 07Х12НМБФ (EP609) Steel 06Х16Н15М3БР (EP172) Steel 06Х16Н15М2Г2ТФР (ЧС68) Steel 06Х15Н6МВФБ (VNS16) Steel 06X13H7D2 (EP898) Steel 05Х12Н5К14М5ТВ (EP695) Steel 08Х14Н2К3МФБ (EK93; VNS-51) Steel 04Х16Н11М3Т (DI95) Steel 03Х17Н14М3 (ЗИ66) Steel 03Х13Н5М5К9 (VNL-6) Steel 03Х12Н8МТю (ЗИ37) Steel 03Х12Н8К5М2ТЮ (ЗИ90) Steel 03Х11Н10М2Т1 (EP679) Steel 03Х11Н10М2Т (EP678; VNS-17) Steel 03N18M4TU (ChS25) Steel 03N18M3TU (ChS5)

Designation

Name The value
Designation GOST Cyrillic 20Х12НМВБФАР
Designation GOST Latin 20X12HMBBFAP
Transliteration 20H12NMVBFAR
The chemical elements 20Cr12НMoWNbVNB
Name The value
Designation GOST Cyrillic ЧС139
Designation GOST Latin ChC139
Transliteration ChS139
The chemical elements ZrС139

Description

20Х12НМВБФАР steel is used: for the production of bars with a diameter of 13 mm, tubular billets and pipes used for the fabrication of parts and structures of the active zones of nuclear energy (fast) and fusion reactors.

Note

Corrosion-resistant ferritic-martensitic steel.

Standards

Name Code Standards
Bulls. Blanks. Slabs В31 TU 14-131-1073-2010
Sectional and shaped rolling В32 TU 14-131-1077-2010

Chemical composition

Standard C S P Mn Cr Si Ni Fe Cu N Al V B Ti Mo Nb W Ce Zr Co Ta
TU 14-131-1077-2010 0.19-0.21 ≤0.01 ≤0.015 0.5-0.8 11-12.5 ≤0.3 0.5-0.8 The rest ≤0.01 0.08-0.11 ≤0.1 0.2-0.4 ≤0.006 ≤0.1 0.4-0.6 0.2-0.4 1-1.5 ≤0.1 ≤0.2 ≤0.01 0.07-0.15
Fe is the basis.
According to TU 14-131-1073-2010 and TU 14-131-1077-2010 the chemical composition is given for steel grade 20Х12НМВБФАР-Ш (ЧС139-Ш). Cerium is introduced into the metal by calculation and chemical analysis is not determined. Boron and zirconium are introduced into the metal by calculation and their actual content is recorded in the quality document. The mass fraction of nitrogen and oxygen is optional, the deviation is not a rejection sign. The mass fraction (%) of non-ferrous metal impurities should be no more than: arsenic (As) 0.005, lead (Pb) 0.0005, cadmium (Cd) 0.0005, tin (Sn) 0.001, antimony (Sb) 0.001, bismuth (Bi) 0.0005, zinc (Zn) 0.001. The results of control of non-ferrous metal impurities are optional. The actual content is indicated in the quality document.

Mechanical characteristics

Section, mm sT|s0,2, MPa σB, MPa d5, %
Tubular billet on the other 14-131-1073-2010 and bars on the other 14-131-1077-2010. Hardening in air, 1080-1100 °C (delay of 40-60 minutes) Leave at 680-720 °C (extract 1-3 hours), air cooling
20-25 ≥490 ≥640 ≥12
20-25 ≥343 ≥490 ≥12
20-25 ≥265 ≥295 ≥22

Description mechanical marks

Name Description
Section Section
sT|s0,2 Yield strength or limit of proportionality with a tolerance for residual deformation of 0.2%
σB Limit short-term strength
d5 Elongation after rupture

Technological properties

Name The value
Macrostructure and contamination The macrostructure of the workpiece in the delivery state should not have cracks, bubbles, bloat of the crust, delamination, traces of shrinkage, inclusions, visible to the naked eye. Allowable defects of the macrostructure shall not exceed: Central porosity, point heterogeneity and phase separation square - 1.0 points for each parameter; the common spotted liquation, edge spotty liquation and liquation Pousada - 2.0 points for each parameter. Layer-by-layer crystallization and the square of the increased travelmasti are not rejection symptom. Standards in scores of macrostructure optional and are entered in the document about quality. The content of nonmetallic inclusions by the maximum score shall not exceed: oxides of stroke (OS), silicates plastic (SP), silicates, non-deformed (SN) and sulfides (S) - 1.0 points for each parameter; the point oxides (FROM), silicates fragile (CX) and the nitrides and carbonitrides point (NT) - 2.0 points for each parameter; the nitrides and carbonitrides stroke (NA) - 3.0 points.
Features of production Tubular billet of diameter from 63 to 85 mm comes with ukonom not less than 10, the tubular billet with a diameter of 85 mm comes with ukonom at least 4. The ingots subjected to homogenizing annealing at temperatures below 1160° C for 6 hours, allowed to reconcile the homogenizing annealing, heating under hot deformation. The tubular billet is supplied in the heat treated condition according to the mode: heating to a temperature of (800±20) °C, cooling with the furnace to a temperature of 600 °C, then air cooling.
Features of heat treatment The ingots subjected to homogenizing annealing at temperatures below 1160 °C for 6 hours, allowed to reconcile the homogenizing annealing, heating under hot deformation. The rods are supplied in heat treated condition according to the mode: heating to a temperature of (800±20) °C, cooling with the furnace to a temperature of 600°C, then air cooling.

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