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SAE8620H Alloy Steel Round Bar 20CrNiMoA Steel Rod Forged Steel / Hot Rolled Steel Bars

JIANGSU MITTEL STEEL INDUSTRIAL LIMITED

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SAE8620H Alloy Steel Round Bar 20CrNiMoA Steel Rod Forged Steel / Hot Rolled Steel Bars

Country/Region china
City & Province wuxi jiangsu
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Product Details

SAE8620H Alloy Steel Round Bar 20CrNiMoA Steel Rod Forged Steel / Hot Rolled Steel Bars

 

Products Specification

 

Products Name

 SAE8620H Alloy Steel Round Bar

Diameter

10 - 350 mm 

Length

6m or custom cutting any length as request

Type

Hot Rolled

Brand

BAOSTEEL DELTA DONGBEI HUAXI SHAGANG.etc

MOQ

1 Ton

Loading Port

Shanghai Port

Packing

packing by steel wire rope

Deliver time

5 - 7 days  for stock materials

Other Grade

Q195,Q235,10#,20#,35#,45#,Q215,Q345,12Cr1Mov,15CrMo,304,3

16,20Cr,40Cr,20CrMo,35CrMo,42CrMo,40CrNiMo,GCr15,65Mn,50Mn,

50Cr,3Cr2W8V,20CrMnTi,5CrMnMo 

Standard

ASTM GB EN DIN 

Application

Structure and Industrial

 

Regular Standard Size of our Round Bar in Stock

 

Standard Diameter

10 12 15 18 20 25 30 35 40 45 50 55 60 65 70 75 80 85 90 95 100 105 110 120 130 140 150 160 180 200 210 220 230 250 270 300 320 330 350

 

 

ASTM A29 8620 / 8620H is a low Nickel Chromium Molybdenum case hardening steel. Both 8620 vs 8620H belong to ASTM A29 standard.

Chemical composition 8620 vs 8620H

StandardGradeCMnPSSiNiCrMo
ASTM A2986200.18-0.230.7-0.90.0350.0400.15-0.350.4-0.70.4-0.60.15-0.25
8620H0.18-0.230.7-0.90.0350.0400.15-0.350.4-0.70.4-0.60.15-0.25

Property 8620 vs 8620H

As 8620 steel material could be case hardened, so the hardness could be different after hardening. AISI 8620 can be supplied in “H” condition with required hardenability. Strict analytical limits provide controlled response from heat to heat, making it an ideal selection for production case hardened parts, where consistency in heat treatment is required. AISI 8620 is usually further normalized or Quenching and Tempering and supplied as AISI 8620H.

SAE 8620 Grade Application:
The SAE 8620 can be used for a number of medium-strength applications such as camshafts, fasteners, gears, and chains/chain pins.
SAE 8620 Equivalent grades:
USA
DIN
BS
BS
JAPAN
ASTM A29
DIN 1654
EN 10084
BS 970
JIS G4103
8620
1.6523/21NiCrMo2
1.6523/21NiCrMo2-2
805M20
SNCM220
Addition to other grades:
MS, EN1A, EN3B, EN8, EN8D, EN9, EN24, EN31, EN32B, EN36C, EN41B, EN43B, EN47, EN353, IS2062, 42Crmo4, HCHCR, D2, D3, H-11, H-13, CW-1, OHNS M2, M35, M42, DIN-1.2714, P20, P20+S, P20+Ni, SCM420, ASTMSA-36, ASTM SA-105 , SAE1018, SAE1010, SAE4140, SAE8620, 16MNCR5, 20MNCR5, C20, C45, C50, C60, CK45, 20C8, 40C8, 45C8, 55C8, C55MN75, SAE52100, S40C, S355J2G3.
SAE 8620 Chemical composition:
The following table shows the chemical composition of SAE8620 steel:
Standard
Grade
C
Mn
P
S
Si
Ni
Cr
Mo
ASTM A29
8620
0.18-0.23
0.7-0.9
0.035
0.040
0.15-0.35
0.4-0.7
0.4-0.6
0.15-0.25
DIN 1654
1.6523/
21NiCrMo2
0.17-0.23
0.65-0.95
0.035
0.035
≦0.40
0.4-0.7
0.4-0.7
0.15-0.25
EN 10084
1.6523/
21NiCrMo2-2
0.17-0.23
0.65-0.95
0.025
0.035
≦0.40
0.4-0.7
0.35-0.70
0.15-0.25
JIS G4103
SNCM220
0.17-0.23
0.6-0.9
0.030
0.030
0.15-0.35
0.4-0.7
0.4-0.65
0.15-0.3
BS 970
805M20
0.17-0.23
0.6-095
0.040
0.050
0.1-0.4
0.35-0.75
0.35-0.65
0.15-0.25
SAE 8620 Mechanical Properties:
Properties
Metric
Imperial
Tensile strength
530 MPa
76900 psi
Yield strength
385 MPa
55800 psi
Elastic modulus
190-210 GPa
27557-30458 ksi
Bulk modulus (typical for steel)
140 GPa
20300 ksi
Shear modulus (typical for steel)
80 GPa
11600 ksi
Poisson’s ratio
0.27-0.30
0.27-0.30
Izod Impact
115 J
84.8 ft.lb
Hardness, Brinell
149
149
Hardness, Knoop (converted from Brinell hardness)
169
169
Hardness, Rockwell B (converted from Brinell hardness)
80
80
Hardness, Vickers (converted from Brinell hardness)
155
155
Machinability (hot rolled and cold drawn, based on 100 machinability for AISI 1212 steel)
65
65
SAE 8620 Hardness: 149
SAE 8620 Heat treatment:
This alloy may be hardened by heating to 1500 F followed by a water quench. Carburize at 1650 to 1700 F in an appropriate carburizing medium and oil quench to harden. Improved carburized case and core properties can be obtained by furnace cooling from carburizing at 1650 – 1700 F and then reheating to 1575 F.
SAE 8620 Hardening:
The AISI steel 8620 will be austenitized at around 840°C – 870°C, and oil or water quenched depending upon section size and intricacy. Cool in Air or Oil required.
SAE 8620 Tempering:
Tempering of heat-treated and water quenched parts of SAE 8620 steel (not carburized) is done at 400 F to 1300 F to improve case toughness with minimal effect on its hardness. This will also reduce the possibility of grinding cracks.
SAE 8620 Physical Properties:
The physical properties of SAE 8620 alloy steel are highlighted in the following table.
Properties
Metric
Imperial
Density
7.85 g/cm3
0.284 lb/in³
SAE 8620 Thermal Properties:
Properties
Metric
Imperial
Thermal conductivity
46.6 W/mK
323 BTU in/hr.ft².°F
SAE 8620 Forging Properties:
SAE 8620 alloy steel is forged at a start temperature of around 2250ºF (1230ºC) down to approximately 1700ºF(925ºC.) prior to the hardening heat treatment or carburizing. The alloy is air cooled after forging.
SAE 8620 Stress Relieving:
Heat to 630°C – 650°C, hold until temperature is uniform throughout the section, soak for 1 hour per 25mm section, and cool in still air.
SAE 8620 Normalizing:
1675ºF (910ºC) and air cool. This is another method of improving machinability in 8620 material; normalizing might also be used prior to case hardening.
SAE 8620 Annealing:
AISI 8620 steel may be given a full anneal by heat to 820℃ – 850℃, and hold until temperature is uniform throughout the section and cool in the furnace or air-cooled.
SAE 8620 Density:
Density (lb / cu. in.) 0.283
SAE 8620 Machinability:
The SAE 8620 alloy steel is readily machined after heat treatment and/or carburizing, should be at a minimum so as not to impair the hardened case of the part. Machining may be done by conventional means prior to heat treatment – after carburizing machining is usually limited to grinding.
SAE 8620 Welding:
The alloy SAE 8620 may be welded as-rolled condition by conventional methods, usually gas or arc welding. Preheating at 400 F is beneficial and subsequent heating after welding is recommended – consult the approved weld procedure for the method used.
 
 
 

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