# SCM435 Forgings (JIS G 4053, AISI 4135, 34CrMo4) Forged rings, shafts, discs, flanges and bars in SCM435 chromium-molybdenum steel, supplied annealed, normalized or quenched and tempered to your drawing. - Company: Jiangyin Jiangnan Metal Co., Ltd. - Address: No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province 214423, China - Tel: 0086-189-2135-9659 - Email: sales@steelforgepieces.com - WhatsApp: https://wa.me/8618921359659 - Web page: https://www.steelforgepieces.com/Alloy-Steel/SCM435.html - Last updated: 15 September 2026 ## SCM435 overview SCM435 is a chromium-molybdenum alloy steel for machine structural use, specified in JIS G 4053. It contains 0.33-0.38% carbon, 0.90-1.20% chromium and 0.15-0.30% molybdenum and is normally used in the quenched and tempered condition. JIS G 4053 gives reference values of 930 MPa minimum tensile strength, 785 MPa minimum yield point and 15% minimum elongation, with a hardness of 269-331 HBW. The nearest foreign grades are AISI 4135 (UNS G41350), 34CrMo4 (1.7220) and 35CrMo to GB/T 3077. Their alloy ranges are close to SCM435 but not identical. Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory in Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. We forge SCM435 seamless rolled rings, shafts, spindles, discs, flanges, sleeves, gear blanks and round bars to customer drawings. The steel is melted by EAF + LF + VD and heat treated in our own plant by annealing, normalizing, or quenching and tempering. Forgings are ultrasonically tested to EN 10228-3, SEP 1921 or ASTM A388 and supplied with EN 10204 3.1 or 3.2 certificates. For a quotation, send your drawing to sales@steelforgepieces.com or call 0086-189-2135-9659. | Property | Value | Note | |---|---|---| | Standard | JIS G 4053 | Old standard JIS G 4105, old symbol SCM 3 | | Carbon | 0.33-0.38 % | Cr 0.90-1.20 %, Mo 0.15-0.30 % | | Tensile strength | ≥ 930 MPa | JIS reference, quenched and tempered | | Yield point | ≥ 785 MPa | JIS reference, quenched and tempered | | Hardness | 269-331 HBW | About 28-35 HRC | | Density | 7.85 g/cm³ | 0.284 lb/in³ | | Hardening | 830-880 °C | Oil quench | | Tempering | 530-630 °C | Rapid cooling | ## SCM435 forged products We make SCM435 parts by open-die forging, ring rolling, or upsetting and punching, depending on the shape of the part. Shafts, discs, blocks and other heavy sections are forged on hammers and hydraulic presses. Rings are punched and rolled on a ring rolling mill, so that the grain flow follows the circumference of the ring. Hubs, short flanges and sleeve blanks are upset and punched. **Table 1. SCM435 forged products, size range and typical uses** | Product | Size range | Typical uses | |---|---|---| | Seamless rolled rings and forged rings | 200-2,500 mm OD, wall 30 mm min | Gear rings, slewing ring blanks, flange rings, pump and compressor rings, valve seat rings | | Forged shafts and spindles | Up to 8,000 mm long | Pump, compressor and gearbox shafts, motor and generator shafts, machine tool spindles | | Forged discs and gear blanks | Up to 1,800 mm diameter | Gear and pinion blanks, hubs, couplings, blind flange blanks | | Forged flanges | Up to 1,800 mm OD | Coupling and machinery flanges, hydraulic cylinder heads and end caps | | Forged round bars and step bars | Ø25-500 mm | Studs, tie rods, piston rods, pins and machined parts | | Forged sleeves, bushings and hollow bars | Up to 1,200 mm OD | Couplings, housings, cylinder barrels, drilling subs | | Forged valve parts | To drawing | Valve bodies, bonnets, stems and seat rings | | Crankshaft, eccentric shaft and block forgings | Up to 8,000 kg per piece | Crankshafts, eccentric shafts, connecting rods, hammer rods, press parts | All products can be supplied annealed, normalized, or quenched and tempered, and as forged, rough machined or finish machined. The sizes above are our plant limits. In large sections the strength in the core depends on the hardenability of SCM435, so please read the notes on section size before fixing property values for a heavy part. More product information: [forging rings](https://www.steelforgepieces.com/Forging-Rings/Forging-Ring.html), [forging disks](https://www.steelforgepieces.com/Forging-Disks/Forging-Disk.html), [forged spindles](https://www.steelforgepieces.com/Forged-Spindles/Forged-Spindle.html), [forged eccentric shafts](https://www.steelforgepieces.com/Forging-Eccentric-Shafts/Forging-Eccentric-Shaft.html), [forged valve seat rings](https://www.steelforgepieces.com/Forged-Valve-Parts/Forged-Valve-Seat-Rings.html) and [forged steel rolls](https://www.steelforgepieces.com/Forging-Rolls/Forging-Steel-Rolls.html). ## SCM435 grade description SCM435 belongs to the chromium-molybdenum steels in JIS G 4053, *Low-alloyed steels for machine structural use*. These steels were previously covered by JIS G 4105. They are supplied as hot-rolled, hot-forged or hot-extruded material and are heat treated before use. In the designation, S means steel, CM means chromium and molybdenum, the digit 4 is the code for the main alloy content and 35 is the nominal carbon content of 0.35%. The old symbol for the same steel is SCM 3, which still appears on some older Japanese drawings. SCM430, SCM435 and SCM440 have the same chromium, molybdenum and manganese ranges. The main difference between them is the carbon content, so carbon is the first value to check when a drawing says "SCM435 or equivalent". ### Effect of chromium and molybdenum Chromium (0.90-1.20%) is the main addition for hardenability. With chromium, an oil quench from 830-880 °C hardens a deeper section than in a plain carbon steel with the same carbon content, such as S35C, and the steel softens more slowly during tempering. Molybdenum (0.15-0.30%) adds more hardenability and reduces temper embrittlement, the loss of toughness that occurs when Cr-Mo steels are held at, or slowly cooled through, about 350-575 °C. ### Differences from AISI 4135, 34CrMo4 and 35CrMo These grades are often treated as equivalents, but their ranges are different. AISI 4135 requires 0.70-0.90% manganese and allows only 0.80-1.10% chromium and 0.15-0.25% molybdenum. 34CrMo4 allows carbon from 0.30% and limits phosphorus to 0.025%. 35CrMo has a wider carbon range (0.32-0.40%), lower manganese (0.40-0.70%) and lower chromium and molybdenum. A heat can be made to meet SCM435, 34CrMo4 and AISI 4135 at the same time; the common range is shown in Table 4. ### SCM435H SCM435H is SCM435 ordered to JIS G 4052 with a specified hardenability band, checked by the Jominy end-quench test. It is used where the hardness after quenching has to be consistent from heat to heat, for example for gears and shafts in series production. ## SCM435 equivalent grades The table lists the designations used by our customers for SCM435 type steel. Grades marked as close can be used for most machine parts, but the chemical ranges in Table 4 should be compared before one grade is certified as another. **Table 2. SCM435 equivalent and related designations** | Country / body | Designation | Standard | Comparison with SCM435 | |---|---|---|---| | Japan, JIS | SCM435 | JIS G 4053 | Reference grade | | Japan, JIS | SCM435H | JIS G 4052 | SCM435 with specified hardenability band | | Japan, JIS | SFCM grades | JIS G 3221 | Chromium-molybdenum steel forgings for general use, ordered by tensile strength class | | USA, AISI/SAE | [AISI 4135](https://www.steelforgepieces.com/Alloy-Steel/AISI-4135.html) | SAE J404, ASTM A29 | Close: Mn 0.70-0.90%, Cr 0.80-1.10%, Mo 0.15-0.25% | | USA, UNS | G41350 | Unified Numbering System | UNS number of AISI 4135 | | Europe, EN | [34CrMo4](https://www.steelforgepieces.com/Alloy-Steel/34CrMo4.html), [1.7220](https://www.steelforgepieces.com/Alloy-Steel/1.7220.html) | EN ISO 683-2 (formerly EN 10083-3) | Close: C 0.30-0.37%, P 0.025% max | | Europe, EN | [34CrMoS4](https://www.steelforgepieces.com/Alloy-Steel/34CrMoS4.html), 1.7226 | EN ISO 683-2 (formerly EN 10083-3) | 34CrMo4 with 0.020-0.040% sulfur for machinability | | International, ISO | 34CrMo4 | ISO 683-2 | Same designation as the European grade | | China, GB | 35CrMo | GB/T 3077 | Close: C 0.32-0.40%, Mn 0.40-0.70%, Cr 0.80-1.10%, Mo 0.15-0.25% | | Russia, GOST | [35KhM](https://www.steelforgepieces.com/Alloy-Steel/35KHM.html) (35ХМ) | GOST 4543 | Close chromium-molybdenum grade | | UK, BS | 708A37 | BS 970 | Close | | France, AFNOR | 35CD4 | NF A35-552 (withdrawn) | Old French designation, now 34CrMo4 | | Korea, KS | SCM435 | KS D 3867 | Same designation as JIS | ## SCM435 chemical composition Table 3 gives the heat analysis limits of JIS G 4053 for SCM435. We melt SCM435 by EAF + LF + VD. Lower phosphorus and sulfur limits can be agreed for heavy forgings with impact test requirements. **Table 3. SCM435 chemical composition to JIS G 4053, heat analysis, wt%** | Element | Min | Max | Function | |---|---|---|---| | Carbon (C) | 0.33 | 0.38 | Hardness and strength after quenching | | Silicon (Si) | 0.15 | 0.35 | Deoxidation, some solid solution strengthening | | Manganese (Mn) | 0.60 | 0.90 | Deoxidation, sulfur control, hardenability | | Phosphorus (P) | - | 0.030 | Impurity, increases temper embrittlement | | Sulfur (S) | - | 0.030 | Impurity, forms MnS inclusions and lowers transverse toughness | | Nickel (Ni) | - | 0.25 | Residual element | | Chromium (Cr) | 0.90 | 1.20 | Hardenability, resistance to softening in tempering | | Molybdenum (Mo) | 0.15 | 0.30 | Hardenability, reduces temper embrittlement | | Copper (Cu) | - | 0.30 | Residual element | **Table 4. Chemical composition of SCM435 and equivalent grades, wt%** | Element | SCM435, JIS G 4053 | AISI 4135 | 34CrMo4, EN 10083-3 / EN ISO 683-2 | 35CrMo, GB/T 3077 | Range meeting SCM435, 34CrMo4 and AISI 4135 | |---|---|---|---|---|---| | C | 0.33-0.38 | 0.33-0.38 | 0.30-0.37 | 0.32-0.40 | 0.33-0.37 | | Si | 0.15-0.35 | 0.15-0.35 | 0.40 max | 0.17-0.37 | 0.15-0.35 | | Mn | 0.60-0.90 | 0.70-0.90 | 0.60-0.90 | 0.40-0.70 | 0.70-0.90 | | P | 0.030 max | 0.035 max | 0.025 max | By quality class | 0.025 max | | S | 0.030 max | 0.040 max | 0.035 max | By quality class | 0.030 max | | Cr | 0.90-1.20 | 0.80-1.10 | 0.90-1.20 | 0.80-1.10 | 0.90-1.10 | | Mo | 0.15-0.30 | 0.15-0.25 | 0.15-0.30 | 0.15-0.25 | 0.15-0.25 | SCM435 also limits Ni to 0.25% max and Cu to 0.30% max. The last column is the overlap of the three standards. A heat within the last column can be certified to SCM435, 34CrMo4 and AISI 4135 together. This is useful when the same part is supplied to customers in Japan, Europe and North America. AISI 4135 and 35CrMo only overlap at exactly 0.70% manganese, so in practice one heat cannot be certified to both of them. ## SCM435 mechanical properties The mechanical properties in JIS G 4053 are reference values. They apply to small test pieces after the reference heat treatment and are not acceptance values for forgings unless the purchase order says so. For a forging, the order should give the required values, the section size they apply to and the test location. **Table 5. SCM435 reference mechanical properties, quenched and tempered, JIS G 4053** | Property | Value | Note | |---|---|---| | Quenching | 830-880 °C, oil | Reference heat treatment | | Tempering | 530-630 °C, rapid cooling | Reference heat treatment | | Yield point | ≥ 785 MPa (114 ksi) | JIS No. 4 tensile test piece | | Tensile strength | ≥ 930 MPa (135 ksi) | JIS No. 4 tensile test piece | | Elongation | ≥ 15 % | JIS No. 4 tensile test piece | | Reduction of area | ≥ 50 % | JIS No. 4 tensile test piece | | Charpy impact value | ≥ 78 J/cm² | U-notch test piece | | Hardness | 269-331 HBW | About 28-35 HRC (ASTM E140 conversion) | JIS gives the impact value in J/cm². The energy absorbed by a U-notch specimen is divided by the 0.8 cm² cross-section under the 2 mm notch, so 78 J/cm² is about 62 J. There is no conversion factor between this value and a V-notch (KV) value in joules. If your project requires KV, please specify a KV test and the test temperature. ## Section size and strength SCM435 is quenched in oil and does not harden through heavy sections. The core of a 300 mm shaft cools much more slowly than a small test bar, forms bainite or ferrite and pearlite instead of martensite, and has lower strength after tempering. JIS G 4053 has no table for this effect. EN 10083-3 gave minimum values by section size for 34CrMo4, which is a close equivalent, and the same trend applies to SCM435. **Table 6. Minimum properties of quenched and tempered 34CrMo4 by section size, EN 10083-3:2006** | Diameter d | Thickness t | Yield strength Re, min | Tensile strength Rm | Elongation A, min | |---|---|---|---|---| | d ≤ 16 mm | t ≤ 8 mm | 800 MPa | 1000-1200 MPa | 11 % | | 16 < d ≤ 40 mm | 8 < t ≤ 20 mm | 650 MPa | 900-1100 MPa | 12 % | | 40 < d ≤ 100 mm | 20 < t ≤ 60 mm | 550 MPa | 800-950 MPa | 14 % | | 100 < d ≤ 160 mm | 60 < t ≤ 100 mm | 500 MPa | 750-900 MPa | 15 % | | 160 < d ≤ 250 mm | 100 < t ≤ 160 mm | 450 MPa | 700-850 MPa | 15 % | EN 10083-3:2006 was replaced by EN ISO 683-2 in 2018. For new European orders, please refer to EN ISO 683-2. For sections over 250 mm no values are given, and the properties have to be agreed for the actual part, including test location and direction. Rough machining before quenching and tempering reduces the section size and improves the properties in the finished part. Where a heavy section needs higher strength in the core, a Ni-Cr-Mo steel such as 34CrNiMo6 or AISI 4340 is normally used. ## SCM435 physical properties **Table 7. SCM435 physical properties** | Property | Value | Note | |---|---|---| | Density | 7.85 g/cm³ (0.284 lb/in³) | At room temperature | | Modulus of elasticity | 210 GPa at 20 °C, 205 GPa at 100 °C, 185 GPa at 300 °C | Published data for 35CrMo | | Shear modulus | 81 GPa at 20 °C | Published data for 35CrMo | | Thermal expansion | About 11-13 x 10^-6/K | Typical for Cr-Mo alloy steels, 20-100 °C | | Thermal conductivity | About 40-45 W/(m·K) | Typical for Cr-Mo alloy steels at room temperature | | Magnetic properties | Ferromagnetic | In all heat treatment conditions | ## Forging and heat treatment of SCM435 SCM435 has good hot workability. The main risks in production are forging below the correct temperature range, hydrogen in heavy sections and slow cooling after tempering. The temperature ranges we use for SCM435 forgings are given below. **Table 8. SCM435 forging and heat treatment** | Process | Temperature | Cooling | Purpose | Basis | |---|---|---|---|---| | Forging | Heating 1150-1200 °C, finish above 850 °C | Slow, controlled | Break down the cast structure without cracking, reduce the risk of hydrogen flakes | Typical practice | | Soft annealing | 680-720 °C | Slow, in furnace | Lowest hardness for rough machining | Typical practice | | Normalizing | 850-880 °C | Still air | Grain refinement after forging, before quenching and tempering | Typical practice | | Hardening | 830-880 °C | Oil | Martensitic structure | JIS G 4053 | | Tempering | 530-630 °C | Rapid, water or oil | Final strength and toughness; rapid cooling prevents temper embrittlement | JIS G 4053 | | Stress relieving | Below the final tempering temperature | Slow | Relieves machining or welding stresses without loss of strength | Typical practice | As a starting point, the holding time at hardening temperature is about one hour per 25 mm of section thickness, checked with thermocouples on the part. ### Cooling after tempering Cr-Mo steels lose toughness when they are held at, or slowly cooled through, about 350-575 °C after tempering. Phosphorus and other trace elements collect at the prior austenite grain boundaries, and the steel breaks along these boundaries. This is called temper embrittlement. Molybdenum and a low phosphorus content reduce it, and JIS G 4053 specifies rapid cooling after tempering to prevent it. Tempering at about 250-400 °C is also avoided because it causes tempered martensite embrittlement. ### Hydrogen flake control Heavy Cr-Mo forgings can develop internal hydrogen cracks, known as flakes, after cooling. Vacuum degassing (VD) removes most of the hydrogen from the liquid steel. Slow cooling or an annealing cycle after forging allows the remaining hydrogen to diffuse out before quenching. Ultrasonic testing after the final heat treatment confirms that the forging is free from flakes. ### Production process Our production process for SCM435 forgings: 1. **Melting and refining.** EAF + LF + VD, heat analysis to JIS G 4053, heat number recorded and traced through all later steps. 2. **Cutting.** Ingots or blooms are cut to the calculated weight, with allowance for scale loss and discard. 3. **Heating and forging.** Heated to 1150-1200 °C, then upset and drawn on hammers or a hydraulic press. The forging ratio is at least 3:1, and the part is reheated before its temperature falls below 850 °C. 4. **Ring rolling.** For rings, the blank is punched and rolled to size on a radial-axial ring rolling mill. 5. **Cooling and preliminary heat treatment.** Slow cooling, followed by annealing or normalizing to refine the grain and remove hydrogen. 6. **Rough machining.** Machined for ultrasonic testing and, where the drawing allows, to a smaller section before quenching. 7. **Quenching and tempering.** Oil quenched from 830-880 °C, tempered at 530-630 °C and cooled rapidly. Furnace charts are recorded. 8. **Testing and certification.** Chemical analysis, tensile, impact and hardness tests, ultrasonic testing to EN 10228-3, SEP 1921 or ASTM A388, dimensional inspection and EN 10204 3.1 or 3.2 certificate. ## Welding and machining ### Welding SCM435 can be welded with a qualified welding procedure. The carbon equivalent CE (IIW) = C + Mn/6 + (Cr + Mo + V)/5 + (Ni + Cu)/15 is 0.64 at the minimum and 0.87 at the maximum of the JIS G 4053 ranges, and about 0.74 for a mid-range analysis without Ni and Cu. The heat affected zone therefore hardens strongly and is sensitive to hydrogen cracking. - Use low-hydrogen welding processes and dry consumables. - Preheat and control the interpass temperature. Values of about 150-400 °C are used for this type of steel, depending on thickness and restraint; the actual value is given in the welding procedure specification. - Stress relieve after welding at a temperature below the final tempering temperature, so that the strength is not reduced. - If full strength is required across the weld, weld in the annealed or normalized condition and quench and temper the complete part afterwards. Weld repair of forgings requires the written approval of the purchaser. ### Machining SCM435 is easiest to machine in the annealed condition. For the equivalent 34CrMo4, EN 10083-3 gives a maximum of 223 HBW in the soft annealed condition. Quenched and tempered material at 269-331 HBW can be machined with carbide tools. Parts with close tolerances are finish machined after quenching and tempering to remove heat treatment distortion. Journals and gear teeth can be induction or flame hardened locally where wear resistance is needed. ## SCM435 vs SCM430 and SCM440 The three grades have the same chromium (0.90-1.20%), molybdenum (0.15-0.30%) and manganese (0.60-0.90%) ranges and the same reference heat treatment, an oil quench from 830-880 °C and tempering at 530-630 °C with rapid cooling. The difference is the carbon content. **Table 9. SCM430, SCM435 and SCM440, JIS G 4053 reference values after quenching and tempering** | Property | [SCM430](https://www.steelforgepieces.com/Alloy-Steel/SCM430.html) | SCM435 | [SCM440](https://www.steelforgepieces.com/Alloy-Steel/SCM440.html) | |---|---|---|---| | Carbon | 0.28-0.33 % | 0.33-0.38 % | 0.38-0.43 % | | Tensile strength, min | 830 MPa | 930 MPa | 980 MPa | | Yield point, min | 685 MPa | 785 MPa | 835 MPa | | Elongation, min | 18 % | 15 % | 12 % | | Reduction of area, min | 55 % | 50 % | 45 % | | Charpy impact value, min | 108 J/cm² | 78 J/cm² | 59 J/cm² | | Hardness | 241-302 HBW | 269-331 HBW | 285-352 HBW | | Nearest AISI grade | [AISI 4130](https://www.steelforgepieces.com/Alloy-Steel/AISI-4130.html) | [AISI 4135](https://www.steelforgepieces.com/Alloy-Steel/AISI-4135.html) | [AISI 4140](https://www.steelforgepieces.com/Alloy-Steel/AISI-4140.html) | | Nearest EN grade | 25CrMo4 | [34CrMo4](https://www.steelforgepieces.com/Alloy-Steel/34CrMo4.html) | [42CrMo4](https://www.steelforgepieces.com/Alloy-Steel/42CrMo4.html) | | Typical choice | Better toughness and weldability, lower strength | Strength and toughness for medium sections | Higher strength and hardness, lower toughness | Each 0.05% increase in carbon raises the reference tensile strength by 50-100 MPa and lowers the impact value by about a quarter. SCM435 is used when SCM430 is not strong enough and SCM440 is not tough enough for the part. ## Applications of SCM435 forgings **Table 10. Typical SCM435 forgings by industry** | Industry | Typical SCM435 forgings | |---|---| | Power transmission and gearboxes | Gear and pinion blanks, gear rings, input and output shafts, couplings | | Pumps and compressors | Pump and plunger pump shafts, compressor shafts, impeller hubs, casing rings | | Oil and gas equipment | Valve bodies, bonnets and stems, drilling subs, wellhead component blanks | | Heavy machinery and mining | Crankshaft and eccentric shaft blanks, connecting rods, hammer rods, press parts | | Cement, sugar, pulp and paper mills | Mill and mixer shafts, gear rings, roll shafts | | Marine and shipbuilding | Shafts, couplings and deck machinery parts, with classification society approval where required | | Power generation | Auxiliary and generator shafts, couplings, high-strength studs and bolts | ### Sour service (H2S) For sour service, NACE MR0175 / ISO 15156-2 limits carbon and low-alloy steels to a maximum hardness of 22 HRC. This is below the JIS reference hardness of 269-331 HBW, so SCM435 parts for H2S service must be tempered to a lower strength, and the hardness limit and test locations must be stated on the order. ## Forging capacity Jiangyin Jiangnan Metal Co., Ltd. has the following forging range for SCM435 and other steel grades. Please send your drawing so that we can confirm the size, weight and delivery time for your part. | Property | Value | Note | |---|---|---| | Rolled ring OD | 200-2,500 mm | Seamless rolled rings | | Ring wall | 30 mm | Minimum | | Disc diameter | ≤ 1,800 mm | Discs and flanges | | Shaft length | ≤ 8,000 mm | Shafts and spindles | | Bar diameter | 25-500 mm | Forged round bars | | Single piece | ≤ 8,000 kg | Forging weight | | Melting | EAF + LF + VD | Vacuum degassed | | Certificate | EN 10204 | 3.1 or 3.2 | **Table 11. Main equipment** | Department | Equipment | |---|---| | Forging | 1 t, 3 t, 5 t and 9 t open-die forging hammers; 4,500 t and 5,000 t hydraulic presses; radial-axial ring rolling mills up to 2,500 mm OD | | Heat treatment | Bogie hearth furnaces up to 1,200 °C with ±5 °C uniformity and temperature recording; water, oil and air quenching | | Testing | Spectrometer, universal testing machine, impact testing machine, hardness testers, magnetic particle and penetrant testing, ultrasonic flaw detectors, metallographic microscope | | Machining | Vertical and horizontal lathes, boring mills and machining centres for rough and finish machining | ## Standards, testing and certificates ### Material and product standards - JIS G 4053: SCM435 chemical composition and reference properties - JIS G 4052: SCM435H with hardenability band - JIS G 3221: chromium-molybdenum steel forgings for general use - EN ISO 683-2 (formerly EN 10083-3): 34CrMo4 and 34CrMoS4 - SAE J404 and ASTM A29: AISI 4135 - ASTM A668: carbon and alloy steel forgings for general industrial use - GB/T 3077: 35CrMo - EN 10204: inspection certificates 3.1 and 3.2 ### Testing - Ultrasonic testing: EN 10228-3, SEP 1921, ASTM A388, JIS G 0587 - Magnetic particle testing: EN 10228-1, ASTM A275 - Tensile test: ISO 6892-1, ASTM A370, JIS Z 2241 - Impact test: ISO 148-1, JIS Z 2242 - Hardness: ISO 6506-1, ASTM E10, conversion to ASTM E140 - Grain size: ASTM E112 Our quality management system is certified to ISO 9001:2015. Third-party inspection can be arranged with Lloyd's Register, DNV, Bureau Veritas, ABS, TÜV, SGS or another inspection company nominated by the customer. Customers are welcome to witness melting, forging, heat treatment and testing. ## Ordering information Please include the following information in your enquiry or purchase order: 1. Grade and standard, for example SCM435 to JIS G 4053. If a dual certificate to 34CrMo4 or AISI 4135 is required, state which standard governs. 2. Heat treatment condition (annealed, normalized, or quenched and tempered) and hardness range in HBW. 3. Section size, required tensile strength, yield strength and elongation, and test location. The JIS reference values are for small test pieces and are not suitable as acceptance values for heavy forgings. 4. Impact test type (V-notch KV in J or JIS U-notch in J/cm²), test temperature and minimum value. 5. Ultrasonic testing standard and acceptance class, for example EN 10228-3 quality class 3. 6. Phosphorus and sulfur limits, if lower than the JIS limit of 0.030%. 7. Supply condition: as forged, rough machined or finish machined. 8. Quantity, delivery date, delivery term, destination and certificate type (EN 10204 3.1 or 3.2). **Example drawing note** ``` MATERIAL: SCM435 to JIS G 4053 MELTING: EAF + LF + VD CONDITION: Quenched and tempered, oil quench 830-880 C, temper 530-630 C, rapid cooling HARDNESS: ___-___ HBW TENSILE: Rm ___ MPa min, ReH/Rp0.2 ___ MPa min, A ___ % min Section ___ mm, test location ___, direction ___ IMPACT: KV ___ J min average at ___ C (ISO 148-1) UT: EN 10228-3 quality class ___ CERTIFICATE: EN 10204 3.1 MARKING: Heat number, grade, drawing number, low-stress stamps ``` ### Common errors in SCM435 orders 1. Using the JIS reference values as acceptance values for a large forging. These values cannot be reached in the core of a heavy section. 2. Using 35CrMo or SCM440 values for SCM435. A tensile strength of 980 MPa with a yield strength of 835 MPa is the GB/T 3077 minimum for 35CrMo and the JIS reference value for SCM440. 3. Requiring AISI 4135 and 35CrMo in the same heat. Their manganese ranges only meet at 0.70%. 4. Mixing impact units. JIS U-notch values in J/cm² and KV values in J come from different tests and cannot be converted with a factor. 5. Specifying only HRC for quenched and tempered forgings. Brinell hardness (HBW) is normally used; if HRC is required, state the conversion standard, ASTM E140. 6. Not stating sour service on the order. H2S service requires a maximum hardness of 22 HRC to NACE MR0175 / ISO 15156, which changes the heat treatment. ## SCM435 FAQ ### What is SCM435 steel? SCM435 is a chromium-molybdenum alloy steel for machine structural use to JIS G 4053. It contains 0.33-0.38% carbon, 0.90-1.20% chromium and 0.15-0.30% molybdenum and is mainly used quenched and tempered for shafts, gears, rings and high-strength bolts. ### What is the AISI equivalent of SCM435? The nearest AISI grade is AISI 4135 (UNS G41350). The two grades are not identical: AISI 4135 requires 0.70-0.90% manganese and allows 0.80-1.10% chromium and 0.15-0.25% molybdenum. A heat with 0.70-0.90% Mn, 0.90-1.10% Cr and 0.15-0.25% Mo meets both standards. ### Is SCM435 the same as 34CrMo4 or 35CrMo? No. They are close equivalents with different ranges. 34CrMo4 (1.7220) allows 0.30-0.37% carbon and 0.025% maximum phosphorus. 35CrMo to GB/T 3077 has 0.32-0.40% carbon, 0.40-0.70% manganese, 0.80-1.10% chromium and 0.15-0.25% molybdenum. ### What are the mechanical properties of SCM435? After oil quenching from 830-880 °C and tempering at 530-630 °C, the JIS G 4053 reference values are: yield point 785 MPa min, tensile strength 930 MPa min, elongation 15% min, reduction of area 50% min, impact value 78 J/cm² min and hardness 269-331 HBW. Large forgings have lower values in the core. ### What is the hardness of SCM435? The JIS reference hardness of quenched and tempered SCM435 is 269-331 HBW, about 28-35 HRC. In the soft annealed condition the hardness is much lower; EN 10083-3 gives 223 HBW max for the equivalent 34CrMo4. ### What is the difference between SCM435 and SCM440? SCM440 contains 0.38-0.43% carbon and SCM435 contains 0.33-0.38%. The other alloying elements are the same. SCM440 has higher reference strength (980 MPa tensile, 835 MPa yield) but lower elongation (12%) and impact value (59 J/cm²) than SCM435. ### How is SCM435 heat treated? The JIS G 4053 reference heat treatment is hardening at 830-880 °C in oil and tempering at 530-630 °C followed by rapid cooling. After forging, the parts are normally normalized at about 850-880 °C or annealed. Soft annealing at about 680-720 °C gives the lowest hardness for machining. ### Can SCM435 be welded? Yes, with a qualified welding procedure. The carbon equivalent (IIW) is 0.64-0.87 over the JIS ranges, so low-hydrogen welding, preheating, interpass temperature control and stress relieving below the tempering temperature are required. Weld repair of forgings needs the approval of the purchaser. ### What is the density of SCM435? The density of SCM435 is 7.85 g/cm³ (0.284 lb/in³). The weight of a round bar is 0.006165 x D² x L kg, with D in mm and L in m. A 100 mm bar weighs about 61.7 kg per metre. ### What sizes of SCM435 forgings can you make? Jiangyin Jiangnan Metal Co., Ltd. forges seamless rolled rings from 200 to 2,500 mm outside diameter with a minimum wall of 30 mm, discs up to 1,800 mm diameter, shafts up to 8,000 mm long, bars from 25 to 500 mm diameter and single pieces up to 8,000 kg. ### Which certificates are supplied with SCM435 forgings? SCM435 forgings are supplied with an EN 10204 3.1 certificate showing chemical analysis, tensile, impact and hardness results, heat treatment and ultrasonic test results. An EN 10204 3.2 certificate is available when the tests are witnessed by an inspection company such as Lloyd's Register, DNV, Bureau Veritas, ABS, TÜV or SGS. ### Can SCM435 be used for sour service? Only after tempering to a lower hardness. NACE MR0175 / ISO 15156-2 limits carbon and low-alloy steels in H2S service to 22 HRC max, which is below the JIS reference hardness of 269-331 HBW. ### Where is Jiangyin Jiangnan Metal located? Jiangyin Jiangnan Metal Co., Ltd. is located at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. The factory produces open-die forgings and seamless rolled rings, including SCM435 forgings to JIS G 4053. Tel 0086-189-2135-9659, email sales@steelforgepieces.com. ### What information is needed for a quotation? Please send the drawing or dimensions, quantity, grade and standard, heat treatment condition and hardness, required mechanical properties and test location, ultrasonic testing standard, certificate type and delivery term. We normally reply with a quotation within 24 hours. ## References 1. *JIS G 4053, Low-alloyed steels for machine structural use*. Japanese Industrial Standards Committee. 2. *JIS G 4052, Structural steels with specified hardenability bands*. 3. *JIS G 3221, Chromium molybdenum steel forgings for general use*. 4. *EN 10083-3:2006, Steels for quenching and tempering, Part 3: Technical delivery conditions for alloy steels*. CEN. Replaced by EN ISO 683-2:2018. 5. *ISO 683-2, Heat-treatable steels, alloy steels and free-cutting steels, Part 2: Alloy steels for quenching and tempering*. ISO. 6. *SAE J404, Chemical compositions of SAE alloy steels*; *ASTM A29/A29M*. 7. *GB/T 3077, Alloy structure steels*. 8. *ASTM E140, Standard hardness conversion tables for metals*. 9. *EN 10228-3*, *ASTM A388/A388M*, *SEP 1921* and *JIS G 0587*, ultrasonic testing of steel forgings. 10. *NACE MR0175 / ISO 15156-2*, carbon and low-alloy steels for use in H2S-containing environments. 11. *EN 10204, Metallic products, types of inspection documents*. 12. *ASM Handbook, Volume 4A: Steel Heat Treating Fundamentals and Processes*. ASM International. The values on this page are for reference. The purchase specification applies to each order. ## About Jiangyin Jiangnan Metal Jiangyin Jiangnan Metal Co., Ltd. is an open-die forging factory located at No.1 Chengxiqiao Road, Zhouzhuang Town, Jiangyin City, Jiangsu Province, China. The company has 460 employees, including 9 senior engineers and 32 intermediate engineers. Our equipment includes 1 t, 3 t, 5 t and 9 t forging hammers, 4,500 t and 5,000 t hydraulic presses and ring rolling mills up to 2,500 mm, together with heat treatment furnaces, machining workshops and a testing laboratory. Besides SCM435, we forge carbon steel, alloy steel such as [AISI 4140](https://www.steelforgepieces.com/Alloy-Steel/AISI-4140.html) and [42CrMo4](https://www.steelforgepieces.com/Alloy-Steel/42CrMo4.html), tool steel, stainless steel and nickel alloys. Our quality management system is certified to ISO 9001:2015. ## Request a quote for SCM435 forgings Send us your drawing or the main dimensions of your SCM435 forging. We normally reply with a quotation within 24 hours. - Email: sales@steelforgepieces.com - Tel: 0086-189-2135-9659 - WhatsApp: https://wa.me/8618921359659 ## Related grades and products ### Chromium-molybdenum steel grades - [SCM430](https://www.steelforgepieces.com/Alloy-Steel/SCM430.html) - [SCM440](https://www.steelforgepieces.com/Alloy-Steel/SCM440.html) - [AISI 4135](https://www.steelforgepieces.com/Alloy-Steel/AISI-4135.html) - [34CrMo4](https://www.steelforgepieces.com/Alloy-Steel/34CrMo4.html) - [1.7220](https://www.steelforgepieces.com/Alloy-Steel/1.7220.html) - [34CrMoS4](https://www.steelforgepieces.com/Alloy-Steel/34CrMoS4.html) - [35KHM](https://www.steelforgepieces.com/Alloy-Steel/35KHM.html) - [AISI 4130](https://www.steelforgepieces.com/Alloy-Steel/AISI-4130.html) - [AISI 4140](https://www.steelforgepieces.com/Alloy-Steel/AISI-4140.html) - [42CrMo4](https://www.steelforgepieces.com/Alloy-Steel/42CrMo4.html) - [AISI 4145](https://www.steelforgepieces.com/Alloy-Steel/AISI-4145.html) - [AISI 8630](https://www.steelforgepieces.com/Alloy-Steel/AISI-8630.html) - [All alloy steel grades](https://www.steelforgepieces.com/Alloy-Steel/) ### Forged products - [Forging rings](https://www.steelforgepieces.com/Forging-Rings/Forging-Ring.html) - [Forging disks](https://www.steelforgepieces.com/Forging-Disks/Forging-Disk.html) - [Forged spindles](https://www.steelforgepieces.com/Forged-Spindles/Forged-Spindle.html) - [Forged eccentric shafts](https://www.steelforgepieces.com/Forging-Eccentric-Shafts/Forging-Eccentric-Shaft.html) - [Forged valve seat rings](https://www.steelforgepieces.com/Forged-Valve-Parts/Forged-Valve-Seat-Rings.html) - [Forged steel rolls](https://www.steelforgepieces.com/Forging-Rolls/Forging-Steel-Rolls.html) - [All forged products](https://www.steelforgepieces.com/Forging-Products/Forging-Steel-Products.html)