X38CrMoV5-3
X38CrMoV5-3 properties and heat treatment forged piece, Including X38CrMoV5-3 application and specifications, We have all specifications,Including X38CrMoV5-3 steel plate, X38CrMoV5-3 sheet, X38CrMoV5-3 square steel, X38CrMoV5-3 flat bar,X38CrMoV5-3 round bar,X38CrMoV5-3 forgings, we can own production and sales.
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Specialized high quality steel
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forged/hot rolling/ extrusion of steel
We can produce the X38CrMoV5-3 has the following specifications:
Round bar steel: 1mm to 3000mm
Square-shape steel: 1mm to 2000mm
Plate steel:0.1mm to 2500mm
Width: 10mm to 2500mm
Lenth: We can supply any lenth based on the customer's requirement.
Forging: Shafts with flanks/pipes/tubes/slugs/donuts/cubes/other shapes
Tubings: OD: φ6-219 mm, with wall thickness ranging from 1-35 mm.
Finished goods condition: hot forging/hot rolling + annealing/normalizing + tempering/quenching + tempering/any conditions based on the customer's requirement
Surface conditions: scaled (hot working finish)/ground/rough machining/fine machining/based on the customer's requirement
Furnaces for metallurgical processing: electrode arc + LF/VD/VOD/ESR/Vacuum consumable electrode.
Ultrasonic inspection: 100% ultrasonic inspection for any inperfections or based on the customer's requirement
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Chemical composition % of the ladle analysis of grade X38CrMoV5-3 and Standards
Brand Name | Ravne No. | Mat. No. | DIN | EN | AISI |
UTOPMO7 | 254 | 1.2367 | X38CrMoV5-3 | - | - |
C | Si | Mn | Cr | Mo | Ni | V | W | Others |
0.38 | 0.40 | 0.40 | 5.00 | 2.95 | - | 0.50 | - | - |
Description Hot work tool steel. Secondary hardening steel with high strength and wear resistance in hot. Good tempering resistance. High hardenability and thoughness. Tools can be water cooled. Applications Wear resisting tools, pressure die casting tools, pressing tools for light and heavy metal. For the highest requirements we recommend UTOPMO7 ESR EFS. |
Physical properties (avarage values) at ambient temperature: Density [g/cm3]: 7.83 Thermal conductivity [W/m.K]: 25.0
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Soft Annealing Heat to 800-840�C, cool slowly in furnace. This will produce a maximum Brinell hardness of 235. Stress Relieving Stress relieving to remove machining stresses should be carried out by heating to 650�C, holding for one hour at heat, followed by air cooling. This operation is performed to reduce distortion during Heat Treatment. Hardening Harden from a temperature of 1030-1080�C followed by air, oil or warm bath (500-550�C) quenching. Hardness after quenching is 53-57 HRC. Tempering Tempering temperature: See the table bellow.
Effect of Tempering Temperature on Hardness |
Machining performance
Download X38CrMoV5-3 the mechanical properties of the report, the report provides detailed performance analysis and application. Download >>
Principal Design Features
One of the most widely used precipitation hardening grades in the business. While soft and ductile in the solution annealed condition, it is capable of high properties with a single precipitation or aging treatment. Characterized by good corrosion resistance, high harness, toughness and strength.
Machinability
Long, gummy chips characterize this alloys machinability. It can be machined in the annealed condition, however condition H1150M will yield best results. Post machining solution treatment of parts will be required prior to final hardening if machining in this condition.
Heat Treatment
CONDITION A--Soak at 1900 F (1038 C) for 30 minutes and cool below 60 F (16 C) for complete martensite transformation. CONDITION H 950- Treat Condition A material at 900 F(482 C) for 1 hour, air cool.. CONDITION H925, H1025, H1075, H1100, H1150- Soak solution treated material for 4 hours at specified temperature, air cool, CONDITION H1150M- Soak solution treated material at 1400 F (760 C) for 2 hours, air cool, then re-heat to 1150 F (620 C) for 4 hours and air cool.
Welding
Successfully welded by common fusion and resistance methods, this alloy should not be joined by oxyacetylene welding. AWS E/ER630 filler metal is recommended if required.
Forging
Soak for 1 hour at 2150 F (1177 C) prior to forging. Do not work below 1850 F (1010 C). Post-work solution treatment is required prior to final hardening.