DIN 1.2367 Tool Steel 2367 Round W.Nr. 1.2367 Bar Price And Quantity
1 Piece
400.0 INR/Piece
DIN 1.2367 Tool Steel 2367 Round W.Nr. 1.2367 Bar Product Specifications
DIN, W.Nr. 1.2367
Hot Rolled / Forged
H9, H11 or as specified
Bright, Black, Peeled or Ground
2367
DIN 1.2367 Tool Steel
Annealed, Hardened and Tempered
Hot Forming, Die Casting, Plastic Mold Tooling
16mm to 400mm
Custom / As Required
Round Bar
Hot Work Tooling, Molds, Dies, Extrusion Tools
Up to 600C
Pre-machined / Annealed
Round Bar
Smooth, Free from Scale
Quenching & Tempering possible
High
7.85 g/cm3
Good
230-280 HB
Moderate
Product Description
Werkstoffnummer (W.Nr.) 1.2367, designated under the DIN system as X38CrMoV5-3, is a premium, high-molybdenum hot-work tool steel. It is specifically engineered to outperform standard hot-work grades (like H13 or 1.2344) in applications demanding higher hot-yield strength, exceptional temper resistance, and superior resistance to thermal fatigue (heat checking).
The increased molybdenum content gives it excellent deep-hardening properties, making it highly reliable when sourced as heavy-diameter round bars.
Chemical Composition (Typical Weight %)
The high molybdenum content (Silicon (Si)
Manganese (Mn)
0.35 0.40%
2.80 3.20%
4.80 5.20%
0.50 0.70%
0.30 0.50%
0.20 0.50%
DIN 1.2367 Round Bar Stock. Source: Otai Special Steel
Technical Performance & Round Bar Applications
Round bars and rods of 1.2367 are typically supplied in the spheroidized annealed condition (max 230 HBW) to facilitate predictable turning, drilling, and milling. This grade is heavily utilized in high-temperature environments:
Heavy-Duty Forging Tooling: Ideal for forging die inserts, hot-punching pins, and piercer mandrels that face repeated thermal shock and extreme pressure.
Aluminum & Brass Extrusion: Specified for extrusion stems, liners, mandrels, and high-wear dies where standard 1.2344 (H13) would prematurely wear out or deform.
High-Stress Die Casting: Used for critical components in aluminum, magnesium, and zinc die-casting machines (such as shot sleeves, distribution blocks, and injection nozzles) requiring immunity to liquid-metal erosion.
Heat Treatment Specifications
1.2367 is an air-hardening steel with massive depth-of-hardness capability. To achieve optimized mechanical properties, precise heat treatment is vital:
Soft Annealing: Heat uniformly to 7500101030000C to utilize the secondary hardening peak, achieving a highly stable working hardness of 46 to 52 HRC.
Global Supply Chain Equivalents
If you are cross-referencing blueprints or mill test reports (MTRs) internationally, 1.2367 sits between standard American hot-work specifications, acting as an upgraded alternative to H11/H13:
Germany (DIN / EN): X38CrMoV5-3 / W.Nr. 1.2367
United States (AISI / ASTM): Upgraded Premium H11 / Custom Hot-Work (No exact direct standard AISI equivalent, though it frequently replaces H11 and H13 for premium performance)
Russia (GOST): 4Kh5M3F (453)
Superior Performance for Hot Work Applications
DIN 1.2367 Tool Steel bars are crafted to meet the rigorous requirements of hot forming, die casting, and extrusion tools. Their high impact strength and excellent thermal stability up to 600C ensure long-lasting performance and reliability in demanding manufacturing environments. These features make them particularly suitable for repeated cycles in hot work tooling operations.
Versatile Finishes and Tailored Dimensions
Available in a range of finishes such as bright, black, peeled, or ground, our round bars are adaptable to different technical specifications. Diameters vary from 16mm to 400mm, while lengths and tolerances can be precisely customized. Such flexibility enables optimal integration with your specific project requirements.
Ready for Machining and Advanced Heat Treatment
Our 1.2367 round bars arrive pre-machined or annealed, providing good machinability for streamlined fabrication. Further enhancement via quenching and tempering is possible, allowing for tailored hardness and mechanical properties. This makes them suitable for high-stress tooling projects demanding robustness and precision.
FAQ's of DIN 1.2367 Tool Steel 2367 Round W.Nr. 1.2367 Bar:
Q: How is DIN 1.2367 Tool Steel Bar typically used in industry?
A: DIN 1.2367 Tool Steel Round Bars are primarily used in hot work tooling applications, such as for manufacturing molds, dies, extrusion tools, and plastic mold tools. Their combination of high impact strength and temperature resistance makes them ideal for high-stress environments.
Q: What benefits does this tool steel offer for hot forming operations?
A: This material provides high impact strength, good machinability, and outstanding resistance to thermal fatigue, all essential for hot forming operations. Its ability to withstand temperatures up to 600C without significant degradation adds to its reliability and longevity in production.
Q: When should quenching and tempering be applied to DIN 1.2367 Tool Steel?
A: Quenching and tempering should be carried out if higher hardness and wear resistance are needed for the specific tool application. The bars are supplied in an annealed or pre-machined state, allowing for further heat treatment as required by the end user.
Q: Where can DIN 1.2367 Round Bars be sourced and in what specifications?
A: These bars are available through authorized dealers, exporters, manufacturers, and suppliers across India. They can be supplied in diameters ranging from 16mm to 400mm, with finishes such as bright, black, peeled, or ground, and in custom lengths as specified.
Q: What is the typical process for preparing DIN 1.2367 Round Bar for use?
A: The round bars are usually delivered pre-machined and annealed, providing good machinability. For enhanced properties, further processes like quenching and tempering can be carried out to attain the desired hardness and mechanical characteristics suitable for the intended application.
Q: How does the surface condition of these bars benefit end users?
A: A smooth and scale-free surface condition minimizes the need for further surface preparation, ensuring ease of handling, improved machinability, and a reduction in wear on tooling during fabrication or service life.
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