Unveiling the Marvels of 1.2714 Mould Steel: A Comprehensive Exploration
Introduction
In the expansive realm of metallurgy, certain alloys emerge as exemplars of innovation and engineering prowess. Among these, 1.2714 Mould Steel shines brightly, esteemed for its exceptional toughness, wear resistance, and adaptability in mould making applications. Join us as we embark on an exploration to uncover the intricacies and advantages of this remarkable alloy, delving into its composition, properties, applications, suppliers, pricing, and expert insights.
Overview of 1.2714 Mould Steel
1.2714 Mould Steel belongs to the family of hot-work tool steels, revered for their high toughness and heat resistance. Let’s delve into the key details of this alloy:
Chemical Composition
Element | Percentage |
---|---|
Carbon (C) | 0.45-0.55% |
Silicon (Si) | 0.10-0.40% |
Manganese (Mn) | 0.50-0.70% |
Chromium (Cr) | 0.90-1.20% |
Nickel (Ni) | 1.50-1.80% |
Molybdenum (Mo) | 0.35-0.55% |
Mechanical Properties
- Hardness (Rockwell C): 48-52 HRC
- Tensile Strength: 1000-1200 MPa
- Yield Strength: 800-1000 MPa
- Elongation: 10-15%
- Impact Toughness (Charpy V-notch): 20-30 J
Standards
- DIN EN ISO 4957: Tool steels
- ASTM A681: Standard Specification for Tool Steels Alloy
Exploring the Features and Advantages
1.2714 Mould Steel boasts numerous features and advantages that make it a preferred choice in various applications:
Features
- Outstanding toughness and impact resistance
- High heat resistance and thermal stability
- Excellent machinability and grindability
- Uniform hardness and dimensional stability
- Resistance to thermal fatigue and deformation
Advantages
- Widely used in hot-work tooling applications such as die casting and forging
- Offers superior performance in high-temperature environments
- Enables precise and intricate mould designs
- Provides long tool life and minimal maintenance requirements
- Ensures high-quality surface finish on moulded parts
Comparison Between 1.2714 Mould Steel and Competing Alloys
Let’s compare the advantages and disadvantages of 1.2714 Mould Steel with a competing alloy, H13 Tool Steel:
Parameter | 1.2714 Mould Steel | H13 Tool Steel |
---|---|---|
Carbon Content | 0.45-0.55% | 0.32-0.45% |
Silicon Content | 0.10-0.40% | 0.80-1.20% |
Manganese Content | 0.50-0.70% | 0.20-0.50% |
Chromium Content | 0.90-1.20% | 4.75-5.50% |
Nickel Content | 1.50-1.80% | – |
Molybdenum Content | 0.35-0.55% | 1.10-1.75% |
Hardness | Moderate to High | Very High |
Toughness | Excellent | Good |
Applications and Uses
From die casting to forging, 1.2714 Mould Steel finds extensive utilization in various hot-work tooling applications:
Industry | Applications |
---|---|
Die Casting | Die-casting dies, inserts, cores |
Forging | Forging dies, extrusion dies, hot stamping dies |
Metal Forming | Punches, trimming tools, blanking dies |
Navigating Suppliers and Pricing
Sourcing 1.2714 Mould Steel requires careful consideration of reliable suppliers offering quality products at competitive prices:
Supplier | Price Range (per kg) | Description/Notes |
---|---|---|
Bohler Uddeholm | $15 – $25 | Leading manufacturer of high-performance tool steels for various industrial applications. |
ThyssenKrupp | €10 – €18 | Global supplier of specialty steel products with a focus on tool and mould making. |
ASSAB | $18 – $30 | Provides high-quality tool steel solutions tailored to meet specific customer requirements. |
FAQs about 1.2714 Mould Steel
Q: What are the main advantages of using 1.2714 Mould Steel?
A: 1.2714 Mould Steel offers excellent toughness, high heat resistance, and good machinability, making it ideal for hot-work tooling applications.
Q: What are the common applications of 1.2714 Mould Steel?
A: It is commonly used in the manufacturing of die-casting dies, forging dies, and hot stamping dies for various industrial sectors.
Q: Where can I buy 1.2714 Mould Steel?
A: You can source it from reputable suppliers such as Bohler Uddeholm, ThyssenKrupp, ASSAB, and others.
Q: What specifications does 1.2714 Mould Steel conform to?
A: This mould steel conforms to standards such as DIN EN ISO 4957 and ASTM A681, ensuring compliance with stringent quality requirements.