Maraging Steel 250 Powder

Overview Maraging Steel 250 Powder is a highly sought-after alloy known for its exceptional strength, toughness, and corrosion resistance. Widely utilized across various industries, particularly in aerospace, automotive, and tooling sectors, this powder serves crucial roles in applications requiring high-performance materials capable of withstanding extreme conditions. Composition Maraging Steel 250 Powder is meticulously crafted with…

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Wgląd

Maraging Steel 250 Powder is a highly sought-after alloy known for its exceptional strength, toughness, and corrosion resistance. Widely utilized across various industries, particularly in aerospace, automotive, and tooling sectors, this powder serves crucial roles in applications requiring high-performance materials capable of withstanding extreme conditions.

Kompozycja

Maraging Steel 250 Powder is meticulously crafted with precise alloying elements to achieve its outstanding properties:

Element Waga %
Żelazo (Fe) 55.0-63.0
Nikiel (Ni) 18.0-20.0
Kobalt (Co) 8.0-10.0
Molybden (Mo) 3.0-5.0
Tytan (Ti) 1.5-2.1
Aluminium (Al) 0.1-0.15
Węgiel (C) ≤0.03
Krzem (Si) ≤0.1
Fosfor (P) ≤0.01
Siarka (S) ≤0.01

These alloying elements synergistically contribute to the alloy’s high strength, toughness, and corrosion resistance.

Właściwości

Maraging Steel 250 Powder exhibits remarkable properties essential for demanding applications:

Nieruchomość Wartość
Gęstość 8.08 g/cm³
Odporność na rozciąganie 1850 MPa
Wytrzymałość graniczna 1700 MPa
Wydłużenie 10%
Twardość (HRC) 54 HRC
Temperatura topnienia ~1420°C
Przewodność cieplna 22 W/m-K
Współczynnik rozszerzalności 11.5 µm/m-K

These outstanding properties make Maraging Steel 250 Powder suitable for a wide range of applications requiring high strength, toughness, and corrosion resistance.

APLIKACJE

Maraging Steel 250 Powder finds extensive applications across various industries:

  • Aerospace: structural components, landing gear parts
  • Automotive: drive shafts, engine components
  • Tooling: injection molds, die casting molds
  • Sporting Goods: golf club heads, bicycle frames
  • Medical: surgical instruments, implants

Its combination of superior properties makes it ideal for critical components subjected to high stress, fatigue, and corrosive environments.

Proces wytwarzania przyrostowego

Maraging Steel 250 Powder is typically produced through gas atomization or plasma atomization processes, resulting in spherical particles suitable for additive manufacturing techniques such as selective laser melting (SLM) and electron beam melting (EBM).

Specyfikacja proszku

Maraging Steel 250 Powder is available in various specifications tailored to meet specific application requirements, encompassing particle size distribution, morphology, apparent density, purity, and oxygen content.

Standardy i oceny

Maraging Steel 250 Powder conforms to industry standards such as AMS 6512 and MIL-S-46850, ensuring its quality and suitability for diverse applications.

Kontrola jakości

Stringent quality control measures are implemented for Maraging Steel 250 Powder, including chemical analysis, particle size analysis, powder morphology assessment, density testing, purity assessment, and oxygen content analysis, to ensure consistency and reliability.

Analiza kosztów

The cost of Maraging Steel 250 Powder varies based on several factors, including order volume, particle size range, powder morphology, purity levels, and manufacturer/distributor margins.

Przechowywanie i obsługa proszków

Proper storage and handling practices are imperative to preserve the integrity of Maraging Steel 250 Powder, including storage in sealed containers in a controlled environment and adherence to appropriate handling protocols.

Zdrowie i bezpieczeństwo

Maraging Steel 250 Powder poses minimal health risks with proper handling, necessitating the utilization of personal protective equipment and adherence to safety protocols during handling and processing.

FAQ

  1. What are the main advantages of Maraging Steel 250 Powder? Maraging Steel 250 Powder offers exceptional strength, toughness, and corrosion resistance, making it suitable for demanding applications in aerospace, automotive, and tooling industries.
  2. Can Maraging Steel 250 Powder be used in additive manufacturing? Yes, Maraging Steel 250 Powder is commonly used in additive manufacturing techniques such as selective laser melting (SLM) and electron beam melting (EBM) to produce complex components with high strength and toughness.
  3. Is Maraging Steel 250 Powder suitable for aerospace applications? Yes, Maraging Steel 250 Powder is suitable for aerospace applications, including structural components and landing gear parts, due to its high strength-to-weight ratio and corrosion resistance.
  4. What are the typical costs associated with Maraging Steel 250 Powder? Costs for Maraging Steel 250 Powder vary based on factors such as volume, particle size range, purity levels, and market conditions.

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