AMS4930: A Comprehensive Guide
Inhaltsübersicht
Welcome to this in-depth guide on AMS4930. Whether you’re a materials engineer, a procurement specialist, or simply someone interested in understanding the intricacies of this particular titanium alloy, you’re in the right place. We’ll explore everything from its composition and characteristics to its applications, grades, and more. By the end of this article, you’ll have a thorough understanding of AMS4930 and how it stacks up against other metal powders.
Overview of AMS4930
AMS4930 is a titanium alloy widely recognized for its high strength, lightweight properties, and excellent corrosion resistance. It’s often used in aerospace, medical, and industrial applications where these attributes are critical. But what exactly makes AMS4930 so special? Let’s dive into the specifics.
Composition of AMS4930
Understanding the composition of AMS4930 is crucial as it determines the material’s properties and suitability for various applications. Here’s a detailed look at its primary components:
Element | Prozentsatz |
---|---|
Titan (Ti) | 90-94% |
Aluminium (Al) | 5.5-6.5% |
Vanadium (V) | 3.5-4.5% |
Eisen (Fe) | ≤ 0,3% |
Sauerstoff (O) | ≤ 0,2% |
Kohlenstoff (C) | ≤ 0,08% |
Stickstoff (N) | ≤ 0,05% |
Wasserstoff (H) | ≤ 0,015% |
Merkmale von AMS4930
The specific blend of elements in AMS4930 gives it unique characteristics. Here are some of the key properties:
Mechanische Eigenschaften
Eigentum | Wert |
---|---|
Zugfestigkeit | 895 MPa (130 ksi) |
Streckgrenze | 825 MPa (120 ksi) |
Dehnung | 10% |
Verkleinerung der Fläche | 25% |
Härte (Rockwell C) | 36-38 HRC |
Physikalische Eigenschaften
Eigentum | Wert |
---|---|
Dichte | 4,43 g/cm³ |
Schmelzpunkt | 1660-1670 °C |
Wärmeleitfähigkeit | 6,7 W/m-K |
Spezifische Wärmekapazität | 0.522 J/g·K |
Elektrischer spezifischer Widerstand | 0.56 µΩ·m |
AMS4930 stands out due to its excellent strength-to-weight ratio, making it ideal for high-performance applications. Its high tensile and yield strengths ensure durability and reliability in demanding environments, while its moderate hardness provides resistance to wear and deformation.
Applications of AMS4930
AMS4930’s properties make it suitable for a variety of applications. Here are some common uses:
Industrie | Anmeldung |
---|---|
Luft- und Raumfahrt | Jet engine components, airframe parts |
Medizinische | Chirurgische Implantate, Prothetik |
Industriell | Chemical processing equipment, valves |
Marine | Offshore drilling components, ship parts |
Luft- und Raumfahrtanwendungen
In aerospace, AMS4930 is prized for its ability to withstand high temperatures and resist corrosion, which are essential for components like jet engines and airframes. Its lightweight nature contributes to fuel efficiency, a critical factor in aircraft design.
Medizinische Anwendungen
The biocompatibility of AMS4930 makes it an excellent choice for medical implants and prosthetics. Its strength and corrosion resistance ensure long-term performance and safety in the human body.
Industrielle Anwendungen
In industrial settings, AMS4930 is used in chemical processing equipment where it must endure harsh environments and corrosive substances. Its durability and resistance to wear make it suitable for valves and other critical components.
Grades of AMS4930
AMS4930 is available in several grades, each tailored for specific applications. Here’s a breakdown of the most common ones:
Klasse | Beschreibung |
---|---|
Klasse 5 | The most widely used, offering a good balance of strength and ductility. |
Klasse 23 | Similar to Grade 5 but with lower oxygen content for improved ductility. |
Klasse 9 | Known for its high strength and excellent corrosion resistance. |
Grade 18 | Tailored for high temperature and high-pressure environments. |
Grade Comparisons
When comparing different grades of AMS4930, it’s important to consider the specific requirements of your application. For example, Grade 5 is often used in aerospace due to its robust mechanical properties, while Grade 23 might be preferred in medical applications for its enhanced ductility and biocompatibility.
Lieferanten und Preisangaben
Finding the right supplier for AMS4930 can significantly impact your project’s success. Here are some prominent suppliers and an overview of pricing:
Anbieter | Standort | Preisspanne (pro kg) |
---|---|---|
Titanium Industries Inc. | Global | $50 – $70 |
Advanced Metal Industries | USA | $55 – $75 |
Baoji Titanium Industrie | China | $45 – $65 |
VSMPO-AVISMA | Russland | $50 – $70 |
Die Wahl des richtigen Lieferanten
When selecting a supplier, consider factors such as lead times, quality assurance, and customer service. It’s often worth paying a premium for a supplier with a proven track record and reliable support.
Advantages and Limitations of AMS4930
Like any material, AMS4930 has its pros and cons. Here’s a detailed comparison:
Vorteile
Vorteil | Beschreibung |
---|---|
Hohes Festigkeits-Gewichts-Verhältnis | Ideal for weight-sensitive applications like aerospace. |
Ausgezeichnete Korrosionsbeständigkeit | Suitable for harsh environments and medical applications. |
Biokompatibilität | Sicher für die Verwendung in medizinischen Implantaten und Prothesen. |
Hohe Temperaturstabilität | Behält seine Eigenschaften auch bei hohen Temperaturen bei. |
Beschränkungen
Begrenzung | Beschreibung |
---|---|
Hohe Kosten | More expensive than some alternative materials. |
Schwierigkeit der Bearbeitung | Requires specialized equipment and techniques. |
Begrenzte Verfügbarkeit | Not as widely available as some other alloys. |
Spezifische Metallpulver-Modelle
When it comes to metal powders, there are several specific models that you should be aware of. Here’s a list of ten prominent ones, along with descriptions:
- Ti6Al4V (Grade 5)
- Widely used in aerospace and medical applications.
- Known for its excellent strength and corrosion resistance.
- Ti6Al4V ELI (Grade 23)
- Extra Low Interstitial version of Grade 5.
- Improved ductility and biocompatibility for medical implants.
- Ti-6Al-2Sn-4Zr-2Mo
- High strength and excellent high-temperature performance.
- Used in aerospace and industrial applications.
- Ti-3Al-2.5V (Grade 9)
- Offers a good balance of strength and formability.
- Commonly used in aerospace and sporting goods.
- Ti-8Al-1Mo-1V
- High strength and good corrosion resistance.
- Used in aerospace and marine environments.
- Ti-5Al-2,5Sn
- Good weldability and moderate strength.
- Suitable for aerospace and industrial applications.
- Ti-10V-2Fe-3Al
- High strength and excellent toughness.
- Used in aerospace components requiring superior performance.
- Ti-15V-3Cr-3Sn-3Al
- Very high strength and good formability.
- Used in aerospace and chemical processing.
- Ti-6Al-6V-2Sn
- High strength and good high-temperature stability.
- Used in aerospace and industrial applications.
- Ti-6Al-2Sn-4Zr-6Mo
- Excellent high-temperature performance and strength.
- Ideal for aerospace applications involving high stresses.
FAQs
Hier finden Sie einige häufig gestellte Fragen zu AMS4930:
Frage | Antwort |
---|---|
What is AMS4930? | AMS4930 is a titanium alloy known for its high strength, lightweight properties, and excellent corrosion resistance. |
What are the main applications of AMS4930? | Common applications include aerospace components, medical implants, industrial equipment, and marine parts. |
How does AMS4930 compare to other titanium alloys? | AMS4930 offers a good balance of strength, ductility, and corrosion resistance compared to other titanium alloys. |
What are the advantages of using AMS4930? | High strength-to-weight ratio, excellent corrosion resistance, biocompatibility, and high-temperature stability. |
What are the limitations of AMS4930? | High cost, machining difficulty, and limited availability. |
What are the main components of AMS4930? | Primarily composed of titanium, aluminum, and vanadium. |
Which industries use AMS4930 the most? | Aerospace, medical, industrial, and marine industries. |
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