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ASTM B265 Titanium Sheets Grade 2 Grade 5 and Grade 7 Titanium Plate For Pipeline Systems

ASTM B265 Titanium Sheets Grade 2 Grade 5 and Grade 7 Titanium Plate For Pipeline Systems

Grade 7 Titanium Plate

Pipeline Systems Titanium Plate

ASTM B265 Titanium Plate

Place of Origin:

Xi'an, China

Brand Name:

FHH

Certification:

ISO9001, CE, API,etc

Model Number:

Titanium Plate

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Request A Quote
Product Details
Heat Treatment:
Annealed For Improved Ductility.
Technology:
Cold Rolling Or Hot Rolling
Advantage:
High Performance,Acid Resistance
Tensile:
1021Mpa
Technique:
Cold Rolled, Hot Rolled
Corrosion Resistance:
Excellent
Shape:
Plate
Yield:
955Mpa
Product Type:
Plate/Sheet
Production Method:
Hot Forged
Production Standards:
ASTM B265, ASME SB-265, ISO 5832
Condition:
Annealed
Yield Strength:
844Mpa
Production Capacity:
30, 000ton Per Year
Payment & Shipping Terms
Minimum Order Quantity
300-500 pieces
Price
negotiable
Packaging Details
All goods are packed by seaworth shipment materials or required by buyer
Delivery Time
about 20-45 days for delivery
Payment Terms
D/A, D/P, T/T, L/C
Supply Ability
200-500 Ton/Tons Per Month
Product Description
ASTM B265 Titanium Sheets Grade 2 Grade 5 and Grade 7 Titanium Plate For Pipeline Systems
 

Titanium is a remarkable metal known for its exceptional strength, low density, and outstanding corrosion resistance. Among the various forms in which titanium is produced, pickled hot rolled titanium sheets, particularly ASTM B265 Grade 2 and Grade 5, are widely utilized across several industries, including aerospace, marine, chemical processing, and medical applications. This article explores the characteristics, manufacturing processes, and applications of these titanium plates, highlighting their significance in modern engineering.

 

Titanium plates are widely used across various industries due to their unique properties. Firstly, they have a high strength-to-weight ratio, being significantly lighter than steel while maintaining comparable strength, making them ideal for applications with strict weight requirements. Additionally, titanium exhibits exceptional corrosion resistance, particularly in marine and chemical environments, effectively extending the lifespan of components made from it. Its biocompatibility makes titanium suitable for medical applications, such as implants and prosthetics. It can also withstand high temperatures without losing its mechanical properties, which is advantageous in aerospace and industrial applications.

 

ASTM B265 Titanium Sheets Grade 2 Grade 5 and Grade 7 Titanium Plate For Pipeline Systems 0

Understanding ASTM B265 Grades

Understanding ASTM B265 Grades of Titanium

ASTM B265 outlines the specifications for titanium and titanium alloy plates, sheets, and strips, and includes various grades, each tailored for specific applications based on their chemical and mechanical properties.

Grade 2 Titanium

  • Composition: Commercially pure titanium with a minimum titanium content of 99%.
  • Mechanical Properties:
    • Tensile Strength: Approximately 345 MPa (50,000 psi).
    • Ductility: Good, allowing for formability.
  • Corrosion Resistance: Excellent, making it suitable for harsh environments, such as marine and chemical processing applications.
  • Applications: Commonly used in industries where corrosion resistance is critical, including chemical processing, marine environments, and medical devices.

Grade 5 Titanium (Ti-6Al-4V)

  • Composition: Titanium alloy with aluminum (6%) and vanadium (4%).
  • Mechanical Properties:
    • Tensile Strength: Can reach up to 180 kg/mm² (1,800 MPa).
    • High Strength-to-Weight Ratio: Offers significant advantages in performance.
  • Corrosion Resistance: Maintains excellent resistance, although slightly lower than Grade 2 due to the alloying elements.
  • Applications: Widely used in aerospace, automotive, and high-performance engineering applications where strength and weight efficiency are crucial.

 

The Importance of Polished Surfaces

The polished surface finish of Gr7 titanium alloy sheets serves multiple purposes that enhance their performance in the chemical industry. Firstly, a smooth surface minimizes the risk of contaminant buildup, which is crucial in maintaining the purity of the substances being processed. In chemical applications, even minor impurities can dramatically affect product quality and safety. By ensuring a polished finish, manufacturers can help prevent unwanted reactions or contamination that could compromise the integrity of the processed materials.

Moreover, the polished surface contributes to improved corrosion resistance by reducing the potential for localized corrosion. Imperfections, such as pits or scratches, can act as initiation points for corrosive attacks, leading to premature failure of the material. A polished finish not only mitigates this risk but also facilitates easier cleaning and maintenance, which is essential in the chemical industry where hygiene and cleanliness are critical. Consequently, the investment in polished Gr7 titanium alloy sheets pays off through enhanced performance and reduced operational downtime.

 

Applications in the Chemical Industry

Gr7 titanium alloy sheets are utilized in a wide variety of applications within the chemical industry. These include manufacturing heat exchangers, reactors, piping systems, and pressure vessels, all of which are subject to rigorous operating conditions. The superior corrosion resistance of Gr7 titanium allows these components to function effectively in environments where traditional materials might fail. With its capacity to handle extreme temperatures and pressures, Gr7 titanium is increasingly chosen for critical applications that demand reliability.

One common application is in the production of chemical processing equipment that handles acidic solutions. Many industrial processes involve the use of strong acids, which can rapidly degrade conventional metals. Gr7 titanium's resistance to these acids ensures that equipment not only lasts longer but also maintains its performance over time. This capability is essential for industries such as petrochemicals, pharmaceuticals, and food processing, where the integrity of equipment directly impacts productivity and safety.

 

Technical Parameters:

ASTM B265 Titanium Sheets Grade 2 Grade 5 and Grade 7 Titanium Plate For Pipeline Systems 1

Titanium Sheet and Plate

We can supply a wide selection of titanium sheets and plates for fabrication and engineering projects. They can be precision-cut to your specifications and come with a selection of surface finishes.

Production Standards:

Sheets and plates follow ASTM B265, AMS 4920, ASME SB265, ASTM SB 265, and DIN 17860 specifications.

Titanium Grades:

Grades available include Gr1, Gr2, Gr10 or 5 (6Al-4V), 7 (Ti-0.15Pd), 9 (3Al-2.5V), etc.

Titanium Sheet Surface Finishes:

Recommended finishes for titanium sheet include polished, mill, pickling, painted, brushed, or blasted.

Apart from the products listed below, other available metal products are not listed here. Other metal products USTi can manufacture and supply include Tantalum, Niobium, Zirconium, Hafnium, Nickel, Copper etc., which are mainly in the form of Plate, Bar and Tube.
Products Processing Standard Grade Size
Titanium Plate, Sheet, Coil ASME SB265, AMS 4911, AMS 4919, AMS 4914
ASTM F67, ASTM F136

GR1, GR2, GR3, GR4, GR5, GR7,

GR9, GR12, GR16, GR17, GR23,

Ti-6Al-4V ELI, Ti-6-2-4-2, Ti-15-3-3-3

Thickness: (0.0197”-6”)

Max Width: 12 feet

Max Length: 50 feet

 

Titanium Foil

 

ASME SB265

 

GR1, GR2, GR5

 

(0.001”-0.004”) x 4.8” x coil

(0.004”-0.01”) x 18” x coil

(0.012”-0.0158”) x 48” x coil

 

Applications in Aerospace and Marine Industries

The unique properties of ASTM B265 Grade 2 and Grade 5 titanium sheets make them indispensable in the aerospace industry. Grade 2 is commonly used in components that demand excellent corrosion resistance without the necessity for extreme strength. Examples include airframe structures, fasteners, and engine parts. Its ease of fabrication and welding further contribute to its widespread use in this sector, where lightweight materials are essential for improving fuel efficiency and overall performance.

Grade 5 titanium, with its superior strength and ability to withstand high temperatures, is utilized in critical aerospace applications such as turbine blades, landing gear, and structural components of aircraft. The rigorous demands of the aerospace industry necessitate materials that can endure significant stress while remaining lightweight. Similarly, in the marine environment, both grades are used extensively due to their outstanding resistance to seawater corrosion. Grade 2 is often found in piping and pressure vessels, while Grade 5 is preferred for components that require higher strength, such as propeller shafts and hull fittings.

 

Manufacturing Considerations and Quality Control

Manufacturing pickled hot rolled titanium sheets requires careful attention to detail throughout the production process. Here are the key considerations and quality control measures:

1. Production Process

  • Forging: The initial step where titanium is shaped under heat and pressure. This process enhances the material's mechanical properties and structure.
  • Rolling: Hot rolling reduces the thickness of the titanium sheets while improving their uniformity and mechanical properties. The temperature and rolling speed must be closely monitored to prevent overheating, which can lead to unwanted microstructural changes.
  • Heat Treatment: Post-rolling heat treatment is crucial for achieving the desired mechanical properties, such as strength and ductility. Parameters like temperature and duration are meticulously controlled to avoid defects.

2. Clean Production Environment

  • Contamination Control: Titanium is highly reactive with elements like oxygen and nitrogen, which can lead to embrittlement and compromised performance. A clean environment, free from contaminants, is essential throughout the manufacturing process.
  • Material Handling: Tools and surfaces that come into contact with titanium should be cleaned regularly to minimize contamination risks.

3. Welding and Fabrication Techniques

  • TIG Welding: This specialized welding method is preferred for titanium due to its precision and ability to produce strong, clean welds. The process requires careful control of the heat input to avoid altering the material's properties.
  • Shielding: Effective shielding from atmospheric contaminants during welding is critical. This typically involves using inert gases like argon to create a protective atmosphere around the weld area, preventing oxidation and contamination.

4. Quality Control Measures

  • Non-Destructive Testing (NDT): Techniques such as ultrasonic testing and radiography are employed to detect internal flaws and ensure the integrity of the titanium sheets without damaging them.
  • Surface Inspections: Regular inspections for surface defects, such as pitting or cracks, are conducted to maintain high-quality standards. This includes visual inspections and the use of surface analysis techniques.

5. Compliance with Standards

  • Adhering to industry standards and specifications, such as ASTM B265, is essential to ensure that the titanium sheets meet the required performance criteria for their intended applications.

 

Economic and Environmental Impact

While the initial cost of titanium plates can be higher than that of traditional metals, their long-term benefits often justify the investment. The durability and corrosion resistance of titanium lead to lower maintenance costs and extended service life, making it a cost-effective solution in demanding environments. Furthermore, as industries increasingly focus on sustainability, titanium's recyclability adds to its appeal. Used titanium can be melted down and repurposed, minimizing waste and promoting environmentally responsible practices.

The growing emphasis on lightweight materials in various industries aligns with the properties of titanium, making it a key player in the drive for improved efficiency and reduced environmental impact. As technologies advance and new applications for titanium emerge, the demand for pickled hot rolled titanium sheets, particularly ASTM B265 Grade 2 and Grade 5, is expected to continue rising, contributing positively to both economic and environmental objectives.

 

Support and Services

Titanium Plate provides technical support and service to its customers through a comprehensive range of support options.

Customers can access technical support and service by contacting Titanium Plate's customer service team directly. Our team is available to answer any questions or concerns, provide product and technical support, and provide helpful guidance. Our team can be contacted by phone, email, or live chat.

In addition, Titanium Plate provides customers with online access to product and user guides, tutorials, frequently asked questions, and access to our knowledge base. This helps customers quickly and easily find solutions to their questions or issues.

We also provide customers with access to our online forums. Here customers can discuss product features, ask questions, and offer feedback. Our forums are moderated by our team to ensure customers receive the support they need.

 

Conclusion

In summary, pickled hot rolled titanium sheets, specifically ASTM B265 Grade 2 and Grade 5, represent a vital component of modern engineering across diverse industries. Their unique properties, including excellent corrosion resistance, high strength, and lightweight nature, make them indispensable in applications ranging from aerospace to medical implants. As the demand for advanced materials continues to grow, the significance of these titanium grades will only increase, driving innovation and efficiency in various sectors. Ultimately, the investment in titanium technology will yield substantial benefits, enhancing performance while promoting sustainability in manufacturing and engineering practices.

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