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Titanium Plate Gr1 Gr2 Gr5 Gr7 ASTM B265 And AMS 4914 Specifications For Engineering And Construction Industry

Titanium Plate Gr1 Gr2 Gr5 Gr7 ASTM B265 And AMS 4914 Specifications For Engineering And Construction Industry

Gr7 Titanium Plate

AMS 4914 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
Weldability:
Good
Purity:
99.5%min
Techology:
Rolling Extrusion
Tolerance:
H7
Colour:
Silver
Hardness:
HV200
Type:
Seamless/Welded
Advantage:
Anti Corrosion
Model:
Titanium Welded/Seamless Tube
Diamension:
Cutomized By Buyer
Coporation:
Trading And Manufacture
Temperature:
Max45Celsius
Density:
4.51 G/cm3
Heatresistance:
Good
Dimension:
Customized Or Standardisation
Payment & Shipping Terms
Minimum Order Quantity
200 pieces
Price
negotiable
Packaging Details
All goods are packed by seaworth shipment materials or required by buyer
Delivery Time
about 15-45 days for delivery
Payment Terms
L/C, D/A, D/P, T/T, Western Union
Supply Ability
500 Ton/Tons Per Month
Product Description
Titanium Plate Gr1 Gr2 Gr5 Gr7 ASTM B265 and AMS 4914 Specifications for Engineering and Construction Industry

Product Description:

Gr5 Titanium Plate Hot Rolled Pickling Surface Corrosion Resistance 1

Features:

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.

 

Titanium plates are also relatively easy to weld, allowing for versatile fabrication and assembly. Their good ductility enables them to be formed into complex shapes without cracking. Furthermore, titanium's low coefficient of thermal expansion ensures stability under varying temperature conditions, which is crucial for precision applications. While titanium is not as conductive as metals like copper, it still possesses adequate electrical conductivity for certain applications. Finally, titanium plates demonstrate excellent fatigue resistance, making them suitable for use in cyclic loading applications, such as aerospace components. Therefore, titanium plates excel in multiple fields due to their strength, lightweight nature, and resistance to environmental factors.

Titanium Plate Gr1 Gr2 Gr5 Gr7 ASTM B265 And AMS 4914 Specifications For Engineering And Construction Industry 1

Technical Parameters:

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

 

Introduction to Gr7 Titanium Alloy

Gr7 titanium alloy, also known as Ti-0.2Pd, is a highly regarded material recognized for its exceptional corrosion resistance and mechanical properties. The inclusion of a small percentage of palladium significantly enhances its performance, particularly in aggressive environments typical of the chemical industry. According to the ASTM B265 standard, Gr7 titanium alloy sheets meet rigorous quality requirements, ensuring reliability for a variety of applications.

  1. Corrosion Resistance: Gr7 titanium exhibits outstanding resistance to harsh chemicals, including acids and chlorides, making it ideal for chemical processing equipment.

  2. Mechanical Strength: The alloy combines titanium's lightweight nature with high strength, allowing for the construction of durable components without adding excessive weight.

  3. Surface Finish: The polished surface finish of Gr7 sheets not only enhances aesthetic appeal but also contributes to improved performance in demanding environments, reducing the risk of contamination and buildup.

 

Key Properties of Gr7 Titanium Alloy

Gr7 titanium alloy exhibits several key properties that contribute to its suitability for the chemical industry. One of the most notable characteristics is its impressive corrosion resistance, which stems from the formation of a stable oxide layer when exposed to various environments. This protective layer prevents further oxidation and degradation, allowing the material to withstand harsh chemicals without compromising structural integrity. The alloy's ability to resist pitting and crevice corrosion makes it especially valuable in applications where exposure to aggressive substances is a constant concern.

In addition to corrosion resistance, Gr7 titanium also possesses excellent mechanical properties, including high tensile strength and good ductility. These features ensure that the material can withstand significant stress without fracturing, making it ideal for high-pressure applications commonly found in chemical processing. The lightweight nature of titanium further enhances its appeal, as it allows for easier handling and installation while contributing to overall system efficiency. These combined properties make Gr7 titanium alloy sheets a preferred choice for various components in the chemical industry.

 

The Importance of Polished Surfaces

The polished surface finish of Gr7 titanium alloy sheets plays a crucial role in enhancing their performance, particularly in the chemical industry. Here are several key benefits of a polished finish:

1. Minimizing Contaminant Buildup

A smooth, polished surface significantly reduces the risk of contaminant accumulation. In chemical processing, even minor impurities can dramatically affect product quality and safety. By maintaining a polished finish, manufacturers can help ensure the purity of the substances being processed, preventing unwanted reactions or contamination that could compromise the integrity of the final products.

2. Enhanced Corrosion Resistance

Polished surfaces improve corrosion resistance by minimizing the potential for localized corrosion. Surface imperfections like pits or scratches can serve as initiation points for corrosive attacks, leading to premature material failure. A polished finish not only reduces this risk but also ensures a more uniform surface that is less prone to corrosion.

3. Easier Cleaning and Maintenance

In the chemical industry, hygiene and cleanliness are paramount. Polished surfaces facilitate easier cleaning, making it simpler to maintain equipment and comply with strict hygiene standards. This ease of maintenance is critical for preventing contamination and ensuring consistent operational efficiency.

4. Operational Efficiency

The investment in polished Gr7 titanium alloy sheets pays off through enhanced performance and reduced operational downtime. With better corrosion resistance and easier maintenance, manufacturers can achieve longer service life for their equipment, ultimately leading to cost savings and improved productivity.

 

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.

 

Manufacturing Processes and Quality Control

The production of Gr7 titanium alloy sheets adheres to stringent protocols to ensure compliance with ASTM B265 standards. The manufacturing process encompasses several key stages, each critical for achieving the desired material properties and quality.

1. Raw Material Procurement

The process begins with the procurement of high-quality titanium. Selecting the right raw material is essential, as impurities can significantly affect the performance and properties of the final product.

2. Melting and Alloying

Once the raw titanium is sourced, it undergoes melting and alloying to achieve the desired composition, specifically incorporating palladium to enhance corrosion resistance. This step is crucial for ensuring uniformity and consistency in the material properties.

3. Hot Rolling

The alloyed material is then subjected to hot rolling, which transforms it into sheets of the required thickness. Hot rolling helps improve the mechanical properties of the alloy while refining its microstructure.

4. Cold Rolling

Following hot rolling, the sheets undergo cold rolling. This process not only further enhances mechanical properties but also improves surface quality, leading to smoother finishes that are critical for the intended applications.

5. Surface Treatment

To achieve a polished surface finish, the sheets undergo several surface treatment processes, including grinding, buffing, and sometimes chemical treatments. These processes are designed to eliminate any imperfections and enhance the aesthetic appeal of the sheets, which is particularly important in industries where appearance matters.

6. Quality Control Measures

Throughout the manufacturing process, rigorous quality control measures are implemented to monitor for defects that could affect performance. This includes:

  • Visual Inspections: To check for surface imperfections.
  • Mechanical Testing: To verify the strength and ductility of the material.
  • Corrosion Testing: To ensure the sheets meet required resistance standards.

7. Final Testing and Compliance

The final product undergoes comprehensive testing to verify compliance with industry standards. This includes checks for mechanical properties and corrosion resistance, ensuring that the sheets meet the necessary specifications for use in chemical processing operations.

 

Conclusion

Gr7 titanium alloy sheets, particularly those meeting ASTM B265 specifications with a polished surface, represent a remarkable advancement in materials science for the chemical industry. Their outstanding corrosion resistance, combined with excellent mechanical properties, positions them as a premier choice for various applications requiring reliability in harsh environments. The added benefits of a polished finish ensure greater cleanliness and reduced maintenance, further enhancing their value in critical operations.

As industries strive to improve efficiency and sustainability, the adoption of high-performance materials like Gr7 titanium will likely continue to rise. By investing in advanced materials, businesses can enhance their operational capabilities while reducing long-term costs. Ultimately, the role of Gr7 titanium alloy sheets in the chemical industry underscores the importance of innovation in materials, paving the way for more efficient and durable processing solutions.

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