Customization: | Available |
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Application: | Industrial |
Shape: | Steel Bar |
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Titanium Coil - Titanium Strip - Titanium Foil: This versatile product includes titanium plates, strips, coils, or sheets with a thickness range of 10-0.1mm, categorized into pure titanium foil and titanium alloy foil. Thickness is further assessed by weight per unit area (g/m or oz/fi): the higher the value, the greater the thickness. Customizable width based on user specifications, though wider widths during manufacturing enhance productivity. The roll body length sets the maximum width of the rolled foil, with a practical maximum around 600mm. Wider, thinner, and harder rolled pieces increase rolling difficulty.
Titanium Coil - Titanium Strip - Titanium Foil Production Method: Our meticulous production process includes the following steps: electrode preparation, vacuum melting, forging and opening, hot rolling, cold rolling, annealing (heat treatment), and finally, plate, strip, and foil formation.
Titanium Coil - Titanium Strip - Titanium Foil Rolling: Employing the highly productive flat roll belt rolling method, we ensure large-scale output. Production is conducted using six-roll or 20-roll cold rolling mills, known for their efficiency and precision.
Titanium Coil - Titanium Strip - Titanium Foil Heat Treatment: We utilize two primary heat treatment methods: vacuum annealing and continuous online protection annealing. Vacuum annealing involves placing rolled or sheet titanium foil in a vacuum furnace. The innovative continuous online protection annealing, a recent advancement, offers superior efficiency and quality improvement, though it requires higher-grade equipment. This method significantly enhances product quality and mechanical properties.
Product name |
TA4 titanium alloy coil |
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Mode |
TA4 | |||
Diameter |
3.0mm-5000m( as customer's requirement) |
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Preparation method |
Common heat treatment methods are annealing, solution and aging treatment. Annealing is to eliminate internal stress, improve plasticity and structure stability, in order to obtain better comprehensive properties. Generally, the annealing temperature of α alloy and (α+β) alloy is selected at 120 ~ 200ºC below the (α+β) -→ β phase transition point; Solid solution and aging treatment is fast cooling from the high temperature region to obtain martensitic α 'phase and metastable β phase, and then heat preservation in the middle temperature region to decompose these metastable phases, to obtain α phase or compounds and other small dispersed second phase particles, to achieve the purpose of strengthening the alloy. Usually (alpha + beta) alloy quenching in alpha + beta) -- - > beta phase transition point below 40 ~ 100 ºC, metastable beta alloy quenching in alpha + beta) -- - > beta phase transition point above 40 ~ 80 ºC. The aging treatment temperature is generally 450 ~ 550ºC. In addition, in order to meet the special requirements of the workpiece, the industry also uses double annealing, isothermal annealing, β heat treatment, deformation heat treatment and other metal heat treatment processes. |
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Material standard |
GB/T 3620.1-94,GB/T 3625-95 |
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MOQ |
1ton, We can accpet sample order. |
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Thickness |
1-30mm, as customer's requirement |
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Delivery state |
Generally delivered in heat treatment condition, the type of heat treatment indicated in the contract; If not indicated, delivery in non-heat treatment condition. |
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Export Packing |
Standard Seaworthy Package |
Application
Titanium alloy coil boasts extensive applications across aviation, aerospace, shipbuilding, automotive, and medical fields.
In Aviation: Renowned for its high strength, corrosion resistance, and high-temperature endurance, titanium alloy is essential in manufacturing aircraft engine parts and fuselage structures. Titanium coils provide enhanced design flexibility and production efficiency for the aviation industry.
In Aerospace: Titanium alloys are crucial in crafting structural components for satellites, rockets, and other spacecraft, particularly in high-temperature environments.
In Shipbuilding: Enhancing ship performance and longevity, titanium alloys are used in constructing ship structures, propellers, and valves.
In Automotive: Titanium alloys contribute to high-performance automotive engine components and suspension systems, boosting vehicle performance and fuel efficiency.
In Medical: Due to its excellent biocompatibility and mechanical properties, titanium alloy is used in manufacturing artificial joints and dental implants.
As a premier metal material, the application of titanium alloy coils not only highlights the exceptional properties of titanium alloy but also underscores its indispensable role across various industries.
Our Advantages
Qualitative Materials:
We utilize premium, top-grade raw materials to ensure our products deliver superior strength, resilience, and longevity.
Advanced Technology:
Our manufacturing processes incorporate cutting-edge technologies, including advanced smelting, continuous casting, and rolling techniques.
Customized Service:
We offer bespoke design and manufacturing services to meet the unique needs and requirements of our customers.
FAQ
Q1: Why choose your company?
A: With over 16 years of unparalleled industry expertise and the advantage of having our own state-of-the-art factory, we deliver exceptional services that are further enhanced by our professional and dedicated sales team.
Q2: What are your terms of payment?
A: To initiate your order, we request a 30% T/T deposit upfront. The remaining 70% balance is required to be settled before the delivery of your products.
Q3: What are your delivery terms?
A: We offer a variety of flexible delivery terms including FOB, CFR, CIF, and EXW, tailored to meet your specific needs.
Q4: What is your delivery time?
A: Our standard lead time is efficiently managed, ranging from 7 to 15 days following the receipt of your deposit.
Q5: Can you provide samples?
A: Absolutely! We provide complimentary samples from our available stock. Please note that transportation fees are the responsibility of the buyer.
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