Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized

Product Details
Customization: Available
Application: Industrial
Shape: Steel Plate
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  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
  • Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
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Basic Info.

Model NO.
TA15
Model Number
Gr1/Gr2/Gr3/Gr5/Gr7/Gr9/Gr11
Product Name
Titanium Plate
Transport Package
Exported Sea Worthy Packing
Specification
as required
Trademark
bolaisheng
Origin
China

Product Description

Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
Titanium alloy is a sophisticated blend of titanium with other elements designed to optimize performance. Titanium exhibits two distinct crystal structures: Below 882ºC, it forms a close-packed hexagonal structure known as α titanium, while above 882ºC, it becomes body-centered cubic β titanium. Technical Requirements: 1. Chemical Composition: The titanium and titanium alloy sheets must meet the standards set forth in GB/T 3620.1, with permissible deviations adhering to GB/T 3620.2 during buyer reinspections. 2. Thickness Deviation: The allowable deviations in sheet thickness are detailed in Table 1. 3. Width and Length Deviation: Compliance with the allowable deviations for sheet width and length is outlined in Table 2. 4. Corner Precision: Plate corners should be cut to right angles as closely as possible, with inclines not exceeding the permissible deviations for length and width.
Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be CustomizedTitanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized
Titanium Alloy Plate Production Specifications
T 0.5-1.0mm x W1000mm x L 2000-3500mm

T 1.0-5.0mm x W1000-1500mm x L 2000-3500mm
T 5.0-30mm x W1000-2500mm x L 3000-6000mm
T 30-80mm x W1000mm x L 2000mm

Alloying

Titanium alloy is a sophisticated blend of titanium with other elements designed to optimize performance. Titanium exhibits two distinct crystal structures: Below 882ºC, it forms a close-packed hexagonal structure known as α titanium, while above 882ºC, it becomes body-centered cubic β titanium.
Alloying Elements Classification Based on Phase Transition Temperature:
1. α-Stabilizing Elements: These elements stabilize the α phase and elevate the phase transition temperature. Key elements include aluminum, carbon, oxygen, and nitrogen. Aluminum is the principal alloying element, significantly enhancing the alloy's strength at both room and elevated temperatures, reducing specific gravity, and increasing elastic modulus.
2. β-Stabilizing Elements: These elements stabilize the β phase and lower the phase transition temperature. They are categorized into isomorphic types, such as molybdenum, niobium, and vanadium, and eutectoid types, such as chromium, manganese, copper, iron, and silicon.
β-Stabilizing Elements: -Isomorphic Type: Molybdenum, niobium, vanadium, etc. -Eutectoid Type: Chromium, manganese, copper, iron, silicon, etc.
3. Neutral Elements: These elements have minimal impact on phase transition temperature, examples include zirconium and tin.
Impurities in Titanium Alloys: - Oxygen and nitrogen greatly enhance alloy strength due to their high solubility in the α phase but decrease plasticity; thus, their content in titanium is restricted to 0.15-0.2% and 0.04-0.05%, respectively. - Hydrogen's solubility in the α phase is minimal; excess hydrogen can cause brittleness by forming hydrides. The hydrogen content is controlled below 0.015%, and any excess can be removed through vacuum annealing.
Product Parameters

Product name

TA15 titanium plate

Material

TA0,TA1,TA2,TA3,TA4,TA5,TA6,TA7,TA9,TA10,TC1,TC2,TC3,TC4,TC6,TC11,GR1,GR2,GR3,GR5 Ti6AL4V ELI,Ti6AL7Nb,Ti13Nb13Zr,Ti1533

Specification

0.8mm---16mm(as you requirement)

Surface state

Black surface, polished surface, polished surface (H11, H9, H8)

Standard

GB/T,GJB,AWS,ASTM,AMS,JIS

Production technology

Hot forging - Hot rolling - Annealing straightening - Polishing - Flat head - Inspection - packaging

Typical uses

Aerospace, aviation, navigation, ships, seawater desalination, petroleum, chemical industry, machinery and equipment, nuclear power equipment, electric power equipment, automobile and motorcycle parts, sports and leisure, medical parts, steel and metallurgy, high-tech fields.

Delivery status

Hot working state, annealing state

Thickness

as customer's requirement

Export Packing

Standard Seaworthy Package

TA15 Chemical element content (%)
Element Fe C Si Mo N V Zr Al H O  Other individua  other tota More
Min - - - 0.5 - 0.8 1.5 5.5 - - - - Ti:Margin
Max 0.25 0.08 0.15 2 0.05 2.5 2.5 7.1 0.015 0.15 0.1 0.3  

Application

Titanium plates are extensively utilized in the shipbuilding industry owing to their superb corrosion resistance, low density, shape memory, and non-magnetic properties. Applications include nuclear submarines, deep-sea submersibles, atomic icebreakers, hydrofoils, hovercrafts, minesweepers, propellers, whip antennas, seawater pipes, condensers, heat exchangers, acoustic devices, fire-fighting equipment, and more. The primary categories of titanium alloys are industrial pure titanium, titanium-zirconium alloy, and standard titanium alloy.
(1) All Titanium Ships. The F1 series showcases remarkable expertise in crafting titanium boats. Developed in the 1990s by Toho Titanium Co., LTD., Nikko Industrial Co., LTD., Fuji Shin Shipyard, and Eteng Shipyard, these innovative vessels boast lightweight construction, impressive speed, compact engines, and reduced fuel costs. They also offer lower carbon dioxide emissions, require no surface coatings, and feature easily cleanable accessories. However, the high material costs, complex processing, and stringent protection requirements pose challenges. Extensive testing demonstrates their exceptional speed stability, vibration damping, and noise reduction.
(2) Atomic Powered Ships. In Russia, titanium alloys have revolutionized the construction of steam engines, heat exchangers, and ship coolers by replacing stainless steel. This substitution effectively mitigates corrosion damage. Titanium steam engines are now a staple in the power plants of Russian atomic icebreakers, extending engine life by an impressive 10-fold.
(3) Propellers. Propeller materials must possess high strength, excellent fatigue performance, and resistance to erosion and cavitation in seawater. Titanium alloys meet these rigorous demands. The U.S. Navy pioneered the use of a 1,500 mm diameter, four-bladed detachable titanium alloy propeller on a hydrofoil. China's development of hydrofoil speedboat propellers began in 1972. Today, a variety of titanium alloy propellers are available, with diameters ranging from 450mm to 1700mm. We manufacture fixed propellers with a diameter of 1200mm and a weight of 130kg. Long-term use reveals that titanium alloy propellers boast a service life exceeding that of copper alloy propellers by more than five times.
(4) Marine Pumps, Valves, and Pipes. Pumps, valves, and pipes made from copper and stainless steel typically last only 2-5 years in harsh marine environments. Titanium alloy replacements, however, have proven highly effective, especially in large-flow mobile seawater pipelines. The Russian ship pipeline life standard mandates three lifespan criteria: the first docking maintenance period spans 8-9 years; the service life must be no less than 15 years; and all types of vessels must operate reliably for 25-30 years.
Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be CustomizedTitanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be CustomizedTitanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized

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: We require a 30% T/T deposit upfront, with the remaining 70% due before delivery.

Q3: What are your delivery terms?

A: Our terms include FOB, CFR, CIF, and EXW.

Q4: What is your delivery time?

A: Our standard lead time ranges from 7 to 15 days after receiving the deposit.

Q5: Can you provide samples?

A: Yes, we offer complimentary samples if they are available in stock. However, the transportation fees must be borne by the buyer.
Certification

Titanium Plate Ta15 Hot Rolling 0.5mm-150mm Titanium Alloy Sheet Platinum Coated Titanium Plates Various Sizes Can Be Customized

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