Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5

Product Details
Customization: Available
Application: Industrial
Shape: Steel Plate
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  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
  • Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
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Basic Info.

Model NO.
Gr. 2/Gr. 5
Processing Service
Bending, Welding, Decoiling, Cutting, Punching
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 Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
Titanium Alloy Steel Plate  Placa de acero de aleación de titanio
 
Titanium alloys are alloys that contain a mixture of titanium and other chemical elements. Such alloys have very high tensile strength and toughness (even at extreme temperatures). They are light in weight, have extraordinary corrosion resistance and the ability to withstand extreme temperatures.

Steel Grade
Gr.1, Gr.2, Gr.5, Gr.7, Gr.11, Gr. 23, TA2, TA4, TA9, TA9-1, TC2, TC4 EL1, TC4Ti-6Al-4V, Class1, Class3, Class12, Class60E, Class61 B265, AMS 4907, AMS 4931, ASTM F136, MIL F-83142 and so on.
Titanium Alloy Steel Plate  Placa de acero de aleación de titanio
 
Titanium alloys are alloys that contain a mixture of titanium and other chemical elements. Such alloys have very high tensile strength and toughness (even at extreme temperatures). They are light in weight, have extraordinary corrosion resistance and the ability to withstand extreme temperatures.

Steel Grade
Gr.1, Gr.2, Gr.5, Gr.7, Gr.11, Gr. 23, TA2, TA4, TA9, TA9-1, TC2, TC4 EL1, TC4Ti-6Al-4V, Class1, Class3, Class12, Class60E, Class61 B265, AMS 4907, AMS 4931, ASTM F136, MIL F-83142 and so on.
Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5
4. Titanium alloys are divided into three main groups: alpha-phase, beta-phase, and alpha-beta-phase. Grade 23 Ti 6Al 4V ELI alloy is an alpha-beta wrought alloy. The ELI stands for extra low interstitial. For an alloy to be branded as an ELI product, it should be produced as such at the mill.

5. It has the character of good weldability, excellent corrosion resistance, high temperature and oxidation resistance and excellent comprehensive performance. It can be widely used in airframe components, cryogenic vessels, heat exchangers, CPI equipment, condenser tubing, pickling baskets, exhaust pipe shrouds, cases, hubs, forgings, biomedical implants.

 

Specification of Titanium Alloy Steel Plate

Product Description:

Titanium Sheet / Titanium Plate

Material:

Pure Titanium,Titanium Alloy

Standard:

ASTM B265 JIS H4600 GB/T 3620.1

Grades:

ASTM Pure Ti: Gr.1 Gr.2 Gr.3 Gr.4 Ti Alloy: Gr.5 Gr.7 Gr.9 Gr.11

JIS Pur Ti: Class 1 Class 2 Class 3 Class 4;Ti Alloy: Class 60 Class 12 Class 61 Class 11 Class 60 E

GB Pure Ti:TA1 TA2 TA3 TA4;Ti Alloy: TC4 TA9 TC2 TC4 ELI

Technique:

Cold Rolled,Hot Rolled,Annealing,Pickling or be required

Color:

Honed

Size:

Thickness: 0.5-30mm Width:600-2500 Length:1000-3000mm

MOQ:

100kg

Price Term:

CIF CNF/CFR FOB Ex-work

Payment Term:

T/T(30% Deposit usually);L/C(100% at Sight);West Union,Money Gram for sample

Application:

Electronics, medical and chemical industry, petroleum, pharmaceutical, aerospace, etc.

 

Chemical Component of Titanium Alloy Steel Plate

 

Applications for Industrial :

1. Aerospace,rack,hatch cover,

2. Oceaneering, oil production platform, oil cooler,

3. energy, heat exchanger, flat plate condenser

4. electronics , precision instruments

5. Bicycle and automobile exhaust tubing,cooling pipe

Alloying

Titanium alloy is an alloy composed of other elements added on the basis of titanium. Titanium has two kinds of homogeneous crystal: below 882ºC for close-packed hexagonal structure α titanium, above 882ºC for body-centered cubic β titanium.
Alloying elements can be divided into three categories according to their effect on the phase transition temperature:
1. The elements that stabilize the α phase and increase the phase transition temperature are the α stable elements, including aluminum, carbon, oxygen and nitrogen. Among them, aluminum is the main alloying element of titanium alloy, which has obvious effect on improving the strength of alloy at room temperature and high temperature, reducing the specific gravity and increasing the elastic modulus.
2. The elements that stabilize β phase and reduce the phase transition temperature are β stable elements, which can be divided into isomorphic and eutectoid types.
The former has molybdenum, niobium, vanadium and so on; The latter has chromium, manganese, copper, iron, silicon and so on.
3. The elements that have little effect on the phase transition temperature are neutral elements, such as zirconium and tin.
Oxygen, nitrogen, carbon and hydrogen are the main impurities of titanium alloys. Oxygen and nitrogen have a large solubility in the α phase, which has a significant strengthening effect on titanium alloy, but it reduces the plasticity. It is usually stipulated that the content of oxygen and nitrogen in titanium is below 0.15~0.2% and 0.04~0.05%, respectively. The solubility of hydrogen in the alpha phase is very small, and too much hydrogen dissolved in titanium alloys will produce hydrides, making the alloy brittle. Generally, the hydrogen content in titanium alloys is controlled below 0.015%. The dissolution of hydrogen in titanium is reversible and can be removed by vacuum annealing.

Application

The application of titanium plate in the shipbuilding industry is mainly due to its excellent corrosion resistance, low density, memory, and non-magnetic characteristics. Titanium and titanium alloys are extensively used in nuclear submarines, deep submersibles, atomic icebreakers, hydrofoils, hovercraft, minesweepers, propellers, whip antennas, seawater pipes, condensers, heat exchangers, acoustic devices, firefighting equipment, etc. The principal uses of titanium alloys include industrial pure titanium, titanium zirconium alloy, and various titanium alloys.
(1) All titanium ships. F1 has good practical experience in the manufacture of titanium boats. In the 1990s, all-titanium fishing boats or speedboats were manufactured by Toho Titanium Co., LTD., Nikko Industrial Co., LTD., Fuji Shin Shipyard, and Eteng Shipyard. All titanium ship has the advantages of light weight, fast speed, small engine, low fuel cost, less carbon dioxide emissions, no surface coating, easy to clean accessories, etc., the disadvantage is high material cost, difficult processing and manufacturing process, and strict protection requirements. The test results show that the ship has good speed stability, vibration and noise.
(2) Atomic powered ships. In Russia, titanium alloy is used instead of stainless steel in the manufacture of steam engines, heat exchangers and ship coolers, overcoming corrosion damage. Titanium steam engines are widely used in the power plants of Russian atomic icebreakers. The use of titanium alloy can extend the engine life by 10 times.
(3) Propeller. Propeller materials are required to have high strength, good fatigue performance, erosion resistance and cavitation resistance in seawater medium. Titanium alloy can meet the above comprehensive performance requirements. For the first time, the U.S. Navy used a 1,500 mm diameter, four-bladed detachable titanium alloy propeller on a hydrofoil. Hydrofoil speedboat propeller was developed in China in 1972. At present, various specifications of titanium alloy propellers have been produced, with a diameter of 450-1700mm. It can produce titanium alloy fixed propeller with diameter of 1200mm and mass of 130kg. Long-term use shows that the service life of titanium alloy propellers is more than 5 times that of copper alloy propellers.
(4) Marine pumps, valves and pipes. Pumps, valves and pipes made of copper and stainless steel have a service life of only 2-5 years due to very harsh working conditions. The titanium alloy after replacement has good effect and is suitable for large flow mobile seawater pipeline. The Russian ship pipeline life standard stipulates three life requirements, that is, the first docking maintenance period is 8-9 years; The service life is not less than 15 years; The whole life of all types of vessels is required to operate reliably for 25-30 years.
Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5Titanium Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5

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 Alloy Steel Plate Placa De Acero De Titanio Gr. 2/Gr. 5

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