
Titanium Ingot
Titanium Grade 5 ingot
1- standard: ASTM B977-11
2- Vacuum melting twice or third times
3- MOQ: 1 piece
4- Size: 400~600mm
Product Introduction
What is Titanium Ingot?
Customers both within and outside of CHINA make extensive use of our titanium ingots, which are titanium metal products made by melting and casting primarily titanium sponge. We produce unadulterated titanium ingots and compound ingots. Specifically, huge estimated unadulterated titanium ingots, which are created through electron pillar softening, contribute extensively to the upgrades in item quality and efficiency for every client, because of their homogeneous arrangement, stable quality, and supply of enormous measured ingots.
Titanium ingots with the highest density are produced by CHANGSHENG. In general, ingots are the most useful metallic form and the least expensive. The nominal dimensions of our standard ingot are 2-3 cm x 3-8 cm x 6-12 cm. Crystallization, solid state, and other ultra-high purification processes, like sublimation, are used to make materials. Custom compositions for new proprietary technologies and commercial and research applications are CHANGSHENG's area of expertise. CHANGSHENG likewise projects any of the uncommon earth metals and most other high level materials into pole, bar, or plate structure, as well as other machined shapes and through different cycles, for example, nanoparticles and as arrangements and organometallics. In addition, we can supply shot and pieces at shorter ranges. We likewise produce Titanium as pole, pellets, powder, pieces, plate, granules, wire, and in compound structures, like oxide. Different shapes are accessible in response to popular demand.
A titanium alloy ingot is a solid block of titanium alloy by ASTM International. It is an alloy composed of 6% aluminum, 4% vanadium, and 90% titanium by weight, density is 4.44kg/cm3, This alloy is known for its high strength, low density, and excellent corrosion resistance, making it a popular choice for a wide range of applications, including aerospace, medical devices, and industrial equipment.
The process of manufacturing a GR5 titanium ingot typically involves melting and refining the raw materials, followed by casting the molten metal into a solid block using a mold. The ingot is then processed further through forging, rolling, or machining to produce the final product.
This is mainly used in aerospace, aircraft and engines where strong, lightweight, temperature-resistant materials are needed.
As it is resistant to seawater, titanium alloy ingot is also used for hulls of ships, propeller shafts and other structures exposed to the sea.
Titanium ingot specifications
Standard | ASTM B348/ASME SB348, ASTMF67, ASTM F136, ISO-5832-2(3), AMS4928, MIL-T-9047G, JIS etc |
Titanium type | Commercially Pure(CP) / Titanium alloy |
Grade | Grade 2 Grade 5 Grade 7 Grade 9 Grade 12 Grade 23 |
Diameter | 400~600mm |
Length | 3000mm below |
Technique | Smelting |
Application | Metallurgy, electronics, medical, chemical, petroleum, pharmaceutical, aerospace, etc. |
Chemical composition
Element | N | C | H | Fe | O | AI | V | Ti |
GR.5 | ≤0.05 | ≤0.08 | ≤0.015 | ≤0.4 | ≤0.20 | 5.5-6.75 | 3.5-4.5 | Residual |
Photos:
First melting ingot
Remelting ingot
Remove the peel by machining
Characteristics:
Grdde 5 titanium ingot offers a unique combination of properties, including high strength-to-weight ratio, excellent corrosion resistance, and biocompatibility. These properties make the gr5 titanium ingot a popular choice for a wide range of applications, including aerospace, automotive, medical implants, and industrial equipment.
In the aerospace industry, it is used for structural components, engine parts, and landing gear due to its high strength and low weight. In the medical field, it is used for orthopedic implants and surgical instruments due to its biocompatibility and resistance to corrosion.
Grade 5 titanium alloy Tensile strength σb/MPa≥895, specified residual elongation stress of σr0.2/MPa≥825, elongation δ5(%)≥10, reduction of area ψ(%)≥25, density is 4.44 (g/cm3)and working temperature is -100~550 (℃).
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