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AMS MIL Titanium Forged Rings Gr2 Chemical Pure Titanium Ring
Place of Origin | Shanxi China (mainland) |
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Brand Name | NewFuture Titanium |
Certification | ISO 9001 |
Model Number | FTR |
Minimum Order Quantity | 1 Kg |
Price | Negotiable |
Packaging Details | Inner packaging:plastic bag packaged with supporting thing inside Outer packaging:plywood case with strips as you request |
Delivery Time | Depend on real situation,AS general:2-15days |
Payment Terms | T/T, Western Union, Paypal, Credit card, Money Gram |
Supply Ability | 10 ton |

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xApplication | Industry | Technique | Forged,polished |
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Grade | Pure Titanium,Alloy Titanium | Powder Or Not | Not Powder |
Ti Content (%) | 99.6% | Keyword | Titanium Flange Ring |
High Light | AMS MIL Titanium Forged Rings,Titanium Forged Rings Gr2,Gr2 Chemical Pure Titanium Ring |
AMS MIL Titanium Forged Rings Chemical Engineering Customized Specification
Description:
Dimension | OD(Max 6000mm)×ID(Max 5900mm)×L(max length 1000mm) |
Titanium Grade | Gr1 Gr2 Gr3 Gr4 Gr5 Gr6 Gr7 Gr9 Gr11 Gr12 Gr23 |
Certification | ISO 9001:2008 & Gold suppier on ALIBABA, Material Mill Test Report |
Standard | ASTM B381, ASME SB381, AMS, MIL, DIN, BS, JIS, GB/T, ISO, etc. |
Specification | Customized as request |
Process | Forged , Rolling , Grinding |
Type |
Including titanium seamless rolled rings,forged rings ,and casted rings. The Process for seamless rolled forged rings involves cutting a hole out of the forging material and rolling it into a thin ring.The rolled forged rings offer concentrically improved rings with smooth surfaces as compared to plate burn-outs, or butt welded rings.
|
Application |
1. Electroplating; 2. Chemical engineering & Petrochemical technology; 3. Medical |
Although "commercially pure" titanium has acceptable mechanical properties and has been used for orthopedic and dental implants, for most applications titanium is alloyed with small amounts of aluminium and vanadium, typically 6% and 4% respectively, by weight. This mixture has a solid solubility which varies dramatically with temperature, allowing it to undergo precipitation strengthening. This heat treatment process is carried out after the alloy has been worked into its final shape but before it is put to use, allowing much easier fabrication of a high-strength product.
The structural properties of titanium are better than aluminium, although it is also more expensive and heavier. Titanium is generally used in the most heavily-loaded structures that must occupy minimum space, such as the landing gear and wing-fuselage connections. Ti-6Al-4V is the most widely used titanium alloy because it can be heat treated to different strength levels, is easy to weld, and is relatively easy to machine. The many uses for Ti-6Al-4V include blades and discs for aircraft turbines and compressors, rocket engine casings, marine components, steam turbine blades, structural forgings and fasteners.
Titanium alloys have good heat resistance, low temperature toughness and fracture toughness, so they are mostly used as aircraft engine parts and rocket and missile structural parts.
Titanium alloys can also be used as fuel and oxidant storage tanks and high-pressure containers.
Automatic rifles, mortar mounts and launch tubes for recoilless guns are now made of titanium alloys.
In the petroleum industry, it is mainly used for various containers, reactors, heat exchangers, distillation columns, pipes, pumps and valves.
Titanium is used as electrodes and condensers in power stations and as environmental pollution control devices.