Titanium alloy series
Titanium alloy is an alloy composed of other elements based on titanium. Titanium has two isomorphous crystals; titanium is an isomeric isomer with a melting point of 1720°C and a close-packed hexagonal lattice structure below 882°C , called a titanium; above 882 ° C, it has a body-centered cubic lattice structure, called B titanium, using the different characteristics of the above two structures of titanium, adding appropriate alloying elements to make the phase transition temperature and phase content gradually increase Changes to obtain titanium alloys with different structures.
The properties of titanium are a combination of high strength, rigidity, hardness, low density and high corrosion resistance. And having these properties at very low given temperatures, titanium alloys are widely used in aerospace structural materials that require weight reduction and in other fields that require high performance.
Available Product Forms:
Pipe, tube, sheet, strip, plate, round bar, flat bar, forging stock, hexagon and wire.
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| America | Germany | ||
| Grade | Main Ingredient | Grade | Code |
| Gr.1 | Low oxygen | Ti1 | 3.7025 |
| Gr.2H | |||
| Gr.2 | Standard oxygen | Ti2 | 3.7035 |
| Gr.3 | Medium oxygen | Ti3 | 3.7055 |
| Gr.4 | Nitrox | Ti4 | 3.7065 |
| Gr.6 | Ti-5Al-2.5Sn | TiAl5Sn2.5 | |
| Gr.16 | Ti-(0.04~0.08%)Pd | ||
| Gr.16H | Ti-(0.04~0.08%)Pd | ||
| Gr.17 | Ti-(0.04~0.08%)Pd | ||
| Gr.7 | Ti-(0.12~0.25%)Pd | Ti1Pd | 3.7225 |
| Gr.7H | Ti-(0.12~0.25%)Pd | Ti2Pd | 3.7235 |
| Gr.11 | Ti-(0.12~0.25%)Pd | Ti3Pd | 3.7255 |
| Gr.12 | Ti-0.3Mo-0.8Ni | TiNi0.8Mo0.3 | 3.7105 |
| TiAl6Sn2Zr4Mo2Si | 3.7145 | ||
| TiAl4Mo4Sn2 | 3.7185 | ||
| Gr.32 | Ti-5Al-1Sn-1V-1Zr-1Mo | ||
| Gr.9 | Ti-3Al-2.5V | TiAl3V2.5 | 3.7195 |
| Gr.18 | Ti-3Al-2.5V-(0.04~0.08%)Pd | ||
| Gr.28 | Ti-3Al-2.5V-(0.08~0.14%)Ru | ||
| Gr.38 | Ti-4Al-2.5V-1.5Fe | ||
| TiAl6Zr5Mo0.5Si | 3.7155 | ||
| Gr.26 | Ti-(0.08~0.14%)Ru | ||
| Gr.26H | Ti-(0.08~0.14%)Ru | ||
| Gr.27 | Ti-(0.08~0.14%)Ru | ||
| Gr.13 | Ti-0.5Ni-0.05Ru | ||
| Gr.14 | Ti-0.5Ni-0.05Ru | ||
| Gr.15 | Ti-0.5Ni-0.05Ru | ||
| TiAl5Fe2.5 | 3.711 | ||
| Gr.37 | Ti-1.5Al | ||
| Products | Processing Standard | Grade | Size |
| Titanium Bar, Forging Bar & Wire (Round, Square, Rectangle and Hexagon, etc.) | ASTM B348, AMS 4928, AMS 6921, AMS 4975, AMS 4978, AMS 4966, ASTM F67, ASTM F136, ASME SB863, AWS A5.16, etc. H7/h7 tolerance is available. |
GR1, GR2, GR3,GR4, GR5, GR7, GR9, GR12, GR16, GR17, GR23, Ti-6Al-4V ELI, Ti-3-8-6-4-4, Ti-6-2-4-2, Ti-6-6-2, Ti-5-2.5, Ti-15-3-3-3, etc. |
Bar: Φ(0.315”- 24”) x Straight Length/Coil Wire: Φ(0.001”- 0.25”) x Straight Length/Coil Welding Wire: Φ(0.020”- 0.20”) x Straight Length/Coil |
| Titanium Welded Tube, Pipe | ASME SB338, ASME SB862 | GR1, GR2, GR7, GR12 | OD: (0.315”-48”) WT: (0.0197”-0.5”) Length: at random length |
| Titanium Plate, Sheet, Coil | ASME SB265, AMS 4911, AMS 4919, AMS 4914 ASTM F67, ASTM F136 |
GR1, GR2, GR3, GR4, GR5, GR7, GR9, GR12, GR16, GR17, GR23, Ti-6Al-4V ELI, Ti-6-2-4-2, Ti-15-3-3-3 |
Thickness: (0.0197”-6”) Max Width: 12 feet Max Length: 50 feet |
| Titanium Foil | ASME SB265 | GR1, GR2, GR5 | (0.001”-0.004”) x 4.8” x coil (0.004”-0.01”) x 18” x coil (0.012”-0.0158”) x 48” x coil |
We can provide customized services according to customer requirements










We also provide forging blanks and CNC precision machining services for our clients, covering industries such as energy, petrochemicals, steel, engineering machinery, plastics, prevention and control, hydraulics, healthcare, and food. Please feel free to send us drawings for inquiries.
Metalworking Services
CNC Machining
Sheet Metal Fabrication
Metal Welding
Metal Cutting
Metal Bending
Metal Punching
Metal Forging
Metal Sheet Rolling
Tube and Plate Drilling
Heavy Forging Press Capacity
Our heavy-duty forging presses support open-die forging and deformation of large-section forgings, including discs, shafts, blocks, and custom components. This capability enables us to meet the demanding forming requirements of heavy industrial applications.
Heat Treatment Capability
Heat treatment is a critical step in achieving the mechanical properties required for heavy-duty forgings. Our process capabilities meet the strength, toughness, and structural stability requirements for forged components used under demanding operating conditions.
Heavy Shaft Machining
We offer machining capabilities for large forged shafts and long cylindrical components, supporting both rough and finish machining. This capacity is suitable for stepped shafts, rotor shafts, rollers, and other heavy-duty forged shaft components.
Ring Forging Machining
Our machining facilities are capable of handling large ring-shaped forgings and circular parts that require precise turning, face machining, boring, and contour control. This capability is suitable for industrial ring blanks, heavy-duty circular parts, and machined ring forgings.
Cylindrical Forging Machining
We offer machining solutions for heavy-duty cylindrical, hollow, and tubular forgings. This capability supports the machining of sleeves, cylinders, and other thick-walled forged components used in pressure vessels, rotating systems, and general industrial applications.
Inspection & Testing
Quality control is integrated into our production process through the inspection and testing of forged and machined parts. Our capabilities help verify the dimensional accuracy, condition, and quality consistency of industrial forgings prior to delivery.
Packing & Delivery
Finished forgings are properly protected and packaged to minimize the risk of damage during storage and transportation. Our packaging methods ensure the safe domestic delivery and export shipment of machined and high-value forged components.