Gr5 Titanium Rod

Gr5 Titanium Rod

Titanium alloys are widely used as lightweight structural components in aerospace materials due to their high specific strength, excellent corrosion resistance and high-temperature resistance. With the development of the aviation industry, the utilization rate of titanium alloys has significantly increased in recent years and they have been used as components of aircraft engine compressor blades, compressor discs, propulsion systems and aircraft springs, etc.
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Description
Titanium rod production standard and grade

Titanium rod standard: ASTM F67, AMS4928, AMS4930, ASME SB348, ASTM F136, ISO5832-2, ISO5832-3, AMS 2631b, AMS 4917, AMS 4959, AMS 6926, MIL-F-83142, MIL-T-9046, MIL-T-9047, UNS R58010, etc.

Titanium rod grade: GR1, GR2, GR3, GR4, Gr.5, Gr.7, GR6, GR9, GR12, TB5, GR23, GR5, BT1-0, BT-20, OT4-B, BT6, OT4-1, BT6C, TP270, TP340, TAP6400, TAP3250, etc Other grades can be customized.

Titanium rod grade: GR1, GR2, GR3, GR4, Gr.5, Gr.7, GR6, GR9, GR11, GR12, TB5, GR23, GR5, BT1-00, BT-20, Til, 2TAl, OT4-B, BT6, OT4-1, BT6C, TP270, TP340, TAP6400, TAP3250 and the rest.

Titanium rod production specifications: titanium rod diameter 3-diameter 100
                                                        The length is 10MM to 10000MM
Surface treatment: bright rod, black rod, can be cut according to customer requirements of different specifications.

Titanium rod part of the picture
Titanium alloy rod
gr1 titanium rod
gr12 titanium rod
Titanium rod manufacturer

Our products have undergone strict heat treatment, significantly enhancing their quality.

I. Heat Treatment Processes of Titanium Alloys

Titanium alloys often require heat treatment during processing. Common heat treatment processes include stress relief annealing, full annealing, solution treatment, and aging treatment.

1. Stress Relief Annealing

The main purpose of this process is to eliminate internal stresses generated during cold working, cold deformation, and welding. Stress relief annealing is often applied after hot forging, casting, cold deformation processing, cutting, machining, and welding. The selection of annealing temperature and time is crucial for stress relief annealing. For heat-treatable titanium alloys, annealing is carried out at the recrystallization temperature to relieve stress through recovery.

2. Full Annealing

The purpose of this process is to obtain a recrystallized structure and improve material plasticity, thus it is also called recrystallization annealing. Most α titanium alloys and α+β dual-phase titanium alloys are used in the fully annealed state. For α titanium alloys, the annealing temperature is usually 120 to 200°C below the phase transformation point. If the temperature is too high, the grains will coarsen, and if it is too low, the recrystallization will be incomplete, resulting in insufficient plasticity. Since the cooling rate has little effect on the microstructure and properties of α titanium alloys, air cooling is often used. For near-α titanium alloys and α+β dual-phase titanium alloys, in addition to recrystallization, the α and β phases also change during the annealing process, making the determination of annealing temperature and cooling method more complex. For metastable β titanium alloys, full annealing is usually a solution treatment, with the annealing temperature generally 80 to 100°C above the α+β/β phase transformation point.

3. Solution Treatment and Aging Treatment

The purpose of solution treatment is to obtain metastable phases that can be strengthened by aging, such as α' martensite, α" martensite, or metastable β phase. The fine equilibrium phases produced by the decomposition of metastable phases generate precipitation strengthening effects, thereby increasing the hardness and strength of the material. The solution treatment temperature is usually 40 to 100°C below the α+β/β phase transformation point to obtain primary α and β phases and avoid excessive coarsening of β grains. After solution treatment, cooling is typically done by water quenching or oil quenching, with water quenching being more common. Aging strengthening is more significant in titanium alloys with high β stabilizing element content, but it is less effective in near-α alloys and α+β dual-phase titanium alloys with low β stabilizing element content.

 

 

Company qualification and company team
Titanium alloy plate manufacturer
Titanium plate source manufacturers
Titanium plate manufacturer
Titanium plate supplier
Titanium rod source manufacturers
Titanium alloy rod manufacturers
Titanium alloy rod manufacturers
GR5 titanium rod manufacturer
Company introduction

The company is specialized in titanium and titanium alloy, insoluble metal processing, production, sales, one of the integrated enterprises, titanium plate, titanium rod, titanium forging annual inventory of about 500 tons, complete specifications, welcome friends from all walks of life to negotiate cooperation.

F A Q 


In addition, due to quality problems, we accept returns or exchanges.

Q: Are you a manufacturer or a trading company?
A: We are a professional gr5 titanium rod manufacturer.

Q: What are the delivery terms?
1. Payment method: Telegraphic transfer, 30% deposit, balance paid before delivery.
2. Moq: 100kg, or customized according to customer requirements.
3. Transportation: Express (DHL, TNT, FedEx), air, sea, train.
Q: What about the discount?
A: As a professional gr5 titanium rod manufacturer and exporter, we provide technical support for all questions and queries.

 

 

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