
Gr5 Titanium Alloy Round Rod
Name: Gr5 titanium alloy round rod
Material: Gr5 titanium alloy
Implementation standard: ASTM B348 AMS 4928 ASTM F136 etc.
Diameter range: 5mm-300mm
Length range: 100-6000 ( mm )
Processing technology: forging or rolling heat treatment
Surface treatment: pickling or polishing anodizing sandblasting
Packaging: plastic bags, wooden boxes, iron drums
Product Introduction
Gr 5 titanium alloy round rod is a high-performance material composed of 6% aluminum and 4% vanadium. It is a common titanium alloy with excellent strength, corrosion resistance and durability . It is an excellent material for high stress applications due to its excellent mechanical properties, high corrosion resistance and low density. It can be used to manufacture aircraft parts, rocket engine parts, ship hardware, medical equipment / implants, and can also be used in oil drilling platforms , chemical industry and other applications requiring high strength and corrosion resistance.
Our Gr5 titanium cylindrical rods are available in aGr5 round rod chemical composition and mechanical properties variety of diameters and lengths, ranging from 6mm to 300mm in diameter. Up to 6 meters in length, customized according to the requirements of your project . Our products comply with international standards ASTM F136, ASTM F67, ASTM B348 and AMS 4928 include international implementation standards.
Gr5 round rod chemical composition and mechanical properties
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Chemical composition of GR5 |
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Trademark |
Impurities are not greater than |
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GR5 |
Titanium (Ti) |
Iron (Fe) |
Carbon(C) |
Nitrogen(N) |
Hydrogen(H) |
Oxygen(O) |
Aluminum (AI) |
Vanadium(V) |
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margin |
≤0.30 |
≤0.10 |
≤0.05 |
≤0.015 |
≤0.20 |
5.5~6.75 |
3.5~4.5 |
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GR5 titanium alloy mechanical properties |
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tensile strength |
o b/MPa≥895 |
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Specify residual elongation stress |
or0.2/MPa≥825 |
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Elongation |
85(%)≥10 |
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rate of reduction in area |
(%)≥25 |
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Ti-6Al-4V titanium alloy density: 4.5(g/cm3) |
Ti-6A1-4V working temperature -100~550(℃) |
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The following are some characteristics of titanium alloy Gr5 round rods
Strength: It has high strength and is the strongest among conventional structural titanium alloys. This makes it popular in some applications that require high strength and lightweight.
Lightweight: Titanium alloys have a relatively low density, similar to aluminum, so G R 5 Round Rods are lighter than many other metals for the same volume.
Corrosion resistance: Gr5 titanium alloy has good corrosion resistance, especially to seawater and chloride ion corrosion.
High temperature resistance: This alloy has good stability in high temperature environments and can work in a higher temperature range.
Gr5 titanium round rod production process
Sponge titanium and alloying elements such as aluminum and vanadium are usually used to make Gr5 titanium alloy round bars. Titanium blocks are first melted in an electric arc furnace and then refined using other methods such as vacuum arc remelting or electron beam remelting to remove impurities. Alloying elements are added to liquid titanium to form an ideal alloy solution
1.Ingot casting
After melting, it is cast into large ingots using a vacuum consumable terminal method or a double vacuum consumable anode method. In the vacuum consumable terminal method, a consumable cathode made of refined titanium blocks is melted and hardened in a water-cooled copper mold to form an ingot. In the double vacuum consumable terminal method, the refined titanium blocks are transported to the next vacuum chamber and melted again to make larger ingots.
2.Homogenization
The ingot is then homogenized to ensure the consistency of the material's microstructure and structure. The titanium ingot is heated to a temperature between 900°C and 1200°C, maintained at this temperature for several hours, and then rapidly cooled to room temperature.
3.Hot Working
After homogenization, the titanium ingot is hot worked into a round shape using a hydraulic press or a press. This process involves applying tremendous compressive forces to the titanium ingot, causing it to deform and change shape. The bar is repeatedly heated and worked until it reaches the desired size.
4.Heat Treatment
After the hot working process, the bar is heat treated to improve its mechanical properties. The bar is usually heated to a temperature between 800°C and 900°C and held at this temperature for several hours. This process, called tempering, removes any residual stresses that may have developed during the hot working of the bar.
5.Classification
Finally, the titanium ingot is cut into the required lengths and any surface defects are removed using mechanical or chemical methods such as crushing or washing. The bar is then evaluated to ensure that it meets the required layered elasticity and material details.
Titanium alloy round rod GR5 product application scenarios:
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Round Bar Figure



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