
Grade 5 Custom Titanium Rod
Name:Grade 5 Custom Titanium Rod
Implementation standards: ASTM F67, ASTM F136, AMS4928
Surface quality: polished rod, black leather rod, polished rod
Other customizable grades: GR-1,GR-2 GR-3,GR-4,GR-5 GR-7,GR-12 GR-23
Titanium rod manufacturing process: smelting → squaring → grinding → forging → rolling → polishing to polishing
Advantages: healthy titanium/environmentally friendly titanium alloy
Product Introduction
Product description:
Grade 5 Custom Titanium Rods have good physical and chemical properties, low thickness, light weight, high strength, and great consumption obstruction. They have great mechanical properties and good corrosion resistance. Titanium has a higher density than aluminum does. Lower than steel, nickel, and copper, but stronger than aluminum alloy and high-strength alloy steel. Titanium poles are generally utilized in synthetic hardware, apparatus and gear, electroplating, desalination, transport parts, and hydrometallurgy. Electroplating, environmental protection, etc. Titanium's erosion opposition is multiple times that of normal hardened steel, and titanium is a metal with low dismissal by the human body.
Mechanical properties and chemical composition content:
|
chemical composition |
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|
Trademark |
Impurities are not greater than |
|||||||
|
G.5 |
Titanium (Ti) |
Iron (Fe) |
Carbon (C) |
Nitrogen (N) |
Hydrogen (H) |
Oxygen (O) |
Aluminum (Al) |
Vanadium (V) |
|
margin |
≤0.30 |
≤0.10 |
≤0.05 |
≤0.015 |
≤0.20 |
5.5~6.75 |
3.5~4.5 |
|
|
Grade 5 Custom Titanium Rod mechanical properties |
|
|
tensile strength |
σb/MPa≥895 |
|
Specify residual elongation stress |
σr0.2/MPa≥825 |
|
Elongation |
δ5(%)≥10 |
|
rate of reduction in area |
ψ(%)≥25 |
|
Ti6Al4v titanium alloy density: 4.5 (g/cm3) |
Ti-6Al-4v working temperature -100~550 (℃) |
The processing flow of titanium alloy rods from titanium sponge to titanium blank:
Press the electrode and press the titanium sponge through a press to form a dense titanium sponge electrode
Vacuum casting: The above-mentioned sponge titanium pressed block electrode is vacuum casted three times under the conditions of 1700~1800℃ and -103Pa
Blank opening: At 1000°C, the blank is opened by a hydraulic press, and finally pressed into a square blank
For the first rolling, at 970~980℃, a rolling mill is used to preliminarily roll it into a cylindrical blank
For the second rolling, use a rolling mill to roll into a billet at 950°C
category
α Titanium alloy
It can not be strengthened by heat treatment, can only be strengthened by solid solution, and the strength at room temperature is low, but the strength and creep limit at high temperature (500 ~ 600°c) are the highest. And the organization is stable, oxidation resistance and weldability is good, corrosion resistance and cutting processing is good, stamping ability is low.
α+β type titanium alloy
It has good comprehensive mechanical properties, most of which can be strengthened by heat treatment, forging, stamping and welding, high strength at room temperature, good heat resistance in the temperature range of 150 ~ 500℃, good low temperature toughness, good corrosion resistance, of which GR5 is the most widely used titanium alloy material. Aerospace, industrial chemicals, Marine shipbuilding, medical, etc.
Titanium product production diagram:

Product parameters
|
Name |
Gr5 Custom Titanium Rod |
|
Implementation standards |
ASTM F67, ASTM F136, AMS4928 |
|
Surface quality |
polished rod, black leather rod, polished rod |
|
Other customizable grades |
GR-1,GR-2 GR-3,GR-4,GR-5 GR-7,GR-12 GR-23 |
|
manufacturing process |
smelting →squaring →grinding →forging →rolling → polishing to polishing |
|
Advantages |
healthy titanium/environmentally friendly titanium alloy |
Advantages
Grade 5 Custom Titanium Rods are made out of aluminum and vanadium, which invigorates it prevalent mechanical properties and a high weight proportion. Contrasted with other titanium amalgams, gr-5 titanium combination has higher rigidity, yield strength and hardness while still maintaining excellent corrosion resistance and biocompatibility. Because of this, it is an excellent material for use in medical implants and other applications that come into contact with human tissue or in corrosive environments. Another benefit is its low warm conductivity, which makes it a reasonable material for high-temperature applications, like fly motors. Additionally, it is simple to fabricate into a variety of shapes thanks to its good weldability and formability.
product picture



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