TA3 Industrial Titanium Rod
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TA3 Industrial Titanium Rod

TA3 Industrial Titanium Rod

1. Customization is acceptable
2. Free samples are available
3. Third-party testing and factory inspection are accepted
4. Tolerance is within 0.03mm
5. One-stop after-sales service
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Description

 Description

1. Customization is acceptable
2. Free samples are available
3. Third-party testing and factory inspection are accepted
4. Tolerance is within 0.03mm
5. One-stop after-sales service

titanium bar recipe
titanium ta3
ta3 titanium bar

 

Detailed Description

TA3 industrial titanium rod perform better than stainless steel in a variety of corrosive environments. They have low density and high strength, making them very suitable for weight reduction and highly corrosion-resistant fields. Compared with TA1 and TA2, TA3 has higher strength, so customers need to pay attention to tool wear when processing.

 

The production of TA3 industrial titanium rod also undergoes strict three-stage vacuum melting. After the titanium rods are produced into finished products, workers will test their straightness, surface defects and diameter to ensure that there are no problems with product quality. Ultrasonic and eddy current testing are used for flaw detection, and A1 level flaw detection is achieved.To further increase customer trust, we provide third-party quality inspection reports and samples.

Differences in materials

The difference between TA3 and other pure titanium products
Strength: TA1 Plasticity: TA3 Application scenarios: TA1: used in situations requiring high plasticity and low strength. TA2: suitable for general corrosion-resistant environments. TA3: used in situations requiring higher strength and corrosion resistance.

Problems and suggestions for material use

Tool wear problem:
TA3 titanium rods wear the tool more obviously during processing. The main reasons include:
Ⅰ: Poor thermal conductivity: heat is concentrated on the tool during processing, accelerating wear.
Ⅱ: High chemical activity: it is easy to react chemically with the tool material at high temperature, aggravating wear.
Ⅲ: High hardness: compared with TA1 and TA2, TA3 has higher hardness, which increases the difficulty of processing.

 

Suggestions for reducing tool wear:

Ⅰ: Select suitable tools: use carbide or coated tools.
Ⅱ: Control cutting parameters: appropriately reduce cutting speed and increase feed rate.
Ⅲ: Sufficient cooling: use coolant to reduce temperature and reduce wear.

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