Products Parameters
| Ti | 68-72 | % min. |
| Al | 5.00 | % max. |
| V | 3.00 | % max. |
| O2 | 2.00 | % max. |
| C | 0.15 | % max. |
| S | 0.02 | % max. |
| P | 0.02 | % max. |
| Si | 0.50 | % max. |
| N | 0.50 | % max. |
| Sn | 0.50 | % max. |
| Ni | 0.50 | % max. |
| Cr | 0.50 | % max. |
| Pb | 0.010 | % max. |
| Bi | 0.010 | % max. |
Titanium Ferro specifications: 30/40/70 silver gray, 10-80mm Natural Block,, or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)

Products Description
Ferrotitanium is an alloy of titanium and iron. According to national standards and relevant regulations, the chemical composition of ferrotitanium mainly includes titanium (Ti) and iron (Fe). For ferrotitanium 30, its titanium content is usually within a certain range, such as 25.0%~35.0% (may vary according to different grades), and the iron content is adjusted accordingly to ensure the overall performance and use of the alloy. In addition, ferrotitanium may also contain a certain amount of other impurity elements, such as oxygen, nitrogen, carbon, etc., but the content of these impurity elements is usually strictly controlled to ensure the quality of ferrotitanium.

The production process of ferrotitanium mainly includes scrap titanium remelting method and titanium concentrate metal thermal reduction method. The scrap titanium remelting method is to mix scrap titanium and scrap steel that meet the chemical composition in a medium frequency furnace, and generally produces high-quality ferrotitanium. The titanium concentrate metal thermal reduction method uses metal aluminum powder to react with titanium concentrate to reduce and produce ferrotitanium alloy. This is the standard production process for producing medium and low ferrotitanium alloys such as ferrotitanium 30.

With the trend of lightweight automobiles, the application prospects of titanium iron 30 are broad. It can be used to manufacture automobile parts such as frames, suspension systems, etc., which helps to reduce the weight of the car and improve fuel efficiency and driving stability. Titanium iron 30 performs well in a variety of corrosive environments and is an ideal material for marine engineering and chemical industries. It can be used to manufacture offshore platforms, chemical equipment, pipelines, etc., and can withstand corrosion from harsh marine environments and chemical media. Titanium iron 30 has good biocompatibility, is harmless to the human body and is easy to process, so it is also widely used in the medical field. It can be used to manufacture medical devices such as artificial joints and dental implants to meet the demand for high-performance materials in the medical field.

With the recovery of the global economy and the rapid development of emerging industries, especially the rapid growth of aerospace, new energy vehicles and other industries, the demand for high-quality ferrotitanium has increased dramatically. The ferrotitanium market is facing unprecedented development opportunities and is expected to maintain steady growth in the next few years. In summary, ferrotitanium 30, as a strategic metal alloy with excellent performance, plays an irreplaceable role in many fields. With the continuous advancement of technology and the continuous expansion of the market, the application prospects of ferrotitanium 30 will be broader.
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