What is the factory hardness of titanium plate Grade 2?

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The factory hardness of the titanium plate Grade 2 is HV 120-180. It is both lightweight and impact-resistant, high temperature resistant up to 450°C, and highly corrosion-resistant. It is an ideal material for high-end fields such as aerospace and the chemical industry.

ASTM B265 Grade 2 Titanium Plate

In the field of high-end materials, the hardness of the titanium plate Grade 2 has become an indispensable material choice in many industrial fields with its excellent performance and broad application prospects. This product strictly follows the standards ASTM B265 and ASME SB265 to ensure that each titanium plate meets the most stringent quality control requirements and provides solid guarantees for high-demand engineering applications.

In terms of chemical composition, Grade 2 titanium plate is rich in a stable α-phase structure, and its composition is mainly Ti-Fe-C. By controlling the content of iron (Fe) and the trace addition of carbon (C), the corrosion resistance and welding performance of the material are enhanced. In particular, its low oxygen content significantly improves the purity and corrosion resistance of the material and effectively resists stress corrosion cracking in chloride environments.

In terms of performance, the hardness of the titanium plate Grade 2 in the range of HV 120-180 shows good comprehensive mechanical properties. This not only means that it can effectively resist external impact and deformation while maintaining its lightweight characteristics, but also provides great convenience for processing and installation. In addition, its excellent heat resistance can withstand short-term use temperatures up to 450°C, and its excellent toughness at low temperatures makes it extraordinary in harsh environments such as aerospace, marine engineering, chemical equipment, and implantation.

Overall, the hardness of the titanium plate Grade 2 has become an ideal choice for many high-end application fields due to its strict implementation standards, excellent chemical composition, and excellent mechanical and corrosion resistance. It not only meets the needs of high precision and long life, but also reflects the concern for environmental friendliness and sustainability. It is one of the indispensable key materials in the future development of science and technology.

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