Titanium Plate

Titanium Plate

Titanium sheet is a type of sheet material made of titanium alloy or pure titanium, characterized by high strength, low density, excellent corrosion resistance, and good biocompatibility. Widely used in various fields such as aerospace and ocean engineering.

Description

Shaanxi Zhongheng Weichuang Metal Materials Co., Ltd. supplies high-quality rare metals, mainly engaged in conventional processing profiles such as niobium hafnium alloy 103, tantalum, niobium, hafnium, titanium, zirconium, nickel, vanadium, and their alloys, as well as deep processing products such as boats, crucibles, sputtering targets, coating targets, machined parts, high-temperature furnace insulation screens, heating elements, furnace bodies (heating furnaces, annealing furnaces), and corrosion-resistant equipment. Our main product purity can reach up to 99.95% -99.99%, with "worry free quality and better price"! Customer service is always online, making you worry free and at ease.

 
 
Core breakthrough in production technology
Titanium plate manufacturer
01.

Wide width rolling technology


The widest domestically produced titanium plate was born: In July 2025, the Thick Plate Division successfully rolled a titanium plate with a width of 3800mm (thickness 16mm), breaking the domestic record and marking a leap in the processing capability of large-sized titanium plates.


Specialized rolling mill iteration: China National Machinery Heavy Industry Corporation has developed a 3000mm wide titanium alloy hot rolling line (to be put into operation in 2024) with a production capacity of 8000 tons per year, supporting high-end demand in aerospace.

02.

Innovation in Additive Manufacturing and Surface Treatment Processes


Yiji Group has achieved integrated 3D printing of complex titanium alloy components, shortening the research and development cycle by 50% and reducing costs by 40%, promoting the lightweight manufacturing of special vehicles.

Tiangong Corporation has developed ultrafine grained titanium alloy additive wire, with a material utilization rate of over 90%, suitable for aerospace precision components.

In the field of biomedicine, micro arc oxidation and electrolytic polishing technologies are used to enhance the surface biological activity of implants and increase bone bonding ability by 50%.

Titanium plate supplier

 

application area


Aerospace
     Weight reduction and efficiency improvement: TC4 panels account for 15% of the aircraft fuselage, increasing fuel efficiency by 10%; The fuel tank of the Long March rocket is made of titanium alloy and can withstand extreme pressure in space.
Biomedical
     Orthopedic implantation: TC4 ELI bone plate has anti fatigue strength exceeding 10 cycles, promoting bone healing.
     Dental implantation: Porous titanium plate (Ti-39Nb-6Zr) optimizes bone integration, with an implant survival rate of over 95%.
New Energy and Electronics
     Ultra thin titanium plate (≤ 0.1mm) is used as the current collector for lithium batteries, reducing internal resistance by 30%.
     The porous titanium diffusion layer of hydrogen fuel cells improves gas transmission efficiency by 20%.
Major engineering equipment
     Titanium steel composite panels are used for seawater cooling systems in nuclear power plants, with a lifespan three times that of ordinary steel.
     Titanium roofing panels (tested in Japan) can withstand volcanic acid environments for 50 years without damage.

Titanium plate, as a key strategic material in the 21st century, continues to reshape the industrial landscape with its high strength, corrosion resistance, and biocompatibility. From breakthroughs in weight reduction for aerospace titanium alloy structural components, to the long-term reliability of medical implants, and to the outstanding performance of chemical equipment against extreme environments, the application of titanium plates has penetrated into the core areas of high-end manufacturing.

Currently, China's titanium plate industry is facing a dual opportunity: on the one hand, 3D printing technology is driving the precision forming of complex titanium components (such as topology optimized aerospace titanium plates ^ 1 ^); On the other hand, green metallurgical processes (such as electrolytic purification of titanium ^ 3 ^) help reduce costs and accelerate penetration into the civilian market. In the future, with the rise of emerging demands such as ocean engineering and hydrogen energy storage and transportation, the potential application of titanium plates in deep-sea pressure resistant cabins, liquid hydrogen containers and other scenarios urgently needs to be released.

It should be noted that the large-scale application of titanium plates is still limited by raw material prices and processing difficulties. Through collaborative innovation between industry, academia, and research (such as developing titanium steel composite plate technology ^ 5 ^), it may become a key path to balance performance and cost. The evolution of titanium plates will ultimately write a win-win chapter for materials science and industrial upgrading.

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