China Suppliers Factory: Premium Acid-Resistant GR7 Titanium Coils for High-End Chemical Reactors
Titanium Coils
Grades & Adaptability
Our precision-rolled titanium coils are engineered for continuous processing adaptability, covering a diverse range of grades to serve high-end industries—including commercially pure (GR1, GR2, GR4), alloyed (GR5 Ti-6Al-4V, GR7 Ti-Pd, GR9 Ti-3Al-2.5V), and medical-grade (Ti-6Al-4V ELI). GR1/GR2 offer exceptional ductility and corrosion resistance, ideal for roll-forming into lightweight, corrosion-prone components; GR5 delivers a standout strength-to-weight ratio (tensile strength up to 860MPa) for structural parts requiring both rigidity and formability; GR7’s palladium addition enhances resistance to reducing acids, suited for aggressive chemical processing.
Specifications & Processing
We provide flexible roll material-specific specifications: thickness ranges from 0.15mm (ultra-thin for precision stamping) to 6mm, width from 500mm to 2000mm, and maximum coil weight up to 5 tons, with custom slit widths available for automated production lines. All coils undergo specialized processing—precision cold rolling with tension control, continuous annealing in protective atmospheres, and optional continuous passivation—to ensure uniform thickness tolerance (±0.01mm for thin gauges) and consistent mechanical properties. Surface finishes include mill-finished, pickled, or polished, optimizing compatibility with downstream processes like welding, stamping, or coating.
Advantages & Applications
Leveraging titanium’s inherent advantages (low density 4.51g/cm³, seawater/chlorine resistance, biocompatibility) plus roll material-specific benefits (efficient roll-to-roll manufacturing, minimal material waste), these coils excel in aerospace (aircraft skin rolls, engine ducting), medical (implantable device blanks via continuous stamping), chemical (Continuous molding pipe lining), marine (offshore structure cladding), and electronics (heat exchanger fins). Compliant with ASTM B265, ASME SB265, and ISO 5832, each batch undergoes rigorous testing—ultrasonic inspection, tensile/elongation analysis, and corrosion trials. We offer bulk supply, just-in-time delivery, and technical support for global clients needing high-performance, process-efficient titanium roll material.
Product parameters
| Application | Industrial | Width | 10-1800mm |
| Length | random | Grade | Gr.1 Gr.2 Gr.3 Gr.4 Gr5 etc |
| Ti (Min) | 99.99 | Place of Origin | Shandong, China (Mainland) |
| Brand Name | TG | Model Number | Gr.1 Gr.2 Gr.3 Gr.4 Gr5 etc |
| Product Name | Titanium Coil | Surface | Polished |
| Shape | Coil |
Packing And Shipping
Frequently Asked Questions
What grades of titanium coils do you supply?
We offer a wide range of titanium coil grades, including commercially pure titanium (GR1, GR2, GR4), alloyed titanium (GR5 Ti-6Al-4V, GR7 Ti-Pd, GR9 Ti-3Al-2.5V), and medical-grade titanium (Ti-6Al-4V ELI) to serve diverse high-end industrial applications.
What are the dimensions and weight specifications of your coils?
Our titanium coils feature a thickness range from 0.15mm to 6mm, a width range from 500mm to 2000mm (with custom slit widths available), and a maximum coil weight of up to 5 tons, supporting automated production lines.
Which industries commonly use these titanium coils?
These coils are widely used in aerospace (aircraft skins, engine ducting), medical (implantable devices), chemical processing (pipe lining), marine engineering (offshore cladding), and electronics (heat exchanger fins) due to their low density, corrosion resistance, and biocompatibility.
What quality standards and testing do your titanium coils comply with?
Our products comply with international standards including ASTM B265, ASME SB265, and ISO 5832. Each batch undergoes strict quality control testing, such as ultrasonic inspections, tensile/elongation analysis, and corrosion resistance trials.
What surface finishes are available for the titanium coils?
We offer mill-finished, pickled, and polished surface options. These finishes are designed to optimize compatibility with downstream manufacturing processes like welding, stamping, or coating.




















