Select premium-grade titanium raw materials optimized for structural integrity and corrosion resistance
High-thickness structural plates engineered for extreme pressure vessels and marine structural applications.
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High-precision drawn straight wires for welding, medical implants, and specialized electronics.
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Ultrathin high-performance foil engineered for chemical diaphragms and aerospace acoustic insulation.
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Ti-0.3Mo-0.8Ni alloy rods optimized for superior crevice corrosion prevention in hot chlorides.
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Continuous rolled sheets ideal for heat exchangers, stamping, and plate-frame thermal equipment.
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Grade 9 titanium foil exhibiting exceptional strength-to-weight ratio for hydraulic and aerospace tubing.
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Precision-profiled bar shapes designed for CNC machining, fasteners, and heavy-duty structural parts.
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Palladium-alloyed titanium rods demonstrating unmatched resilience in severe reducing acid environments.
Analyze GR7 RodsIn modern engineering, titanium has transitioned from a specialized aerospace material to an indispensable asset across chemical processing, deep-sea exploration, medical devices, and energy generation. The performance of industrial titanium rods relies on strict control over alloy microstructure, chemical purity, and manufacturing tolerances.
"The mechanical performance of titanium alloys depends heavily on interstitial elements (oxygen, nitrogen, hydrogen, and carbon) and grain morphology. Maintaining precise thermal and mechanical processing paths ensures structural parts perform reliably under extreme stress."
Commercially Pure (CP) titanium grades (Grades 1 through 4) offer varying balances of ductility and strength, characterized by excellent corrosion resistance due to a stable, self-healing surface oxide layer ($TiO_2$). In contrast, alpha-beta alloys like Grade 5 (Ti-6Al-4V) provide higher tensile strength, making them suitable for high-stress environments. Special grades like Grade 7 (Ti-0.2Pd) and Grade 12 (Ti-0.3Mo-0.8Ni) are engineered to resist localized crevice corrosion and reducing acids.
Selecting the correct grade is crucial for engineering efficiency and application longevity. The table below outlines the mechanical properties and standards for common industrial titanium rod alloys:
| Grade (ASTM) | Composition Classification | Tensile Strength (Min, MPa) | Yield Strength (0.2% Offset, MPa) | Primary Industrial Application |
|---|---|---|---|---|
| Grade 1 | Unalloyed (CP) | 240 | 170 - 310 | Explosion-bonded plates, highly ductile chemical equipment cladding. |
| Grade 2 | Unalloyed (CP) Standard | 345 | 275 - 450 | Heat exchangers, piping systems, desalination reactors, anode baskets. |
| Grade 5 (Ti-6Al-4V) | Alpha-Beta Alloy | 895 | 828 | Aerospace components, subsea pressure casings, automotive fasteners. |
| Grade 7 (Ti-0.2Pd) | CP + Palladium Additive | 345 | 275 - 450 | Aggressive chemical reactors handling hydrochloric, sulfuric, or organic acids. |
| Grade 9 (Ti-3Al-2.5V) | Near-Alpha Alloy | 620 | 483 | High-pressure hydraulic tubes, performance bicycle frames, motorsport shafts. |
| Grade 12 (Ti-Mo-Ni) | Near-CP Alloy | 483 | 345 | Elevated temperature chemical processing plants, chlorine-alkali equipment. |
B2B buyers sourcing raw materials for oil and gas, marine engineering, or chemical plants must balance supply chain risks, regulatory compliance, and raw material quality. High-integrity projects require compliance with standards like ASTM B348 (standard specification for titanium and titanium alloy bars and billets), ASME SB348, AMS 4928 (aerospace criteria), and ISO 5832 (surgical implant applications).
We provide full heat traceability back to the titanium sponge source, supported by EN 10204 3.1 Material Test Reports (MTR).
Our processing center delivers h7, h8, h9, and h10 ISO tolerances using advanced centerless grinding equipment.
We conduct 100% ultrasonic testing (UT) and penetrant testing (PT) on all rods to detect internal defects and surface flaws.
Procurement strategies often focus on total cost of ownership. Sourcing directly from certified manufacturers allows buyers to customize rod dimensions, surface finishes (such as centerless ground, polished, or lathe-machined), and physical characteristics while maintaining stable lead times.
Established manufacturing expertise
Annual titanium alloy output capacity
Ready-to-ship spot delivery stock
National patents registered
China's advanced manufacturing infrastructure has updated its metallurgical production capability. At ProX Metal, our "Factory 4.0" approach combines automated vacuum arc remelting (VAR) furnaces, precision radial forging machines, automated rolling lines, and digital monitoring systems.
This level of integration supports consistent quality control. VAR melting, conducted under a high vacuum, reduces chemical segregation and volatile impurities. Automatic monitoring of forging parameters ensures uniform thermal-mechanical deformation, resulting in consistent grain size distribution and mechanical performance across the entire rod.
"By implementing automated quality control systems, ProX Metal has shortened lead times for custom titanium alloy rods by 35% compared to conventional mills, while maintaining dimensional deviations within micrometer ranges."
Additionally, our integrated supply chain mitigates global logistics risks. Sourcing titanium sponge from local key producers allows us to hedge against raw material price fluctuations, providing stable pricing structures for long-term contract partners.
A Leading Force in Titanium Innovation and Material Production
Founded in 2001, ProX Metal is a high-tech enterprise specializing in the development, production, and servicing of pure and alloy titanium materials. As a primary manufacturer of raw titanium mill products, we focus on providing cost-effective, stable, and high-end titanium products for the chemical, oil and gas, marine, and electronics fields. We are ISO 9001:2015 certified and hold 14 national patents.
Technical parameters for sheets, rods, and tubes
In chemical processing plants, equipment is exposed to chlorine gas, chlorate solutions, and wet chlorine. Under these reducing acid and high-chloride conditions, steel and nickel alloys can corrode rapidly. Our GR7 (Ti-0.2Pd) titanium rods are machined into custom fasteners, flanges, and stirrer shafts to ensure structural integrity and prevent stress corrosion cracking. Sourcing titanium alloy rods with balanced grain sizes prevents premature component failure, reducing maintenance downtime.
Marine engineering projects require materials that can withstand hydrostatic pressure and marine corrosion. Ti-6Al-4V Grade 5 titanium rods provide a high strength-to-weight ratio, allowing engineers to design deep-sea instrumentation housings, subsea valves, and marine acoustic arrays. This reduces weight compared to traditional steel alloys while maintaining pressure resistance.
Sourcing titanium seamless tubes and supporting rods (typically Grade 2 or Grade 12) is common for geothermal energy extraction and industrial wastewater treatment. In these installations, geothermal fluids contain hydrogen sulfide ($H_2S$) and chloride salts, which corrode standard stainless steel. Titanium forms a stable passivating film that prevents pitting corrosion, supporting continuous heat transfer efficiency.
Supporting critical engineering operations across demanding environments
Resistant to aggressive media like sulfuric acid, nitric acid, and chlorine compounds, ensuring process safety.
High-strength alloys optimized for subsea casings, control lines, and downhole drilling tools.
Corrosion-proof components for ship propulsion shafts, bilge systems, and subsea structures.
High thermal conductivity and pitting resistance for multi-stage flash (MSF) evaporator systems.
Feedback from long-term B2B procurement partners
"They provided a prompt update on arranging the shipment. We are very grateful that they were able to solve the problem quickly after sales, and we are confident that we will continue our collaboration for a long time."
Industrial Procurement Manager South Korea"We've been working with this supplier for 10 years, and we can't speak highly enough of them. The quality of their titanium sheets and strips is always consistent, and they always meet our production needs."
Senior Material Engineer United Kingdom"Their logistics are super fast, so they can deliver on time even for big orders. This helps us avoid production delays, which is a huge help."
Supply Chain Director Turkey"Their comprehensive inventory meets our diverse material grade requirements, making them highly accommodating for distributors like us. They provide an efficient and patient service for sample orders."
Commercial Metal Distributor MexicoInsights into industrial titanium design, trends, and processing advice
Technical answers to key engineering and procurement questions
Connect with our metallurgical engineering team. Whether you need custom-diameter Grade 5 bars, corrosion-resistant Grade 7 rods, or high-volume Grade 2 stock, we can assist with technical specifications and pricing.
Request Technical QuotationEngineered products for specific industrial operations
Alpha-alloy plate with high oxidation resistance at elevated service temperatures.
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Custom-machined titanium parts designed for specific industrial blueprints and environments.
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Precision-wound coiled wires suitable for high-speed industrial spring manufacturing.
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Hollow center round bars manufactured for specialized engineering and medical applications.
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High-purity commercially pure rods engineered to resist chemical corrosion.
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Slit-to-width titanium strips designed for electronic and battery-cell production lines.
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Seamless extrusion tubes designed for high-pressure fluid transfer in chemical reactors.
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High-strength alloy foil engineered for aerospace diaphragm and honeycomb core structures.
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