Inventory Details

Gr.5® Ti-6Al|-4V

Main Ingredients

Titanium (Ti)

Remaining

Nitrogen (N)

≤0.05

Carbon (C)

≤0.08

Hydrogen (H)

≤0.015

Iron (Fe)

≤0.40

Oxygen (O)

≤0.20

Aluminum (Al)

5.5-6.75

Vanadium (V)

3.5-4.5

Product features

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  • Product Origin

    Baoti Group

  • Execution Standards

    Plate: AMS 4911H, MIL-T-9046J, ASTM B265, ASME SB265, DMS1592F, GB/T 3621

  • Physical Properties

    Low deformation coefficient: This is a significant characteristic of TC4 titanium alloy during machining as the deformation coefficient is less than or close to 1. The sliding friction path of the chip on the rake face is greatly increased, which accelerates tool wear.

  • High cutting temperature

    Due to the very low thermal conductivity of titanium alloy (only 1/5 to 1/7 of that of 45# steel), and the extremely short contact length between the chip and the rake face, the heat generated during cutting is not easily dissipated. As a result, it becomes concentrated in a small region near the cutting zone and cutting edge, leading to exceptionally high cutting temperatures. Under the same cutting conditions, the cutting temperature can be more than twice that when cutting 45# steel.

  • High cutting force per unit area

    The main cutting force is about 20% smaller than when cutting steel. However, due to the extremely short contact length between the chip and the rake face, the cutting force per unit contact area increases significantly, which can easily lead to chipping.

  • Mechanical Properties

    Tensile strength: σb ≥ 895 MPa

    Yield strength: σb ≥ 828 MPa

    Elongation: δ ≥ 10%

  • Corrosion Resistance

    Although titanium alloys are highly reactive, with a low equilibrium potential and a strong thermodynamic tendency to corrode in various media, they are actually very stable in many environments. Titanium demonstrates excellent corrosion resistance in oxidizing, neutral, and mildly reducing conditions. This stability is largely due to its strong affinity for oxygen, which allows a dense, strongly adherent, and highly inert oxide film to form on the surface of the metal when exposed to air or oxygen containing media. This protective film shields the underlying metal from corrosion, and even if it is damaged by mechanical wear, it can quickly regenerate, maintaining its corrosion resistance.

  • Application Fields

    Aerospace, petroleum drilling, chemical equipment, sporting goods, marine ships, etc.

  • Matching Welding Material

    ERTi-5

  • Supply Forms

    Plates, strips, bars, wires, forgings, polished rods, welding materials, flanges, etc. Custom processing according to drawings is available.

Our Partners

Youser

Aerospace and Aviation

Our materials jointly fend off corrosion from high-altitude moisture, fuel residues, and extreme atmospheric conditions, endure intense temperatures and extreme pressure changes, fit both core operations and routine equipment needs, ensuring safe flight operations, minimal maintenance demands, and long-lasting reliability for commercial jets, military aircraft, and spacecraft.

Marine Engineering

Our materials collectively resist corrosion from saltwater, seawater mist, and marine organisms, withstand extreme temperatures and pressure fluctuations, suit both critical operations and general equipment needs, ensuring safe marine operations, low-maintenance costs, and long-lasting industrial performance in harsh ocean environments.

Petrochemical industry

Our materials collectively resist corrosion from harsh substances like acids and chlorides, and withstand high temperatures in demanding processes. These materials suit both critical operations and general equipment needs to ensure safe, low-maintenance, and long-lasting industrial operations.

Automotive

Our materials collectively resist corrosion from road salts, moisture, and engine fluids, withstand high temperatures in powertrain and exhaust systems, suit both critical operations and general equipment needs, ensuring safe vehicle performance, low-maintenance requirements, and long-lasting durability under daily driving and harsh road conditions.

Biopharmaceuticals

Our materials collectively resist corrosion from harsh bioprocess fluids, withstand stable temperatures in precise production processes, suit both critical operations and general equipment needs, ensure safe drug production, low-maintenance facility running, and long-lasting industrial operations that meet strict regulatory standards.

Construction & Infrastructure

Our materials jointly fend off corrosion caused by rainfall, dampness, and urban contaminants—key for withstanding outdoor exposure—bear heavy weights and harsh weather, fit both vital applications and everyday equipment uses, guaranteeing safe infrastructure operation, reduced upkeep expenses, and enduring structural reliability for public and commercial developments.

Electronics

Our materials jointly resist corrosion from moisture, dust, and chemical coolants, endure stable temperatures in high-heat components, fit both core operations and routine equipment needs, ensuring reliable electronic performance, reduced maintenance efforts, and long-lasting durability for consumer gadgets, industrial controls, and telecom hardware.

Energy Industry

Our materials jointly ward off corrosion from fuel byproducts, high-pressure fluids, and environmental elements, endure extreme temperatures in power generation and transmission, fit both core operations (oil/gas well casings, renewable energy hardware) and routine equipment needs, ensuring safe energy production/transmission, cut maintenance costs, and long-term reliability across fossil fuel and clean energy sectors.

Environmental industry

Our materials collectively resist corrosion from industrial waste, acidic/alkaline effluents, and chemical treatments, withstand temperature variations in waste processing and water treatment systems, suit both critical operations and general equipment needs, ensuring safe environmental remediation, low-maintenance facility upkeep, and long-lasting performance in waste management and sustainability-focused processes.

Medical

Our materials collectively resist corrosion from sterilizing agents and bodily fluids, maintain structural stability in precision medical devices, suit both critical operations and general equipment needs, ensure safe patient care, low-maintenance device upkeep, and long-lasting performance that meets strict medical regulatory standards.

Aerospace and Aviation
Marine Engineering
Petrochemical industry
Automotive
Biopharmaceuticals
Construction & Infrastructure
Electronics
Energy Industry
Environmental industry
Medical
Aerospace and aviation
Marine engineering
Petrochemical industry
Automotive
Bipharmaceuticals
Construction & infrastructure
Electronics
Energy industry
Environmental industry
Medical

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