Customization: | Available |
---|---|
Shape: | Round |
Standard: | ASTM B 348, ASME Sb348, DIN 17862, ASTM F67, ASTM 265 |
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Material | Titanium rod and bar Grade 5 Ti6Al4V |
Standard | ASTM B348, ASTM SB348, AMS 4921, AMS 4902 |
Dimensions | EN, ASTM, JIS, ASME, BS, AISI |
Diameter Range | 0.125″ - 14″ (3.175mm - 355.6mm), custom |
Length Range | Up to 240″ (6096mm), custom |
Finish | Cold (bright) drawn, centreless ground, hot rolled, smooth turned, peeled, slit rolled edge, hot rolled annealed, Rough Turned, Bright, Polish, Grinding, Centreless Ground & Black |
Surface Finish | Cold drawn, Centerless Ground, Polished, Or Rough Turned, Black, NO.4 Finish, BA Finish, Matt Finish, etc. |
Condition | Hardened & tempered, annealed |
Tolerance | Diameter tolerance: +/- 0.005″ (0.127mm), length tolerance: +/- 0.125″ (3.175mm) |
Form | Titanium square bars, titanium ingots, titanium round bars, rectangular titanium bars, triangular titanium bars, forged titanium bars, titanium hexagonal bars, etc. |
Grade 5 titanium alloy rod (titanium aluminum vanadium alloy) is the premier α-β titanium alloy, making up 50% of global titanium alloy usage. This grade is fully heat treatable and operable at temperatures up to 400°C. Notable for its low density (4.43 kg/dm³), superior corrosion resistance, and robust mechanical strength, it boasts high tensile strength at room temperature and commendable creep resistance up to 300°C. Additionally, it exhibits strong *** and fatigue resistance. The 6AL-4V titanium alloy rod's age-hardening capacity makes it ideal for various applications, including fasteners and components in challenging environments, thanks to its excellent machinability and weldability.
DAXUN® Ti Grade 5 is a titanium alloy bar (6AL-4V) offering the following features:
Daxun crafts premium titanium bars with outstanding performance. We also customize products based on customer agreements:
Daxun conducts rigorous quality assurance tests, including mechanical tests (e.g., area tensile), chemical analysis, material positive identification (PMI test), micro and macro testing, intergranular corrosion (IGC) tests, ultrasonic flaw detection, pitting and resistance tests, hardness tests, and expansion tests. These tests confirm that Grade 2 Titanium Rod and Grade 2 Titanium Round Bar materials meet the required specifications. Throughout production, we meticulously measure diameter, thickness, and surface quality.
Chemical Composition Information for (Ti 6AL-4V) Grade 5 Titanium Rods
Chemical Composition: | |||
Symbol | Element | Min % | Max % |
Al | Aluminum | 5.50% | 6.75% |
V | Vanadium | 3.50% | 4.50% |
Fe | Iron | 0.30% | |
O | Oxygen | 0.20% | |
C | Carbon | 0.08% | |
N | Nitrogen | 0.05% | |
H | Hydrogen | 0.01% | |
Y | Yttrium | 0.01% | |
Other, each | 0.10% | ||
Other, total | 0.40% | ||
Ti | Titanium | Remainder |
Physical Properties | Metric | English | Comments |
Density | 4.43 g/cc | 0.16 lb/in³ | |
Mechanical Properties | |||
Hardness, Brinell | 334 | 334 | Estimated from Rockwell C. |
Hardness, Knoop | 363 | 363 | Estimated from Rockwell C. |
Hardness, Rockwell C | 36 | 36 | |
Hardness, Vickers | 349 | 349 | Estimated from Rockwell C. |
Tensile strength | min. 895MPa | 129810 psi | |
Yield strength | min. 828MPa | 120090 psi | |
Elongation at Break | min.10 % | 10 % | |
Reduction of Area | min.25 % | 25 % |
Chemical Composition Information for Grade 2 Titanium Rods
Element | Weight % |
C | ≤0.08 |
O | ≤0.25 |
N | ≤0.03 |
H | ≤0.015 |
Fe | ≤0.30 |
*OEE | ≤0.10 |
*OET | ≤0.40 |
Ti | Remaining |
Mechanical Properties Information for Grade 2 Titanium Rods
Alloy | UNS Designation | Spec. | Tensile Strength (min.) | Yield Strength 0.2% Offset (min.) | Elongation in 2 inches (min.) | Max Hardness | Modulus of Elasticity (x106 psi) | Mean Coefficient of Thermal Expansion IN./IN./°F x 10-6) | Thermal Conductivity (BTU-in/ft2-h-°F) | ||||
psi | MPa | ksi | psi | MPa | ksi | % | |||||||
Grade 2 Titanium | R50400 | B338 | 50,000 | -345 | 50 | 40,000- | (276-448) | 40-65 | 20 | - | 16 | 5.1 | 144 |
50,000 |
Element | Minimum (weight %) | Maximum (weight %) | Typical (weight %) |
Fe | 0.2 | ||
O | 0.18 | ||
C | 0.08 | ||
N | 0.03 | ||
H | 0.015 | ||
Ti | Balance |
Density | |
lb/in3 | g/cm3 |
0.163 | 4.51 |
Tensile Strength | |
ksi | MPa |
35 min | 240 min |
Yield Strength | |
ksi | MPa |
20 min | 138 min |
Hardness | |
70 HRC max | |
Elongation | |
24% min |
Element | Minimum (weight %) | Maximum (weight %) | Typical (weight %) |
---|---|---|---|
Al | 2.5 | 3.5 | |
V | 2.0 | 3.0 | |
Fe | 0.25 | ||
O | 0.15 | ||
C | 0.08 | ||
N | 0.03 | ||
H | 0.015 | ||
Ti | Balance |
Daxun Alloys proudly offers an extensive inventory of Titanium Rods, including Grade 1, Grade 2, and the prestigious Grade 5, all available in a variety of diameters. Whether your project is industrial or requires the stringent specifications of military aerospace applications, we have the perfect solution for you. Our titanium alloy rods range from a precise 1mm diameter up to a robust 300mm diameter, with custom orders for larger sizes readily accepted. Certified to meet ASTM B348 and ASTM B381 standards, our rods ensure unmatched quality and reliability. Reach out to Daxun today for a personalized quote and discover our premium selection of pure and alloy titanium rods. Our expert team is always on hand to provide tailored advice and support to meet your specific needs.
Daxun boasts a comprehensive technological cycle, ensuring excellence from raw material processing to the mechanical finishing of our products. Our vast network of service centers stocks an array of bar products, facilitating swift, off-the-shelf delivery of common sizes and alloys. Furthermore, we specialize in the manufacture of custom sizes and can establish stocking programs to enable rapid, just-in-time delivery, even for quantities below mill minimums. Experience the efficiency and precision of Daxun's bespoke manufacturing and stocking solutions, designed to meet your every requirement.
CP GR1 Titanium rods PHYSICAL PROPERTIES | |||
Physical Properties | Metric | English | Comments |
Density | 4.50 g/cc | 0.163 lb/in³ | |
a Lattice Constant | 2.95 Å @Temperature 25.0 °C | 2.95 Å @Temperature 77.0 °F | alpha phase |
3.29 Å @Temperature 900 °C | 3.29 Å @Temperature 1650 °F | beta phase | |
c Lattice Constant | 4.683 Å | 4.683 Å @Temperature 77.0 °F | c/a = 1.587 |
Mechanical Properties | Metric | English | Comments |
Hardness, Brinell | 120 | 120 | annealed |
Hardness, Knoop | 132 | 132 | Estimated from Brinell. |
Hardness, Rockwell B | 70 | 70 | annealed |
Hardness, Vickers | 122 | 122 | Estimated from Brinell. |
Tensile Strength | 124 - 138 MPa @Temperature 427 °C | 18000 - 20000 psi @Temperature 801 °F | |
152 - 179 MPa @Temperature 316 °C | 22000 - 26000 psi @Temperature 601 °F | ||
193 - 207 MPa @Temperature 204 °C | 28000 - 30000 psi @Temperature 399 °F | ||
Tensile Strength, Ultimate | 240 MPa | 34800 psi | |
Tensile Strength, Yield | 170 - 310 MPa | 24700 - 45000 psi | |
76.0 - 90.0 MPa @Temperature 427 °C | 11000 - 13100 psi @Temperature 801 °F | 0.2% offset | |
83.0 - 103 MPa @Temperature 316 °C | 12000 - 14900 psi @Temperature 601 °F | 0.2% offset | |
110 - 124 MPa @Temperature 204 °C | 16000 - 18000 psi @Temperature 399 °F | 0.2% offset | |
Elongation at Break | 24% | 24% | |
25 - 30 % @Temperature 427 °C | 25 - 30 % @Temperature 801 °F | ||
30 - 35 % @Temperature 316 °C | 30 - 35 % @Temperature 601 °F | ||
40 - 50 % @Temperature 204 °C | 40 - 50 % @Temperature 399 °F | ||
Reduction of Area | 35% | 35% | |
Tensile Modulus | 103 GPa | 14900 ksi | |
Compressive Modulus | 110 GPa | 16000 ksi | |
Poissons Ratio | 0.37 | 0.37 | |
Shear Modulus | 45.0 GPa | 6530 ksi | |
Charpy Impact | 310 J | 229 ft-lb | V-notch |
Impact Test | 136 J | 100 ft-lb | Impact Strength |
Coefficient of Friction, Dynamic | 0.68 | 0.68 | Ti sliding on Ti; 300 m/min |
0.8 | 0.8 | Ti sliding on Ti; 40 m/min |
CP GR2 Titanium rods PHYSICAL PROPERTIES | |
Density | Magnetic Permeability |
0.163 lbs/in-3 | Nonmagnetic |
4.51 g/cm-3 | Electrical Resistivity |
Beta Transus (+/-25°F, +/--3.9°C) | 21 µΩ/in |
1680°F | 0.53 µΩ/m |
915°C | Elastic Modulus |
Thermal Conductivity | 15.2-17.4 Msi |
12.60 BTU hr-1ft-1 °F-1 | 105-120 GPa |
21.79 W m-1 °C-1 | Typical values at room temperature of about 68-78°F (20-25°C) |
GR5 TI6AL4V Titanium rods PHYSICAL PROPERTIES | |||
Physical Properties | Metric | English | Comments |
Density | 4.43 g/cc | 0.16 lb/in³ | |
Mechanical Properties | |||
Hardness, Brinell | 334 | 334 | Estimated from Rockwell C. |
Hardness, Knoop | 363 | 363 | Estimated from Rockwell C. |
Hardness, Rockwell C | 36 | 36 | |
Hardness, Vickers | 349 | 349 | Estimated from Rockwell C. |
Tensile strength | min. 895MPa | 129810 psi | |
Yield strength | min. 828MPa | 120090 psi | |
Elongation at Break | min.10 % | 10 % | |
Reduction of Area | min.25 % | 25 % | |
Modulus of Elasticity | 113.8 GPa | 16500 ksi | |
Compressive Yield Strength | 970 MPa | 141000 psi | |
Notched Tensile Strength | 1450 MPa | 210000 psi | Kt (stress concentration factor) = 6.7 |
Ultimate Bearing Strength | 1860 MPa | 270000 psi | e/D = 2 |
Bearing Yield Strength | 1480 MPa | 215000 psi | e/D = 2 |
Poisson's Ratio | 0.342 | 0.342 | |
Charpy Impact | 17 J | 12.5 ft-lb | V-notch |
Fatigue Strength | 240 MPa | 34800 psi | at 1E+7 cycles. Kt (stress concentration factor) = 3.3 |
Fatigue Strength | 510 MPa | 74000 psi | Unnotched 10,000,000 Cycles |
Fracture Toughness | 75 MPa-m½ | 68.3 ksi-in½ | |
Shear Modulus | 44 GPa | 6380 ksi | |
Shear Strength | 550 MPa | 79800 psi | Ultimate shear strength |
Electrical Properties | |||
Electrical Resistivity | 0.000178 ohm-cm | 0.000178 ohm-cm | |
Magnetic Permeability | 1.00005 | 1.00005 | at 1.6kA/m |
Magnetic Susceptibility | 3.30E-06 | 3.30E-06 | cgs/g |
Thermal Properties | |||
CTE, linear 20°C | 8.6 µm/m-°C | 4.78 µin/in-°F | 20-100ºC |
CTE, linear 250°C | 9.2 µm/m-°C | 5.11 µin/in-°F | Average over the range 20-315ºC |
CTE, linear 500°C | 9.7 µm/m-°C | 5.39 µin/in-°F | Average over the range 20-650ºC |
Specific Heat Capacity | 0.5263 J/g-°C | 0.126 BTU/lb-°F | |
Thermal Conductivity | 6.7 W/m-K | 46.5 BTU-in/hr-ft²-°F | |
Melting Point | 1604 - 1660 °C | 2920 - 3020 °F | |
Solidus | 1604 °C | 2920 °F | |
Liquidus | 1660 °C | 3020 °F | |
Beta Transus | 980 °C | 1800 °F |
Daxun Jiangsu Daxun Alloy Co., Ltd. excels in producing high-precision Grade 1 titanium bars within our state-of-the-art production facilities in China. Our bars boast an excellent surface finish, tight tolerance, superior straightness, and unmatched material quality, positioning you at the forefront of technological advancements with consistent production processes. These exceptional standards apply across a wide range of diameters and materials. Additionally, our extensive stocking program at our service center ensures just-in-time delivery, further enhancing your operational efficiency.
We manufacture bars tailored to your specific requirements.
Our bars feature an excellent surface finish and straightness, impeccable roundness, and the tightest diameter tolerances (according to ISO 286-2 up to h5). Available in straightened, ground, and polished conditions.
Sawing
Band saws (up to Ø510 mm)
Bench band saws (up to 6,000 x 3,000 x 400 mm)
High-performance sawing machines for precise cuts
Single or double-sided
Chamfer 90° (45°)
Point 60° (30°)
Flat end
Centered
ASTM - American Society for Testing and Materials Standards
AMS - American Aerospace Materials Standards
NACE - American Association of Corrosion Engineers International Standards
ASME - American Society of Mechanical Engineers Standards
GB - Chinese National Standards
GJB - Chinese National Military Standards
ISO - International Standards
DIN - German Standards
EN - European Standards
API - American Petroleum Institute Standards
Non-destructive testing with 100% coverage
Testing methods
Eddy current testing/eddy current *** testing
Defect-free surface (level 4)
Flat bottom hole diameter 0.7 mm and 0.4 mm
Blind area can be cut off according to fixed length, ensuring tests reach the end of the bar
Comprehensive full diameter ultrasonic testing for impeccable quality assurance.
Purchase orders must specify quantity, grade, type or category, API5L reference, thickness, width, length, and any additional requirements related to chemical composition, mechanical properties, heat treatment, additional testing, manufacturing process, surface coating, or end finish. Contact Daxun now for prompt email responses.
Grade 5 Titanium Rod
Daxun operates a cutting-edge production facility in China, delivering ultra-competitive, high-precision Grade 5 titanium bars. Outstanding surface quality, tolerance, straightness, and material integrity ensure technological leadership and reliable production processes. These benefits extend across a wide range of diameters and materials. Our extensive stock program at the service center also enables just-in-time delivery.
AMS 4928 - Bars, Forgings, and Forging Stock (Annealed)
AMS 4965 - Bars, Forgings (Solution treated and aged)
AMS 4967 - Bars, Forgings (Annealed, Heat Treatable)
In the solution-treated and aged state, rapid quenching of small sections ensures optimal properties. Larger sections or delayed quenching may result in suboptimal properties.
Typical hardness is Rockwell C 30-34 in the annealed state, and Rockwell C 35-39 in the solution-treated and aged state.
The Ti-6Al-4V, Grade 5 Alloy Bar can be machined using methods suitable for austenitic stainless steel. This process requires slow machining speeds, high feeds, rigid tooling, and substantial use of non-chlorinated cutting fluids to ensure precision and quality.
The Ti-6Al-4V, Grade 5 Alloy Rod exhibits excellent weldability in both annealed and solution and partially aged conditions. Post-weld heat treatment facilitates aging. To prevent contamination with oxygen, nitrogen, and hydrogen, precautions are necessary. Fusion welding should be carried out in an inert gas-filled chamber or with inert gas to protect the molten metal and heated zones. Spot, seam, and flash welding can be executed without a protective atmosphere.
Contamination of the Ti-6Al-4V, Grade 5 Titanium Alloy Rod with hydrogen (due to improper pickling) and with oxygen, nitrogen, and carbon (during processes such as forging, heat treating, and brazing) can lead to a reduction in ductility. This contamination may adversely affect the rod's notch sensitivity and forming characteristics.
We specialize in producing bars tailored to your specific needs.
Our products boast excellent surface finish and straightness, perfect roundness, and the tightest diameter tolerances (per ISO 286-2 up to h5). Available in straightened, ground, and polished conditions.
Sawing
Capabilities: Band saws (up to Ø510 mm)
Capabilities: Bench band saws (up to 6,000 x 3,000 x 400 mm)
Capabilities: High-performance sawing machines for precise cuts
Options: Single or double-sided machining
Options: Chamfering at 90° (45°)
Options: Pointing at 60° (30°)
Flat End
Centered
ASTM - American Society for Testing and Materials Standards
AMS - American Aerospace Materials Standards
NACE - American Association of Corrosion Engineers International Standards
ASME - American Society of Mechanical Engineers Standards
GB - Chinese National Standards
GJB - Chinese National Military Standards
ISO - International Standards
DIN - German Standards
EN - European Standards
API - American Petroleum Institute Standards
Non-Destructive Testing > 100% Testing
Testing Methods
Eddy Current Testing / Eddy Current *** Testing
Defect-Free Surface (Level 4)
Flat Bottom Hole Diameter: 0.7 mm and 0.4 mm
Blind Area Can Be Cut Off According to Fixed Length > Test to the End of the Bar
Full Diameter Ultrasonic Testing
Purchase orders should specify quantity, grade, type or category, API5L reference, thickness, width, length, and any applicable attachments or additional requirements related to chemical composition, mechanical properties, heat treatment, additional testing, manufacturing process, surface coating, or end finish. Contact Jiangsu Daxun Alloy Co., Ltd. now, and we will reply to your email as soon as possible.
Titanium should not be used with strong reducing acids, fluoride solutions, pure oxygen, or anhydrous ***.
General corrosion rates for Grade 2 titanium in various media are shown in Table 1. CP titanium exhibits excellent corrosion resistance to a broad range of environments, including:
CP titanium offers good resistance to crevice corrosion in salt solutions compared to stainless steels. It will not exhibit crevice corrosion at temperatures below 80°C (176°F) regardless of pH, even under super-chlorinated conditions.
Grade 2 titanium shows outstanding resistance to stress corrosion (SCC) cracking in hot chloride solutions and is immune to SCC in seawater.
Titanium exhibits remarkable resistance to erosion in flowing environments.
Seawater with velocities reaching up to 130 ft/sec (40 m/sec) shows a negligible impact on titanium. Even with the presence of abrasive particles like sand, there is only a slight effect on the material's corrosion resistance.
Titanium does not significantly absorb hydrogen from seawater exposure, even at higher temperatures. Hydrogen absorption typically occurs only under these three conditions:
Titanium alloys exhibit a unique immunity to all forms of microbiologically influenced corrosion. Although biofouling can occur in seawater due to the non-toxic nature of titanium alloys towards marine organisms, it can be minimized by chlorination or increasing water velocity through heat exchangers.
Titanium does not exhibit a decrease in fatigue performance in the presence of seawater. Fatigue endurance limits and *** growth rates remain consistent whether tested in air or seawater.
In the galvanic series, titanium is positioned near the noble end, close to stainless steels, and typically acts as the cathode when paired with other metals. Consequently, titanium itself remains unaffected by galvanic corrosion but can accelerate the corrosion of the paired metal. Pairing titanium with more noble metals like graphite enhances its passivity.
Grade 2 Titanium Rod maintains its fatigue properties in seawater, similar to its performance in air. Both fatigue endurance limits and *** growth rates remain unchanged.
CP2 Grade Titanium Rod is highly weldable with necessary precautions. Due to its reactivity, an inert gas shield must be used on both the OD and ID of the rod, and the material must be free of grease or oil contamination.
Grade 2 Titanium Rod is typically welded using manual or automatic TIG welding, with or without filler wire. It's crucial to use low heat input to minimize the heat-affected zone size. Post-weld heat treatment is not usually required.
Working material: | 3.7035 / UNS R50400 |
Diameter: | 3 - 400 mm |
Lengths: | 2.000 - 4.000 mm |
Versions: | Rolled, forged, annealed |
Surfaces: | Turned, peeled, polished |
Standards: | ASTM B 348, ASME SB 348, DIN 17862, ASTM F 67, NACE MR 0175, ISO 1515156-3, ISO 5832-2 |
Looking for high-quality Grade 2 Titanium Alloy Rod-3,7035? At Jiangsu Daxun Alloy Co., Ltd., we provide customized titanium rods tailored to meet your specific needs, backed by our expertise and commitment to supporting your projects.
We offer Grade 2 Titanium bars in diameters ranging from 2.0 mm to 400 mm. Note that execution and tolerances may vary: small diameters are delivered centerless ground with h7 tolerances, while large diameters come with h9 or h11 tolerances.
When placing orders, please specify the quantity, grade, type or category, API5L reference, thickness, width, length, and any relevant attachments or additional requirements concerning chemical composition, mechanical properties, heat treatment, extra testing, manufacturing processes, surface coating, or end finish. Reach out to Daxun now, and expect a prompt response to your email.
Q1: What products can you offer?
A: We provide an extensive range of general steel types including 310S, 316L, 304, 304L, 201, 904L, 316H, 316, 316L 300. Additionally, we offer high-nickel alloys and duplex stainless steel such as 2205, 2304, 2101, 2507, and more.
400 series, and duplex stainless steel like 2205, 2304, 2101, 2507, etc. We also supply 904L, 800H, and 600H high-nickel alloys.
Q2. Can you produce the products according to my own drawings?
A: Absolutely, we can manufacture products in strict accordance with your drawings to ensure your utmost satisfaction.
Q3. How does your factory handle quality control?
A: Quality is our top priority. We adhere to stringent quality control measures from the inception of the production process to its completion.
Q4. Can I request to change the form of packaging and transportation?
A: Yes, we can modify the packaging and transportation methods based on your request,
but you will need to cover any additional costs and price differences incurred during this period.
Q5. How does your factory address quality control?
A: Quality is our utmost priority. We consistently focus on maintaining rigorous quality controls from start to finish.
Q6. How long is the delivery time?
A: Our delivery time ranges from 7 to 20 working days upon payment confirmation.
For urgent orders, we can expedite the process to meet your deadlines.
Q7. What are your payment terms?
A: Option A: 100% T/T payment in advance, Western Union (for smaller orders).
Option B: 30% T/T upfront, with the remaining 70% settled before shipment.
Option C: 100% Irrevocable LC at sight (for larger orders).
Q8: Can you produce Deep Drawing Quality (DDQ)?
A: Yes, we can. Our materials are ideal for stainless steel pots, sinks, bowls, etc. Share your usage needs with us, and we will tailor the mechanical properties to meet your specific requirements.
Q9: How can I obtain a sample?
A: We offer FREE samples for your evaluation. For small sample pieces, we may cover courier costs depending on the circumstances.
Q10: To which countries have you exported your products?
A: We have exported our stainless steel materials to numerous countries including Vietnam, Thailand, Turkey, Russia, Morocco, Korea, India, Pakistan, UAE, Ukraine, and others.
Q11: How can I visit your company?
A: Simply fly to Guangzhou Baiyun International Airport, and we will arrange to pick you up from there.