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) stands as the most widely utilized α-β titanium alloy, representing 50% of global titanium alloy consumption. This alloy is notable for its full heat treatability and operational capability up to 400°C. With a low density of 4.43 kg/dm³, it offers exceptional corrosion resistance and superior mechanical strength. At ambient temperature, Grade 5 Titanium Alloy exhibits high tensile strength, while providing excellent creep resistance up to 300°C. Its robust *** and fatigue resistance, coupled with age-hardening ability, make it ideal for applications such as fasteners and components in challenging environments. Its high machinability and weldability further enhance its suitability for a myriad of industrial applications.
DAXUN® Ti Grade 5 is a premier titanium alloy bar (6Al-4V) known for:
Daxun produces top-quality titanium bars, ensuring high performance and customization per customer agreements:
Daxun conducts comprehensive quality assurance tests including mechanical tests (area tensile), chemical analysis, material positive identification (PMI), micro and macro testing, intergranular corrosion (IGC) test, ultrasonic flaw detection, pitting resistance test, hardness test, expansion test, etc. These ensure that Grade 2 Titanium Rod and Grade 2 Titanium Round Bar meet application requirements. During production, we meticulously measure the product's diameter, thickness, and surface.
Detailed Chemical Composition of (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 Insights 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 Insights 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 |
At Jiangsu Daxun Alloy Co., Ltd., we pride ourselves on our comprehensive selection of high-quality titanium rods. We stock Grade 1, Grade 2, and Grade 5 Titanium Rods in an impressive range of diameters, rigorously crafted to meet the diverse needs of projects spanning general industrial to elite military aerospace applications. Our inventory caters to diameters from 1mm to 300mm, and we welcome custom orders for larger sizes to ensure your project requirements are met with precision. Each Titanium Rod is certified to meet ASTM B348 and ASTM B381 standards, guaranteeing top-notch quality and reliability. Don't hesitate to reach out to Daxun for your titanium rod needs - our team is ready to provide expert advice and a personalized quote to ensure you receive the finest pure titanium rods and titanium alloy rods available.
At Daxun, we maintain a complete technology cycle from raw material processing to the delivery of meticulously crafted finished products. Our bar products are strategically stocked throughout our extensive service center network, ensuring fast, off-the-shelf delivery of common sizes and alloys. Additionally, we specialize in manufacturing custom sizes to meet unique specifications and can establish stocking programs for quick, just-in-time turnaround for orders below the mill minimum. This commitment to efficiency and quality guarantees that you receive the right product exactly when you need it.
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. produces exceptionally precise Grade 1 titanium bars in our advanced production facilities in China. With superior surface finish, exact tolerance, impeccable straightness, and outstanding material quality, we offer you technological superiority and consistent production processes. These benefits extend to a wide range of diameters and materials. Additionally, our extensive stocking program at our service center ensures timely delivery.
We manufacture bars precisely to your specifications.
Exceptional surface and straightness, flawless 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 cutting
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 > 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
Your purchase orders should detail the quantity, grade, type or category, API5L reference, thickness, width, length, and any pertinent 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 promptly respond to your email.
Grade 5 Titanium Rod
Daxun boasts a cutting-edge production facility in China, manufacturing highly competitive, precision-engineered Grade 5 titanium bars. Our products feature outstanding surface quality, tolerance, straightness, and material integrity, ensuring you achieve technological leadership and consistent production processes. This excellence spans a wide range of diameters and materials. Additionally, our comprehensive stock program at our service center guarantees 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 condition, rapid quenching of small sections yields optimal properties. Larger section sizes or delayed quenching may result in suboptimal properties.
Typical hardness in the annealed condition is Rockwell C 30-34, increasing to Rockwell C 35-39 in the solution treated and aged condition.
The Ti-6Al-4V, Grade 5 alloy bar is compatible with austenitic stainless steel machining methods. It requires slow machining speeds, high feeds, rigid tooling, and an ample supply of non-chlorinated cutting fluids to ensure precision and quality machining.
The Ti-6Al-4V, Grade 5 alloy rod boasts excellent weldability in both its annealed and partially aged conditions, with aging achievable during post-weld heat treatment. It is crucial to prevent contamination with oxygen, nitrogen, and hydrogen. Fusion welding should be conducted in an inert gas-filled chamber or with inert gas to safeguard the molten metal and adjacent heated areas. Spot, seam, and flash welding can be performed without the need for a protective atmosphere.
Attention must be paid to potential 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. Such contamination can lead to reduced ductility, negatively impacting notch sensitivity and forming properties.
We customize bar production to meet your specific requirements.
Our bars exhibit excellent surface finish and straightness, with perfect roundness and the tightest diameter tolerances (up to h5 according to ISO 286-2). 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 cutting
Available single or double sided
Chamfer options: 90° (45°)
Point options: 60° (30°)
Flat end
Centered end
ASTM standards (American Society for Testing and Materials)
AMS standards (American Aerospace Materials Standards)
NACE Standards: The Gold Standard in Corrosion Engineering
ASME Standards: Engineering Excellence in Mechanics
GB Standards: Premier Chinese National Benchmarks
GJB Standards: Elite Chinese Military Specifications
ISO Standards: International Quality Assurance
DIN Standards: Precision German Engineering
EN Standards: Comprehensive European Regulations
API Standards: Leading Petroleum Industry Guidelines
Non-Destructive Testing: 100% Thorough Examination
Cutting-Edge Testing Methods
Eddy Current Testing: Superior *** Detection
Surface Quality: Defect-Free Level 4
Flat Bottom Hole Diameters: Precision at 0.7 mm and 0.4 mm
Custom Length Testing: Blind Areas Eliminated > Full Bar Testing
Comprehensive Full Diameter Ultrasonic Testing
Include in your purchase orders: quantity, grade, type/category, API5L reference, dimensions, and any additional requirements related to chemical composition, mechanical properties, heat treatment, testing, manufacturing process, surface coating, or end finish. Contact Daxun now, and expect a prompt email response.
Avoid using titanium with strong reducing acids, fluoride solutions, pure oxygen, or anhydrous ***.
Refer to Table 1 for general corrosion rates of Grade 2 titanium across various media. CP titanium excels in resisting corrosion in environments such as:
CP titanium resists crevice corrosion in salt solutions better than stainless steels, performing well at temperatures below 80 °C (176°F), even under super chlorinated conditions.
Grade 2 titanium resists stress corrosion cracking (SCC) in hot chloride solutions and is immune to SCC in seawater.
Titanium demonstrates exceptional resistance to erosion in flowing environments.
In seawater with velocities up to 130 ft/sec (40 m/sec), our material exhibits negligible deterioration. Even in the presence of abrasive particles like sand, the corrosion impact remains minimal.
Under typical conditions, titanium does not significantly absorb hydrogen from seawater-even at elevated temperatures. Hydrogen absorption only occurs when the following three conditions are simultaneously satisfied:
Titanium alloys exhibit exceptional resistance to microbiologically influenced corrosion, maintaining their integrity against all forms. However, due to their non-toxic nature toward marine organisms, biofouling in seawater can occur. This can be effectively controlled by chlorination or by increasing water velocity through heat exchangers.
Titanium stands out for its robust fatigue performance in seawater. Unlike many other materials, it maintains consistent fatigue endurance limits and *** growth rates, whether tested in air or seawater.
Positioned towards the noble end of the galvanic series, titanium typically acts as the cathode when paired with other metals, thus avoiding galvanic corrosion. However, it can accelerate the corrosion of the coupled metal. When paired with more noble metals like graphite, titanium's passivity is further enhanced.
Grade 2 Titanium Rod is notable for not degrading in fatigue properties when exposed to seawater. Its fatigue endurance limits and *** growth rates remain stable regardless of whether tested in air or seawater.
CP2 Grade Titanium Rod is highly weldable with proper precautions. Due to titanium's reactivity, an inert gas shield must cover both the outer and inner diameters of the rod, and the material should be free from grease or oil contamination.
Typically, Grade 2 Titanium Rod is welded using manual or automatic TIG welding, with or without filler wire. A low heat input is recommended to minimize the heat-affected zone, and post-weld heat treatment is generally not 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 |
Seeking round rod material made from Grade 2 Titanium Alloy Rod-3.7035? At Daxun, we offer customized titanium rods tailored to your project's needs. With extensive experience, we are here to support your requirements.
Our Grade 2 Titanium bars are available in diameters ranging from 2.0 mm to 400 mm. Please 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 purchase orders with Jiangsu Daxun Alloy Co., Ltd., please include the following details: quantity, grade, type or category, API5L reference, thickness, width, length, and any additional specifications related to chemical composition, mechanical properties, heat treatment, additional testing, manufacturing process, surface coating, or end finish. Reach out to Daxun now, and we will respond to your inquiry promptly.
Q1: What products can you offer?
A: We offer a broad range of steel types including 310S, 316L, 304, 304L, 201, 904L, 316H, 316, 316L, and various 300 series.
Additionally, we provide 400 series steel, duplex stainless steel such as 2205, 2304, 2101, 2507, and high-nickel alloys like 904L, 800H, and 600H.
Q2. Can you produce the products according to my own drawings?
A: Yes, we can manufacture products according to your provided drawings, ensuring they meet your satisfaction.
Q3. How does your factory handle quality control?
A: Quality is our top priority. We consistently emphasize stringent quality control from the beginning to the end of the manufacturing process.
Q4. Can I request changes to the packaging and transportation methods?
A: Yes, we can alter the packaging and transportation methods according to your requests.
However, please note that any additional costs and the price differences incurred during this process will be your responsibility.
Q5. How does your factory handle quality control?
A: Quality is our top priority. We consistently emphasize stringent quality control from the beginning to the end of the manufacturing process.
Q6. What is your delivery time?
A: Our standard delivery time is 7-20 working days after payment confirmation.
For urgent orders, we can expedite the process to meet your timeline.
Q7. What are your payment terms?
A: 100% T/T in advance or Western Union for small orders.
B: 30% T/T in advance and the remaining 70% before shipment.
C: 100% Irrevocable LC at sight for large orders.
Q8: Can you produce Deep Drawing Quality (DDQ) products?
A: Yes, we can produce DDQ materials suitable for stainless steel pots, sinks, and bowls. Let us know your specific needs, and we will adjust the mechanical properties accordingly.
Q9: How can I obtain a sample?
A: We offer FREE samples for your evaluation and testing. For smaller pieces, we may cover the courier cost depending on various factors.
Q10: Which countries have you exported to?
A: We have successfully exported stainless steel materials to Vietnam, Thailand, Turkey, Russia, Morocco, Korea, India, Pakistan, UAE, Ukraine, and more.
Q11: How can I visit your company?
A: You can fly to Guangzhou Baiyun International Airport, where we will gladly pick you up.