- Ti-3Al-2.5V Grade 9 Ti Alloy Valve
- Ti-3Al-2.5V Grade 9 Ti Alloy Flange
- Ti-3Al-2.5V Grade 9 Ti Alloy pipe fitting
- Ti-3Al-2.5V Grade 9 Ti Alloy angle bar
- Ti-3Al-2.5V Grade 9 Ti Alloy pipe
Ti-3Al-2.5V Grade 9 Ti Alloy
Production specification
Data center describes many of the common steel models, we can not determine the company's warehouse has all types of steel products inventory or raw materials.
Steel Pipe: 1 - 1300mm, also can be customed.
Pipe fitting Size: 1/8 inch - 80 inch (DN6 - DN2000)
Flange Size: DN6 - DN2000
Lenth: Any lenth based on the customer's requirement.
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Ti-3Al-2.5V Grade 9 Ti Alloy
Our advantages
Ti-3Al-2.5V Grade 9 properties and heat treatment forged piece, Including Ti-3Al-2.5V Grade 9 application and specifications, Including Ti-3Al-2.5V Grade 9 tube plate, Ti-3Al-2.5V Grade 9 Pipe Fitting, Ti-3Al-2.5V Grade 9 flange, Ti-3Al-2.5V Grade 9 Angle Bar,Ti-3Al-2.5V Grade 9 Valve,Ti-3Al-2.5V Grade 9 3d bend.
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Introduction to Our Products:
Specialized high quality steel
We have the advantages of equipment, technologies and price
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Ti-3Al-2.5V Grade 9 has the following specifications:
Valve:
Diameter : 1mm-1300mm
Steel pipe:
Size:
OD: 9.5mm - 813mm
WT: 0.8mm - 34mm
Length: 1 - 13m, also can be customed.
Items |
seamless pipe & tube, pipe & tube |
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Standard |
ASTM, GB, DIN, AISI, etc |
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Outer Diameter |
Round pipe9.5mm--813mm |
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square |
12.7x12.7--200X200mm |
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rectangular |
20X40--150X200mm |
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Thickness |
0.8mm - 34mm |
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Length |
5.8m,6m, or as customers' request |
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Tolerance |
a) Outer Diameter: +/- 0.2mm |
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b) Thickness: +/- 0.02mm |
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c) Length: +/- 5mm |
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Surface |
180Grit, 320Grit, 400Grit Satin / Hairline |
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400Grit, 500Grit, 600Grit Mirror finish |
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Application |
Widely used in petroleum, Foodstuff, chemical industry, construction, electric power, nuclear energy, biotechnology, machinery, papermaking, shipbuilding, boiler fields, etc |
Pipe fitting:
Size: 1/8 inch - 80 inch (DN6 - DN2000) WT: Sch5s - Sch160XXS
Items |
Elbow,Equal Tee,Reducer Tee,Concentric Reducer,Eccentric Reducer,Cap,etc |
|
Standard |
ASME |
ANSI B16.9,ANSI B16.28,MSS-SP-75 |
DIN |
DIN2605,DIN2615, DIN2616, DIN2617, DIN28011 |
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SGP |
JISB2313 |
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EN |
EN10253-1 EN10253-2 |
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Material |
ASME |
A234 WPB,A234 WP1,A234 WP5,A234,WP9, A234 WPB11,A234 WPB12,A234 WPB22,WP91, A420,WPHY42,WPHY52,WPHY60,WPHY65, WPHY70,WP304,WP304L,WP304H,WP316, WP316L,WP321,WP347,WP347H |
DIN |
ST37.0,ST35.8,ST45.8,S235JR,P235GH,P265GH, 10CrMo910,15CrMo,12Cr1MoV |
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JIS |
JIS G3454,STPG370,TPG410 |
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Surface |
Black paint/bright paint/Galvanized |
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Marking |
As customer’s requirements |
Flange:
Product Name | Flange | |
Items | Plate, Welding Neck, Slip on, Blind, Lap joint, Threaded Flange | |
Standard | ANSI | ANSI B16.5 ASME B16.47 series A/B |
DIN | DIN | |
GOST | GOST 12820-80 | |
EN | EN1092-1:2002 | |
JIS | JIS B2220-2004, KS D3576, KS B6216 KS B1511-2007 JIS B2261; JIS B8210 | |
BS | BS4504 BS10 Table D/E | |
Material | ANSI | CS A105/SA 105NSS 304/304L, 316/316L Alloy Steel: WHPY45/52/65/80 |
DIN | CS RST37.2;S235JR SS 304/304L,316/316L | |
GOST | CS CT20;16MN;SS 304/304L,316/316L | |
EN | CS RST37.2;S235JR;C22.8SS 304/304L,316/316L | |
JIS | SS400,SF440 SS 304/304L, 316/316L | |
BS | CSRST37.2;S235JR;C22.8;Q235SS 304/304L,316/316L | |
Pressure | ANSI | Class 150, 300, 600, 900, 1500 2500lbs |
DIN | PN6,PN10,PN16,PN25,PN40,PN64,PN100 | |
GOST | PN6,PN10,PN16,PN25 | |
EN | PN6,PN10,PN16,PN25,PN40,PN64,PN100 | |
JIS | 1K,2K,5K,10K,16K,20K,30K,40K | |
BS | PN6,PN10,PN16,PN25,PN40,PN64,PN100 | |
Size | ANSI | 1/2” – 60” |
DIN | DN15-DN2000 | |
GOST | DN15-DN1600 | |
EN | DN15-DN2000 | |
JIS | 15A-1500A | |
BS | DN15-DN2000 | |
Coating | varnish, yellow paint, anti-rust oil, galvanizing etc | |
Usage | Used for the connection of all kinds of pipeline. | |
to convey the water, steam, air, gas and oil |
Length: Any length based on the customer's requirement.
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Chemical composition % of the ladle analysis of grade Ti-3Al-2.5V Grade 9 and Standards
Titanium Ti-3Al-2.5V (Grade 9), alpha annealed
Categories: Metal; Nonferrous Metal; Titanium Alloy; Alpha/Near Alpha Titanium Alloy
Material Notes: Information provided by Allvac and the references. Alpha annealed.
Applications: Excellent cold formability, 20-50% higher tensile properties than CP titanium grades. Primarily used in aircraft hydraulic systems.
3 other heat treatments of this alloy are in MatWeb.
Key Words: Ti3Al2.5V, UNS R56320; ASTM Grade 9; Half 6-4; Tubing Alloy
Physical Properties Metric English Comments
Density 4.48 g/cc 0.162 lb/in³
Mechanical Properties Metric English Comments
Hardness, Brinell 256 256 Estimated from Rockwell C.
Hardness, Knoop 278 278 Estimated from Rockwell C.
Hardness, Rockwell C 24.0 24.0
Hardness, Vickers 280 280
Tensile Strength, Ultimate 620 MPa 89900 psi
Tensile Strength, Yield 500 MPa 72500 psi
Elongation at Break 15.0 % 15.0 %
Modulus of Elasticity 100 GPa 14500 ksi In Tension
Compressive Yield Strength 690 MPa 100000 psi
Notched Tensile Strength 790 MPa 115000 psi Kt (stress concentration factor) = 6.3
Poissons Ratio 0.300 0.300
Charpy Impact 86.0 J 63.4 ft-lb V-notch
Fatigue Strength 170 MPa
@# of Cycles 1.00e+7 24700 psi
@# of Cycles 1.00e+7 Kt (stress concentration factor) = 1.8
280 MPa
@# of Cycles 1.00e+7 40600 psi
@# of Cycles 1.00e+7 unnotched
280 MPa
@# of Cycles 50000 40600 psi
@# of Cycles 50000 Kt (stress concentration factor) = 1.8
380 MPa
@# of Cycles 40000 55100 psi
@# of Cycles 40000 unnotched
Fracture Toughness 100 MPa-m½ 91.0 ksi-in½ kJ/m² for J(IC)
Shear Modulus 44.0 GPa 6380 ksi
Electrical Properties Metric English Comments
Electrical Resistivity 0.000127 ohm-cm 0.000127 ohm-cm
Thermal Properties Metric English Comments
CTE, linear 9.61 µm/m-°C
@Temperature 20.0 - 95.0 °C 5.34 µin/in-°F
@Temperature 68.0 - 203 °F
9.86 µm/m-°C
@Temperature 20.0 - 315 °C 5.48 µin/in-°F
@Temperature 68.0 - 599 °F 9.67 in range 20-205ºC
9.97 µm/m-°C
@Temperature 20.0 - 540 °C 5.54 µin/in-°F
@Temperature 68.0 - 1000 °F average
Specific Heat Capacity 0.525 J/g-°C 0.125 BTU/lb-°F Typical value for titanium alloys.
Thermal Conductivity 8.30 W/m-K 57.6 BTU-in/hr-ft²-°F Value at 315ºC is 11.8 W/m-ºC
Melting Point <= 1700 °C <= 3090 °F Liquidus
Liquidus 1700 °C 3090 °F
Beta Transus 935 °C 1720 °F
Component Elements Properties Metric English Comments
Aluminum, Al 2.50 - 3.50 % 2.50 - 3.50 %
Carbon, C <= 0.0500 % <= 0.0500 %
Hydrogen, H <= 0.0150 % <= 0.0150 %
Iron, Fe <= 0.200 % <= 0.200 %
Nitrogen, N <= 0.0300 % <= 0.0300 %
Other, each <= 0.0500 % <= 0.0500 %
Other, total <= 0.300 % <= 0.300 %
Oxygen, O <= 0.150 % <= 0.150 %
Titanium, Ti 92.755 - 95.5 % 92.755 - 95.5 % As Balance; Elemental Compostions per ASTM B265
Vanadium, V 2.00 - 3.00 % 2.00 - 3.00 %
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Machining performance
Ti-3Al-2.5V Grade 9 the mechanical properties of the report, the report provides detailed performance analysis and application.
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Principal Design Features
One of the most widely used precipitation hardening grades in the business. While soft and ductile in the solution annealed condition, it is capable of high properties with a single precipitation or aging treatment. Characterized by good corrosion resistance, high harness, toughness and strength.
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Machinability
Long, gummy chips characterize this alloys machinability. It can be machined in the annealed condition, however condition H1150M will yield best results. Post machining solution treatment of parts will be required prior to final hardening if machining in this condition.
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Heat Treatment
CONDITION A--Soak at 1900 F (1038 C) for 30 minutes and cool below 60 F (16 C) for complete martensite transformation. CONDITION H 950- Treat Condition A material at 900 F(482 C) for 1 hour, air cool.. CONDITION H925, H1025, H1075, H1100, H1150- Soak solution treated material for 4 hours at specified temperature, air cool, CONDITION H1150M- Soak solution treated material at 1400 F (760 C) for 2 hours, air cool, then re-heat to 1150 F (620 C) for 4 hours and air cool.
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Welding
Successfully welded by common fusion and resistance methods, this alloy should not be joined by oxyacetylene welding. AWS E/ER630 filler metal is recommended if required.
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Forging
Soak for 1 hour at 2150 F (1177 C) prior to forging. Do not work below 1850 F (1010 C). Post-work solution treatment is required prior to final hardening.
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