Astm B381 F2 | Astm B381 Titanium Forging Block,In Hot Forging Processing 모든 답변

당신은 주제를 찾고 있습니까 “astm b381 f2 – ASTM B381 titanium forging block,in hot forging processing“? 다음 카테고리의 웹사이트 Chewathai27.com/you 에서 귀하의 모든 질문에 답변해 드립니다: Chewathai27.com/you/blog. 바로 아래에서 답을 찾을 수 있습니다. 작성자 Baoji Leader Titanium Industry Co., Ltd 이(가) 작성한 기사에는 조회수 86회 및 좋아요 1개 개의 좋아요가 있습니다.

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ASTM B381 F2 Flanges | ASME SB Grade F5 Fittings and …

Referred to by its trade name UNS R45400, titanium ASTM B381 Gr F2 Tee exhibits excellent resistance to corrosion as mentioned earlier, in addition to which the …

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Standard Specification for Titanium and Titanium Alloy Forgings

… and titanium alloy forgings as Grade F-1, Grade F-2, Grade F-2H, … Do you already have an ASTM Compass® Subscription? … ASTM B381-21 …

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ASTM B381 – Steel Tubes India

The specification of ASTM B381 covers flanges and forgings that are of titanium. Titanium Grade 2 Forged Fittings have very good mechanical hardness, excellent …

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ASTM B381 F2 Socket weld Forged Fitting – Savoy Piping Inc.

ASTM B381 F2 Socket weld Fitting is a pipe attachment detail in which a pipe is inserted into a recessed area of a Valve, fitting or flange.

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Titanium Gr.2 Gr.5 Gr.12 ASTM B381 F2 F5 F12 flanges …

1.What is Titanium Flanges? Titanium Flanges Standard Specification Specifications ASTM B381 / ASME SB381 Standard ANSI Flanges, ASME Flanges, BS Flanges, …

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ASTM B381 F2 Titanium Supper Alloy Froged Ball Valve

ASTM B381 F2 Titanium Supper Alloy Froged Ball Valve … Application & Function: Dtek Cast Floating Metal Seated Ball Valve can be used to handle a variety of …

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ASTM B381 : Standard Specification for Titanium and Titanium …

This specification2 covers 39 grades of annealed titanium and titanium alloy forgings as follows: Grade F-1—UNS R50250. Unalloyed titanium, Grade F-2—UNS R50400 …

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ASME SB-381 (ASTM B381) in PDF – Metals Piping

1.1 This specification covers 39 grades of annealed tita- nium and titanium alloy forgings as follows: 1.1.1 Grade F-1—Unalloyed titanium,. 1.1.2 Grade F-2— …

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Sponge Ti AS9100 Titanium Grade 2 Plate Astm B381 Gr F2

astm b381 gr f2 · Sản phẩm · Tấm này theo quy trình rèn ASTMB381 với máy ép dầu 800 tấn. · Sản phẩm rèn titan của YIXIN Titanium được gọi là ‘Chỉ bọt biển, không …

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주제와 관련된 더 많은 사진을 참조하십시오 ASTM B381 titanium forging block,in hot forging processing. 댓글에서 더 많은 관련 이미지를 보거나 필요한 경우 더 많은 관련 기사를 볼 수 있습니다.

ASTM B381 titanium forging block,in hot forging processing
ASTM B381 titanium forging block,in hot forging processing

주제에 대한 기사 평가 astm b381 f2

  • Author: Baoji Leader Titanium Industry Co., Ltd
  • Views: 조회수 86회
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  • Date Published: 2018. 2. 5.
  • Video Url link: https://www.youtube.com/watch?v=rp6uRjhQ_wU

ASTM B381 F2 Flanges

ASTM B381 F2 Flanges

ASME SB Grade F5 Fittings and Forging manufacturer in India

ASTM B381 – 13

Standard Specification for Titanium and Titanium Alloy Forgings

Fittings manufactured from commercially pure titanium, similar to other alloy grades can be produced in accordance with certain ASTM standards. Likewise, the ASME SB381 UNS R45400 alloys are to conform to certain requirements with regards to not only their chemistry but also other parameters such as mechanical and testing as well. Titanium like many other alloys can be heat treated. Heat treatment is carried out on the ASTM B381 F2 Socket Weld Cap in order to reduce residual stresses that usually occur during fabrication or what is referred to as a stress Relieving process. Heat treating the Titanium B381-f2 Socketweld Fitting usually leads to an optimum combination of machinability and ductility. Moreover, annealing the B381 F2 Material provides the metal with dimensional structural stability.

Titanium Grade 2 falls under the category of commercially pure metals in the titanium group. Considered to be much better than titanium grade 1 in terms of its tensile properties, their corrosion resistance properties are almost similar. Referred to by its trade name UNS R45400, titanium ASTM B381 Gr F2 Tee exhibits excellent resistance to corrosion as mentioned earlier, in addition to which the alloy has good formability and weldable characteristics. More often than not these characteristics of the ASTM B381 Grade F2 Forgings are deemed important in many critical applications, especially those involving the aerospace industry.

The ASTM B381 specification covers Flanges, Forged Fittings and Forgings in Titanium grade 1 and 2.

ASTM B381 Material Stock

1.1 ASTM B381 specification covers 39 grades of annealed titanium and titanium alloy forgings as follows:

1.1.1 Grade F-1—UNS R50250. Unalloyed titanium,

1.1.2 Grade F-2—UNS R50400. Unalloyed titanium,

1.1.2.1 Grade F-2H—UNS R50400. Unalloyed titanium (Grade 2 with 58 ksi (400 MPa) minimum UTS),

1.1.3 Grade F-3—UNS R50550. Unalloyed titanium,

1.1.4 Grade F-4—UNS R50700. Unalloyed titanium,

1.1.5 Grade F-5—UNS R56400. Titanium alloy (6 % aluminum, 4 % vanadium),

1.1.6 Grade F-6—UNS R54520. Titanium alloy (5 % aluminum, 2.5 % tin),

1.1.7 Grade F-7—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium,

1.1.7.1 Grade F-7H—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium (Grade 7 with 58 ksi (400 MPa) minimum UTS),

1.1.8 Grade F-9—UNS R56320. Titanium alloy (3 % aluminum, 2.5 % vanadium),

1.1.9 Grade F-11—UNS R52250. Unalloyed titanium plus 0.12 to 0.25 % palladium,

1.1.10 Grade F-12—UNS R53400. Titanium alloy (0.3 % molybdenum, 0.8 % nickel),

1.1.11 Grade F-13—UNS R53413. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.12 Grade F-14—UNS R53414. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.13 Grade F-15—UNS R53415. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.14 Grade F-16—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladium,

1.1.14.1 Grade F-16H—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladium (Grade 16 with 58 ksi (400 MPa) minimum UTS),

1.1.15 Grade F-17—UNS R52252. Unalloyed titanium plus 0.04 to 0.08 % palladium,

1.1.16 Grade F-18—UNS R56322. Titanium alloy (3 % aluminum, 2.5 % vanadium) plus 0.04 % to 0.08 % palladium,

1.1.17 Grade F-19—UNS R58640. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum),

1.1.18 Grade F-20—UNS R58645. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum) plus 0.04 to 0.08 % palladium,

1.1.19 Grade F-21—UNS R58210. Titanium alloy (3 % aluminum, 2.7 % niobium, 15 % molybdenum, 0.25 % silicon),

1.1.20 Grade F-23—UNS R56407. Titanium alloy (6 % aluminum, 4 % vanadium, extra low interstitials, ELI),

1.1.21 Grade F-24—UNS R56405. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.04 to 0.08 % palladium,

1.1.22 Grade F-25—UNS R56403. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.3 to 0.8 % nickel and 0.04 to 0.08 % palladium,

1.1.23 Grade F-26—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

1.1.23.1 Grade F-26H—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium (Grade 26 with 58 ksi (400 MPa) minimum UTS),

1.1.24 Grade F-27—UNS R52254. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

1.1.25 Grade F-28—UNS R56323. Titanium alloy (3 % aluminum, 2.5 % vanadium plus 0.08 to 0.14 % ruthenium),

1.1.26 Grade F-29—UNS R56404. Titanium alloy (6 % aluminum, 4 % vanadium, extra low interstitial, ELI plus 0.08 to 0.14 % ruthenium),

1.1.27 Grade F-30—UNS R53530. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

1.1.28 Grade F-31—UNS R53532. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

1.1.29 Grade F-32—UNS R55111. Titanium alloy (5 % aluminum, 1 % vanadium, 1 % tin, 1 % zirconium, 0.8 % molybdenum),

1.1.30 Grade F-33—UNS R53442. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

1.1.31 Grade F-34—UNS R53445. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

1.1.32 Grade F-35—UNS R56340. Titanium alloy (4.5 % aluminum, 2 % molybdenum, 1.6 % vanadium, 0.5 % iron, 0.3 % silicon),

1.1.33 Grade F-36—UNS R58450. Titanium alloy (45 % niobium),

1.1.34 Grade F-37—UNS R52815. Titanium alloy (1.5 % aluminum), and

1.1.35 Grade F-38—UNS R54250. Titanium alloy (4 % aluminum, 2.5 % vanadium, 1.5 % iron).

Note 1—H grade material is identical to the corresponding numeric grade (that is, Grade 2H = Grade 2) except for the higher guaranteed minimum UTS, and may always be certified as meeting the requirements of its corresponding numeric grade. Grades 2H, 7H, 16H, and 26H are intended primarily for pressure vessel use.

1.2 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

We stock wide variety of B381 F2 Socketweld Fitting at Lowest Possible Price

B381 F2 Material Mechanical Properties Chart

TENSILE STRENGTH YIELD STRENGTH (0.2%OFFSET) ELONGATION 380 585 20 %

ASTM B381 F2 Socketweld Fittings Chemical And Physical Properties

GRADE C MN SI P S CR MO Alloy Steel F2 0.15 max 0.3-0.6 0.5-1.0 0.03 0.03 8-10 0.9-1.1

Standard Specification for Titanium and Titanium Alloy Forgings

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astm b381, astm b381 f3, astm b381 f2, astm b381 gr 2

ASTM B381

Manufacturer, Supplier and Exporter of ASTM B381 Forging, ASTM B381 MATERIAL, ASTM B381 F5, ASTM B381 F3, ASTM B381 GR 5

Stockist of ASTM B381 GR F2, ASTM B381 F12, TITANIO ASTM B381 F2, ASTM B381 GRADE 5. Check price of ASTM B381 TITANIUM FORGING

At Steel Tubes India, we ensure that our ASTM B381 Forgings meet the highest national and international standards. As such, we carry out various tests on our Titanium Grade 1 Forgings, such as surface inspection, X-ray and ultrasonic test. We also carry out other tests on our Titanium Grade 2 Flanges inclusive of Intergranular Corrosion Test, Hardness Test, Flattening Test, Pitting Resistance Test, Spectro Analysis, Micro and MacroTest, PMI Testing, etc. We also provide our clients with various kinds of documentation such as Guarantee Letter, Fumigation Certificates, Heat Treatment Charts, Raw Material Test Reports, NABL approved Laboratory Test Reports, Form A, Material Traceability Records, Certificate of Origin legalized, etc.

The specification of ASTM B381 covers flanges and forgings that are of titanium. Titanium Grade 2 Forged Fittings have very good mechanical hardness, excellent strength and they are very good at resisting corrosion. They are used in turbine disks, valve bodies, bolts, crank shafts, gears, disks, connecting rods, etc. Titanium Grade 2 Forgings have UNS R50400 and WERKSTOFF NR. 3.7035. The Chemical Composition of Titanium Grade 2 is Fe 0.3 max, N 0.03 max, Ti 99.2 min, O 0.25 max, C 0.1 max and H 0.015 max. Titanium forgings are also used in aircraft, particularly in rotating parts of aircraft such as shafts and engine disks.

Titanium Grade 1 Forged Fittings are widely used for many reasons, top of the list being that they are rust proof, extremely efficient and they have a very long life. Titanium Grade 1 Flanges have very good formability superb ductility and excellent strength. It is possible to weld these forgings, using any of the standard welding methods that are employed with austenitic stainless steels.

We, Steel Tubes India, are manufacturers and suppliers of ASTM B381 UNS R50250 forgings and these are obtainable from us in standards such as BS 3799, ASME 16.11, MSS SP-79, 97, 95 and 83 and in sizes of 1/8” NB – 4” NB. We supply these forgings to clients all over the globe, in specifications of ASTM B381 & ASME B381 and classes of Gr 20 LBS, 3000 LBS, 2000 LBS and 9000 LBS. We also supply our clients with Material Test Certificates (MTC) as per EN 10204 3.1 and EN 10204 3.2. For all your needs of forgings of ASTM B381 UNS R50400 material, at the best price possible, be sure to call us, you will be happy you did.

ASTM B381 – 13

Standard Specification for Titanium and Titanium Alloy Forgings

This specification covers 39 grades of annealed titanium and titanium alloy forgings as Grade F-1, Grade F-2, Grade F-2H, Grade F-3, Grade F-4, Grade F-5, Grade F-6, Grade F-7, Grade F-7H, Grade F-9, Grade F-11, Grade F-12, Grade F-13, Grade F-14, Grade F-15, Grade F-16, Grade F-16H, Grade F-17, Grade F-18, Grade F-19 Grade F-20, Grade F-21, Grade F-23, Grade F-24, Grade F-25, Grade F-26, Grade F-26H, Grade F-27, Grade F-28, Grade F-29, Grade F-30, Grade F-31, Grade F-32, Grade F-33, Grade F-34, Grade F-35, Grade F-36, Grade F-37, and Grade F-38. The grades of titanium and titanium alloy metal covered by this specification shall conform to the requirements as to chemical composition prescribed. Forgings supplied under this specification shall conform to the requirements as to mechanical properties specified, as applicable, such as tensile strength, yield strength, and elongation. Nondestructive test requirements such as ultrasonic test, X-ray, or surface inspection shall be specified by the purchaser, if required.

The ASTM B381 specification covers Flanges, Forged Fittings and Forgings in Titanium grade 1 and Titanium grade 2.

Ref: https://www.astm.org/Standards/B381.htm

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1.1 ASTM B381 specification covers 39 grades of annealed titanium and titanium alloy forgings as follows:

1.1.1 Grade F-1—UNS R50250. Unalloyed titanium,

1.1.2 Grade F-2—UNS R50400. Unalloyed titanium,

1.1.2.1 Grade F-2H—UNS R50400. Unalloyed titanium (Grade 2 with 58 ksi (400 MPa) minimum UTS),

1.1.3 Grade F-3—UNS R50550. Unalloyed titanium,

1.1.4 Grade F-4—UNS R50700. Unalloyed titanium,

1.1.5 Grade F-5—UNS R56400. Titanium alloy (6 % aluminum, 4 % vanadium),

1.1.6 Grade F-6—UNS R54520. Titanium alloy (5 % aluminum, 2.5 % tin),

1.1.7 Grade F-7—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium,

1.1.7.1 Grade F-7H—UNS R52400. Unalloyed titanium plus 0.12 to 0.25 % palladium (Grade 7 with 58 ksi (400 MPa) minimum UTS),

1.1.8 Grade F-9—UNS R56320. Titanium alloy (3 % aluminum, 2.5 % vanadium),

1.1.9 Grade F-11—UNS R52250. Unalloyed titanium plus 0.12 to 0.25 % palladium,

1.1.10 Grade F-12—UNS R53400. Titanium alloy (0.3 % molybdenum, 0.8 % nickel),

1.1.11 Grade F-13—UNS R53413. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.12 Grade F-14—UNS R53414. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.13 Grade F-15—UNS R53415. Titanium alloy (0.5 % nickel, 0.05 % ruthenium),

1.1.14 Grade F-16—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladium,

1.1.14.1 Grade F-16H—UNS R52402. Unalloyed titanium plus 0.04 to 0.08 % palladium (Grade 16 with 58 ksi (400 MPa) minimum UTS),

1.1.15 Grade F-17—UNS R52252. Unalloyed titanium plus 0.04 to 0.08 % palladium,

1.1.16 Grade F-18—UNS R56322. Titanium alloy (3 % aluminum, 2.5 % vanadium) plus 0.04 % to 0.08 % palladium,

1.1.17 Grade F-19—UNS R58640. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum),

1.1.18 Grade F-20—UNS R58645. Titanium alloy (3 % aluminum, 8 % vanadium, 6 % chromium, 4 % zirconium, 4 % molybdenum) plus 0.04 to 0.08 % palladium,

1.1.19 Grade F-21—UNS R58210. Titanium alloy (3 % aluminum, 2.7 % niobium, 15 % molybdenum, 0.25 % silicon),

1.1.20 Grade F-23—UNS R56407. Titanium alloy (6 % aluminum, 4 % vanadium, extra low interstitials, ELI),

1.1.21 Grade F-24—UNS R56405. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.04 to 0.08 % palladium,

1.1.22 Grade F-25—UNS R56403. Titanium alloy (6 % aluminum, 4 % vanadium) plus 0.3 to 0.8 % nickel and 0.04 to 0.08 % palladium,

1.1.23 Grade F-26—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

1.1.23.1 Grade F-26H—UNS R52404. Unalloyed titanium plus 0.08 to 0.14 % ruthenium (Grade 26 with 58 ksi (400 MPa) minimum UTS),

1.1.24 Grade F-27—UNS R52254. Unalloyed titanium plus 0.08 to 0.14 % ruthenium,

1.1.25 Grade F-28—UNS R56323. Titanium alloy (3 % aluminum, 2.5 % vanadium plus 0.08 to 0.14 % ruthenium),

1.1.26 Grade F-29—UNS R56404. Titanium alloy (6 % aluminum, 4 % vanadium, extra low interstitial, ELI plus 0.08 to 0.14 % ruthenium),

1.1.27 Grade F-30—UNS R53530. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

1.1.28 Grade F-31—UNS R53532. Titanium alloy (0.3 % cobalt, 0.05 % palladium),

1.1.29 Grade F-32—UNS R55111. Titanium alloy (5 % aluminum, 1 % vanadium, 1 % tin, 1 % zirconium, 0.8 % molybdenum),

1.1.30 Grade F-33—UNS R53442. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

1.1.31 Grade F-34—UNS R53445. Titanium alloy (0.4 % nickel, 0.015 % palladium, 0.025 % ruthenium, 0.15 % chromium),

1.1.32 Grade F-35—UNS R56340. Titanium alloy (4.5 % aluminum, 2 % molybdenum, 1.6 % vanadium, 0.5 % iron, 0.3 % silicon),

1.1.33 Grade F-36—UNS R58450. Titanium alloy (45 % niobium),

1.1.34 Grade F-37—UNS R52815. Titanium alloy (1.5 % aluminum), and

1.1.35 Grade F-38—UNS R54250. Titanium alloy (4 % aluminum, 2.5 % vanadium, 1.5 % iron).

Note 1—H grade material is identical to the corresponding numeric grade (that is, Grade 2H = Grade 2) except for the higher guaranteed minimum UTS, and may always be certified as meeting the requirements of its corresponding numeric grade. Grades 2H, 7H, 16H, and 26H are intended primarily for pressure vessel use.

1.2 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard.

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ASTM B381 F2 Socket weld Fitting Definition

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ASTM B381 F2 Socket Weld Fitting Range

ASTM B381 F2 Socket Weld Fitting Specification ASTM A182 / ASTM SA182, ASTM A105 / ASME SA105, ASTM A350 / ASME SA350, ASTM A694 / ASME SA694, ASTM B462 / ASME SB462 / ASTM B564 / ASME SB564, ASTM B366 / ASME SB366, ASTM B381 / ASME SB381 ASTM B381 F2 Socket Weld Fittings Manufacturing Process Forging / Socket / Threaded / Screwed ASTM B381 F2 Socket Weld Fittings Other Grades Stainless Steel – F304, F304L, F304H, F310s, F316, F316L, F317L, F321, F347, F904L, F410, F446 etc.

Carbon Steel – 105N, LF2, F42, F46, F52, F56, F60, F65 etc.

Alloy Steel – F5, F9, F11, F22, F91, 4140, Class 1, 2, 3 etc.

Duplex and Super Duplex – F51, F53, F55, UNS N031803, UNS N032750, UNS N032760 etc.

Inconel – 600, 601, 625, 718, UNS N06600, UNS N06601, UNS N06625, UNS N07718 etc.

Incoloy – 800, 800H, 800HT, 825, UNS N08800, UNS N08810, UNS N08811, UNS N08825 etc.

Monel – 400, UNS N04400 etc.

Hastelloy – C276, C22, UNS N010276, UNS N06022 etc.

Titanium – Grade 2, Grade 3, UNS R50400, UNS R56200 etc.

Copper Nickel – 90/10, 70/30, UNS C71500, UNS C70600 etc.

Other – Alloy 20, SMO 254, F44, 6 Moly, UNS N08020, UNS N031254 etc.

ASTM B381 F2 Socket Weld Fittings Outer Diameter 1/8″ NB TO 4″ NB (DN6 to DN100) ASTM B381 F2 Socket Weld Fittings Pressure Class 2000 LBS, 3000 LBS, 6000 LBS ,9000 LBS or As Per Custom Requirement ASTM B381 F2 Socket Weld Fittings Types 45 Degree Elbow, 90 Degree Elbow, Lateral, Tee, Reducer Insert, Full Coupling, Half Coupling, Reducing Coupling, Cap, Union, Cross, Boss, Plug, Bushing etc. ASTM B381 F2 Socket Weld Fittings Dimension ASME 16.11 – Socket Welding and Threaded Forged Fittings

MSS SP-79 – Socket Welding Reducer Inserts

MSS SP-83 – Socket Weld Union

MSS SP-95 – Swage(d) Nipples and Bull Plugs

BS 3799 – Specification for Steel Pipe Fittings, Screwed and Socket-welding for the petroleum industry. ASTM B381 F2 Socket Weld Fittings Other Testing Tensile, Hardness Test, Chemical Analysis – Spectro Analysis, Positive Material Identification – PMI Testing, Flattening Test, Micro and Macro Test, Pitting Resistance Test, Flaring Test, Intergranular Corrosion (IGC) Test, NACE MR0175, Ultrasound Test, ASTM A262 Practice E, Charpy Impact Test, Grain Size, Dye Penetrant Test etc. ASTM B381 F2 Socket Weld Fittings Packaging Carrate / Wooden Pallet / Wooden box-a ASTM B381 F2 Socket Weld Fittings Shipment & Transportation By Road – Truck / Train Partial Load, Full Load, By Sea – Break-bulk Conventional Vessel / FCL (Full Container Load) / LCL (Less Container Load) / 20 Feet Container / 40 Feet Container / 45 Feet Container / High Cube Container / Open Top Container, By Air – Freighter Civil Passenger and Cargo Planes ASTM B381 F2 Socket Weld Fittings Material Test Certificate Manufacturer Test Certificate As Per EN10204 3.1, 3.2 / Laboratory Test Certificate From NABL Approved Lab. / Under Third Party Inspection Agency Like SGS, TUV, DNV, LLOYDS, ABS, Bureau of Indian Standards BIS Approved ETC

ASTM B381 F2 Socket Weld Fittings Chemical Composition and Mechanical Properties

The chemical composition of ASTM B381 F2 Socket Weld Fittings is outlined in the following table

Titanium Alloy Grade Nitrogen, max Carbon, max Hydrogen, max Iron, max Oxygen, max Aluminum Vanadium Residuals,

max each Residuals,

max total Titanium Titanium Grade 2 / UNS R50400 0.03 0.08 0.015 0.30 0.25 … … 0.1 0.4 Balance Titanium Grade 5 / UNS R56400 0.05 0.08 0.015 0.40 0.20 5.5-6.75 3.5-4.5 0.1 0.4 Balance

Material Tensile Strength,

(0.2% Offset),

min, or Range ksi [MPa] Yield Strength,

min, ksi [MPa] Elongation in

4D,min, % Reduction of Area

min, % Titanium Grade 2 (UNS R50400) 50 [345] 40 [275] 20 30 Titanium Grade 5 (UNS R56400) 130 [550] 120 [828] 10 25

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ASTM B381 F2 Socket Weld Fittings Types

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ASTM B381 Specification

ASTM B381 Specification Home

Specifications

ASTM B381

This specification2 covers 39 grades of annealed titanium and titanium alloy forgings.

Chemical Composition

Grade Tensile Strength, min Yield Strength (0.2 % Offset), min or Range Elongation in 4D, min, % Reduction of Area, min, % ksi (MPa) ksi (MPa) F-1 35 (240) 20 (138) 24 30 F-2 50 (345) 40 (275) 20 30 F-2HB,C 58 (400) 40 (275) 20 30 F-3 65t (450)t 55 (380) 18 30 F-4 80t (550)t 70 (483) 15 25 F-5 130 (895) 120 (828) 10 25 F-6 120 (828) 115 (795) 10 25 F-7 50 (345) 40 (275) 20 30 F-7HB,C 58 (400) 40 (275) 20 30 F-9 120 (828) 110 (759) 10 25 F-9D 90 (620) 70 (483) 15 25 F-11 35 (240) 20 (138) 24 30 F-12 70 (483) 50 (345) 18 25 F-13 40 (275) 25 (170) 24 30 F-14 60 (410) 40 (275) 20 30 F-15 70 (483) 55 (380) 18 25 F-16 50 (345) 40 (275) 20 30 F-16HB,C 58 (400) 40 (275) 20 30 F-17 35 (240) 20 (138) 24 30 F-18 90 (620) 70 (483) 15 25 F-18D 90 (620) 70 (483) 12 20 F-19E 115 (793) 110 (759) 15 25 F-19F 135 (930) 130 to 159 (897) to (1096) 10 20 F-19G 165 (1138) 160 to 185 (1104) to (1276) 5 20 F-20E 115 (793) 110 (759) 15 25 F-20F 135 (930) 130 to 159 (897) to (1096) 10 20 F-20G 165 (1138) 160 to 185 (1104) to (1276) 5 20 F-21E 115 (793) 110 (759) 15 35 F-21F 140 (966) 130 to 159 (897) to (1096) 10 30 F-21G 170 (1172) 160 to 185 (1104) to (1276) 8 20 F-23 120 (828) 110 (759) 10 25 F-23D 120 (828) 110 (759) 7.5H, 6.01 25 F-24 130 (895) 120 (828) 10 25 F-25 130 (895) 120 (828) 10 25 F-26 50 (345) 40 (275) 20 30 F-26HB,C 58 (400) 40 (275) 20 30 F-27 35 (240) 20 (138) 24 30 F-28 90 (620) 70 (483) 15 25 F-28D 90 (620) 70 (483) 12 20 F-29 120 (828) 110 (759) 10 25 F-29D 120 (828) 110 {759) 7.5H, 6.01 15 F-30 50 (345) 40 (275) 20 30 F-31 65 (450) 55 (380) 18 30 F-32 100 (689) 85 (586) 10 25 F-33 50 (345) 40 (275) 20 30 F-34 65 (450) 55 (380) 18 30 F-35 130 (895) 120 (828) 5 20 F-36 65 (450) 60 to 95 (410 to 655) 10 F-37 50 (345) 31 (215) 20 30 F-38 130 (895) 115 (794) 10 25

A. These properties apply to forgings having a cross section no greater than 3 in.2 (1935 mm2). Mechanical properties of forgings having greater cross sections shall be negotiated between the manufacturer and the purchaser.

B. Material is identical to the corresponding numeric grade (that is, Grade F-2H = Grade F-2) except for the higher guaranteed minimum UTS, and may be dual certified with its corresponding numeric grade. Grade F-2H, F-7H, F-16H, and F-26H are intended primarily for pressure vessel use.

C. The H grades were added in response to a user association request based on its study of over 5200 commercial Grade 2, 7, 16, and 26 test reports where over 99 % met the 58 ksi minimum UTS.

D. Properties for material in transformed-beta condition.

E. Properties for material in the solution treated condition.

F. Properties for solution treated and aged condition-Moderate strength (determined by aging temperature).

G. Properties for solution treated and aged condition-High Strength (determined by aging temperature).

H. For product section or wall thickness values <1.0 in. I For product section or wall thickness values ≤1.0 in. † Tensile strength for Grade F-3 and F-4 was corrected editorially. Mechanical Properties Element Composition, % F-1 F-2 F-2H F-3 F-4 F-5 F-6 F-7 F-7H F-9 F-11 F-12 Nitrogen,max 0.03 0.03 0.03 0.05 0.05 0.05 0.03 0.03 0.03 0.03 0.03 0.03 Carbon,max 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.08 Hydrogen,8·c max 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.015 Iron, max 0.20 0.30 0.30 0.30 0.50 0.40 0.50 0.30 0.30 0.25 0.20 0.30 Oxygen, max 0.18 0.25 0.25 0.35 0.40 0.20 0.20 0.25 0.25 0.15 0.18 0.25 Aluminum ... ... ... ... ... 5.5-6.75 4.0-6.0 ... ... 2.5-3.5 ... ... Vanadium ... ... ... ... ... 3.5-4.5 ... ... ... 2.0-3.0 ... ... Tin ... ... ... ... ... ... 2.0-3.0 ... ... ... ... ... Ruthenium ... ... ... ... ... ... ... ... ... ... ... ... Palladium ... ... ... ... ... ... ... 0.12-0.25 0.12-0.25 ... 0.12-0.25 ... Cobalt ... ... ... ... ... ... ... ... ... ... ... ... Molybdenum ... ... ... ... ... ... ... ... ... ... ... 0.2-0.4 Chromium ... ... ... ... ... ... ... ... ... ... ... 0.6-0.9 Nickel ... ... ... ... ... ... ... ... ... ... ... ... Niobium ... ... ... ... ... ... ... ... ... ... ... ... Zirconium ... ... ... ... ... ... ... ... ... ... ... ... Silicon ... ... ... ... ... ... ... ... ... ... ... ... Residuals, max eachD,E,F 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 Residuals, max totalD,E,F 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 TitaniumG balance balance balance balance balance balance balance balance balance balance balance balance Element Composition, % F-13 F-14 F-15 F-16 F-16H F-17 F-18 F-19 F-20 F-21 F-23 Nitrogen, max 0.03 0.03 0.05 0.03 0.03 0.03 0.03 0.03 0.03 0.03 0.03 Carbon, max 0.08 0.08 0.08 0.08 0.08 0.08 0.08 0.05 0.05 0.05 0.08 Hydrogen,B,C max 0.015 0.015 0.015 0.015 0.015 0.015 0.015 0.02 0.02 0.015 0.0125 Iron, max 0.20 0.30 0.30 0.30 0.30 0.20 0.25 0.30 0.30 0.40 0.25 Oxygen, max 0.10 0.15 0.25 0.25 0.25 0.18 0.15 0.12 0.12 0.17 0.13 Aluminum ... ... ... ... ... ... 2.5-3.5 3.0-4.0 3.0-4.0 2.5-3.5 5.5-6.5 Vanadium ... ... ... ... ... ... 2.0–3.0 7.5-8.5 7.5-8.5 ... 3.5-4.5 Tin ... ... ... ... ... ... ... ... ... ... ... Ruthenium 0.04-0.06 0.04-0.06 0.04-0.06 ... ... ... ... ... ... ... ... Palladium ... ... ... 0.04-0.08 0.04-0.08 0.04-0.08 0.04-0.08 ... 0.04-0.08 ... ... Cobalt ... ... ... ... ... ... ... ... ... ... ... Molybdenum ... ... ... ... ... ... ... 3.5-4.5 3.5-4.5 14.0-16.0 ... Chromium ... ... ... ... ... ... ... 5.5-6.5 5.5-6.5 ... ... Nickel 0.4-0.6 0.4-0.6 0.4-0.6 ... ... ... ... ... ... ... ... Niobium ... ... ... ... ... ... ... ... ... 2.2-3.2 ... Zirconium ... ... ... ... ... ... ... 3.5-4.5 3.5-4.5 ... ... Silicon ... ... ... ... ... ... ... ... ... 0.15-0.25 ... Residuals,D,E,F max each 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.15 0.15 0.1 0.1 Residuals,D,E,F max total 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 TitaniumG balance balance balance balance balance balance balance balance balance balance balance Element Composition, % F-24 F-25 F-26 F-26H F-27 F-28 F-29 Nitrogen, max 0.05 0.05 0.03 0.03 0.03 0.03 0.03 Carbon, max 0.08 0.08 0.08 0.08 0.08 0.08 0.08 Hydrogen,B,C max 0.015 0.0125 0.015 0.015 0.015 0.015 0.015 Iron, max 0.40 0.40 0.30 0.30 0.20 0.25 0.25 Oxygen, max 0.20 0.20 0.25 0.25 0.18 0.15 0.13 Aluminum 5.5-6.75 5.5-6.75 ... ... ... 2.5-3.5 5.5-6.5 Vanadium 3.5-4.5 3.5-4.5 ... ... ... 2.0-3.0 3.5-4.5 Tin ... ... ... ... ... ... ... Ruthenium ... ... 0.08-0.14 0.8-0.14 0.08-0.14 0.08-0.14 0.08-0.14 Palladium 0.04–0.08 0.04–0.08 ... ... ... ... ... Cobalt ... ... ... ... ... ... ... Molybdenum ... ... ... ... ... ... ... Chromium ... ... ... ... ... ... ... Nickel ... 0.3–0.8 ... ... ... ... ... Niobium ... ... ... ... ... ... ... Zirconium ... ... ... ... ... ... ... Silicon ... ... ... ... ... ... ... Residuals,D,E,F max each 0.1 0.1 0.1 0.1 0.1 0.1 0.1 Residuals,D,E,F max total 0.4 0.4 0.4 0.4 0.4 0.4 0.4 TitaniumG balance balance balance balance balance balance balance Element Composition, % F-30 F-31 F-32 F-33 F-34 F-35 F-36 F-37 F-38 Nitrogen, max 0.03 0.05 0.03 0.03 0.05 0.05 0.03 0.03 0.03 Carbon, max 0.08 0.08 0.08 0.08 0.08 0.08 0.04 0.08 0.08 Hydrogen,B,C max 0.015 0.015 0.015 0.015 0.015 0.015 0.0035 0.015 0.015 Iron, max 0.30 0.30 0.25 0.30 0.30 0.20-0.80 0.03 0.30 1.2-1.8 Oxygen, max 0.25 0.35 0.11 0.25 0.35 0.25 0.16 0.25 0.20-0.30 Aluminum ... ... 4.5-5.5 ... ... 4.0-5.0 ... 1.0-2.0 3.5-4.5 Vanadium ... ... 0.6-1.4 ... ... 1.1-2.1 ... ... 2.0-3.0 Tin ... ... 0.6-1.4 ... ... ... ... ... ... Ruthenium ... ... ... 0.02-0.04 0.02-0.04 ... ... ... ... Palladium 0.04-0.08 0.04-0.08 ... 0.01-0.02 0.01-0.02 ... ... ... ... Cobalt 0.20-0.80 0.20-0.80 ... ... ... ... ... ... ... Molybdenum ... ... 0.6-1.2 ... ... 1.5-2.5 ... ... ... Chromium ... ... ... 0.1-0.2 0.1-0.2 ... ... ... ... Nickel ... ... ... 0.35·0.55 0.35 0.55 ... ... ... ... Niobium ... ... ... ... ... ... 42.0-47.0 ... ... Zirconium ... ... 0.6-1.4 ... ... ... ... ... ... Silicon ... ... 0.06-0.14 ... ... 0.20-0.40 ... ... ... Residuals,D,E,F max each 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 0.1 Residuals,D,E,F max total 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 0.4 TitaniumG balance balance balance Remainder Remainder Remainder Remainder Remainder balance A. Analysis shall be completed for all elements listed in this table for each grade. The analysis results for the elements not quantified in the table need not be reported unless the concentration level is greater than 0.1 % each or 0.4 % total. B. Lower hydrogen may be obtained by negotiation with the manufacturer. C. Final product analysis. D. Need not be reported. E. A residual is an element present in a metal or an alloy in small quantities and is inherent to the manufacturing process but not added intentionally. In titanium these elements include aluminum, vanadium, tin, chromium, molybdenum, niobium, zirconium, hafnium, bismuth, ruthenium, palladium, yttrium, copper, silicon, cobalt, tantalum, nickel, boron, manganese, and tungsten. F. The purchaser may, in his written purchase order, request analysis for specific residual elements not listed in this specification. G. The percentage of titanium is determined by difference.

ASTM B381 F2 Titanium Supper Alloy Froged Ball Valve

Product Description

ASTM B381 F2 Titanium Supper Alloy Froged Ball Valve

Applicable Standards:

Ball Valve design according to API6D,BS5351,ASME B16.34

Face to face ASME B16.10,AP6D

End Flanges ASME B16.5/ASME B16.47

Butt welded ends ASME B16.25

Fire Safety API607,API6A

Inspection and test API 598,API6D

Material: ASTM B381 F2

Size Range: 1/2″~8″

Pressure Rating: ASME CL, 150, 300, 600

Temperature Range: -196°C~600°C

Design Description:

– Two Pieces or Three Pieces Body

– Metal or Soft Seated

– Full or Reduced Bore

– Flanged or Butt Welded Ends

– Anti Blow Out Stem

– Anti Static Device

– Fire Safe Design

– Locking device

– ISO Mounting Pads (Optional)

Brand DIDTEK Structure Ball Valve Material Didtek provide cast steel, stainless steel, special alloy, CI, DI etc Valve Type Didtek Produce Ball Valve Valve Test 100% quantity tested before delivery Valve Guarantee 18 months after shipments and 12 months after installed Valve Structure Ball Valve Valve Delivery 15 – 30 days Valve Sample Sample Available by Didtek Valve Valve Color Customer request Valve Packing Plywood Case for Ball Valve MOQ 1 Set Valve Certificate API6D/CE/ISO9001/ISO14001 Place of Origin Zhejiang, China (Mainland) Delivery Detail: Shipped in 15-30 days after payment Port Shanghai Or Ningbo Payment Terms L/C,D/A,D/P,T/T, Western Union

Application & Function:

Didtek Cast Floating Metal Seated Ball Valve can be used to handle a variety of liquids, suspended solids and gases in many type of industry. Ball valves are suited for fluid flow requiring assured performance, tight shutoff, constant torque and no maintenance.

Didtek Cast Floating Metal Seated Ball Valve offer quick, quarter-turn operation, visual indication of the valve position, straight uninterrupted flow, and compact size. The full bore design minimizes pressure drop across valve while maximizing flow capability and throughput economy for general line services.

Accessories:

Accessories such as worm gear operator, actuators, locking devices, chain wheels, extended stem for cryogenic service and many others are available to meet the customer’s requirements.

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