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D1.9:2015 - Structural Welding Code - titanium
January 1, 2015 - AWS

The code contains the requirements for designing, fabricating, and inspecting of titanium structures. When the code is stipulated in contract documents, conformance with all provisions of the code shall be required, except for those provisions that the Engineer (see 1.4...

IEEE TRELLIS CODING - TRELLIS AND TURBO CODING
IEEE
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ASTM A217/A217M-22 - Standard Specification for Steel Castings, Martensitic Stainless and Alloy, for Pressure-Containing Parts, Suitable for High-Temperature Service
March 1, 2022 - ASTM International

This specification covers steel castings, martensitic stainless steel and alloys steel castings for valves, flanges, fittings, and other pressure-containing parts intended primarily for high-temperature and corrosive service. The grades of steels covered here are: Grade WC1, Grade WC4, Grade WC5,...

DS/EN 4035 - Aerospace series – Rod end, adjustable, with self-aligning double row ball bearing, in corrosion resisting steel, reduced internal radial clearance and threaded shank in titanium alloy – Dimensions and loads
March 15, 2021 - DS

This document specifies the characteristics of adjustable rod ends with self-aligning double row ball bearing in corrosion resisting steel with reduced internal radial clearance and threaded shank in titanium alloy, designed to withstand only slow rotations and oscillations under load. They...

ASTM B265 - Standard Specification for Titanium and Titanium Alloy Strip, Sheet, and Plate
April 1, 2020 - ASTM

This specification2 covers annealed titanium and titanium alloy strip, sheet, and plate as follows: Grade 1-UNS R50250. Unalloyed titanium, Grade 2-UNS R50400. Unalloyed titanium, Grade 2H-UNS R50400. Unalloyed titanium (Grade 2 with 58 ksi (400 MPa) minimum UTS),...

ASTM A312/A312M-21 - Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes
May 1, 2021 - ASTM International

1.1 This specification2 covers seamless, straight-seam welded, and heavily cold worked welded austenitic stainless steel pipe intended for high-temperature and general corrosive service. Note 1: When the impact test criterion for a low-temperature service would be 15 ft·lbf [20 J] energy absorption...

ASTM B348/B348M - Standard Specification for Titanium and Titanium Alloy Bars and Billets
November 1, 2019 - ASTM

This specification2 covers annealed titanium and titanium alloy bars and billets as follows: Grade 1-UNS R50250. Unalloyed titanium, Grade 2-UNS R50400. Unalloyed titanium, Grade 2H-UNS R50400. Unalloyed titanium (Grade 2 with 58 ksi [400 MPa] minimum UTS), Grade...

ASTM B363 - Standard Specification for Seamless and Welded Unalloyed Titanium and Titanium Alloy Welding Fittings
November 1, 2019 - ASTM

This specification2 covers fittings intended for general corrosion-resisting and elevated-temperature services, factory made from unalloyed titanium and titanium alloys. The term welding fittings applies to parts such as 45° and 90° elbows, 180° returns, caps, tees, reducers,...

ASD-STAN PREN 4035 - Aerospace series — Rod end, adjustable, with self-aligning double row ball bearing, in corrosion resisting steel, reduced internal radial clearance and threaded shank in titanium alloy — Dimensions and loads
January 1, 2020 - ASD-STAN

This European standard specifies the characteristics of adjustable rod ends with self-aligning double row ball bearing in corrosion resisting steel with reduced internal radial clearance and threaded shank in titanium alloy, designed to withstand only slow rotations and oscillations under...

ASTM A217/A217M-20 - Standard Specification for Steel Castings, Martensitic Stainless and Alloy, for Pressure-Containing Parts, Suitable for High-Temperature Service
May 1, 2020 - ASTM International

This specification covers steel castings, martensitic stainless steel and alloys steel castings for valves, flanges, fittings, and other pressure-containing parts intended primarily for high-temperature and corrosive service. The grades of steels covered here are: Grade WC1, Grade WC4, Grade WC5,...

ASTM A312/A312M-19 - Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes
November 1, 2019 - ASTM International

1.1 This specification2 covers seamless, straight-seam welded, and heavily cold worked welded austenitic stainless steel pipe intended for high-temperature and general corrosive service. Note 1: When the impact test criterion for a low-temperature service would be 15 ft·lbf [20 J] energy absorption...

ASTM B338 - Standard Specification for Seamless and Welded Titanium and Titanium Alloy Tubes for Condensers and Heat Exchangers
July 1, 2017 - ASTM

This specification2 covers the requirements for 28 grades of titanium and titanium alloy tubing intended for surface condensers, evaporators, and heat exchangers, as follows: Grade 1-UNS R50250. Unalloyed titanium, Grade 2-UNS R50400. Unalloyed titanium, Grade 2H-UNS...

AS269J - Identification of Material for AN, MS, and AS Engine and Propeller Standard Utility Parts and Also for Company Parts
August 9, 2018 - SAE International

This SAE Aerospace Standard (AS) provides material identification codes for aluminum alloys, copper alloys, carbon steels, alloy steels, titanium alloys, corrosion resistant materials, and heat resistant materials that are used to make AN, MS, and AS engine and propeller standard...

ASTM A312/A312M-18a - Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes
November 1, 2018 - ASTM International

1.1 This specification2 covers seamless, straight-seam welded, and heavily cold worked welded austenitic stainless steel pipe intended for high-temperature and general corrosive service. Note 1: When the impact test criterion for a low-temperature service would be 15 ft·lbf [20 J] energy absorption...

ASTM A312/A312M-18 - Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes
September 1, 2018 - ASTM International

1.1 This specification2 covers seamless, straight-seam welded, and heavily cold worked welded austenitic stainless steel pipe intended for high-temperature and general corrosive service. Note 1: When the impact test criterion for a low-temperature service would be 15 ft·lbf [20 J] energy absorption...

DIN EN ISO 10675-1 - Non-destructive testing of welds - Acceptance levels for radiographic testing - Part 1: Steel, nickel, titanium and their alloys (ISO 10675-1:2016)
April 1, 2017 - DIN

This document specifies acceptance levels for indications from imperfections in butt welds of steel, nickel, titanium and their alloys detected by radiographic testing. If agreed, the acceptance levels can be applied to other types of welds or materials. The acceptance levels can be related...

ISO 10675-1 - Non-destructive testing of welds - Acceptance levels for radiographic testing - Part 1: Steel, nickel, titanium and their alloys
December 15, 2016 - ISO

This document specifies acceptance levels for indications from imperfections in butt welds of steel, nickel, titanium and their alloys detected by radiographic testing. If agreed, the acceptance levels can be applied to other types of welds or materials. The acceptance levels can be related...

ASTM A312/A312M-17 - Standard Specification for Seamless, Welded, and Heavily Cold Worked Austenitic Stainless Steel Pipes
March 15, 2017 - ASTM International

1.1 This specification2 covers seamless, straight-seam welded, and heavily cold worked welded austenitic stainless steel pipe intended for high-temperature and general corrosive service. Note 1: When the impact test criterion for a low-temperature service would be 15 ft·lbf [20 J] energy absorption...

D17.1/D17.1M:2017 - Specification for fusion welding for aerospace applications
January 1, 2017 - AWS

This specification provides the general welding requirements for welding aircraft and space hardware. It includes but is not limited to the fusion welding of aluminum-based, nickel-based, iron-based, cobalt-based, magnesium-based, and titanium-based alloys using electric arc and high energy...

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