This document specifies an infrared absorption method after combustion in an induction furnace under oxygen atmosphere for the determination of carbon in titanium and titanium alloys. The method is applicable to carbon contents between 0,003 % (mass fraction) and 0,050 % (mass fraction).

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This document specifies requirements for the manufacture and technical delivery conditions of bar, rod and billet made from titanium and titanium alloys.

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This document specifies requirements for the manufacture and technical delivery conditions of plate, sheet and strip made from titanium and titanium alloys.

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This document specifies general requirements for the manufacture and technical delivery conditions of strips made from titanium and titanium alloys for welded tubes.

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This document specifies a designation system of titanium and titanium alloys in terms of their chemical composition and impurities contents.

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This document specifies requirements for the classification of solid wire electrodes, solid wires and
rods for fusion welding of titanium and titanium alloys. The classification is based on their chemical
composition.
The compositions of solid wire electrodes for metal inert gas (MIG) welding are the same as solid wire
electrodes, solid wires and rods for tungsten inert gas (TIG) arc welding, plasma arc welding, laser
beam welding, and other fusion welding processes.

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This International Standard specifies properties of titanium sponge used for malleable materials and castings.

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ISO 28401:2010 gives a classification of titanium and titanium alloys. It also gives terms and definitions in the field of titanium and its alloys.

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ISO 22962:2008 specifies an inductively coupled plasma atomic emission spectrometric method for the determination of the mass fraction of iron in titanium and titanium alloys. The method is applicable to titanium and titanium alloys with a mass fraction of iron in the range from 0,01 % to 3,0 %.

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ISO 12963:2008 specifies an infrared method after fusion under inert gas for the determination of the mass fraction of oxygen in titanium and titanium alloys. The method is applicable to titanium and titanium alloys with a mass fraction of oxygen in the range from 0,02 % to 0,4 %.

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ISO 22961:2008 specifies an atomic absorption spectrometric method for the determination of the mass fraction of iron in titanium and titanium alloys. The method is applicable to titanium and titanium alloys with a mass fraction of iron in the range from 0,005 % to 2,0 %.

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ISO 22960:2008 specifies a molecular absorption spectrometric method using 1, 10-phenanthroline for the determination of the mass fraction of iron in titanium and titanium alloys. The method is applicable to titanium and titanium alloys with a mass fraction of iron in the range from 0,005 % to 2,0 %.

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This standard is part of a series of standards, details of this series are given in prEN ISO 15607:2000, annex A.
This standard specifies how a preliminary welding procedure specification is qualified by welding procedure tests.
This standard defines the conditions for the execution of welding procedure tests and the range of qualification for welding procedures for all practical welding operations within the range of variables listed in clause 8.
Tests shall be carried out in accordance with this standard. Additional tests may be required by application standards.
This standard applies to the arc welding of titanium, zirconium and their alloys in all product forms.
Arc welding is covered by the following processes in accordance with EN ISO 4063.
131 - metal inert gas welding, MIG welding
141 - tungsten inert gas welding, TIG welding
15 - plasma arc welding
The principles of this standard may be applied to other fusion welding processes.

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This standard specifies essential requirements, ranges of approval, test conditions, acceptance requirements and certification for the approval testing of welder performance for the welding of titanium and zirconium. This standard applies to the approval testing of welders for the fusion welding of titanium and zirconium. This standard is intended to provide basis for the mutual recognition by examining bodies for approval relating to welders' competence in the various fields of application.

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ISO 5832-3:2016 specifies the characteristics of, and corresponding test methods for, the wrought titanium alloy known as titanium 6-aluminium 4-vanadium alloy (Ti 6-AI4-V alloy) for use in the manufacture of surgical implants.
NOTE The mechanical properties of a sample obtained from a finished product made of this alloy may not necessarily comply with the specifications given in this part of ISO 5832.

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ISO 24034:2010 specifies requirements for the classification of solid wire electrodes, solid wires and rods for fusion welding of titanium and titanium alloys. The classification is based on their chemical composition.
The compositions of solid wire electrodes for metal inert gas (MIG) welding are the same as solid wire electrodes, solid wires and rods for tungsten inert gas (TIG) arc welding, plasma arc welding, laser beam welding, and other fusion welding processes.

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This part of ISO 5832 specifies the characteristics of, and corresponding test methods for, unalloyed titanium for use in the manufacture of surgical implants. Provision is made for six grades of titanium based on tensile strength (see Table 2). NOTE The mechanical properties of a sample obtained from a finished product made of this metal may not necessarily comply with those specified in this part of ISO 5832.

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This document specifies the characteristics of, and corresponding test methods for, unalloyed titanium for use in the manufacture of surgical and dental implants.

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This part of ISO 5832 specifies the characteristics of, and corresponding test methods for, the wrought titanium alloy known as titanium 6-aluminium 4-vanadium alloy (Ti 6-AI 4-V alloy) for use in the manufacture of surgical implants.

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Specifies the characteristics of, and corresponding test methods for, the wrought titanium alloy known as titanium 6-aluminium 4-vanadium alloy (Ti 6-Al 4-V alloy) for use in the manufacture of surgical implants.

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