This part of ISO 15616 provides minimum requirements for acceptance testing, using practical test methods, for CO2-laser beam machines for high quality welding and cutting in two dimensions (2-D), having a fixed workpiece on the platen and moving optics.
This part of ISO 15616 is not applicable to CO2-laser beam machines which use an articulated robot, nor does it apply to work stations, such as a welding positioner, fixed board cutter, etc.
This part of ISO 15616 does not cover hazard pr...
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This International Standard specifies the dimensions and
tolerances for male electrode caps for resistance spot welding
when a female taper (see IS0 1089) is used to fix the electrode
adaptor (see IS0 5829).
It only applies to electrode caps for which the electrode force
Fmsx, given for the diameter dl, does not exceed 4,O kN.

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This document specifies the requirements for the qualification of welding personnel for friction stir spot welding (FSSW) of aluminium.
In this document, the term "aluminium" refers to aluminium and its alloys.
This document does not apply to personnel exclusively performing loading or unloading of the automatic welding unit.

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This document describes a method for defining requirements and assuring component integrity for plastic parts created using material extrusion based additive manufacturing processes. It covers the process, equipment and operational parameters. Processes include all material extrusion based additive manufacturing processes.

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Specifies the dimensions and tolerances of resistance spot welding electrode adaptors where the fixing element for the cap is a female taper (male electrode cap, see ISO 5830) and for which the electrode taper fits conform to ISO 1089. Covers also designation, material and marking.

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ISO 20168:2016 specifies the dimensions and tolerances for electrode holders and of spot welding electrode caps, where a locking taper is used.

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ISO 10656:2016 specifies additional requirements to those given in ISO 5826 for single-phase transformers used in AC welding. It is intended to be used in conjunction with ISO 5826, whose requirements it amends.

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This document defines friction stir spot welding (FSSW) process terms and definitions.
In this document, the term "aluminium" refers to aluminium and its alloys.

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This document specifies a method to determine the capability of a manufacturer to use friction stir spot welding (FSSW) for production of products of the specified quality.
It specifies quality requirements, but does not assign those requirements to any specific product group.
In this document, the term "aluminium" refers to aluminium and its alloys.

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This International Standard specifies the requirements of the geometrical and mechanical characteristics of
pneumatic cylinders used for multiple spot welding machines and their manufacturing, delivery and test
specifications.
These cylinders for a nominal air pressure of 1 MPa (10 bar) are double-acting, with two Piston stages in
series for the advance during the operational stroke and the forte, and a Single Piston Stage for the return.

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This document specifies the design requirements and provides design guidelines for friction stir spot welding.
In this document, the term "aluminium" refers to aluminium and its alloys.

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This document specifies the requirements for the content of welding procedure specifications for the Friction Stir Spot welding (FSSW) of aluminium.
In this document, the term "aluminium" refers to aluminium and its alloys

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This document specifies requirements and test methods for the qualification of laser beam machines for metal powder bed additive manufacturing for aerospace applications.

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The principle of the method specified is to distil a prepared flux solution with sodium hydroxide to expel the ammonia present in the flux, to pass the resulting distillate into a standard sulfuric acid solution, to titrate the excess acid with sodium hydroxide solution and to calculate the ammonia content of the flux. Applies to fluxes of class 3.1.1 only, as defined in ISO 9454-1.

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This document specifies the performance requirements for fluxes in solid, liquid and paste forms
intended for use with soft solders.
NOTE 1 ISO 9454-1 specifies the requirements for labelling and packaging as well as the coding system for the
classification of the fluxes.
NOTE 2 Some of the fluxes intended for inert gas and vapour phase soldering may not pass some of the criteria
in Tables 1 and 2.
Requirements for these fluxes are agreed between the purchaser and the supplier.

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This document specifies a qualitative method for assessing the aggressiveness of a flux towards copper.
The test is applicable to all fluxes of type 1 as defined in ISO 9454-1.

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This document specifies the requirements for chemical composition for soft solder alloys containing
two or more of: tin, lead, antimony, copper, silver, bismuth, zinc, indium and/or cadmium.
An indication of the forms generally available is also included.

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This will be delivered in the form of a Technical Report. The aim of this document is to
describe the concept of Functionally Graded Additive Manufacturing and to document current
practices. It recognizes that Functionally Graded parts have the potential to support the
development of Next-Generation products, based on the use of specialised materials that
have been optimized for their functional properties. The report also clarifies the definitions of
terms being used today such as 4D Print...
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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 document specifies design requirements for friction stir weld joints.
In this document, the term “aluminium” refers to aluminium and its alloys.
This document does not apply to friction stir spot welding which is covered by the ISO 18785 series.

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This document defines terms related to friction stir welding.
In this document, the term “aluminium” refers to aluminium and its alloys.

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This document specifies the preparation of test pieces and specimens for all-weld metal tests in steel,
nickel and nickel alloys.
The test pieces and specimens are used to determine the mechanical properties of all-weld metal where
required by consumable classification standards or for other purposes, in arc welding of steel, nickel
and nickel alloys.
This document is not applicable to single- or two-run welding or fillet welding. For these cases,
ISO 15792-2 and ISO 15792-3 apply.

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This document specifies a method for determining the capability of a manufacturer to use the friction
stir welding (FSW) process for the production of products of the specified quality. It specifies quality
requirements, but does not assign those requirements to any specific product group.
In this document, the term “aluminium” refers to aluminium and its alloys.
This document does not apply to friction stir spot welding which is covered by the ISO 18785 series.

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This document specifies requirements for classification of wire electrodes and weld deposits in the
as-welded condition and in the post-weld heat-treated condition for gas shielded metal arc welding of
non alloy and fine grain steels with a minimum yield strength of up to 500 MPa or a minimum tensile
strength of up to 570 MPa. One wire electrode can be tested and classified with different shielding gases.
This document constitutes a combined specification providing classification utilizing a...
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This document specifies requirements for the qualification of welding operators for friction stir welding
(FSW) of aluminium. In this document, the term “aluminium” refers to aluminium and its alloys.
This document does not apply to “operators” as defined in ISO 25239-1.
This document does not apply to friction stir spot welding which is covered by the ISO 18785 series.

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This document specifies the preparation of butt weld test pieces and specimens.
The test pieces and specimens are used to determine the strength and impact properties of welded
joints when testing welding consumables with single-run and two-run techniques.
This document is applicable to welding consumables for arc welding of steel.
This document is not suitable for electro-slag or electro-gas welding.

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This document specifies requirements for the classification of covered electrodes and deposited metal
in the as-welded condition and in the post-weld heat-treated condition for manual metal arc welding of
non-alloy and fine grain steels with a minimum yield strength of up to 500 MPa or a minimum tensile
strength of up to 570 MPa.
This document is a combined specification providing for classification utilizing a system based on the
yield strength and the average impact energy of 47 J of all-...
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This document specifies the requirements for the specification and qualification of welding procedures
for the friction stir welding (FSW) of aluminium.
In this document, the term “aluminium” refers to aluminium and its alloys.
This document does not apply to friction stir spot welding which is covered by the ISO 18785 series.
NOTE Service requirements, materials or manufacturing conditions can require more comprehensive
testing than is specified in this document.

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This document specifies the procedure to be used for deposition of a weld metal pad for chemical
analysis.
This document applies to deposition of a weld metal pad by use of covered electrodes, wire electrodes
for gas shielded metal arc welding, tubular cored electrodes for gas shielded metal arc welding and for
non-gas shielded metal arc welding, solid rods and tubular cored rods for gas tungsten arc welding, and
wire-flux and strip-flux combinations for submerged arc welding or electroslag...
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This standard specifies requirements for the machine operator qualification of powder bed based laser
beam machines for additive manufacturing of metallic parts.
This document is applicable if the machine operator qualification testing is required by contract or by
application standards.
Note: The term "operator" refers to the machine operator not to the programmer.

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This document specifies the application of the time-of-flight diffraction (TOFD) technique to the
semi- or fully automated ultrasonic testing of fusion-welded joints in metallic materials of minimum
thickness 6 mm.
It applies to full penetration welded joints of simple geometry in plates, pipes, and vessels, where both
the weld and the parent material are low-alloyed carbon steel. Where specified and appropriate, TOFD
can also be used on other types of materials that exhibit low ultrasonic ...
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This document provides a Japanese grouping system for materials for welding purposes, classified in
accordance with the grouping system of ISO/TR 15608.
It can also apply for other purposes, such as heat treatment, forming, and non-destructive testing.
Types of steels are listed in accordance with the grouping system of ISO/TR 15608:2017, Table 1.
Types of aluminium and aluminium alloys are listed in accordance with the grouping system of
ISO/TR 15608:2017, Table 2.
Types of titanium and t...
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This document specifies two methods for the determination of the acid value of a flux of types 1 and 2
only, as defined in ISO 9454-1.
Method A is a potentiometric titration method and is to be considered as the reference method.
Method B is an alternative, visual end‑point, titration method.

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1.1 This practice describes the operation and production control of metal powder bed fusion (PBF) machines and processes to meet critical applications such as commercial aerospace components and medical implants. The requirements contained herein are applicable for production components and mechanical test specimens using powder bed fusion (PBF) with both laser and electron beams.
1.2 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is th...
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This document provides the specification for the Additive Manufacturing File Format (AMF), an
interchange format to address the current and future needs of additive manufacturing technology.
This document specifies the requirements for the preparation, display and transmission for the AMF.
When prepared in a structured electronic format, strict adherence to an extensible markup language
(XML)[1] schema supports standards-compliant interoperability.
NOTE A W3C XML schema definition (XSD) for...
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EN-ISO 21904-2 specifies a method for testing equipment for the separation of welding fume in order to determine whether its separation efficiency meets specified requirements.The method specified does not apply to testing of filter cartridges independent of the equipment in which they are intended to be used.This document applies to equipment that is manufactured after its publication.

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ISO 21904-1 defines the general requirements for ventilation equipment used to capture and separate fumes generated by welding and allied processes, e.g. arc welding and thermal cutting.This document also specifies the test data to be marked on the capture devices.It applies to the design and manufacture of parts of the equipment including hoods for welding, ducting, filter units, air movers, systems that inform of unsafe operation and workplace practices to ensure safe working with regard to ex...view more

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EN-ISO 21904-4 specifies two methods for establishing the minimum air volume flow rate. One method is dedicated for use with captor hoods, nozzles and slot nozzles with a ratio of slot length to hose diameter of 8:1 or less. The other method is dedicated for use with on-gun extraction devices.These methods are not applicable to down draught tables.

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This International Standard deals with technical specifications for metallic powders intended
to be used in additive manufacturing and covers the following aspects:
- Documentation and traceability
- Sampling
- Particle size distribution
- Chemical composition
- Characteristic densities
- Morphology
- Flowability
- Thermal characteristics
- Cleanliness
• Packaging and storage
This International Standard does not deal with safety aspects.
In addition, this International Standard give...
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This document gives requirements and recommendations on levels of imperfections in electron and laser-beam welded joints in steel, nickel, titanium and their alloys. Three levels are given in such a way as to permit application for a wide range of welded fabrications. Quality level B corresponds to the highest requirement of the finished weld. The levels refer to production quality and not to the fitness-for-purpose of the product manufactured. This document applies to electron and laser beam we...view more

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This document is part of a series of standards dealing with specification and qualification of welding procedures. Annex A gives details of this series of standards, Annex B gives a table for the use of these standards, and Annex C gives a flow diagram for the development and qualification of a WPS. This document defines general rules for the specification and qualification of welding procedures for metallic materials. This document also refers to several other standards as regards detailed rule...view more

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This document defines welding positions for testing and production, for butt and fillet welds, in all product forms. Annex A gives examples of the limits of the slope of a weld axis and the rotation of the weld face about the weld axis for welding positions in production welds. Annex B gives a comparison of this document and US designation systems for welding positions.

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ISO 15614-7:2016 specifies how a preliminary welding procedure specification for overlay welding is qualified by welding procedure tests.
ISO 15614-7:2016 defines the conditions for 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.
ISO 15614-7:2016 applies to all welding processes suitable for overlay welding. In situations where qualification is carried out on a pre-...
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This document specifies requirements for rubber hoses (including twin hoses) for welding, cutting and allied processes. This document specifies requirements for rubber hoses for normal duty of 2 MPa (20 bar) and light duty [limited to hoses for maximum working pressure of 1 MPa (10 bar) and with bore up to and including 6,3 mm]. This document applies to hoses operated at temperatures -20 °C to +60 °C and used in: - gas welding and cutting; - arc welding under the protection of an inert or active...view more

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This document specifies requirements for the content of welding procedure specifications for gas welding processes. Details of the ISO 15609 series are given in ISO 15607. The variables listed in this document are those influencing the quality of the welded joint.

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This document specifies the maximum external gas leakage rates which are acceptable for equipment used for welding, cutting and allied processes and provides the procedures of measurement. It applies to individual components which are used in the gas supply to a blowpipe from the connecting point of the hose (outlet of the cylinder valve or connecting point to a gas supply plant). It does not apply to gas supply plant.

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    • Amendment
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This document specifies requirements for the content of welding procedure specifications for arc welding processes. Details of the ISO 15609 series are given in ISO 15607. The variables listed in this document are those influencing the quality of the welded joint.

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This document specifies a method for the assessment of the efficacy of a soft soldering flux, known as the wetting balance method. It gives a qualitative assessment of the comparative efficacy of two fluxes (for example, a standard and a test flux), based on their capacity to promote wetting of a metal surface by liquid solder. The method is applicable to all flux types in liquid form classified in ISO 9454-1.

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This document specifies test specimens and procedures for performing constant load amplitude fatigue tests on multi-spot-welded and multi-axial specimens in the thickness range from 0,5 mm to 5 mm at room temperature and a relative humidity of maximum 80 %. The applicability of this document to larger thicknesses can be limited by mechanical properties such as yield strength and formability of the specimen material. The thickness range for advanced high strength steels (AHSS) is generally below ...view more

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