Welding - Arc stud welding of metallic materials (ISO 14555:2006)

This International Standard covers arc stud welding of metallic  materials subject to static and dynamic loading. It specifies  requirements that are particular to stud welding, in relation to  welding knowledge, quality requirements, welding procedure  specification, welding procedure qualification, qualification  testing of operators and testing of production welds. This  International Standard is appropriate where it is necessary to  demonstrate the capability of a manufacturer to produce  welded construction of a specified quality. This International  Standard has been prepared in a comprehensive manner, with  a view to its being used as a reference in contracts. The  requirements contained within it can be adopted in full, or  partially, if certain requirements are not relevant to a particular  construction (see Annex B).

Schweißen - Lichtbogenbolzenschweißen von metallischen Werkstoffen (ISO 14555:2006)

Diese Internationale Norm umfasst das Lichtbogenbolzenschweißen von metallischen Werkstoffen unter ruhender und nicht ruhender Belastung. Sie legt die besonderen Anforderungen beim Bolzenschweißen in Bezug auf das schweißtechnische Fachwissen, die Qualitätsanforderungen, die Schweißanweisung, die Schweißverfahrensprüfung, die Bedienerprüfung und die Prüfung von Fertigungsschweißungen fest.
Diese Internationale Norm ist anzuwenden, wenn der Nachweis des Herstellers zur Erzeugung von geschweißten Konstruktionen einer bestimmten Qualität verlangt wird.
ANMERKUNG      Allgemeine Qualitätsanforderungen für Schmelzschweißungen an metallischen Werkstoffen sind in ISO 3834-1, ISO 3834-2, ISO 3834-3, ISO 3834-4 und ISO 3834-5 festgelegt.
Diese Internationale Norm ist als umfassendes Bezugsdokument für Verträge erarbeitet worden. Die gestellten Anforderungen können vollständig oder teilweise, sofern sie für die betreffende Konstruktion nicht relevant sind, übernommen werden (siehe Anhang B).

Soudage - Soudage a l'arc des goujons sur les matériaux métalliques (ISO 14555:2006)

L'ISO 14555:2006 couvre le soudage à l'arc des goujons en matériau métallique soumis à des chargements statiques et dynamiques. Elle spécifie les exigences particulières au soudage des goujons qui se rapportent aux connaissances en soudage, aux exigences de qualité, au descriptif de mode opératoire de soudage, à la qualification du descriptif de mode opératoire de soudage, aux épreuves de qualification des opérateurs et au contrôle des soudures de production.
L'ISO 14555:2006 est appropriée lorsqu'il est exigé de démontrer la capacité d'un fabricant à produire des fabrications soudées possédant une qualité spécifiée.
L'ISO 14555:2006 a été préparée dans un esprit d'exhaustivité pour lui permettre d'être utilisée comme référence dans les contrats. Les exigences qui sont données peuvent être adoptées en intégralité ou bien certaines d'entre elles peuvent être supprimées si elles ne sont pas pertinentes par rapport à la construction concernée.

Varjenje - Obločno varjenje čepov iz kovinskih materialov (ISO 14555:2006)

General Information

Status
Withdrawn
Publication Date
28-Feb-2007
Withdrawal Date
14-May-2014
Technical Committee
Current Stage
9900 - Withdrawal (Adopted Project)
Start Date
14-May-2014
Due Date
06-Jun-2014
Completion Date
15-May-2014

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2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.Welding - Arc stud welding of metallic materials (ISO 14555:2006)Soudage - Soudage a l'arc des goujons sur les matériaux métalliques (ISO 14555:2006)Schweißen - Lichtbogenbolzenschweißen von metallischen Werkstoffen (ISO 14555:2006)Ta slovenski standard je istoveten z:EN ISO 14555:2006SIST EN ISO 14555:2007en25.160.10Varilni postopki in varjenjeWelding processesICS:SIST EN ISO 14555:19991DGRPHãþDSLOVENSKI
STANDARDSIST EN ISO 14555:200701-marec-2007







EUROPEAN STANDARDNORME EUROPÉENNEEUROPÄISCHE NORMEN ISO 14555October 2006ICS 25.160.10Supersedes EN ISO 14555:1998
English VersionWelding - Arc stud welding of metallic materials (ISO14555:2006)Soudage - Soudage à l'arc des goujons sur les matériauxmétalliques (ISO 14555:2006)Schweißen - Lichtbogenbolzenschweißen von metallischenWerkstoffen (ISO 14555:2006)This European Standard was approved by CEN on 22 September 2006.CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this EuropeanStandard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such nationalstandards may be obtained on application to the Central Secretariat or to any CEN member.This European Standard exists in three official versions (English, French, German). A version in any other language made by translationunder the responsibility of a CEN member into its own language and notified to the Central Secretariat has the same status as the officialversions.CEN members are the national standards bodies of Austria, Belgium, Cyprus, Czech Republic, Denmark, Estonia, Finland, France,Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania,Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom.EUROPEAN COMMITTEE FOR STANDARDIZATIONCOMITÉ EUROPÉEN DE NORMALISATIONEUROPÄISCHES KOMITEE FÜR NORMUNGManagement Centre: rue de Stassart, 36
B-1050 Brussels© 2006 CENAll rights of exploitation in any form and by any means reservedworldwide for CEN national Members.Ref. No. EN ISO 14555:2006: E



EN ISO 14555:2006 (E)
2
Foreword
This document (EN ISO 14555:2006) has been prepared by Technical Committee ISO/TC 44 "Welding and allied processes" in collaboration with Technical Committee CEN/TC 121 "Welding", the secretariat of which is held by DIN.
This European Standard shall be given the status of a national standard, either by publication of an identical text or by endorsement, at the latest by April 2007, and conflicting national standards shall be withdrawn at the latest by April 2007.
This document supersedes EN ISO 14555:1998.
According to the CEN/CENELEC Internal Regulations, the national standards organizations of the following countries are bound to implement this European Standard: Austria, Belgium, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, Luxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom.
Endorsement notice
The text of ISO 14555:2006 has been approved by CEN as EN ISO 14555:2006 without any modifications.



Reference numberISO 14555:2006(E)© ISO 2006
INTERNATIONAL STANDARD ISO14555Second edition2006-10-01Welding — Arc stud welding of metallic materials Soudage — Soudage à l'arc des goujons sur les matériaux métalliques



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ISO 2006 All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from either ISO at the address below or ISO's member body in the country of the requester. ISO copyright office Case postale 56 • CH-1211 Geneva 20 Tel.
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ISO 14555:2006(E) © ISO 2006 – All rights reserved iiiContents Page Foreword.v Introduction.vi 1 Scope.1 2 Normative references.1 3 Terms and definitions.2 4 Symbols and abbreviated terms.4 4.1 Symbols.4 4.2 Abbreviated terms.4 5 Technical review.5 6 Welding personnel.5 6.1 Stud-welding operators.5 6.2 Welding coordination.5 7 Equipment.6 7.1 Production equipment.6 7.2 Description of the equipment.6 7.3 Maintenance.6 8 Production planning.7 9 Welding procedure specification (WPS).7 9.1 General.7 9.2 Information related to the manufacturer.7 9.3 Information related to the parent material.7 9.4 Welding process.7 9.5 Joint.8 9.6 Studs.8 9.7 Auxiliaries.8 9.8 Power source.9 9.9 Movable fixtures.9 9.10 Welding variables.9 9.11 Thermal conditions.10 9.12 Post-weld heat-treatment.10 9.13 Non-thermal treatment after welding.10 10 Welding procedure qualification.10 10.1 Principles.10 10.2 Welding procedure tests.10 10.3 Pre-production tests.14 10.4 Previous experience.14 10.5 Welding procedure qualification record (WPQR).15 11 Examination and testing.15 11.1 General.15 11.2 Visual examination.15 11.3 Bend testing.15 11.4 Tensile testing.18 11.5 Torque test.21 11.6 Macro examination.22 11.7 Radiographic examination.22



ISO 14555:2006(E) iv © ISO 2006 – All rights reserved 12 Acceptance criteria.22 12.1 General.22 12.2 Acceptance criteria for visual examination.23 12.3 Acceptance criteria for bend testing.23 12.4 Acceptance criteria for tensile testing.23 12.5 Acceptance criteria for torque testing.23 12.6 Acceptance criteria for macro examination.23 12.7 Acceptance criteria for radiographic examination.23 12.8 Acceptance criteria for additional tests.24 13 Workmanship.24 14 Process control.24 14.1 General.24 14.2 Production test.25 14.3 Simplified production test.25 14.4 Re-testing for production test or simplified production test.26 14.5 Production surveillance.26 14.6 Production surveillance record.26 14.7 Non-conformance and corrective actions.26 14.8 Calibration of the measuring and testing equipment.27 Annex A (informative)
Processing of stud welding.28 Annex B (normative)
Quality requirements for stud welding.48 Annex C (informative)
Manufacturer's welding procedure specification (WPS).49 Annex D (informative)
Welding procedure qualification record form (WPQR) (for drawn-arc stud welding with ceramic ferrule or shielding gas and short-cycle drawn-arc stud welding).50 Annex E (informative)
Welding procedure qualification record form (WPQR) (for capacitor discharge stud welding with tip ignition and capacitor discharge drawn-arc stud welding).54 Annex F (informative)
Test results — Production test (for drawn-arc stud welding with ceramic ferrule or shielding gas and short-cycle drawn-arc stud welding).57 Annex G (informative)
Test results — Production test (for capacitor discharge stud welding with tip ignition and capacitor discharge drawn-arc stud welding).59 Annex H (informative)
Example for production surveillance record.61 Bibliography.62



ISO 14555:2006(E) © ISO 2006 – All rights reserved vForeword ISO (the International Organization for Standardization) is a worldwide federation of national standards bodies (ISO member bodies). The work of preparing International Standards is normally carried out through ISO technical committees. Each member body interested in a subject for which a technical committee has been established has the right to be represented on that committee. International organizations, governmental and non-governmental, in liaison with ISO, also take part in the work. ISO collaborates closely with the International Electrotechnical Commission (IEC) on all matters of electrotechnical standardization. International Standards are drafted in accordance with the rules given in the ISO/IEC Directives, Part 2. The main task of technical committees is to prepare International Standards. Draft International Standards adopted by the technical committees are circulated to the member bodies for voting. Publication as an International Standard requires approval by at least 75 % of the member bodies casting a vote. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. ISO shall not be held responsible for identifying any or all such patent rights. ISO 14555 was prepared by Technical Committee ISO/TC 44, Welding and allied processes, Subcommittee SC 10, Unification of requirements in the field of metal welding. This second edition cancels and replaces the first edition (ISO 14555:1998), which has been technically revised. Requests for official interpretations of any aspect of this International Standard should be directed to the Secretariat of ISO/TC 44/SC 10 via your national standards body. A complete listing of these bodies can be found at http://www.iso.org.



ISO 14555:2006(E) vi © ISO 2006 – All rights reserved Introduction The purpose of arc stud welding is to weld predominantly pin-shaped metal parts to metal workpieces. In this International Standard it is referred to simply as stud welding. Amongst other things, stud welding is used in bridge building (especially in composite structures), steel structures, shipbuilding, facade-wall fabrication, vehicle manufacture, equipment design, steam-boiler construction, and the manufacture of household appliances. The quality of a stud weld depends not only on strict compliance with the welding procedure specification but also on the correct function of the actuating mechanism (e.g. welding guns), and on the condition of the components, of the accessories and of the power supply. This International Standard does not invalidate former specifications, providing the technical requirements are equivalent and satisfied.



INTERNATIONAL STANDARD ISO 14555:2006(E) © ISO 2006 – All rights reserved 1Welding — Arc stud welding of metallic materials 1 Scope This International Standard covers arc stud welding of metallic materials subject to static and dynamic loading. It specifies requirements that are particular to stud welding, in relation to welding knowledge, quality requirements, welding procedure specification, welding procedure qualification, qualification testing of operators and testing of production welds. This International Standard is appropriate where it is necessary to demonstrate the capability of a manufacturer to produce welded construction of a specified quality. NOTE General quality requirements for fusion welding of metallic materials are given in ISO 3834-1, ISO 3834-2, ISO 3834-3, ISO 3834-4 and ISO 3834-5. This International Standard has been prepared in a comprehensive manner, with a view to its being used as a reference in contracts. The requirements contained within it can be adopted in full, or partially, if certain requirements are not relevant to a particular construction (see Annex B). 2 Normative references The following referenced documents are indispensable for the application of this document. For dated references, only the edition cited applies. For undated references, the latest edition of the referenced document (including any amendments) applies. ISO 857-1, Welding and allied processes — Vocabulary — Part 1: Metal welding processes ISO 3834-1, Quality requirements for fusion welding of metallic materials — Part 1: Criteria for the selection of the appropriate level of quality requirements ISO 3834-2, Quality requirements for fusion welding of metallic materials — Part 2: Comprehensive quality requirements ISO 3834-3, Quality requirements for fusion welding of metallic materials — Part 3: Standard quality requirements ISO 3834-4, Quality requirements for fusion welding of metallic materials — Part 4: Elementary quality requirements ISO 4063, Welding and allied processes — Nomenclature of processes and reference numbers ISO 6947, Welds — Working positions — Definitions of angles of slope and rotation ISO 9606-1, Approval testing of welders — Fusion welding — Part 1: Steels ISO 9606-2, Qualification test of welders — Fusion welding — Part 2: Aluminium and aluminium alloys ISO 13918:—1), Welding — Studs and ceramic ferrules for arc stud welding
1) To be published. (Revision of ISO 13918:1998)



ISO 14555:2006(E) 2 © ISO 2006 – All rights reserved ISO 14175, Welding consumables — Shielding gases for arc welding and cutting ISO 14731, Welding coordination — Tasks and responsibilities ISO 14732:1998, Welding personnel — Approval testing of welding operators for fusion welding and of resistance weld setters for fully mechanized and automatic welding of metallic materials ISO 15607:2003, Specification and qualification of welding procedures for metallic materials — General rules ISO/TR 15608, Welding — Guidelines for a metallic materials grouping system ISO 15611, Specification and qualification of welding procedures for metallic materials — Qualification based on previous welding experience ISO 15613, Specification and qualification of welding procedures for metallic materials — Qualification based on pre-production welding test ISO 15614-1:2004, Specification and qualification of welding procedures for metallic materials — Welding procedure test — Part 1: Arc and gas welding of steels and arc welding of nickel and nickel alloys ISO 15614-2, Specification and qualification of welding procedures for metallic materials — Welding procedure test — Part 2: Arc welding of aluminium and its alloys ISO 17636, Non-destructive testing of welds — Radiographic testing of fusion-welded joints ISO 17662, Welding — Calibration, verification and validation of equipment used for welding, including ancillary activities 3 Terms and definitions For the purposes of this document, the terms and definitions given in ISO 857-1, ISO 3834-1, ISO 4063, ISO 14731, ISO 14732 and ISO 15607 and the following apply. 3.1 stud fastener to be attached by stud welding 3.2 auxiliaries ceramic ferrules and shielding gases 3.3 stud-welding operator operating personnel for stud-welding equipment NOTE In special cases (e.g. mass production at the manufacturer's factory) the welding can be carried out by suitable auxiliary personnel, appropriately trained and supervised. 3.4 stud diameter d stud nominal diameter NOTE See ISO 13918. 3.5 welding diameter dw diameter at the weld base



ISO 14555:2006(E) © ISO 2006 – All rights reserved 33.6 weld zone welded area underneath the welding diameter 3.7 current intensity root-mean-square (RMS) value of the welding current in the steady state during the burning time of the arc NOTE Current intensity is not applicable to capacitor discharge. 3.8 welding time time difference between the ignition and the final extinction of the main arc 3.9 lift L distance between the stud tip and the work piece surface with the stud-lifting mechanism in position and activated NOTE 1 For tip ignition, this definition applies to the ignition gap. NOTE 2 See Figure A.1. 3.10 plunge axial movement of the stud towards the surface of the work piece 3.11 protrusion P 〈unregulated lifting mechanism〉 distance between the tip of the stud and the face of the support device in their initial positions, where the support device faces the work piece NOTE 1 A spring-loaded lifting mechanism is an unregulated lifting mechanism. NOTE 2 See Figure A.1. 3.12 arc blow magnetic deflection of the arc from the axial direction of the stud 3.13 flux aluminium additive on the weld end of the stud, which improves the ignition and de-oxidizes the weld pool 3.14 dual-material stud two-material stud composed of a material at the weld tip, similar to that of the parent material, and a dissimilar material outside the weld tip, which are joined by a friction weld, thus avoiding a mixed structure in the weld zone when stud welding 3.15 structure subjected to fatigue loading structure subject to a set of typical load events described by the positions or movements of loads, their variation in intensity and their frequency and sequence of occurrence



ISO 14555:2006(E) 4 © ISO 2006 – All rights reserved 4 Symbols and abbreviated terms 4.1 Symbols For the purposes of this International Standard, the following symbols apply. C capacitance (expressed in mF) d stud diameter (expressed in mm) dw welding diameter (expressed in mm) h length of the threaded part of the nut I current intensity (expressed in A) L lift P protrusion t thickness of plate tw welding time (expressed in ms or s) T torque (expressed in Nm) U charging voltage (expressed in V) W charging energy (expressed in Ws) a bending angle (expressed in °) 4.2 Abbreviated terms For the purposes of this International Standard, the following abbreviated terms apply. CF ceramic ferrule HAZ heat-affected zone NP no protection PA flat welding position PC horizontal welding position PE overhead welding position pWPS preliminary welding procedure specification SG shielding gas WPS welding procedure specification WPQR welding procedure qualification record



ISO 14555:2006(E) © ISO 2006 – All rights reserved 55 Technical review When a technical review is required by an application standard, by specification or by use of ISO 3834-2, ISO 3834-3 or ISO 3834-4, the manufacturer shall check, as appropriate, the following aspects: a) the accessibility and welding position of the stud weld; b) the nature of the surface and the collar shape of the welded joint; c) materials and combinations of materials (see Tables A.3 and A.4); d) the ratio of stud diameter to sheet metal thickness (avoidance of damage on the reverse side of the sheet); e) dimensions and details of the weld preparation and of the finished weld, including the nature of the stud and sheet-metal surfaces, positional and angular accuracy and the length tolerance of the welded stud; f) the use of special techniques to avoid damage to the reverse side of the sheet; g) techniques to assure the angular position of the welded stud. NOTE Consideration is paid to the multi-axial stress state arising from localized heating/cooling. This stress concentration reduces the dynamic strength of a component with welded studs. 6 Welding personnel 6.1 Stud-welding operators Stud-welding operators shall be qualified in accordance with ISO 14732:1998, 4.2.1 or 4.2.2. They shall have appropriate knowledge to operate the equipment, to adjust it properly, to carry out the welding correctly and, while doing so, to pay attention to good contact and suitable connection between the work piece cables and uniform distribution of ferromagnetic materials (see Table A.8). The qualification shall include testing in accordance with the acceptance criteria specified in 12.2. A test of job knowledge is required for all qualification methods. This test shall cover, as a minimum: a) setting up the welding equipment in accordance with the welding procedure specification; b) basic knowledge of the way in which suitable connection of work piece cables, the polarity of the stud, and arc blowing can influence the weld result (see Table A.8); c) basic assessment of the welded joint for imperfections (see Tables A.5, A.6 and A.7); d) safe execution of the welding operations, i.e. good contact of the stud in the stud holder, no movement during the welding process, operation checking and correct positioning of the guns). 6.2 Welding coordination Welding coordination shall be performed in accordance with ISO 14731. Welding coordination personnel for stud welding shall have knowledge of and experience in the relevant stud-welding process, and shall be able to select and set the correct parameters, e.g. lift, protrusion (plunge), current intensity, and welding time. A welding coordinator is not required for stud welding to structures subjected to unspecified static loading (see Annex B).



ISO 14555:2006(E) 6 © ISO 2006 – All rights reserved 7 Equipment 7.1 Production equipment Suitable stud-welding equipment shall be used, with power supplies of sufficient capacity to weld the stud properly to the parent material when the equipment is correctly set up. The following equipment shall be available, as required: a) power sources, control unit and movable fixtures; b) cables with sufficient cross-section, solid connection terminals and sufficient earth connection; c) handling equipment for the technical aspects of welding fabrication (jigs, fixtures); d) weld data monitoring equipment; e) post-drying equipment for ceramic ferrules; f) cleaning facilities for contact points and welding points; g) measuring and testing equipment; h) equipment for pre- and post-treatment; i) equipment and welding plant for retouching. 7.2 Description of the equipment A list of the stud-welding equipment shall be maintained, which shall serve as evidence of the performance and stud-welding appli
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