Structural adhesives - Determination of shear behaviour of structural bonds - Part 2: Thick adherends shear test (ISO 11003-2:2001, modified)

This European Standard specifies a test method for determining the shear behaviour of an adhesive in a single lap joint bonded assembly when subjected to a tensile force.
The test is performed on specimens consisting of thick, rigid adherends, with a short length of overlap, in order to obtain the most uniform distribution of shear stresses possible and to minimize other stress states which initiate failure.
This test method may be used to determine:
-   the shear-stress against shear-strain curve to failure of the adhesive;
-   the shear modulus of the adhesive;
-   other adhesive properties that can be derived from the stress/strain curve such as the maximum shear stress and shear strain;
-   the effect of temperature, environment, test speed, etc. on these properties.

Strukturklebstoffe - Bestimmung des Scherverhaltens struktureller Klebungen - Teil 2: Scherprüfung für dicke Fügeteile (ISO 11003-2:2001 Modifiziert)

Diese Europäische Norm legt ein Prüfverfahren zur Bestimmung des Scherverhaltens eines Klebstoffes in einer einfach überlappten Klebverbindung fest, die einer Zugkraft ausgesetzt wird.
Um eine möglichst gleichmäßige Schubspannungsverteilung zu erhalten und weitere Spannungszustände, die zu einem Versagen führen, zu minimieren, wird die Prüfung mit Proben durchgeführt, die aus dicken, starren Fügeteilen mit kurzer Überlappungslänge bestehen.
Dieses Prüfverfahren lässt sich anwenden zur Bestimmung:
-   der Kurve aus Schubspannung und -dehnung bis zum Versagen des Klebstoffes;
-   des Schubmoduls des Klebstoffes;
-   weiterer Klebstoffeigenschaften, die aus der Spannungs-Dehnungs-Kurve abgeleitet werden können, wie zum Beispiel die maximale Schubspannung und Schubdehnung;
-   der Wirkung von Temperatur, Umgebung, Prüfgeschwindigkeit usw. auf diese Eigenschaften.

Adhésifs structuraux - Détermination du comportement en cisaillement d'adhésifs structuraux - Partie 2 : Méthode d'essai en traction sur éprouvette épaisse (ISO 11003-2:2001 Modifié)

La présente Norme européenne spécifie une méthode d'essai pour la détermination du comportement en cisaillement d'un adhésif dans un assemblage collé à recouvrement simple lorsque celui-ci est soumis à un effort de traction.
L'essai est effectué sur des éprouvettes constituées de supports épais et rigides, la longueur de recouvrement étant faible, afin d'obtenir une répartition des contraintes de cisaillement la plus uniforme possible et de limiter d'autres états de contraintes qui initient la rupture.
Cette méthode d’essai peut être utilisée pour déterminer :
- la courbe de résistance au cisaillement en fonction de la déformation jusqu’à la rupture ;
- le module d’élasticité en cisaillement de l'adhésif ;
- toutes autres caractéristiques susceptibles d'être dérivées de la courbe contrainte/déformation, telles que la contrainte de cisaillement et la résistance au cisaillement maximales ;
- l'effet de la température, de l'environnement, de la vitesse d'essai, etc., sur ces caractéristiques.

Konstrukcijska lepila - Določanje strižnih lastnosti konstrukcijskih spojev - 2. del: Strižno preskušanje debelih lepljencev (ISO 11003-2:2001, spremenjen)

Ta evropski standard določa preskusno metodo za določanje strižnih lastnosti lepila v enojnem prekrivnem spoju pri izpostavitvi natezni sili.
Preskus se izvaja na vzorcih, sestavljenih iz debelih, togih lepljencev s kratko dolžino prekrivanja, da se pridobi čim enotnejša porazdelitev strižnih napetosti in zmanjšajo druga stresna stanja, ki sprožijo okvaro.
Ta preskusna metoda se lahko uporablja za določanje:
- krivulje strižne napetosti glede na strižno deformacijo za odpoved lepila;
- strižnega modula lepila;
- drugih lepilnih lastnosti, ki se lahko izpeljejo iz krivulje napetost/deformacija, kot sta maksimalna strižna napetost in strižna deformacija;
- učinka temperature, okolja, preskusne hitrosti itd. na te lastnosti.

General Information

Status
Published
Publication Date
03-Oct-2011
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
15-Sep-2011
Due Date
20-Nov-2011
Completion Date
04-Oct-2011

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2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.MHQStrukturklebstoffe - Bestimmung des Scherverhaltens struktureller Klebungen - Teil 2: Scherprüfung für dicke Fügeteile (ISO 11003-2:2001 Modifiziert)Adhésifs structuraux - Détermination du comportement en cisaillement d'adhésifs structuraux - Partie 2 : Méthode d'essai en traction sur éprouvette épaisse (ISO 11003-2:2001 Modifié)Structural adhesives - Determination of shear behaviour of structural bonds - Part 2: Thick adherends shear test (ISO 11003-2:2001, modified)83.180LepilaAdhesivesICS:Ta slovenski standard je istoveten z:EN 14869-2:2011SIST EN 14869-2:2011en,fr,de01-november-2011SIST EN 14869-2:2011SLOVENSKI
STANDARDSIST EN 14869-2:20041DGRPHãþD



SIST EN 14869-2:2011



EUROPEAN STANDARD NORME EUROPÉENNE EUROPÄISCHE NORM
EN 14869-2
May 2011 ICS 83.180 Supersedes EN 14869-2:2004English Version
Structural adhesives - Determination of shear behaviour of structural bonds - Part 2: Thick adherends shear test (ISO 11003-2:2001, modified)
Adhésifs structuraux - Détermination du comportement en cisaillement d'adhésifs structuraux - Partie 2 : Méthode d'essai en traction sur éprouvette épaisse (ISO 11003-2:2001, modifié)
Strukturklebstoffe - Bestimmung des Scherverhaltens struktureller Klebungen - Teil 2: Scherprüfung für dicke Fügeteile (ISO 11003-2:2001, modifiziert) This European Standard was approved by CEN on 10 March 2011.
CEN members are bound to comply with the CEN/CENELEC Internal Regulations which stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the CEN-CENELEC Management Centre or to any CEN member.
This European Standard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CEN member into its own language and notified to the CEN-CENELEC Management Centre has the same status as the official versions.
CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, 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 STANDARDIZATION
COMITÉ EUROPÉEN DE NORMALISATION EUROPÄISCHES KOMITEE FÜR NORMUNG
Management Centre:
Avenue Marnix 17,
B-1000 Brussels © 2011 CEN All rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. EN 14869-2:2011: ESIST EN 14869-2:2011



EN 14869-2:2011 (E) 2 Contents Page Foreword .31 Scope .42 Normative references .43 Terms and definitions .44 Principle .45 Apparatus .66 Specimen .66.1 Specimen dimensions and configurations .66.2 Adherends .76.3 Preparation of surfaces before bonding .77 Test specimen .97.1 Preparation .97.1.1 Specimens with flat-ended adherends .97.1.2 Specimens with stepped adherends. 107.2 Number of specimens . 108 Procedure . 139 Calculations . 159.1 Symbols used . 159.2 Average shear stress ττττ in the adhesive . 159.3 Shear strain γγγγ in the adhesive. 159.4 Stress strain curve. 179.5 Shear modulus of the adhesive . 1810 Precision . 1811 Test report . 18Annex A (informative)
Suitable extensometer design . 20 SIST EN 14869-2:2011



EN 14869-2:2011 (E) 3 Foreword This document (EN 14869-2:2011) has been prepared by Technical Committee CEN/TC 193 “Adhesives”, the secretariat of which is held by AENOR. 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 November 2011, and conflicting national standards shall be withdrawn at the latest by November 2011. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. CEN [and/or CENELEC] shall not be held responsible for identifying any or all such patent rights. This document supersedes EN 14869-2:2004. SAFETY STATEMENT — Persons using this document should be familiar with the normal laboratory practice, if applicable. This document does not purport to address all of the safety problems, if any, associated with its use. It is the responsibility of the user to establish appropriate safety and health practices and to ensure compliance with any regulatory conditions. ENVIRONMENTAL STATEMENT — It is understood that some of the material permitted in this standard may have negative environmental impact. As technological advantages lead to acceptable alternatives for these materials, they will be eliminated from this standard to the extent possible. At the end of the test, the user of the standard should take care to carry out an appropriate disposal of the wastes, according to local regulation. According to the CEN/CENELEC Internal Regulations, the national standards organizations of the following countries are bound to implement this European Standard: Austria, Belgium, Bulgaria, Croatia, 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 the United Kingdom.
SIST EN 14869-2:2011



EN 14869-2:2011 (E) 4 1 Scope This European Standard specifies a test method for determining the shear behaviour of an adhesive in a single lap joint bonded assembly when subjected to a tensile force. The test is performed on specimens consisting of thick, rigid adherends, with a short length of overlap, in order to obtain the most uniform distribution of shear stresses possible and to minimize other stress states which initiate failure. This test method may be used to determine:  the shear-stress against shear-strain curve to failure of the adhesive;  the shear modulus of the adhesive;  other adhesive properties that can be derived from the stress/strain curve such as the maximum shear stress and shear strain;  the effect of temperature, environment, test speed, etc. on these properties. 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. EN 923:2005+A1:2008, Adhesives
Terms and definitions EN 13887, Structural Adhesives
Guidelines for surface preparation of metals and plastics prior to adhesive bonding EN ISO 291, Plastics — Standard atmospheres for conditioning and testing (ISO 291:2008) EN ISO 10365, Adhesives — Designation of main failure patterns (ISO 10365:1992) ISO 683-11, Heat-treatable steels, alloy steels and free-cutting steels — Part 11: Wrought case-hardening steels
ISO 1052, Steels for general engineering purposes ISO 4995, Hot-rolled steel sheet of structural quality 3 Terms and definitions For the purposes of this document, the terms and definitions given in EN 923:2005+A1:2008 apply. 4 Principle An adhesively bonded test specimen (see Figure 1) is subjected to a tensile force so that the adhesive is stressed in shear. SIST EN 14869-2:2011



EN 14869-2:2011 (E) 5 The relative displacement of the adherends is measured using a purpose-built transducer located in the central region of the specimen. Force and displacement are measured from the start of application of the load until fracture of the specimen. The shear stresses and strains are then calculated from the bond dimensions. Dimensions in millimetres
Key a) Bonded adherends b) Machined adherends 1 Adhesive bond b Width of adhesive l Length of adhesive Figure 1 — Specimen dimensions and configuration SIST EN 14869-2:2011



EN 14869-2:2011 (E) 6 5 Apparatus 5.1 Tensile-testing machine, capable of producing fracture in the specimen at a tensile force between 10 % and 80 % of the full-scale range of the force transducer. 5.2 Device for introducing a force into the specimen, so that negligible torque develops when force (F) is applied to the specimen.
For this purpose, the simple universal-joint design shown in Figure 2 is satisfactory. 5.3 Force transducer, capable of measuring the force in the specimen with an accuracy of 1 % of the force at a shear strain of 0,01. 5.4 One or two extensometers (see Note 2), for measuring the shear displacement between points of known separation on each adherend in the central region of the bond (see Figure 3 and Annex A).
The points of contact with the adherends shall be within a distance of 2 mm from the bonded faces. The device(s) shall be capable of measuring the shear displacement to an accuracy of 1 µm. NOTE 1 During loading, each adherend will bend slightly, leading to a small rotation of the central (bonded) region of the test specimen. In order to achieve high accuracy in displacement measurements, the extensometer(s) should rotate with the specimen. This has been achieved in the design shown in Figure 3 by double-pin contact with one of the adherends. NOTE 2 The use of two extensometers on opposing faces of the specimen is recommended to minimize, by averaging the extensometer readings, any contribution to measurements from a twisting moment applied to the specimen. The use of two extensometers will also serve to indicate any malfunctioning of one of the extensometers as revealed by significantly different readings from the two devices. 5.5 Data-logging equipment, to continuously record the relative displacement of the adherends and the applied load, from the start of application of the load until the specimen breaks. 5.6 Micrometer, having an accuracy of better than 0,002 mm, to measure the dimensions of the adherends. 5.7 Optical microscope, having an accuracy of better than 0,002 mm, to measure the thickness of the adhesive bond when the specimen configuration shown in Figure 1a) is used. 6 Specimen 6.1 Specimen dimensions and configurations Specimens shall be prepared either by bonding metal plates or strips together to produce the configuration shown in Figure 1a) or by bonding adherends that have been machined to the shape shown in Figure 1b). The dimensions of the specimen are given in F
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