ISO 18592:2019
Resistance welding — Destructive testing of welds — Method for the fatigue testing of multi-spot-welded specimens
Resistance welding — Destructive testing of welds — Method for the fatigue testing of multi-spot-welded specimens
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 35
- Дата публикации:
- 25 июля 2019 г.
- Издание:
- ISO IS 18592 edition 2 version 1
- ICS:
- 25.160.40
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 3,0 mm. Greater thicknesses apply for aluminium alloys, for example. Depending on the specimen used, it is possible from the results to evaluate the fatigue behaviour of: — spot welds subjected to defined uniform load distribution; — spot welds subjected to defined non-uniform load distribution; — spot welds subjected to different defined combinations of shear-, peel- and normal-tension loads; and — the tested specimen. Multi-spot specimens with which the different load distributions can be realized are the following: a) defined uniform load distribution: H-specimens for shear- and peel-loading, (welds subjected to uniform shear or peel loading transverse to the joint line); single- and double-hat specimens subjected to four-point bending (spot welds subjected to uniform shear load in the direction of the row of welds); double-disc specimen under torsion (spot welds subjected to uniform shear load); double-disc specimen under tensile load (spot welds subjected to uniform peel load); double-disc specimen under combined torsion and tensile loading; flat multi-spot specimens using defined grips; b) defined non-uniform load distribution: H-specimens with modified grips; modified H-specimens with standard grips; modified H-specimens with modified grips; flat multi-spot specimens with modified grips; modified multi-spot flat specimens with standard grips; modified multi-spot flat specimens with modified grips; c) defined combinations of shear-, peel- and normal-tension loads: the KS-2 specimen; the double disc specimen; d) spot welds subjected to undefined non-uniform load distribution — single-hat, double-hat and similar closed hollow sections under torsion, 3-point bending and/or internal pressure. The specimens and tests referred to under c) above are not dealt with further in this document, because the results obtained with these specimens are specific to the components as tested and may not be generalized or used for deriving data pertaining to the load-carrying behaviour of the welds. Results obtained with such tests are suitable for comparing the mechanical properties of the tested components with those of similar components tested in the same manner. These tests are, however, not suitable for evaluating or comparing the load-carrying properties of the welds. The test results of the fatigue tests obtained with component like specimens are suitable for deriving criteria for the selection of materials and thickness combinations for structures and components subjected to cyclic loading. This statement is especially relevant for results obtained with specimens with boundary conditions, i.e. a local stiffness similar to that of the structure in question. The results of a fatigue test are suitable for direct application to design only when the loading conditions in service and the stiffness of the design in the joint area are identical. NOTE Specimens are modified to take into consideration constraints or specific demands posed by design, e.g. smaller than standard overlap, smaller or larger than standard nugget diameter, and specific load distribution, thus enhancing the value of the test results for the design engineer.
Abstract
Overview
ISO 18592:2019 - "Resistance welding - Destructive testing of welds - Method for the fatigue testing of multi-spot-welded specimens" specifies standardized specimens and procedures for performing constant-amplitude fatigue tests on multi-spot-welded and multi-axial specimens. The standard covers tests at room temperature with relative humidity up to 80% for sheet thicknesses typically from 0.5 mm to 5 mm (with AHSS generally below 3.0 mm; greater thicknesses possible for aluminium alloys). It is intended to characterize the fatigue behaviour of spot welds and multi-spot assemblies under a variety of controlled load distributions.
Key topics and requirements
- Specimens and geometry: defines H‑specimens, single-/double‑hat, double‑disc, KS‑2 and various flat multi‑spot specimen geometries, plus modified variants to simulate non‑uniform load distributions or specific boundary conditions.
- Load types and distributions: procedures for evaluating spot welds under uniform and non‑uniform load distributions and combinations of shear, peel and normal‑tension loads.
- Thickness and materials: applicability limits by mechanical properties (yield strength, formability); guidance for AHSS and aluminium alloys.
- Test environment: room temperature, maximum 80% relative humidity.
- Test equipment and grips: requirements for fatigue testing machines, specimen grips, alignment verification and clamping calibration; annexes provide examples (hydraulic grips, calibration specimens).
- Test procedure and data: mounting, clamping, test frequency, termination criteria, stiffness calculations, data acquisition and failure definitions.
- Reporting and evaluation: required test report content, tabular/graphical result presentation and basic statistical evaluation.
- Design relevance and limitations: component‑like specimens produce results specific to the tested component and are not always generalizable; direct design application is valid only when service loading and joint‑area stiffness match the test.
Applications and users
ISO 18592:2019 is used by:
- Welding and fatigue test laboratories for standardized fatigue characterization of resistance‑spot welded joints.
- Welding and design engineers validating joint designs, material and thickness combinations for cyclic loading.
- Automotive and transport manufacturers and suppliers qualifying spot‑weld processes, AHSS and aluminium assemblies.
- Materials and joining researchers comparing fatigue life under controlled shear/peel/combined loading.
Practical uses include material selection, process qualification, comparative testing of weld parameters (pitch, nugget size, overlap) and deriving fatigue criteria when test boundary conditions mimic in‑service stiffness and loading.
Related standards and next steps
For full normative references, practical specimen drawings, annex details and formal requirements obtain the official ISO 18592:2019 publication from ISO or your national standards body. Also review other ISO welding and fatigue standards via ISO/TC 44 to ensure consistent test and design practice.
Технические детали
- Технический комитет
- ISO/TC 44/SC 6 - Resistance welding and allied mechanical joining
- SKU
- ISO 18592:2019
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