TY - CONF A1 - Beck, Uwe A1 - Lange, Thorid A1 - Hielscher, Stefan A1 - Rietz, Uwe A1 - Lerche, D. A1 - Pfuch, A. T1 - Multiple-sample approach for bonding and testing: validation of bonding strength of adhesive-bonded joints and adhesive tapes N2 - The multiple-sample approach by means of centrifugal adhesion testing (CAT-technology) allows the determination of bonding strength of adhesive-bonded joints on a statistical basis of up to eight samples. Therefore, it is obvious to ensure the continuous handling and identical processing of an octet of samples within the entire process chain of wet-chemical cleaning, plasma-chemical pre-treatment, bonding of samples, and testing of bonding strength. Within the multiple-sample bonding set-up (MPKV-technology) a defined bonding pressure can be adjusted regardless the actual number of samples. A comparison of single- and multiple-sample approach is made for bonding strength of selected adhesives, double-sided adhesive tapes and different material combinations [stainless steel (V2A) vs. stainless steel, polyamide (PA), or polypropylene (PP)]. It is shown that both technologies improve reliability of results T2 - EURADH 2016 Adhesion ´16 CY - Glasgow, UK DA - 21.09.2016 KW - Multiple-sample bonding KW - Multiple-sample testing KW - Bonding strength KW - Adhesives and adhesive tapes PY - 2016 SP - 162 EP - 166 AN - OPUS4-37588 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Beck, Uwe A1 - Baier, Jennifa A1 - Hidde, Gundula A1 - Hielscher, Stefan A1 - Kittler-Packmor, Kai A1 - Lange, Thorid A1 - Mix, Renate A1 - Weise, Matthias T1 - Multiple-sample approach: reliable ranking and validated statistics of bonding and adhesive strength N2 - Bonding strength of adhesive-bonded joints and adhesive strength of coatings have been exclusively determined in single-sample tests using a tensile testing machine. Necessarily, the single-sample approach was also applied to the corresponding bonding procedure. As a consequence, reliability and reproducibility of results were restricted. By applying the newly introduced centrifuge technology, the multiple-sample approach was realized for simultaneous tensile testing of up to eight samples under identical conditions without any disturbing shear-force effects. In order to introduce the multiple-sample approach into the bonding procedure, a hydraulic bonding set-up was developed which enables identical bonding pressure also for slightly different heights of sample assemblies. Both sample approaches were compared for various application examples: ranking of different classes of adhesives, validated statistics of adhesive-bonded joints using one particular adhesive and effects of cleaning and plasma-treatment on the adhesive strength of coatings. The investigated systems included glass, metals and polymer substrates, different adhesives, metallic and dielectric coatings on polymers. KW - Bonding strength KW - Adhesive strength KW - Multi-sample approach KW - Centrifuge technology PY - 2014 SN - 978-3-944261-28-7 SN - 978-3-944261-36-2 SN - 978-3-944261-52-2 VL - 5 SP - 1 EP - 5 AN - OPUS4-31310 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Rietz, U. A1 - Lerche, D. A1 - Beck, Uwe A1 - Hielscher, Stefan A1 - Kern, Janine T1 - Determination of bonding, adhesive and composite strength by means of centrifuge technology N2 - The quality and durability of bonded joints, coated systems and composites depend on various factors. Therefore effective quantitative tests to determine adhesive, bonding or composite strength are of great need for R&D and QC. In this paper a new measuring principle is described which uses the centrifugal force to generate the test load. By the geometry of the whole measurement set-up, the test specimen are supported from only one side, the influence of shear forces is avoided. The possibility to test up to eight samples in one measurement under identical testing conditions allows a high sample throughput. A detailed description of the whole sample preparation procedure including pre-treatment is followed by the specification of the measuring protocol as well as result analysis. For each application area bonding strength of joints, adhesive strength of coated systems and internal strength of composite materials examples are presented. T2 - EURADH 2014 - 10th European Adhesion Conference CY - Alicante, Spain DA - 22.04.2014 KW - Adhesive strength KW - Bonding strength KW - Composites KW - Centrifuge technology KW - Zentrifugentechnologie KW - Klebfestigkeit KW - Haftfestigkeit KW - Mehr-Proben-Prüfen/Kleben PY - 2014 SN - 978-84-616-9067-1 SN - 84-616-9067-2 SP - Paper 47, 203 EP - 206 AN - OPUS4-31311 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Beck, Uwe A1 - Baier, Jennifa A1 - Hidde, Gundula A1 - Hielscher, Stefan A1 - Kittler-Packmor, Kai A1 - Lange, Thorid A1 - Mix, Renate A1 - Weise, Matthias T1 - Multiple-sample approach: reliable ranking and validated statistics of bonding and adhesive strength N2 - Bonding strength of adhesive-bonded joints and adhesive strength of coatings have been exclusively determined in single-sample tests using a tensile testing machine. Necessarily, the single-sample approach was also applied to the corresponding bonding procedure. As a consequence, reliability and reproducibility of results were restricted. By applying the newly introduced centrifuge technology, the multiple-sample approach was realized for simultaneous tensile testing of up to eight samples under identical conditions without any disturbing shear-force effects. In order to introduce the multiple-sample approach into the bonding procedure, a hydraulic bonding set-up was developed which enables identical bonding pressure also for slightly different heights of sample assemblies. Both sample approaches were compared for various application examples: ranking of different classes of adhesives, validated statistics of adhesive-bonded joints using one particular adhesive and effects of cleaning and plasma-treatment on the adhesive strength of coatings. The investigated systems included glass, metals and polymer substrates, different adhesives, metallic and dielectric coatings on polymers. T2 - EURADH 2014 - 10th European Adhesion Conference CY - Alicante, Spain DA - 22.04.2014 KW - Bonding strength KW - Adhesive strength KW - Multi-sample approach KW - Centrifuge technology PY - 2014 SN - 978-84-616-9067-1 SN - 84-616-9067-2 SP - Paper 49, 211 EP - 214 AN - OPUS4-31309 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Rietz, U. A1 - Lerche, D. A1 - Hielscher, Stefan A1 - Beck, Uwe T1 - Centrifugal adhesion testing technology (CATT) - A valuable tool for strength determination N2 - A new technology for strength determination of adhesive-bonded joints based on analytical centrifugatioon is introduced. Tensile as well as shear strength can be measured for multiple test specimens simultaneously within a very short time. The experimental procedure is described from sample preparation, application of adhesives, sample mounting within the centrifuge to testing parameters and sequences. All requirements of DIN EN 15870 are fulfilled and, in addition, a higher throughput and a better reproducibility can be obtained. The experimental results are discussed regarding bonding strength development over time, comparison of tensile and shear strength and various testing conditions. Furthermore, an additional application field of centrifuge technology is described with respect to the determination of the adhesive strength of coatings. The novel centrifuge based technology provides the determination of bonding, adhesive and shear strength on a statistical basis under identical testing conditions for up to eight samples. Moreover, sophisticated two-sided sample clamping, necessary for a tensile testing machine, is replaced by a simple plug-in procedure. KW - Centrifuge technology KW - Adhesive strength KW - Interface strength KW - Bonding strength KW - Adhesion KW - Tensile strength KW - Shear strength KW - Centrifuge KW - Multiple sample testing PY - 2015 SN - 0916-4812 SN - 0001-8201 VL - 51 IS - S1 (Special Issue on WCARP-V) SP - 293 EP - 297 PB - Kyokai CY - Osaka AN - OPUS4-33994 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -