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Funding Agency and Grant Number: 9th Sino-Hungarian Intergovernmental Scientific and Technological Cooperation Project [2019-2.1.11-TET-2020-00203]; Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences [2021-07]; New National Excellence Program of the Ministry for Culture and Innovation from the source of the National Research, Development and Innovation Fund [BO/00508/22/6, BO/00658/21/6]; Ministry of Innovation and Technology of Hungary from the National Research, Development and Innovation Fund [1JNKP-22-5-BME-327, 1JNKP-22-5-BME-309]; [BME-NVA-02]; [TKP2021]
Funding text: This research was implemented thanks to the support of the 2019-2.1.11-TET-2020-00203 project, which encourages scientific and technological cooperation between China and Hungary and the 9th Sino-Hungarian Intergovernmental Scientific and Technological Cooperation Project (Grant No. 2021-07). This research was partly supported by the Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences No. BO/00508/22/6 and BO/00658/21/6. Moreover, by 1JNKP-22-5-BME-327 and 1JNKP-22-5-BME-309 New National Excellence Program of the Ministry for Culture and Innovation from the source of the National Research, Development and Innovation Fund. The research reported in this paper is part of project no. BME-NVA-02, implemented with the support provided by the Ministry of Innovation and Technology of Hungary from the National Research, Development and Innovation Fund, financed under the TKP2021 funding scheme.
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: 9th Sino-Hungarian Intergovernmental Scientific and Technological Cooperation Project [2019-2.1.11-TET-2020-00203]; Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences [2021-07]; New National Excellence Program of the Ministry for Culture and Innovation from the source of the National Research, Development and Innovation Fund [BO/00508/22/6, B...</pre>
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<div class="lastModified">Utolsó módosítás: 2024.02.12. 18:17 Lukács Tamás (gyártástechnológia)
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Export Date: 15 November 2022
CODEN: CPBEF
Correspondence Address: Geier, N.; Budapest University of Technology and Economics, Műegyetem rkp. 3., Hungary; email: geier.norbert@gpk.bme.hu</pre>
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Magyar, Gergely
Analysis and modelling of thrust force in drilling of basalt and carbon fibre-reinforced polymer (BFRP and CFRP) composites
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Currently, the use of sustainable products and technologies is growing; consequently, mineral-origin basalt fibre-reinforced polymer (BFRP) composites are becoming more popular in industries. Although BFRP parts require mechanical drilling operations for manufacturing holes for assembly, many challenges make the drilling process difficult. Considering that the cutting force is one of the main parameters characterising the drilling process, this study aims to analyse the influence of feed (mm/rev) and cutting speed (m/min) on the thrust force and model the thrust force in the drilling of BFRP composites through response surface methodology (RSM) and advanced statistical modelling methods. In order to determine main and interaction effects and to calculate the regression coefficients and model parameters, mechanical drilling experiments were performed, and the thrust force was recorded. The raw force data were processed using fast Fourier transformation-based low-pass filtering, and then the calculated thrust force parameters were evaluated relative to various feeds and cutting speeds. In addition, results were compared with those of carbon fibre-reinforced polymer composites. The results of the validation experiments show that both RSM and advanced statistical models accurately predict the thrust force in BFRPs of 96.74% and 95.01%, respectively. However, the advanced statistical model can describe not only the maximum values of the force but also its characteristics at a coefficient of determination of 0.68.
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<span class="authorAux-mtmt"> Gyártástechnológia</span>)
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Correspondence Address: Geier, N.; Department of Manufacturing Science and Engineering, Műegyetem Rkp. 3, Hungary; email: geier.norbert@gpk.bme.hu</pre>
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Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest, 1111, Hungary
MTA–BME Research Group for Composite Science and Technology, Műegyetem rkp. 3, Budapest, 1111, Hungary
State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" mtid="10056359"> <a href="/gui2/?type=authors&mode=browse&sel=10056359" target="_blank">Geier, Norbert ✉</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10071290"> <a href="/gui2/?type=authors&mode=browse&sel=10071290" target="_blank">Poór, Dániel István</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10068344"> <a href="/gui2/?type=authors&mode=browse&sel=10068344" target="_blank">Pereszlai, Csongor</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10035283"> <a href="/gui2/?type=authors&mode=browse&sel=10035283" target="_blank">Tamás-Bényei, Péter</a> </span> <span class="author-type"> </span> ; <span class="author-name" > Xu, Jinyang </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;32707479" mtid="32707479" target="_blank">A drilling case study in polymer composites reinforced by virgin and recycled carbon fibres (CFRP and rCFRP) to analyse thrust force and torque</a></div> <div class="pub-info"> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span> <span class="journal-volume">120</span> <span class="page"> pp. 2603-2615. , 13 p. </span> <span class="year">(2022)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_GOLD" title=" Gold "> <a style="color:blue" title="10.1007/s00170-022-08947-1" target="_blank" href="https://doi.org/10.1007/s00170-022-08947-1"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000771069100001" target="_blank" href="https://www.webofscience.com/wos/woscc/full-record/000771069100001"> WoS </a> </span> <span class="id identifier oa_GOLD" title=" Gold "> <a style="color:black" title="149186" target="_blank" href="http://real.mtak.hu/149186"> REAL </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85125137660" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85125137660"> Scopus </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:black" title="https://link.springer.com/10.1007/s00170-022-08947-1" target="_blank" href="https://link.springer.com/10.1007/s00170-022-08947-1"> Egyéb URL </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:32707479 </span> <span class="status-holder"><span class="status-data status-VALIDATED"> Egyeztetett </span></span> <span class="pub-core">Forrás Idéző </span> <span class="pub-type">Folyóiratcikk (Szakcikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> <div class="publication-citation" style="margin-left: 0.5cm;"> <span title="Nyilvános idézőközlemények összesen, említések nélkül" class="citingPub-count">Nyilvános idéző összesen: 5</span> | Független: 2 | Függő: 3 | Nem jelölt: 0 | WoS jelölt: 5 | Scopus jelölt: 4 | WoS/Scopus jelölt: 5 | DOI jelölt: 5 </div> </div> </div> </div><div class="JournalArticle Publication long-list">
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Polimertechnika Tanszék; <span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/<span title="Polimertechnika Tanszék">PT</span>/MTA-BME Kompozittechnológiai Kutatócsoport</span>
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;32707479" target="_blank">A drilling case study in polymer composites reinforced by virgin and recycled carbon fibres (CFRP and rCFRP) to analyse thrust force and torque</a></div> <div> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span>
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Department of Manufacturing Science and Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest, 1111, Hungary
Department of Polymer Engineering, Faculty of Mechanical Engineering, Budapest University of Technology and Economics, Műegyetem rkp. 3, Budapest, 1111, Hungary
MTA–BME R...</pre>
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A method to predict drilling-induced burr occurrence in chopped carbon fibre reinforced polymer (CFRP) composites based on digital image processing
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Mechanical drilling-induced burr in carbon fibre reinforced polymer (CFRP) composites is one of the most significant macro-geometrical failures of CFRP composites; nevertheless, burr prediction in quasi-randomly oriented chopped fibre reinforced composites is not supported yet. To explore this issue, the main aim of the present research work was to develop a method to predict drilling-induced burrs in chopped CFRPs based on digital image processing. First, an indexable light source captured digital images of a chopped CFRP plate in different lighting conditions. Then, the fibre orientation of each visible chopped fibre group was determined in each image through digital image processing algorithms. These images were then associated based on the superposition principle. Finally, the burr-dangerous regions were predicted by the local properties of chopped fibres. The prediction accuracy of the algorithm is tested by drilling experiments in chopped CFRP plates using solid carbide drills. The experimental results show that the mechanical drilling-induced burr prediction accuracy is 64–97%. By applying the proposed method, burrs can be estimated without machining experiments in chopped CFRPs.
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
;
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<span class="authorAux-mtmt"> gyártástechnológia</span>)
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;32897330" target="_blank">A method to predict drilling-induced burr occurrence in chopped carbon fibre reinforced polymer (CFRP) composites based on digital image processing</a></div> <div> <span class="journal-title">COMPOSITES PART B-ENGINEERING</span>
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<div class="lastModified">Utolsó módosítás: 2024.01.10. 12:48 Németh István (BME GPK GyTT admin 5)
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Export Date: 4 August 2022
CODEN: CPBEF
Correspondence Address: Geier, N.; Budapest University of Technology and Economics, Műegyetem rkp. 3, Hungary; email: geier.norbert@gpk.bme.hu</pre>
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Funding Agency and Grant Number: Budapest University of Technology and Economics; National Research, Development and Innovation Office (NKFIH)National Research, Development & Innovation Office (NRDIO) - Hungary [OTKA-PD20-134430, UNKP-21-5-BME-370]; Janos Bolyai Research Scholarship of the Hungarian Academy of SciencesHungarian Academy of Sciences [BO/00658/21/6]; NRDI FundNational Research, Development & Innovation Office (NRDIO) - Hungary [TKP2020 NC]; project "Centre of Excellence in Production Informatics and Control" (EPIC) [EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592]
Funding text: Open access funding provided by Budapest University of Technology and Economics. This research was partly supported by the National Research, Development and Innovation Office (NKFIH) No. OTKA-PD20-134430 and UNKP-21-5-BME-370 New National Excellence Program of the Ministry for Innovation and Technology, and by the Janos Bolyai Research Scholarship of the Hungarian Academy of Sciences No. BO/00658/21/6. The research reported in this paper and carried out at BME has been partly supported by the NRDI Fund (TKP2020 NC, Grant No. BME-NC) based on the charter of bolster issued by the NRDI Office under the auspices of the Ministry for Innovation and Technology and by the project "Centre of Excellence in Production Informatics and Control" (EPIC) No. EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592.
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Drilling of recycled carbon fibre–reinforced polymer (rCFRP) composites: Analysis of burrs and microstructure
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Since governments encourage sustainability, industries are making great efforts to reuse or recycle carbon fibre–reinforced polymer (CFRP) composites. Despite the promising early results concerning the material properties of recycled CFRPs, there is no published knowledge available about their machinability. In this study, drilling-induced micro and macro-sized geometrical defects were analysed and compared in virgin and recycled CFRPs. 180 drilling experiments were carried out using uncoated solid carbide cutting tools. Six different CFRP composites were tested at different feeds. The burr characteristics and microstructure were analysed by optical and scanning electron microscopy. The analysis of variance (ANOVA) results suggest that the formation of drilling-induced burrs in CFRPs reinforced by recycled chopped and nonwoven mats is less pronounced than in virgin CFRPs. Micro- and macro-sized geometrical defects in both recycled and virgin milled CFRPs were negligible. This study found no relevant objection to using recycled CFRP from the point of view of drilling-induced burrs and microstructure damage.
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" mtid="10056359"> <a href="/gui2/?type=authors&mode=browse&sel=10056359" target="_blank">Norbert, Geier ✉</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10071290"> <a href="/gui2/?type=authors&mode=browse&sel=10071290" target="_blank">Dániel, István Poór</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10068344"> <a href="/gui2/?type=authors&mode=browse&sel=10068344" target="_blank">Csongor, Pereszlai</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10035283"> <a href="/gui2/?type=authors&mode=browse&sel=10035283" target="_blank">Péter, Tamás-Bényei</a> </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;32657663" mtid="32657663" target="_blank">Drilling of recycled carbon fibre–reinforced polymer (rCFRP) composites: Analysis of burrs and microstructure</a></div> <div class="pub-info"> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span> <span class="journal-volume">120</span> <span class="page"> pp. 1677-1693. , 17 p. </span> <span class="year">(2022)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_GOLD" title=" Gold "> <a style="color:blue" title="10.1007/s00170-022-08847-4" target="_blank" href="https://doi.org/10.1007/s00170-022-08847-4"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000754344200001" target="_blank" href="https://www.webofscience.com/wos/woscc/full-record/000754344200001"> WoS </a> </span> <span class="id identifier oa_GOLD" title=" Gold "> <a style="color:black" title="149185" target="_blank" href="http://real.mtak.hu/149185"> REAL </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85124770245" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85124770245"> Scopus </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:32657663 </span> <span class="status-holder"><span class="status-data status-VALIDATED"> Egyeztetett </span></span> <span class="pub-core">Forrás Idéző </span> <span class="pub-type">Folyóiratcikk (Szakcikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> <div class="publication-citation" style="margin-left: 0.5cm;"> <span title="Nyilvános idézőközlemények összesen, említések nélkül" class="citingPub-count">Nyilvános idéző összesen: 13</span> | Független: 7 | Függő: 6 | Nem jelölt: 0 | WoS jelölt: 11 | Scopus jelölt: 6 | WoS/Scopus jelölt: 11 | DOI jelölt: 13 </div> </div> </div> </div><div class="JournalArticle Publication long-list">
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<span class="authorAux-mtmt"> Gyártástechnológia</span>)
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<span class="authorAux-mtmt"> Gyártástechnológia</span>)
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;
<span class="author-name" mtid="10068344"><a
href="/gui2/?type=authors&mode=browse&sel=10068344" target="_blank">Csongor Pereszlai
(<span class="authorship-author-name">Pereszlai Csongor</span>
<span class="authorAux-mtmt"> gyártástechnológia</span>)
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
;
<span class="author-name" mtid="10035283"><a
href="/gui2/?type=authors&mode=browse&sel=10035283" target="_blank">Péter Tamás-Bényei
(<span class="authorship-author-name">Tamás-Bényei Péter</span>
<span class="authorAux-mtmt"> Polimer Anyagtudomány</span>)
</a>
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Polimertechnika Tanszék; <span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/<span title="Polimertechnika Tanszék">PT</span>/MTA-BME Kompozittechnológiai Kutatócsoport</span>
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;32657663" target="_blank">Drilling of recycled carbon fibre–reinforced polymer (rCFRP) composites: Analysis of burrs and microstructure</a></div> <div> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span>
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<span class="journal-volume">120</span>
<span class="page">
pp 1677-1693
</span> <span class="year">(2022)</span>
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: Budapest University of Technology and Economics; National Research, Development and Innovation Office (NKFIH)National Research, Development & Innovation Office (NRDIO) - Hungary [OTKA-PD20-134430, UNKP-21-5-BME-370]; Janos Bolyai Research Scholarship of the Hungarian Academy of SciencesHungarian Academy of Sciences [BO/00658/21/6]; NRDI FundNational Research, De...</pre>
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Funding text: Acknowledgments This work was supported by the National Natural Science Foundation of China (Grant No. 51705319) and the Shanghai Pujiang Program (Grant No.17PJ1403800) .
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Xu, Jinyang
Numerical study of interface damage formation mechanisms in machining CFRP/Ti6Al4V stacks under different cutting sequence strategies
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Composite/titanium stacks are extremely difficult to machine due to the generation of severe interface damage, being the critical defect to suppress. The present paper aims to use the finite element method (FEM) to investigate the interface damage formation mechanisms following the machining of CFRP/Ti6Al4V stacks with a particular focus on the distribution of stresses and temperatures. Its key objective lies in revealing the effects of different cutting sequence strategies on the interface damage formation to guide the design of the stack machining processes as well as the selection of cutting sequences. A micro-mechanical orthogonal cutting model and a 3D drilling model based on the macro-mechanical model of the CFRP/Ti6Al4V stacks were developed to explore the fundamental cutting edge/material interactions and the damage formation mechanisms under both the CFRP → Ti and Ti → CFRP strategies. The investigations confirm the dominant impact of the cutting sequence strategy on the stress and temperature distribution during the machining of CFRP/Ti stacks, which is mainly responsible for the diverse interface damage. Besides, the interface damage of a material layer becomes more serious when the material is machined as a second phase due to the adhesion and abrasion of previous material chips. The coupling effects of the matrix damage and the interface bending are the influential factors leading to severe interface damage under the Ti → CFRP strategy, thereby unfavorable for the interface quality.
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" > Xu, Jinyang </span> <span class="author-type"> </span> ; <span class="author-name" > Lin, Tieyu </span> <span class="author-type"> </span> ; <span class="author-name" > Li, Linfeng </span> <span class="author-type"> </span> ; <span class="author-name" > Ji, Min </span> <span class="author-type"> </span> ; <span class="author-name" > Paulo Davim, J. </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10056359"> <a href="/gui2/?type=authors&mode=browse&sel=10056359" target="_blank">Geier, Norbert</a> </span> <span class="author-type"> </span> ; <span class="author-name" > Chen, Ming </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;32600707" mtid="32600707" target="_blank">Numerical study of interface damage formation mechanisms in machining CFRP/Ti6Al4V stacks under different cutting sequence strategies</a></div> <div class="pub-info"> <span class="journal-title">COMPOSITE STRUCTURES</span> <span class="journal-volume">285</span> <span class="page"> Paper: 115236 , 19 p. </span> <span class="year">(2022)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="10.1016/j.compstruct.2022.115236" target="_blank" href="https://doi.org/10.1016/j.compstruct.2022.115236"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000770651400002" target="_blank" href="https://www.webofscience.com/wos/woscc/full-record/000770651400002"> WoS </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85123844175" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85123844175"> Scopus </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:black" title="https://linkinghub.elsevier.com/retrieve/pii/S0263822322000496" target="_blank" href="https://linkinghub.elsevier.com/retrieve/pii/S0263822322000496"> Egyéb URL </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:32600707 </span> <span class="status-holder"><span class="status-data status-VALIDATED"> Egyeztetett </span></span> <span class="pub-core">Forrás Idéző </span> <span class="pub-type">Folyóiratcikk (Szakcikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> <div class="publication-citation" style="margin-left: 0.5cm;"> <span title="Nyilvános idézőközlemények összesen, említések nélkül" class="citingPub-count">Nyilvános idéző összesen: 26</span> | Független: 23 | Függő: 3 | Nem jelölt: 0 | WoS jelölt: 18 | Scopus jelölt: 3 | WoS/Scopus jelölt: 18 | DOI jelölt: 26 </div> </div> </div> </div><div class="JournalArticle Publication long-list">
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: National Natural Science Foundation of ChinaNational Natural Science Foundation of China (NSFC) [51705319]; Shanghai Pujiang ProgramShanghai Pujiang Program [17PJ1403800]
Funding text: Acknowledgments This work was supported by the National Natural Science Foundation of China (Grant No. 51705319) and the Shanghai Pujiang Program (Grant No.17PJ1403800) .</pre>
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Funding Agency and Grant Number: National Research, Development and Innovation Office (NKFIH)National Research, Development & Innovation Office (NRDIO) - Hungary [OTKA-PD20134430, UNKP-20-2-I-BME-268]; NRDI Fund (TKP2020 NC) under Ministry for Innovation and TechnologyNational Research, Development & Innovation Office (NRDIO) - Hungary [BME-NC]; project "Centre of Excellence in Production Informatics and Control" (EPIC) [EU H2020-WIDE SPREAD-01-2016-2017-TeamingPhase2-739592]
Funding text: This research was partly supported by the National Research, Development and Innovation Office (NKFIH) No. OTKA-PD20134430 and UNKP-20-2-I-BME-268. The research reported in this paper and carried out at BME has been partly supported by the NRDI Fund (TKP2020 NC, Grant No. BME-NC) based on the charter of bolster issued by the NRDI Office under the auspices of the Ministry for Innovation and Technology and by the project "Centre of Excellence in Production Informatics and Control" (EPIC) No. EU H2020-WIDE SPREAD-01-2016-2017-TeamingPhase2-739592. Furthermore, the authors acknowledge the BME Department of Polymer Engineering and Balint Laczik for their participation in the experimental work.
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Hole making is one of the most common machining operations in fibrous composites. Holes can be
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;31842848" target="_blank">Drilling fibre reinforced polymer composites (CFRP and GFRP): An analysis of the cutting force of the tilted helical milling process</a></div> <div> <span class="journal-title">COMPOSITE STRUCTURES</span>
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<div class="lastModified">Utolsó módosítás: 2022.06.28. 16:05 Sövény Emese (BME admin 5)
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: National Research, Development and Innovation Office (NKFIH)National Research, Development & Innovation Office (NRDIO) - Hungary [OTKA-PD20134430, UNKP-20-2-I-BME-268]; NRDI Fund (TKP2020 NC) under Ministry for Innovation and TechnologyNational Research, Development & Innovation Office (NRDIO) - Hungary [BME-NC]; project "Centre of Excellence in Production Infor...</pre>
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Burr is one of the main macro-geometrical types of damage concerning machined features of carbon fibre reinforced polymer (CFRP) composites. Even if it does usually not weaken the strength of composite materials, it is recommended to be removed. The deburring process often leads to significantly increased operation time and cost. In both the industry and academia, digital processing of optically captured images is the most common evaluation method for burr-characterisation. Nevertheless, there is no agreement on the measures and techniques of burr-evaluation in CFRPs. Recent key papers on burr formation, measurement and evaluation in CFRPs are reviewed in an attempt to standardise and classify burr characterisation related expertise. In this paper, burr formation mechanisms, burr measurement methods and burr parameters are critically reviewed, compared and discussed. The main advantages and disadvantages of burr measures are highlighted and their possible future applications and prospects are also considered. Furthermore, burr measures reviewed are compared and discussed based on an experimental data set.
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" mtid="10071290"> <a href="/gui2/?type=authors&mode=browse&sel=10071290" target="_blank">Poór, Dániel István</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10056359"> <a href="/gui2/?type=authors&mode=browse&sel=10056359" target="_blank">Geier, Norbert</a> </span> <span class="author-type"> </span> ; <span class="author-name" mtid="10068344"> <a href="/gui2/?type=authors&mode=browse&sel=10068344" target="_blank">Pereszlai, Csongor</a> </span> <span class="author-type"> </span> ; <span class="author-name" > Xu, Jinyang </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;32106850" mtid="32106850" target="_blank">A critical review of the drilling of CFRP composites: Burr formation, characterisation and challenges</a></div> <div class="pub-info"> <span class="journal-title">COMPOSITES PART B-ENGINEERING</span> <span class="journal-volume">223</span> <span class="page"> Paper: 109155 , 17 p. </span> <span class="year">(2021)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="10.1016/j.compositesb.2021.109155" target="_blank" href="https://doi.org/10.1016/j.compositesb.2021.109155"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000693136100001" target="_blank" href="https://www.webofscience.com/wos/woscc/full-record/000693136100001"> WoS </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85110509180" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85110509180"> Scopus </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:black" title="https://linkinghub.elsevier.com/retrieve/pii/S1359836821005357" target="_blank" href="https://linkinghub.elsevier.com/retrieve/pii/S1359836821005357"> Egyéb URL </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:32106850 </span> <span class="status-holder"><span class="status-data status-APPROVED"> Nyilvános </span></span> <span class="pub-core">Forrás Idéző </span> <span class="pub-type">Folyóiratcikk (Összefoglaló cikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> <div class="publication-citation" style="margin-left: 0.5cm;"> <span title="Nyilvános idézőközlemények összesen, említések nélkül" class="citingPub-count">Nyilvános idéző összesen: 101</span> | Független: 84 | Függő: 17 | Nem jelölt: 0 | WoS jelölt: 89 | Scopus jelölt: 22 | WoS/Scopus jelölt: 89 | DOI jelölt: 100 </div> </div> </div> </div><div class="JournalArticle Publication long-list">
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
;
<span class="author-name" mtid="10068344"><a
href="/gui2/?type=authors&mode=browse&sel=10068344" target="_blank">Pereszlai Csongor
(<span class="authorship-author-name">Pereszlai Csongor</span>
<span class="authorAux-mtmt"> gyártástechnológia</span>)
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
;
<span class="author-name" >Xu Jinyang
</span>
</div>
</div>
<div class="title"><a href="/gui2/?mode=browse¶ms=publication;32106850" target="_blank">A critical review of the drilling of CFRP composites: Burr formation, characterisation and challenges</a></div> <div> <span class="journal-title">COMPOSITES PART B-ENGINEERING</span>
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<div class="lastModified">Utolsó módosítás: 2023.08.03. 12:50 Pécsi Éva (MTMT Közp 3, admin)
</div>
<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: [2018-2.1.15-TET-PT-2018-00012]
Funding text: The research work introduced herein was partly funded by the Portugal-Hungarian bilateral scientific cooperation Project No. 2018-2.1.15-TET-PT-2018-00012.</pre>
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Funding Agency and Grant Number: Budapest University of Technology and Economics; National Research, Development and Innovation Office (NKFIH) [OTKA-PD20-134430]; project "Centre of Excellence in Production Informatics and Control" (EPIC) [EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592]; Portugal-Hungarian bilateral scientific cooperation Project [2018-2.1.15-TET-PT-2018-00012]; BME NC TKP2020 grant of NKFIH Hungary
Funding text: Open access funding provided by Budapest University of Technology and Economics. This research was partly supported by the National Research, Development and Innovation Office (NKFIH) No. OTKA-PD20-134430 and by the project "Centre of Excellence in Production Informatics and Control" (EPIC) No. EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592. The research work introduced herein was partly supported by the Portugal-Hungarian bilateral scientific cooperation Project No. 2018-2.1.15-TET-PT-2018-00012 and by the BME NC TKP2020 grant of NKFIH Hungary.
Funding Agency and Grant Number: Budapest University of Technology and Economics; National Research, Development and Innovation Office (NKFIH)National Research, Development & Innovation Office (NRDIO) - Hungary [OTKA-PD20-134430]; project "Centre of Excellence in Production Informatics and Control" (EPIC) [EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592]; Portugal-Hungarian bilateral scientific cooperation Project [2018-2.1.15-TET-PT-2018-00012]; BME NC TKP2020 grant of NKFIH HungaryNational Research, Development & Innovation Office (NRDIO) - Hungary
Funding text: Open access funding provided by Budapest University of Technology and Economics. This research was partly supported by the National Research, Development and Innovation Office (NKFIH) No. OTKA-PD20-134430 and by the project "Centre of Excellence in Production Informatics and Control" (EPIC) No. EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592. The research work introduced herein was partly supported by the Portugal-Hungarian bilateral scientific cooperation Project No. 2018-2.1.15-TET-PT-2018-00012 and by the BME NC TKP2020 grant of NKFIH Hungary.
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" mtid="10056359"> <a href="/gui2/?type=authors&mode=browse&sel=10056359" target="_blank">Geier, Norbert</a> </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;31625427" mtid="31625427" target="_blank">Influence of fibre orientation on cutting force in up and down milling of UD-CFRP composites</a></div> <div class="pub-info"> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span> <span class="journal-volume">111</span> <span class="page"> pp. 881-893. , 13 p. </span> <span class="year">(2020)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="10.1007/s00170-020-06163-3" target="_blank" href="https://doi.org/10.1007/s00170-020-06163-3"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000575795900012" target="_blank" href="https://www.webofscience.com/wos/woscc/full-record/000575795900012"> WoS </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85092098577" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85092098577"> Scopus </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:black" title="http://link.springer.com/10.1007/s00170-020-06163-3" target="_blank" href="http://link.springer.com/10.1007/s00170-020-06163-3"> Egyéb URL </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:31625427 </span> <span class="status-holder"><span class="status-data status-VALIDATED"> Egyeztetett </span></span> <span class="pub-core">Forrás Idéző </span> <span class="pub-type">Folyóiratcikk (Szakcikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> <div class="publication-citation" style="margin-left: 0.5cm;"> <span title="Nyilvános idézőközlemények összesen, említések nélkül" class="citingPub-count">Nyilvános idéző összesen: 19</span> | Független: 14 | Függő: 5 | Nem jelölt: 0 | WoS jelölt: 18 | Scopus jelölt: 9 | WoS/Scopus jelölt: 18 | DOI jelölt: 19 </div> </div> </div> </div><div class="JournalArticle Publication long-list">
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<div class="autype autype0"> <span class="author-name" mtid="10056359"><a
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(<span class="authorship-author-name">Geier Norbert</span>
<span class="authorAux-mtmt"> Gyártástechnológia</span>)
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<span class="author-affil"><span title="Budapesti Műszaki és Gazdaságtudományi Egyetem">BME</span>/<span title="Gépészmérnöki Kar">GPK</span>/Gyártástudomány és -technológia Tanszék</span>
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;31625427" target="_blank">Influence of fibre orientation on cutting force in up and down milling of UD-CFRP composites</a></div> <div> <span class="journal-title">INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY</span>
<span class="journal-issn">(<a target="_blank" href="https://portal.issn.org/resource/ISSN/0268-3768">0268-3768</a> <a target="_blank" href="https://portal.issn.org/resource/ISSN/1433-3015">1433-3015</a>)</span>:
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<div class="mtid"><span class="long-pub-mtid">Közlemény: 31625427</span>
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<div class="lastModified">Utolsó módosítás: 2021.06.09. 09:48 Sövény Emese (BME admin 5)
</div>
<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: Funding Agency and Grant Number: Budapest University of Technology and Economics; National Research, Development and Innovation Office (NKFIH) [OTKA-PD20-134430]; project "Centre of Excellence in Production Informatics and Control" (EPIC) [EU H2020-WIDESPREAD-01-2016-2017-TeamingPhase2-739592]; Portugal-Hungarian bilateral scientific cooperation Project [2018-2.1.15-TET-PT-2018-00012]; BME NC T...</pre>
</div></div>