Vai al contenuto principale della pagina

3D Printed Smart Sensors and Energy Harvesting Devices : Concepts, Fabrication and Applications



(Visualizza in formato marc)    (Visualizza in BIBFRAME)

Autore: Goel Sanket Visualizza persona
Titolo: 3D Printed Smart Sensors and Energy Harvesting Devices : Concepts, Fabrication and Applications Visualizza cluster
Pubblicazione: Bristol : , : Institute of Physics Publishing, , 2024
©2024
Edizione: 1st ed.
Descrizione fisica: 1 online resource (242 pages)
Disciplina: 621.381
Soggetto topico: Additive manufacturing
Three-dimensional printing
Altri autori: DudalaSohan  
Nota di contenuto: PRELIMS.pdf --

The advent of 3D printing (3DP) technology, or additive manufacturing (AM), has revolutionised the fabrication and prototyping industry. Recently, 3D printing has become a go-to option for developing next-generation systems and devices including sensors and energy harvesters. This has been possible owing to the development of 3DP technology in terms of new materials and improved performance with high accuracy, robustness and affordability. The devices and systems developed using 3D printing are now integral to emerging technologies, such as micro-electro-mechanical systems (MEMS), nanoelectronics, wearable devices, and microfluidics, which are critical for applications spanning healthcare, energy, and consumer electronics.

This book, 3D Printed Smart Sensors and Energy Harvesting Devices: Concepts, fabrication, and applications, explores key elements of 3D printing and their transformative potential in sensors and energy harvesters. The book provides a comprehensive look at the entire value chain (cradle to grave) for developing these advanced devices, from design to fabrication, characterisation, and integration with sensing mechanisms and smart circuitry.

Various chapters delve into the technical aspects of 3DP, detailing its advantages over conventional techniques. The readers will gain insight into various 3DP technologies, computer-aided design (CAD) tools, and the importance of materials (including commercially available options and innovative composites). The book discusses how 3DP facilitates diverse applications, from sensing, energy storage and harvesting to fuel cell and supercapacitor encapsulation, by integrating functional materials such as electrodes and employing chemical modifications.

This book offers a forward-looking perspective, discussing challenges and future opportunities for 3DP devices. The book also highlights the interdisciplinary nature of realising devices and systems and the role of 3DP technology in addressing their integration challenges. 3DP and associated technologies have bridged the gap between engineering, material science, and applied research, making it a valuable tool for students, academics, industry professionals, or anyone interested in the forefront of manufacturing innovation and prototyping.

We invite readers to explore the concepts and techniques for developing smart sensors and energy-harvesting devices employing 3D printing. The book is designed to keep in view the novice needs of readers, with initial chapters discussing the fundamentals and subject matter experts who may be interested in reading about recent advancements.

Acknowledgements -- Acknowledgements -- Editor biographies -- Sanket Goel -- Sohan Dudala -- List of contributors -- CH001.pdf -- Chapter Introduction to 3D printing -- 1.1 Introduction -- 1.2 Generic part-building workflow of the additive manufacturing process -- 1.2.1 Stage 1. Design conceptualization and design preparation -- 1.2.2 Stage 2. Conversion of the 3D CAD model to an .STL file and .STL file manipulation -- 1.2.3 Stage 3. Additive manufacturing part preparation and post-processing -- 1.3 Materials for additive manufacturing -- 1.3.1 Ceramic -- 1.3.2 Polymer -- 1.3.3 Metals -- 1.4 Classification of additive manufacturing technologies -- 1.5 Powder bed fusion -- 1.6 Material extrusion -- 1.7 Binder jetting -- 1.8 Sheet lamination -- 1.9 VAT photopolymerization -- 1.10 Material jetting -- 1.11 Hybrid manufacturing -- 1.12 Design for additive manufacturing for quality -- 1.13 Conclusion and discussion -- References -- CH002.pdf </td> </tr> <tr> <td class="alignRight"> Sommario/riassunto:</td> <td class="alignLeft">The book aims to explore the state-of-the-art integration of 3D printing technology in smart sensing and energy harvesting systems. By presenting a comprehensive overview of the field, the book seeks to bridge the gap between theoretical knowledge and practical applications, serving as a valuable resource for researchers, engineers, and students.</td> </tr> <tr> <td class="alignRight">Titolo autorizzato:</td> <td class="alignLeft">3D Printed Smart Sensors and Energy Harvesting Devices  <a style="vertical-align:top" href="searchTitles?t_cluster_id=4689740" title="Visualizza opera"><img src="img/books.png" class="iconImage" alt="Visualizza cluster"></a></td> </tr> <tr></tr> <tr> <td class="alignRight"> ISBN:</td> <td class="alignLeft">9780750353533</td> </tr> <tr> <td class="alignRight"> </td> <td class="alignLeft">0750353538</td> </tr> <tr> <td class="alignRight">Formato:</td> <td class="alignLeft">Materiale a stampa <img src="img/format/mas.png" width="24" height="24" alt="" class="format" /></td> </tr> <tr> <td class="alignRight">Livello bibliografico</td> <td class="alignLeft">Monografia</td> </tr> <tr> <td class="alignRight"> Lingua di pubblicazione:</td> <td class="alignLeft">Inglese</td> </tr> <tr> <td class="alignRight">Record Nr.:</td> <td class="alignLeft">9911088727303321</td> </tr> <tr></tr> <tr> <td class="alignRight">Lo trovi qui:</td> <td class="alignLeft">Univ. Federico II</td> </tr> <tr> <td class="alignRight">Opac:</td> <td class="alignLeft"><a href='https://napoli.primo.exlibrisgroup.com/discovery/search?vid=39NAP_INST:39NAP_V1&search_scope=ALL_PC&tab=default_tab&onCampus=true&indx=1&bulkSize=10&dym=true&highlight=true&displayField=title&query=any%2Ccontains%2C9911088727303321&SF=9911088727303321&submit=cerca' target="_blank">Controlla la disponibilità qui<div class="circle"></div></a></td> </tr> </table> </div> <div id="tab-2" class="tab-content"> <span class="attrField">Serie:</span> <span data-id="99-21474836480403321" class="attrValue marginBot">IOP Ebooks Series</span> </div> </div> </div> </div> </div> </div> <script> $(document).ready(function() { $("span[data-id]").each(function(i, e) { var dataId = $(e).attr("data-id"); var label = $(e).html(); $.ajax({ url: 'resource?uri=UNINA'+dataId, success: function(response) { $(e).html('<a href="resource?uri=UNINA'+dataId+'"><div class="vividBlue">'+label+'</div></a>') } }); }); }); </script> <!-- Next / previous button --> <div class="spacer2"></div> <div id="mlt" style="padding-top: 170px; margin-top: -170px;"></div> <!-- <a name="mlt" style="display:none;">more like this</a>--> <div class="containerTab"> <div class="tabsmenu"> <ul> <li class="active"><a>Documenti simili</a></li> </ul> </div> <div class="results"> <table class="infoBookDataTable" width="100%" cellpadding="0" cellspacing="0"> <tbody> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000001939&v=l">Dispositivi attivi a semiconduttore per microonde / Giacomo Roberto Bisio , Alessandro Chiabrera</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Bisio%2C+Giacomo+Roberto"'>Bisio, Giacomo Roberto</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000002016&v=l">Servosistemi / Pier Giorgio Perotto</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Perotto%2C+Pier+Giorgio"'>Perotto, Pier Giorgio</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000002038&v=l">Elaborazione numerica dei segnali / Alan V. Oppenheim, Ronald W. Schafer ; edizione italiana a cura di Carlo Braccini e Giuseppe Gambardella</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Schafer%2C+Ronal+W."'>Schafer, Ronal W.</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000002544&v=l">Circuiti lineari e non lineari / Leon O. Chua, Charles A. Desoer, Ernest S. Kuh</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Chua%2C+Leon+O."'>Chua, Leon O.</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000003264&v=l">Misure elettroniche : strumentazione analogica / Luigino Benetazzo</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Benetazzo%2C+Luigino"'>Benetazzo, Luigino</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000003528&v=l">Elettronica : l'analogica / R. Giometti, F. Frascari</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Giometti%2C+Ruggero"'>Giometti, Ruggero</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000024332&v=l">Wireless direction finding / by R. Keen</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Keen%2C+Ronald"'>Keen, Ronald</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000024337&v=l">Long distance propagation of HF radio waves / A. V. Gurevich, E. E. Tsedilina</a> </strong> <br /> <a href='search?h=def&f=author_1xx_7xx_search:"Gurevich%2C+Alexsandr+V."'>Gurevich, Alexsandr V.</a> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000001859&v=l">Basic electronic instrument handbook / Clyde F. Coombs jr., editor-in-chief</a> </strong> <br /> </td> </tr> <tr> <td> <strong> <a href="resource?uri=UNIPARTHENOPE000001874&v=l">Digital signal computers & processors / edited by Andres C. Salazar</a> </strong> <br /> </td> </tr> </tbody> </table> <div id="navigatore"> <span class="navigation-result"><strong>1 - 10</b> di <b>3132 risultati trovati</strong></span> <span class="current-page-number">1</span> <a style="cursor:pointer;" onclick="javascript:mlt('p','2')">2</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','3')">3</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','4')">4</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','5')">5</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','6')">6</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','7')">7</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','8')">8</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','9')">9</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','10')">10</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','11')">11</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','12')">12</a> <a style="cursor:pointer;" onclick="javascript:mlt('p','13')">13</a> ... <a style="cursor:pointer;" onclick="javascript:mlt('p','2')">></a> <a style="cursor:pointer;" onclick="javascript:mlt('p','314')">>></a> </div> </div> </div> <link href="/sharecat/style/workspace.css" rel="stylesheet" type="text/css" /> </div> <br/> <br/> </div> <!-- END colMain1 --> <div class="clear"></div> </div> <!-- END container --> <!-- START footer --> <div id="footer"> <!-- <a href="#" title="">Credits e informazioni</a> --> powered by <a href="https://www.atcult.it" target="_new">@Cult </a> Rome, Italy. </div> <!-- END footer --> </div> <!-- END layout --> </body> </html>