Saadat | Advances in Manufacturing Technology | Buch | 978-3-032-38893-3 | www.sack.de

Buch, Englisch, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Mechanical Engineering

Saadat

Advances in Manufacturing Technology

Proceedings of the 22nd International Conference on Manufacturing Research
Erscheinungsjahr 2026
ISBN: 978-3-032-38893-3
Verlag: Springer

Proceedings of the 22nd International Conference on Manufacturing Research

Buch, Englisch, Format (B × H): 155 mm x 235 mm

Reihe: Lecture Notes in Mechanical Engineering

ISBN: 978-3-032-38893-3
Verlag: Springer


The Proceedings of the (ICMR 2025), held at the University of Birmingham, UK, from 10–12 September 2025, present peer-reviewed technical contributions from researchers across a broad spectrum of advanced and digital manufacturing systems, technologies, and management. The conference provides an international forum for the dissemination of the latest research findings, the exchange of ideas, and the promotion of collaboration within the manufacturing research community. Reflecting the breadth and diversity of the field, the articles in these Proceedings cover topics ranging from sustainable manufacturing systems and technologies to the application of artificial intelligence and machine learning in manufacturing.

Established by the Consortium of UK University Manufacturing and Engineering Heads (COMEH), ICMR has been the UK's leading manufacturing research conference for 38 years and has been held as an international conference since 2003.

These Proceedings constitute the inaugural volume in the ICMR conference series to be published in Springer Nature's .

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Zielgruppe


Research


Autoren/Hrsg.


Weitere Infos & Material


SECTION ONE - Additive and Hybrid Manufacturing.-  A study of pure tungsten in directed energy deposition through analysis of single lines.- An investigation into the secondary stage creep behaviour of ABS thin-walled additive manufactured specimens.- Assessing Sustainability in Additive Manufacturing, A Meta-Analysis Across Key Performance Indicators.- Data-driven multi-objective optimisation of build orientation of parts with internal channels manufactured by laser powder bed fusion.- Evaluating the Effectiveness of Brick Layering in FDM 3D Printing: A Parameterized Study on Tensile Properties of PLA.- Stereolithography Additive Manufacturing for Soft Lattice Metamaterials.- SECTION TWO - Advanced Manufacturing Systems.- Application of acoustic emission sensorization to plasma spray deposition.- Comparative Study and Optimization of Machine Learning Models for Porosity Prediction in Laser Powder Bed Fusion.- Making digital work: practitioner-driven framework development for food SMEs.- SECTION THREE - Advanced Manufacturing Technologies.- Analysis of Unsupervised Learning for Data-Driven Drilling Quality Classification in Aircraft Aluminium Components: A Confusion Matrix Evaluation in CNC Machining Insights.- FEM-Based Performance Evaluation of an Electrically Actuated SPF Machine.- SECTION FOUR - Advanced Materials and Production.- Development of techniques for improving the layer adhesion of Fused Filament Fabrication 3D prints.- Improvement of wear and corrosion performance of ductile iron with deep cryogenic and heat treatment.- Microstructure and mechanical properties relationship in aerospace aluminium castings.


Dr Mozafar Saadat is with the Department of Mechanical Engineering, School of Engineering, at the University of Birmingham, UK. He received his Honours degree in Mechanical Engineering from the University of Surrey and his PhD in Industrial Automation from the University of Durham. His research interests include automation, robotics, and intelligent manufacturing, with particular emphasis on autonomous remanufacturing and medical robotics. He has secured research funding from the European Union, the Engineering and Physical Sciences Research Council (EPSRC), Innovate UK, and industry. Dr Saadat has authored more than 180 peer-reviewed journal articles and conference papers, supervised more than 30 PhD students to completion, and developed innovative technologies that have led to the establishment of a medical robotics start-up company in the field of Assisted Reproductive Technology (ART). His work has also resulted in three patents, two of which have been granted in the UK, the European Union, and the USA.



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