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Titlebook: Additive Manufacturing in Multidisciplinary Cooperation and Production; Igor Drstvensek,Snehashis Pal,Nataša Ihan Hren Book 2024 The Edito

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发表于 2025-3-21 20:04:56 | 显示全部楼层 |阅读模式
期刊全称Additive Manufacturing in Multidisciplinary Cooperation and Production
影响因子2023Igor Drstvensek,Snehashis Pal,Nataša Ihan Hren
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发行地址Presents selected papers from the iCAT 2023 conference.Reports on cutting-edge findings in additive manufacturing (AM).Covers materials, technology behavior, processes, simulations, and medical applic
学科分类Springer Tracts in Additive Manufacturing
图书封面Titlebook: Additive Manufacturing in Multidisciplinary Cooperation and Production;  Igor Drstvensek,Snehashis Pal,Nataša Ihan Hren Book 2024 The Edito
影响因子.This book publishes the latest findings and ideas in the field of additive manufacturing presented by authors from prominent institutions around the world at the iCAT 2023 conference. The authors address various technological and medical aspects, ranging from materials science to the specific behaviour of the technology under different working conditions. The book is divided into four sections, three of which are dedicated to the purely technological aspects of additive manufacturing, covering metal processes, polymer processes and simulation. The fourth part of the book is dedicated to the medical applications of additive manufacturing, covering areas ranging from orthopaedic surgeries to materials used in medical AM.Overall, the book provides insight into the current state of the science and applications of additive manufacturing..
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Igor Drstvensek,Snehashis Pal,Nataša Ihan HrenPresents selected papers from the iCAT 2023 conference.Reports on cutting-edge findings in additive manufacturing (AM).Covers materials, technology behavior, processes, simulations, and medical applic
发表于 2025-3-22 05:36:24 | 显示全部楼层
Springer Tracts in Additive Manufacturinghttp://image.papertrans.cn/a/image/144825.jpg
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Additive Manufacturing in Multidisciplinary Cooperation and Production978-3-031-37671-9Series ISSN 2730-9576 Series E-ISSN 2730-9584
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Transport for Momentum, Energy and Mass,me existing limitations in the range of polymers suitable for PBF-LB/P, the non-isothermal, support-free powder bed fusion of polymers by means of superposed fractal, phase-shifted exposure strategies is proposed. Using polypropylene as a model material, thermographic monitoring allows for observing
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Transport for Momentum, Energy and Mass,ith high mechanical properties. However, enhancing the reproducibility of part properties is one of the main challenges on the technologies way to industrialization. Therefore, the process has to be robust, the resulting part properties must be predictable and reproducible. The basic material-beam-i
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