Hot Isostatic Pressing of Ti-6al-4v Processed by Laser Powder Bed Fusion
暫譯: 雷射粉末床熔融製程 Ti-6Al-4V 的熱等靜壓加工
Kettermann Fernandes, Viviane
- 出版商: Springer
- 出版日期: 2026-09-10
- 售價: $8,980
- 貴賓價: 9.5 折 $8,531
- 語言: 英文
- 頁數: 183
- 裝訂: Quality Paper - also called trade paper
- ISBN: 303237913X
- ISBN-13: 9783032379139
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相關分類:
材料科學 Meterials、3D 列印
海外代購書籍(需單獨結帳)
商品描述
This book offers a process-chain perspective on Laser Powder Bed Fusion (LPBF) and Hot Isostatic Pressing (HIP) for Ti-6Al-4V, focusing on how defect characteristics govern high cycle fatigue and mechanical performance. It shows how productivity-driven strategies, such as hull-bulk and in-situ shelling, can be implemented achieving industrial standards.
The research examines how LPBF parameters define the initial defect state, and how HIP modifies these defects depending on their size, shape, and connectivity. By separating and then conceptually integrating printing and post-processing, it provides an understanding of the mechanisms linking process parameters, defect evolution, and mechanical performance. Particular emphasis is placed on the trade-off between productivity and quality, the limitations of common qualification metrics such defect population.
Further, this work addresses a key industrial problem: how to increase LPBF productivity and when HIP can effectively compensate for process-induced defects. It provides researchers and engineers with a framework for optimizing LPBF and HIP together, based on defects characterization.
This book is intended for researchers, doctoral students, and industrial engineers working in additive manufacturing, materials processing, and fatigue-critical applications of Ti-6Al-4V.
商品描述(中文翻譯)
本書以製程鏈的觀點探討 Ti-6Al-4V 的 Laser Powder Bed Fusion(LPBF,雷射粉末床熔融)與 Hot Isostatic Pressing(HIP,熱等靜壓),聚焦於缺陷特徵如何影響高週疲勞與機械性能。本書說明如何實施以生產力為導向的策略,例如 hull-bulk(外殼–核心)與 in-situ shelling(原位包覆),同時達到工業標準。
本研究探討 LPBF 製程參數如何界定初始缺陷狀態,以及 HIP 如何根據缺陷的尺寸、形狀與連通性改變這些缺陷。透過將列印與後處理分開分析,再從概念上加以整合,本書闡明連結製程參數、缺陷演化與機械性能的機制。內容特別著重於生產力與品質之間的權衡,以及常見資格認證指標(例如缺陷群體)的限制。
此外,本書也處理一項重要的工業問題:如何提升 LPBF 的生產力,以及 HIP 在何種情況下能有效補償製程所引發的缺陷。本書以缺陷特徵分析為基礎,為研究人員與工程師提供一套共同最佳化 LPBF 與 HIP 的架構。
本書適合從事積層製造、材料加工,以及 Ti-6Al-4V 疲勞關鍵應用的研究人員、博士生與產業工程師閱讀。
作者簡介
Viviane Kettermann Fernandes studied Materials Engineering at the Universidade Federal de Santa Catarina (UFSC) in Florianópolis, Brasil, until 2018, graduating with an engineering degree. During her studies, she gained extensive experience through several research and industrial internships in laser-based materials processing, metallographic analysis, the development of polymer-derived ceramics, the production of glass foams from waste, and the investigation of high-temperature-resistant martensitic steels.
In 2018, she joined Aalberts Material Technology in Hamburg as an R&D Engineer, where she was involved in industrial research and development projects until 2022, including work directly related to additive manufacturing (AM) and hot isostatic pressing (HIP). Since 2022, she has been working as a Materials Engineer and Quality Manager at OWL GmbH in Aachen, also with a strong industrial focus on hot isostatic pressing.
In 2026, she completed her doctoral degree under Prof. Dr.-Ing. Claus Emmelmann at the Institute of Laser and Systems Engineering (iLAS) at Hamburg University of Technology (TUHH).
作者簡介(中文翻譯)
Viviane Kettermann Fernandes 於 2018 年前就讀於位於巴西 Florianópolis 的 Universidade Federal de Santa Catarina (UFSC) 材料工程系,並取得工程學位。在求學期間,她透過多段研究與產業實習累積了豐富經驗,研究領域包括雷射材料加工、金相分析、聚合物衍生陶瓷的開發、以廢棄物製造玻璃泡棉,以及耐高溫麻田散鐵鋼的研究。
2018 年,她加入位於 Hamburg 的 Aalberts Material Technology,擔任研發工程師,直到 2022 年參與多項產業研究與開發計畫,其中包括直接涉及積層製造(additive manufacturing, AM)與熱等靜壓(hot isostatic pressing, HIP)的工作。自 2022 年起,她任職於 Aachen 的 OWL GmbH,擔任材料工程師與品質經理,工作同樣高度聚焦於熱等靜壓。
2026 年,她在 Hamburg University of Technology (TUHH) 雷射與系統工程研究所(Institute of Laser and Systems Engineering, iLAS)Prof. Dr.-Ing. Claus Emmelmann 指導下完成博士學位。