Analysis and Method to Increase the Productivity of Laser-Based Powder Bed Fusion of Metals
暫譯: 激光粉床熔融金屬生產力提升的分析與方法
Li, Gefei
- 出版商: Springer
- 出版日期: 2026-07-15
- 售價: $6,010
- 貴賓價: 9.5 折 $5,709
- 語言: 英文
- 頁數: 23
- 裝訂: Quality Paper - also called trade paper
- ISBN: 3032289424
- ISBN-13: 9783032289421
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相關分類:
材料科學 Meterials
海外代購書籍(需單獨結帳)
商品描述
Additive manufacturing offers promising solutions to challenges in modern industries. Powder bed fusion with a laser beam for metals (PBF-LB/M) has reached high maturity, enabling decentralized, on-demand production of high-performance components that helps mitigate supply chain disruptions.
A key advantage of PBF-LB/M is its exceptional design freedom, enabling the tool-less fabrication of complex geometries--such as topology-optimized lightweight designs or patient-specific medical implants--that cannot be realized with conventional methods. This reduces manufacturing steps and material waste, making it widely used in aerospace and medical technology.
Despite these advantages, PBF-LB/M faces significant challenges in quality, time efficiency, and cost-effectiveness. Long process times lead to high production costs, limiting competitiveness at high volumes. Increasing productivity without compromising quality is essential for broader industrialization.
This work optimizes the theoretical build rate for AlSi10Mg using a ring-shaped laser intensity distribution combined with high laser power. The optimized process achieved a 233% increase in build rate--from 10.8 mm3/s to 36 mm3/s--compared to a Gaussian reference process at 370 W. Economic analysis on an EOS M290 with 60 m layer thickness revealed a maximum reduction of 70% in process time and cost, with realistic savings of 50-65% under optimal conditions.
商品描述(中文翻譯)
增材製造為現代產業中的挑戰提供了有前景的解決方案。金屬的粉末床熔融(PBF-LB/M)技術已達到高度成熟,能夠實現去中心化、按需生產高性能元件,幫助減輕供應鏈中斷的影響。
PBF-LB/M的一個主要優勢是其卓越的設計自由度,使得無需工具即可製造複雜幾何形狀,例如拓撲優化的輕量化設計或特定病人的醫療植入物,這些是傳統方法無法實現的。這減少了製造步驟和材料浪費,使其在航空航天和醫療技術中得到廣泛應用。
儘管有這些優勢,PBF-LB/M在質量、時間效率和成本效益方面仍面臨重大挑戰。長時間的加工過程導致高生產成本,限制了在高產量下的競爭力。在不妥協質量的情況下提高生產力對於更廣泛的工業化至關重要。
本研究優化了使用環形激光強度分佈結合高激光功率的AlSi10Mg的理論建造速率。與370 W的高斯參考過程相比,優化後的過程實現了建造速率的233%增長,從10.8 mm³/s提升至36 mm³/s。對於層厚60微米的EOS M290進行的經濟分析顯示,過程時間和成本的最大減少可達70%,在最佳條件下實現現實的節省為50-65%。
作者簡介
Gefei Li studied Mechanical Engineering and Aerospace Engineering at RWTH Aachen University and the University of California, Davis. His research at the Fraunhofer Institute IAPT and Hamburg University of Technology focused on PBF-LB/M process and product development.
作者簡介(中文翻譯)
李戈飛於亞琛工業大學(RWTH Aachen University)和加州大學戴維斯分校(University of California, Davis)學習機械工程和航空航天工程。他在弗勞恩霍夫研究所 IAPT 和漢堡科技大學的研究專注於 PBF-LB/M 的過程和產品開發。