Modeling and Simulation of Functionalized Materials for Additive Manufacturing and 3D Printing: Continuous and Discrete Media: Continuum and Discrete ... Notes in Applied and Computational Mechanics)
暫譯: 功能化材料的建模與模擬:增材製造與3D列印的連續與離散媒介(應用與計算力學筆記)

Tarek I. I. Zohdi

  • 出版商: Springer
  • 出版日期: 2017-12-22
  • 售價: $7,920
  • 貴賓價: 9.5$7,524
  • 語言: 英文
  • 頁數: 320
  • 裝訂: Paperback
  • ISBN: 3319700774
  • ISBN-13: 9783319700779
  • 海外代購書籍(需單獨結帳)

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商品描述

Within the last decade, several industrialized countries have stressed the importance of advanced manufacturing to their economies. Many of these plans have highlighted the development of additive manufacturing techniques, such as 3D printing which, as of 2018, are still in their infancy. The objective is to develop superior products, produced at lower overall operational costs. For these goals to be realized, a deep understanding of the essential ingredients comprising the materials involved in additive manufacturing is needed. The combination of rigorous material modeling theories, coupled with the dramatic increase of computational power can potentially play a significant role in the analysis, control, and design of many emerging additive manufacturing processes. Specialized materials and the precise design of their properties are key factors in the processes. Specifically, particle-functionalized materials play a central role in this field, in three main regimes:

 (1) to enhance overall filament-based material properties, by embedding particles within a binder, which is then passed through a heating element and the deposited onto a surface,

 (2) to “functionalize” inks by adding particles to freely flowing solvents forming a mixture, which is then deposited onto a surface and

 (3) to directly deposit particles, as dry powders, onto surfaces and then to heat them with a laser, e-beam or other external source, in order to fuse them into place.

The goal of these processes is primarily to build surface structures which are extremely difficult to construct using classical manufacturing methods. The objective of this monograph is introduce the readers to basic techniques which can allow them to rapidly develop and analyze particulate-based materials needed in such additive manufacturing processes. This monograph is broken into two main parts: “Continuum Method” (CM) approaches and “Discrete Element Method” (DEM) approaches. The materials associated with methods (1) and (2) are closely related types of continua (particles embedded in a continuous binder) and are treated using continuum approaches. The materials in method (3), which are of a discrete particulate character, are analyzed using discrete element methods.

商品描述(中文翻譯)

在過去十年中,幾個工業化國家強調了先進製造對其經濟的重要性。這些計劃中的許多都突出了增材製造技術的發展,例如3D列印,這些技術截至2018年仍處於起步階段。其目標是開發出優質產品,並以較低的整體運營成本進行生產。為了實現這些目標,需要深入了解構成增材製造中所涉及材料的基本成分。嚴謹的材料建模理論與計算能力的劇增相結合,可能在許多新興的增材製造過程的分析、控制和設計中發揮重要作用。專用材料及其性質的精確設計是這些過程中的關鍵因素。具體而言,顆粒功能化材料在這一領域中扮演著核心角色,主要體現在三個方面:

(1) 通過將顆粒嵌入粘合劑中來增強整體基於絲材的材料性能,然後將其通過加熱元件並沉積到表面上,

(2) 通過向自由流動的溶劑中添加顆粒來“功能化”墨水,形成混合物,然後將其沉積到表面上,以及

(3) 直接將顆粒作為乾粉沉積到表面上,然後用激光、電子束或其他外部來源加熱,以將其熔合到位。

這些過程的主要目標是構建使用傳統製造方法極難構建的表面結構。本專著的目的是向讀者介紹基本技術,使他們能夠快速開發和分析在這些增材製造過程中所需的顆粒基材料。本專著分為兩個主要部分:“連續方法”(CM)方法和“離散元方法”(DEM)方法。與方法(1)和(2)相關的材料是密切相關的連續體類型(顆粒嵌入連續粘合劑中),並使用連續方法進行處理。方法(3)中的材料具有離散顆粒特性,則使用離散元方法進行分析。