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Titlebook: Generative Manufacturing of Optical, Thermal and Structural Components (GROTESK); Roland Lachmayer,Dietmar Kracht,Henning Ahlers Conferenc

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书目名称Generative Manufacturing of Optical, Thermal and Structural Components (GROTESK)
编辑Roland Lachmayer,Dietmar Kracht,Henning Ahlers
视频video
概述Provides comprehensive overview of novel process technologies.Contains detailed explanations of the concept development of novel system technologies.Provides a comprehensive overview of current resear
图书封面Titlebook: Generative Manufacturing of Optical, Thermal and Structural Components (GROTESK);  Roland Lachmayer,Dietmar Kracht,Henning Ahlers Conferenc
描述The book describes and explains the results of the collaborative project Generative Manufacturing of Optical, Thermal and Structural Components over the last three years. The overall goal is the development of a system concept based on generative manufacturing for integrated optical and optomechanical systems. Different developed generative manufacturing processes for glass and specially designed metal powders have been implemented in a single fabrication set up enabling multi-material manufacturing of optical components and systems. The main focus of the project is split into several topics: simulation, design, material engineering, process engineering, post-processing and component evaluation. The simulation of the glass printing process will be structured iteratively with a comparison of the experimental results in order to be able to finally make a prediction of the necessary parameter sizes for defined components. A metal material with similar thermal conductivity and thermal expansion properties to glass or laser-active crystals has been developed iteratively over the course of the project to enable direct printing onto these materials. In order to demonstrate the potential o
出版日期Conference proceedings 2022
关键词Process simulation; Laser deposition welding; Material development; Optical systems; Multimaterial print
版次1
doihttps://doi.org/10.1007/978-3-030-96501-3
isbn_softcover978-3-030-96500-6
isbn_ebook978-3-030-96501-3
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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https://doi.org/10.1007/978-1-4842-3954-4optomechanics for one of the most demanding optics assembly, a complete laser system, are 3D printed. Recommendations regarding possible fields of application are then derived from the results. In addition, further development potentials towards higher function integration are named and paths to their achievement are outlined.
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Eveline Grabau,Henriëtte Vissernd process parameters on the printing result in detail. On the other hand, material parameters are determined, and requirements defined for developing specific materials for the additive manufacturing of laser heat sinks.
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Additively Manufactured Polymer Optomechanics and Their Application in Laser Systems,optomechanics for one of the most demanding optics assembly, a complete laser system, are 3D printed. Recommendations regarding possible fields of application are then derived from the results. In addition, further development potentials towards higher function integration are named and paths to their achievement are outlined.
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Additive Manufacturing of Optics and Optomechatronics: Multiphysics Simulation Environments for Prond process parameters on the printing result in detail. On the other hand, material parameters are determined, and requirements defined for developing specific materials for the additive manufacturing of laser heat sinks.
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Additive Manufacturing of Optical, Thermal and Structural Components by Laser Metal Deposition,materials for additive manufacturing. Using custom experiment designs, process parameters are developed which are combined with intelligent process control. The result is the first-ever fabrication of expansion-compliant multi-material joints between yttrium aluminum garnet lasing mediums and metal materials in a single additive process.
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Enhancing the Framework: Screenshots material without the use of binders, the process of fiber-based laser glass deposition is used as part of this work. This process makes it possible to add functional waveguides in previously impossible shapes, spherical lenses and solids additively on a glass substrate.
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Clinical Results: Central Nervous System, structure resulting from excessive temperature gradients and induced mechanical stresses. Molybdenum copper pseudo alloys are suitable for this particular application regarding their moderate thermal expansion coefficients. The further addition of suitable alloying elements enables a targeted adaption to meet the required properties.
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