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Titlebook: Digitalization of design for support structures in laser powder bed fusion of metals; Katharina Bartsch Book 2023 The Editor(s) (if applic

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Waste Quantities and Characteristics,cific heat capacity, thermal conductivity, absorption of laser radiation, Young’s modulus, yield strength, ultimate tensile strength, Poisson’s ratio, and the coefficient of thermal expansion. These are modeled for solid as well as powder material.
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Christine Furedy,Raakhee Kulkarni The full design procedures including process simulation are described. The parts are manufactured and evaluated following the benchmark procedure. It is shown that for production scales larger than single-part production, the research hypothesis is proven valid without any exception.
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R. B. Thompson,O. Buck,D. K. Rehbeinis was proven valid and the developed design methodology of algorithmic support structure design successful. Cost reduction is achieved, whereas the technical performance is satisfactory and even slightly increases compared to the standard block support type. An outlook on subjects in need of further research is given.
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Conclusion,is was proven valid and the developed design methodology of algorithmic support structure design successful. Cost reduction is achieved, whereas the technical performance is satisfactory and even slightly increases compared to the standard block support type. An outlook on subjects in need of further research is given.
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Introduction,ired experience hinder the adoption of additive manufacturing. With regard to laser powder bed fusion of metals, the support structures are a key factor related to all these issues. Hence, this thesis deals with the digitalization of support structure design to contribute to an increase in additive manufacturing adoption.
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Support Structure Design,d the design rules of chapter 5 are implemented. The complete tree support modeling procedure is described in detail and validated against the topology optimization results used to derive the design rules.
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