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Titlebook: Second RILEM International Conference on Concrete and Digital Fabrication; Digital Concrete 202 Freek P. Bos,Sandra S. Lucas,Theo A.M. Sale

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发表于 2025-3-21 19:25:02 | 显示全部楼层 |阅读模式
书目名称Second RILEM International Conference on Concrete and Digital Fabrication
副标题Digital Concrete 202
编辑Freek P. Bos,Sandra S. Lucas,Theo A.M. Salet
视频video
概述Showcases additive manufacturing techniques for digital fabrication in construction.Presents the proceedings of the 2nd RILEM International Conference on Concrete and Digital Fabrication (Digital Conc
丛书名称RILEM Bookseries
图书封面Titlebook: Second RILEM International Conference on Concrete and Digital Fabrication; Digital Concrete 202 Freek P. Bos,Sandra S. Lucas,Theo A.M. Sale
描述.This book gathers peer-reviewed contributions presented at the 2nd RILEM International Conference on Concrete and Digital Fabrication (Digital Concrete), held online and hosted by the Eindhoven University of Technology, the Netherlands from 6-9 July 2020. Focusing on additive and automated manufacturing technologies for the fabrication of cementitious construction materials, such as 3D concrete printing, powder bed printing, and shotcrete 3D printing, the papers highlight the latest findings in this fast-growing field, addressing topics like mixture design, admixtures, rheology and fresh-state behavior, alternative materials, microstructure, cold joints & interfaces, mechanical performance, reinforcement, structural engineering, durability and sustainability, automation and industrialization..
出版日期Conference proceedings 2020
关键词RILEM; Digital Concrete; 3D Concrete Printing; cementitious materials; Smart Dynamic Casting; Shotcrete 3
版次1
doihttps://doi.org/10.1007/978-3-030-49916-7
isbn_softcover978-3-030-49918-1
isbn_ebook978-3-030-49916-7Series ISSN 2211-0844 Series E-ISSN 2211-0852
issn_series 2211-0844
copyrightRILEM 2020
The information of publication is updating

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Synthesis of Hybridized Rheological Modifiers for 3D Concrete Printingt methods of synthesizing the hybrid systems and examine their stability through measuring their effect on cement rheology at different component ratios and at different time stamps from the time of hybridization. We then demonstrate their impact on printing performance by producing complex 3D print
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Control of Strand Properties Produced with Shotcrete 3D Printing by Accelerator Dosage and Process P unwanted changes in geometry due to accelerator, process parameters to modify the geometry are studied as well. Therefore, the effect of traverse speed, nozzle-to-strand-distance and volume air flow on the geometry is quantified..Finally, the possibilities to use the findings of the effect of accel
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Comparison of Printable Inorganic Binders - Key Properties for 3D Printable Materialsan in standard OPC which was also successfully utilized for 3D printing. This mix performed best in compressive and flexural strength. The developed materials were further examined by slump test and ultrasonic wave velocity.
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Use of the Chemical and Mineral Admixtures to Tailor the Rheology and the Green Strength of 3D Printdition, the green strength of mixtures was monitored up to 40 min after mixing. An empirical test setup and a novel sampling method were proposed to evaluate the behavior of the fresh 3D printed layers during the printing process.
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Characterising Concrete Mixes for 3D Printingability, extrudability, buildability, compressive strength and open time for printing concrete. To overcome these challenges this project will investigate the effect of nanoclay to improve the fresh properties of printing concrete. It is considered that by utilizing different amounts of nanoclay and
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Advances in Binder-Jet 3D Printing of Non-cementitious Materialsd its application in the production of stay-in-place, self-supporting and waste-free formwork systems for modular building components. The manufacturing technique considered for such investigation is binder jet 3d printing, on the basis of the remarkable flexibility it offers in terms of material pr
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