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The presented book deals with the use of Wire Arc Additive Manufacturing (WAAM) as a means of stiffening and reinforcing free-form sheet metal as an application in facade. The main focus of the research is developing a methodology for welding ontop of pre-bent sheet metal; including digitizing of arbitrarily-formed sheet metal, developing of process-parameters for welding on thin sheet metal and generating force-responsive welding paths. The research is focused on singly-curved sheet metal profiles, and is concluded by the production of a number of small-scale prototypes which illustrate the potentials for reinforcing sheet metal using WAAM.
This book provides a clear picture of how computational processes are gradually permeating and innovating the Architecture, Engineering, and Construction sector, contributing to sustainability and aesthetic evolution. It achieves that by gathering a collection of accounts shared by pioneering professionals involved in this innovation, drawing from recent academic studies, ongoing experimental processes conducted in cutting-edge architectural and engineering offices, as well as innovative industrial applications. The covered subjects span a wide range, including artificial intelligence and robotic manufacturing, the metaverse and 3D printing, strategies to counter CO2 consumption through plug-ins, as well as emerging materials and construction techniques. The chapters feature authors who are pioneers and embrace roles like software developers, architects, process engineers, academics, and forward-thinking entrepreneurs. They represent authoritative references within a broader interconnected cultural and technological system; an eclectic system that finds in computational processes the key to addressing the new challenges of contemporary architecture.
This book includes the refereed Selected Papers of the 20th International Conference on Computer-Aided Architectural Design. INTERCONNECTIONS: Co-computing Beyond Boundaries, CAAD Futures 2023, held in Delft, The Netherlands, in July 5–7, 2023. The 43 full papers included in this book were carefully reviewed and selected from 144 submissions. They were organized in topical sections as follows: algorithmic architectural design; AI-powered architectural ideation; performance-based design, urban models and analysis; urban design; digital design, materials and fabrication; spatial information, data and semantics; building data analysis, visualisation, interaction; and building massing and layouts.
We live in a time when 3D printing has matured from a hobbyist and prototyping tool to a technology with potential to disrupt entire industries in and around the built environment. The developments in additive manufacturing are transforming architecture and design no less than they impact engineering and construction. The book portrays the rapid advances in research and industrial processes that have paved the road for this upheaval. In five chapters that cover historical development, engineering aspects, the digital design process, interactions with other technologies and potential for functionalization through additive manufacturing, the editors have curated a text that illustrates how a complex network of actors inspires and influences each other to make thistechnological transformation possible. The book follows the trail of scientists who prove the technology's viability and documents design explorations, prototypes and entire buildings that are demonstrating their readiness for the commercial market.
How could a more just and sustainable living environment be like? This anthology seeks to shed new light on how the design of built living environments shapes the possibilities for everyday life to be sustainable- The centerpiece of the anthology is a selection of speculative design experiments, including e.g. Weather Wash, Biophilia, and Interstitial Interventions. Moving from an analysis o 'what is' to an exploration of 'what if', the design experiments seek to articulate the limitations of ecomodernist urban sustainability while also opening up for alternatives. The design experiments are complemented by a number of essays, expanding on frustrations and reflections, and proving insight into how a design driven research process might be carried out, including methodological troubles. If you have an interest in planning and design for urban sustainability, futures studies and speculation, and/or design-driven research, then this book is definitely for you.
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The background of this research is related to innovative lightweight construction methods for short-term applications realized with highly recyclable materials produced from renewable resources. Specifically, the possibility of using selected paper-based products for design purposes is examined. The main topic discussed regards the state of the art and future potential of joining techniques for assemblies and structures designed with paper-based products. In this context, the preference on paper-tubes for a variety of designs is examined closely. A collection of case studies for selected joining techniques supported with digital tools, fabrication of prototypes and targeted structural experiments demonstrates possibilities and considerations. This book presents the research process and aims to inspire architects, designers and engineers who are eager to discuss on material innovation and the steps that need to be taken to examine the feasibility of such ideas.
*** Featuring a foreword by Pritzker Prize Winner Shigeru Ban *** Bringing together experts from research and practice, Shell Structures for Architecture: Form Finding and Optimization presents contemporary design methods for shell and gridshell structures, covering form-finding and structural optimization techniques. It introduces architecture and engineering practitioners and students to structural shells and provides computational techniques to develop complex curved structural surfaces, in the form of mathematics, computer algorithms, and design case studies. • Part I introduces the topic of shells, tracing the ancient relationship between structural form and forces, the basics of shel...
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