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Millwork : The Design and Manufacturing of Historic Millwork from 1740 - 1950
A comprehensive introduction to the emerging research in information in theoretic radar signal processing Historic millwork expert, Brent Hull provides a one-of-a-kind, comprehensive reference of millwork elements found in historic homes from the 18th to 20th centuries.Millwork: The Design and Manufacturing of Historic Millwork from 1740-1950 is organized by type of millwork for ease of reference and includes rare illustrations, hard-to-find drawings, and diagrams from the 19th century, many of which are sourced from out-of-print catalogs that are part of Brent's in Hull's private collection.Explore the classification and definition of doors, windows, moldings, mantels, paneled walls, built-ins, and other millwork elements through a historical lens.Learn how architectural millwork elements were designed, manufactured, and constructed during the hand-made (pre-industrial) era and how they changed after World War II.Millwork: The Design and Manufacturing of Historic Millwork from 1740-1950 is a highly unique and valuable reference for architects, designers, historians, preservationists, builders, or anyone interested in restoring historic homes.
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Sneakers Art: From Inspiration to Customization
Sneakers Art includes realized customization examples of sneakers and easy to follow step-by-step tutorials. This book is a great way to get started creating your own custom sneakers.Up your creative game as you learn quick and easy ways to turn a pair of regular trainers into one-of-a-kind works of art. 1000 inspiring sneaker designs and 18 step-by-step tutorials will help you create your own projects that reflect your personal tastes.By mastering the basics along with some design skills, you´ll soon have the tools and techniques you need to design and paint custom sneakers with style and soul.Street, pop, fluor, metal and camouflage are just some of the contemporary patterns touched on.Detailed illustrations that go with the texts give you an idea of what your kicks will look like after you've created them.The book is ideal for sneakers fans who enjoy customizing their own clothes and asserting their individuality, fashion designers who look to customized sneakers as a source of inspiration and fashion lovers in general.Take your love of sneakers to a fun new level learning how to create cool shoes that are as you unique as you are. AUTHOR: Claudia Ausonia Palazio attended the 1st Art Academy in Rome and then obtained a two-year degree from the IED in Fashion (1988-1989).She subsequently began working as an assistant costume designer for Bonizza Giordani Aragno, fashion researcher, curator and historian.In the meantime, she attended the Accademia di Alta Moda e Arte del costume Koefia, the renowned Koefia International Haute Couture Academy (Rome, Italy) (1991-1994).At the end of her course, she was asked to join Koefia's staff.She has been working as a fashion design lecturer since 1996. SELLING POINTS: . How to customize your trainers to stand out and adapt them perfectly to your own taste. . An overview of various customization techniques and materials by a recognized styist and fashion expert. . It includes realized customization examples and easy to follow step-by-step tutorials.
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Enzymatic Production of Oligosaccharides : From Basic Research to Industrial Production
Enzymatic Production of Oligosaccharides: From Basic Research to Industrial Production, a volume in the Foundations and Frontiers of Enzymology series, covers the enzymes used for the extraction, synthesis, or modification of oligosaccharides, the biochemical properties of those enzymes, and potential technological applications.The book is divided into three parts, the first of which shares the fundamentals on the enzymatic synthesis of oligosaccharides.The book then explores the enzymatic production of oligosaccharides, considering a range of different oligosaccharides and production processes.Final sections cover the technological properties of oligosaccharides and potential applications across the chemical, biochemical, biotechnology, and food industries. This is a useful reference for researchers working with oligosaccharides across biochemistry, enzymology, biotechnology, food chemistry and related fields.
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Furniture Manufacturing : A Production Engineering Approach
This volume covers all aspects of furniture manufacturing from a production engineering perspective. It takes a step-by-step pedagogical approach, dwelling on details which must be understood at every process, as the furniture makes its way through the factory shop floor. The content highlights the global industry, and discusses furniture design and manufacturing systems. The chapters also discuss every stage of the manufacturing process until the finished product is packaged. There is also emphasis on strength design of furniture, furniture testing, environmental compliance, and automation. The contents also discuss the optimization of furniture manufacturing through a mathematical approach and highlights the current global trends impacting the furniture manufacturing industry, especially the circular economy and Industry 4.0. This volume will a useful resource to those in academia and industry. ^
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What is the difference between manufacturing and production?
Manufacturing refers to the process of converting raw materials or components into finished goods through various techniques and processes. Production, on the other hand, is a broader term that encompasses all activities involved in creating goods or services, including manufacturing, but also includes activities such as planning, designing, and managing the entire process. In essence, manufacturing is a subset of production, focusing specifically on the physical transformation of materials into products.
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How to design the production?
To design the production, it is important to first understand the requirements and goals of the production. This includes determining the target audience, the message or story to be conveyed, and the resources available. Once these factors are understood, a production plan can be developed, outlining the necessary steps, timeline, and budget. This plan should consider all aspects of the production, including casting, scripting, set design, costume and makeup, lighting, sound, and post-production. Collaboration and communication among the production team are essential to ensure a cohesive and successful production.
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What is the difference between workshop production and workshop manufacturing?
Workshop production refers to the process of creating goods or products in a workshop setting, often involving skilled craftsmen and artisans. This can include activities such as woodworking, metalworking, and other forms of handcrafting. On the other hand, workshop manufacturing involves the use of machinery and advanced technology to produce goods in a workshop setting. This can include activities such as 3D printing, CNC machining, and other automated manufacturing processes. In essence, workshop production is more focused on traditional, manual craftsmanship, while workshop manufacturing involves more modern, automated techniques.
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Who knows the manufacturing company from the GDR?
One of the well-known manufacturing companies from the GDR (German Democratic Republic) was VEB Sachsenring Automobilwerke Zwickau. This company was known for producing the Trabant, a popular car in East Germany. The Trabant became a symbol of the GDR and its automotive industry. The company's production and influence extended beyond the borders of East Germany, making it recognizable to many people familiar with the history of the GDR.
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A Practical Guide to Level Design : From Theory to Practice, Diplomacy and Production
Written by an AAA industry expert with over 20 years of experience, this book offers comprehensive coverage of the practical skills that all successful level designers need to have.It covers everything from practical production skills to the social and soft skills required to thrive in the gaming industry. This book begins with a theoretical and abstract approach that sets a common language for the later hard-skill applications and practical examples.These later chapters cover a wealth of practical skills for use during the concept phase, while creating layouts, scripting, and working with AI.This book includes essential chapters on topics such as social skills, soft skills, world-building, level design direction, production, as well as how to gain employment in the industry. This book will be of great interest to all level designers, content leads, and directors looking to enhance their skillset.It will also appeal to students of level and game design looking for tips on how to break into the industry.
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Behavioural Production : Semi-Autonomous Approaches to Architectural Design, Robotic Fabrication and Collective Robotic Construction
Autonomous manufacturing and cyber-physical systems are key enabling technologies of the Fourth Industrial Revolution (IR4) which are currently being incorporated into the building design and construction industries.These emerging IR4 technologies have the potential to effectively improve construction affordability and productivity, address current and future building demand, and reduce the environmental impact of the built environment.However, design approaches that make use of IR4 technologies are still relatively unexplored.While automation, such as mass production, promotes standardised design solutions, design thinking that embraces varying degrees of autonomy can lead to unique and considered approaches to design on an industrial scale. Behavioural Production: Semi-Autonomous Approaches to Architectural Design, Robotic Fabrication and Collective Robotic Construction explores design operating through the orchestration of spatiotemporal events.A multi-agent behaviour-based approach to computation is employed in architectural design and extended to individual and swarm-based robotic methods for additive manufacturing.Behavioural Production seeks to expand our capacity to engage with the world at large through varying degrees of autonomy.In an industrialised world where traditional craftsmanship has been marginalised and cannot scale to meet societal needs, this book speculates a means to bring scalable forms of creativity into the act of making.This is explored through the use of materials, generative algorithms, computer vision, machine learning, and robot systems as active agents in design conception and realisation.The book presents a collection of ideas, projects, and methods developed in the author’s design practices and research labs in the fields of architecture and computer science.This body of work demonstrates that engaging with semi-autonomous processes does not diminish authorship, but rather expands it into new forms of design agency that seamlessly integrate with emerging manufacturing and construction technologies whilst authoring distinctive design character.
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Custom Metal Fabrication Manufacturing Services CNC Anodizing Aluminum Machining Parts
Custom Metal Fabrication Manufacturing Services CNC Anodizing Aluminum Machining Parts
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Robotic Fabrication & Architectural Design
Robotics & Autonomous Systems 1: Integrated Approaches to Fabrication, Computation and Architectural Design presents design research from the University of Pennsylvania Weitzman School of Design’s MSD-RAS program.At present, architectural design and construction approaches are unable to meet immediate and projected societal needs in productivity, affordability, and sustainability or to adequately engage with the diverse conditions found in our built environment.The MSD-RAS seeks to address these challenges through bespoke design solutions that are integral to a critical and creative approach to production.Implied in the term “RAS”, the program seeks to harness the potential of AI and robotic systems to work more adaptively than automation affords.Primarily operating through the development of robotically fabricated prototypes, projects are presented that incorporate custom approaches to generative computational design, machine learning, robot tooling, real-time adaptive robot programming, sensor feedback, material and manufacturing processes or human-in-the-loop activities.Serving as a graphical reflection on the first three years of the program, research projects are presented alongside interviews with some of the program’s graduates together with insights into the exciting career trajectories they embarked on post-study.Essays from the program’s faculty dive deeper into several core topics such as the MSD-RAS’s approach to design research, critical engagement with industrial manufacturing processes, and the integration of semi-autonomous workflows in design and production.Also discussed is the program’s unique integrated approach to coursework and why it is inducive to the creation of novel collaborative work that expands design agency into unchartered territories and careers.
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Can someone explain the triangular relationship between design, manufacturing, and materials?
The triangular relationship between design, manufacturing, and materials refers to the interconnectedness of these three elements in the production of a product. Design influences the choice of materials and manufacturing processes, as it determines the functionality, aesthetics, and performance of the product. Materials selection is crucial in determining the manufacturability and performance of the product, and manufacturing processes must be chosen based on the design and materials to ensure efficient and cost-effective production. Ultimately, the success of a product depends on the harmonious integration of design, manufacturing, and materials.
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Can anyone design, print, and distribute flyers?
Yes, anyone can design, print, and distribute flyers. Designing a flyer can be done using various software programs or online tools. Printing can be done at home with a printer or at a professional printing shop. Distributing flyers can be done by hand, through direct mail, or by hiring a distribution service. It is important to ensure that the content of the flyer is clear, visually appealing, and targeted to the intended audience.
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Despite the pressure, the print detaches from the print bed.
If the print detaches from the print bed despite the pressure, it could be due to several reasons. One common reason is poor bed adhesion, which can be caused by an uneven or dirty print surface. Another reason could be that the print bed temperature is not set correctly for the type of filament being used. Additionally, the print may not be sticking properly if the first layer is not being laid down evenly or if the nozzle is too far from the bed.
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Can't you print from the laptop?
Yes, you can print from a laptop as long as it is connected to a printer. You can connect the laptop to a printer either through a USB cable, Wi-Fi, or Bluetooth. Once the laptop is connected to the printer, you can select the document you want to print and send it to the printer for printing.
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