Industrial robots have been getting a more important role in manufacturing processes during the last decades, due to the flexibility they can provide in terms of reachability, size of working envelope and workfloor fo...
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The revolutionary effects of computational learning and artificial intelligence (AI) on materials science and engineering - particularly in the field of high-performance fiber -reinforced polymer (FRP) composites - ar...
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This paper studies the realization of the virtual display of mobility tools based on Virtools. through the three-dimensional modeling software 3ds max, the three-dimensional solid modeling of the transportation tool i...
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This study presents an innovative workflow designed to enhance electronics education through the integration of augmented reality (AR) with a novel automated circuit verification systems. The proposed workflow, illust...
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This paper introduces an artificial-intelligence (AI)-based program designed to optimize and automate the circuit designprocess using the computational capabilities of computers. The program highlights the automation...
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In this study, we explore the integration of emotional expression in oil paintings with virtual reality (VR) technology, focusing on enhancing audience art experiences through enriched virtual interactions. Vincent va...
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Additive and traditional manufacturing are often regarded as separate schools of thought in end-part production, each with its own advantages and shortcomings. However, several attempts have been made to combine these...
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ISBN:
(纸本)9780791887233
Additive and traditional manufacturing are often regarded as separate schools of thought in end-part production, each with its own advantages and shortcomings. However, several attempts have been made to combine these two approaches in a complementary manner to improve upon their respective downfalls. Motivated by this approach, this work introduces a new integration concept that combines the best-in-class plastic manufacturing process, injection molding (IM), with additive manufacturing (AM) through a hybrid manufacturing process, which is here called Additive Insert Molding (AIM). AIM is the process of additively manufacturing inserts, placing the inserts into a specialized tool for a subsequent injection molding process, and finally ejecting a single hybrid part out of the tool. By this integration, the customizability and geometric freedom of AM are combined with the reliability and high production rate of the IM process. This integration also facilitates the incorporation of multi-material and part consolidation design approaches, hence hypothesizing AIM as a promising route for cost-efficiently mass-customizing multi-material/functional parts. Besides the introduction of the AIM concept, its main benefits and application criteria are herein discussed. Three proof-of-concept case studies are then presented evaluating the feasibility of using AIM for mass personalization, tool/process simplification, and tailored reinforcement. The results of each case study are analyzed to identify the potential benefits and challenges of using AIM in real-world applications. Finally, the important remarks and future research directions are extracted and discussed at the end of this paper.
WrightHere is a generative AI-infused writing system that generates interactive 3D environments of the written story where users can explore, interact with characters, and gather inspiration to facilitate their creati...
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Social augmentation refers to a human-computer integration technology that aims to enhance the user's social skills by supporting empathy, interaction and communication. This study investigated the implementation ...
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The proposed system includes face recognition-based systems designed for secure identity verification and decentralized data storage. The working is supposed to be done in three phases: data capture, training of the m...
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