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Titlebook: Material Flow Systems in Manufacturing; J. M. A. Tanchoco Book 1994 Chapman & Hall 1994 Navigation.automation.computer.design.development.

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书目名称Material Flow Systems in Manufacturing
编辑J. M. A. Tanchoco
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图书封面Titlebook: Material Flow Systems in Manufacturing;  J. M. A. Tanchoco Book 1994 Chapman & Hall 1994 Navigation.automation.computer.design.development.
描述This book contains a collection of contributions related to the design and control of material flow systems in manufacturing. Material flow systems in manufacturing covers a broad spectrum of topics directly affecting issues related to facilities design, material handling and production planning and control. In selecting the papers to include in this book, the scope was limited to the design and operational control aspects related to the physical move­ ment of parts, tools, containers and material handling devices. Recent develop­ ments in this area naturally led to concentration on flow systems involving cellular manufacturing, and automated transport equipment such as automated guided vehicles. However, the concepts discussed have general applicability to a wide range of manufacturing flow problems. The book is organized in five major sections: 1. design integration and justification; 2. cell design and material handling considerations; 3. alternative material flow paths; 4. operational control problems; and 5. tooling requirements and transport equipment.
出版日期Book 1994
关键词Navigation; automation; computer; design; development; technology; transport
版次1
doihttps://doi.org/10.1007/978-1-4615-2498-4
isbn_softcover978-1-4613-6064-3
isbn_ebook978-1-4615-2498-4
copyrightChapman & Hall 1994
The information of publication is updating

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Bidirectional Automated Guided Vehicle Systems (AGVS)the same aisle if the traffic requirement is heavy. Therefore, the flow path networks of AGV systems can be classified into a (a) unidirectional model, (b) a multiple-lane model, (c) a bidirectional model, and (d) a mixed model, as depicted in Fig. 9.1.
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Tool automation in computerized manufacturing systemsd, and as material handling systems become increasingly more sophisticated, it is not uncommon to have automated routing of tools to workstations as well Gaalman et al., 1987). In essence, CMS could conceivably consist of two material handling systems: one for workpieces and another for tools.
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Guidance and navigation techniques for guided and autonomous vehiclesnature of the application. AGV applications range from vehicles operating in highly structured environments such as a factory workshop, to autonomous vehicles that may have to work in an unstructured environment such as in fire-fighting applications.
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An integrated framework for the design of material flow systemsy be optimal in itself, but if the design cannot be integrated into the overall manufacturing system, it may have a negative impact on the manufacturing system performance. Therefore, the designer is expected to analyse the role of each component as a part of the total system and consider its influence on the overall system performance.
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An integrated framework for the design of material flow systemsication of individual system components but also with the overall objective of the manufacturing system. The association between components and the interaction of the material flow system with the manufacturing system are the basis by which its performance is judged. A material flow system design ma
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Unit load design and its impact on manufacturing systems performanceheir processing needs. In most applications, due to the batch size of the job and other operational constraints, it is not possible to move the entire job as a single, whole unit; the job must be split into sublots called .. Thus, it is the unit loads that move between machines instead of the whole
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