<p><P>Intelligent engineering systems try to replicate fundamental abilities of humans and nature in order to achieve sufficient progress in solving complex problems. In an ideal case multi-disciplinary applications of different modern engineering fields can result in synergistic effects. Informatio
Direct Engineering: Toward Intelligent Manufacturing
โ Scribed by G. Fredric Bolling (auth.), Ali K. Kamrani Ph.D., Peter R. Sferro (eds.)
- Publisher
- Springer US
- Year
- 1999
- Tongue
- English
- Leaves
- 376
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Direct Engineering (DE) is the creation of a product development cycle into a single, unified process. The design process in most industries is an evolutionary one (i.e., incremental changes to some existing design). DE is a manufacturing process that seeks to improve the design processes by providing complete archival documentation of existing designs. It uses three-dimensional geometric models with integrated manufacturing information throughout the design process. DE reduces the design cycle, and the variety and number of engineering changes. This process decreases the design cycle time, increases productivity, and provides a higher quality product.
The required technologies and methodologies that will support the development of the DE environment are: (1) product representation using feature-based modeling; (2) knowledge-based applications that will support the entire product development cycle; (3) an engineering environment implemented around distributed computing and object-oriented systems; (4) direct manufacturing techniques using rapid prototyping.
Direct Engineering: Toward Intelligent Manufacturing addresses the following recent topics related to the development, implementation, and integration of the DE environment: (1) the current scope of the research in intelligent manufacturing; (2) the results of the technologies and tools developed for integrated product and process designs, and (3) examination of the methodologies and algorithms used for the implementation of direct engineering.
โฆ Table of Contents
Front Matter....Pages i-xv
Introduction: The Origin and Future of Direct Engineering....Pages 1-11
Front Matter....Pages 13-13
Volumetric Feature Recognition for Direct Engineering....Pages 15-69
Variant Constraint Satisfaction: Associativity in Product Realization....Pages 71-106
Rapid Manufacturability Assessment with Feature-Based Process Flow Charts....Pages 107-128
Front Matter....Pages 129-129
Manufacturing Analysis of Machined Parts....Pages 131-153
Feature-Based Process Planning for Direct Engineering....Pages 155-191
KAMPLAN : A Template-Based System for Variant Process Planning of Engine Crankshafts....Pages 193-236
Front Matter....Pages 237-237
PDES-STEP Standards: A Question....Pages 239-258
Step Standards in Design and Manufacturing....Pages 259-284
Front Matter....Pages 285-285
Free Form Fabrication-Process Overview....Pages 287-323
A Framework for Part Placement in a Rapid Prototyping Process....Pages 325-345
Integrated Team Organization....Pages 347-371
Back Matter....Pages 373-374
โฆ Subjects
Engineering Design; Manufacturing, Machines, Tools; Production/Logistics/Supply Chain Management; Computer-Aided Engineering (CAD, CAE) and Design
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