Masters Theses in the Pure and Applied Sciences

Masters Theses in the Pure and Applied Sciences
Author: Wade H. Shafer
Publisher: Springer Science & Business Media
Total Pages: 427
Release: 2012-12-06
Genre: Science
ISBN: 1461303931

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Masters Theses in the Pure and Applied Sciences was first conceived, published, and disseminated by the Center for Information and Numerical Data Analysis and Synthesis (CINDAS)* at Purdue University in 1957, starting its coverage of theses with the academic year 1955. Beginning with Volume 13, the printing and dis semination phases of the activity were transferred to University Microfilms/Xerox of Ann Arbor, Michigan, with the thought that such an arrangement would be more beneficial to the academic and general scientific and technical community. After five years of this joint undertaking we had concluded that it was in the interest of all concerned if the printing and distribution of the volumes were handled by an international publishing house to assure improved service and broader dissemination. Hence, starting with Volume 18, Masters Theses in the Pure and Applied Sciences has been disseminated on a worldwide basis by Plenum Publishing Corporation of New York, and in the same year the coverage was broadened to include Canadian universities. All back issues can also be ordered from Plenum. We have reported in Volume 39 (thesis year 1994) a total of 13,953 thesis titles from 21 Canadian and 159 United States universities. We are sure that this broader base for these titles reported will greatly enhance the value of this impor tant annual reference work. While Volume 39 reports theses submitted in 1994, on occasion, certain uni versities do report theses submitted in previous years but not reported at the time.

AI Applications in Sheet Metal Forming

AI Applications in Sheet Metal Forming
Author: Shailendra Kumar
Publisher: Springer
Total Pages: 298
Release: 2016-10-25
Genre: Technology & Engineering
ISBN: 9811022518

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This book comprises chapters on research work done around the globe in the area of artificial intelligence (AI) applications in sheet metal forming. The first chapter offers an introduction to various AI techniques and sheet metal forming, while subsequent chapters describe traditional procedures/methods used in various sheet metal forming processes, and focus on the automation of those processes by means of AI techniques, such as KBS, ANN, GA, CBR, etc. Feature recognition and the manufacturability assessment of sheet metal parts, process planning, strip-layout design, selecting the type and size of die components, die modeling, and predicting die life are some of the most important aspects of sheet metal work. Traditionally, these activities are highly experience-based, tedious and time consuming. In response, researchers in several countries have applied various AI techniques to automate these activities, which are covered in this book. This book will be useful for engineers working in sheet metal industries, and will serve to provide future direction to young researchers and students working in the area.

Feature Extraction and Intra-feature Design Advisor for Sheet Metal Parts

Feature Extraction and Intra-feature Design Advisor for Sheet Metal Parts
Author:
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

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The design of sheet metal parts and the dies used to manufacture them is an art perfected through decades of experience. Reduction of costs is also increasingly important and lack of this experience is a handicap in designing a part with the lowest achievable cost. Parts are frequently redesigned after being deemed as expensive or infeasible to manufacture. Products can be brought to market faster if the designer follows certain recommended guidelines without violating any design rules. The present work aims at developing a feature extraction module and intra-feature design advisor for reducing infeasible designs, costs and production cycle times. The proposed design advisory system will aid the designer right at the design stage with useful design and manufacturability recommendations that have been gathered through decades of experience. These rules are incorporated here and implemented for SolidWorks 2000, which has a separate sheet metal modeling module. The implementation has been done in Visual Basic using the OLE Interface provided by SolidWorks API.

Boundary-based Approach for the Extraction of Form Features from Computer-Aided-Design (CAD) Models

Boundary-based Approach for the Extraction of Form Features from Computer-Aided-Design (CAD) Models
Author: Srinivas Emani
Publisher:
Total Pages: 390
Release: 1998
Genre:
ISBN:

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Feature models represent parts in terms of high level, functionally significant entities such as holes, slots or pockets. Features can provide an additional layer of information in advanced Computer-Aided Design (CAD) systems to make them more useful for design and to integrate design with down stream applications. Feature extraction is the process of identifying feature information from the CAD models without comparing it with any predefined features' instances. This thesis deals with the development of a sequential form feature extraction procedure. A form feature is defined as a geometric formation on an object which can be associated with design/manufacturing information. There exist two main approaches to the identification of form-feature information from a CAD model. The first approach, feature recognition, requires a pre-defined instance of the form feature to be recognized.