Formulation of Automated Process-Design Problems in CNC Systems

2020 ◽  
Vol 40 (6) ◽  
pp. 488-490
Author(s):  
S. Yu. Kalyakulin ◽  
V. V. Kuz’min ◽  
E. V. Mitin ◽  
S. P. Sul’din
Author(s):  
Hannah Muchnick ◽  
Janet K. Allen ◽  
David L. McDowell ◽  
Farrokh Mistree

Multilevel design is a subset of engineering design in which design problems are defined and analyzed at various levels of model complexity or resolution. Due to the potential for propagated uncertainty in a multilevel design process, design goals for maximizing system robustness to uncertainty in noise and control factors are included in the Blast resistant panels (BRP) design process. Blast resistant panels (BRPs) are sandwich structures consisting of two solid panels surrounding a honeycomb core. Under impulse loading, BRPs experience less deflection than similarly loaded solid panels of equal mass due to core crushing. In order to manage complexity in BRP concurrent product and materials design, a multilevel design approach is proposed. Additionally, in order to collect and store BRP design information in a modular and reusable format, a template-based design approach is implemented in BRP multilevel design. In this paper, a generic multilevel design template based on existing design methods (the compromise Decision Support Problem and the Inductive Design Exploration Method) is presented. The multilevel design template is then particularized and applied to BRP preliminary design, highlighting the advantages of a templatebased approach to multilevel design.


Author(s):  
Martin Dzbor ◽  
Zdenek Zdrahal

Design is usually considered a reflective and ill-structured process. This paper presents a new, sequential model of such a process. Design is modelled as an interplay of two conceptually distinct activities — an explicit specification of a problem and a solution to it. The approach is novel in defining an operation of framing, i.e. interpretation of a given problem using certain conceptual commitments. So far, the interpretation of design problems enjoyed less rigorous investigation as the aspect of problem solving in both design theory and methodology. In this paper we model three reasoning patterns for (re-)interpreting design problems. These patterns are complemented by an operational framework based on abstracted similarity, and illustrated by extracts from experimental studies.


Author(s):  
N F O Evbuomwan ◽  
S Sivaloganathan ◽  
A Jebb

The study of the design process, design theory and methodology has been a preoccupation of engineers, designers and researchers over the last four to five decades. As the end of this millenium is approached and with the renewed interest around the world in engineering design, it is fitting to examine the state of the art and current status of issues relating to design philosophies, theory and methodology. Over the last 40 years, many approaches to design have been put forward by various researchers, designers and engineers, both in academia and industry, on how design ought to and might be carried out. These proposals on design have tended towards what has come to be regarded as design philosophies, design models and design methods. The thesis of this paper is to discuss various aspects of generic research in design, within the above classifications in the light of the work that has been done in the last four decades. Discussions will focus on various definitions of design, design theory and methodology, the nature and variety of design problems, design classifications, philosophies, models, methods and systems.


2003 ◽  
Vol 26 (8) ◽  
pp. 823-827 ◽  
Author(s):  
E.S. Fraga ◽  
K. Wang ◽  
A. Salhi

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