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This has been a major hindrance to information flow between design and process planning.
Huhnt and Enge described a modelling technique that addresses the missing linkage between design and process information[1].
A detailed contingency analysis shows that the proposed model of synergies between design and process management holds true for large and small firms; for firms with different levels of TQM experience; and in different industries with varying levels of competition, logistical complexity of production, or production process characteristics.
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As the step between design and production, process planning is important for manufacturing a product in an economic manner.
The Business Process Modelling Notation (BMPN) is used to describe the entire AM value chain and the connection between design and manufacturing processes.
One application of this research is to identify the equivalent parameter domains of two parametric part models, respectively, in the design option space and in the capability envelope set of a parametric machining process in order to facilitate the interoperation between part design and process planning through the generated parameter mapping between these two different kinds of models.
11 (1987) 319) and the disturbance rejection measures proposed by Skogestad and Wolff (IFAC Workshop on Interactions between Process Design and Process Control (1992) Oxford: Pergamon) is shown to exist.
A Mixed-Integer Dynamic Optimization (MIDO) model and solution strategy to study the interactions between process design and process control/operability of an ethyl acetate reactive distillation system is presented.
This paper presents mixed-integer linear programming formulations for the efficient determination of the disturbance rejection measures proposed by Skogestad and Wolff (IFAC Workshop on Interactions between Process Design and Process Control (1992) Oxford: Pergamon).
A comprehensive investigation on the correlation between die design and process parameters with extrusion welds (seam and charge) prediction and die deformation after multiple-cycles is presented.
It covers the variability of manufacture and the interactions between design, materials and processes, and indicates the level of property reductions that can be experienced.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com