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For building applications, it is imperative to minimize material defects and to ensure thermal comfort.
Precision cutting of the composite parts is important to minimize material loss with better surface finish.
Through distributing the machines over the shop floor, the model attempts to minimize material handling cost.
The majority of approaches that address distributed layout design problems tend to minimize material handling costs only.
The model is utilized to select combinations of multi-size strands so as to minimize material inhomogeneity.
There has been a growing interest in developing thin film silicon solar cells that minimize material costs and maintains high efficiency.
Chen (1998) proposed an integer programming model to minimize material handling and machine cost and reconfiguration cost to design a sustainable cellular manufacturing system in a dynamic environment.
Therefore, for such small areas, alternative scalable methods, such as inkjet printing or electrosprays, may be preferred to minimize material wastage.
A mathematical model for tandem loop AGV path optimization is established with the goal to minimize material flow between different loops of AGV path.
It first solves a traditional block layout with directed-loop flow path to minimize material handling costs by using a combined spacefilling curve and simulated annealing algorithm.
The present study provides guidelines for choosing appropriate shape and size for the vessels that minimize material and manufacturing cost for cylindrical vessels.
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