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Optimization of mixed casting processes considering discrete ingot sizes
Yong Kuk Park
The Journal of Mechanical Science and Technology, vol. 23, no. 7, pp.1899-1910, 2009
Abstract : Using linear programming (LP), this research devises a simple and comprehensive scheduling methodology for a
complicated, yet typical, production situation in real foundries: a combination of expendable-mold casting, permanentmold
casting and automated casting for large-quantity castings. This scheduling technique to determine an optimal
casting sequence is successfully applied to the most general case, in which various types of castings with different alloys
and masses are simultaneously produced by dissimilar casting processes within a predetermined period. The
methodology proves to generate accurate scheduling results that maximize furnace or ingot efficiency. For multivariable
and multi-constraint optimization problems per se, it provides an extremely practical solution which is readily
implemented in most real-world casting plants. In addition, incorporating ingot adjustment from the reality of discrete
ingot size, this LP scheduling can assist the casting industry in strengthening its competence by heightening ingot utilization
as well as satisfying due dates.
Keyword : Expendable-mold and permanent-mold casting; Scheduling; Optimization; Linear programming (LP); Melting furnace; |
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