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Economic production quantity with rework process at a single-stage manufacturing system with planned backorders.
Optimal manufacturing batch size with rework process at single-stage production system.
In order to prolong the time between maintenance and to reduce rework, process trend monitoring of a tool is essential.
With all the parts already soldered onto the PCB, the rework process may compromise the reliability of products, not to mention the increase in costs of manufacturing.
Cardenas-Barron, Economic production quantity with rework process at a single-stage manufacturing system with planned backorders, Computers and Industrial Engineering 57 (2009) 1105 1113] minimizes the annual total relevant cost TC Q,B) to find the economic production quantity with rework process at a manufacturing system and assumes that TC Q,B) is convex.
The final results that we obtained are equivalent to the results that [Jamal, A. A. M., Sarker, B. R., & Mondal, S. (2004). Optimal manufacturing batch size with rework process at single-stage production system. Computers and Industrial Engineering, 47(1), 77 89.] found.
Similar(31)
For example, rates of main and rework processes, batch size and back-order are considered as decision variables simultaneously such that rates of main and rework processes are not the same and take different values due to amount of the money that producer invests in each process (contributed as process compressibility).
In his experience, lean manufacturing usually shows that companies waste up to 90% of costs in poor processes (i.e. redundant physical actions or information actions such as data mapping or sending an email) and rework processes like correcting defects detected at the end of production or once products are in the marketplace.
A model for two-stage manufacturing system with production and rework processes was progressed by Buscher and Lindner (2007).
The problem of optimal planning work and rework processes belongs to the broad field of production-inventory model which regards all kinds of reuse processes in supply chains.
This paper proposes a new test-rework process yield performance (TRePYP) model, combined with an assembly cost estimation algorithm, for an accurate representation of current practice in printed wiring board (PWB) assembly, especially in the design phase.
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