Business Case

Question # 00002494 Posted By: mac123 Updated on: 10/19/2013 04:37 PM Due on: 10/21/2013
Subject Business Topic General Business Tutorials:
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Case of the variable laminates

A plywood manufacturer has asked for your assistance in solving a problem in the log-peeling operation. The peeling process consists of soaking debarked logs in a hot bath, fixing the logs in chunks, and rapidly spinning them while shaving off a continuous thin section called lamination with a sharp knife blade. The laminations are then cut into sheets to be laid up, glued, and pressed into plywood sheets. The manufacturer is having difficulty maintaining a controlled thickness when peeling laminations from a log.

Discussions with engineering and the process operators indicate that four variables are related to laminate thickness: soak time, soak temperature, knife, pressure, and knife setting. The knife setting is pretty straight forward and is not felt to be a source of variation in the process. Specifications call for logs to be soaked for 60 minutes, but no process control for this process is in place. Some logs are peeled after as little as 30 minutes soak time.

The operators believe that this causes some of the variation, but they are under the gun to keep the peeler busy, even if it means compromising on the soak time. The engineers feel that knife pressure may contribute to the thickness variation. Knife pressure setting is not standardized – operators set it between 250 psi and 300 psi based on their experience. Soak Temperature varies between 150 degrees and 200 degrees, depending on how much bark has accumulated around the heating coils.

Thickness measurements are made every 15 minutes on the laminate. The variation does not seem to follow a particular pattern. Design an experiment that will assist the process engineers in determining what actions to take to reduce laminate thickness variation. Provide them with your assessment of the causes of the variation and how to use the results of the experiment to define the optimal operating conditions for the process.

Need an abstract page and one full page to explain and I got the reference page unless another course is used.

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  1. Tutorial # 00002301 Posted By: mac123 Posted on: 10/19/2013 04:39 PM
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