OPERATIONS MANAGEMENT >C<
OPERATIONS MANAGEMENT >C<
14th Edition
ISBN: 9781307701432
Author: Stevenson
Publisher: MCG/CREATE
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Chapter 14.S, Problem 4DRQ
Summary Introduction

To determine: Defining predictive maintenance and the importance of good records.

Introduction: Maintenance programs are frequently composed into two classifications: (a) building and grounds – Building and grounds is in charge of the exterior look and working of structures, parking areas, yards, wall, etc. (b) Machinery protection – Machinery protection is in charge of keeping up apparatus and hardware in excellent working condition and making every single vital repair.

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Refer to Table S6.1 - Factors for Computing Control Chart Limits (3 sigma) for this problem. Sampling 4 pieces of precision-cut wire (to be used in computer assembly) every hour for the past 24 hours has produced the following results: Hour R Hour X R Hour X R Hour X R 1 3.25" 0.71" 7 3.15" 0.58" 13 3.11" 0.85" 19 4.51" 1.56" 2 3.20 1.18 8 2.65 1.08 14 2.83 1.31 20 2.79 1.14 3 3.12 1.38 9 15 4. 3.39 1.31 10 5 2.97 1.17 6 2.76 0.32 3.02 0.71 3.12 1.01 2.75 1.33 16 2.74 0.50 22 11 2.73 1.17 17 2.76 1.43 23 12 2.87 0.45 18 2.64 1.24 21 2.75 1.03 3.18 0.46 2.94 1.53 24 2.54 0.97 Based on the sampling done, the control limits for 3-sigma x chart are (round all intermediate calculations to three decimal places before proceeding with further calculations): Upper Control Limit (UCL) = inches (round your response to three decimal places). Lower Control Limit (LCL) = inches (round your response to three decimal places). Based on the x-chart, the wire cutting process has been The control limits…
Choose a specific cars company. E.g Toyota, Volkswagen, Hyundai, Mercedes-Benz, BMW, Honda, Ford, Audi, Tesla Define a list of required machinery, equipment, workstations, offices, rest areas, materials, etc. Develop and define the location of machinery, equipment, workstations, offices, rest areas, materials. Make the distribution in the manufacturing facility the most efficient way possible. Develop a process distribution for one specific product. Explain why you consider this is the most efficient distribution for this specific manufacturing facility. demonstrate the benefits of optimizing a production line with the best distribution of its equipment and spaces. To be more productive and profitable.
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