Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection

Cutting tool selection plays an important role in achieving reliable quality and high productivity work, and for controlling the total cost of manufacturing. However, it is complicated for process planners to choose the optimal cutting tool when faced with the choice of multiple cutting tools, multi...

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Main Authors: Xuan Lan Phung, Hoanh Son Truong, Ngoc Tam Bui
Format: Article
Language:English
Published: MDPI AG 2019-10-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/20/4308
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spelling doaj-1d854c4d99c94ad1be27323eaefc74c82020-11-25T02:16:16ZengMDPI AGApplied Sciences2076-34172019-10-01920430810.3390/app9204308app9204308Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool SelectionXuan Lan Phung0Hoanh Son Truong1Ngoc Tam Bui2Hanoi University of Science and Technology, Hanoi 10000, VietnamHanoi University of Science and Technology, Hanoi 10000, VietnamHanoi University of Science and Technology, Hanoi 10000, VietnamCutting tool selection plays an important role in achieving reliable quality and high productivity work, and for controlling the total cost of manufacturing. However, it is complicated for process planners to choose the optimal cutting tool when faced with the choice of multiple cutting tools, multiple conflict criteria, and uncertain information. This paper presents an effective method for automatically selecting a cutting tool based on the machining feature characteristics. The optimal cutting tool type is first selected using a proposed multicriteria decision-making method with integrated fuzzy analytical hierarchy process (AHP). The inputs of this process are the feature dimensions, workpiece stability, feature quality, specific machining type, and tool access direction, which determine the cutting tool type priority after evaluating many criteria, such as the material removal capacity, tool cost, power requirement, and flexibility. Expert judgments on the criteria or attributes are collected to determine their weights. The cutting tool types are ranked in ascending order by priority. Then, the rule-based method is applied to determine other specific characteristics of the cutting tool. Cutting tool data are collected from world-leading cutting tool manufacturer, Sandvik, among others. An expert system is established, and an example is given to describe the method and its effectiveness.https://www.mdpi.com/2076-3417/9/20/4308expert systemcutting tool type selectionfuzzy ahpmulticriteria decision makingmilling process
collection DOAJ
language English
format Article
sources DOAJ
author Xuan Lan Phung
Hoanh Son Truong
Ngoc Tam Bui
spellingShingle Xuan Lan Phung
Hoanh Son Truong
Ngoc Tam Bui
Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
Applied Sciences
expert system
cutting tool type selection
fuzzy ahp
multicriteria decision making
milling process
author_facet Xuan Lan Phung
Hoanh Son Truong
Ngoc Tam Bui
author_sort Xuan Lan Phung
title Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
title_short Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
title_full Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
title_fullStr Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
title_full_unstemmed Expert System Based on Integrated Fuzzy AHP for Automatic Cutting Tool Selection
title_sort expert system based on integrated fuzzy ahp for automatic cutting tool selection
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-10-01
description Cutting tool selection plays an important role in achieving reliable quality and high productivity work, and for controlling the total cost of manufacturing. However, it is complicated for process planners to choose the optimal cutting tool when faced with the choice of multiple cutting tools, multiple conflict criteria, and uncertain information. This paper presents an effective method for automatically selecting a cutting tool based on the machining feature characteristics. The optimal cutting tool type is first selected using a proposed multicriteria decision-making method with integrated fuzzy analytical hierarchy process (AHP). The inputs of this process are the feature dimensions, workpiece stability, feature quality, specific machining type, and tool access direction, which determine the cutting tool type priority after evaluating many criteria, such as the material removal capacity, tool cost, power requirement, and flexibility. Expert judgments on the criteria or attributes are collected to determine their weights. The cutting tool types are ranked in ascending order by priority. Then, the rule-based method is applied to determine other specific characteristics of the cutting tool. Cutting tool data are collected from world-leading cutting tool manufacturer, Sandvik, among others. An expert system is established, and an example is given to describe the method and its effectiveness.
topic expert system
cutting tool type selection
fuzzy ahp
multicriteria decision making
milling process
url https://www.mdpi.com/2076-3417/9/20/4308
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AT hoanhsontruong expertsystembasedonintegratedfuzzyahpforautomaticcuttingtoolselection
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