Sustainability assessment of machining process based on extension theory and entropy weight approach

The development of sustainability assessment for machining process is considered as one of the crucial strategies to realize sustainable design and manufacturing, while existing methods focusing on environmental assessment have limits due to neglect economic and social impacts. This paper proposes a...

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Published in:International journal of advanced manufacturing technology Vol. 71; no. 5-8; pp. 1419 - 1431
Main Authors: Yan, Jihong, Feng, Chunhua, Li, Lin
Format: Journal Article
Language:English
Published: London Springer London 01-03-2014
Springer Nature B.V
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Abstract The development of sustainability assessment for machining process is considered as one of the crucial strategies to realize sustainable design and manufacturing, while existing methods focusing on environmental assessment have limits due to neglect economic and social impacts. This paper proposes an assessment approach for evaluating sustainability performance of machining process with respect to a consistent set of environmental, economic, and social criteria in order to select a machining strategy from sustainable manufacturing viewpoint. Sustainability assessment criteria are identified to compare different machining parameter alternatives; cutting noise, especially, is defined as an important criterion of social impact, and energy, lubricant oil, and cutting fluids consumption are identified as criteria of environmental impact. Additionally, the weights of criteria are determined using entropy weight approach with the advantage of objective evaluation by exploiting the useful information of data to a maximum extent. Furthermore, sustainability performance of machining process is calculated based on extension theory through utilizing correlation function between evaluated matter-element and classical field matter-element. Face milling test conducted on CNC vertical machining center not only illustrates validity of the proposed method for assisting the engineers or designers to define sustainability performance of machining process, but also proves the relationship between cutting parameters and cutting noise.
AbstractList The development of sustainability assessment for machining process is considered as one of the crucial strategies to realize sustainable design and manufacturing, while existing methods focusing on environmental assessment have limits due to neglect economic and social impacts. This paper proposes an assessment approach for evaluating sustainability performance of machining process with respect to a consistent set of environmental, economic, and social criteria in order to select a machining strategy from sustainable manufacturing viewpoint. Sustainability assessment criteria are identified to compare different machining parameter alternatives; cutting noise, especially, is defined as an important criterion of social impact, and energy, lubricant oil, and cutting fluids consumption are identified as criteria of environmental impact. Additionally, the weights of criteria are determined using entropy weight approach with the advantage of objective evaluation by exploiting the useful information of data to a maximum extent. Furthermore, sustainability performance of machining process is calculated based on extension theory through utilizing correlation function between evaluated matter-element and classical field matter-element. Face milling test conducted on CNC vertical machining center not only illustrates validity of the proposed method for assisting the engineers or designers to define sustainability performance of machining process, but also proves the relationship between cutting parameters and cutting noise.
Author Yan, Jihong
Li, Lin
Feng, Chunhua
Author_xml – sequence: 1
  givenname: Jihong
  surname: Yan
  fullname: Yan, Jihong
  email: yanjihong@gmail.com, jyan@hit.edu.cn
  organization: School of Mechatronics Engineering, Harbin Institute of Technology
– sequence: 2
  givenname: Chunhua
  surname: Feng
  fullname: Feng, Chunhua
  organization: School of Mechatronics Engineering, Harbin Institute of Technology
– sequence: 3
  givenname: Lin
  surname: Li
  fullname: Li, Lin
  organization: School of Mechatronics Engineering, Harbin Institute of Technology
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Keywords Machining process
Extension theory
Entropy weight approach
Sustainability assessment
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Snippet The development of sustainability assessment for machining process is considered as one of the crucial strategies to realize sustainable design and...
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SubjectTerms CAE) and Design
Computer-Aided Engineering (CAD
Criteria
Cutting fluids
Cutting parameters
Engineering
Entropy
Environmental assessment
Environmental impact
Face milling
Industrial and Production Engineering
Lubricants
Machine shops
Machine tools
Machining centres
Mechanical Engineering
Media Management
Milling (machining)
Numerical controls
Original Article
Parameter identification
Sustainability
Sustainable development
Weight
Title Sustainability assessment of machining process based on extension theory and entropy weight approach
URI https://link.springer.com/article/10.1007/s00170-013-5532-6
https://www.proquest.com/docview/2262380834
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