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Developments, challenges and future trends in advanced sustainable machining technologies for preparing array

Yang Liu1, Pengfei Ouyang1, Zhaoyang Zhang1

  • 1School of Mechanical Engineering, Jiangsu University, Zhenjiang 212013, China. zhaoyanz@ujs.edu.cn.

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Summary

Sustainable machining techniques like electrical discharge machining and laser machining are key for manufacturing array micro-holes. This review guides future advancements in eco-friendly micro-hole production for various industries.

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Area of Science:

  • Manufacturing Engineering
  • Materials Science
  • Sustainable Technology

Background:

  • Array micro-holes are increasingly vital in aerospace, automotive, electronics, medical, and chemical sectors.
  • Sustainable machining technologies offer significant advantages for array micro-hole production.
  • Non-traditional machining methods are crucial for efficient and eco-friendly micro-hole manufacturing.

Purpose of the Study:

  • To examine sustainable machining techniques for array micro-hole production.
  • To elaborate on the principles and characteristics of various non-traditional machining methods.
  • To identify and categorize future advancements in sustainable array micro-hole manufacturing.

Main Methods:

  • Review of sustainable machining techniques: electrical discharge machining, laser machining, electrochemical machining, and composite machining.
  • Analysis of processing principles and characteristics of non-traditional machining.
  • Evaluation of performance indicators across seven perspectives for industrial production.

Main Results:

  • Detailed examination of four key sustainable machining technologies for array micro-holes.
  • Summarized performance indicators for commonly used industrial processing technologies.
  • Identification of six significant avenues for advancing sustainable manufacturing of array micro-holes.

Conclusions:

  • Sustainable machining is pivotal for the future of array micro-hole production.
  • The paper provides a comprehensive literature review and evaluation.
  • Guidance is offered for the future development of array micro-hole processing technologies.