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Micro-Electro Discharge Machining: Principles, Recent Advancements and Applications, Volume II

Micro-Electro Discharge Machining: Principles, Recent Advancements and Applications, Volume II

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The second volume of the Special Issue on “Micro-Electro Discharge Machining: Principles, Recent Advancements and Applications” confirms the growing interest in the micro-EDM technology as a suitable and efficient technology for machining novel, multilateral components, with demanding requirements in terms of precision, accuracy, and productivity.This volume consists of 10 original research papers which involve several approaches to micro-EDM and cover the enhancement of the process performance, such as the material removal rate, surface roughness, or machining accuracy, using advanced optimization methods. Some studies also consider several dielectric fluid additives and investigate the processability of new materials. Others investigate the combination of Reverse-micro-EDM with laser beam micromachining or explore new applications for the micro-EDM for fabricating antimicrobial nanosilver colloid.

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Keywords

  • accumulative difference
  • alumina
  • analytical hierarchy process
  • antimicrobial
  • array electrode
  • burrs
  • carbon nanofiber
  • Efficiency
  • electrical discharge machine
  • electrical discharge machining
  • Energy consumption
  • high-speed camera
  • History of engineering & technology
  • interelectrode gap
  • material removal
  • material removal rate
  • metal erosion rate
  • metal matrix composite
  • micro electrical discharge machining
  • micro-EDM
  • micro-EDM milling
  • micro-hardness
  • micro-holes
  • micromachining
  • n/a
  • nanosilver colloid
  • Nd: YAG LBµM
  • near-dry wire electric discharge machining (WEDM)
  • nitinol
  • optimization
  • Performance
  • polymer composite materials
  • processing precision
  • protrusions
  • Quality
  • residual stress
  • Reverse-μEDM
  • shape memory alloys
  • Silicon
  • structured surface
  • surface roughness
  • Taguchi
  • teaching–learning based optimization (TLBO) algorithm
  • Technology, engineering, agriculture
  • Technology: general issues
  • tool electrode wear
  • tungsten carbide
  • vibration assisted electrical discharge machining (EDM)
  • wire electro-discharge machining

Links

DOI: 10.3390/books978-3-0365-6986-4

Editions

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