Skip to main navigation
Skip to search
Skip to main content
University of Johannesburg Home
Search content at University of Johannesburg
Home
Scholars
Research entities
Research output
Press/Media
Equipment & facilities
Review of EDM-Based Machining of Nickel–Titanium Shape Memory Alloys
Sujeet Kumar Chaubey
,
Kapil Gupta
Mechanical and Industrial Engineering Technology
University of Johannesburg
Marwadi University
Research output
:
Contribution to journal
›
Review article
›
peer-review
1
Citation (Scopus)
Overview
Fingerprint
Press/Media
(1)
Fingerprint
Dive into the research topics of 'Review of EDM-Based Machining of Nickel–Titanium Shape Memory Alloys'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Shape Memory Alloy
100%
Electrical Discharge Machining
100%
Shape Memory Alloy Materials
57%
Aerospace
28%
Advanced Machining
28%
Material Removal Mechanism
28%
Plasma Formation
28%
Nitinol
28%
Spark Generation
28%
Biocompatibility
14%
Actuator
14%
Biomedical Devices
14%
Optimization Strategy
14%
System Application
14%
Generation Mechanism
14%
Micro-electro-mechanical Systems
14%
Machinability
14%
Shape Memory Effect
14%
Surface Integrity
14%
Automotive Applications
14%
Machining Method
14%
Superelasticity
14%
Difficult-to-machine Materials
14%
Machining Process
14%
Biomedical Materials
14%
Thermomechanical Behavior
14%
Conventional Machining
14%
Tool Wear
14%
Machining Technology
14%
Surgical Tools
14%
Valuable Resources
14%
Hybrid Electric
14%
Tool Optimization
14%
Device Implantation
14%
Formation Generation
14%
Instrumented Device
14%
Traditional Machining
14%
Plasma Spark
14%
Engineering
Electric Discharge Machining
100%
Shape Memory Alloy
100%
Process Parameter
14%
Material Removal
14%
Microelectromechanical System
14%
Optimization Strategy
14%
Surface Integrity
14%
Conventional Machining
14%
Depth Discussion
14%
Automotive Application
14%
Implant
14%
Memory Effect
14%
Actuator
14%
Mechanical Property
14%
Material Removal Mechanism
14%
Material Science
Shape Memory Effect
100%
Machining
100%
Machinability
6%
Mechanical Property
6%
Superelasticity
6%
Biomedical Materials
6%
Actuator
6%
Microelectromechanical System
6%
Biocompatibility
6%