![]() ![]() Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence.Īny further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI. Moreover, the higher value of residual stress has been noticed on the machined surface of Ti 50 Ni 40 Co 10 alloy while lower on the machined surface of Ti 50 Ni 49 Co 1 alloy.Ĭopper (Cu), Zinc (Zn), Carbon (C) and Oxygen (O) were found as additional elements on the machined surface during the EDS analysis of machined components for each alloy. ![]() Tensile residual stress was noticed at higher values of outputs while lower values of residual stress at lower values of outputs which were also confirmed through microstructure and surface topography that smoother surface has been found at lower values of outputs. L-25 orthogonal array used for machining of selected alloys, which is created (L-25 orthogonal array) through Taguchi design of experiment.įrom the experiments, an analysis was made to study the amount of material removal and average roughness as a response.įurther machined areas were subjected to metallurgical characterization techniques such as surface topography, EDS analysis, residual stress calculation and wear mechanism. ![]() #Elcam software software#The pulse duration and servo voltage varied to perform the experiments on Ti 50 Ni 49 Co 1 Ti 50 Ni 45 Co 5 and Ti 50 Ni 40 Co 10 smart materials for bone staple applications which were designed by ELCAM software and generated G-code for machining with same software. ![]()
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