Simultaneous optimization of the tensile strength, bending strength, hardness and wear resistance of W-Cu nano-composite produced by sintering process

نویسندگانEhsan Selahshorrad - Ebrahim Zeynali - Ali Houmani - Karim Zangeneh-Madar - Mohammad Reza Samadi - Mahmoud Afshari - Hossein Afshari
نشریهInternational Journal of Refractory Metals and Hard Materials
ضریب تاثیر (IF)4.6
نوع مقالهFull Paper
تاریخ انتشار2023
رتبه نشریهISI
نوع نشریهچاپی
کشور محل چاپهلند

چکیده مقاله

In this research, the mechanical properties of tungsten‑copper (Wsingle bondCu) composite fabricated by the sintering technology were optimized by design of experiments. The parameters of sintering temperaturesintering time and weight percentage of copper were selected to optimize the tensile strengthbending strength, wear resistance and hardness of the Wsingle bondCu composite using the response surface method combined with desirability process. The microstructure of the Wsingle bondCu composite was also examined by SEM, TEM, XRD and EDS analyses. The results showed that a rise in the sintering temperature from 1000 to 1150 °C improved the tensile strength of Wsingle bondCu composite, while a rise in the sintering temperature from 1150 to 1300 °C deteriorated the tensile strength. Moreover, the bending strength, wear resistance and hardness of the Wsingle bondCu composite continuously enhanced with the increase of sintering temperature from 1000 to 1300 °C. An increase in the amount of Cu from 20 to 40 wt% resulted in a reduction in the wear resistance and hardness of the Wsingle bondCu composite, while the increase of Cu content improved the tensile and bending strengths. It was also showed that mechanical properties of the Wsingle bondCu composite can be improved simultaneously by using 23 wt% Cu at sintering temperature of 1220 °C and sintering time of 2.5 h.

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