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Kabupaten Nias Selatan

Badan Riset dan Inovasi Nasional

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07-11-2022

12-08-2024

dac9454e-f77a-45f6-8c6d-df181e40cee1

Dataset Serupa
Powder Metallurgy Preparation of Mg-Ca Alloy for Biodegradable Implant Applicati...

Magnesium and its alloys is a promising candidate for implant application especi...

Processing of porous Mg-Zn-Ca alloy via powder metallurgy

Mg-Zn-Ca alloy is one of magnesium alloys that has been investigated for its pot...

Effect of Heat Treatment on the Properties of Mg-Ca-Zn Alloy Prepared by Powder ...

Mg-Ca-Zn alloy is one of Mg alloy that has been investigated for its potential i...

Structural Properties of Mg-Ca-Zn Alloy with Addition of CaCO3 as Foaming Agent ...

Magnesium alloy has received considerable attention as an emerging biodegradable...

Influence of Niobium or Molybdenum in Titanium Alloy for Permanent Implant Appli...

Titanium (Ti) alloy metal has been used for permanent implant in the human body....

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Powder metallurgy preparation of Mg-Ca alloy for biodegradable implant application

Terbatas

Magnesium and its alloys is a promising candidate for implant application especially due to its biodegradability. In this study, Mg-7Ca alloys (in weight persen) were processed by powder metallurgy from pure magnesium powder and calcium granule. Milling process was done in a shaker mill using stainless steel balls in various milling time (3, 5, and 8 hours) followed by compaction and sintering process. Different sintering temperatures were used (450°C and 550°C) to examine the effect of sintering temperature on mechanical properties and corrosion resistance. Microstructure evaluation was characterized by X-ray diffraction, scanning electron microscope and energy dispersive X-ray spectroscopy. Mechanical properties and corrosion behavior were examined through hardness testing and electrochemical testing in Hank’s solution (simulation body fluid). In this report, a prolonged milling time reduced particle size and later affected mechanical properties of Mg alloy. Meanwhile, the phase analysis showed that α Mg, Mg2Ca, MgO phases were formed after the sintering process. Further, this study showed that Mg-Ca alloy with different powder metallurgy process would have different corrosion rate although there were no difference of Ca content in the alloy. IOP Conf. Series: Journal of Physics: Conf. Series 817 (2017) 012062

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