supported by the Czech Science Foundation under project no.22-21122J;Partial financial support from the Ministry of Health of the Czech Republic under the grant Nr.20-08-00150;partial financial support from the Charles University Grant Agency under project number 389422;partial financial support from the Science Grant Agency of the Slovak Republic through project No.1/0153/21;faculty specific research project FSI-S-23-8340.
This work explored possibilities of biodegradable magnesium alloy Mg-3Y preparation by two modern powder metallurgy techniques–spark plasma sintering(SPS)and selective laser melting(SLM).The powder material was conso...
The emphasis of this exploration was to examine the workability and work hardening performance of Mg(Magnesium)specimen and Mg-B_(4)C composites created via the powder metallurgy technique.The pure Mg and Mg-B_(4)C co...
The authors wish to thank the Czech Science Foundation(Project No.GA19-08937S);specific university research(A2_FCHT_2020_027 and A1_FCHT_2020_003)for the financial support of this research.
Powder metallurgy is a powerful method for the preparation of materials with superior properties.This work aimed to investigate the effect of powder size on the microstructure,mechanical,and corrosion properties of ad...
The authors acknowledge the Project(81472058)sup-ported by the National Natural Science Foundation of China;the financial support of the 2015 ShanDong province project of outstanding subject talent group.the project(LSD-KB1806);supported by the foundation of National Key labo-ratory of Shock Wave and Detonation Physics and the project(11802284);supported by the National Natural Science Foun-dation of China.The project(2017GK2120);supported by the Key Research and Development Program of Hunan Province and the Natural Science Foundation of Hunan Province of China(2018JJ2506).
For high corrosion resistance and extensively modified biodegradable Mg-based alloys and composites for bone implants,a new Mgbased matrix model prepared by powder metallurgy is discussed and developed.In this researc...
Department of Science and Technology-Science and Engineering Research Board(DST-SERB),New Delhi,India(Grant reference no.EMR/2017/001550).
In the present work,biocompatible materials such as niobium(Nb),zinc(Zn)and calcium(Ca)have been blended with magnesium(Mg)to develop a novel biomaterial(BM)with improved mechanical and corrosion resistant properties....
The authors would like thank to Universiti Sains Malaysia for FRGS Grant No.203/PBAHAN/6071386 and financial scholarship from Ministry of Higher Education of Malaysia.
Magnesium-based biomaterials have recently gained great attention as promising candidates for the new generation of biodegradable implants.This study investigated the mechanical performance and biodegradation behaviou...
the Czech Science Foundation(GACR),project No.16-12828S is also gratefully acknowledged.
Response to isochronal annealing up to 440 ℃ of squeeze cast Mg–Y–Zn alloy and of the same alloy prepared by powder metallurgy(PM)and extruded at 280 ℃ was studied by resistivity and microhardness measurement,diff...
The present research deals with development and characterisation of magnesium–SiC–Gr hybrid composites through powder metallurgy route.Morphology analysis of the magnesium and reinforcement powder particles has been...
The hot deformation behaviour of extruded magnesium-zinc oxide nano composite has been studied using hot compression test.The test was conducted in the temperature range of 250-400℃ and in the strain rate range of 0....
The present work was supported by the National Natural Science Funds of China(No.50725413);the Ministry of Science and Technology of China(MOST)(No.2010DFR50010 and 2011FU125Z07);Chongqing Science and Technology Commission(CSTC2013JCYJC60001).
In this study,the effect of micron-sized titanium and aluminum addition on the microstructural,mechanical and work-hardening behavior of pure Mg is investigated.Pure Mg reinforced with 10%Ti and 10%Ti-1%Al particulate...