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含LPSO相和W相Mg−Zn−Y−Zr合金铸造、力学和腐蚀性能的比较
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作者 V.E.BAZHENOV S.S.SAIDOV +8 位作者 Yu.V.TSELOVALNIK O.O.VOROPAEVA I.V.PLISETSKAYA A.A.TOKAR A.I.BAZLOV v.a.bautin A.A.KOMISSAROV A.V.KOLTYGIN V.D.BELOV 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1276-1290,共15页
为了开发新型铸造镁合金,研究含长周期堆垛相(LPSO)和W共晶相的Mg−Zn−Y−Zr合金。硬度和电导率测试结果表明,T6热处理的温度是合适的。与含W相的合金相比,含LPSO相合金的热裂敏感性更低,这与合金的凝固区间有关。然而,两者具有相同的流... 为了开发新型铸造镁合金,研究含长周期堆垛相(LPSO)和W共晶相的Mg−Zn−Y−Zr合金。硬度和电导率测试结果表明,T6热处理的温度是合适的。与含W相的合金相比,含LPSO相合金的热裂敏感性更低,这与合金的凝固区间有关。然而,两者具有相同的流动性。在T6条件下,增加Y含量可以提高合金的屈服强度,但合金的其他拉伸性能基本相同。与含W相的合金相比,含LPSO相的合金具有更优的耐腐蚀性。含LPSO相的Mg−2.5Zn−3.7Y−0.3Zr(质量分数,%)合金具有良好的铸造性能和力学性能,其腐蚀速率为2 mm/year。 展开更多
关键词 镁合金 铸造 LPSO相 W相 流动性 热裂敏感性 腐蚀速率
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Microstructure and mechanical and corrosion properties of hot-extruded Mg–Zn–Ca–(Mn)biodegradable alloys 被引量:12
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作者 V.E.Bazhenov A.V.Li +6 位作者 A.A.Komissarov A.V.Koltygin S.A.Tavolzhanskii v.a.bautin O.O.Voropaeva A.M.Mukhametshina A.A.Tokar 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第4期1436-1451,共16页
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechanical properties comparable to those of human bone and require no revision surgery for their removal.Among Mg-based al... Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechanical properties comparable to those of human bone and require no revision surgery for their removal.Among Mg-based alloys,Mg–Zn–Ca–(Mn)alloys have been extensively investigated for medical applications because the constituent elements of these alloys,Mg,Zn,Ca,and Mn,are present in human tissues as nutrient elements.In this study,we investigated the effect of the hot extrusion temperature on the microstructure,mechanical properties,and biodegradation rate of Mg–Zn–Ca–(Mn)alloys.The results showed that the addition of Mn and a decrease in the extrusion temperature resulted in grain refinement followed by an increase in the strength and a decrease in the elongation at fracture of the alloys.The alloys showed different mechanical properties along the directions parallel and perpendicular to the extrusion direction.The corrosion test of the alloys in the Hanks’solution revealed that the addition of Mn significantly reduced the corrosion rate of the alloys.The Mg–2 wt%Zn–0.7 wt%Ca–1 wt%Mn alloy hot-extruded at 300℃ with an ultimate tensile strength of 278MPa,an yield strength of 229MPa,an elongation at fracture of 10%,and a corrosion rate of 0.3 mm/year was found to be suitable for orthopedic implants. 展开更多
关键词 Biodegradable Mg alloy Mg–Zn–Ca–(Mn) Hot extrusion Mechanical properties Corrosion rate
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Design of Mg-Zn-Si-Ca casting magnesium alloy with high thermal conductivity 被引量:4
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作者 V.E.Bazhenov A.V.Koltygin +7 位作者 M.C.Sung S.H.Park A.Yu.Titov v.a.bautin S.V.Matveev M.V.Belov V.D.Belov K.V.Malyutin 《Journal of Magnesium and Alloys》 SCIE 2020年第1期184-191,共8页
Magnesium alloys are commonly used to produce lightweight parts.While most magnesium alloys exhibit low thermal conductivities,high thermal conductivities are needed for electronic devices.In this study,we attempted t... Magnesium alloys are commonly used to produce lightweight parts.While most magnesium alloys exhibit low thermal conductivities,high thermal conductivities are needed for electronic devices.In this study,we attempted to develop new magnesium casting alloys with high thermal conductivities.The Mg-Zn-Si-Ca alloy compositions were chosen using CALPHAD(CALculation of PHAse Diagrams)calculations,and alloy samples were prepared.The fluidity and hot-tearing resistance were measured.The results indicated that these properties were similar to those of AZ91 alloy.Tensile tests showed that high-pressure die casting could produce Mg-Zn-Si-Ca alloys possessing mechanical properties 1.5-3 times higher than those produced via sand casting.The alloy thermal conductivity was 126 W/mK at room temperature.The corrosion rates of the as-cast samples in NaCl/water solutions were two times higher than that of AZ91. 展开更多
关键词 Magnesium alloy Thermal conductivity Phase composition Corrosion rate Sand casting High-pressure die casting
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Influence of Zr and Mn additions on microstructure and properties of Mg-2.5wt%Cu-Xwt%Zn(X=2.5,5 and 6.5)alloys
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作者 A.V.Koltygin V.E.Bazhenov +6 位作者 I.V.Plisetskaya v.a.bautin A.I.Bazlov N.Y.Tabachkova O.O.Voropaeva A.A.Komissarov V.D.Belov 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2022年第9期1733-1745,共13页
This work studied the effects of adding Zr and Mn in amounts less than 1wt%on the microstructure,mechanical properties,casting properties,and corrosion resistance of Mg-Zn-Cu alloys containing 2.5wt%Cu and 2.5wt%-6.5w... This work studied the effects of adding Zr and Mn in amounts less than 1wt%on the microstructure,mechanical properties,casting properties,and corrosion resistance of Mg-Zn-Cu alloys containing 2.5wt%Cu and 2.5wt%-6.5wt%Zn.The hardness and electrical conductivity measurements were used to find an optimal heat treatment schedule with the best mechanical properties.It has been established that Zr significantly increases the yield strength of the alloys due to a strong grain refinement effect.However,the presence of Mn and Zr has a detrimental effect on alloy’s elongation at fracture.It was shown that the precipitation of the Mg_(2)Cu cathodic phase in the alloy structure negatively affects the corrosion behavior.Nevertheless,the addition of Mn decreases the corrosion rate of the investigated alloys.The best combination of the mechanical,casting,and corrosion properties were achieved in the alloys containing 2.5wt%Cu and 5wt%Zn.However,the Mn or Zr addition can improve the properties of the alloys;for example,the addition of Mn or Zr increases the fluidity of the alloys. 展开更多
关键词 magnesium alloy Mg-Zn-Cu casting alloy Mn addition Zr addition
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