网站首页期刊简介编委会过刊目录投稿指南广告合作征订与发行联系我们English
挤压态WE43镁合金夹杂致裂的研究
英文标题:Study on inclusion cracking for extruded WE43 magnesium alloy
作者:吕刚 何建丽 赵卫东 何进 
单位:上海工程技术大学 
关键词:WE43镁合金 夹杂物 裂纹 临界断裂应变 变形温度 
分类号:TG146.2
出版年,卷(期):页码:2022,47(2):192-198
摘要:

 为了研究挤压态WE43镁合金夹杂物致裂的原因及机理,利用CT扫描仪扫描了WE43镁合金试样,观察挤压态WE43镁合金中夹杂物的形貌及尺寸分布,利用Gleeble-3800热模拟试验机在不同变形温度(150和250 ℃)、不同应变速率(0.001、0.01、0.1和1 s-1)条件下对镁合金试样进行了压缩试验至其断裂。通过光学显微镜和扫描电子显微镜对断裂试样裂纹附近区域形貌进行观察及分析。结果表明:挤压态WE43镁合金中的夹杂物主要为球形(或近球形),夹杂物尺寸在5~10 μm范围内的占比约为42.94%。WE43镁合金的临界断裂应变约为0.3,且在试验温度下WE43镁合金的真应力与应变速率之间不敏感。在裂纹边缘及裂纹扩展方向上发现的夹杂物是镁合金致裂的重要原因。EDS结果表明:变形温度为150 ℃时,致裂的水滴状夹杂物成分为Mg12Nd;而变形温度为250 ℃时,致裂的块状夹杂物成分为Mg24Y5。

 To study the reason and mechanism of inclusion cracking for extruded WE43 magnesium alloy, the WE43 magnesium alloy sample was scanned by scanner nano-CT to observe the morphology and size distribution of inclusions in the extruded WE43 magnesium alloy, and the WE43 magnesium alloy sample is subjected to compression tests until fracture by thermal mechanical stimulator Gleeble-3800 at different deformation temperatures (150 and 250 ℃) and different strain rates (0.001,0.01, 0.1 and 1 s-1). Then, the morphologies near the crack region of fracture samples were observed and analysed by optical microscope and scanning electron microscope.The results show that the inclusions in the extruded WE43 magnesium alloy are mainly spherical (or nearly spherical), and the size of the inclusions is about 42.94% in the range of 5-10 μm. The critical fracture strain of WE43 magnesium alloy is about 0.3, and there is no sensitivity between true stress and strain rate of WE43 magnesium alloy at the test temperature. The inclusions found at the crack edge and the crack propagation direction are important causes of magnesium alloy cracking. The EDS results show that when the deformation temperature is 150 ℃, the composition of fracturing water droplet-shaped inclusion is Mg12Nd, while when the deformation temperature is 250 ℃,the composition of fracturing massive inclusion is Mg24Y5.

基金项目:
国家自然科学基金资助项目(51805313)
作者简介:
作者简介:吕刚(1992-),男,硕士,E-mail:2240722093@qq.com;通信作者: 何建丽(1979-),女,博士,讲师,E-mail:hejianling792@163.com
参考文献:

 [1]Mo NTan Q YBermingham Met alCurrent development of creep-resistant magnesium cast alloysA review[J]Materials & Design2018155422-442.


[2]李星星,刘正,王越,等.铸态镁合金Mg-xZn-0.5Y-0.5Zr热裂缺陷研究[J].稀有金属,202044(7)697-705.


Li X XLiu ZWang Yet al.Hot tearing defects of as-cast Mg-xZn-0.5Y-0.5Zr alloys[J].Chinese Journal of Rare Metals202044(7)697-705.


[3]卢超.AZ31B镁合金复合陶瓷涂层在SBF溶液中的应力腐蚀研究[J].轻工机械,201432(4)9-12.


Lu C.Stress corrosion study of AZ31B magnesium alloy composite ceramic coating in simulated body fluid[J].Light Industry Machinery201432(4)9-12.


[4]白彩盛,赵立杰.金属材料在汽车轻量化中的应用探讨[J].世界有色金属,2019(13)291293.


Bai C SZhao L J.Application of metal material in automotive lightweight[J].World Nonferrous Metals2019(13)291293.


[5]张凯,李兴刚,李永军,等.热处理对ZM51镁合金力学性能的影响[J].稀有金属,201943(6)585-591.


 


Zhang KLi X GLi Y Jet al.Effects of heat treatments on the properties of ZM51 Magnesium Alloys [J].Chinese Journal of Rare Metals201943(6)585-591.


[6]Wang KWang JDou X Xet al.Microstructure and mechanical properties of large-scale Mg-Gd-Y-Zn-Mn alloys prepared through semi-continuous casting[J].Journal of Materials Science & Technology202052(17)72-82.


[7]Wang DShanthraj PSpringer Het al.Particle-induced damage in Fe-TiB2 high stiffness metal matrix composite steels[J].Materials & Design2018160557-571.


[8]Liu X G,Wang CDeng Q Fet al.High-temperature fracture behavior of MnS inclusions based on GTN model[J].Journal of Iron and Steel Research International201926(9)941-952.


[9]Lu Y QZhu X JHu X Det al.Effects of blowing Ar on inclusion and properties of AZ61 magnesium alloy[J].Key Engineering Materials2016725416-420.


[10]Liang M JWu G HDing W Jet al.Effect of inclusion on service properties of GW103K magnesium alloy[J].Transactions of Nonferrous Metals Society of China2011214):717-724.


[11]Ishihara SKitagawa SQi M R,et al.Evaluation of distribution of fatigue lives of the extruded magnesium alloy AZ61[J].Acta Mechanica20132241251-1260.


[12]郭鹏杰,张星,李保成,等.AZ80镁合金第二相体积分数对其拉伸性能的影响[J].金属热处理,201944(3)46-49.


Guo P JZhang XLi B Cet al.Effect of secondary phase volume fraction on tensile properties of AZ80 magnesium alloy[J].Heat Treatment of Metals201944(3)46-49.


[13]何进.Mg-RE镁合金塑性形变机理与断裂机制的研究[D].上海:上海工程技术大学,2020.


He J.Research on Plastic Deformation Mechanism and Fracture Mechanism of Rare Earth-Magnesium Alloy[D].ShanghaiShanghai University of Engineering Science2020.


[14]Jahedi MMcwilliams B AKnezevic M.Deformation and fracture mechanisms in WE43 magnesium-rare earth alloy fabricated by direct-chill casting and rolling[J].Materials Science & Engineering A2018726194-207.


[15]张忠明,胡博,徐春杰,等.镁合金中的夹杂及其去除方法[J].兵器材料科学与工程,200932(5)103-106.


Zhang Z MHu BXu C Jet al.Inclusions and their removal methods in magnesium alloys[J].Ordnance Material Science and Engineering200932(5)103-106.


[16]陈伟,刘楚明,苏再军,等.铸态Mg-2Nd-0.2Zn-0.4Zr-xY镁合金组织及力学性能[J].中南大学学报:自然科学版,201243(6)72-78.


Chen WLiu C MSu Z Jet al.Microstructure and mechanical properties of as-cast Mg-2Nd-0.2Zn-0.4Zr-xY alloy[J].Journal of Central South UniversityScience and Technology201243(6)72-78.


[17]Xiang C CGupta NCoelho Pet al.Effect of microstructure on tensile and compressive behavior of WE43 alloy in as cast and heat treated conditions[J].Materials Science & Engineering A201871074-85.

服务与反馈:
文章下载】【加入收藏
《锻压技术》编辑部版权所有

中国机械工业联合会主管  中国机械总院集团北京机电研究所有限公司 中国机械工程学会主办
联系地址:北京市海淀区学清路18号 邮编:100083
电话:+86-010-82415085 传真:+86-010-62920652
E-mail: fst@263.net(稿件) dyjsjournal@163.com(广告)
京ICP备07007000号-9