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Effect of addition of minor amounts of Sb and Gd on hot tearing susceptibility of Mg-5Al-3Ca alloy 被引量:1
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作者 Xudong Du Feng Wang +3 位作者 Zhi Wang Le Zhou Zheng Liu Pingli Mao 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第2期694-705,共12页
The effects of addition of minor amount of(0.5 wt.%) antimony(Sb) or gadolinium(Gd) and combined addition of Sb and Gd(0.5 wt.%,respectively) on the hot tearing susceptibility(HTS) of Mg-5Al-3Ca alloy were investigate... The effects of addition of minor amount of(0.5 wt.%) antimony(Sb) or gadolinium(Gd) and combined addition of Sb and Gd(0.5 wt.%,respectively) on the hot tearing susceptibility(HTS) of Mg-5Al-3Ca alloy were investigated experimentally using a “T-shaped” hot tearing measuring system. Various solidification parameters of the alloys were measured and calculated through thermal analysis experiments. The microstructure, grain size, and morphology of the crack zone were characterized by scanning electron microscopy and electron backscatter diffraction, and the crystal phases of the alloys were analyzed by X-ray diffraction and energy-dispersive X-ray spectroscopy. The results showed that the addition of 0.5 wt.% Gd resulted in the increase in the vulnerable temperature range(Tv) and reduced the eutectic structure content that could participate in feeding, thereby improving the HTS of the alloy. However, addition of 0.5 wt.% Sb or combined addition of Gd and Sb(0.5 wt.%, respectively) to the Mg-5Al-3Ca alloy shortened the Tvand improved the skeleton strength of the alloy, thereby reducing HTS. Moreover, significantly refined structure of Mg-5Al-3Ca-0.5Gd-0.5Sb alloy improved the feeding ability of the eutectic structure, thus the alloy exhibited the lowest HTS. 展开更多
关键词 Hot tearing susceptibility mg-5al-3Ca alloy Thermal analysis Microstructure
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Ce对Mg-14Al-5Si合金组织及性能的影响 被引量:2
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作者 蒋一锋 范晋平 +1 位作者 裴镖 康文旭 《有色金属工程》 CAS 北大核心 2021年第10期33-39,共7页
针对耐热镁合金需求,以Mg-14Al-5Si合金为研究对象,向合金中加入Ce元素细化合金显微组织,从而提高合金力学性能。利用OM、SEM以及EDS对合金的显微组织及合金的成分进行观察分析,利用硬度计和万能电子试验机检测合金的布氏硬度及伸长率... 针对耐热镁合金需求,以Mg-14Al-5Si合金为研究对象,向合金中加入Ce元素细化合金显微组织,从而提高合金力学性能。利用OM、SEM以及EDS对合金的显微组织及合金的成分进行观察分析,利用硬度计和万能电子试验机检测合金的布氏硬度及伸长率、抗拉强度、屈服强度。结果表明:Ce添加量为1.5%时,合金显微组织细化效果最佳,Mg2Si相平均尺寸由改性前的45.87μm变为6.07μm,粗大连续网格状的共晶β-Mg17Al12相也得到细化,甚至部分变为孤岛状分布。此时合金力学性能达到最佳,硬度为145 HB,抗拉强度为149 MPa,屈服强度为92 MPa,伸长率为3.91%。同时在Ce添加量为2%的合金中发现白色杆状的CeSi2化合物。 展开更多
关键词 mg-14al-5si合金 CE 微观组织 力学性能
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高性能Al-5Mg-2Si-xCe合金的制备及其力学性能研究
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作者 李省委 林宗德 《功能材料》 CAS CSCD 北大核心 2021年第8期8206-8210,共5页
以Al-5Mg-2Si合金为基体合金,通过掺杂稀土Ce元素对合金进行改性,制备了不同Ce掺量的Al-5Mg-2Si-xCe(x=0,0.2,0.4和0.6)合金。采用XRD、SEM、EDS和力学性能分析等方式,研究了合金的结构、微观形貌和力学性能。结果表明,Al-5Mg-2Si-xCe(x... 以Al-5Mg-2Si合金为基体合金,通过掺杂稀土Ce元素对合金进行改性,制备了不同Ce掺量的Al-5Mg-2Si-xCe(x=0,0.2,0.4和0.6)合金。采用XRD、SEM、EDS和力学性能分析等方式,研究了合金的结构、微观形貌和力学性能。结果表明,Al-5Mg-2Si-xCe(x=0,0.2,0.4和0.6)合金主要由α相组合而成,掺杂Ce元素后出现了Al_(8)CeFe_(4)三元含铁相的化合物,说明Ce具有促进β-Fe相转化成α-Fe相Al_(8)CeFe_(4)的作用;不掺杂Ce元素的Al-5Mg-2Si合金的枝晶排列紊乱且尺寸较为粗大,掺入稀土Ce元素后,枝晶的排列得到了明显改善,并且随着Ce掺量的增加,晶粒逐渐细化,分布更为均匀,α-Al的尺寸也逐渐缩小;当Ce掺量为0.4%(质量分数)时,合金的抗拉强度和延伸率均达到最佳,分别为133.70 MPa和1.64%,相比Ce掺量为0时,分别增长了26.49%和115.79%;未掺杂Ce的合金主要为解离断裂,掺入Ce后,合金的断裂方式主要为延晶断裂,且断口处晶粒均较为完整未被拉裂。 展开更多
关键词 al-5mg-2si合金 稀土掺杂 抗拉强度 延伸率
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Sr对Sb变质Mg-5Sn-1.5Al-1Zn-1Si合金组织的影响 被引量:1
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作者 王英 郭学锋 《材料热处理学报》 EI CAS CSCD 北大核心 2018年第3期8-14,共7页
用重力铸造法制备Sb及Sr+Sb联合变质Mg-5Sn-1.5Al-1Zn-1Si合金,再进行不同的固溶处理,研究Sr对Sb变质Mg-5Sn-1.5Al-1Zn-1Si合金组织的影响。结果表明:Sb和Sr+Sb联合变质均可以使初生Mg2Si和Mg2(Si,Sn)颗粒发生不同程度的球化,而Sr... 用重力铸造法制备Sb及Sr+Sb联合变质Mg-5Sn-1.5Al-1Zn-1Si合金,再进行不同的固溶处理,研究Sr对Sb变质Mg-5Sn-1.5Al-1Zn-1Si合金组织的影响。结果表明:Sb和Sr+Sb联合变质均可以使初生Mg2Si和Mg2(Si,Sn)颗粒发生不同程度的球化,而Sr+Sb联合变质比Sb单变质具有更好的细化和球化效果;Sr+Sb联合变质后,共晶Mg2Si和Mg2(Si,Sn)相由汉字状变为细小近似球形或多边形颗粒状;Sb变质Mg-5Sn-1.5Al-1Zn-1Si合金在较低固溶温度和较短保温时间下即可使大部分Mg17Al12相和部分Mg2Sn相固溶到基体中,而Sr+Sb联合变质合金组织中,Mg17Al12和Mg2Sn依然清晰可见,未完全溶解的Mg17Al12相发生球化,均匀的分散在基体中;Sr+Sb联合变质Mg-5Sn-1.5Al-1Zn-1Si合金固溶温度要比Sb单变质时略高一些,但对固溶时间的影响并不明显。 展开更多
关键词 固溶处理 SR Sb mg-5Sn-1.5al-1Zn-1si合金 显微组织
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Microstructures and tensile properties of as-cast Mg-5Sn-1Si magnesium alloy modified with trace elements of Y,Bi,Sb and Sr 被引量:4
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作者 He-shuai Yu Xue-feng Guo Hong-bao Cui 《China Foundry》 SCIE CAS 2021年第1期9-17,共9页
The microstructures and mechanical properties of as-cast Mg-5 Sn-1 Si magnesium alloy modified with trace elements Y,Bi,Sb and Sr were investigated and compared.Results show that the microstructure of the as-cast Mg-5... The microstructures and mechanical properties of as-cast Mg-5 Sn-1 Si magnesium alloy modified with trace elements Y,Bi,Sb and Sr were investigated and compared.Results show that the microstructure of the as-cast Mg-5 Sn-1 Si alloy consists ofα-Mg,Mg_(2) Si,Mg_(2) Sn and Mg_(2)(Si_xSn_(1-x))phases.After adding 0.8 wt.%Y,0.3 wt.%Bi,0.9 wt.%Sb and 0.9 wt.%Sr,respectively into the Mg-5 Sn-1 Si magnesium alloy,Mg_(24)Y_(5),Mg_(3) Bi_(2),Mg_(3) Sb_(2) and Mg_(2) Sr phases are precipitated accordingly.Trace elements can refineα-Mg grain and Chinese scriptshaped Mg_(2) Si phase.Refinement efficiency of different trace elements onα-Mg grain and Mg_(2) Si phase is varied.Sr element has the best refinement effect,followed by Sb and Bi,while Y has the least refinement effect.Mg-5 Sn-1 Si-0.9 Sr alloy has higher tensile properties than the other three modified alloys.The refinement mechanism of Y,Bi and Sr elements on Mg-5 Sn-1 Si magnesium alloy can be explained by the growth restriction factors and the solute undercooling.For Mg-5 Sn-1 Si-0.9 Sb alloy,the heterogeneous nuclei of Mg_(3) Sb_(2) phase is the main reason for the refinement of grains and second phases. 展开更多
关键词 magnesium alloy mg-5Sn-1si alloy Y BI SB SR Mg2si phase
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Shape Memory Effect of As-aged Fe-14Mn-5Si-8Cr-4Ni-0.2C Alloy 被引量:1
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作者 Yuhua WEN, Ning LI and Mingjing TU (Department of Materials Shaping and Controlling Engineering, Sichuan University, Chengdu 610065, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2000年第4期424-426,共3页
The effects of aging temperature on shape memory effect, mechanical properties and microstruc-ture of Fe-14Mn-5Si-8Cr-4Ni-0.2C shape memory alloy have been studied. The results showed that the second phase particles r... The effects of aging temperature on shape memory effect, mechanical properties and microstruc-ture of Fe-14Mn-5Si-8Cr-4Ni-0.2C shape memory alloy have been studied. The results showed that the second phase particles rich in chromium, manganese and silicon precipitate during aging, and thereby increase the hardness and strength of the alloy. The shape recovery ratio can be remarkably improved by aging and a maximum value can be obtained at 1223 K, which is 68% higher than that of the specimen in solid solution state. When the aging temperature is below 1223 K, the amount of second phase particles increases as the aging temperature increases. The size of austenite grain increases with increasing aging temperature. When the temperature is over 1223 K, the second phase particles can not precipitate. The lack of second phase particles and the increase of grain size make the hardness and shape recovery ratio drastically decrease, when the temperature is over 1223 K. 展开更多
关键词 MN Shape Memory Effect of As-aged Fe-14Mn-5si-8Cr-4Ni-0.2C alloy As FE CR Ni si
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Characteristics of Faigue Crack Initiation in Ti-5Al-4Sn-2Zr-1Mo-0.7Nd-0.25Si Alloy
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作者 Jiafeng LEP Yuyin LIU +3 位作者 Shaoxuan GUAN Qingjiang WANG Zhongguang WANG Dong LI and Zhuangqi HU(State Key Lab. for Fatigue and Fracture of Materials, Institute of Metal Research, Chinese Academy of Sciences,Shenyan 110015, China) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1997年第3期238-240,共3页
The characteristics of fatigue crack initiation in Ti-5AI-4Sn-2Zr1Mo-O.7Nd-O.25Si alloy wereStudied. Two modes Of fatigue crack initiation were found. The Nd-rich phase particles displaybetter resistance to fatigue cr... The characteristics of fatigue crack initiation in Ti-5AI-4Sn-2Zr1Mo-O.7Nd-O.25Si alloy wereStudied. Two modes Of fatigue crack initiation were found. The Nd-rich phase particles displaybetter resistance to fatigue crack initiation than the matrix at lower stress. 展开更多
关键词 SN Mo Characteristics of Faigue Crack Initiation in Ti-5al-4Sn-2Zr-1Mo-0.7Nd-0.25si alloy ZR TI Al Nd si
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Improving the strength and SCC resistance of an Al-5Mg-3Zn alloy with low-angle grain boundary structure
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作者 Z.C.Tang W.Xu +1 位作者 D.Y.Zhao B.Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第30期63-73,共11页
The strength of traditional Al-Mg alloys is relatively low because it mainly relies on solid solution strengthening.Adding a third component to form precipitation can improve their strength,but it usually leads to hig... The strength of traditional Al-Mg alloys is relatively low because it mainly relies on solid solution strengthening.Adding a third component to form precipitation can improve their strength,but it usually leads to high-stress corrosion cracking(SCC)sensitivity due to the formation of high-density precipitates at grain boundaries(GBs).So far,it is still challenging to improve the strength of Al-Mg alloys without re-ducing SCC resistance.Herein,a nanostructured Al-5Mg-3 Zn alloy with a good yield strength of 336 MPa and good elongation was successfully produced.By dynamic plastic deformation and appropriate anneal-ing treatment,near-equiaxed nanograins were introduced in the nanostructured Al-5Mg-3 Zn alloy with a high proportion(71%)of the low-angle grain boundary.TEM statistical investigations show that the pre-cipitation of active T’phase at GBs has been greatly suppressed in the nanostructured Al-5Mg-3 Zn alloy at sensitized conditions,and the area fraction of GB precipitates is reduced from 72%to 21%,which sig-nificantly decreases the SCC susceptibility.This study provides guidance for developing advanced Al-Mg alloy with high SCC resistance. 展开更多
关键词 al-5mg-3 Zn alloy Stress corrosion cracking Low angle grain boundary Nanostructured Dynamic plastic deformation
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Y对Mg-14Al-5Si合金性能的影响 被引量:1
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作者 范晋平 蒋一锋 +1 位作者 裴镖 康文旭 《材料研究学报》 EI CAS CSCD 北大核心 2022年第3期213-219,共7页
使用扫描电子显微镜(SEM)、能量色散光谱仪(EDS)、光学显微镜(OM)及X射线衍射仪(XRD)等手段分析了Mg-14Al-5Si合金的组织和成分,用布洛维硬度计和电子万能试验机测试了这种合金的力学性能,研究了在Mg-14Al-5Si合金中添加不同量的Y元素... 使用扫描电子显微镜(SEM)、能量色散光谱仪(EDS)、光学显微镜(OM)及X射线衍射仪(XRD)等手段分析了Mg-14Al-5Si合金的组织和成分,用布洛维硬度计和电子万能试验机测试了这种合金的力学性能,研究了在Mg-14Al-5Si合金中添加不同量的Y元素对其组织和力学性能的影响。结果表明:在Mg-14Al-5Si合金中分别添加0.5%、0.8%、1.0%和1.5%(质量分数,下同)的Y元素,使合金中的Mg_(2)Si相由粗大的树枝状变为多边形和圆形,共晶β-Mg_(17)Al_(12)相由粗大的连续网格状变为细小的网格状和孤岛状。Y的添加量为1.0%时改性效果最佳,Mg_(2)Si相的平均尺寸由42.21µm减小到8.15µm,此时合金的力学性能最佳,硬度为135 HB,抗拉强度为147 MPa,屈服强度为76 MPa,伸长率为5.04%。在Y的添加量为1.5%的合金中发现白色块状的Mg-Si-Y化合物。Y元素能促进Mg_(2)Si相形核、抑制其各向异性生长,并在β-Mg_(17)Al_(12)相的生长前沿偏析形成过冷结构,抑制其生长。 展开更多
关键词 金属材料 mg-14al-5si Y 微观组织 力学性能
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挤压变形对Sr+Sb联合变质Mg-5Sn-1.5Al-1Zn-1Si合金时效硬化效果的影响
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作者 王英 郭学锋 《金属热处理》 CAS CSCD 北大核心 2019年第3期139-144,共6页
对比分析了铸态和挤压态Sr+Sb联合变质Mg-5Sn-1. 5Al-1Zn-1Si合金在时效过程中的组织与硬度的异同,讨论了产生差异的原因。结果表明:挤压变形合金的时效硬化效果明显强于铸态合金的时效硬化效果。铸态合金随着时效温度的升高和保温时间... 对比分析了铸态和挤压态Sr+Sb联合变质Mg-5Sn-1. 5Al-1Zn-1Si合金在时效过程中的组织与硬度的异同,讨论了产生差异的原因。结果表明:挤压变形合金的时效硬化效果明显强于铸态合金的时效硬化效果。铸态合金随着时效温度的升高和保温时间的延长,析出的化合物增多,特别是Mg_(17)Al_(12)和Mg_2Sn相。铸态合金经固溶和时效处理后的最大平均硬度为92. 12 HBW,比未经固溶时效处理时的硬度仅提高了7. 78%,且硬度测量误差范围波动较大。挤压变形合金随着时效温度的升高和时效时间的延长,大量颗粒状析出相均匀分布在基体上,析出相明显长大。挤压变形合金经固溶时效处理后的最大平均硬度为116. 94 HBW,比未固溶时效处理时的硬度提高了21. 4%,且硬度误差波动范围较小。挤压后合金经过固溶时效处理后,材料的性能稳定性明显提高。 展开更多
关键词 mg-5Sn-1. 5al-1Zn-1si合金 挤压变形 时效硬化
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In Situ Investigation of Si-Poisoning Effect in Al-Cu-Si Alloys Inoculated by Al-5Ti-1B
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作者 Yiwang Jia Dongfu Song +3 位作者 Nan Zhou Kaihong Zheng Yanan Fu Da Shu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2022年第1期146-156,共11页
In situ synchrotron X-radiography was carried out on Al-13 Cu and Al-13 Cu-7 Si alloys with and without addition of Al-5 Ti-1 B master alloy.The effects of Si content on grain growth and the solute-suppressed nucleati... In situ synchrotron X-radiography was carried out on Al-13 Cu and Al-13 Cu-7 Si alloys with and without addition of Al-5 Ti-1 B master alloy.The effects of Si content on grain growth and the solute-suppressed nucleation zone(SSNZ)were quantitatively studied.The average grain size can be refined to 164μm of Al-13 Cu alloy inoculated by Al-5 Ti-1B.After addition of 7%Si content,a large number of TiB 2 sites in the melt lost the inoculating ability due to"Si poisoning."The radius of the dendrite tip curvature of Al-13 Cu is more than two times as large as that of Al-13 Cu-7 Si.The sharper tip is able to disperse the solute more effectively and thus grains can grow more rapidly.This causes that the dendrite arm growth rate with addition of 7%Si solute is about 2.6 times that of no Si addition.In addition,the solute enrichment in the SSNZ of Al-13 Cu is faster,and the area change of SSNZ is slower than that of Al-13 Cu-7 Si.Thus more nucleation sites in the SSNZ cannot be activated with addition of Si.This study will shed light on the understanding of Si poisoning in casting Al-Cu-Si alloys. 展开更多
关键词 al-si alloy Dendrite tip si poisoning X-ray radiography al-5Ti-1B
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