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Mg对Al-22Si-10Ni合金组织和热学性能的影响
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作者 李鹏宇 张瑜璐 +3 位作者 李乙庚 隋明冉 南邵骏 杜军 《铸造》 CAS 2024年第2期174-179,共6页
Al-22Si-10Ni合金具有较高的导热性和较低的热膨胀特性,但硬度偏低,对其进行Mg合金化,研究Mg对该合金凝固组织和热学性能的影响。研究显示,Mg的加入主要影响合金的末期凝固进程,合金凝固末期反应由Al-Si-Al3Ni三元共晶反应向Al-Si-Mg2S... Al-22Si-10Ni合金具有较高的导热性和较低的热膨胀特性,但硬度偏低,对其进行Mg合金化,研究Mg对该合金凝固组织和热学性能的影响。研究显示,Mg的加入主要影响合金的末期凝固进程,合金凝固末期反应由Al-Si-Al3Ni三元共晶反应向Al-Si-Mg2Si三元共晶反应转变;热处理促进Mg_(2)Si析出,少量Mg加入后Al-22Si-10Ni合金的热导率小幅上升,继续添加Mg后,热导率出现下降;Mg对合金热膨胀系数影响较小,可显著提升合金的硬度。Al-22Si-10Ni-0.5Mg合金表现出优异的综合性能,其室温热导率130.3 W/(m·K),25~100℃范围内平均热膨胀系数为13×10^(-6)/K,硬度达到HV144,性能较为接近喷射沉积制备的高含量Al-50Si合金,具有成为电子封装用材料的潜能。 展开更多
关键词 al-22si-10ni合金 凝固特性 热导率 热膨胀系数 硬度
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Al-9Si-10Cu储能材料对0Cr18Ni9钢的腐蚀行为研究 被引量:1
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作者 张潇华 夏志增 +1 位作者 郭丽娟 张浩 《世界有色金属》 2017年第24期13-15,共3页
铝合金是比较理想的中高温储能材料,但在高温时易腐蚀金属容器,所以在实际工程应用时,需控制储能铝合金对容器的腐蚀。通过设置合理的腐蚀试验,研究了储能温度和储能时间分别对Al-9Si-10Cu储能材料腐蚀容器0Cr18Ni9钢的影响规律以及相... 铝合金是比较理想的中高温储能材料,但在高温时易腐蚀金属容器,所以在实际工程应用时,需控制储能铝合金对容器的腐蚀。通过设置合理的腐蚀试验,研究了储能温度和储能时间分别对Al-9Si-10Cu储能材料腐蚀容器0Cr18Ni9钢的影响规律以及相应的腐蚀机理,结果表明:腐蚀速率和腐蚀层厚度随储能温度的升高而逐渐增加;腐蚀速率随着储能时间的延长逐渐下降并趋于稳定,腐蚀层厚度却随储能时间的延长而不断增加;腐蚀层由两个区域组成,两者的颜色不同且具有明显的分界线;随着储能时间的延长,腐蚀层B区域的宽度几乎保持不变,而腐蚀层C区域却逐渐疏松并剥落,以致0Cr18Ni9钢被逐渐腐蚀。 展开更多
关键词 al-9si-10Cu储能材料 0CR18ni9钢 储能温度 储能时间 腐蚀机理
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MEASUREMENT OF THE THERMAL PARAMETER OF THEBULK AMORPHOUS Zr_(41)Ti_(14)Ni_(10)Cu_(125)Be_(225)ALLOY
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作者 X L Tian1) ,Y M Sun1) ,S X Zhao1)and X C Chen2) 1) College of Materials Science and Engineering,Shandong University of Technology ,Jinan 250061 ,China2) Institute of Physics,The Chinese Academy of Sciences,Beijing 100081 ,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1999年第4期708-712,共5页
Thethermal parameterofthe bulk amorphous Zr41 Ti14 Ni10 Cu12 5 Be22 5 alloy thermal dif fusivity,thermalcapacity andcoefficientofthermalconductivityatthestateofsolid andsu percooled liquid hasbeen measuredinthi... Thethermal parameterofthe bulk amorphous Zr41 Ti14 Ni10 Cu12 5 Be22 5 alloy thermal dif fusivity,thermalcapacity andcoefficientofthermalconductivityatthestateofsolid andsu percooled liquid hasbeen measuredinthisstudy.It wasfoundthatthecoefficientofthermalconductivity and thethermalcapacity vary significantly with temperature. An error occursinthe measurementofthecoefficientofthethermalconductivity andthethermalcapacity us ing the method adoptedin this paper bothintheglasstransition processand when crystalliza tion processappears. 展开更多
关键词 Zr41Ti14ni10Cu12 5Be22 5 amorphous alloy thermalparameter
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Tensile Properties and Deformation Behaviors of a New Aluminum Alloy for High Pressure Die Casting 被引量:8
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作者 Peng Zhang Zhenming Li +1 位作者 Baoliang Liu Wenjiang Ding 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第4期367-378,共12页
Effects of natural aging and test temperature on the tensile behaviors have been studied for a highperformance cast aluminum alloy Al–10Si–1.2Cu–0.7Mn. Based on self-strengthening mechanism and spheroidization micr... Effects of natural aging and test temperature on the tensile behaviors have been studied for a highperformance cast aluminum alloy Al–10Si–1.2Cu–0.7Mn. Based on self-strengthening mechanism and spheroidization microstructures, the alloy tested at room temperature(RT) exhibits higher 0.2% proof stress(YS) of 206 MPa, ultimate tensile strength(UTS) of 331 MPa and elongation of 10%. Increasing aging time improves the YS and UTS and reduces the ductility of the alloy. Further increasing aging time beyond72 h does not signi?cantly increase the tensile strengths. Increasing test temperature significantly decreases the tensile strengths and increases the ductility of the alloy. The UTS of the alloy can be estimated by using the hardness. The Portevin–Le Chatelier effect occurs at RT due to the interactions between solid solution atoms and dislocations. Similar behaviors occurring at 250℃ are attributed to dynamic strain aging mechanism. Increasing aging time leads to decrease in the strain-hardening exponent(n) value and increase in the strain-hardening coeficient(k) value. Increasing test temperature apparently decreases the n and k values. Eutectic phase particles cracking and debonding determine the fracture mechanism of the alloy. Final failure of the alloy mainly depends on the global instability(high temperature, necking) and local instability(RT, shearing). Different tensile behaviors of the alloy are mainly attributed to different matrix strengths, phase particle strengths and damage rate. 展开更多
关键词 al-10si-1.2Cu-0.7Mn aluminum alloy High pressure die casting Tensile behavior Natural aging (self-strengthening) High temperature
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