1)  Sn-Ag-Sb+M alloy
Sn-Ag-Sb+M合金系
1.
In this paper, Sn-Ag-Sb+M alloys are investgated,and the mechanical properties, physical properties and interfacial properties of these alloys are also measured.
因此必须寻找新的性能优良的钎料,对Sn-Ag-Sb+M合金系进行了研究,对所选定的合金系进行力学性能,物理性能及界面性能等方面的实验测试。
2)  Sn
Sn
1.
Effects of Ce and Sn on Microstructure of AZ91 Magnesium Alloy;
Ce、Sn对AZ91合金微观组织的影响
2.
Effects of Sn and Ca Addition on Microstructural Stability of ZA62 Magnesium Alloy;
Sn和Ca对ZA62合金组织稳定性的影响
3.
Effects of Trace Si,Ba and Sn on the As-cast Microstructure of AZ91 Magnesium Alloy;
微量Si、Ba、Sn对AZ91铸态组织的影响
3)  tin
Sn
1.
Measurements of release sound velocities of tin with reverse-impact method;
反向碰撞法测量Sn的高压卸载声速
2.
The oxidation behviours of liquid tin with and without trace Ge at 250℃in atmo- sphere were studied by both observation and removing dross from the surface periodically.
采用观察液态Sn表面氧化行为和刮取表面氧化渣的方法,研究了微量元素Ge对液态Sn在大气和250℃条件下表面抗氧化性能的影响,并与纯Sn的氧化行为进行对比;利用X射线光电子能谱仪(XPS)、扫描电子显微镜(SEM)研究了合金表面元素的含量、价态,及合金氧化后的表面形貌。
3.
Based on Atomic and Molecular Reaction Statics and Group theory, the basis sets SDD~(**) for Tin and 6-311g~(**) for H_2, and density functional (B3P86) method have been used to calculate energy E, heat capacity C_v, entropy S of hydrogen isotopes and their Tin compounds.
根据原子分子反应静力学与群论,确定了H2、D2和T2的基电子状态为1∑+g(D∞v),SnH、SnD和SnT的基电子状态为2∑+(C∞v)。
4)  In-Sn
In-Sn
1.
WETTING BEHAVIOR AND INTERFACIAL CHARACTERISTICS OF In-Sn ALLOY ON AMORPHOUS AND CRYSTALLINE Cu_(46)Zr_(45)Al_7Gd_2 SUBSTRATES;
In-Sn合金熔体在非晶和晶态Cu_(46)Zr_(45)Al_7Gd_2合金上的润湿性及界面特性
5)  Sn(Ⅱ)
Sn(Ⅱ)
1.
The Direct Electrochemical Synthesis of Sn(Ⅱ),Pb(Ⅱ) Complexes of 2, 4-Dichlorobenzaldehyde Thiosemicaebazone;
4-二氯氯苯甲醛氨基硫脲与Sn(Ⅱ),Pb(Ⅱ)的配合物。
6)  isomers
Sn-
1.
Several isomers of sulfur clusters were acquired by means of geometry optimization and frequency calculations of the B3LYP DFT approach.
另外也计算了螺旋状的Sn- (n = 14~20)的结构。
参考词条
补充资料:铝-硅系铸造铝合金
分子式:
CAS号:

性质:以硅为主要合金元素的铸造铝合金。硅的添加量范围为5%~25%,并添加镁、铜等元素,形成亚共晶型、共晶型或过共晶型合金。含硅量为5%~13%的亚共晶型或共晶型合金是工业生产中应用最广泛的铸造铝合金。良好的铸造工艺性能和气密性是它们的主要特点。含硅量在13%以上的过共晶型合金具有热膨胀系数小、耐磨性好等特点。

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