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1)  coarse Al–Si alloy
一次铝硅合金
1.
The coarse Al–Si alloy was produced in a carbon tube furnace by using bauxite tailing and soft coal as raw materials.
以Al2O3尾矿和烟煤为原料,在碳管炉内进行了一次铝硅合金熔炼,采用X射线衍射光谱对不同温度不同加碳量反应后的产物进行物相分析,探讨了由尾矿生产一次铝硅合金的反应过程并获得了合格的一次铝硅合金产品。
2)  Al-Si Alloy
铝硅合金
1.
Modification mechanism of eutectic silicon in Al-Si alloys:impurity-induced coupled twinning;
铝硅合金中共晶硅的变质机理:杂质诱发共生成对孪晶
2.
Mechanism of Acid Pickling for Al-Si Alloy before Spiral Vibration Polishing;
铝硅合金螺旋振动抛光酸洗机理的探讨
3.
Effects of strong magnetic field on modification of Al-Si alloy;
强磁场对铝硅合金变质效果的影响
3)  aluminum-silicon alloy
铝硅合金
1.
The effect of heat treatment on the structure and the mechanical property of the aluminum-silicon alloy without solidification shrinkage;
热处理对无凝固收缩铝硅合金组织和性能的影响
2.
Analysis on structure and fracture morphology of short fiber reinforced aluminum-silicon alloy composites;
短纤维增强铝硅合金复合材料的组织与断口形貌分析
3.
Determination of Si,Fe,Zn,Cu,Mn,Ti and Mg elements in aluminum-silicon alloy.;
铝硅合金中硅、铁、锌、铜、锰、钛、镁等元素的同时测定
4)  silicon-aluminum alloy
硅铝合金
1.
Investigation on the edge grinding quality and geometry parameters of polycrystalline diamond tools for turning silicon-aluminum alloy pistons;
车削硅铝合金活塞的PCD刀具刃磨及几何参数
2.
In order to effectively utilize the ascharite minerals, which contain high MgO and low SiO2, in Kuandian region in Liaoning Province, the paper studies the vacuum-thermal reduction of ascharite with aluminum powder and silicon-aluminum alloy powder as reductants.
为使辽宁省宽甸地区具有代表性的高镁低硅型硼镁石矿得到科学、合理的利用,本试验首次利用真空热还原法来分离这种矿,分别采用铝粉和硅铝合金粉为还原剂,运用正交法,研究在不同的还原温度、时间和制团压力等条件下镁的还原率。
3.
In order to utilize effectively the ascharite mineral which contain low grade B2O3,the vacuum-thermal reduction of roasted ascharite to deoxygenize magnesia into magnesium with silicon-aluminum alloy as reductant was experimentally investigated.
为了解决低品位硼镁石矿的合理利用问题,首次以硅铝合金为还原剂,应用真空热法还原原理将煅烧后矿石中的游离氧化镁还原为金属镁。
5)  aluminum-silicon alloy
铝-硅合金
1.
The growth kinetics of microarc oxidation films on ZL101 cast aluminum-silicon alloy was investigated and the relation of the growth thinkness,current density(i)and growth rate(v)of ceramic films was discussed.
研究了ZL101铸造铝-硅合金微弧氧化陶瓷膜的生长动力学,探讨了膜生长厚度与电流密度(i)和生长速率(v)的关系。
2.
Because of the difficulties of polishing aluminum alloy products with high silicon content by traditional mechanical or chemical polishing process, the spiral vibration polishing process of aluminum-silicon alloy products with 9.
15%的铝-硅合金制品进行抛光试验。
6)  aluminum silicon alloy
铝硅合金
1.
The short fiber reinforced aluminum silicon alloy gradual composites are manufactured by squeeze casting,and the structures and the wear resistance of the composites are studied.
采用挤压铸造技术制备短纤维增强铝硅合金梯度复合材料,研究了这类材料的凝固组织和耐磨性能。
2.
A alumina short fibre reinforced aluminum silicon alloy composite is manufactured by squeeze casting.
利用挤压铸造制备了氧化铝纤维增强铝硅合金复合材料 ,研究了这种材料的界面对其耐磨性的影响。
3.
The formability of spray formed eutectic aluminum silicon alloys are investigated by using the isothermal upset test in this study.
本文即针对喷射成形共晶铝硅合金成形性进行研究 ,采用Gleeble15 0 0实验机进行压缩比实验 ,并同时量测流动应力。
补充资料:铝硅合金
分子式:
CAS号:

性质:一种以铝、硅为主成分的锻造和铸造合金。一般含硅11%。同时加入少量铜、铁、镍以提高强度。密度2.6~2.7g/cm3。导热系数101~126W/(m·℃)。杨氏模量71.0GPa。冲击值7~8.5J。疲劳极限±45MPa。用于制造低中强度的形状复杂的铸件,如盖板、电机壳、托架等,也用作钎焊焊料。

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