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1)  vacuum induction melting
真空感应熔炼
1.
A Study on Oxygen Contamination from Crucible Material on Molten Steel during Vacuum Induction Melting;
真空感应熔炼过程炉衬材料向钢液供氧现象的研究
2.
The denitrogenation behavior during vacuum induction melting (VIM) Ni-base superalloy using CaO crucible was studied.
研究了采用CaO坩埚真空感应熔炼镍基高温合金过程中的脱氮行为。
3.
The changes of carbon and oxygen contents and the influence of carbon and aluminium on deoxidation during vacuum induction melting (VIM) refining Ni-6Cr-2Mo-6W-5Co alloy using CaO crucible were studied.
研究了使用 Ca O坩埚真空感应熔炼 Ni- 6 Cr- 2 Mo- 6 W- 5 Co合金过程中碳与氧的变化及加碳和铝的脱氧作用。
2)  VIM [英][vɪm]  [美][vɪm]
真空感应熔炼
1.
Deoxidizing Law of Aluminum-Containing Steel During VIM;
真空感应熔炼含铝钢的脱氧规律
2.
Denitrogenation and Desulphurization in VIM for Ni-base Superalloy Refining;
镍基高温合金真空感应熔炼脱氮与脱硫
3.
Deoxidation and Denitrogenation during VIM Refining Ni-Base Superalloy;
镍基高温合金的真空感应熔炼脱氧和脱氮
3)  vacuum induction melting(VIM)
真空感应熔炼
1.
The influences of carbon and aluminium on deoxidation during vacuum induction melting(VIM) in CaO crucible for Ni-base superalloy is studied.
本研究在现有条件下,确定了氧在镍基高温合金中存在主要形态为氧化铝夹杂,根据得到的实验数据分析和计算,初步研究了真空感应熔炼条件下碳和铝对镍基高温合金的脱氧机理,实验中氧含量最低为0。
2.
Investigates the denitrogenation behavior of Ni-base superalloy during vacuum induction melting(VIM) and how Ti interacts with Ni in the Ni-base superalloy.
研究了真空感应熔炼镍基高温合金过程中的脱氮工艺并初步分析了镍基高温合金中钛对氮的相互作用,近似地计算出其相互作用系数。
4)  vacuum induction melting (VIM)
真空感应熔炼(VIM)
5)  semi continuous vacuum induction semelting furnace
半连续真空感应熔炼炉
6)  vacuum melting
真空熔炼
1.
The Dissolution of Oxygen in Ti6Al4V Melt during Vacuum Melting;
Ti-6Al-4V合金真空熔炼过程中氧元素的溶解
2.
A self-made vacuum melting and argon shield continuous unidirectional solidification equipment was used to produce copper tube with continuous columnar structure.
采用自行研制的真空熔炼、氩气保护连续定向凝固设备制备出具有连续柱状晶组织的铜管铸坯,分析了铜管铸坯生产中熔体温度、连铸速度、冷却水量,结晶器等对其的影响。
3.
In the process of vacuum melting AZ31 magnesium alloy, Nb powder and Mg-Nd intermediate alloy were added, respectively.
研究真空条件下,在重熔AZ31镁合金的过程中添加Mg-Nd中间合金,分析真空熔炼合金中夹杂物的成分及Nd的吸收率,观察其微观组织,对析出相进行分析,与不含Nd的AZ31进行比较,并着重讨论了提高其力学性能的途径。
补充资料:真空感应炉熔炼

vacuuminductionmelting,VIM:在真空下利用感应电热效应熔炼金属和合金的工艺。

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