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1)  calcination [英][,kælsi'neiʃən]  [美][,kælsɪ'neʃən]
2)  quenching [英][kwentʃ]  [美][kwɛntʃ]
淬火
1.
Heat transfer coefficient measurement and calculation on the composite surface of parts quenching;
工件火过程表面综合换热系数的测算
2.
Control and analysis of quenching deformation for bearing ring;
轴承套圈火变形的控制与分析
3.
Effect of quenching on microstructure and properties of TiCp/Fe composite in (Ti-Fe)-Al-C system;
火处理对(Ti-Fe)-Al-C体系TiCp/Fe复合材料组织及性能的影响
3)  melt-spinning
快淬
1.
Effect of quenching rate on phase transformation of Ni-Mn-Ga melt-spinning alloys;
速对Ni-Mn-Ga快合金相变的影响
2.
4)nanocomposite ribbons prepared by melt-spinning at rolling speed V=22m/s were investigated by methods of VSM.
用振动样品磁强计(VSM)研究了PrxFe94 3-xB5 7Zr1 (x=9 4 ,9 8,10 2 ,10 6 ,11,11 4 )系列快带在速V =2 2m s的态和真空退火态(6 70℃)样品的磁性能和磁滞回线的变化情况,发现该系列合金在速V =2 0m s下样品S2 (Pr1 1 Fe83 3B5 7Zr1 )取得了最好的磁性能为:Jr =0 76T ,Hc =977 3kA m ,(BH) max=98 8kJ m3;最佳快和晶化热处理都可以使软磁相与硬磁相耦合。
3.
The non-stoichiometric Ni50Mn27Ga23 polycrystalline ribbons were prepared by melt-spinning technique.
采用快技术制备了非化学计量成分的Ni50Mn27Ga23多晶薄带,对快薄带的马氏体相变和磁感生应变进行了研究。
4)  rapid quenching
快淬
1.
The microstructures and electrochemical capacities of La_2Mg(Ni_(0.85)Co_(0.15))_9B_x(x=0 ~0.2) hydrogen storage alloys prepared by casting and rapid quenching;
铸态及快态La_2Mg(Ni_(0.85)Co_(0.15))_9B_x(x=0~0.2)贮氢合金的微观结构与电化学容量(英文)
2.
Effects of boron additive and rapid quenching technique on the microstructrue and electrochemical capacity of La-Mg-Ni system hydrogen storage alloy;
硼及快工艺对La-Mg-Ni系贮氢合金的微观结构及电化学容量的影响
3.
The effects of rapid quenching on the electrochemical characteristics of Mm(NiCoMnAl)_5B_xhydrogen storage alloys;
熔体快对Mm(NiCoMnAl)_5B_x贮氢合金电化学性能的影响
5)  quencher [英]['kwentʃə]  [美]['kwɛntʃɚ]
淬火
1.
Quencher is a important means to optimize structure of work piece, and it is also a foundation technique in mechanical industry.
火是实现工件组织结构优化的一个重要手段,也是机械行业的一项重要基础技术,它对于提高和控制材料的性能,充分发挥材料的性能潜力,节省原材料,减少能耗,提高产品的可靠性,延长其使用寿命,并提高生产单位的经济效益等都具有十分重要的意义。
6)  quenching process
淬火
1.
Numerical simulation of flow and heat transfer during quenching process;
火过程流动与传递现象数值模拟
2.
A model is presented for the simulation of a metal workpiece quenching process which is based on two-phase flow and boiling heat transfer.
火过程中流固耦合传热与汽液两相流动计算进行了研究,从两相流动与沸腾换热基础理论出发,推导出金属块火过程中温度场分布的流固耦合求解控制方程和计算方法。
补充资料:双室油淬加压气淬真空炉ZYC_2-65


双室油淬加压气淬真空炉ZYC_2-65


  双室油淬加压气淬真空炉zY02—65
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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