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cuzr
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  cu-zr
     The precipitation phase in Cu-Zr and Cu-Zr-Si alloys have been analysed by TEM.
     用透射电子显微镜研究了Cu—ZrCu—Zr—Si合金的析出相。
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     It is considered thai CusZr is the precipitation phase in Cu-Zr alloy.
     认为Cu—Zr合金的析出相为Cu_5Zr。
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  “cu—zr”译为未确定词的双语例句
     Some in, f, grmation has been gained on the structure of Cu-Zr--Si precipitates by electron diffraction analysis and Moire fringe contrast analysis.
     用衍射、衍衬分析得到了Cu—Zr—Si析出相结构方面的初步信息。
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  相似匹配句对
     Cu;
     Cu
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     s. ,Ti-s.
     ,Zr-S.
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     Zr.
     Zr.
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     Heat Treatment of Ag-Cu-Zr Alloy
     Ag-Cu-Zr合金的热处理
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     The technique of mechanical alloying(MA) for preparing amorphous Fe-Zr-B-(Cu) alloys has been studied The structure of samples was analysed by X-ray diffractometry, electron microscopy and Mssbauer spectroscopy.
     STUDYOFAMORPHOUSFe-Zr-B-(Cu)ALLOYSBYMECHANICALALLOYING¥ZHANGJianqiang;
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  cuzr
The Grüneisen parameter and the low-frequency elastic loss of vitreous silica, PMMA, and of the metallic glasses PdSiCu, PdZr, and CuZr have been measured between 0.4 K and 6 K using an elasto-caloric technique.
      
Formation region of amorphous thin CoZr and CuZr films prepared by cocondensation on hot substrates
      
The glass formation ranges of thin CoZr and CuZr films condensed on cold and hot substrates (10-800 K) are experimentally determined by X-ray diffraction.
      
Clustering effect in the crystallization process of a CuZr amorphous alloy
      
The melts are shown to contain two molecular species: CuZr and Cu2Zr.
      
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The temperature dependence upon the viscosity of three metallic glasses PdCu_6Si_(16.5), PdNi_6Si_(16.5) and CuZr_(43) has been determined by the creep method near the vitrification temperature tange. Under the Newtonian viscous region, this dependence may be described by the Fulcher-Vogel equation. The constants of this equation were determined experimentally and the apparent activation energy of viscous flow for these three glasses was calculated therefrom. The activation energies of thermal transformation...

The temperature dependence upon the viscosity of three metallic glasses PdCu_6Si_(16.5), PdNi_6Si_(16.5) and CuZr_(43) has been determined by the creep method near the vitrification temperature tange. Under the Newtonian viscous region, this dependence may be described by the Fulcher-Vogel equation. The constants of this equation were determined experimentally and the apparent activation energy of viscous flow for these three glasses was calculated therefrom. The activation energies of thermal transformation of the glasses PdNi_6Si_(16.5) and CuZr_(43) were also determined by differential scanning calorimetry. It was found that there is no appreciable difference in activation energy between viscous flow and thermal transformation for PdNi_6Si_(16.5), but marked for CuZr_(16.5).

用蠕变法测量了PdCu_6Si_(16.5),PdNi_6Si_(16.5)和CuZr_(43)三种金属玻璃在玻璃转变温度附近的粘度-温度依赖关系。在Newtonian粘度范围内,三种玻璃的粘度-温度依赖关系均可用Fulcher-Vogel方程进行描述。方程中的常数由实验曲线所确定,并由此计算出这些玻璃的粘滞性流变的表观激活能。同时用差热分析测定了金属玻璃PdNi_6Si_(16.5)和CuZr_(43)的热转变激活能。结果发现,PdNi_6Si_(16.5)合金的粘滞性流变激活能同热转变激活能的差别很小,而CuZr_(43)合金的差别则比较大。

The thermal stability and the variation of constituent crystallised phases in annealing amorphous Zr70Cu30 alloy under a pressure of 2 GPa were examined by resistance measurement and X-ray diffraction analysis Results show an increment of crystallizing temperature at high pressure. An evident variation on phase equilibrium was observed . Instead of the precipitation of CuZr2 compound (with a little amount of α-Zr) at normal pressure, a mixture of Cu10Zr7 compound and α-Zr occurs under 2GPa.

用电阻测量及X-线衍射法研究了非晶Zr_(70)Cu_(30)合金在常压和高压下热稳定性以及晶化相的变化。结果表明压力提高了这种非晶合金的晶化温度并明显地改变了合金中的相平衡关系。在2GPa压力下,平衡相为Cu_(10)Zr_7和a-Zr的混合物,而常压下为CuZr_2和少量a-Zr的混合物。

In this Paper, we introduce the uses of the equipment for Preparing amorphous metal in vacuum. Point out the importance of our investigation, report the technical and structural characteristics of the epuipment. Moreover we use some advanced technology, such as magnetic coupling. in our device. Some experiments of preparing amorphous body by material that have the elements which can be oxidized easily, such as NiP, NiPCe, NiPY CuZr and the tests of the results show that this device can prepares amorphous...

In this Paper, we introduce the uses of the equipment for Preparing amorphous metal in vacuum. Point out the importance of our investigation, report the technical and structural characteristics of the epuipment. Moreover we use some advanced technology, such as magnetic coupling. in our device. Some experiments of preparing amorphous body by material that have the elements which can be oxidized easily, such as NiP, NiPCe, NiPY CuZr and the tests of the results show that this device can prepares amorphous material that have the elements which can be oxidized easily and the rare earth elements in vacuum.

本文阐述了非晶态金属真空制备装置的用途及研制意义,装置的技术指标,结构特 点以及磁耦合等先进技术的应用。通过对 Ni P、Ni PCe、 Ni PY、 CuZr等含易氧化元 素非晶态材料的制备及测试结果,证明本装置可以在真空保护气氛下制备含稀土等易氧 化元素的非晶态材料。

 
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