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kissinger equation
相关语句
  kissinger方程
     The crystal activation energies of Cu55Zr30Ti15 and Cu50Zr40Ti10 alloys were calculated using Kissinger equation. The first crystal activation energies were 349.25 kJ/mol and 303.93 kJ/mol for Cu55Zr30Ti15 and Cu50Zr40Ti10 alloys,respectively.
     利用K issinger方程得到了Cu55Zr30Ti15和Cu50Zr40Ti10的晶化激活能,两种非晶的第一晶化激活能分别是349.25 kJ/mol和303.93 kJ/mol.
短句来源
     According to Kissinger equation, the crystallization activation energies of the Al_((90-X))Mg_(10)Ce_X (X=3~7) alloys have been caculated and then the fragilities are also achieved using the results of the energies caculations.
     通过Kissinger方程,计算了Al_((90-x))Mg_(10)Ce_x(x=3~7)非晶合金的激活能。
短句来源
     The cure kinetic equations were deduced from Kissinger equation and Ozawa-Flynn-Wall equation.
     分别采用Kissinger方程和Ozawa-Flynn-Wall方程推导了该固化体系的固化动力学方程,并计算了固化反应活化能。
短句来源
     The average crystallization activation energies of hexagonal and monoclinic structures of trans 1,4-polybutadiene were obtained by Kissinger equation to be -165.8 kJ/mol, -220.5 kJ/mol, respectively.
     由Kissinger方程得到TPBD六方相和单斜相结晶的平均结晶活化能分别为-165.8kJ/mol和-220.5kJ/mol。
短句来源
     The perpendicular anisotropy constant K_u increases with the increase of bias voltage. By means of the plots from both Johnson-Mehl-Avrami equation and Kissinger equation, the parameters of crystallization kinetics, △E = 2.0eV and n = 1 have been determined for amorphouss Gd_(27)Tb_(10)Fe_(63) film.
     垂直膜面磁各向异性能常数随着偏压的增加而增加,借助于Johnson-Mehl-Avrami方程和Kissinger方程的计算,报道了非晶Gd_(27)Tb_(10)Fe_(65)膜的晶化动力学参数,激活能△E=2.0电子伏,转变指数n=1。
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  “kissinger equation”译为未确定词的双语例句
     Crystallization process of Mg_65Cu_25_xNi_xY_10 (x=l, 2, 3) alloy was studied when heating by use of Kissinger equation.
     利用Kissinger法研究了Mg_(65)Cu_(25-x)Ni_xY_(10)(x=1,2,3)合金的升温转变过程。
短句来源
     By the Kissinger Equation, the activation energy for crystallization was calculated to be 412 and 353kJ/mol for Cu_(50)Zr_(45)Al_5 and
     采用Kissinger法计算出Cu_(50)Zr_(45)Al_5和Cu_(46)Zr_(42)Al_7Y_5的晶化激活能分别为412和353kJ/mol。 Y元素的加入降低了Cu_(50)Zr_(45)Al_5合金的热稳定性。
短句来源
     Energy of non-isothermal determined by Kissinger equation is 382 kJ/mol.
     非等温结晶活化能为382kJ/mol。
短句来源
     Energy of non isothermal determined by Kissinger equation is 137.3 kJ/mol.
     s- PP非等温结晶活化能为 137.3k J/ mol
短句来源
     The results show that DADC/MMA resin castings have a good processibility and their tensile strength and flexural strength are better than those of DADC homopolymer, the apparent activation energy obtained by Kissinger equation is 108 kJ/mol,the curing reaction order calculated by using the theory of Crane is 0.94.
     结果表明:DADC与MMA的共聚树脂浇铸体加工性能良好,拉伸强度和弯曲强度都比DADC的均聚物有了明显提高,共聚物固化反应表观活化能为108kJ/mol,固化反应级数n=0.94。
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  相似匹配句对
     ON THE EQUATION
     关于方程ф(x)=ф(y)
短句来源
     equation
     方程(之3)
短句来源
     Kinetic parameters were obtained using the equation of Kissinger.
     利用Kissinger方程给出了其动力学参数。
短句来源
     Kissinger' Response
     基辛格的回答
短句来源
     The Kissinger and Ozawa equation kinetic parameters of the thermal decomposition were obtained.
     利用多升温速率法Kissingr法和Ozawa法,分别计算了磺化麦草碱木质素热动力学方程中的表观活化能(E)和频率因子lnA,分别为118.3kJ.
短句来源
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  kissinger equation
The kinetics of the individual reactions in terms of activation energy were analyzed by simplified procedures based on the Kissinger equation.
      
The kinetics of the individual reactions in terms of activation energy were analyzed by simplified procedures based on the Kissinger equation.
      
Both the Kissinger equation and modified Kissinger kinetic analysis were adopted to estimate activation energy and the reaction order of the process.
      
From the heating rate dependence of the crystallization temperature, the activation energy for crystallization has been determined using the Kissinger equation and Matusitas equation for non-isothermal crystallization of materials.
      
The activation energy obtained from the Freeman >amp;amp; Carroll equation was larger than that from the Kissinger equation.
      
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The thermal stability of seven penicillins was studied by the differential scanning calorimetry technique. The activation energy was calculated from Kissinger equation. The thermal stabilities of penicillins increased in the order: Benzylpenicillin

本文报道用差示扫描量热法测定7种青霉素钠盐的热降解稳定性,用Kissinger方程计算反应活化能。这些青霉素类药物的热降解稳定性以下列次序增加:青霉素钠<羧苄青霉素钠<苯唑青霉素钠<氨苄青霉素钠<邻氯青霉素钠<氧哌嗪青霉素钠<磺苄青霉素钠。青霉素钠最不稳定。

Prepared by using bias magnetron-sputtering, the deposited GdTbFe films possess the suitable parameters for magneto-optical recording. The perpendicular anisotropy constant K_u increases with the increase of bias voltage. By means of the plots from both Johnson-Mehl-Avrami equation and Kissinger equation, the parameters of crystallization kinetics, △E = 2.0eV and n = 1 have been determined for amorphouss Gd_(27)Tb_(10)Fe_(63) film. The crystallization temperature and active energy AE of the amorphous...

Prepared by using bias magnetron-sputtering, the deposited GdTbFe films possess the suitable parameters for magneto-optical recording. The perpendicular anisotropy constant K_u increases with the increase of bias voltage. By means of the plots from both Johnson-Mehl-Avrami equation and Kissinger equation, the parameters of crystallization kinetics, △E = 2.0eV and n = 1 have been determined for amorphouss Gd_(27)Tb_(10)Fe_(63) film. The crystallization temperature and active energy AE of the amorphous Gd_(27)Tb_(10)Fe_(63) film are greater than the binary system, GdCo, GdFe, for example. The isothermal annealing of amorphous Gd_(27)Tb_(10)Fe_(63) film at various temperature shows that it has a good thermal stability which is required for magneto-opticai recording application.

用偏压磁控溅射所制备得的非晶钆铽铁膜具有适用于磁光存储的材料参数。垂直膜面磁各向异性能常数随着偏压的增加而增加,借助于Johnson-Mehl-Avrami方程和Kissinger方程的计算,报道了非晶Gd_(27)Tb_(10)Fe_(65)膜的晶化动力学参数,激活能△E=2.0电子伏,转变指数n=1。上述成份的GdTbFe膜的晶化温度、激活能都要高于二元系统的GdCo,GdFe膜,等温退火的结果表明,GdTbFe膜具有磁光存储应用所必须要求的较好的热稳定性。

The thermal stability of 6-mercaptopurine ribonucloside (6-MPR)was investygated by the differentital scanning calorimetry techiques and the activation energy was 164.9KJ/MOL which was calculated from Kissinger equation.The critical relative humidty (CRH) of 6-MPR was also determied to be about 89%.

本文对6-巯基嘌呤核苷(6-MPR)的临界相对湿度,对热的稳定性作了研究。测得6-MPR的临界相对湿度(CRH)为89%;用差示扫描量热法(DSC)测定了6-MPR的热降解稳定性,用Kissinger方程计算了该药的反应活化能为164.95KJ/mol。

 
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