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1)  Isothermalization
等温化
2)  isothermal oxidation
等温氧化
1.
Change in interfacial toughness of EB-PVD thermal barrier coatings during isothermal oxidation;
EB-PVD热障涂层等温氧化过程中的界面韧性变化
2.
The isothermal oxidation of a two-dimensionally reinforced carbon/carbon(2D-C/C) composite was investigated by thermogravimetric analysis,and a kinetic model was proposed.
用热重法研究了二维炭/炭(2D-C/C)复合材料的等温氧化,提出了氧化动力学模型,用SEM观察了样品不同氧化程度的微观形貌,并探讨了材料的等温氧化机理。
3.
XRD,SEM,isothermal oxidation-weight gain and non-isothermal oxidation(TG) were used to study the oxidation properties of SiC.
结果表明:未预处理SiC在等温氧化过程中,600~1 100℃区间内,等温氧化动力学曲线服从抛物线规律;而在1 100~1 300℃区间,则偏离了抛物线规律,氧化速率随温度的升高先增大后减小。
3)  isothermal annealing
等温晶化
1.
Phase transformation of amorphous alloy (Ni_(0.75)Fe_(0.25))_(73)Nb_5Si_(10)B_(12) during isothermal annealing;
(Ni_(0.75)Fe_(0.25))_(73)Nb_5Si_(10)B_(12)非晶合金的等温晶化与结构转变
4)  isothermal nitriding
等温氮化
1.
The macro surface wear and micro structure of a 38CrMoAlA failure screw in injection molding machine were analyzed,the existing defects in the heat-treatment were pointed out,and finally a reasonable isothermal nitriding procedure was provided.
对失效的38CrMoAlA注塑机螺杆,从宏观表面磨损及微观金相组织角度进行了分析,指出了热处理过程中存在的缺陷,并提出合理的等温氮化热处理工艺。
5)  isothermal crystallization
等温晶化
1.
By introducing the concept of Avrami exponent nucleation and growth kinetics of Ni-P and Ni-P-D coatings were researched during isothermal crystallization process.
采用金刚石作为复合粒子制备了N i-P-金刚石复合镀层,通过引入晶化方式指数的概念,研究了N i-P镀层和N i-P-金刚石复合镀层的等温晶化过程的形核和长大动力学。
2.
Employing differential scanning calorimetry (DSC) and transmission electron microscopy (TEM), the isothermal crystallization process and precipitated phases of Zr41.
5 (at%)大块非晶合金的等温晶化 过程和析出相进行了研究。
3.
5Fe80NbB6 melt-spun ribbons,after isothermal crystallization processes at 943,973 and 1003 K,was studied.
5Fe80Nb1B6非晶快淬薄带在943,973和1003 K等温晶化与薄带组织和矫顽力的关系。
6)  isothermal cure
等温固化
1.
It was found that the increase of E′ during isothermal cure process at high temperatures is different from the one at low temperatures.
采用动态力学分析法(DMA)对648环氧预浸料的等温固化过程进行了表征分析。
补充资料:二羟基氧化丙烯-氧化乙烯共聚醚
分子式:
分子量:
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性质:一种破乳剂。蜡状粘稠液体。羟值≤50毫克KOH/毫。应用于原油脱水,配成一定浓度的水溶液即可使用。经氢氧化钾为催化剂,丙二醇与环氧丙烷、环氧乙烷 开环聚合而成。

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