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1)  dough stichky
粘面
2)  interfacial viscosity
界面粘度
1.
The interfacial viscosity of surfactants Tween 40(polyoxyalkylene sorbitan palmitate) and Span 80 (sorbitan monooleate)and their effects on interfacial viscosity of Daqing, Iranian Light, Iranian Heavy vacuum residue fractions were investigated by using shear interfacial viscosity meter.
采用剪切界面粘度仪考察了表面活性剂Tween40和Span80的油 水界面粘度及其对大庆、伊朗轻质和伊朗重质减压渣油馏分的油 水界面粘度的影响。
2.
The interfacial viscosity of Daqing vacuum residue fractions was investigated by using shear interfacial viscosity meter.
采用剪切界面粘度仪考察了大庆减压渣油超临界馏分(简称大庆减渣馏分)的油-水界面粘度。
3.
The interfacial viscosity of super critical separated Iranian light vacuum residue fractions was investigated by using shear interfacial viscosity meter.
采用剪切界面粘度仪考察了伊朗轻质减压渣油超临界分离馏分的油 水界面粘度。
3)  interfacial adhesion
界面粘接
1.
Surface performance and effects on interfacial adhesion of several high performance fibers;
几种高性能纤维的表面性能及其对界面粘接的影响
2.
Study on interfacial adhesion of PE and UPR based composite material;
PE/UPR玻璃钢界面粘接研究
3.
A new method of improving the interfacial adhesion of incompatible polymer blend is introduced.
介绍了改善不相容聚合物共混物界面粘接的一种崭新方法,应用SEM技术以动态热力学进行研究。
4)  bonding interface
粘接界面
1.
The present measuring methods of the mechanical properties of the propellant/liner bonding interface are compared.
比较了目前测试推进剂/衬层粘接界面性能的方法。
2.
Three acetone-based wet bonding systems, Gluma One-Bond, Bond-1 and One-Step, were used to bond Chrisma composite resin to dry or moist dentin surface, and the bonding interface was observed with Bio-Rad MRC-1024 laser scanning confocal microcope; Microtensile strengths of different groups were measured with Instro 1 195.
目的研究干燥或湿润的牙本质表面状态对丙酮基粘接剂粘接强度和粘接界面微观结构的影响,并探讨粘接强度和粘接界面微观结构之间的内在联系。
3.
The bonding interface were observed with Bio-Rad MRC-1024 laser scanning confocal microscope and microtensile bonding strengths of different groups were measured with Instro 1195.
目的 :研究干燥或湿润的牙本质表面状态对酒精 -水基粘接剂粘接强度和粘接界面微观结构的影响 ,并探讨粘接强度和粘接界面微观结构之间的内在联系。
5)  Interfacial adhesion
界面粘结
1.
The interfacial adhesion of unsized and sized carbon fiber with different sizing agents and matrix can be characterized by single fiber fragment test.
本文通过单纤维碎裂法 ,分别对未上浆及不同上浆剂处理的碳纤维与基体的界面粘结性进行表征。
2.
The fatigue behaviour of continuous glass fibre mat reinforced polypropylene composites (GMT PPs) with different interfacial adhesion is investigated by dynamic fatigue tests.
采用动态疲劳试验研究了不同界面粘结状况的 GMT- PP复合材料的疲劳行为。
3.
The improvement in the interfacial adhesion , mechanical properties and mechanism of interaction between the various component have been discussed.
综述官能团化聚烯烃(FPO)在无机填料填充、增强、增韧,纤维增强、填充和阻燃等类型聚丙烯复合材料中的应用,并讨论了FPO改善复合材料界面粘结和提高力学性能的作用机理。
6)  interface debonding
界面脱粘
1.
When matrix is brittle and interface bonding is weak, it is usual that cracks develop first in the matrix and then interface debonding occurs.
利用剪切滞后法 ,给出一种新的基体损伤模型 ;利用 J积分理论 ,给出一种新的由基体裂纹导致的纤维 /基体界面脱粘裂纹损伤模型。
2.
The critical matrix strain energy criterion,strain energy release rate criterion and Curtin s statistical failure criterion were used to describe the matrix cracking,interface debonding and fiber failure,and to determine the matrix cracking .
采用Budiansky-Hutchinson-Evans(BHE)剪滞模型分析了复合材料出现损伤时的细观应力场,结合临界基体应变能准则、应变能释放率准则以及Curtin统计模型三种单一失效模型分别描述陶瓷基复合材料基体开裂、界面脱粘以及纤维失效三种损伤机制,确定了基体裂纹间隔、界面脱粘长度和纤维失效体积分数。
补充资料:硫酸粘菌素 ,粘菌素,硫酸多粘菌素E
药物名称:多粘菌素E

英文名:Polymyxin E

别名: 多粘菌素E;可立斯丁;可刹迈仙干糖浆;硫酸抗敌素;硫酸粘菌素 ,粘菌素,硫酸多粘菌素E
外文名:Colistin ,Polymyxin E
性状:
常用其硫酸盐,为白色或微黄色粉末;无臭或几乎无臭。有引湿性。在水中易溶,在乙醇中微溶,在丙酮、氯仿或乙醚中几乎不溶。
药理作用:
抗菌谱和体内过程与多粘菌素B相同。口服不吸收,用于治疗大肠杆菌性肠炎和对其它药物耐药的菌痢。外用于烧伤和外伤引起的绿脓杆菌局部感染和耳、眼等部位敏感菌感染。注射已少用。
适应症:
用于治疗大肠杆菌性肠炎和对其他药物耐药的菌痢。外用于烧伤和外伤引起的绿脓杆菌局部感染和耳、眼等部位敏感菌感染。注射已少用。
用量用法:
1.口服:成人1次50万~100万单位,1日3~4次。儿童1次量25万~50万单位,1日3~4次。重症时上述剂量可加倍。 2.外用:溶液剂每毫升含1万~5万单位,氯化钠注射液溶解。
注意事项:
1.可发生皮疹、瘙痒等过敏症状。胃肠道有恶心、呕吐、食欲不振、腹泻等不良反应。 2.孕妇慎用。 3.口服宜空腹给药。
规格: 片剂:每片50万;100万;300万单位。灭菌粉剂:每瓶100万单位,供制备溶液用(1mg=6500单位)


类别:抗生素
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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