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1)  internal interface modification
内界面改性
2)  interface modification
界面改性
1.
The effect of species,dosage,dimension of woody filling and species of plastic on properties of woody filling/thermoplastic composites(WPC) was introduced,the research progresses about interface modification,toughening modification,processing modification and molding technology of WPC were summarized.
介绍了木质填料的种类、用量、尺寸和塑料的种类对木质填料/热塑性塑料复合材料(WPC)性能的影响,综述了WPC的界面改性、增韧改性、加工改性和成型技术等方面的研究进展。
2.
A good interface adhesion between natural botanic fibers and PHBV is achieved by the interface modification of natural botanic fiber,addition of compatilizer,and the chemical modification of PHBV matrix,with the natural fiber dispersing much better in the matrix.
总结了近年来国内外关于聚羟基丁酸酯-co-羟基戊酸酯共聚物(PHBV)/天然植物纤维复合材料界面改性的研究进展。
3)  interfacial modification
界面改性
1.
Present progress of studies on interfacial modification in SiCp/Al composites fabricated by infiltration process;
无压熔渗制备SiCp/A l复合材料的界面改性研究进展
2.
Investigation of interfacial modification for HIPS/CG-ATH nano-composite;
HIPS/CG-ATH纳米复合材料界面改性研究
3.
Based on the interfacial properties of the linear low density polyethylene highly filled with aluminum hydroxide, the effects of the interfacial modification and silane crosslinking on the microstructure, processing flow behaviour and the mechanical properties of the composite were investigated.
从Al(OH)_3高填充线型低密度聚乙烯(LLDPE)材料的界面性质出发,研究了复合材料界面改性与硅烷交联方法对LLDPE/Al(OH)_3复合材料的微观结构、加工流动性及力学性能的影响。
4)  interface modifying
界面改性
1.
Study on interface modifying of bamboo fiber reinforced polyamide resin composite;
竹纤维增强聚酰胺树脂复合材料界面改性
5)  Interfacial Modifier
界面改性剂
1.
With the measurement of oxygen index, effect of selfmade macromolecule interfacial modifier on the flame retar-dance of PA6/brucite composite was studied, and it was compared with that of coupling agent TC - 114.
通过测试氧指数,探讨了自制的大分子界面改性剂对PA6/水镁石阻燃性能的影响,并与偶联剂TC-114进行了对比。
2.
In order to improve the mechanical property and the processability of polypropylene(PP)/Mg(OH)2flarne-retardant composites, three modified composite system with variotfs interfacial modifiers and various Mg(OH)2 surface-treated fillers are studied.
为了提高聚丙烯(PP)/氢氧化镁阻燃复合材料的力学性能和加工性能,本工作对采用不 同氢氧化镁表面处理和不同界面改性剂的3种改性复合体系进行了研究,并获得了力学性能好、可加 工的、阻燃的聚丙烯,氢氧化镁复合材料。
3.
This paper mainly investigates the effects of interfacial modifier and its composite match between surfactant, dispersant, polyethylene PE and magnesium hydroxide Mg (OH)2 on the mechanical property, processability, working flowability and flame retardancy of PE/Mg(OH)2 non-halogen flame-retardant material.
重点研究了氢氧化镁的表面处理剂、分散剂、聚乙烯与氢氧化镁间的界面改性剂及其相互间的复配对聚乙烯/氢氧化镁(PE/Mg(OH)2)无卤阻燃材料的力学性能、加工流变性和阻燃性的影响,并获得了无卤、低毒、低烟的聚乙烯阻燃聚合物材料。
6)  interface modifier
界面改性剂
1.
The results show that the properties of the composites added with PP-g-MAH 1 interface modifier are better.
以镁盐晶须增强聚丙烯(PP)复合材料为研究对象,添加马来酸酐接枝聚丙烯(PP g MAH) 1与PP g MAH 2界面改性剂来改善两者界面粘合强度及提高复合材料的力学性能;探讨了不同加工工艺流程对复合材料性能的影响。
补充资料:-戊内酯、3-甲基丁内酯、咖吗-戊内酯
CAS: 108-29-2
分子式: C5H8O2
分子质量: 100.12
沸点: 207-208℃
熔点: -31-208℃

中文名称: 4-戊内酯、γ-戊内酯、3-甲基丁内酯、咖吗-戊内酯

英文名称: dihydro-5-methyl-2(3H)-Furanone、dihydro-5-methyl-2(3h)-furanon、4-hydroxypentanoic acid lactone、4-hydroxyvaleric acid lactone、4-methyl-gamma-butyrolactone、gamma-methyl-gamma-butyrolactone、gamma-valerolakton

性质描述: 无色至微黄色液体。凝固点-31℃,沸点205-206.5℃,83-84℃(1.73kPa),相对密度(25/25℃)1.0578,折光率(nD25)1.4301。能与水、许多有机溶剂、树脂和蜡等混溶。10%水溶液的pH为4.2。

生产方法: 由不饱和羧酸通过闭环反应来合成,例如乙酰乙酸与硫酸共热,或乙酰丙酸在镍、铜等催化剂存在下加氢。

用途: γ-戊内酯有较强的反应能力,可用作树脂溶剂及各种有关化合物的中间体。也用作润滑剂、增塑剂、非离子型表面活性剂的胶凝剂、加铅汽油的内酯类添加剂,用于纤维素酯和合成纤维的染色。γ-戊内酯具有香兰素和椰子香味。我国GB2760-86规定为允许使用的食用香料。主要用以配制桃、椰子、香草等型香精。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条