1) whisker fillers
晶须填料
1.
The effect of different kinds and usage amounts of whisker fillers on mechanical properties of resin composite was studied and the optimal plan was discovered by adding different kinds of whisker fillers into resin.
【目的】研究晶须与纳米粒子熔附工艺,筛选出晶须熔附纳米粒子的最佳比例;选用不同种类的晶须填料加入树脂中,研究晶须填料的种类及用量对复合树脂力学性能的影响,找出最佳方案;同种晶须分别采用微米级和纳米级两种尺寸范围,研究晶须直径大小对复合树脂力学性能的影响。
2) Inorganic whisker material
无机晶须材料
1.
Inorganic whisker material is divided into 3 classifications: high-temperature whisker, mid-temperature whisker and low-temperature whisker accoding to the difference temperature of the used whisker.
无机晶须材料从使用温度条件来讲可分为三类:高温晶须、中温晶须和低温晶须;我们把每类晶须选择较为典型的几种做了较为详尽的介绍:一般性质、制备方法及复合材料等。
3) whisker
[英]['wɪskə(r)] [美]['wɪskɚ]
晶须;触须
4) whisker
[英]['wɪskə(r)] [美]['wɪskɚ]
晶须
1.
Research on the preparation of basic magnesium sulfate whisker with organic acid by hydrothermal method;
添加有机酸水热法制备碱式硫酸镁晶须的研究
2.
Preparation of magnesium oxide whisker from basic magnesium sulfate by sintering method;
碱式硫酸镁烧结法制备氧化镁晶须
3.
Antistatic performance of ZnO whisker in polyacrylonitrile(PAN) fiber;
渗入氧化锌晶须的聚丙烯腈纤维的抗静电性
5) whiskers
[英]['wɪskə(r)] [美]['wɪskɚ]
晶须
1.
Preparation procedure and mechanism of micro/nano tungsten oxide whiskers;
微/纳米氧化钨晶须的制备工艺及原理
2.
Preparation of MgO whiskers and investigation on their influence factors;
氧化镁晶须制备及影响因素考查
3.
Phase transformation behavior and growth mechanism of Ti(C,N) whiskers synthesized through carbothermal reduction process;
碳热还原合成Ti(C,N)晶须的相转变行为及生长机理
6) crystal whisker
晶须
1.
Use of crystal whisker material in coatings;
晶须材料在涂料中的应用
2.
The newest study situation of toughening PP by using rubber or elastomer blend,thermoplastic plastics,inorganic rigid particle,nanoparticle and crystal whisker is introduced.
综述近2年增韧PP的最新研究进展,介绍橡胶或弹性体共混增韧、热塑性塑料增韧、无机刚性粒子增韧、纳米粒子增韧及晶须增韧PP的最新研究情况。
补充资料:多晶莫来石晶须(纤维)
分子式:
CAS号:
性质:莫来石相为主晶相的多晶纤维。化学成分为Al2O3 72%~77%,SiO222%~17%,B2O3 3%~5%,P2O51.5%~3.0%。纤维直径2~7μm,纤维长度20~125μm。使用温度1350℃。多采用溶胶-凝胶法制造。主要用作补强填料,也可作为轻质、隔热保温材料使用。
CAS号:
性质:莫来石相为主晶相的多晶纤维。化学成分为Al2O3 72%~77%,SiO222%~17%,B2O3 3%~5%,P2O51.5%~3.0%。纤维直径2~7μm,纤维长度20~125μm。使用温度1350℃。多采用溶胶-凝胶法制造。主要用作补强填料,也可作为轻质、隔热保温材料使用。
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