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1)  thermochromic microcapsule
热致变色微胶囊
1.
Under suitable technical condition,reversible thermochromic microcapsule were prepared with the epoxy resin as wall-film material solidified by imidazole type catalytic curing agent.
以环氧树脂做为壁材,咪唑类催化型固化剂进行固化,在适当的工艺条件下对热致变色材料进行微胶囊包封,制得了密封性能、透明性能、耐热性能以及耐溶剂性能良好的可逆热致变色微胶囊颗粒。
2)  the Reversible Thermochromatic Microcapsule
可逆温致变色微胶囊
1.
Study on Preparation of the Reversible Thermochromatic Microcapsule and Its Application in Anti-counterfaking Paper
可逆温致变色微胶囊的制备及其用于防伪纸抄造的研究
3)  thermochromic
热致变色
1.
The reported thermally light-adjusting polymeric materials are mainly classified into three types, such as thermotropics, thermochromics and hybrids.
现有的各种热致调光聚合物材料主要分为热致散射、热致变色以及双功能3类。
2.
Applied some kinds of carboxylic acid as solvent,a series of malachite green-boric acid reversible thermochromic paints were prepared by solid phase synthesis method.
选用羧酸类溶剂,采用固相法合成了孔雀石绿-硼酸系列可逆热致变色材料。
3.
This paper chose some kinds of carboxylic acid as the solvent and a series of crystal violet-boric acid reversible thermochromic paints were prepared by solid phase synthesis method.
选用羧酸类溶剂,采用固相法合成了结晶紫-硼酸系列可逆热致变色材料。
4)  thermochromism [,θə:mə'krəumizəm]
热致变色
1.
Thermochromism of 3,5-Diacety-1,4-Dihydropyridine;
3,5-二乙酰基-1,4-二氢吡啶热致变色性质的研究
2.
A series of crystal violetboric acid reversible thermochromism paint were prepared by solid phase synthetic method.
采用固相法制备了龙胆紫-硼酸等系列可逆热致变色颜料。
3.
The rules of thermochromism for Ln(Ⅲ)-XO(Ln:Ce.
用分光光度法研究了镧系元素离子Ce(Ⅲ)、Pr(Ⅲ)的二甲酸橙(简称XO)螯合物在水溶液及在N、N──二甲基甲酰胺(简称DMF)影响下热致变色规律,比较了DMF对Ce(Ⅲ)-XO、Pr(Ⅲ)-XO螯合物的溶剂效应。
5)  thermochromic transition
热致色变
1.
This Account describes two works about the polydiacetylene structures, assemblies, thermochromic transition and sensor applications.
发现含偶氮苯基团的聚双炔薄膜具有可逆的热致色变性质和高的热稳定性。
6)  chromatic microcapsule
彩色微胶囊
补充资料:颜料热致变色效应
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性质:系指某些颜料因受热发生物理变化(如脱掉结晶水、晶体结构互变、空间构型互变等)或化学变化(分解、化合、氧化、还原等)导致分子结构、分子形态的变化,从而导致外观上颜色变化的效应。具有这种效应的颜料称为感温颜料。凡温度下降后能恢复颜料原有颜色者,称为可逆热致变色效应;否则便称为不可逆热致变色效应。一般一种感温颜料只能产生一种颜色,称为单热致变色效应;两种或两种以上感温颜料配套应用时,在受热过程中可产生两种以上颜色,称为多热致变色效应。这一效应已广泛用于感温颜料型示温涂料的制造。

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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