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1)  distortion of liquid crystal
液晶形变
2)  graphic LCD
图形液晶
1.
FM12864 intelligent graphic LCD control module and application;
FM12864智能图形液晶控制模块及其应用
2.
We have used many kinds of LCD in product development,they are segment LCD,character LCD and graphic LCD.
我们在产品开发中使用过多种液晶显示器,主要有段式液晶显示器、字符型液晶显示器和图形液晶显示器3种。
3)  bent-core liquid crystal
弓形液晶
1.
Since NioriT et al have firstly reported the synthesis of bent-core liquid crystals and found their special electro-optic property(ferroelectric and antiferroelectric switching),their potential applications attracted a lots researchers and arosed a heat wave of bent-core liquid crystal in the international liquid crystal field.
自1996年NioriT等人首次报道弓形液晶分子的合成并发现非手性的弓形液晶分子具有特殊的电光性能(铁电性、反铁电性),其潜在的应用价值引起人们的广泛关注,在国际液晶界兴起了一股弓形液晶分子热。
4)  Liquid crystal phase transition
液晶相变
5)  stressed liquid crystal
应变液晶
1.
The recently discovered stressed liquid crystals (SLC) from polymer dispersed liquid crystal(PDLC) and polymer network liquid crystal (PNLC) arose great interest of oversea researchers .
近年来在聚合物分散液晶与聚合物网络液晶研究中发现的应变液晶(stressed liquid crystal,SLC)引起国外研究者的极大兴趣。
6)  Deformation Twin
形变孪晶
1.
The results show that, most annealing twin microstruc- ture distribute in austenite matrix of annealed sample, and the deformation twin formed during tensile strain make the sample attain high strength and high plasticity.
结果表明,轧制后退火处理钢板的室温组织为奥氏体基体中存在大量的退火孪晶,在拉伸变形中形成的形变孪晶使产品获得了高强度、高塑性。
2.
Microstructure characteristics of adiabatic shear deformation and deformation twins on both sides of QBe2 and T2 were investigated by means of optical microscope and SEM electronic backscatter diffraction techniques.
结果表明:由于T2和QBe2在物理性能、力学性能和热学性能上的差异,在爆炸载荷条件下只在QBe2中产生绝热剪切带,并且绝热剪切带内分布有十分细小的等轴晶;带内晶粒取向基本相同,带与带之间基体中的晶粒取向也基本相同,且两者还存在较大的取向差;爆炸冲击加载后,QBe2和T2两侧均产生了形变孪晶。
3.
A new type of intersection mechanism of deformation twins with α2 plates in γ TiAl based alloy deformed at room temperature was 利用透射电镜在室温变形的γ-TiAl基合金中研究了一种新的形变孪晶与α2片的交截机制。
补充资料:热致液晶聚合物向列液晶态


热致液晶聚合物向列液晶态


执戮液晶饭合物向列攻晶态 成郎有f几硅研究听供稿
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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