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1)  B-site long-range order
B位长程有序
1.
Complex perovskites with general formula A(B′1/3B″2/3)O3 and A(B′1/2B″1/2)O3 have been investigated to analyse the structure of B-site long-range order(LOR) and the effect of ordered structure on microwave dielectric loss.
以A(B′1/3B2″/3)O3和A(B1′/2B1″/2)O3型复杂钙钛矿材料为对象,介绍了B位长程有序结构,分析了有序结构对微波介电损耗的影响。
2)  long-range order
长程有序
1.
8at% Ni at room temperature is composed of columnar B2 and granular metastable phase;the metastable phase is a disordered Al made up of Ti and Ni atoms;there is a vacancy short-range order in RS TiNi ribbon and a vacancy long-range order in RS TiNi ribbon followed by aging.
快速凝固后室温下合金的组织由柱状B2相和粒状亚稳相构成;亚稳相是由Ti、Ni两元素原子构成的无序面心立方结构;快速凝固后合金中的空位呈短程有序分布,而在450℃5min时效后呈长程有序分布,在电子衍射图上形成1/2100和1/4210额外斑点。
3)  long range order
长程有序
1.
Experimental results show that short range atomic disordering takes place during ageing in the martensite state whereas the long range order degree remians almost unchanged.
实验结果表明,淬火态CuAlNiMnTi合金在马氏体态时效过程中发生马氏体稳定化现象;在这一过程中DO3长程有序度无明显变化,但发生了原子短程无序。
2.
During parent phase aging, DO_3 atomic reordering occurs, leading to an increase in the degree of long range order.
在马氏体状态时效,DO_3长程有序度无显著变化,没发生类似在母相态的再有序化,主要是原子短程无序化。
3.
The influence of Ni-Al ordering energy from the first to the fourth layer on the atom long range order progress in Ni75Al13Cr12 alloy was investigated by microscopic phase field model.
通过微观相场方法研究了Ni75Al13Cr12合金Ni-Al第一到四层有序能对原子长程有序进程的影响。
4)  length range order parameter
长程有序度
1.
Mosaic fragmentation and length range order parameters in FeAl intermetallic compound of type B_2 in the process of ball grinding mills;
球磨中B_2型FeAl的嵌镶碎化和长程有序度
5)  long-distance ordered nature
长程有序性
6)  LRO
长程有序参数
1.
The long range order parameter(LRO) was used to evaluate the degree of ordering of the ordered phase.
25)混合粉末的机械球磨过程,分析球磨1h和5h的粉末在860°C条件下退火4h的物相组成,并采用长程有序参数定量表征了退火得到的有序相的有序程度。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

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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