1) medium of energy transmitting
传能介质
2) GeO 2 dielectric hollow waveguide
GeO2介质膜空芯传能光纤
3) medium permeation
介质传输
1.
The relationship between the behavior of medium permeation and the addition of the amount of nano-MMT,the weight ratio of epoxy acrylate(EA) and the reactive diluent(RD) synthesized by ourselves,curing degree of the UV-cured coating was discussed.
采用静态浸泡法绘制了漆膜增重-时间曲线,研究了纳米蒙脱土(nano-MMT)填充紫外光固化涂层的吸水性及纳米蒙脱土用量、环氧丙烯酸酯(EA)与合成活性稀释剂(RD)比例、光固化涂层的固化程度与介质传输行为的关系。
2.
The relationship between the behavior of medium permeation with curing degree and immersion temperature was discussed.
采用静态浸泡法绘制了漆膜增重率-时间曲线,考察了紫外光固化环氧丙烯酸酯涂层的吸水性和耐腐蚀能力,分析了涂层固化交联结构及浸泡温度等因素与介质传输行为的关系,结果表明,涂层的交联度越高,抗介质渗透能力越强;浸泡温度越低,抗介质渗透性越好;浸泡温度接近或高于涂层的Tg时,涂层抗介质渗透能力变差。
3.
The relationship between curing degree and behavior of medium permeation was discussed.
在 6 0℃的NaCl溶液中 ,利用交流阻抗技术研究了不同固化度熔融结合环氧粉末涂层 (FBE)的交流阻抗特征 ,分析了涂层固化交联结构与介质传输行为的关系 。
4) pressure medium
传压介质
1.
Actuality and development of complex pressure medium;
复合型传压介质的现状及发展
2.
This paper detailed and analysed the advantages and disadvantages of pyrophyllite, dolomite and NaCl as pressure medium during the synthesis of diamond.
本文详细的分析了在金刚石合成中叶蜡石、白云石、氯化钠作为传压介质的优缺点 ,并通过大量的实验 ,证实了用多种复合传压介质代替单一的叶蜡石做传压介质在金刚石合成中得到了理想的效果 ,不仅降低了锤耗而且提高了金刚石质量。
3.
W-pyrophyllite is used as pressure medium for high temperature and high pressure synthesis of diamond.
本文采用W型叶蜡石作为超高压高温合成金刚石的传压介质,分析了其主要化学成分与矿物相组成。
5) pressure transmission medium
传压介质
1.
Influence of calcination of pressure transmission medium on its performance;
中高温锻烧传压介质对其本身性能影响的研究
2.
An idea of new compound pressure transmission medium was put forward.
通过采用不同传压介质进行人造金刚石合成实验 ,考察各种传压介质对金刚石合成效果的影响并比较它们作为传压介质的优缺点 ,提出新型复合传压介质的构
6) transferring medium
传递介质
1.
The result is useful to determine the limit value of blasting vibration in similar transferring medium.
文章根据沈阳宾馆拆除爆破等工程测得的爆破振动数据,经过对地震波幅值、频率和持续时间的分析,得出了爆破地震波在砂土层中传播的特性规律,对确定在类似传递介质中的爆破振动极限值具有借鉴意义。
补充资料:传声介质
传声介质
物理学术语。又称传声媒质,即能够传递声波的物质。对声波这样的机械波具有弹性的物质,如气体、液体和固体都可用作传声介质。传声介质可分为均匀和不均匀的,各向同性和各向异性的,频散和非频散的等等。声波不能在真空中传播。
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