1)non-evaporable非蒸散型
1.The recent applications and their absorption mechanisms of both evaporable and non-evaporable getter are also discussed.简要阐述了吸气材料的重要性及发展现状,并从获得吸气材料活性表面的两种不同方式,综述了蒸散型吸气剂和非蒸散型吸气剂的吸气理论和应用研究情况,并着重介绍了新型钛基非蒸散型吸气剂的发展现状和应用前景。
英文短句/例句
1.Application of non-evaporation getter to ion minipump非蒸散型吸气剂在微型离子泵中的应用
2.Test method for gettering properties of non-evaporable getterGB/T9506.8-1988非蒸散型吸气剂吸气性能测试方法
3.Barium flash gettersGB/T9505-1998蒸散型钡吸气剂
4.A Comparative Study on Estimation Models for Field Evapotranspiration几种蒸散模型在玉米农田蒸散量计算中的应用比较
5.Estimation of Regional Evapotranspiration Using Advanced SEBAL Model;基于改进的SEBAL模型估算区域蒸散发
6.Study on evapotranspiration of three cold-season turfgrasses by using SPAC3种冷季型草坪草蒸散量的SPAC法研究
7.Remote sensing model of component evapotranspiration in wetland using MODIS dataMODIS数据湿地组分蒸散遥感模型(英文)
8.Evapotranspiration in the Huangfuchuan Watershed of Ordos Plateau, China, Estimated by a Scaling Model黄土丘陵沟壑区植物蒸腾和植被蒸散估算尺度转换模型研究
9.nondispersive ultraviolet analyzer非扩散型紫外线分析仪
10.Test method for gettering properties of barium flash getterGB/T9506.7-1988蒸散型钡吸气剂吸气性能测试方法
11.Test method for barium content in getter fill and getter film of barium flash getterGB/T9506.3-1988蒸散型钡吸气剂载料和模中钡量的测定
12.Test method for barium yield of barium flash getterGB/T9506.2-1988蒸散型钡吸气剂得钡量测试方法
13.A Study on Regional Evaportranspiration Model Based on Remote Sensing Method and Its Application in the West Jilin Province;吉林省西部区域遥感蒸散模型研究及其应用
14.Study of Canopy Photosynthesis and Evapotranspiration Coupled Model in the Agroecosystem;农田生态系统冠层光合与蒸散耦合模型研究
15.Studies on Water Consumption Model of Main Tree Species of Afforestation in Loess Plateau;黄土高原主要造林树种苗木蒸散耗水模型
16.The Study of Evapotranspiration of Community and Populations During Succession;典型草原演替中主要植物种群蒸散量的研究
17.Study on Evapotranspiration of Vegetation in Water-Wind Erosion Crisscross Region on the Loess Plateau;水蚀风蚀交错带典型植被蒸散特征研究
18.Estimation models of aspen shelter belt evapotrans piration in Tarim River Basin;塔里木河流域白杨农田防护林蒸散量估算模型
相关短句/例句
NEG非蒸散型吸气剂
1.3×10-7Pa dynamic-pressure vacuum environment,the whole vacuum system comprises many sets of titanium sublimation pumps(TSPs)and non-evaporable getters(NEGs).3×10-7Pa,要获得这样的超高真空环境,真空系统配置了多台钛升华泵(TSP)和非蒸散型吸气剂(NEG)组件,针对这两种设备的工作参数,研制了一种带有计算机通信接口的复合电源,并在LabVIEW环境下开发了一套相应的控制软件,实现了对TSP和NEG的本地和远程控制。
2.A novel type of miniaturized compound sputtering-ion-pump(SIP) has been successfully developed and manufactured,in which the non-evaporation getter(NEG),wrapped up with stainless steel mesh,is installed in the narrow space between the iner wall of the pump cavity and the electrodes.本文介绍了一种非蒸散型吸气剂(NEG)与微型溅射离子泵(SIP)集成构成的微型复合溅射离子泵。
3.A miniature combination ion pump with non-evaporable getter(NEG) was developed in order to ensure the extreme high reliability and long service life for the closed ultra-high vacuum devices of small size.为确保小尺寸超高真空密封器件的高可靠和长寿命,开发了一种带非蒸散型吸气剂的微型复合离子泵(Mini-Combination Ion Pumps with NEG)。
3)non evaporable getters非蒸散型吸气
4)New nonevaporable getter新型非蒸散消气剂
5)Non-evaporable getter pump非蒸散型吸气剂泵
6)non evaporative heat dissipation非蒸发散热
1.Objective To study the effect of simulated weightlessness on non evaporative heat dissipation from different parts of the human body.目的研究模拟失重时人体体温调节系统的改变对人体非蒸发散热的影响。
延伸阅读
锆石墨吸气剂分子式:CAS号:性质:一种非蒸散型室温吸气材料。为多孔烧结体,孔隙度40%~50%,比表面积0.4~0.45m2/g。具有活性高、扩散活化能低、室温吸气性好等优点。激活后室温就能快速有效地吸收氧、氮、氢、一氧化碳、二氧化碳、甲烷、水蒸气等。其中吸氢可逆,通常500℃下吸入,500℃以上放出洁净氢。不吸收氦、氖、氩等惰性气体。吸气剂可多次反复激活再生,使用寿命长。由高纯锆粉和石墨粉经高温高真空烧结制成。用于制造行波管、触发管、铯束管、激光管、X光管、真空开关管等多种电真空管件和器件。
