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1)  absorption energy
吸收能
1.
The accurate prediction the absorption energy is one of the important topics in computational chemistry.
分子吸收能可以表征分子的内在结构信息和电子性质,是分子的一个重要物理属性。
2)  absorbency [英][əb'sɔ:bənsi]  [美][əb'sɔrbənsɪ]
吸收能力
1.
Comparison of three yeast strains' selenium resistance and absorbency;
三株酵母菌株对硒抗性和吸收能力的比较
2.
Study on effect of plant absorbency and tolerance for VA mycorrhizal;
VA菌根真菌对植物吸收能力及抗逆性的影响研究进展
3.
Resistance to and absorbency of gaseous NO_2 for 38 young landscaping plants in Zhejiang Province;
浙江省38种园林绿化植物苗木对二氧化氮气体的抗性及吸收能
3)  energy absorption
能量吸收
1.
Design method for roll-over protective structure of engineering vehicle based on energy absorption;
基于能量吸收控制的工程车辆倾翻保护结构设计方法
2.
The application of the technology of energy absorption analysis to oil and gas prediction;
能量吸收分析技术在油气预测中的应用
3.
Compressive stress-strain behavior and energy absorption capability of porous aluminum alloy;
多孔铝合金的压缩应力-应变特征及能量吸收性能
4)  energy dissipation
能量吸收
1.
Axial crushing energy dissipation behavior of compound tubes (metal tube winded by glass/epoxy) is simulated and investigated.
研究了外部缠有增强环氧玻璃纤维的金属圆柱管(简称为复合管)在轴向撞击载荷下的能量吸收特性,并从金属材料的性能、复合材料层的厚度和纤维的铺设角度这几个方面研究了复合管的吸能性能的影响因素,数值模拟结果与实验结果吻合,为复合材料吸能元件的设计和研究提供了有价值的参考。
2.
Axial crushing energy dissipation behavior of glass/epoxy round tubes is investigated both dynamically and quasi statically.
研究了玻璃纤维增强环氧圆柱管轴向撞击和准静态压缩下的能量吸收特性。
3.
Energy dissipation mechanism are studied for different tube models, .
结合复合材料的破坏理论研究了金属管、复合材料管(玻璃/环氧)、复合管(缠有玻璃增强环氧的金属圆柱管)在轴向撞击载荷下的能量吸收特性。
5)  absorbency [英][əb'sɔ:bənsi]  [美][əb'sɔrbənsɪ]
吸收性能
1.
Study on Na Absorbency in Different Sugarbeet Varieties;
不同甜菜品种钠素吸收性能的初步研究
2.
Study on the Absorbency of Some Mineral Element in Different Sugarbeet Cultivars;
不同甜菜品种对某些矿质元素吸收性能的研究
3.
P(AA-AM) was synthesized by means of inverse suspension polymerization,which were characterized by FT-IR,DSC,TGA and absorbency measurement.
研究了聚合过程中的反应条件,如交联度、中和度、温度、单体配比等对吸收性能的影响。
6)  energy-absorption
能量吸收
1.
Foam metal are a new kind of engineering material, such lightweight material not merely have the nature of metal, but also possesses many new characteristic, such as energy-absorption, sound insulation, heat insulation, etc.
本文主要是对多孔材料在压缩过程中的变形机制以及能量吸收性进行有限元模拟研究。
补充资料:单能X线吸收法


单能X线吸收法


  是以X线作放射源,穿过骨组织后,未被吸收的低能光子,经探测仪吸收,电脑以数字显示骨量。适于前臂测定。
  
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