1) energy absorption efficiency
能量吸收效率
1.
The energy absorption capacity decreased regularly along with the increase of porosity and the energy absorption efficiency became insensitive to pore size(D) and porosity(P.
结果表明:固溶时效热处理可以有效提高ZL111基多孔铝合金的表观杨氏模量、屈服强度和压缩吸能能力;固溶时效热处理使压缩吸能能力随着孔隙率的增大而呈现规律性减小,并使能量吸收效率对孔隙率和孔径的敏感程度减小。
2.
45 were studied, and the corresponding deformation behaviors, energy absorption capacity and energy absorption efficiency were discussed.
45在单向压缩条件下的应力-应变(σ-ε)曲线,分析了它们的变形行为,并讨论了其能量吸收和能量吸收效率结果表明:泡沫纯铝与泡沫 Al合金的σ—ε曲线均由弹性变形段、平缓段和紧实段组成;在压缩过程中,泡沫纯铝的骨架变形以弯曲为主,泡沫 AlSi7Mg0。
3.
Through the equation for the flow of the plasm,we analyze its forms of energy absorption from ignition to steady working;from the perspective of inputting and absorbing microwave power,we investigate the possible approaches to enhancing energy absorption efficiency.
对水工质微波等离子推力器,用微波击穿气体放电产生等离子体的条件,通过数值计算预估了其点火的可行性;通过等离子体流动方程分析了其从点火到稳定工作的能量吸收形式;从输入和吸收微波功率的角度,分析了提高能量吸收效率可能的途径。
2) absorbed energy rate
能量吸收率
1.
Then the basic science problem connected with materials ballistic performance closely such as dynamic strength,absorbed energy rate,adiabatic shear deformation localization and dynamic hardness are discussed primarily.
介绍了高应变率载荷条件下镁合金的吸能特性及变形特征;论述了对镁合金抗弹性能有重要影响的动态强度、高应变率能量吸收率、高应变率变形断裂特征和动态强度等科学问题;就镁合金在装甲领域的应用研究做了初步探讨。
3) energe absorption rate
能量吸收速率
4) Radiation Energy Flux
辐射能量吸收率
5) absorption efficiency
吸收效率
1.
Metabolism and absorption efficiency of "Chines red" abalone Haliotis discus hannai at various temperatures with reference to the family strains;
不同温度下皱纹盘鲍“中国红”与各家系代谢和吸收效率的比较
2.
Research on effects of the DCF core diameter and offset on absorption efficiency;
双包层光纤芯径与位置影响吸收效率的研究
3.
Calculating the absorption efficiency of double-clad fiber based on the theory of boundary reflection;
用边界反射原理计算双包层光纤的吸收效率
6) uptake efficiency
吸收效率
1.
Responses of rice genotypes with different silicon uptake efficiency to different silicon supply
不同硅吸收效率水稻品种根系对硅素水平的响应
2.
The results showed that under low-P condition, P-uptake efficiency was the main contributor to P tolerance of the inbred lines at the seedling and maturity stages, while the P tolerance at jointing stage was determined by both uptake and use efficiencies.
结果表明:低磷条件下,磷吸收效率是玉米苗期和籽粒成熟期耐低磷特性差异的主要来源,而拔节期耐低磷特性则由磷吸收效率和利用效率共同决定。
3.
Results showed that there were significant genotypic differences in shoot height,tillers,dry weigh,P uptake efficiency,P utilization efficiency and rice grain yield under low P supply.
结果表明,低磷胁迫明显影响水稻的生长,分蘖期的株高、分蘖数、干物质量、磷吸收效率、单株产量分别低于正常供磷处理5。
补充资料:能量效率
分子式:
CAS号:
性质:在规定条件下,蓄电池放电期间给出的能量与充电时恢复到完全充电状态所需能量的比值。又称瓦时效率。
CAS号:
性质:在规定条件下,蓄电池放电期间给出的能量与充电时恢复到完全充电状态所需能量的比值。又称瓦时效率。
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