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1)  high volume fraction
高体积分数
1.
Preparation of high volume fraction SiC_p/Al composites by vacuum-adjustable pressure infiltration process;
真空变压力浸渗法制备高体积分数SiC_p/Al复合材料
2.
Study on Preparation and Impact Property of High Volume Fraction SiC_p/Al Composites;
高体积分数SiC_P/Al复合材料的制备及其冲击特性研究
3.
The high volume fraction SiCp/Mg composites were fabricated by vacuum pressure infiltration process.
进行了真空压力浸渗法制备高体积分数SiCp/Mg复合材料的工艺实验。
2)  elevated O3 concentration
O3体积分数升高
3)  hyperoxia [,haipə(:)'rɔksiə]
高体积分数氧
1.
Objective To explore the apoptosis of alveolar epithelial cell(AEC)and the dynamic changes of Caspase-3 mRNA and Bax and Bcl-2 expression in premature rat with hyperoxia-induced chronic lung disease(CLD).
目的探讨高体积分数氧致慢性肺疾病(CLD)早产鼠肺泡上皮细胞(AEC)凋亡的动态变化规律及Caspase-3 mRNA、Bax和Bcl-2基因的调控作用。
2.
Objective To explore the effect of oxidative stress in pathogenesis of normobaric hyperoxia-induced brain injury in newborn rats.
目的探讨氧化应激在7日龄新生大鼠高体积分数氧(高氧)性脑损伤发生中的作用。
3.
Objective To observe the expression of thioredoxin-2(Trx-2) and cytochrome C(Cytc) in human adenocarcinoma of lung A549 cells from human alveolar epithelial cell Ⅱ exposed to hyperoxia,and explore the roles of Trx-2 and Cytc level changes in hy-peroxic lung injury.
目的观察高体积分数氧(高氧)暴露后人肺泡Ⅱ型上皮细胞来源的肺腺癌A549细胞中硫氧还蛋白-2(Trx-2)和细胞色素C(Cytc)的动态表达,探讨Trx-2和Cytc表达变化在高氧肺损伤中的作用。
4)  elevated atmospheric CO_2
CO_2体积分数升高
1.
Effect of elevated atmospheric CO_2 on nitrogen uptake by plant;
大气CO_2体积分数升高对植物N素吸收的影响
5)  Elevated atmospheric CO2
CO2体积分数升高
1.
Elevated atmospheric CO2 increases plant photosynthesis and biomass.
大气CO2体积分数升高,提高了植物的光合速率,促进了生物量的累积,,改变了植物的碳结构。
6)  volume fraction
体积分数
1.
Effect of NO_2 combination at atmospheric pressure on measurement of its volume fraction by ultraviolet absorption;
常压N_2O_4合成对基于紫外吸收的NO_2体积分数测量的影响
2.
Quantitative solution of volume fraction of interface in cementitious composites;
水泥基复合材料界面过渡区体积分数的定量计算
3.
Research status of the volume fraction and the material properties of functionally gradient materials;
梯度功能材料的体积分数和物性系数的研究状况
补充资料:临界纤维体积分数
分子式:
CAS号:

性质:能使纤维增强复合材料的抗张强度比纯聚合物基体的抗张强度有所增加时,所需加入纤维的最小体积分数。

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