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1)  base deweighting rate
碱减量率
1.
The result showed that the con- centration of the penetrant had the greatest influence on the base deweighting rate of the blend fiber,and the subsequent order of these influential facto.
结果表明:渗透剂浓度对共混纤维碱减量率的影响最大,其次分别是NaOH浓度、水解时间、处理温度。
2)  weight reduction velocity
碱减量速率
3)  alkali deweighting
碱减量
1.
Analysis on factors influencing Alkali Deweighting of T/C fabric;
影响涤棉织物碱减量因素分析
2.
The experiments have proved that alkali deweighting pretreatment can significantly improve thebreathability of the fabric but at the same time decrease the breaking strength.
研究了细旦涤纶仿真丝绸的前处理和后整理对织物透气性的影响,实验证明织物经碱减量前处理后透气性提高,但随之断裂强力也下降,在保证一定强力的前提下选择碱减量工艺。
3.
The influences given by process parameters of presetting and alkali deweighting on the fabric strength,elongation and bending rigidity are discussed and analyzed on the basis of experiment.
通过试验分析探讨了预定型和碱减量各工艺因素对于织物的断裂强度、断裂伸长和弯曲刚度等方面的具体影响。
4)  alkali weight reduction
碱减量
1.
The best processing condition of micro porous fiber in acid-processing and alkali weight reduction processing had been studied.
研究了微孔纤维成孔的最佳酸处理工艺条件和微孔纤维碱减量处理工艺。
2.
At the same process conditions they were applied with other quaternary ammonium salt surfactants as catalyst promoters in alkali weight reduction treatment of polyester and weight reduction results were analyzed and compared.
在相同工艺条件下 ,将它们和不同类季铵盐表面活性剂作为碱减量催化促进剂对涤纶进行碱减量处理 ,并分析比较了减量的结果。
5)  base reduction
碱减量
1.
Research on base reduction of fire retardant polyester fiber fabrics;
阻燃聚酯纤维织物的碱减量处理研究
6)  Alkali-minimization
碱减量
1.
Treatment Technology for Industrial Wastewater from Alkali-minimization and Dyeing Printing;
碱减量染整废水的处理技术
2.
In our counrty,printing and dyeing industry are emplying alkali-minimization technics to deal with crude terylene from 80'.
自80年代以来,我国印染行业逐渐开始使用碱减量工艺处理涤纶坯布,这几年,该工艺得到了普遍使用,于是就产生了一股新的废水即碱减量废水。
补充资料:照射量与照射量率
分子式:
CAS号:

性质:照射量是指X或γ射线在质量为dm的一个体积元内,当光子产生的全部电子都被阻留在空气中所形成的一种符号的离子总电荷的绝对值dQ、除以dm,即照射量X=dQ/dm。SI单位为库仑每千克(c/kg)。专用单位为伦琴(R),1R=2.58×10-4C/kg。照射量率定义为单位时间内的照射量。用X表示,X=dX/dt,式中dx为dt时间内照射量的增量。单位为库仑每千克秒[C/(kg·s)]。

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