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1)  over dyeing
过度染色
2)  hypochromasia
染色过浅
3)  color fastness
染色牢度
1.
Influence of diffusibility of disperse dyes on color fastness;
分散染料扩散性能对染色牢度的影响
2.
Improving color fastness of the reactive dyeings;
提高棉织物活性染料染色牢度
3.
Improvement of color fastness of Lanaset acid dye by sol-gel method;
溶胶-凝胶法提高兰纳洒脱染色牢度
4)  colour fastness
染色牢度
1.
Studies on Improvement of Colour Fastness of the Deep Colour Worsted Fabrics;
提高毛精纺呢绒深色染色牢度的工艺研究
2.
The colour fastness of four kinds of vat dyes are compared based on the laboratory and bulk samplesand the influence of steaming on colour fastness is analyzed.
针对部分深蓝色还原染料染色牢度尤其是氯洗牢度差的问题,通过小样及大车试验对比了蓝FXW、深蓝VB、藏青RA、深蓝BO四种还原染料的染色牢度指标,分析了汽蒸工艺对染色牢度的影响,提出了提高氯洗牢度的措施,并进行了大车生产检验。
3.
After comparing mandatory standard GB18401-2003(Fundamental Safety Technics Specification for National Textile Products) with all textile products' technics standards on colour fastness, it is found out that most of the textile product standards do not fulfill the requirements, therefore highly attention must be paid.
强制性标准GB18401-2003《国家纺织产品基本安全技术规范》已正式实施,该标准中要求染色牢度的考核指标,通过比较发现均比正在实施的纺织产品技术标准所要求的高。
5)  dyeing temperature
染色温度
1.
A automatic computer inspection system for dyeing temperature is developed in this article which is easy and quick to be used.
介绍了一种快捷方便的染色温度的计算机自动监测系统 ,利用该系统可对染色过程中的温度进行在线自动监测 ,可及时发现染色过程中的升温情况是否与标准的染色升温工艺曲线相符 ,以便及时修正或采取相应措施 ,减少次品的产生。
2.
It is difficult to set up a rigorous model in the control system of dyeing temperature in a mathematical way,for there are serious nonlinearity,time variability and long time-lapse,as the result,it is unlikely to get good results using the traditional control method.
染色温度控制系统中存在着严重的非线性、较大的时变性和时滞性 ,难以用数学方法建立精确的数学模型 ,用传统的常规控制很难达到较好的控制效果 ,本文将人工智能中的神经网络控制技术和模糊控制技术结合 ,采用闭环控制方式实现染色缸染色温度控
6)  dye depth
染色深度
1.
In order to study the technology feasibility and the effects of the operating pressure, temperature and dyeing time on the dye uptake and the dye depth K/S, the experimental apparatus were set up and the experiments of dyeing poly(ethylene terephthalate) fibers with disperse blue 60 in supercritical carbon dioxide were con.
为了对该工艺的染色过程、适宜的操作条件及可行性进行研究,在自建的高压染色设备上,利用分散蓝60对涤纶进行超临界流体染色实验,考察上染率及染色深度K/S值随操作压力、温度和染色时间的变化规律,进而确定出最适宜的工艺操作条件为:压力28MPa,温度120cC和染色时间80min。
补充资料:过度染色
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性质: 纤维上的染料在人为的条件下使之超量上染。聚酰胺纤维(锦纶)中有大量酰氨基,在强酸介质下会质子化,导致超量吸附染料阴离子而染色,称为过度染色。这种吸附染色会影响纤维强度与水洗牢度。

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