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1)  humidity controlling film
调湿膜
2)  liquid photoresist for etching and plating process
湿膜
3)  wet-membrane humidification
湿膜加湿
1.
Comparing with the traditional fresh-air handling system,a new method of fresh-air handling in communication rooms is introduced,which applies the combination of advanced technologies including mixed-air,frequency conversion and wet-membrane humidification.
通过和传统的机房新风系统作比较,介绍采用新风混风技术、变频调速技术、湿膜加湿技术等的新型新风处理方式,以及在全年不同时间中的新风运行模式,说明这种新风方式的节能效果。
4)  conditioning [英][kən'dɪʃənɪŋ]  [美][kən'dɪʃənɪŋ]
调湿
1.
Use a conditioning system with tight single-point control.
了解影响温度和湿度的参数可确保试样得到恰当的调湿。
2.
It was suggested that the stability of physical index should be guaranteed by carrying out GB 9102-2003 Appendix B relating to PA6 tire cord conditioning in a drier.
GB 9102-2003标准附录B中推荐的关于干燥器内与标准大气下的调湿平衡测试结果的修正值小于实际偏差。
5)  humidity controlling
调湿
1.
Preparation and characterization of humidity controlling materials based on chitosan
壳聚糖基调湿材料的制备及性能
2.
A humidity controlling material was prepared by graft copolymerization of chitosan with acrylic acid and mineral salt.
在壳聚糖的分子链上接枝丙烯酸后添加无机盐,制得调湿材料。
3.
Based on a brief description of mechanism and variety of humidity controlling materials,Research and progress of humidity controlling materials protecting cultural relic are presented and discussed.
在介绍了调湿材料的调湿原理和种类的基础上,重点阐述了调湿材料在文物保护上的研究和应用进展。
6)  humidity-controlling
调湿
1.
Preparation and characteristics of complex humidity-controlling materials with CMC
羧甲基纤维素钠基复合调湿材料的制备与性能
2.
A study is made of the effect of different acidizing conditions such as concentration,temperature and time on humidity-controlling properties of sepiolites in closed space at constant temperature.
研究了酸化浓度、温度与时间等条件对海泡石在恒温密闭空间内调湿性能的影响。
3.
The composites exhibited possible applications for their humidity-controlling and adsorbent capability as well as excellent latex foam properties.
该复合材料既有吸附和调湿性能,又兼有胶乳海绵的优良特性,是一种具有广泛应用前景的新型功能材料。
补充资料:湿膜
分子式:
CAS号:

性质:又称湿膜。与干膜相对而言。是一系列有一定黏度的浅紫色或绿色油墨状印料。由感光性树脂、活性稀释剂、光敏引发剂、填料和特种添加剂等组成。将上述组分在预混合器中搅拌混合,再经三辊机碾磨制成单组分液状型产品。通过丝网印刷、机械滚涂等方法将印料均匀地涂覆到整个覆铜板上,加热干燥,紫外线曝光,稀碱溶液显影,被紫外光照射的地方固化,没有照射的地方被碱液去除,形成耐腐蚀耐电镀的电路图形。该产品与干膜相比成本低、工艺简单。因曝光工艺采用直接接触,避免了重氮掩膜片与感光层中间聚酯薄膜的光折射,故其精密度较一般干膜更为提高,可制造小于0.05mm的线路,还避免了使用干膜最头痛的残胶问题,更有利生产的自动化。可广泛应用于高精密度而低报废率的印制电路板和半导体电子产品的制造。

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