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1)  wet pick
润湿粘附性能
2)  adhesive wetting
粘附润湿
3)  wettability [英][,wetə'biliti]  [美][,wɛtə'bɪlətɪ]
润湿性能
1.
Interface reaction and wettability of the Sn-Zn based lead-free solder alloys;
Sn-Zn基无铅焊接材料的界面反应和润湿性能
2.
Improving the wettability of PET nonwoven fabrics by plasma treatment;
低温等离子体处理改善PET非织造布润湿性能
3.
Design and Fabrication of Bionic Periodic Microstructured Surfaces and Study on Their Wettability;
仿生周期微结构表面设计制备及其润湿性能研究
4)  wetting property
润湿性能
5)  Adhesion Property
粘附性能
1.
Influence of Solvent on Polyacrylate Size Mixture Adhesion Property;
溶剂对溶聚型聚丙烯酸酯浆料粘附性能的影响
2.
The feasibility of using the indentation test method to evaluate the adhesion property of chemical vapor deposited diamond film was investigated initially on the basis of observations and analyses of the crackillg or delamination ways of diamond films under indentation.
在观察与分析压入过程中CVD金刚石膜开裂方式的基础上,初步探讨了用压痕试验法评定CVD金刚石膜粘附性能的可行性。
3.
Micropipette aspiring system was selected to test the adhesion property of Wistar rat osteoblasts on polylactide (PLA) and maleic anhydride modified polylactide (MPLA) made in our laboratory.
采用微管吸吮装置对大鼠成骨细胞 ,在聚乳酸和马来酸酐改性聚乳酸材料表面的粘附性能进行了研究 。
6)  Adhesion [英][əd'hi:ʒn]  [美][əd'hiʒən]
粘附性能
1.
The formation of residual stress and its influence on the adhesion of diamond film deposited were discussed.
近年来CVD金刚石涂层硬质合金刀片的制备与工业化应用已取得重大进展,对金刚石薄膜的沉积质量、应力状态、粘附性能进行无损表征具有显著的实用价值。
2.
When alkyl carboxylic acids sizing auxiliary were used, the effects of starch on the behaviors of the films, adhesion to fibers , behaviors of sized yarns and the alkyl carbochain of the auxiliary tolerance to hard water were investigated.
本论文探讨了,采用添加烷基羧酸助剂的方式提高淀粉浆料的使用性能,研究了淀粉浆料的粘附性能、浆膜性能、浆纱性能以及烷基羧酸助剂的耐硬水性能。
3.
The paper investigated the influence of modification extent of the amphoteric starch on paste abilities,film behaviors, adhesions to fibers and anti-flocculation with anioni.
为了改善单一醚化变性淀粉浆料上浆性能的缺陷和不足,扩大淀粉浆料的应用范围,本文通过改变3-氯-2-羟丙基三甲铵和一氯乙酸对淀粉的投料比,制备了一系列具有不同取代度的季铵型羧甲基两性醚化淀粉,研究了醚化变性程度对该种淀粉的浆液性能、浆膜性能和粘附性能的影响,评估了该种淀粉对阴离子浆料组分的抗絮凝性,并探讨了这种变性淀粉与PVA共混物对浆膜性能和对涤/棉纤维的粘附性能的影响。
补充资料:润湿周边
分子式:
CAS号:

性质:计算水力半径rh或当量直径De的物理量:De=4rh=4×流通面积/润湿周边。以套管为例,在计算环隙内流内摩擦阻力时所用的润湿周边为πD1+πD2;D1为内管外径,D2为外管内径,应指出,在计算传热问题时,常以传热周边代替润湿周边。

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