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1)  Inorganic adhesive coating
无机胶粘涂层
2)  coating by inorganic cementitious bonding
无机胶凝粘结涂层
3)  adhesion coating
胶粘涂层
1.
According to the model of axial symmetry in semi unlimited body, the absorbing moisture stress of adhesion coating under water pressure is studied, which is caused by the difference of absorbing moisture property between filling particulate and adhesion coating basis.
根据半无限体的轴对称模型,对静水压下的胶粘涂层因填充粒子与胶层基体间吸湿性能的差别而引起的吸湿应力进行了研究,以达到饱和吸湿浓度的抗水力磨蚀胶粘涂层为例,对吸湿应力作了数值计算,并进行了结果分
2.
In this paper, the thermal stress between the resinous basis and filled panical in anti-abrasion adhesion coating is analysed, the results show that in the interface the thermal stress reaches the maximum value, and it is possible that too high temperature causes the plasticity of resinous basis and separating between basis and filled particles.
分析了耐磨胶粘涂层基体与填充微粒间的微观热应力。
4)  Adhesive Coatings
胶粘涂层
1.
Study on the Slurry Erosion Wear. Properties of the Adhesive Coatings;
耐磨环氧胶粘涂层的浆体冲蚀磨损特性研究
2.
The wear properties of antiwear adhesive coatings under solid particle erosion and slurry erosion condition were studied in this paper.
本文对气固冲蚀和浆体冲蚀条件下耐磨环氧胶粘涂层的磨损特性进行了研究。
5)  coating adhesive
涂层胶粘剂
1.
Study on preparation of flame-retarding polyacrylate coating adhesive used for reflecting materials
反光材料用阻燃丙烯酸酯类涂层胶粘剂的研制
6)  inorganic coating
无机涂层
1.
Starting from inorganic coating process,a series of tests and studies are carried out on the performance,technology,production processing procedures and quality control points of the coating.
从无机涂层的制作工艺入手,对涂层的性能、技术、生产制作工艺和质量控制要点,进行了一系列的试验和研究,得到了无机涂层用于汽轮机压气机动、静叶表面防腐是完全可行的结论。
2.
The wear resistance and anti-erode inorganic coating was made with inorganic binder some aggregates and some stuffing.
本文对无机粘结剂的发展概况及陶瓷涂层的技术现状与发展进行阐述,详细介绍了以自制无机粘结剂为基通过添加一定的骨料与填料制备高温耐磨抗蚀无机涂层在45#钢上制备涂层的研究结果。
3.
The effect of phosphating time,the concentration of Al(OH)3 in the coating sol and the thickness of the coating on the binding force between the inorganic coating and the substrate was analyzed.
实验分析了磷化时间、涂覆溶胶中Al(OH)3浓度以及涂层的厚度等对无机涂层与基体结合力的影响。
补充资料:涂层发粘[制革]
分子式:
分子量:
CAS号:

性质:涂饰良好的革面手感爽滑,若出现粘手感觉,或将革粒面相对重叠,分开时粘滞有声则为涂层发粘。发粘原因是软性树脂用量过大,或涂饰时一层未干又涂一层。

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