仪器网(yiqi.com)欢迎您!

| 注册2 登录
网站首页-资讯-专题- 微头条-话题-产品- 品牌库-搜索-供应商- 展会-招标-采购- 社区-知识-技术-资料库-方案-产品库- 视频

应用方案

仪器网/ 应用方案/ 雾化形成在静电旋转钟镀膜中的应用

立即扫码咨询

联系方式:400-822-6768

联系我们时请说明在仪器网(www.yiqi.com)上看到的!

扫    码    分   享
Electrostatic, rotating bell (ESRB) application is one of the most important coating application techniques for industries with demanding specifications for optical attractiveness of coatings, such as automotive. The ESRB process involves production of droplets using a high-speed rotating bell, which are subsequently transported to the substrate being coated via shaping air [1-3]. An electrical potential is applied between the bell and the substrate which further helps droplet atomization and transport. This research investigates the effects of inertia, centrifugal force, drag force, and electrostatic force on the atomization mechanism and particle size distribution using an automotive OEM base coat formulation. Coating flow rate (CFR), shaping air flow rate (SAFR), bell speed (BS), and electrostatic potential (EP) were used as primary parameters to create various atomization conditions and particle size distributions. The atomization mechanism, ligament formation, and particle size distribution were measured using high-speed laser shadowography and image processing. The effects of governing forces and particle size generated on efficiency of droplet transfer to the substrate and optical appearance of the coatings were studied to generate operating windows for optimum process efficiency and appearance. 阴影法激光粒径分析仪

参与评论

全部评论(0条)

推荐方案

在线留言

上传文档或图片,大小不超过10M
换一张?
取消