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Effects of spraying parameters on the paint transfer efficiency in air spray

机译:喷涂参数对空气喷涂中涂料转移效率的影响

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Automation is widely used for automotive paint application because of the repeatability of the resulting surface finish, as well as the benefit of removing humans from a hazardous environment. So the improvement of automobile coatings is significant. One compelling aspect of improvement is the paint transfer efficiency(TE), which is defined as the amount of paint that remains on a surface relative to the amount supplied to the paint applicator during coating operations. The effects of spray parameters namely shaping air pressure, atomizing air pressure, paint flow rate, spraying distance and spray velocity on paint transfer efficiency. A orthogonal experiment is designed to analysis the effects of spraying parameters on paint transfer efficiency. After the acquisition and analysis of all experiments, the relationship between spraying parameters and paint transfer efficiency is performed. Through variance analysis and regression analysis of experiment data, a conclusion following had been drawn: shaping air pressure has the strongest influence on TE, shaping air pressure and spray distance are inversely proportional to TE, atomizing air pressure is proportional to TE, paint flow rate and spray velocity nearly have no influence on TE.
机译:自动化由于其最终表面光洁度的可重复性以及将人从危险环境中带走的好处而广泛用于汽车漆应用。因此,汽车涂料的改进意义重大。改进的一个令人信服的方面是涂料转移效率(TE),它定义为相对于涂料操作过程中提供给涂料施加器的量,残留在表面上的涂料量。喷涂参数,如成型气压,雾化气压,涂料流量,喷涂距离和喷涂速度对涂料转移效率的影响。设计了正交试验来分析喷涂参数对涂料转移效率的影响。在获得并分析所有实验之后,进行喷涂参数与涂料转移效率之间的关系。通过对实验数据进行方差分析和回归分析,得出以下结论:成型空气压力对TE影响最大,成型空气压力和喷涂距离与TE成反比,雾化空气压力与TE和涂料流量成正比喷涂速度对TE几乎没有影响。

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