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Human Exposure Design Considerations For Machine Directed Microwave Dryers For Drying Ink On Paper Webs For The Inkjet Printing Industry

机译:用于机器指导微波干燥机的人体曝光设计考虑因素用于喷墨印刷工业的纸卷筒纸上的墨水

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The use of microwave energy at 2.45GHz for dielectric heating purposes is well known, and is the technology used within microwave ovens that are found in millions of homes. In addition, the use of microwave energy for industrial drying applications, such as drying wood and drying slices of potatoes for producing potato chips, for example, has been demonstrated [1]-[2]. However, it is also of interest to consider the use of microwave energy for drying other kinds of loads, such as inks on moving paper webs which are encountered within the inkjet printing industry. This paper addresses human exposure design considerations for a microwave dryer that is designed for drying ink on a fast moving paper web. The microwave dryer is comprised of several WR340 waveguides that are placed side-by-side, such that the broad sides of each waveguide are shared by adjacent waveguides. Slots must be supported by each waveguide to enable the paper web to pass through the dryer, and to support the drying process, while not causing the propagating E-field inside the dryer to collapse. Due to the potential fluttering of the propagating paper web within the dryer, the heights of the input and output slots that enable the paper to enter and exit the dryer cannot be arbitrarily small, while the need for ambient air to flow into the dryer also places constraints on the geometrical sizes of other apertures. Two-dimensional FDTD simulations of the dryer are used to estimate the performance of the microwave dryer from a human exposure perspective that leads to some novel structures of RF chokes that can be used to meet a 5mW/cm2emissions limit for controlled exposure, 5cm from the equipment, while also contributing to the drying process. These chokes are based upon the use of carbon materials. The proposed RF chokes can produce attenuation levels between 8.1dB and 45.8dB, depending upon their construction.
机译:用于介电加热目的的微波能量为2.45GHz的使用是众所周知的,并且是在数百万家庭中发现的微波炉内使用的技术。此外,例如,已经证明,使用用于工业干燥应用的微波能量,例如干燥木材和干燥切片用于生产薯片的土豆片,[1] - [2]。然而,考虑使用微波能量来干燥其他种类的载荷,例如在喷墨印刷工业内遇到的移动纸幅上的墨水的使用也是如此兴趣。本文解决了用于微波干燥机的人机曝光设计考虑,用于在快速移动的纸网上干燥墨水。微波干燥器由几个WR340波导构成,该波导并排放置,使得每个波导的宽侧由相邻的波导共用。每个波导必须支撑槽,以使纸网能够穿过干燥器,并支撑干燥过程,同时不会导致烘干机内部的传播电场崩溃。由于在干燥器内的繁殖纸网的电位飘动,输入和输出槽的高度使纸张进入和离开干燥器不能任意较小,而需要环境空气流入干燥器的地方对其他孔的几何尺寸的约束。干燥器的二维FDTD模拟用于估计微波干燥器的性能从人体曝光透视透视,从而导致可用于满足5MW / cm的RF扼流圈的一些新颖结构 2 受控曝光的排放限制,距离设备5厘米,同时也有助于干燥过程。这些扼流圈基于碳材料的使用。提出的RF扼流圈可以产生8.1dB和45.8dB之间的衰减水平,具体取决于其结构。

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