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Thermal design modifications to improve firing frequency of back shooting inkjet printhead

机译:进行热设计修改,以提高背投式喷墨打印头的发射频率

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This paper presents design modifications of a backshooter type inkjet printhead, DomeJet, to enhance the firing frequency. DomeJet is a thermally driven monolithic inkjet printhead that consists of dome-shaped ink chambers and omega-shaped heaters over the chambers. Since it is monolithic, the manufacturing is very cost effective. As the firing frequency increases, the residual heat accumulated in heater layer may cause unstable droplet ejection. Thus, an efficient heat passage is necessary to increase the firing frequency. Contrary to a roofshooter architecture printhead, a backshooter type printhead has disadvantage in heat release since the heater is confined to a thin film which has low thermal conductivity. In this study, four models are proposed and studied. Compared to the basic model of DomeJet, all the proposed models are found to improve heat dissipation capability. The best performing model is found to operate at a frequency of 40 kHz, a much higher frequency than 15 kHz of the basic model. (C) 2003 Elsevier B.V. All rights reserved.
机译:本文介绍了后冲式喷墨打印头DomeJet的设计改进,以提高触发频率。 DomeJet是一种热驱动的整体式喷墨打印头,它由圆顶形的墨水腔和位于腔上方的欧米茄形加热器组成。由于是整体式的,因此制造非常经济。随着点火频率的增加,加热器层中累积的残留热量可能会导致液滴喷射不稳定。因此,需要有效的热通道来增加点火频率。与屋顶射手架构的打印头相反,反向射手型打印头在散热方面有缺点,因为加热器被限制在导热率低的薄膜上。在这项研究中,提出并研究了四个模型。与DomeJet的基本模型相比,发现所有提议的模型都可以提高散热能力。发现性能最佳的模型以40 kHz的频率运行,该频率比基本模型的15 kHz高得多。 (C)2003 Elsevier B.V.保留所有权利。

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