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首页> 外文期刊>Journal of the Chinese Institute of Engineers >VALVELESS PRESSURE REGULATION WITH A SUBMERGED MICRO-HOLE
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VALVELESS PRESSURE REGULATION WITH A SUBMERGED MICRO-HOLE

机译:浸入式微孔的阀门压力调节

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摘要

This study aims at controlling air pressure fluctuation in a chamber from which liquid is being drained continuously by using a submerged micro-hole. In practical applications, this test chamber is used to simulate the commercial ink cartridge of a thermal bubble inkjet printhead. The chamber air pressure drops owing to liquid being drained from the chamber, and it rises again as bubbles are generated and detached from a submerged micro-hole connecting liquid and the atmosphere. The chamber air pressure fluctuation can be controlled in a designated range that depends on factors such as physical properties of liquid used in the chamber, micro-hole diameter, and liquid drain rate. In this study, both distilled water and 10% wt. isopropanol solution are tested with micro-hole diameter ranging from 60 to 1200 μm. To simulate practical ink injection rates, the liquid drain rate ranges from 0.006 to 0.10 ml/s. For conditions tested in this study, our measured results show that the chamber air pressure variation and detached bubble volume depend mainly on micro-hole diameter and physical properties of liquid, and only slightly on liquid drain rate. Two correlations are proposed to obtain both the detached bubble volume and chamber air pressure fluctuation from physical properties of liquid and micro-hole diameter.
机译:这项研究的目的是通过使用浸没的微孔来控制腔室中的气压波动,从腔室中不断排出液体。在实际应用中,该测试室用于模拟热气泡喷墨打印头的商用墨盒。由于液体从腔室中排出,腔室空气压力下降,并且随着气泡的产生和从连接液体和大气的浸入式微孔中分离出来,其再次上升。腔室气压波动可被控制在指定范围内,该范围取决于诸如腔室中所使用的液体的物理性质,微孔直径和排液速率之类的因素。在这项研究中,蒸馏水和10%wt。异丙醇溶液的微孔直径范围为60至1200μm。为了模拟实际的墨水注入速率,排液速率范围为0.006至0.10 ml / s。对于本研究中测试的条件,我们的测量结果表明,腔室气压变化和气泡脱离体积主要取决于微孔直径和液体的物理特性,而仅略微取决于液体的排出速率。提出了两种相关性,以根据液体的物理特性和微孔直径获得气泡体积和腔室气压波动。

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