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Investigation to minimize heater burnout in thermal thin film print heads

机译:进行研究以最大程度地减少热敏薄膜打印头中的加热器烧毁

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摘要

A test system to improve the reliability of a printhead was developed and various printheads was tested. We developed a thermally driven monolithic inkjet printhead comprising dome-shaped ink chambers, thin film nozzle guides and omega-shaped heaters integrated on the top surface of each chamber. In a durability test of an inkjet printhead, the test system automatically detects a heater failure using a Wheatstone bridge circuit. Various models were designed and tested to develop a more reliable printhead. Three design parameters of the thickness of heat-transmission layer, reinforcement layer, and insulation layer were investigated in the test. Specially, the reinforcement layer was introduced to improve the lifetime of printhead. The thicker the heat-transmission layer as well as the insulation layer, the longer the life of the printhead. The lifetime of a heater with a reinforcement layer was longer than the lifetime of a heater without a reinforcement layer.
机译:开发了一种提高打印头可靠性的测试系统,并测试了各种打印头。我们开发了一种热驱动的整体式喷墨打印头,包括集成在每个腔室顶面上的圆顶形墨腔,薄膜喷嘴导板和Ω型加热器。在喷墨打印头的耐久性测试中,测试系统使用惠斯通电桥电路自动检测加热器故障。设计并测试了各种型号,以开发出更可靠的打印头。试验中研究了导热层,增强层和保温层厚度的三个设计参数。特别地,引入了增强层以提高打印头的使用寿命。导热层和绝缘层越厚,打印头的寿命越长。具有增强层的加热器的寿命比没有增强层的加热器的寿命长。

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