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    • 4. 发明授权
    • Droplet ejecting device
    • 滴液喷射装置
    • US5434608A
    • 1995-07-18
    • US947395
    • 1992-09-21
    • Hiroto SugaharaMasahiko SuzukiYoshikazu TakahashiTakahiro Kanegae
    • Hiroto SugaharaMasahiko SuzukiYoshikazu TakahashiTakahiro Kanegae
    • B41J2/045B41J2/055B41J2/14
    • B41J2/14209B41J2002/14379B41J2002/14387
    • A droplet ejecting device comprises a piezoelectric transducer consisting of first and second piezoelectric transducers polarized in the directions opposite to each other, the first and second piezoelectric transducers bonded to each other and having electrodes disposed at the inner and outer surfaces thereof. A member is fitted to the piezoelectric transducer to define ink chambers, the member having an orifice associated with each ink chamber. An injection controller applies an electric field to the electrode(s) associated with the predetermined ink chamber(s) so as to eject an ink droplet(s) from the ink chamber(s) through the orifice(s) in a given position. As a result, the invention provides a droplet ejecting device where an ink ejecting cycle of the array as a whole is short, the print speed is high, and electrodes can be easily manufactured.
    • 液滴喷射装置包括由彼此相反方向偏振的第一和第二压电换能器组成的压电换能器,第一和第二压电换能器彼此结合并且具有设置在其内表面和外表面的电极。 将一个构件安装到压电换能器以限定墨水室,该构件具有与每个墨水室相关联的孔口。 注射控制器将电场施加到与预定墨室相关联的电极,以便在给定位置通过孔口从墨水室喷射墨滴。 结果,本发明提供了一种液滴喷射装置,其中阵列的喷墨循环整体较短,打印速度高,并且可以容易地制造电极。
    • 5. 发明授权
    • Droplet jet device
    • 液滴喷射装置
    • US5410341A
    • 1995-04-25
    • US848695
    • 1992-03-09
    • Hiroto SugaharaMasahiko SuzukiYoshikazu Takahashi
    • Hiroto SugaharaMasahiko SuzukiYoshikazu Takahashi
    • B41J2/14B41J2/16B41J2/045
    • B41J2/1632B41J2/14209B41J2/1609B41J2/1623B41J2/1626B41J2/1634B41J2/1646B41J2002/14362
    • A droplet jet device for use in an ink jet printer. The device has a bottom ceramics plate into which parallel grooves for storing ink are cut. A covering plate is either fixedly or slidably mounted over the grooved side of the ceramic plate to enclose the grooves. The sidewalls of the grooves have electrodes mounted thereon. One end of each groove is connected to an opening serving as an ink jet and the other end is connected to a ink source. The ink jets may be smaller grooves connecting the grooves to a print face of the bottom ceramics plate or may be ends of smaller grooves in the cover plate, one of the smaller grooves in the cover plate partially overlapping a corresponding groove in the ceramics base plate. When a current is applied to selected electrodes, the associated walls are deformed by a piezoelectric effect to compress the groove and eject an ink droplet from the ink jet.
    • 一种用于喷墨打印机的液滴喷射装置。 该装置具有底部陶瓷板,切割用于储存油墨的平行槽。 盖板可以固定地或可滑动地安装在陶瓷板的槽侧上以封闭凹槽。 槽的侧壁具有安装在其上的电极。 每个凹槽的一端连接到用作喷墨口的开口,另一端连接到墨源。 喷墨喷嘴可以是将凹槽连接到底部陶瓷板的印刷面的较小凹槽,或者可以是盖板中较小凹槽的端部,盖板中的较小凹槽中的一个部分地与陶瓷基板中的相应凹槽重叠 。 当电流施加到所选择的电极时,通过压电效应使相关的壁变形,以压缩凹槽并从喷墨喷射墨滴。
    • 7. 发明授权
    • Droplet ejecting device
    • 滴液喷射装置
    • US5396272A
    • 1995-03-07
    • US918692
    • 1992-07-27
    • Yoshikazu TakahashiMasahiko SuzukiHiroto Sugahara
    • Yoshikazu TakahashiMasahiko SuzukiHiroto Sugahara
    • B41J2/045B41J2/055B41J2/135B41J2/14
    • B41J2/14209
    • In a droplet ejecting device capable of being driven at a low voltage and having a simple structure with low manufacturing costs, the droplet ejecting device has multiple ejectors each for changing a pressure of ink held in an ink passage by the use of a pressure generator so as to eject the ink held in the ink passage through an ejection port. The ejection ports comprise a slit disposed across the multiple ink passages and the slit is formed into a tapered cross section thereby eliminating a required process for manufacturing the same number of tapered ejection ports as that of ink passages in the prior art. Therefore, it is possible to reduce the number of manufacturing processes, manufacturing costs, and a driving voltage.
    • 在能够以低电压驱动并具有制造成本低的简单结构的液滴喷射装置中,液滴喷射装置具有多个喷射器,每个喷射装置用于通过使用压力发生器来改变保持在油墨通道中的油墨的压力, 以便通过喷射口喷射保持在墨水通道中的墨水。 喷射口包括跨越多个油墨通道设置的狭缝,并且狭缝形成为锥形横截面,从而消除了与现有技术中的油墨通道相同数量的锥形排出口的制造所需的处理。 因此,可以减少制造工艺的数量,制造成本和驱动电压。
    • 8. 发明授权
    • Ink droplet jet device
    • 墨滴喷射装置
    • US5363133A
    • 1994-11-08
    • US866450
    • 1992-04-10
    • Hiroto SugaharaMasahiko SuzukiYoshikazu Takahashi
    • Hiroto SugaharaMasahiko SuzukiYoshikazu Takahashi
    • B41J2/045B41J2/055B41J2/14B41J2/16
    • B41J2/1623B41J2/14209B41J2/1609B41J2/1632
    • In the ink droplet jet device of the present invention having a plurality of jet units for jetting an ink in an ink channel from jet nozzles formed on a nozzle plate by changing a volume in the ink channel by using a piezoelectric transducer, two plates are bonded for forming the ink channel. Two piezoelectric ceramic plates having grooves whose widths are larger than widths of the ink channel are provided. Alternatively, one piezoelectric ceramic plate and non-piezoelectric materials can be provided on which the same grooves are formed. When the interval between adjoining ink channels becomes very small to enable an increase in a number of jet nozzles communicating with the ink channels in order to make an image formed by the jetted ink droplet an image of high resolution, the groove processing of the piezoelectric ceramic plate is facilitated because the width of grooves to be ground is very wide in comparison with a conventional device, thereby reducing manufacturing cost.
    • 在本发明的墨滴喷射装置中,具有多个喷射单元,用于通过使用压电换能器改变墨通道中的体积,从形成在喷嘴板上的喷嘴喷射油墨的墨水,将两个板接合 用于形成墨水通道。 设置两个具有宽度大于墨水通道宽度的凹槽的压电陶瓷板。 或者,可以提供一个压电陶瓷板和非压电材料,在其上形成相同的凹槽。 当相邻墨水通道之间的间隔变得非常小以能够增加与墨水通道连通的喷嘴的数量,以便通过喷射墨滴形成的图像成为高分辨率的图像时,压电陶瓷的凹槽处理 由于与传统装置相比,待研磨的槽的宽度非常宽,因此减少了制造成本。
    • 9. 发明授权
    • Liquid jetting head and method for producing the same
    • 液体喷射头及其制造方法
    • US07543918B2
    • 2009-06-09
    • US11513402
    • 2006-08-31
    • Naoki KatayamaHiroto SugaharaYoshikazu Takahashi
    • Naoki KatayamaHiroto SugaharaYoshikazu Takahashi
    • B41J2/045
    • B41J2/14233B41J2002/14266B41J2002/14491B41J2202/11
    • An ink-jet head includes a channel unit in which a plurality of pressure chambers are formed; and a piezoelectric actuator which includes a vibration plate, a piezoelectric layer formed on an upper surface of the vibration plate, and an electroconductive layer formed on an upper surface of the piezoelectric layer. On an upper surface of the piezoelectric actuator, there are formed outer grooves each extended along an area overlapping with the periphery of each of the pressure chambers, and inner grooves each extended along one of the outer grooves at a portion inside of one of the outer grooves. Further, recesses deeper than the thickness of the electroconductive layer is formed in the piezoelectric actuator at portions each located inside of the one of the inner grooves. Accordingly, it is possible to improve a drive efficiency of the piezoelectric actuator.
    • 喷墨头包括其中形成有多个压力室的通道单元; 以及压电致动器,其包括振动板,形成在所述振动板的上表面上的压电层和形成在所述压电层的上表面上的导电层。 在压电致动器的上表面上形成有沿着与每个压力室的周边重叠的区域延伸的外槽,并且内槽在外槽之一的一侧外侧延伸, 凹槽 此外,在位于一个内槽内的部分的压电致动器中形成比导电层厚度更深的凹槽。 因此,可以提高压电致动器的驱动效率。