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    • 32. 发明授权
    • Method of manufacturing a liquid vessel
    • 制造液体容器的方法
    • US07731344B2
    • 2010-06-08
    • US11835375
    • 2007-08-07
    • Takeshi IwamuroHitotoshi Kimura
    • Takeshi IwamuroHitotoshi Kimura
    • B41J2/195B41J29/393B41J2/17B41J2/175B41J2/19
    • B41J2/17566B41J2002/17583Y10T29/49401
    • Disclosed herein is a method of manufacturing a liquid vessel including a liquid containing body having a discharge port for discharging liquid, and a liquid residual amount detection device having a liquid inflow port connected to the discharge port, a liquid lead-out portion for supplying the liquid and a vibration detection portion for applying vibration to a flow path between the liquid inflow port and the liquid lead-out portion and detecting a residual amount of liquid in the liquid containing body, the method including: connecting the liquid inflow port of the liquid residual amount detection device to the discharge port of the liquid containing body in which the liquid has been stored in advance and injecting the liquid from the liquid containing body into the liquid residual amount detection device to obtain a state in which the flow path is charged with the liquid.
    • 本发明公开了一种制造液体容器的方法,该液体容器包括具有用于排出液体的排出口的液体容纳体和具有连接到排出口的液体流入口的液体剩余量检测装置, 液体和振动检测部分,用于向液体流入口和液体引出部分之间的流动路径施加振动并检测液体容纳体中的残留液体,该方法包括:将液体的液体流入口 剩余量检测装置预先存储有液体的液体容纳体的排出口,并将液体从液体容纳体注入液体残留量检测装置,以获得流路被充满的状态 液体。
    • 33. 发明授权
    • Liquid container, component for forming liquid container, and method for producing liquid container
    • 液体容器,用于形成液体容器的部件,以及液体容器的制造方法
    • US07722174B2
    • 2010-05-25
    • US12114388
    • 2008-05-02
    • Hitotoshi KimuraTaku Ishizawa
    • Hitotoshi KimuraTaku Ishizawa
    • B41J2/175
    • B41J2/17553B41J2/17513B41J2/17556B41J2/17559B41J2/17596
    • The present invention provides a liquid container which has a check valve for preventing a flow of outside air into its inside and which is capable of maintaining the performance of the check valve constant. An ink pack (25) includes a bag portion (36), which holds an outlet portion by heat-welding. An internal space (S) is formed in the bag portion (36), and ink is contained therein. The outlet portion has a first flow path forming component (41). A first recess portion (47) is recessed from the one side surface (41a) of the first flow path forming component (41). First and second ink flow paths (46, 51), which communicate with the internal space (S), extend from a bottom surface (47a) of this first recess portion (47). A valve seat (53) is formed in a projecting shape so as to surround the second ink flow path (51). A laminate film (36a) sealingly closes the first recess portion (47). Thus, a valve body accommodating chamber (55) is formed. The valve body accommodating chamber (55) accommodates a first valve body (58). The valve body (58) and the valve seat (53) form a first valve device (59).
    • 本发明提供了一种液体容器,其具有用于防止外部空气流入其内部并且能够保持止回阀的性能恒定的止回阀。 墨水包(25)包括通过热焊保持出口部分的袋部(36)。 在袋部(36)中形成有内部空间(S),并且容纳墨水。 出口部分具有第一流路形成部件(41)。 第一凹部(47)从第一流路形成部件(41)的一个侧面(41a)凹陷。 与内部空间(S)连通的第一和第二墨水流路(46,51)从该第一凹部(47)的底面(47a)延伸。 阀座(53)形成为包围第二墨流路(51)的突出形状。 层压膜(36a)密封地封闭第一凹部(47)。 因此,形成阀体容纳室(55)。 阀体容纳室(55)容纳第一阀体(58)。 阀体(58)和阀座(53)形成第一阀装置(59)。
    • 37. 发明申请
    • LIQUID RESIDUAL AMOUNT DETECTION APPARATUS FOR LIQUID CONTAINER
    • 液体容器液体残留量检测装置
    • US20080198187A1
    • 2008-08-21
    • US11560492
    • 2007-05-15
    • Yuji AokiHitotoshi KimuraJunhua ZhangMinoru Usui
    • Yuji AokiHitotoshi KimuraJunhua ZhangMinoru Usui
    • B41J2/195G01F23/00
    • B41J2/17566
    • A liquid residual amount detection apparatus for a liquid container, includes: a sensor chamber that has a liquid supply port introducing liquid to be delivered from a liquid containing portion, and supplies the liquid to an external liquid consuming apparatus; a diaphragm that defines a part of the sensor chamber and is movable in response to a liquid containing amount in the sensor chamber; a pressure receiving plate that is attached to the diaphragm; a recess portion that is connected to the sensor chamber and is closed by the pressure receiving plate when the liquid containing amount in the sensor chamber becomes a predetermined amount or less; a piezoelectric element that applies vibration to at least a part of the recess portion so as to detect a free vibration state according to the applied vibration; a detection portion that detects an amplitude value or a frequency of a residual vibration waveform of a counter electromotive force by the free vibration state detected by the piezoelectric element; and a calculation portion that calculates a liquid residual amount in the liquid container on the basis of the amplitude value or the frequency of the residual vibration waveform detected by the detection portion.
    • 一种用于液体容器的液体剩余量检测装置,包括:传感器室,其具有从液体容纳部分输送的液体供给口,并将液体供给到外部液体消耗装置; 隔膜,其限定所述传感器室的一部分并且可响应于所述传感器室中的液体容纳量而移动; 压力接收板,附接到隔膜; 凹部,其连接到所述传感器室,并且当所述传感器室中的液体容纳量变为预定量以下时,所述凹部被所述受压板封闭; 压电元件,其对所述凹部的至少一部分施加振动,以根据所施加的振动来检测自由振动状态; 检测部,其通过由所述压电元件检测出的自由振动状态来检测反电动势的残留振动波形的振幅值或频率; 以及计算部,其基于由检测部检测出的残留振动波形的振幅值或频率计算液体容器中的液体残留量。
    • 39. 发明授权
    • Liquid container, component for forming liquid container, and method for producing liquid container
    • 液体容器,用于形成液体容器的部件,以及液体容器的制造方法
    • US07387378B2
    • 2008-06-17
    • US10794616
    • 2004-03-05
    • Hitotoshi KimuraTaku Ishizawa
    • Hitotoshi KimuraTaku Ishizawa
    • B41J2/175
    • B41J2/17553B41J2/17513B41J2/17556B41J2/17559B41J2/17596
    • The present invention provides a liquid container which has a check valve for preventing a flow of outside air into its inside and which is capable of maintaining the performance of the check valve constant. An ink pack (25) includes a bag portion (36), which holds an outlet portion by heat-welding. An internal space (S) is formed in the bag portion (36), and ink is contained therein. The outlet portion has a first flow path forming component (41). A first recess portion (47) is recessed from the one side surface (41a) of the first flow path forming component (41). First and second ink flow paths (46, 51), which communicate with the internal space (S), extend from a bottom surface (47a) of this first recess portion (47). A valve seat (53) is formed in a projecting shape so as to surround the second ink flow path (51). A laminate film (36a) sealingly closes the first recess portion (47). Thus, a valve body accommodating chamber (55) is formed. The valve body accommodating chamber (55) accommodates a first valve body (58). The valve body (58) and the valve seat (53) form a first valve device (59).
    • 本发明提供了一种液体容器,其具有用于防止外部空气流入其内部并且能够保持止回阀的性能恒定的止回阀。 墨水包(25)包括通过热焊保持出口部分的袋部(36)。 在袋部(36)中形成有内部空间(S),并且容纳墨水。 出口部分具有第一流路形成部件(41)。 第一凹部(47)从第一流路形成部件(41)的一个侧面(41a)凹入。 与内部空间(S)连通的第一和第二墨水流路(46,51)从该第一凹部(47)的底面(47a)延伸。 阀座(53)形成为包围第二墨流路(51)的突出形状。 层压膜(363)密封地封闭第一凹部(47)。 因此,形成阀体容纳室(55)。 阀体容纳室(55)容纳第一阀体(58)。 阀体(58)和阀座(53)形成第一阀装置(59)。
    • 40. 发明授权
    • Ink jet recording apparatus
    • 喷墨记录装置
    • US07316462B2
    • 2008-01-08
    • US09979755
    • 2001-03-27
    • Minoru UsuiHitotoshi KimuraNobuhito TakahashiShuhei Harada
    • Minoru UsuiHitotoshi KimuraNobuhito TakahashiShuhei Harada
    • B41J29/38B41J23/00B41J2/175
    • B41J2/17513B41J2/175B41J2/17509B41J3/543
    • A plurality of recording engines, each including an ink jet recording head mounted on a carriage, which ejects an ink droplet onto a recording sheet to perform printing are arranged such that recording sheets are feedable via different feeding paths. Ink is supplied from a main tank common to the respective recording engines. A controller compares an amount of an externally provided print data with an amount of a reference data. The controller divides the print data into data sets, each corresponding to a predetermined amount of page, and provides the data sets to the plural recording engines, when the print data amount exceeds the reference data amount. The controller operates a single recording engine when the print data amount is less than the reference data amount.
    • 多个记录引擎,各自包括安装在滑架上的喷墨记录头,其将墨滴喷射到记录纸上进行打印,使得记录纸通过不同的进给路径可进给。 油墨从相应记录发动机共用的主油箱供应。 控制器将外部提供的打印数据的量与参考数据的量进行比较。 当打印数据量超过参考数据量时,控制器将打印数据划分成数据集,每个数据集对应于预定量的页面,并将数据集提供给多个记录引擎。 当打印数据量小于参考数据量时,控制器操作单个记录引擎。