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    • 3. 发明申请
    • CONTINUOUS LIQUID EJECTION USING COMPLIANT MEMBRANE TRANSDUCER
    • 使用合适的膜传感器进行连续液体喷射
    • US20120268529A1
    • 2012-10-25
    • US13089594
    • 2011-04-19
    • Michael F. BaumerJames D. HuffmanHrishikesh V. PanchawaghJeremy M. GraceYonglin XieQing YangDavid P. TrauernichtJohn A. Lebens
    • Michael F. BaumerJames D. HuffmanHrishikesh V. PanchawaghJeremy M. GraceYonglin XieQing YangDavid P. TrauernichtJohn A. Lebens
    • B41J2/04
    • B41J2/03B41J2002/14346
    • A method of continuously ejecting liquid includes providing a liquid ejection system that includes a substrate and an orifice plate affixed to the substrate. Portions of the substrate define a liquid chamber. The orifice plate includes a MEMS transducing member. A first portion of the MEMS transducing member is anchored to the substrate. A second portion of the MEMS transducing member extends over at least a portion of the liquid chamber. The second portion of the MEMS transducing member is free to move relative to the liquid chamber. A compliant membrane is positioned in contact with the MEMS transducing member. A first portion of the compliant membrane covers the MEMS transducing member and a second portion of the compliant membrane is anchored to the substrate. The compliant membrane includes an orifice. Liquid is provided under a pressure sufficient to eject a continuous jet of the liquid through the orifice located in the compliant membrane of the orifice plate by a liquid supply. A drop of liquid is caused to break off from the liquid jet by selectively actuating the MEMS transducing member which causes a portion of the compliant membrane to be displaced relative to the liquid chamber.
    • 一种连续喷射液体的方法包括提供一种液体喷射系统,其包括基板和固定在基板上的孔板。 衬底的一部分限定了液体室。 孔板包括MEMS换能构件。 MEMS转换构件的第一部分被锚定到基底。 MEMS转换构件的第二部分在液体室的至少一部分上延伸。 MEMS转换构件的第二部分相对于液体腔自由移动。 柔性膜定位成与MEMS换能件接触。 柔性膜的第一部分覆盖MEMS换能构件,并且柔性膜的第二部分锚定到基底。 柔性膜包括孔口。 在足够的压力下提供液体,该压力通过位于孔板的柔顺膜中的孔通过液体供应喷射液体的连续射流。 通过选择性地致动MEMS转换构件使一滴液体从液体射流中脱离,这导致顺应性膜的一部分相对于液体腔移位。
    • 7. 发明申请
    • DROP ON DEMAND PRINT HEAD WITH FLUID STAGNATION POINT AT NOZZLE OPENING
    • 在喷嘴打开时用流体流动点打开需要的打印头
    • US20070291082A1
    • 2007-12-20
    • US11425309
    • 2006-06-20
    • Michael F. BaumerMichael J. PiattYonglin Xie
    • Michael F. BaumerMichael J. PiattYonglin Xie
    • B41J2/045
    • B41J2/04B41J2/14B41J2002/14419B41J2202/12
    • A drop on demand ink jet print head has a chamber with a plurality of liquid passages into and out of said chamber, such that liquid is continuously moved into the chamber to a stagnation point adjacent to the nozzle opening, whereat the fluid comes substantially to rest, and out of the chamber from the stagnation point such that vector sum of liquid flow derived forces within the liquid channels is neutral. An actuator associated with the chamber is adapted to selectively increase the pressure of the liquid at the stagnation point to thereby eject a liquid drop from the nozzle opening. Continuous fluid flow internal to the system decreases the time to refill the fire chamber directly behind the nozzle opening after droplet ejection. This in turn dramatically increases the response time of the system.
    • 一个按需喷墨打印头具有一个腔室,多个液体通道进入和离开所述腔室,使得液体连续地移动到腔室中到与喷嘴开口相邻的停滞点,在那里液体基本上静止 并且从停滞点离开室,使得在液体通道内的液体流导出的力的矢量和是中性的。 与室相关联的致动器适于选择性地增加在停滞点处的液体的压力,从而从喷嘴开口喷出液滴。 在液滴喷射之后,系统内部的连续流体流动减少了直接在喷嘴开口后面重新填充防火室的时间。 这又大大增加了系统的响应时间。
    • 9. 发明授权
    • Drop on demand print head with fluid stagnation point at nozzle opening
    • 喷嘴开口处有液体停滞点,按需打印头
    • US07997709B2
    • 2011-08-16
    • US11425309
    • 2006-06-20
    • Michael F. BaumerMichael J. PiattYonglin Xie
    • Michael F. BaumerMichael J. PiattYonglin Xie
    • B41J2/18B41J2/045B41J2/175
    • B41J2/04B41J2/14B41J2002/14419B41J2202/12
    • A drop on demand ink jet print head has a chamber with a plurality of liquid passages into and out of said chamber, such that liquid is continuously moved into the chamber to a stagnation point adjacent to the nozzle opening, whereat the fluid comes substantially to rest, and out of the chamber from the stagnation point such that vector sum of liquid flow derived forces within the liquid channels is neutral. An actuator associated with the chamber is adapted to selectively increase the pressure of the liquid at the stagnation point to thereby eject a liquid drop from the nozzle opening. Continuous fluid flow internal to the system decreases the time to refill the fire chamber directly behind the nozzle opening after droplet ejection. This in turn dramatically increases the response time of the system.
    • 一个按需喷墨打印头具有一个腔室,多个液体通道进入和离开所述腔室,使得液体连续地移动到腔室中到与喷嘴开口相邻的停滞点,在那里液体基本上静止 并且从停滞点离开室,使得在液体通道内的液体流导出的力的矢量和是中性的。 与室相关联的致动器适于选择性地增加在停滞点处的液体的压力,从而从喷嘴开口喷出液滴。 在液滴喷射之后,系统内部的连续流体流动减少了直接在喷嘴开口后面重新填充防火室的时间。 这又大大增加了系统的响应时间。
    • 10. 发明授权
    • Printhead stimulator/filter device printing method
    • 打印头刺激器/过滤装置打印方式
    • US08287101B2
    • 2012-10-16
    • US12767840
    • 2010-04-27
    • Yonglin XieMichael F. BaumerAli G. Lopez
    • Yonglin XieMichael F. BaumerAli G. Lopez
    • B41J2/05
    • B41J2/03B41J2/155B41J2002/031B41J2002/033B41J2002/14403
    • A method for forming drops includes providing a jetting module that includes a nozzle plate, portions of the nozzle plate defining a nozzle; a thermal stimulation membrane including a plurality of pores and one or more heating elements; and an enclosure extending from the nozzle towards the thermal stimulation membrane, the enclosure defining a liquid chamber positioned between the nozzle and the thermal stimulation membrane, the liquid chamber being in fluid communication with each of the nozzle and the plurality of pores; providing liquid under pressure sufficient to cause the liquid to divide into a plurality of portions as the liquid flows through the thermal stimulation membrane; each portion of the liquid flowing through a pore of the plurality of pores; jetting an individual stream of the liquid through the nozzle; and causing a liquid drop to break off from the individual stream of the liquid by applying a pulse of thermal energy to each portion of the liquid as each portion of the liquid flows through a respective one of the plurality of pores.
    • 一种用于形成液滴的方法包括提供包括喷嘴板的喷射模块,所述喷嘴板的部分限定喷嘴; 包括多个孔和一个或多个加热元件的热​​刺激膜; 以及从所述喷嘴延伸到所述热刺激膜的外壳,所述外壳限定位于所述喷嘴和所述热刺激膜之间的液体室,所述液体室与所述喷嘴和所述多个孔中的每一个流体连通; 在足以在液体流过热​​刺激膜时使液体分成多个部分的压力下提供液体; 液体的每个部分流过多个孔的孔; 通过喷嘴喷射单独的液体流; 并且当液体的每个部分流过多个孔中的相应一个孔时,通过向液体的每个部分施加热能脉冲使液滴从单独的液体流中分离。