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    • 1. 发明授权
    • Ink delivery system
    • 墨水输送系统
    • US09573377B2
    • 2017-02-21
    • US13548502
    • 2012-07-13
    • Semion GengrinovichRan VilkLev Superfin
    • Semion GengrinovichRan VilkLev Superfin
    • B41J2/175
    • B41J2/175
    • An apparatus includes a tank for holding a fluid for delivery to a printhead, the tank being open to the atmosphere. A manifold enables the fluid to flow from the tank to the printhead, a height of the manifold being lower than a level of the fluid in the tank when the fluid is flowing from the tank to the printhead. A siphon has a lower end of the siphon that is connectable to the manifold. An upper end of the siphon extends above the level of the fluid and is openable to the atmosphere. A height of a segment of the siphon between the upper end and the lower end is lower than the height of the manifold.
    • 一种装置包括用于保持用于输送到打印头的流体的罐,罐对大气开放。 歧管使流体能够从罐流到打印头,当流体从罐流向打印头时,歧管的高度低于罐中流体的高度。 虹吸管具有可与歧管连接的虹吸管的下端。 虹吸管的上端在流体的水平面上方延伸,并且可以向大气敞开。 上端和下端之间的虹吸段的高度低于歧管的高度。
    • 3. 发明授权
    • Movement of fluid within printhead channels
    • 打印头通道内的流体运动
    • US09156255B2
    • 2015-10-13
    • US14365735
    • 2011-12-22
    • Semion GengrinovichDennis IndorskyRan VilkLev Superfin
    • Semion GengrinovichDennis IndorskyRan VilkLev Superfin
    • B41J29/393B41J2/045
    • B41J2/04588B41J2/04581B41J2/04596
    • In one embodiment, an actuator connected to a printhead structure is activated with a waveform to cause vibration of the structure sufficient to move fluid within a printhead channel adjacent to the structure and not cause the fluid to eject from the channel during a nonprinting period. In another embodiment, a first pulse module applies a pulse at a printhead structure at a combination of voltage, duration, and frequency to cause shaking of printhead structure to move fluid within a printhead channel adjacent to the structure without ejecting the fluid from the channel during a nonprinting period. In another embodiment, an actuator connected to a printhead structure is activated during a nonprinting period to pulse the structure to move fluid within a printhead channel adjacent to the structure without causing the fluid to be expelled from the channel.
    • 在一个实施例中,连接到打印头结构的致动器被激活,以使得结构的振动足以在与该结构相邻的打印头通道内移动流体,并且在非打印期间不使流体从通道喷出。 在另一个实施例中,第一脉冲模块以电压,持续时间和频率的组合在​​打印头结构处施加脉冲,以引起打印头结构的抖动,以在与该结构相邻的打印头通道内移动流体,而不会在通道期间弹出流体 非印刷期。 在另一个实施例中,连接到打印头结构的致动器在非打印周期期间被激活以脉冲结构以在与结构相邻的打印头通道内移动流体,而不会使流体从通道排出。
    • 4. 发明授权
    • Fin members to guide fluid
    • 翅片会员引导流体
    • US09144983B2
    • 2015-09-29
    • US14371151
    • 2012-01-18
    • Semion GengrinovichRan VilkGil Fisher
    • Semion GengrinovichRan VilkGil Fisher
    • B41J2/175B41J2/18
    • B41J2/175B41J2/18B41J2202/12B41J2202/20
    • A fluid applicator mounting device includes a main body to removeably receive a fluid applicator module. The main body includes a common fluid channel having a main input port, a main output port, a supplemental input port to provide fluid to the fluid applicator module, and a supplemental output port to output fluid from the fluid applicator module. The fluid applicator mounting device also includes an input fm member disposed inside the common fluid channel and arranged proximate to the supplemental input port to guide fluid to the fluid applicator module. The fluid applicator mounting device also includes an output fin member disposed inside the common fluid channel and arranged proximate to the supplemental output port to guide fluid from the fluid applicator module away from the supplemental output port.
    • 流体施用器安装装置包括可移除地接收流体施用器模块的主体。 主体包括具有主输入端口,主输出端口,用于向流体施加器模块提供流体的补充输入端口和用于从流体施加器模块输出流体的补充输出端口的公共流体通道。 流体施用器安装装置还包括设置在公共流体通道内部并被布置成靠近补充输入端口以将流体引导到流体施用器模块的输入fm构件。 流体施用器安装装置还包括设置在公共流体通道内部并布置成靠近补充输出端口的输出翅片构件,以将来自流体施用器模块的流体引导到辅助输出端口。
    • 5. 发明申请
    • MOVEMENT OF FLUID WITHIN PRINTHEAD CHANNELS
    • 流体在PRINTHEAD通道中的运动
    • US20150035884A1
    • 2015-02-05
    • US14365735
    • 2011-12-22
    • Semion J. GengrinovichDennis IndorskyRan VilkLev Superfin
    • Semion J. GengrinovichDennis IndorskyRan VilkLev Superfin
    • B41J2/045
    • B41J2/04588B41J2/04581B41J2/04596
    • In one embodiment, an actuator connected to a printhead structure is activated with a waveform to cause vibration of the structure sufficient to move fluid within a printhead channel adjacent to the structure and not cause the fluid to eject from the channel during a nonprinting period. In another embodiment, a first pulse module applies a pulse at a printhead structure at a combination of voltage, duration, and frequency to cause shaking of printhead structure to move fluid within a printhead channel adjacent to the structure without ejecting the fluid from the channel during a nonprinting period. In another embodiment, an actuator connected to a printhead structure is activated during a nonprinting period to pulse the structure to move fluid within a printhead channel adjacent to the structure without causing the fluid to be expelled from the channel.
    • 在一个实施例中,连接到打印头结构的致动器被激活,以使得结构的振动足以在与该结构相邻的打印头通道内移动流体,并且在非打印期间不使流体从通道喷出。 在另一个实施例中,第一脉冲模块以电压,持续时间和频率的组合在​​打印头结构处施加脉冲,以引起打印头结构的抖动,以在与该结构相邻的打印头通道内移动流体,而不会在通道期间弹出流体 非印刷期。 在另一个实施例中,连接到打印头结构的致动器在非打印周期期间被激活以脉冲结构以在与结构相邻的打印头通道内移动流体,而不会使流体从通道排出。
    • 10. 发明授权
    • Reactive fine particles
    • 活性微粒
    • US07922932B2
    • 2011-04-12
    • US12637115
    • 2009-12-14
    • Izhar HalahmiJacob MozelRan Vilk
    • Izhar HalahmiJacob MozelRan Vilk
    • C09K3/00C08G59/50C08G59/56C08L63/00
    • C08K9/00
    • A method for producing reactive fine particles, includes: admixing at least one latent curing agent selected from the group consisting of a urea derivative, an imidazole, a dicyaniamide (DICY), a mixture of any one or more thereof, and a precursor thereof, in a solvent to form a clear solution; spraying the clear solution onto at least one inorganic inert particle selected from the group consisting of a metal oxide, a mineral filler, a natural filler, and a mixture of any one or more thereof, the at least one inorganic inert particle having a specific surface area in the range of about 10 to about 50 m2/g; and removing the solvent to form reactive fine particles that includes a core of inert material coated by a coating layer that includes the at least one latent curing agent.
    • 一种反应性微粒的制造方法,其特征在于,含有选自脲衍生物,咪唑,二氰胺(DICY),其任何一种或多种的混合物中的至少一种潜在性固化剂及其前体, 在溶剂中形成澄清溶液; 将透明溶液喷射到至少一种选自金属氧化物,矿物填料,天然填料及其任何一种或多种的混合物中的无机惰性颗粒中,所述至少一种无机惰性颗粒具有比表面积 面积在约10至约50m 2 / g的范围内; 并除去溶剂以形成反应性细颗粒,其包括由包含至少一种潜在性固化剂的涂层涂覆的惰性材料芯。