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    • 1. 发明授权
    • Delayed spray actuator
    • 延时喷雾执行机构
    • US06241131B1
    • 2001-06-05
    • US09550422
    • 2000-04-17
    • Yoshio KatsudaHiroyuki Ueda
    • Yoshio KatsudaHiroyuki Ueda
    • B65D4700
    • B65D83/386B65D83/205
    • The present invention provides a delayed spray actuator for aerosol which is convenient for a user at the time of an ejection operation, that is simple in the entire construction, and that elongates a delayed time period. When a valve member 1 is depressed, the valve member 1, a cover member 5 and a stem 1 are moved downwardly to open a valve portion of the stem 10 and an outer sheath portion 7 is held in a state in which a protruded portion 7a thereof is engaged with a protruded portion 15c of a cover body 15. In this state, an end portion of a skirt portion 4c of a sheath-like responding portion 4 is closely contacted with a small diameter portion 6b of an inner circumferential surface of an inner cylinder portion 6, and a flow passage defined by a hole portion 6e, a groove portion 4b, and an output side hole portion 2a is closed. Then, the sheath-like responding portion 4 is moved upwardly by pressure of the content introduced, and the end portion of the skirt 4c is forced from the small diameter portion 6b into the large diameter portion 6a, upon which the end portion is released from the inner circumferential surface of the inner cylindrical portion 6 and the content flows through the clearance therebetween to the groove 4b and the output side hole portion 2a. Reference numeral 7d designates an ambient air sucking space portion. Such an example is also included that an ejection surface of the output side hole portion 2a is formed into a tapered shape of 5 to 20 degrees.
    • 本发明提供一种用于气溶胶的延迟喷雾致动器,其在喷射操作时方便用户,这在整个结构中是简单的,并且延长了延迟的时间段。 当阀构件1被压下时,阀构件1,盖构件5和杆1向下移动以打开杆10的阀部分,并且外护套部分7保持在突出部分7a 与壳体15的突出部15c接合。在这种状态下,鞘状响应部分4的裙部4c的端部与内侧表面的小直径部分6b紧密接触 内筒部6和由孔部6e,槽部4b和输出侧孔部2a形成的流路闭合。 然后,通过所引入的内容物的压力使鞘状响应部4向上方移动,并且裙部4c的端部从小直径部6b被推入大直径部6a中,在该大直径部6a上端部被释放 内圆筒部6的内周面和内容物通过其间的间隙流入槽4b和输出侧孔部2a。 附图标记7d表示环境空气吸入空间部分。 还包括输出侧孔部分2a的喷射表面形成为5至20度的锥形形状的示例。
    • 4. 发明授权
    • System and method for controlling access to a document being edited
    • 用于控制对正在编辑的文档的访问的系统和方法
    • US08190589B2
    • 2012-05-29
    • US12134436
    • 2008-06-06
    • Hiroyuki Ueda
    • Hiroyuki Ueda
    • G06F17/30
    • G06F17/30011G06F17/2288
    • A first updating unit updates the state of access control of the data to be edited set up in the memory to an exclusive state in response to an exclusion request to the data to be edited. A second updating unit updates the state of access control of the data to be edited set up in the memory to an exclusion removal standby state in response to an exclusion removal request to the data to be edited in which the state of access control is in the exclusive state. A third updating unit updates the state of access control to all data to be edited from the exclusion removal standby state to an exclusion removal state when the data to be edited in which the state of access control is updated.
    • 响应于要编辑的数据的排除请求,第一更新单元将在存储器中设置的要被编辑的数据的访问控制状态更新为排他状态。 响应于对要被编辑的数据的排除去除请求,第二更新单元将存储器中设置的要被编辑的数据的访问控制的状态更新为排除移除待机状态,其中访问控制的状态处于 独家状态。 当更新访问控制的状态的要被编辑的数据时,第三更新单元将对待编辑的所有数据的访问控制状态从排除移除待机状态更新为排除去除状态。
    • 7. 发明授权
    • Liquid developing device and wet image forming device
    • 液体显影装置和湿式成像装置
    • US07664414B2
    • 2010-02-16
    • US11727364
    • 2007-03-26
    • Hiroyuki UedaKoji MuraseTomoyuki OdaHidenori TakenakaNobuhiro HoriuchiJumpei Hobo
    • Hiroyuki UedaKoji MuraseTomoyuki OdaHidenori TakenakaNobuhiro HoriuchiJumpei Hobo
    • G03G15/10
    • G03G15/105
    • When the temperature of the liquid toner has fluctuated by T1 or more (Step S3: YES), the equation obtained by measuring the liquid toner is modified (Steps S4 through S7). This equation is obtained based on the output voltage value of the concentrated toner liquid sensor 27, which has the same specifications as those of the liquid toner sensor 24, and the output voltage value of the carrier liquid sensor 29, which has the same specifications as those of the liquid toner sensor 24 (S4 through S6). The output voltage value of the liquid toner sensor 24 is entered into the modified equation to calculate the toner solids content of the liquid toner of the storage tank 18 (Step S8). Control of the concentration of the liquid toner is carried out based on the calculated toner solids content (Step S9).
    • 当液体调色剂的温度波动T1或更高时(步骤S3:是),通过测量液体调色剂获得的方程被修改(步骤S4至S7)。 基于具有与液体调色剂传感器24相同规格的浓缩调色剂液体传感器27的输出电压值和载体液体传感器29的输出电压值获得该等式,其具有与 液体调色剂传感器24的那些(S4至S6)。 液体调色剂传感器24的输出电压值被输入到改进的方程式中,以计算存储罐18的液体调色剂的调色剂固体含量(步骤S8)。 基于所计算的调色剂固体含量进行液体调色剂浓度的控制(步骤S9)。
    • 9. 发明申请
    • Wet image forming apparatus
    • 湿图像形成装置
    • US20080008501A1
    • 2008-01-10
    • US11822504
    • 2007-07-06
    • Jumpei HoboKoji MuraseHiroyuki UedaHidenori TakenakaTomoyuki OdaNobuhiro Horiuchi
    • Jumpei HoboKoji MuraseHiroyuki UedaHidenori TakenakaTomoyuki OdaNobuhiro Horiuchi
    • G03G15/10
    • G03G15/105G03G15/11
    • Of carrier liquids extracted by an carrier liquid extracting device from a liquid developer obtained by mixing together yellow, cyan, magenta, and black liquid developers, the carrier liquid of particularly high purity is recycled for concentration control of the yellow liquid developer and the carrier liquid of purity a little lower than the aforementioned purity is recycled for concentration control of the cyan, magenta, and black liquid developers. A carrier liquid extracted from the yellow liquid developer is recycled for the concentration control of the yellow liquid developer, and a carrier liquid extracted from the liquid developer obtained by mixing together the cyan, magenta, and black liquid developers is recycled for the concentration control of the cyan, magenta, and black liquid developers. This permits efficient use of carrier liquids to be recycled without having an influence on the image quality.
    • 由通过将黄色,青色,品红色和黑色液体显影剂混合在一起而获得的液体显影剂由载液萃取装置提取的载液中,特别高纯度的载液被再循环用于黄色液体显影剂和载体液体的浓度控制 的纯度略低于上述纯度,被再循环用于青色,品红色和黑色液体显影剂的浓度控制。 从黄色液体显影剂中提取的载液被再循环用于黄色液体显影剂的浓度控制,并将通过将青色,品红色和黑色液体显影剂混合在一起获得的液体显影剂中提取的载液被循环用于浓度控制 青色,品红色和黑色液体显影剂。 这允许载体液体的有效利用被再循环,而不影响图像质量。