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    • 111. 发明申请
    • CONTAINER FOR CULTURE OF PLANT, METHOD FOR CULTURE OF PLANT AND METHOD OF PRODUCTION OF CUTTING SEEDLING
    • 植物栽培用容器,植物培养方法及切割种子的生产方法
    • US20110010991A1
    • 2011-01-20
    • US12922508
    • 2009-02-20
    • Yuji FujiiAkiyoshi Kawaoka
    • Yuji FujiiAkiyoshi Kawaoka
    • A01G9/02A01G1/00
    • A01G31/02A01G9/0295Y02P60/216
    • Provided are a plant cultivation container, a plant cultivation method, and a method of producing a rooted cutting, in which a plant can be cultivated under a desired humidity condition, whereby a rooting rate can be enhanced and extension of a root can be promoted. In the plant cultivation container in which a plant cultivating medium (2) is provided in an inside of a container body (1) with a substantially hermetically sealed structure, a partition wall (3) that partitions the inside of the container body (1) into two upper portion and lower portion and supports the medium (2) is provided in the container body (1). The upper portion of the container body (1) defined by partitioning of the partition wall (3) constitutes a high-humidity chamber (4), and the lower portion of the container body (1) constitutes a low-humidity chamber (5). A bent hole (7) that allows the medium (2) and the low-humidity chamber (4) to communicate with each other is provided in the partition wall (3). A high-humidity state is achieved in the high-humidity chamber (4), and a low-humidity state is achieved in the low-humidity chamber (5). Low-humidity air is supplied from the vent hole (7) to the medium (2).
    • 本发明提供植物栽培容器,植物栽培方法,以及根据需要的湿度条件栽培植物的根系切割方法,能够提高生根率,促进根部的延伸。 在具有大致密封结构的容器主体(1)的内部设置有植物栽培培养基(2)的植物培养容器中,隔着容器主体(1)内侧的隔壁(3) 分成两个上部和下部,并且在该容器主体(1)中设置有介质(2)。 通过分隔壁(3)限定的容器主体(1)的上部构成高湿度室(4),容器主体(1)的下部构成低湿度室(5) 。 在分隔壁(3)上设置有允许介质(2)和低湿度室(4)相互连通的弯曲孔(7)。 在高湿度室(4)中实现高湿度状态,并且在低湿度室(5)中实现低湿度状态。 从通气孔(7)向介质(2)供给低湿度空气。
    • 114. 发明授权
    • Method of testing friction components for automatic transmissions
    • 自动变速器摩擦部件的测试方法
    • US06923049B2
    • 2005-08-02
    • US10737319
    • 2003-12-16
    • Yuji FujiiTed Duane SnyderGregory Michael PietronWilliam Emil Tobler
    • Yuji FujiiTed Duane SnyderGregory Michael PietronWilliam Emil Tobler
    • G01M13/02G01M99/00
    • G01M13/022
    • A method of testing a friction component for a transmission that has first and second parts. The first part of the friction component is attached to a drive shaft and the second part is attached to a grounding element. The first part of the friction component is rotated until the drive shaft and the first part of the friction component rotate at a target sliding speed Vtarget. An actuation force is applied to the friction component at a time t0. Operation of the motor drive is continued to maintain the speed of rotation of the drive shaft at Vtarget until a predetermined level of engagement torque Tth is obtained. The motor torque is then reduced to a predetermined level Tm. The sliding speed of the drive shaft is then decreased and the test is terminated when the sliding speed falls to zero.
    • 一种用于测试具有第一和第二部分的变速器的摩擦部件的方法。 摩擦部件的第一部分附接到驱动轴,第二部分附接到接地元件。 摩擦部件的第一部分被旋转直到驱动轴和摩擦部件的第一部分以目标滑动速度V <目标旋转。 在时间t 0 0时将致动力施加到摩擦部件。 继续进行电动机驱动的动作,将驱动轴的旋转速度维持在V目标上,直到得到规定的接合转矩T Sub为止。 然后马达扭矩减小到预定水平T m m。 然后驱动轴的滑动速度降低,并且当滑动速度降至零时测试结束。
    • 116. 发明授权
    • Induction heating device
    • 感应加热装置
    • US06812440B2
    • 2004-11-02
    • US10483791
    • 2004-05-17
    • Izuo HirotaAtsushi FujitaTakahiro MiyauchiYuji FujiiAkira KataokaKoji Niiyama
    • Izuo HirotaAtsushi FujitaTakahiro MiyauchiYuji FujiiAkira KataokaKoji Niiyama
    • H05B606
    • H05B6/062H05B6/04
    • An induction heating device prevents an object to be heated from being displaced and buoyed from a mounting surface due to an mutual action of repulsive forces between the object to be heated and an induction heating coil. The induction heating device includes a source-current detector for detecting a source current input to a high-frequency inverter including the induction heating coil and an inverter circuit, a source-current change detector for measuring a change against time of a magnitude of the source current to detect a displacement and buoying of the object to be heated, such as a cooking pot, and a change examining unit. The controller controls an output of the high-frequency inverter in response to a detection result of the change examining unit. The induction heating device prevents the cooking pot from being displaced and buoyed even if the pot is not touched by a user at startup of heating or during the heating operation, and is inexpensive and safe.
    • 感应加热装置由于被加热物和感应加热线圈之间的排斥力的相互作用,防止被加热物从安装面移位和浮起。 感应加热装置包括:源电流检测器,用于检测输入到包括感应加热线圈和反相器电路的高频逆变器的源电流;源电流变化检测器,用于测量源的幅度随时间的变化; 用于检测待烹饪物体的位移和浮动的电流,例如烹饪锅和变化检查单元。 控制器响应于变化检查单元的检测结果控制高频逆变器的输出。 感应加热装置即使在启动加热或加热操作期间用户没有接触到锅并且便宜且安全的情况下,烹饪锅也不会移动和浮起。
    • 118. 发明授权
    • Method and apparatus for removing volatile matter from highly viscous
material
    • 从高粘度物质中去除挥发性物质的方法和设备
    • US4361462A
    • 1982-11-30
    • US268999
    • 1981-05-20
    • Yuji FujiiChikao Oda
    • Yuji FujiiChikao Oda
    • B01D1/22C08F6/00
    • B01D1/226
    • This invention relates to a method and apparatus for removing volatile matter such as solvents and monomers from highly viscous materials such as synthetic polymers by the use of a falling-film evaporator.When a polymer composition containing a high concentration of the volatile matter, solvent and/or unreacted monomer, is preheated and then fed to a falling-film evaporator, the monomer reacts at a high temperature in the preheating, yielding its polymer of low molecular weight, and as a result the polymer quality deteriorates. When fed at a relatively low temperature, the polymer composition increases its viscosity with the vaporization of the solvent and/or monomer and becomes liable to partly solidify on account of the temperature drop due to the latent heat of vaporization, so that smooth treatment is difficult. This invention prevents the temperature drop as well as the reaction of the monomer, giving the polymer of high quality, by feeding the polymer composition of a relatively low temperature to a falling film evaporator and performing the heating of the polymer and the evaporation of the volatile matter simultaneously by supplying friction heat to the polymer composition within the clearances between the inner wall of the evaporator and the heating blades (19) attached to the outer ends of agitator blades (3), respectively.
    • PCT No.PCT / JP80 / 00181 Sec。 371日期:1981年5月20日 102(e)日期1981年5月20日PCT提交1980年8月12日PCT公布。 公开号WO81 / 00814 日本1981年4月2日。本发明涉及通过使用降膜蒸发器从诸如合成聚合物的高粘度材料中除去挥发性物质如溶剂和单体的方法和装置。 当含有高浓度挥发性物质,溶剂和/或未反应单体的聚合物组合物被预热,然后进料到降膜蒸发器时,单体在预热中在高温下反应,产生低分子量聚合物 ,结果聚合物质量恶化。 当在相对较低的温度下进料时,聚合物组合物随着溶剂和/或单体的蒸发而增加其粘度,并且由于由于蒸发潜热引起的温度下降而容易部分地固化,使得难以平滑处理 。 本发明通过向降膜蒸发器中加入较低温度的聚合物组合物并进行聚合物的加热和挥发物的蒸发来防止温度下降以及单体的反应,从而给出高质量的聚合物 通过在蒸发器的内壁和附接到搅拌器叶片(3)的外端的加热叶片(19)之间的间隙内向聚合物组合物供应摩擦热同时进行。