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    • 52. 发明授权
    • Image forming apparatus, fixing-section-holding mechanism, and fixing device
    • 图像形成装置,固定部保持机构和定影装置
    • US08913922B2
    • 2014-12-16
    • US13594263
    • 2012-08-24
    • Kiichirou ArikawaMasami IshidaShigeru WatanabeYoshiro Konishi
    • Kiichirou ArikawaMasami IshidaShigeru WatanabeYoshiro Konishi
    • G03G15/20
    • G03G15/2071G03G15/2017G03G15/2035G03G21/1647
    • An image forming apparatus includes an apparatus body in which an image forming section that forms an image on a recording material and a drive mechanism that generates a rotational driving force are provided; a fixing section that transports the recording material while receiving the rotational driving force and fixes the image on the recording material, the fixing section being held by the apparatus body at two axial ends thereof; and a transmission mechanism that is provided at one of the two axial ends of the fixing section and is connected to the drive mechanism, the transmission mechanism transmitting the rotational driving force from the drive mechanism to the fixing section. When a pulling force is applied to a recording material that is present in the fixing section, the drive mechanism and the transmission mechanism are disconnected from each other.
    • 一种图像形成装置,包括:设置有在记录材料上形成图像的图像形成部和产生旋转驱动力的驱动机构的装置主体; 固定部,其在接受旋转驱动力的同时传送记录材料并将图像固定在记录材料上,固定部分由设备主体在其两个轴向端保持; 以及传动机构,其设置在所述固定部的两个轴向端部中的一个端部处并且连接到所述驱动机构,所述传动机构将所述旋转驱动力从所述驱动机构传递到所述固定部。 当对存在于固定部中的记录材料施加拉力时,驱动机构和传动机构彼此断开。
    • 55. 发明授权
    • Fixing device and image forming apparatus
    • 固定装置和成像装置
    • US08543045B2
    • 2013-09-24
    • US12961247
    • 2010-12-06
    • Kiichirou ArikawaShigeru WatanabeYasutaka GotohHiroko Furukata
    • Kiichirou ArikawaShigeru WatanabeYasutaka GotohHiroko Furukata
    • G03G15/20
    • G03G15/2032G03G15/206
    • A fixing device includes a rotatable fixing roller, an endless fixing belt, a pressing unit having first and second pressing members that press a surface of the fixing belt against the fixing roller, a fixed support member that supports the fixing roller rotatably, a movable support member that supports the first pressing member in a fixed state and supports the second pressing member such as to be movable closer to and away from the fixing roller, a first pressure spring that presses the movable support member closer to the fixing roller, a second pressure spring that presses the second pressing member closer to the fixing roller, and a switch mechanism that switches between a first state in which the first and second pressing members are pressed against the fixing roller and a second state in which only the second pressing member is pressed against the fixing roller.
    • 定影装置包括可旋转定影辊,环形定影带,具有将定影带的表面压靠在定影辊上的第一和第二按压部件的按压单元,可旋转地支撑定影辊的固定支撑构件,可移动支撑件 构件,其以固定状态支撑所述第一按压构件,并且支撑所述第二按压构件,使得能够靠近所述定影辊移动;第一压力弹簧,其将所述可动支撑构件压靠在所述定影辊上;第二压力 将第二按压部件按压到定影辊的弹簧,以及在第一和第二按压部件被压靠在定影辊上的第一状态和仅第二按压部件被按压的第二状态之间切换的开关机构 抵靠定影辊。
    • 56. 发明授权
    • Apparatus and method for gasifying gas hydrate pellet
    • 气化天然气水合物颗粒气化装置及方法
    • US08466331B2
    • 2013-06-18
    • US12735633
    • 2009-03-27
    • Shigeru WatanabeShinji ImaiKazuhiko Shinagawa
    • Shigeru WatanabeShinji ImaiKazuhiko Shinagawa
    • C07C9/00F17C7/00F17C9/02C01B3/32
    • C10L3/06C10L3/108C10L5/363
    • A gasification apparatus is provided which enables gas hydrate pellets to be transported and gasified in the same vessel and enables a gas to be generated by pellet decomposition in a controlled amount. The apparatus is free from bridging. The apparatus includes a heat-in-saluted vessel main body and, disposed therein, a tubular structure which is open at the top and bottom. This tubular structure holds therein gas hydrate pellets obtained by compression-molding a gas hydrate produced by the hydration reaction of a raw-material gas with raw-material water. The tubular structure becomes wider in diameter from the upper opening toward the lower opening. A channel for passing a heat carrier therethrough has been disposed between the lower end of the tubular structure and the inner bottom surface of the vessel main body. The apparatus is further equipped, between the tubular structure and the inner wall surface of the vessel main body, with a nozzle which ejects the heat carrier in a circumferential direction for the vessel main body. The vessel main body has a discharge pipe for discharging the heat carrier ejected from the nozzle, the discharge pipe projecting upright from the inner bottom surface of the vessel main body.
    • 提供了一种气化装置,其使得气体水合物颗粒能够在同一容器中运输和气化,并且能够以受控量的颗粒分解产生气体。 该设备没有桥接。 该装置包括受热的容器主体,并且在其中设置有在顶部和底部是开放的管状结构。 该管状结构容纳通过将原料气体的水合反应产生的气体水合物压缩成型为原料水而得到的气体水合物颗粒。 管状结构从上开口向下开口的直径变宽。 用于使热载体通过的通道已经设置在管状结构的下端和容器主体的内底表面之间。 该装置还在管状结构和容器主体的内壁表面之间配备有用于船体主体沿圆周方向喷射热载体的喷嘴。 容器主体具有用于排出从喷嘴排出的热载体的排出管,排出管从容器主体的内底表面竖直突出。
    • 59. 发明申请
    • Fuel Cell
    • 燃料电池
    • US20100330461A1
    • 2010-12-30
    • US12783384
    • 2010-05-19
    • Shigeru WatanabeKenichi Oba
    • Shigeru WatanabeKenichi Oba
    • H01M8/02
    • H01M8/0247H01M8/0258H01M8/0273H01M8/0276H01M8/241H01M8/2483H01M2008/1095
    • In a fuel cell, an elastic body provides first protrusion T10 that encompasses the perimeter of the passage hole at plate member 40 and the leading edge of which spans the entire region and tightly adheres to plate member 40, provides second protrusion S20 that is disposed within the placement region of reaction membrane 10 so as to encompass the perimeter of the gas diffusion layer, and provides third protrusion S30 that is disposed to encompass the region at which first protrusion T10 is disposed and the region at which second protrusion S20 is disposed, and is disposed outside the placement region for the reaction membrane, and the leading edge of which spans the entire region and tightly adheres to a separator 30.
    • 在燃料电池中,弹性体提供围绕板构件40的通道孔的周边的第一突起T10,并且其前缘跨越整个区域并紧密地附着在板构件40上,提供设置在其内的第二突起S20 反应膜10的放置区域,以便包围气体扩散层的周边,并且提供设置成包围第一突起T10所在的区域和设置第二突起S20的区域的第三突起S30,以及 设置在用于反应膜的放置区域的外侧,并且其前端跨越整个区域并紧密地附着到隔膜30。
    • 60. 发明授权
    • Magnetic resonance imaging device
    • 磁共振成像装置
    • US07660618B2
    • 2010-02-09
    • US10517102
    • 2003-06-05
    • Takayuki AbeShigeru Watanabe
    • Takayuki AbeShigeru Watanabe
    • A61B5/055
    • G01R33/563A61B5/055G01R33/281G01R33/56308
    • An MRI apparatus having a pulse sequence of dynamic MRA performs a pulse sequence for monitoring arrival of a contrast agent at a blood vessel of interest. The pulse sequence is substantially the same as the imaging sequence except that the phase-encode number and/or the slice-encode number is small. A time-series image reconstructed by using data measured under the condition of applying gradient magnetic fields with a low spatial resolution is displayed to ascertain that the contrast agent has arrived at the blood vessel of interest. When the contrast agent arrives at the blood vessel of interest, the phase-encode and slice-encode are added to continue the substantial measurement pulse sequence without changing the pulse sequence itself. The first image of the substantial measurement is produced by using the data acquired at the time of arrival of the contrast agent in monitoring. Thus, the arrival time of the contrast agent can be reliably monitored with high time-resolution and the substantial measurement can be performed with most suitable timing to obtain an excellent blood vessel image.
    • 具有动态MRA的脉冲序列的MRI装置执行用于监视造影剂到感兴趣的血管的到达的脉冲序列。 除了相位编码数和/或片编码数小之外,脉冲序列与成像序列基本相同。 显示通过使用在施加具有低空间分辨率的梯度磁场的条件下测量的数据重建的时间序列图像,以确定造影剂已到达感兴趣的血管。 当造影剂到达感兴趣的血管时,添加相位编码和切片编码以继续实质的测量脉冲序列而不改变脉冲序列本身。 通过使用在造影剂到达时获取的数据进行监测来产生实质测量的第一图像。 因此,可以以高时间分辨率可靠地监视造影剂的到达时间,并且可以以最合适的时间进行实质测量以获得优异的血管图像。