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    • 22. 发明授权
    • Non-hollow adsorbent porous fiber
    • 非中空吸附剂多孔纤维
    • US5480712A
    • 1996-01-02
    • US852259
    • 1992-06-03
    • Isamu TakahashiShigeki HayashiYoshio Iida
    • Isamu TakahashiShigeki HayashiYoshio Iida
    • D01D5/247D01F6/04D01F6/46B32B3/26
    • D01D5/247D01F6/04D01F6/46Y10T428/1352Y10T428/1376Y10T428/249978Y10T428/249979Y10T428/249981
    • A porous fiber having sufficient chemical resistance to a variety of substances to be adsorbed, and having a large specific surface area and a large void percentage. The porous fiber provided by the present invention features a main fiber body formed of a high-density polyethylene having a melt flow rate of 0.3 to 20 g/10 minutes and numerous pores. The pores are formed by mixing the high-density polyethylene with a paraffin wax while they are melted, melt-spinning a fiber with an extruder at a draft ratio of 200 or less, stretching the fiber, heat-treating the stretched fiber, mechanically crimping it and then removing the paraffin wax. In the porous fiber, the main fiber body has a specific surface area of 20 m.sup.2 /g or more, the ratio of the pores to the main fiber body is 20% or more and the main fiber body has a size of not more than 50 denier.
    • PCT No.PCT / JP91 / 01690 Sec。 371日期:1992年6月3日 102(e)日期1992年6月3日PCT 1991年12月4日PCT。一种多孔纤维,其具有对待吸附的各种物质具有足够的耐化学性,并且具有大的比表面积和大的空隙率。 由本发明提供的多孔纤维的特征在于,由熔体流动速率为0.3〜20g / 10分钟的高密度聚乙烯形成的主纤维体和多孔。 通过将高密度聚乙烯与石蜡熔融混合,通过挤出机将纤维以200以下的牵伸比进行熔融纺丝,拉伸纤维,热处理拉伸纤维,机械卷曲 然后除去石蜡。 在多孔纤维中,主纤维体的比表面积为20m 2 / g以上,细孔与主纤维体的比例为20%以上,主纤维体的尺寸为50以下 旦尼尔
    • 25. 发明授权
    • Rotary shear line
    • 旋转剪线
    • US5122964A
    • 1992-06-16
    • US514969
    • 1990-04-26
    • Shigeki HayashiKazuyoshi Komaya
    • Shigeki HayashiKazuyoshi Komaya
    • B23D36/00
    • B23D36/0033Y10T83/0515
    • In a rotary shear line in which sheet stock is fed by a feeder to a rotary shear for fly cutting by its rotating cutting edges, a synchronous speed and a synchronization length are calculated by an arithmetic unit which are supplied with the cutting length and the average feed rate of the sheet stock. Reference pulses of a frequency corresponding to the synchronous speed and the synchronization length are provided to a first numerical controller for controlling the feeder and a second numerical controller for controlling the rotary shear. The first numerical controller controls the feeder to feed the sheet stock at a speed higher or lower than the synchronous speed in such a manner that when the sheet stock is fed at the synchronous speed, the length of the sheet stock short or excessive of the cutting length before its cutting is compensated for within a cutting period. The second numerical controller controls the rotary shear to rotate its cutting edges at a speed higher or lower than the synchronous speed in such a manner that when the cutting edges are rotated at the synchronous speed, the circumferential length of the locus of each cutting edge short or excessive of the circumferential length of its 360.degree. rotation is compensated for within the cutting period.
    • 在其中通过馈送器将片材料料通过其旋转切削刃进行飞剪切割的旋转剪切线的旋转剪切线中,通过提供切割长度和平均值的算术单元计算同步速度和同步长度 纸张的进给速度。 将对应于同步速度和同步长度的频率的参考脉冲提供给用于控制馈线的第一数字控制器和用于控制旋转剪切的第二数字控制器。 第一数字控制器控制馈送器以高于或低于同步速度的速度馈送片材,使得当片材以同步速度进给时,片材的长度短或切割过多 切割前的长度在切割期间得到补偿。 第二数字控制器控制旋转剪切以比同步速度更高或更低的速度旋转其切削刃,使得当切削刃以同步速度旋转时,每个切削刃的轨迹的周长短 或者在切割周期内补偿360°旋转的圆周长度过大。
    • 27. 发明授权
    • Developing device, image forming apparatus, developer agitating and conveying method
    • 显影装置,成像装置,显影剂搅拌和输送方法
    • US08554115B2
    • 2013-10-08
    • US13310989
    • 2011-12-05
    • Shigeki HayashiTakafumi Nagai
    • Shigeki HayashiTakafumi Nagai
    • G03G15/08
    • G03G15/0887
    • A developing device includes a developer tank and a developing roller. An internal space of the developer tank is divided into an upper conveying path, a lower conveying path, a communication path, a main pumping conveying path section, and a developer supply path, by a partition wall. A developer pumping conveying section conveys a developer inside the main pumping conveying path section in a conveyance direction Z, and includes an inner spiral blade, a rotational tube, a first outer spiral blade, a second outer spiral blade, a pumping rotation shaft member, and a pumping gear. An attracting magnet is located in a position horizontally spaced from the rotational tube.
    • 显影装置包括显影剂罐和显影辊。 显影槽的内部空间被分隔壁分成上部输送路径,下部输送路径,连通路径,主泵送输送路径部分和显影剂供给路径。 显影剂泵送输送部在输送方向Z上输送主泵送输送路径部内的显影剂,包括内螺旋叶片,旋转管,第一外螺旋叶片,第二外螺旋叶片,泵送旋转轴构件, 和泵送装置。 吸引磁铁位于与旋转管水平间隔开的位置。
    • 28. 发明授权
    • Developing device and image forming apparatus including the same
    • 显影装置和包括其的图像形成装置
    • US08488998B2
    • 2013-07-16
    • US13008308
    • 2011-01-18
    • Shigeki HayashiTakafumi Nagai
    • Shigeki HayashiTakafumi Nagai
    • G03G15/08
    • G03G15/0822G03G2215/0822G03G2215/083
    • A developing device comprising: a developer vessel that accommodates a developer containing a toner and a carrier; a toner supply port; a developing roller; a developer conveying passage; a developer conveying helical member; and a developer scooping member, wherein the developer conveying passage includes a first developer conveying passage and the a second developer conveying passage being defined by a partitioning plate, and a first communicating path and a second communicating path that establish a communication between the first and second developer conveying passage, the developer conveying helical member includes a first developer conveying helical member disposed in the first developer conveying passage, and a second developer conveying helical member disposed in the second developer conveying passage, the developer scooping member includes a first developer scooping member disposed near the first communicating path to send the developer in the first developer conveying passage into the second developer conveying passage, and a second developer scooping member disposed near the second communicating path to send the developer in the second developer conveying passage into the first developer conveying passage.
    • 一种显影装置,包括:容纳含有调色剂和载体的显影剂的显影剂容器; 调色剂供应口; 显影辊; 显影剂输送通道; 传送螺旋构件的显影剂; 和显影剂舀取构件,其中所述显影剂输送通道包括第一显影剂输送通道和由分隔板限定的第二显影剂输送通道,以及建立第一和第二显影剂通道之间的连通的第一通信路径和第二通信路径 显影剂输送通道,显影剂输送螺旋构件包括设置在第一显影剂输送通道中的第一显影剂输送螺旋构件和设置在第二显影剂输送通道中的第二显影剂输送螺旋构件,显影剂舀取构件包括第一显影剂舀取构件, 靠近第一连通路径,以将显影剂送到第一显影剂输送通道进入第二显影剂输送通道;以及第二显影剂舀取构件,其设置在第二连通路径附近,以将第二显影剂输送通道中的显影剂送入第一显影剂输送器 g通道。
    • 29. 发明授权
    • Control system for working machine
    • 作业机控制系统
    • US08417424B2
    • 2013-04-09
    • US12532536
    • 2008-09-12
    • Yasuo FujiiTetsuya NakajimaTamaki NakaShigeki HayashiYukifum Yamanaka
    • Yasuo FujiiTetsuya NakajimaTamaki NakaShigeki HayashiYukifum Yamanaka
    • G06F7/00
    • A01D41/1274A01B79/005F02D29/02G05B2219/25072G05B2219/25094
    • A plurality of control units capable of communicating with each other via a data communication network (TU) are disposed in distribution. One of the plurality of control units is set as an information management control unit (H1) having writable nonvolatile storing means. Upon activation with power supply thereof, the information management control unit (H1) executes a control management information distributing process for transmitting control management information stored in a memory (50) to storage object control units (H2-H6) via the communication network (TU). Upon activation with power supply thereto, each of the storage object control units (H2-H6) executes a control management information obtaining process for obtaining the control management information transmitted from the control management information control unit (H1).
    • 配置能够经由数据通信网络(TU)进行通信的多个控制单元。 将多个控制单元中的一个设置为具有可写入非易失性存储装置的信息管理控制单元(H1)。 信息管理控制单元(H1)在通过电力供应激活时执行控制管理信息分配处理,用于通过通信网络(TU)将存储在存储器(50)中的控制管理信息发送到存储对象控制单元(H2-H6) )。 在通过电力供应激活时,各个存储对象控制单元(H2-H6)执行用于获得从控制管理信息控制单元(H1)发送的控制管理信息的控制管理信息获取处理。
    • 30. 发明授权
    • X-ray tube apparatus
    • X射线管装置
    • US08213576B2
    • 2012-07-03
    • US12671021
    • 2007-08-09
    • Sadamu TomitaShigeki Hayashi
    • Sadamu TomitaShigeki Hayashi
    • H01J35/30
    • H01J35/14H01J35/16H01J35/305H01J2235/1212H01J2235/1216H01J2235/162
    • Conventionally, the magnetic field generator was arranged perpendicularly to the axis of the electron beam. The magnetic field generator of this invention is arranged so as to be inclined relative to the plane perpendicular to the axis of the electron beam. Specifically, the magnetic field generator is arranged so as to be inclined relative to the plane perpendicular to the axis of the electron beam within the range in the cathode side from the focused and deflected electron beam. Inclination up to the anode side opposite to the cathode side will lead to a possibility of increasing the reduced X-ray source diameter. Thus, arranging the magnetic field generator so as to be inclined within the range in the cathode side from the electron beam may reduce the X-ray source diameter.
    • 通常,磁场发生器垂直于电子束的轴线布置。 本发明的磁场发生器被布置成相对于垂直于电子束轴的平面倾斜。 具体地说,磁场发生器被布置为相对于垂直于电子束轴线的平面在从聚焦偏转电子束的阴极侧范围内倾斜。 直到与阴极侧相反的阳极侧的倾斜将导致增加X射线源直径减小的可能性。 因此,将磁场发生器设置成在电子束的阴极侧的范围内倾斜,可能降低X射线源直径。