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    • 82. 发明授权
    • Molding device for molding rotator
    • 成型旋转器成型装置
    • US06558147B1
    • 2003-05-06
    • US09657551
    • 2000-09-08
    • Koji TatsutaKenji ShimizuHideki Suehiro
    • Koji TatsutaKenji ShimizuHideki Suehiro
    • B29C3312
    • B29C45/14065B29L2031/08B29L2031/087
    • A molding device is provided for molding a blower fan that has a center member embedded in a center portion of the fan. The molding device comprises a pair of molding dies which define therebetween a shaped cavity when properly coupled; and an insert die fixed to one of the pair of molding dies in such a manner that at least a part of the insert die is exposed to a shaped cavity that is produced when the molding dies are coupled. The insert die includes a base block secured to one of the pair of molding dies; a cylindrical holding bore defined by the base block; a plurality of cylindrical eccentric members having eccentric through bores whose eccentric degrees are different from one another, each eccentric member being sized to be intimately received in the cylindrical holding bore; a positioning structure that establishes angular positioning of the cylindrical eccentric members.
    • 提供一种模制装置,用于模制具有嵌入在风扇的中心部分中的中心构件的鼓风机风扇。 成型装置包括一对成形模具,其在适当地联接时限定成形腔; 以及插入模具,其以这样的方式固定到所述一对模具中的一个,使得所述插入模具的至少一部分暴露于当所述模具被联接时产生的成形模腔。 所述插入模具包括固定到所述一对模具中的一个上的基座; 由基座限定的圆柱形保持孔; 多个具有偏心度彼此不同的偏心通孔的圆柱形偏心构件,每个偏心构件的尺寸被紧密地容纳在圆柱形保持孔中; 定位结构,其确定圆柱形偏心构件的角度定位。
    • 84. 发明授权
    • Filtration membrane cartridge
    • 过滤膜滤芯
    • US5651888A
    • 1997-07-29
    • US599977
    • 1996-02-14
    • Kenji ShimizuHiroshi IshidaYutaka YamadaKiyoshi IzumiMasashi MoroYuji Soeda
    • Kenji ShimizuHiroshi IshidaYutaka YamadaKiyoshi IzumiMasashi MoroYuji Soeda
    • B01D29/11B01D63/08B01D65/00B01D39/16
    • B01D65/003B01D29/111B01D63/081B01D63/082B01D65/00
    • A pair of filtering membranes are solidly bonded to a membrane-supporting plate by fusibly bonding each of the filtering membranes to the resin membrane-supporting plate. A main fusible domain is formed along peripheral edges of each of the filtering membranes. In addition, a plurality of subordinate fusible domains are intermittently formed in plural locations on one side or on both sides of the main fusible domain. By virtue of the above structure, bonding strength is secured by the main fusible domain, and yet, bonding strength is reinforced by locally provided subordinate fusible domains. A channel is formed in the membrane-supporting plate so that permeated liquid can swiftly flow through the filtering system. In addition, a plurality of projections are formed on peripheral edges of a filtration membrane cartridge facing inner surface of each gutter formed inside of each slit plate by way of causing the respective projections to slidably come into contact with the inner surface of the gutter. This in turn effectively minimizes frictional force between the filtration membrane cartridge and the gutter to enable the operator to easily insert and remove the filtration membrane cartridge into and from the gutter of the slit plate.
    • 将一对过滤膜通过将每个过滤膜粘合到树脂膜支撑板上而与膜支撑板牢固地结合。 每个滤膜的周边形成有主要的熔融畴。 此外,多个下级可熔区域在主熔融区域的一侧或两侧的多个位置间歇地形成。 通过上述结构,通过主熔结层确保粘合强度,而且通过局部提供的下级熔融区域来增强粘合强度。 在膜支撑板上形成通道,使得渗透液体可以迅速地流过过滤系统。 此外,通过使各个突起能够滑动地与沟槽的内表面接触,在每个狭缝板内形成的每个沟槽的内表面的过滤膜滤芯的周边上形成有多个突起。 这又有效地使过滤膜滤芯和沟槽之间的摩擦力最小化,使得操作者能够容易地将过滤膜滤芯插入到狭缝板的槽中和从隔板的槽中移除。
    • 86. 发明授权
    • Programmable external storage control apparatus
    • 可编程外部存储控制装置
    • US5625840A
    • 1997-04-29
    • US421713
    • 1995-04-13
    • Tsutomu NumataYuji KigamiTatsuya SakaiKenji Shimizu
    • Tsutomu NumataYuji KigamiTatsuya SakaiKenji Shimizu
    • G06F3/06G06F9/445G06F13/12G06F13/38
    • G06F3/0601G06F13/124G06F13/385G06F9/445G06F2003/0692
    • A programmable external storage control apparatus, including a buffer for temporarily storing data to be transferred between a host and an external storage, which stores a program for controlling data transfer between the host and the external storage and controls the data transfer between the host and the external storage by reading the data transfer control program from the buffer and executing it. The apparatus further includes a microprocessor that responds to a command from the host by starting the control of the data transfer by reading the data transfer control program. The microprocessor includes a memory for storing the data transfer control program in addition to other programs to be executed by the microprocessor. The microprocessor loads the data transfer control program from the memory into the buffer at the time of initialization. This allows the microprocessor to do other jobs such as servo control while the data transfer control program is executed.
    • 一种可编程外部存储控制装置,包括用于临时存储要在主机和外部存储器之间传送的数据的缓冲器,其存储用于控制主机与外部存储器之间的数据传送的程序,并且控制主机与外部存储器之间的数据传输 通过从缓冲区读取数据传输控制程序并执行外部存储。 该装置还包括微处理器,其通过读取数据传送控制程序来启动对数据传输的控制来响应来自主机的命令。 除了由微处理器执行的其他程序之外,微处理器还包括用于存储数据传送控制程序的存储器。 微处理器在初始化时将数据传输控制程序从存储器加载到缓冲器中。 这允许微处理器在执行数据传输控制程序时执行其他作业,例如伺服控制。
    • 89. 发明授权
    • Method of fusion bonding of a mark plate
    • 标记板的熔接方法
    • US5397418A
    • 1995-03-14
    • US160190
    • 1993-12-02
    • Kenji ShimizuAtsushi NobeKenichi Yamada
    • Kenji ShimizuAtsushi NobeKenichi Yamada
    • H01L21/02B29C65/02B29C65/10B29C65/18B32B37/14B32B37/16B65C9/25H01L21/673B32B31/00B32B31/20
    • B32B37/142B29C65/02B29C66/4724B32B37/04B65C9/25B29C65/10B29C65/18B29C66/8322H01L2223/54406H01L2223/54413H01L2924/3511
    • A method of fusion bonding of a mark plate places a mark plate, having a heat-melt portion formed on at least a part of a front surface-outer peripheral portion, a side surface and a back surface-outer peripheral portion, the heat-melt portion being made of a thermoplastic resin 6, into a recess portion provided on a surface of a wall plate. A peripheral portion of the mark plate is heated to a temperature not lower than the melting point of the thermoplastic resin from the front surface side of the wall plate by a front surface side heater, e.g. a heating platen 7, while heating the peripheral portion of the mark plate to a temperature not higher than the melting point of the wall plate from the back surface side of the wall plate by a back surface side heater, e.g. another heating platen. Due to this Owing to this method, the mark plate can be fused to have a sufficient depth of fused portion within a shorter period of time, the wall plate of the basket body can be prevented from experiencing the occurrence of thermal strain, and the mark plate can be fusion bonded to the wall plate with a sufficient bonding strength.
    • 标记板的熔接方法设置标记板,其具有形成在前表面 - 外周部分的至少一部分上的热熔部分,侧表面和后表面 - 外周部分, 熔融部分由热塑性树脂6制成设置在壁板表面上的凹部中。 标记板的周边部分通过前表面侧加热器例如从壁板的前表面侧加热至不低于热塑性树脂的熔点的温度。 加热台板7,通过背面侧加热器,例如加热台板7将标记板的周边部分从壁板的背面侧加热到不高于壁板的熔点的温度。 另一个加热台。 由于这种方法,标记板可以在更短的时间内熔化以具有足够的熔融部分的深度,可以防止筐体的壁板发生热应变的发生,并且标记 板可以以足够的粘合强度熔合到壁板上。