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    • 2. 发明授权
    • Wire electric discharge machining apparatus
    • 线放电加工机
    • US4992640A
    • 1991-02-12
    • US470001
    • 1990-01-25
    • Makoto TanakaJun AramakiShiro Imai
    • Makoto TanakaJun AramakiShiro Imai
    • B62J23/00B23H7/02B23H7/10B23H11/00B28B21/90B62J99/00B62M7/02
    • B23H7/101B23H11/00B23H7/02
    • A wire electric discharge machining apparatus comprises a tank having an opening at its one side surface, which is movable in a two-dimensional plane, a shielding body having a through hole, which is in slide-contact with the side surface having the opening of the tank so as to close the opening, an arm which has first and second ends, at least one of which is fixed to a machine body and the other is extended into the tank through the through hole and the opening, and which supports in the tank a wire guide for guiding a wire electrode to a workpiece placed in the tank, an enclosure member capable of expansion and contraction in response to a relative movement of the tank to the arm, the enclosure member having both ends sealingly connected to the circumferential portion of the through hole of the shielding body and the machine body respectively, and a working liquid supplying device for supplying a working liquid to the tank through a space formed between the arm and the enclosure member.
    • 一种电火花线切割加工装置,其特征在于,具有在一侧面上具有可在二维平面上移动的开口的槽,具有通孔的屏蔽体,该屏蔽体与具有开口部的侧面滑动接触 该箱体封闭该开口,该臂具有第一和第二端,其中至少一个固定在机体上,另一端通过通孔和开口延伸到罐中,并且支撑在 容纳用于将线电极引导到放置在所述罐中的工件的导线引导件,响应于所述箱体相对于所述臂的相对运动而能够膨胀和收缩的外壳构件,所述外壳构件的两端密封地连接到所述周向部分 的屏蔽体和机体的通孔的工作液供给装置,以及通过臂与外壳之间形成的空间向罐供给工作液的工作液供给装置 呃
    • 3. 发明授权
    • Filtering apparatus for processing liquids
    • 液体处理过滤装置
    • US5034123A
    • 1991-07-23
    • US437576
    • 1989-11-17
    • Makoto TanakaJun AramakiShiro Imai
    • Makoto TanakaJun AramakiShiro Imai
    • B01D29/07B01D29/01B01D29/11
    • B01D29/117
    • A filtering apparatus for processing liquids includes filtering element which is provided outside a clean liquid tank so that the clean liquid discharged through an outlet provided at the bottom of a filter tank is stored in a clean liquid tank. It is therefore possible to prevent processing powder from falling in the clean liquid tank and contaminating the clean liquid during the work of changing the filtering element and easily perform the work of changing the filtering element while maintaining the amount of processing liquid contained in the filtering element at the minimum level. It is also possible to easily perform the maintenance of the filtering element and remove the need for a maintenance space around the filter for processing liquids.
    • 用于处理液体的过滤装置包括设置在清洁液体罐外部的过滤元件,使得通过设置在过滤罐底部的出口排出的清洁液体被储存在清洁的液体罐中。 因此,在改变过滤元件的工作中,可以防止加工粉尘落入清洁液罐中,污染清洁液体,容易地进行过滤元件的变更工作,同时保持过滤元件中所含的处理液的量 在最低级别。 也可以容易地进行过滤元件的维护,并且不需要用于处理液体的过滤器周围的维护空间。
    • 4. 发明授权
    • Sealing structure for use in wire cut electric discharge machining
apparatus
    • 用于切线放电加工装置的密封结构
    • US5028757A
    • 1991-07-02
    • US421435
    • 1989-10-13
    • Jun AramakiMakoto TanakaShiro Imai
    • Jun AramakiMakoto TanakaShiro Imai
    • B23H7/02
    • B23H7/02
    • A sealing structure for use in a wire cut electric discharge machining apparatus for machining a workpiece in a machining solution, the machining apparatus having a machining reservoir for storing the machining solution which has a through window in a horizontal direction at side wall thereof to allow an arm for guiding a wire electrode to move in horizontal direction, the sealing structure prevents the machining solution from leaking. The sealing structure allows the arm to move smoothly in X and Y direction relative to the machining reservoir. The sealing structure comprises a covering plate for covering the through window of the reservoir, sealing member disposed between the covering plate and the reservoir, holding portion for holding the covering plate movably relative to the reservoir. The holding member includes plural bearings and an extendable bellows for surrounding the arm to prevent the machining solution from leaking.
    • 一种用于在加工溶液中加工工件的线切割放电加工装置中的密封结构,所述加工装置具有用于存储在其侧壁处具有沿水平方向的通过窗口的加工溶液的加工槽,以允许 用于引导线电极沿水平方向移动的臂,密封结构防止加工溶液泄漏。 密封结构允许臂相对于加工槽在X和Y方向上平稳移动。 密封结构包括用于覆盖储存器的通孔的覆盖板,设置在覆盖板和储存器之间的密封构件,用于相对于储存器可移动地保持盖板的保持部分。 保持构件包括多个轴承和用于围绕臂的可延伸的波纹管,以防止加工溶液泄漏。
    • 5. 发明申请
    • Switched Reluctance Motor and Switched Reluctance Motor Drive System
    • 开关磁阻电机和开关磁阻电机驱动系统
    • US20130342039A1
    • 2013-12-26
    • US13529620
    • 2012-06-21
    • Takashi UMEMORIMakoto Tanaka
    • Takashi UMEMORIMakoto Tanaka
    • H02K19/10
    • H02K19/103H02K29/03
    • A regenerative switched reluctance motor and a motor drive system therefor are provided. The motor has a rotor 33 with stacked rotor units 33a-33d each comprising 2n salient poles and a stator 31 with stacked stator units 31a-31d surrounded by and corresponding to the rotor units and each comprising 4n magnetic poles to form a predetermined gap with the salient poles of the corresponding rotor unit. A first excitation coil 32(A) is wound on every other one of the 4n magnetic poles of each stator unit, while a second excitation coil 32(B) is wound on the remaining magnetic poles thereof. The rotor units are sequentially shifted by a predetermined angle in angular position relative to the stator units. The switched reluctance motor and the motor drive system can efficiently drive the motor and recover regenerative power with little torque ripple and noise.
    • 提供一种再生式开关磁阻电动机及其电动机驱动系统。 电动机具有转子33,转子33具有堆叠的转子单元33a-33d,每个转子单元包括2n个凸极,定子31具有层叠的定子单元31a-31d,该转子单元由转子单元包围并对应于转子单元,每个包括4n个磁极,以形成与 相应转子单元的极点。 第一励磁线圈32(A)缠绕在每个定子单元的4n个磁极中的每一个上,而第二激励线圈32(B)缠绕在其剩余的磁极上。 转子单元相对于定子单元在角度位置顺序地偏移预定的角度。 开关磁阻电动机和电机驱动系统可以有效地驱动电机,并以较小的转矩脉动和噪声来恢复再生电力。
    • 8. 发明授权
    • Fuel injection control device
    • 燃油喷射控制装置
    • US08051838B2
    • 2011-11-08
    • US12575614
    • 2009-10-08
    • Makoto Tanaka
    • Makoto Tanaka
    • F02M51/00
    • F02D41/401F02D41/3845F02D41/402F02D2041/389F02D2200/0604F02D2250/04F02M63/0007Y02T10/44
    • A high-pressure pump section pumps fuel in a fuel tank into a delivery pipe. An injector injects the fuel in the delivery pipe directly into a combustion chamber of an engine. An ECU calculates fuel injection quantity based on an operation state of the engine and calculates fuel injection time based on the fuel injection quantity and pressure of the fuel in the delivery pipe. The ECU calculates fuel injection start timing based on the operation state of the engine. The ECU sets the fuel injection time and the fuel injection start timing as a base injection period. When a fuel inflow period, in which the high-pressure fuel flows into the delivery pipe with the fuel pumping by the high-pressure pump section, overlaps with the base injection period, the ECU changes the base injection period to eliminate or reduce the overlap.
    • 高压泵部分将燃料箱中的燃料泵送到输送管中。 喷射器将输送管中的燃料直接喷射到发动机的燃烧室中。 ECU根据发动机的运转状态来计算燃料喷射量,并基于输送管内的燃料的燃料喷射量和压力计算燃料喷射时间。 ECU根据发动机的运转状态来计算燃料喷射开始时刻。 ECU将燃料喷射时间和燃料喷射开始定时设定为基准喷射期间。 当燃料流入时段(其中高压燃料流入高压泵部分的燃料的输送管道)与基础喷射期间重叠时,ECU改变基准喷射周期以消除或减少重叠 。
    • 9. 发明授权
    • In-vehicle information apparatus and in-vehicle navigation apparatus for high altitude applications
    • 用于高空应用的车载信息装置和车载导航装置
    • US07991547B2
    • 2011-08-02
    • US12230952
    • 2008-09-09
    • Masato YoshidaMakoto Tanaka
    • Masato YoshidaMakoto Tanaka
    • G01C21/30
    • G01C21/3407
    • From among high upland area determination data stored in a hard disk drive, only a portion corresponding to a required segmental region is read into an external memory along with traveling of a vehicle. Determining of a high upland area is then executed based on the portion of the high upland determination in the external storage device. When a high-upland division is present in a vicinity of a present position, a portion of the high upland area determination data is read into the external memory. The read portion of the high upland area determination data corresponds to a high upland area, which covers all the high-upland divisions adjacently existing starting from the high-upland division in the vicinity of the present position. When a high-upland division is not present in the vicinity of the present position, a portion of the high upland area determination data corresponding to a segmental region having a predetermined minimum range centering on the present position is read into the external memory.
    • 从存储在硬盘驱动器中的高地区确定数据中,只有与所需分段区域对应的部分与车辆的行驶一起被读取到外部存储器中。 然后根据外部存储装置中的高地区确定部分来执行高地区的确定。 当在当前位置附近存在高地分区时,将高地区确定数据的一部分读入外部存储器。 高地区确定数据的读取部分对应于高地区,覆盖从现在位置附近的高地分区开始的所有高地陆地分区。 当在当前位置附近不存在高地区划分时,将与当前位置相对应的具有预定最小范围的段区域的高地盘区域确定数据的一部分读入外部存储器。