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    • 1. 发明申请
    • NUMERICAL CONTROL DEVICE
    • 数控装置
    • US20150081084A1
    • 2015-03-19
    • US14384205
    • 2012-06-05
    • Kenji NishiwakiShuichi ArataTomonori Sato
    • Kenji NishiwakiShuichi ArataTomonori Sato
    • G05B19/402G05B19/416
    • G05B19/402B23G1/16G05B19/416G05B2219/43006G05B2219/45216G05B2219/50225
    • In order to enable tapping to be performed precisely and with an appropriate machining time irrespective of the diameter of a tapping tool, a configuration of the present invention includes: a program analysis unit (12) that analyzes a loaded machining program and extracts thread-related information in tapping; a gradient determination unit (14) that determines acceleration regarding movement velocity of the main spindle or the feed shaft on the basis of the thread-related information obtained by the program analysis unit (12); and an interpolation and acceleration/deceleration processing unit (13) that generates a movement command for the main spindle and the feed shaft using the acceleration determined by the gradient determination unit (14). In addition, the gradient determination unit (14) varies the acceleration during acceleration/deceleration of the main spindle or the feed shaft in accordance with the diameter of a tapping tool.
    • 为了能够精确地执行攻丝并且与适当的加工时间无关,而与攻丝工具的直径无关,本发明的结构包括:程序分析单元(12),其分析加载的加工程序并提取线程相关 攻丝信息; 梯度确定单元,根据由程序分析单元获得的线程相关信息确定关于主轴或进给轴的移动速度的加速度; 以及内插和加速/减速处理单元,其使用由所述梯度确定单元(14)确定的加速度来生成所述主轴和所述进给轴的移动指令。 此外,梯度判定部14根据攻丝工具的直径来改变主轴或进给轴的加减速时的加速度。
    • 2. 发明授权
    • Numerical control device which performs tapping operation by using a main spindle and a feed shaft
    • 通过使用主轴和进给轴进行攻丝操作的数控装置
    • US09513619B2
    • 2016-12-06
    • US14384205
    • 2012-06-05
    • Kenji NishiwakiShuichi ArataTomonori Sato
    • Kenji NishiwakiShuichi ArataTomonori Sato
    • G05B19/402G05B19/416B23G1/16
    • G05B19/402B23G1/16G05B19/416G05B2219/43006G05B2219/45216G05B2219/50225
    • In order to enable tapping to be performed precisely and with an appropriate machining time irrespective of the diameter of a tapping tool, a configuration of the present invention includes: a program analysis unit (12) that analyzes a loaded machining program and extracts thread-related information in tapping; a gradient determination unit (14) that determines acceleration regarding movement velocity of the main spindle or the feed shaft on the basis of the thread-related information obtained by the program analysis unit (12); and an interpolation and acceleration/deceleration processing unit (13) that generates a movement command for the main spindle and the feed shaft using the acceleration determined by the gradient determination unit (14). In addition, the gradient determination unit (14) varies the acceleration during acceleration/deceleration of the main spindle or the feed shaft in accordance with the diameter of a tapping tool.
    • 为了能够精确地执行攻丝并且与适当的加工时间无关,而与攻丝工具的直径无关,本发明的结构包括:程序分析单元(12),其分析加载的加工程序并提取线程相关 攻丝信息; 梯度确定单元,根据由程序分析单元获得的线程相关信息确定关于主轴或进给轴的移动速度的加速度; 以及内插和加速/减速处理单元,其使用由所述梯度确定单元(14)确定的加速度来生成所述主轴和所述进给轴的移动指令。 此外,梯度判定部14根据攻丝工具的直径来改变主轴或进给轴的加减速时的加速度。
    • 5. 发明授权
    • Machine motion trajectory measuring device, numerically controlled machine tool, and machine motion trajectory measuring method
    • 机器运动轨迹测量装置,数控机床和机器运动轨迹测量方法
    • US09144869B2
    • 2015-09-29
    • US13133770
    • 2009-09-10
    • Ryuta SatoKotaro NagaokaTomonori Sato
    • Ryuta SatoKotaro NagaokaTomonori Sato
    • B23Q5/40B23Q5/28B23Q17/22G05B19/19
    • B23Q5/40B23Q5/28B23Q17/22G05B19/19G05B2219/41233G05B2219/43072
    • A machine motion trajectory measuring device for measuring the motion trajectory of a machine used in an apparatus which controls the position of the machine by feeding back a detected position obtained by converting the rotation angles of motors for a plurality of movable axes and then driving the motors such that the detected position follows a commanded position is provided. The machine motion trajectory measuring device includes accelerometers for measuring the acceleration of the machine; and a motion trajectory measuring unit that measures the motion trajectory of the machine by obtaining the position of the machine by integrating the acceleration twice and correcting the position of the machine such that the profile of the position of the machine coincides with the profile of the detected position or the profile of an estimated position estimated using a model for simulating the response of the position of the machine to the commanded position.
    • 一种机器运动轨迹测量装置,用于测量用于控制机器位置的装置的运动轨迹,该装置通过反馈通过转换多个可移动轴的电动机的旋转角而获得的检测位置,然后驱动电动机 使得检测到的位置跟随指令位置。 机器运动轨迹测量装置包括用于测量机器加速度的加速度计; 以及运动轨迹测量单元,其通过将加速度积分为两倍并通过校正机器的位置来获得机器的位置来测量机器的运动轨迹,使得机器位置的轮廓与检测到的机器的轮廓一致 位置或使用用于模拟机器的位置对指令位置的响应的模型估计的估计位置的轮廓。
    • 7. 发明授权
    • Image-forming apparatus
    • 图像形成装置
    • US08608394B2
    • 2013-12-17
    • US12790458
    • 2010-05-28
    • Hiroki AndoToshiyuki MatsuiSatoshi HonobeTsuneo FukuzawaTomonori SatoFumiaki MaekawaToshihiro Maruta
    • Hiroki AndoToshiyuki MatsuiSatoshi HonobeTsuneo FukuzawaTomonori SatoFumiaki MaekawaToshihiro Maruta
    • B41J29/02
    • G03G21/1619G03G21/1633G03G2221/169
    • An image-forming apparatus includes: a plural image-holding members, each image-holding member holding an image and being rotatable around a rotation shaft; a frame member that at least partially defines a space for accommodating the plural image-holding members therein; a cover provided to the frame member to open and close the space with respect to an outside, an inner side of the cover being formed with rotation shaft insertion holes each for receiving an end portion of the rotation shaft of a corresponding one of the image-holding members accommodated in the space; a supporting shaft that supports the cover such that the cover is pivotable with respect to the frame member, the supporting shaft being inserted into a supporting shaft insertion hole provided to the frame member or to the cover, the supporting shaft insertion hole being elongated in a direction having a vertical component when the cover closes the space; and a positioning mechanism that positions the cover with respect to the frame member when the cover closes the space, the positioning mechanism including at least two projections that project from one of the frame member and the cover, and that are spaced apart from each other in a direction of an axis of the supporting shaft, and projection insertion holes provided to the other one of the frame member and the cover to receive corresponding projections when the cover closes the space.
    • 图像形成装置包括:多个图像保持部件,每个图像保持部件保持图像并能够围绕旋转轴旋转; 框架构件,其至少部分地限定用于容纳多个图像保持构件的空间; 设置在所述框架构件上以相对于外部打开和关闭所述空间的盖,所述盖的内侧形成有旋转轴插入孔,每个所述旋转轴插入孔用于接收所述图像形成装置中的相应一个的旋转轴的端部, 持有成员收容在该空间内; 支撑轴,其支撑所述盖,使得所述盖相对于所述框架构件可枢转,所述支撑轴插入到设置在所述框架构件或所述盖的支撑轴插入孔中,所述支撑轴插入孔在 当盖关闭空间时具有垂直分量的方向; 以及定位机构,当所述盖关闭所述空间时,所述定位机构将所述盖相对于所述框架构件定位,所述定位机构包括从所述框架构件和所述盖中的一个突出并且彼此间隔开的至少两个突起, 支撑轴的轴线方向和设置在框架构件和盖子中的另一个的突起插入孔,以在盖子关闭空间时接收相应的突起。
    • 9. 发明授权
    • Mobile station, base station, and wireless communication method
    • 移动台,基站和无线通信方式
    • US08514801B2
    • 2013-08-20
    • US13015948
    • 2011-01-28
    • Tomonori SatoToshio Kawasaki
    • Tomonori SatoToshio Kawasaki
    • H04W4/22
    • H04W74/008H04W4/90H04W28/02H04W74/0833H04W76/50
    • A mobile station that performs wireless communication through a base station, includes a first connection setup request unit configured to make a first connection setup request for an emergency call and a normal call when communication performed in the communication region of the base station is in a congestion state, the emergency call and the normal call using a signal sequence that corresponds to a sequence number of a connection setup request signal used when communication performed in a communication region of the base station is in a normal state, and a second connection setup request unit configured to make a second connection setup request for another one of the emergency call and the normal call different from the first connection setup request, using a generated-signal sequence generated from the sequence number, when communication performed in the communication region of the base station is in the congestion state.
    • 通过基站执行无线通信的移动台包括第一连接建立请求单元,被配置为当在基站的通信区域中执行的通信处于拥塞时进行紧急呼叫和正常呼叫的第一连接建立请求 状态,紧急呼叫和使用与在基站的通信区域中执行的通信时所使用的连接建立请求信号的序列号相对应的信号序列的正常呼叫处于正常状态,以及第二连接建立请求单元 被配置为当在所述基站的通信区域中执行的通信时,使用从所述序列号生成的生成信号序列,对与所述第一连接建立请求不同的所述紧急呼叫和所述正常呼叫中的另一个进行第二连接建立请求 处于拥挤状态。
    • 10. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08437658B2
    • 2013-05-07
    • US12805672
    • 2010-08-12
    • Satoshi HonobeHiroki AndoToshiyuki MatsuiTomonori SatoTsuneo FukuzawaFumiaki Maekawa
    • Satoshi HonobeHiroki AndoToshiyuki MatsuiTomonori SatoTsuneo FukuzawaFumiaki Maekawa
    • G03G15/00
    • G03G15/161G03G15/0194G03G15/1615G03G2215/0132G03G2215/0193
    • An image forming apparatus includes an operating portion that moves between a first operating position in which each of positioning members is moved to each of positioning positions and a second operating position in which each of the positioning members is moved to each of releasing positions through each of transmitting members and each of transmitted members when a first transmitting member and a first transmitted member are coupled to each other, and that carries out the movement to a first operating position to move a second positioning member to a second positioning position through a second transmitting member and a second transmitted member and carries out the movement to a second operating position to move the second positioning member to a second releasing position when the first transmitting member and the first transmitted member are decoupled from each other.
    • 图像形成装置包括:操作部,其在每个定位构件移动到每个定位位置的第一操作位置和第二操作位置之间移动;其中每个定位构件通过每个定位构件中的每一个移动到每个释放位置 当第一传递构件和第一传递构件彼此联接时,传递构件和每个传递构件,并且将运动执行到第一操作位置以通过第二传递构件将第二定位构件移动到第二定位位置 和第二传递构件,并且当第一传递构件和第一传递构件彼此分离时,将运动执行到第二操作位置以将第二定位构件移动到第二释放位置。