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    • 1. 发明专利
    • Clamp device
    • 夹钳装置
    • JP2011218549A
    • 2011-11-04
    • JP2011065615
    • 2011-03-24
    • Honda Motor Co Ltd本田技研工業株式会社
    • SAKAI DAIKIARAKAWA SHUGOKASHIWAGI HIROSHIKANEKO MASAYUKIITO KAZUHIDEISHII TETSUO
    • B23Q3/18
    • PROBLEM TO BE SOLVED: To provide a clamp device capable of changing a shift amount of a workpiece by a simple constitution.SOLUTION: The clamp device includes shift tables 52A and 52B rotatable around rotary shafts 41A1 and 41A2, drive motors 41A and 41B for adjusting rotation positions of the shift tables 52A and 52B, each of a pallet clamp cylinder and a positioning cylinder provided in the shift tables 52A and 52B to hold a pallet 5 mounted with a cylinder head 3, positioning shafts 61A and 61B fixed to upper ends of the shift tables 52A and 52B, hydraulic cylinders 59A and 59B for pushing the shift tables 52A and 52B upward, and index plates 63A and 63 on which the positioning shafts 61A and 61B abut when the shift tables 52A and 52B are pushed upward. The index plates 63A and 63 include a plurality of plate portions of different thicknesses which are arranged on concentric circles.
    • 要解决的问题:提供能够通过简单的构造改变工件的移动量的夹紧装置。 解决方案:夹紧装置包括可围绕旋转轴41A1和41A2旋转的换档台52A和52B,用于调节换档台52A和52B的旋转位置的驱动马达41A和41B,每个托盘夹紧缸和设置有定位缸 在换档台52A和52B中,用于保持安装有气缸盖3的托盘5,固定在换档台52A和52B的上端的定位轴61A和61B,用于向上推动换档台52A和52B的液压缸59A和59B ,以及当换档台52A和52B被向上推动时定位轴61A和61B抵接的分度板63A和63。 分度板63A和63包括布置在同心圆上的多个不同厚度的板部分。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Machine tool
    • 机床
    • JP2007283439A
    • 2007-11-01
    • JP2006113709
    • 2006-04-17
    • Honda Motor Co Ltd本田技研工業株式会社
    • YAMAURA SUKENORIARAKAWA SHUGOINAGI KATSUSHIKOIZUMI TATSUYATANAKA TATSUHIKO
    • B23Q1/64B23Q1/54B23Q3/157
    • PROBLEM TO BE SOLVED: To compactly compose a lightweight machine tool having high stability.
      SOLUTION: A machine tool 10 has a column 18 slidingly moving in the Z direction in a horizontal plane, a support body 22 provided on the column 18 and sliding in the vertical direction, a rotation arm 32 supported at the support body 22 and endlessly rotatable in a vertical plane facing workpiece W, an arm motor 34 for rotating the rotation arm 32, a processing spindle 36 rotatably supported and placed at a position of a distance R from the center C of rotation of the rotation arm 32, and a spindle motor 38 for rotating the processing spindle 36.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:紧凑地组成具有高稳定性的轻型机床。 解决方案:机床10具有在水平面上在Z方向上滑动的柱18,设置在柱18上并沿垂直方向滑动的支撑体22,支撑在支撑体22处的旋转臂32 并且在面向工件W的垂直平面中不停地旋转,用于旋转旋转臂32的臂电动机34,可旋转地支撑并放置在距离旋转臂32的旋转中心C的距离R的位置的处理主轴36,以及 用于使处理主轴36旋转的主轴电机38.版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Method of detecting position, and machine tool
    • 检测位置的方法和机床
    • JP2012030304A
    • 2012-02-16
    • JP2010170614
    • 2010-07-29
    • Honda Motor Co Ltd本田技研工業株式会社
    • ARAKAWA SHUGOSHINOHARA TETSUYASHIBATA TAKESHIKUBO MASAKAZU
    • B23Q17/00
    • PROBLEM TO BE SOLVED: To provide a method of detecting a position capable of accurately detecting the elongation of a chain even if an inexpensive noncontact sensor is used.SOLUTION: This method of detecting a position for detecting the positional displacement of an object 118 from a target position in the noncontact manner when the object 118 is arranged at the target position includes: a step of acquiring the position information on the target position; a step of moving the object 118 in the direction in which two proximity sensors 125a, 125b arranged at a predetermined interval at the target position are arrayed; and a step of determining that the object 118 is positionally displaced from the target position when the output of the proximity sensor 125a and/or 125b is not determined to be a detection determination when the object 118 is arranged at the target position.
    • 要解决的问题:即使使用廉价的非接触传感器,也提供一种检测能够精确地检测链的伸长的位置的方法。 解决方案:当物体118布置在目标位置时,以非接触方式检测物体118与目标位置的位置偏移的位置的方法包括:获取目标位置信息的步骤 位置; 排列在目标位置上以预定间隔布置的两个接近传感器125a,125b的方向移动物体118的步骤; 以及当对象118布置在目标位置时,当接近传感器125a和/或125b的输出未被确定为检测确定时,确定对象118位置地从目标位置移位的步骤。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Method for setting deflection measurement position
    • 设置偏差测量位置的方法
    • JP2012024906A
    • 2012-02-09
    • JP2010168381
    • 2010-07-27
    • Honda Motor Co Ltd本田技研工業株式会社
    • ARAKAWA SHUGOKOSAKA TAKESHIKOIKE TAICHIMASUDA KENICHI
    • B23Q17/22G01B21/24
    • PROBLEM TO BE SOLVED: To provide a method for setting a deflection measurement position, which enables the efficient setting of the deflection measurement position of a tool.SOLUTION: A deflection measurement device 20 prestores a range from a first measurement position, in which a deflection measurement value of a deflection sensor 21 of each of the plurality of tools T serves as a requirement value, to a second measurement position, in which the deflection measurement value serves as a measurement limit value of the deflection sensor 21, as a deflection-measurable range Dwith respect to a distance from mounting positions of the plurality of tools T, by a measurement range DB32. In addition, the deflection measurement device 20 computes the deflection-measurable range Dof the tool T for the deflection sensor 21, on the basis of a distance from the mounting position of the tool T to a leading end, measured by a distance sensor 22, and the measurement range DB32, and sets the deflection measurement position of the deflection sensor 21 on the basis of the computed deflection-measurable range D.
    • 要解决的问题:提供一种用于设定偏转测量位置的方法,其能够有效地设置工具的偏转测量位置。 解决方案:偏转测量装置20预先将来自第一测量位置的范围预先设定为第二测量位置,其中多个工具T中的每一个的偏转传感器21的偏转测量值作为要求值, 其中偏转测量值用作偏转传感器21的测量极限值,作为偏转可测量范围D m 相对于多个 工具T,由测量范围DB32。 此外,偏转测量装置20基于距离安装位置的距离来计算用于偏转传感器21的工具T的偏转可测量范围D m 工具T到由距离传感器22测量的前端和测量范围DB32,并且基于所计算的偏转可测量范围D 设定偏转传感器21的偏转测量位置。 米。 版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Expansion cover apparatus
    • 扩展盖装置
    • JP2010058234A
    • 2010-03-18
    • JP2008227510
    • 2008-09-04
    • Honda Motor Co Ltd本田技研工業株式会社
    • ARAKAWA SHUGOSAKAI DAIKIYAMAURA SUKENORI
    • B23Q11/08
    • PROBLEM TO BE SOLVED: To prevent an expanding and contracting stroke from being shortened by not allowing an angle made between a pair of end part link bars located in an end part in an expanding direction to become 180° or more, and to improve durability in an expansion cover apparatus in which each coating plate is connected to be flexible by a pantograph-type link mechanism made of a plurality of link bars with a plurality of coating plates stacked. SOLUTION: Stopper parts 67p, 67p, 77p, 77p abutting on the end part link bars 68a, 68a, 78a, 78a and stopping the angle made between a pair of end part link bars 68a, 68a, 78a, 78a from becoming 180° or more are provided on the coating plates 67, 77 located in an end in the direction of board thickness. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了通过不允许位于扩展方向的端部中的一对端部连杆之间的角度变得180°以上,来防止伸缩行程缩短,并且 提高膨胀盖装置中的耐久性,其中每个涂布板通过由多个连接杆制成的受电弓型连杆机构连接而具有柔性,该多个连杆具有堆叠的多个涂层板。 解决方案:抵靠端部连杆68a,68a,78a,78a并阻止一对端部连杆68a,68a,78a,78a之间形成的角度的挡块部件67p,67p,77p,77p成为 在位于板厚度方向上的端部的涂布板67,77上设置180°以上。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Tool breakage detection device
    • 工具断路检测装置
    • JP2010131719A
    • 2010-06-17
    • JP2008311082
    • 2008-12-05
    • Honda Motor Co Ltd本田技研工業株式会社
    • UCHIKAWA MOTONORISHIBATA SHOJIMASUDA KENICHISHIBATA TAKESHIARAKAWA SHUGO
    • B23Q3/155B23Q17/09
    • PROBLEM TO BE SOLVED: To provide a tool breakage detection device capable of quickly detecting the breakage of a tool and increasing a production efficiency by minimizing a system stop. SOLUTION: This tool breakage detection device 200 is mounted on a machine tool system 10 having a first machine tool 10a and a second machine tool 10b to which detachable tools T are attached for machining a workpiece W and tool stockers 80a, 80b which store the tools T so as to be exchangeable with a machining spindle 36 and index the tools T by the rotating operation. The tool breakage detection device 200 includes a bracket 206 having a pair of tool access parts 202, 202 which are simultaneously accessible to at least one of the tools T stored in the respective tool stockers 80a, 80b, sensors 212 which are provided to the respective tool access parts 202 and detect the breakage of the tools T, and a moving mechanism 210 for moving the bracket 206 in the axial direction of the tools T. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够快速检测工具断裂并通过最小化系统停止来提高生产效率的刀具断裂检测装置。 解决方案:该刀具破损检测装置200安装在具有第一机床10a和第二机床10b的机床系统10上,安装有可拆卸工具T用于加工工件W和工具储料器80a,80b, 存储工具T,以便与加工主轴36交换,并通过旋转操作对工具T进行分度。 刀具破损检测装置200包括支架206,托架206具有一对刀具准入部件202,202,该刀具通道部件202,202可以被存储在相应的刀具存储器80a,80b中的至少一个刀具T同时接近, 工具接入部件202和检测工具T的断裂;以及移动机构210,用于沿着工具T的轴向方向移动托架206.版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Machine tool system
    • 机床系统
    • JP2010131708A
    • 2010-06-17
    • JP2008310164
    • 2008-12-04
    • Honda Motor Co Ltd本田技研工業株式会社
    • UCHIKAWA MOTONORISHIBATA SHOJISHIBATA TAKESHIARAKAWA SHUGO
    • B23Q3/157
    • PROBLEM TO BE SOLVED: To provide a machine tool system capable of stably receiving and delivering tools and suppressing the lowering of the machining accuracy of a workpiece and the occurrence of noise.
      SOLUTION: This machine tool system 10 includes a machining spindle 36 which allows tools T for machining the workpiece W to be attached thereto and detached therefrom and machines the desired portion of the workpiece W through a swing arm 32, main stockers 80a, 80b which hold the plurality of tools T attachable to and detachable from the machining spindle 36 and index the tools by the rotating operation, a sub stocker 100 for holding the tools T so as to be able to receive and deliver the tools between the main stockers 80a, 80b, and a tool receiving and delivering mechanism 140 for receiving and delivering the tools between the main stockers 80a, 80b and the sub stocker 100. The turning center C1 of the machining spindle 36, the rotating center C2 of the main stockers 80a, 80b, and the receiving and delivering position for the tools T between the sub stocker 100 and the tool receiving and delivering mechanism 140 are substantially positioned within the same vertical plane YZ.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供能够稳定地接收和传送工具并抑制工件的加工精度的降低和噪音的发生的机床系统。 解决方案:该机床系统10包括加工主轴36,该加工主轴36允许工具T用于加工要附接到其上的工件W并将其从中拆卸,并通过摆臂32,主储料80a, 80b,其保持可附接到加工主轴36并可拆卸的多个工具T,并通过旋转操作来对工具进行分度;副储盘器100,用于保持工具T,以便能够在主存储器之间接收和传送工具 80a,80b,以及用于在主存储器80a,80b和副储盘器100之间接收和传送工具的工具接收和传送机构140.加工主轴36的转动中心C1,主存储器80a的旋转中心C2 80b,并且副储盘器100和工具接收输送机构140之间的工具T的接收和传送位置基本上位于同一垂直平面YZ内。 版权所有(C)2010,JPO&INPIT
    • 10. 发明专利
    • Method of detecting runout of tool
    • 检测工具运行的方法
    • JP2012030305A
    • 2012-02-16
    • JP2010170615
    • 2010-07-29
    • Honda Motor Co Ltd本田技研工業株式会社
    • ARAKAWA SHUGOMASUDA KENICHISHINOHARA TETSUYA
    • B23Q17/22B23Q17/12
    • PROBLEM TO BE SOLVED: To provide a method of detecting the runout of a tool, which does not tend to be affected by the vibration generated during a tool replacement operation when the runout of a tool is detected when the replacement operation of the tool T is performed.SOLUTION: This method of detecting the runout of a tool for a machine tool 10 including at least two machining spindles 36 to which the tool T can be detachably mounted includes: an oscillatory waveform detection step of performing the replacement operation of the tool T on one machining spindle 36 and detecting the oscillatory waveform generated by the replacement operation; a frequency specifying step of specifying a frequency at which the oscillation is maximum based on the detected oscillatory waveform; a scanning time set step of setting a cycle in a frequency band higher than the specified frequency as a scanning time used when the runout of the tool T is detected; and a tool runout detection step of performing the replacement operation of the tool T on one machining spindle 36 and detecting the runout of the tool T in the set scanning time while rotating the other one machining spindle 36.
    • 要解决的问题:提供一种检测工具的跳动的方法,该方法不会受到在工具更换操作期间产生的振动的影响,当检测到工具的更换操作时检测到工具的跳动 工具T被执行。 检测用于机床10的工具的跳动的方法,该工具包括至少两个加工主轴36,工具T可拆卸地安装在其上,包括:振荡波形检测步骤,执行刀具的更换操作 在一个加工主轴36上并检测由替换操作产生的振荡波形; 频率指定步骤,基于检测到的振荡波形来指定振荡最大的频率; 扫描时间设定步骤,当检测到所述工具T的跳动时,设定高于所述指定频率的频带中的周期作为扫描时间; 以及工具跳动检测步骤,在一个加工主轴36上执行刀具T的更换操作,并且在旋转另一个加工主轴36的同时在设定的扫描时间内检测刀具T的跳动。(COPYRIGHT):(C) 2012年,JPO&INPIT