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    • 1. 发明申请
    • MACHINE TOOL, MACHINING METHOD, PROGRAM AND NC DATA GENERATION DEVICE
    • 机床,加工方法,程序和NC数据生成装置
    • US20120197424A1
    • 2012-08-02
    • US13332267
    • 2011-12-20
    • Akira KimuraKatsuhiko Ono
    • Akira KimuraKatsuhiko Ono
    • G05B19/19
    • G05B19/184G05B2219/35128G05B2219/50353G05B2219/50355
    • A work having a non-circular cross-section is machined by relative movement between the work and a tool, as the relative position and angle between the work and tool are changed at least within a plane including the cross-section of the work. In machining along a preset tool path, the difference between the relative angle at a point on the preset tool path which machining is started and that point on the preset tool path at which machining is finished is calculated. Time needed in machining along the preset tool path is equally divided by a preset number at equal time divisions, and positions on the tool path corresponding to equal time divisions are set as tool path points. When the tool moves through each point, the relative angle is continuously changed an angle corresponding to division of the difference of the relative angles by the preset number of equal time divisions (FIG. 3).
    • 具有非圆形横截面的工件通过工件和工具之间的相对运动来加工,因为工件和工具之间的相对位置和角度至少在包括工件的横截面的平面内改变。 在沿着预设刀具路径进行加工时,计算加工开始的预设刀具路径上的点处的相对角度与加工完成的预设刀具路径上的点之间的差。 沿着预设刀具路径加工所需的时间,以相等的时间间隔除以预设的数字,刀具路径上相当于时间分割的位置设置为刀具路径点。 当工具移动通过每个点时,相对角度连续地改变一个对应于相对角度差除以相等时间间隔的预定数量的角度(图3)。
    • 3. 发明授权
    • Machine tool, machining method, program and NC data generation device
    • 机床,加工方法,程序和NC数据生成装置
    • US08838265B2
    • 2014-09-16
    • US13332267
    • 2011-12-20
    • Akira KimuraKatsuhiko Ono
    • Akira KimuraKatsuhiko Ono
    • G06F19/00G05B13/00B25J9/16G05B19/18G05B19/25G05B19/23
    • G05B19/184G05B2219/35128G05B2219/50353G05B2219/50355
    • A work having a non-circular cross-section is machined by relative movement between the work and a tool, as the relative position and angle between the work and tool are changed at least within a plane including the cross-section of the work. In machining along a preset tool path, the difference between the relative angle at a point on the preset tool path which machining is started and that point on the preset tool path at which machining is finished is calculated. Time needed in machining along the preset tool path is equally divided by a preset number at equal time divisions, and positions on the tool path corresponding to equal time divisions are set as tool path points. When the tool moves through each point, the relative angle is continuously changed an angle corresponding to division of the difference of the relative angles by the preset number of equal time divisions.
    • 具有非圆形横截面的工件通过工件和工具之间的相对运动来加工,因为工件和工具之间的相对位置和角度至少在包括工件的横截面的平面内改变。 在沿着预设刀具路径进行加工时,计算加工开始的预设刀具路径上的点处的相对角度与加工完成的预设刀具路径上的点之间的差。 沿着预设刀具路径加工所需的时间,以相等的时间间隔除以预设的数字,刀具路径上相当于时间分割的位置设置为刀具路径点。 当工具移动通过每个点时,相对角度连续地改变与相对角度差的除法相等预定数量的相等时间分割的角度。
    • 4. 发明申请
    • MACHINE TOOL CONTROL SYSTEM
    • 机床工具控制系统
    • US20120197421A1
    • 2012-08-02
    • US13332261
    • 2011-12-20
    • Akira KimuraKatsuhiko Ono
    • Akira KimuraKatsuhiko Ono
    • G05B19/4099
    • G05B19/40932Y02P90/265
    • An optimum cutting feed rate of a machine tool is calculated at the outset and a tool path as well as the optimum cutting feed rate calculated is directly output to a driving unit of the machine tool. A relative movement between the work and a tool is made to occur along the tool path at the optimum cutting feed rate for each part of the tool path. To this end, a control system includes a CL data generating unit 32, a CL data memory 33, a driving capability data memory 34, a cutting feed rate data generation unit 35, a cutting feed rate data memory 36, and a controller 42.
    • 首先计算机床的最佳切削进给速度,并将刀具路径以及计算出的最佳切削进给速度直接输出到机床的驱动单元。 工件和工具之间的相对运动沿刀具路径以刀具路径的每个部分的最佳切削进给速率发生。 为此,控制系统包括CL数据生成单元32,CL数据存储器33,驱动能力数据存储器34,切割进给速率数据生成单元35,切割进给速率数据存储器36和控制器42。
    • 6. 发明授权
    • Control system for a machine tool
    • 机床控制系统
    • US08972040B2
    • 2015-03-03
    • US13332261
    • 2011-12-20
    • Akira KimuraKatsuhiko Ono
    • Akira KimuraKatsuhiko Ono
    • G05B19/4099G05B19/4093
    • G05B19/40932Y02P90/265
    • An optimum cutting feed rate of a machine tool is calculated at the outset and a tool path as well as the optimum cutting feed rate calculated is directly output to a driving unit of the machine tool. A relative movement between the work and a tool is made to occur along the tool path at the optimum cutting feed rate for each part of the tool path. To this end, a control system includes a CL data generating unit 32, a CL data memory 33, a driving capability data memory 34, a cutting feed rate data generation unit 35, a cutting feed rate data memory 36, and a controller 42.
    • 首先计算机床的最佳切削进给速度,并将刀具路径以及计算出的最佳切削进给速度直接输出到机床的驱动单元。 工件和工具之间的相对运动沿刀具路径以刀具路径的每个部分的最佳切削进给速率发生。 为此,控制系统包括CL数据生成单元32,CL数据存储器33,驱动能力数据存储器34,切割进给速率数据生成单元35,切割进给速率数据存储器36和控制器42。
    • 8. 发明申请
    • Position Information Transmission Device, Position Information Transmission System and Position Information Setting Method
    • 位置信息传输装置,位置信息传输系统和位置信息设置方法
    • US20130243040A1
    • 2013-09-19
    • US13819987
    • 2011-11-07
    • Akira Kimura
    • Akira Kimura
    • H04B1/707
    • H04B1/707G01S5/0226G01S19/11G01S19/48H04W4/029
    • An IMES transmitter has a control unit, a non-volatile memory to record a transmitter number of the IMES transmitter, and a data I/F. When registration data Dset associating the transmitter number with position information is input from the data I/F, the control unit records the position information included in the registration data Dset if the registration data Dset includes the transmitter number of the IMES transmitter, and transmits the registration data Dset from a transmitting unit if the registration data Dset includes the transmitter number of another position information transmission device. The device registers various information such as position information on plural position information transmission devices without requiring complicated equipments.
    • IMES发射机具有控制单元,用于记录IMES发射机的发射机号码的非易失性存储器和数据I / F。 如果从数据I / F输入将发送机号码与位置信息相关联的登录数据Dset,则如果登记数据Dset包含IMES发送机的发送号码,则控制部件记录包含在登录数据Dset中的位置信息, 如果登记数据Dset包括另一个位置信息传输装置的发射机号码,则从发射单元注册数据Dset。 该装置在不需要复杂的设备的情况下,对多个位置信息发送装置登记诸如位置信息的各种信息。
    • 9. 发明授权
    • Multi-piece solid golf ball
    • 多件式固体高尔夫球
    • US08371960B2
    • 2013-02-12
    • US12613111
    • 2009-11-05
    • Akira KimuraHideo Watanabe
    • Akira KimuraHideo Watanabe
    • A63B37/06
    • A63B37/0004A63B37/0016A63B37/0018A63B37/0019A63B37/002A63B37/0021A63B37/0024A63B37/0033A63B37/0039A63B37/0043A63B37/0045A63B37/0047A63B37/0062A63B37/0063A63B37/0064A63B37/0065A63B37/0076A63B37/0081A63B37/0087A63B37/0092A63B37/0095A63B37/0096A63B37/02
    • The present invention provides a multi-piece solid golf ball having a core, an envelope encasing the core, an intermediate layer encasing the envelope, and a cover which encases the intermediate layer and has formed on a surface thereof a plurality of dimples. The surface hardness of the core has a JIS-C hardness value of 40 to 95, the center hardness of the core has a JIS-C hardness value of 30 to 72, and the hardness difference therebetween is from 4 to 14. The envelope is composed of at least two layers. The core is formed primarily of a rubber material. The envelope, intermediate layer and cover are each formed primarily of the same or different resin materials. An optimized surface hardness relationship exists between the core, a Sphere I composed of the core encased by the envelope layers, a Sphere II composed of the core encased by the envelope layers and the intermediate layer, and a Sphere III composed of the core encased by the envelope layers, the intermediate layer and the cover. The golf ball has an outstanding flight performance and controllability which are acceptable to professionals and other skilled players, in addition to which it has an excellent durability to cracking under repeated impact and an excellent scuff resistance.
    • 本发明提供了一种多芯固体高尔夫球,其具有芯,包封芯的外壳,封装外壳的中间层,以及包围中间层并在其表面上形成多个凹坑的盖。 芯的表面硬度的JIS-C硬度值为40〜95,芯的中心硬度为JIS-C硬度值为30〜72,硬度差为4〜14。 由至少两层组成。 芯主要由橡胶材料形成。 信封,中间层和盖各自主要由相同或不同的树脂材料形成。 核心之间存在优化的表面硬度关系,由包络层包围的核心组成的球体I,由包层和中间层包围的核心组成的球体II和由核心包围的核心组成的球体III 包层,中间层和盖。 高尔夫球具有突出的飞行性能和可控性,这对于专业人员和其他技术熟练的玩家都是可以接受的,除此之外,它具有优异的耐久性,在反复冲击下具有良好的抗裂性和优异的抗磨损性。