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    • 21. 发明申请
    • LUBRICATION STRUCTURE OF GEAR TRAIN ENCASED IN GEAR CASE
    • 齿轮箱齿轮的润滑结构
    • US20100282013A1
    • 2010-11-11
    • US12681585
    • 2009-03-17
    • Akihiko FujimotoKazunari Okabe
    • Akihiko FujimotoKazunari Okabe
    • F16H57/04
    • F16H57/0423F16H57/0495Y10T74/19991
    • In a gear train in which a gear case encases a first gear meshing with a second gear having a diameter smaller than that of the first gear, a sufficient amount of lubricant is normally supplied to the upper second gear. As a result, it is possible to provide a lubrication structure of a gear train encased in a gear case designed to prevent occurrence of problems such as poor lubrication and seizure of a gear train. In a lubrication structure inside a gear case having a configuration in which the gear case encases the first gear meshing with the second gear having the diameter smaller than that of the first gear, and the first gear is disposed so as to have a minute gap between the gear case and an outer diameter of the first gear, oil inside an oil chamber below the first gear is pumped up with a movement of gear teeth forming a minute gap by a rotation of the first gear; the pumped oil is discharged into a space above the first gear and inside the gear case; the pumped oil is received by an oil receiver provided in the upper portion of the second gear and including a rib for receiving the pumped oil and a recess surrounded by the rib; and then the oil is supplied to lubricate a gear tooth portion and a bearing portion of the second gear.
    • 在齿轮箱中,齿轮箱包围与直径小于第一档的直径的第二齿轮啮合的第一齿轮,通常将足够量的润滑剂供给到上二档。 结果,可以提供一种装在齿轮箱中的齿轮系的润滑结构,该齿轮系设计为防止发生齿轮系润滑不良和卡塞等问题。 在齿轮箱内的润滑结构中,齿轮箱具有齿轮箱包围与直径小于第一齿轮直径的第二齿轮啮合的第一齿轮的构造,并且第一齿轮设置成在第一齿轮之间具有微小间隙 所述齿轮箱和所述第一齿轮的外径在所述第一齿轮下方的油室内的油通过所述第一齿轮的旋转而形成微小间隙的齿轮的运动被泵送; 泵送的油被排出到第一齿轮上方的空间和齿轮箱内部; 抽吸油被设置在第二齿轮的上部的油接收器接收,并且包括用于接收泵送的油的肋和由肋包围的凹部; 然后供给油以润滑第二齿轮的齿轮齿部分和轴承部分。
    • 22. 发明申请
    • ALARM DEVICE FOR CLUTCH
    • 报警装置
    • US20100200357A1
    • 2010-08-12
    • US12598154
    • 2008-10-22
    • Kazunari OkabeAkihiko FujimotoTakeshi Harasawa
    • Kazunari OkabeAkihiko FujimotoTakeshi Harasawa
    • F16D13/58
    • F16D48/066F16D2500/1026F16D2500/1107F16D2500/3024F16D2500/30405F16D2500/30406F16D2500/50296F16D2500/7101Y10T477/6395Y10T477/6403
    • Providing an alarm device for a clutch that issues an alarm the clutch lifetime prior to the clutch lifetime expiration, so that the information regarding the lifetime expiration is informed of; further, the failure protection measures for the clutch are adopted. An alarm device for a clutch, whereby a clutch disc connected to an input shaft is connected to or disconnected from a counter clutch disc connected to an output shaft, so that the input shaft is connected to or disconnected from the output shaft; wherein, the clutch comprises: the slip heat release threshold setting means 104, the slip heat release calculator 105, the alarm device 11; wherein, the slip heat release threshold setting means establishes a threshold criteria as to the clutch damage or the clutch lifetime, in a form of the relation between the heat release generated in a clutch slip operation (so called half-clutch operation) and the frequency of the heat release occurrences, thereby the heat release is measured per every predetermined time increment (interval), and the number of the occurrences is counted through the predetermined clutch slip operation duration under a clutch operation mode condition till the clutch is damaged, the duration being changed and repeated so that the frequency as to every predetermined heat release interval to which the generated heat release belongs is counted; the slip heat release calculator 105 calculates the heat release during the clutch operation, based on the hydraulic oil pressure in the actual clutch operation, as well as based on the relative circumferential speed between the disc and the counter disc; the alarm device 11 issues an alarm based on the calculation result through the slip heat release calculating means 105, as well as based on the slip heat release threshold setting means 104.
    • 提供用于离合器的报警装置,其在离合器有效期满之前发出报警离合器寿命,从而通知有关终身期满的信息; 此外,采用离合器的故障保护措施。 一种用于离合器的报警装置,其中连接到输入轴的离合器盘与连接到输出轴的反离合器盘连接或断开,使得输入轴连接到输出轴或与输出轴断开; 其中,离合器包括:滑移热释放阈值设定装置104,滑移散热计算器105,报警装置11; 其中,滑移热释放阈值设定装置以离合器打滑操作(所谓的半离合器操作)中产生的放热与频率之间的关系的形式,建立关于离合器损坏或离合器寿命的阈值准则 发生热释放,从而每隔预定时间增量(间隔)测量放热量,并且在离合器操作模式条件下通过预定的离合器打滑操作持续时间计数出现次数,直到离合器损坏,持续时间 对所产生的热释放所属的每个预定的热释放间隔的频率进行计数; 滑移散热计算器105基于实际离合器操作中的液压油以及基于盘和计数盘之间的相对圆周速度来计算离合器操作期间的热释放; 报警装置11基于滑移热释放计算装置105的计算结果以及基于滑移热释放阈值设定装置104发出报警。
    • 23. 发明申请
    • Tool changing device and tool cleaning method
    • 换刀装置和刀具清洗方法
    • US20050032615A1
    • 2005-02-10
    • US10887912
    • 2004-07-12
    • Naoki SatoAkihiko Fujimoto
    • Naoki SatoAkihiko Fujimoto
    • B23Q3/155B23Q11/00B23Q3/157
    • B23Q11/005B23Q3/1552B23Q3/15534Y10T29/5154Y10T483/10Y10T483/15Y10T483/1755Y10T483/1891
    • A tool changing device and a tool cleaning method capable of surely removing foreign matter such as swarf adhered to tapered portions and/or flange portions of tools, which serve as contact faces to be in contact with a spindle. There is arranged tool cleaning nozzles for spouting coolant on both sides of the spindle in the rotating position of a turret. The tool cleaning nozzle has a position and a posture such that the coolant spouted from the nozzle hits against the tapered portions and/or the flange portions of the tools held by the turret. The coolant is spouted from the tool cleaning nozzle with the rotation of the turret at the time of tool selection. Each time the turret rotates, the tapered portions and/or the flange portions of the tools held by the turret are cleaned by the coolant. Even if foreign matter, such as swarf, is adhered to the standby tools held by the turret, it is possible to surely remove the foreign matter, such as swarf, since the tools are cleaned during the rotation of the turret.
    • 一种能够可靠地除去作为与主轴接触的接触面的工具的锥形部和/或凸缘部的切屑等杂质的刀具更换装置和工具清洗方法。 在转塔的旋转位置设置有用于在主轴的两侧喷射冷却剂的工具清洁喷嘴。 工具清洁喷嘴具有使得从喷嘴喷出的冷却剂抵靠由转台保持的工具的锥形部分和/或凸缘部分的位置和姿态。 在刀具选择时,刀具旋转时,从工具清洁喷嘴喷出冷却液。 每当转塔旋转时,由转台保持的工具的锥形部分和/或凸缘部分被冷却剂清洁。 即使诸如切屑等异物被附着在由转台所保持的待机工具上,由于在转塔旋转期间清洁工具,因此可以确实地除去诸如切屑的异物。
    • 25. 发明授权
    • Machining method using numerical control apparatus
    • 数控加工方法
    • US5815400A
    • 1998-09-29
    • US679158
    • 1996-07-10
    • Hayao HiraiAkihiko Fujimoto
    • Hayao HiraiAkihiko Fujimoto
    • B23Q15/00B23Q15/02G05B19/401G05B19/4093G05B19/4155G05B19/418G06F19/00G06G7/64G06G7/66
    • G05B19/401G05B19/40937G05B19/41875G05B2219/36283G05B2219/36284G05B2219/37576Y02P90/22Y02P90/265
    • A machining method in which a numerically controlled apparatus carries out a series of operations such as the determination of machining procedures, the selection of a tool, the preparation of a workpiece and inspection programs, machining operation, and inspection, required when a numerically controlled machine tool carries out a machining operation on the basis of input graphics and process information, using at least machine tool information, tool information, cutting condition information, material information, machining method symbol information, finishing symbol information, finishing allowance information, surface treatment information, information about thermal refining, and cost information, the method includes the steps of, while using electronic calculators including a numerical control unit, an FA system, and a personal computer, and a series of data processing units and machine tools, registering a variety of information files; inputting machining pattern data; processing a finished pattern; processing a machining pattern before a workpiece has finished undergoing another process; identifying the pattern; making a decision with regard to a machining process; and deciding whether or not material should be measured.
    • 一种数控设备执行一系列操作的加工方法,所述加工方法如数控机器所需的一系列操作,例如确定加工程序,刀具选择,准备工件以及检查程序,加工操作和检查 使用至少机床信息,工具信息,切割条件信息,材料信息,加工方法符号信息,整理符号信息,精加工余量信息,表面处理信息等,基于输入图形和处理信息进行加工操作。 关于热精炼的信息和成本信息,该方法包括以下步骤:使用包括数字控制单元,FA系统和个人计算机的电子计算器以及一系列数据处理单元和机床, 信息文件; 输入加工图案数据; 加工成品图案; 在工件完成之前处理加工图案进行另一过程; 识别图案; 就加工过程作出决定; 并决定是否应测量材料。
    • 26. 发明授权
    • Automatic tool changer
    • 自动换刀
    • US5499963A
    • 1996-03-19
    • US119221
    • 1993-09-28
    • Akihiko FujimotoHisao IshiiShinya OkamotoNaoki Sato
    • Akihiko FujimotoHisao IshiiShinya OkamotoNaoki Sato
    • B23Q3/157
    • B23Q3/15706B23Q3/15534Y10T483/179Y10T483/1795
    • An automatic tool changer for a machine tool comprises a first cam (C.sub.S) for swinging a turret (38) by cooperation with a first cam roller (21) mounted on a back face of the turret (38); a second cam (C.sub.L) for raising and lowering the turret (38) with respect to the spindle head in a direction along a central axis of the spindle of the machine tool; and a link (6, 8, 14, 16) having a second cam roller (22) cooperating with the second cam (C.sub.L), the link raising or lowering the turret (38) with respect to the spindle when the turret (38) is swung by the cooperation between the first cam (C.sub.S) and the first cam roller (21) in order to reduce the shock generated at the spindle and the turret (38) at the tool change.
    • PCT No.PCT / JP93 / 00111 Sec。 371日期:1993年9月28日 102(e)日期1993年9月28日PCT 1993年1月29日PCT公布。 第WO93 / 14901号公报 日期:1993年8月5日。一种用于机床的自动换刀器包括:通过与安装在转架(38)的背面上的第一凸轮辊(21)配合摆动转台(38)的第一凸轮(CS) ; 第二凸轮(CL),用于沿着机床的主轴的中心轴线的方向相对于主轴头升高和降低转台(38); 以及具有与所述第二凸轮(CL)配合的第二凸轮辊(22)的连杆(6,8,14,16),所述连杆相对于所述主轴在所述转台(38)处升高或降低所述转台(38) 通过第一凸轮(CS)和第一凸轮辊(21)之间的配合摆动,以便减少在工具更换时在主轴和转动架(38)处产生的冲击。
    • 28. 发明授权
    • Numerical control machine
    • 数控机
    • US4862379A
    • 1989-08-29
    • US69336
    • 1987-07-02
    • Akihiko Fujimoto
    • Akihiko Fujimoto
    • G05B19/414G05B19/418
    • G05B19/4181G05B19/414G05B2219/36513Y02P90/06Y02P90/12
    • This invention is a numerical control machine having information input/output units for working data and for control data, a single control unit including a CPU, arithmetic unit, and a plurality of memory areas which may include program areas and data areas, and a driving unit including a plurality of independently operable drive system, which may be divided by system control means into a plurality of arbitrary groups corresponding to a plurality of independently executable control programs so that each group may be independently controlled by a separate program, wherein the entire numerical control apparatus acts as a plurality of control processing systems so that each operable system may be independently controlled by an independent program or a group of systems may be controlled by the same program.
    • 本发明是一种具有用于工作数据和控制数据的信息输入/输出单元的数控机器,包括CPU,运算单元和可包括程序区域和数据区域的多个存储区域的单个控制单元和驱动 单元包括多个可独立操作的驱动系统,其可以由系统控制装置划分成与多个可独立执行的控制程序相对应的多个任意组,使得每个组可以由单独的程序独立地控制,其中整个数字 控制装置用作多个控制处理系统,使得每个可操作系统可以由独立程序独立控制,或者一组系统可以由相同的程序控制。
    • 30. 发明授权
    • Controller for a machine tool for executing tapping
    • 用于执行攻丝的机床的控制器
    • US09037300B2
    • 2015-05-19
    • US13401925
    • 2012-02-22
    • Susumu MaekawaAkihiko Fujimoto
    • Susumu MaekawaAkihiko Fujimoto
    • G05D13/66B23Q15/12G05B19/16G05B19/416
    • B23Q15/12G05B19/16G05B19/186G05B19/19G05B19/416G05B19/4163G05B2219/37429G05B2219/43068G05B2219/43106G05B2219/45216
    • A controller (10) for a machine tool (18) for tapping by a main shaft and a feed shaft, comprising an identifier unit (12) for identifying an index of the size of the tap, a temperature detector unit (19b) for detecting the temperature of a motor (19a) for the main shaft, an acceleration storage unit (21) for storing the acceleration of the main shaft corresponding to the index of the size of the tap, a rate storage unit (22) for storing the rate of varying the acceleration of the main shaft depending upon the temperature of the motor, and an acceleration calculation unit (16) for calculating a new acceleration of the main shaft by multiplying an acceleration determined from the index of the size of the tap and from the acceleration storage unit by a rate determined from the detected temperature and from the rate storage unit.
    • 一种用于通过主轴和进给轴进行攻丝的机床(18)的控制器(10),包括用于识别抽头尺寸指数的标识单元(12),用于检测水头的温度检测器单元(19b) 用于主轴的电动机(19a)的温度,用于存储与抽头尺寸的指标相对应的主轴的加速度的加速度存储单元(21),用于存储速率的速率存储单元(22) 根据电动机的温度来改变主轴的加速度;以及加速度计算单元(16),用于通过将从所述水龙头的尺寸的指数确定的加速度与从所述主轴的尺寸确定的加速度相乘来计算所述主轴的新的加速度 加速存储单元,以从检测到的温度和速率存储单元确定的速率。