Electrode terminal for capacitor
    1.
    发明授权
    Electrode terminal for capacitor 失效
    电容器用电极端子

    公开(公告)号:US4962446A

    公开(公告)日:1990-10-09

    申请号:US193112

    申请日:1988-05-11

    IPC分类号: H01G4/228 H05K3/34 H05K7/02

    摘要: An electrode terminal for an electrolytic capacitor capable of eliminating arrangement and welding of a lead wire to accomplish satisfactory quality control and improve productivity. The capacitor is adapted to be used for a capacitor including a capacitor element. The terminal includes a terminal body consisting of a flat section connected to the capacitor element of the capacitor and a cylindrical section serving as an electrode lead and a contact element made of a material exhibiting good solderability and securely mounted on an outer end of the cylindrical section in a leadless manner. The cylindrical section may be formed with a ring-like flange at a portion thereof contiguous to a sealing member of the capacitor. The contact element may be formed on a bottom thereof with an air vent hole.

    摘要翻译: 一种用于电解电容器的电极端子,其能够消除引线的布置和焊接以实现令人满意的质量控制并提高生产率。 电容器适用于包括电容元件的电容器。 端子包括端子体,该端子体由与电容器的电容器元件连接的平坦部分和用作电极引线的圆筒部分组成,以及由具有良好可焊性的材料制成的接触元件,并牢固地安装在圆筒形部分的外端上 以无导向的方式。 圆柱形部分可以在与电容器的密封构件相邻的部分处形成有环形凸缘。 接触元件可以在其底部上形成有通气孔。

    Apparatus for and method of measuring workpiece on machine tool
    2.
    发明授权
    Apparatus for and method of measuring workpiece on machine tool 有权
    机床上工件测量装置及其测量方法

    公开(公告)号:US08160738B2

    公开(公告)日:2012-04-17

    申请号:US12713660

    申请日:2010-02-26

    IPC分类号: G06F19/00 G05B19/29

    摘要: A workpiece measuring apparatus includes a programmable controller which acquires positional data of a measuring head. At the same time that the programmable controller acquires the positional data, a pulse output unit outputs timing pulses. The measuring head measures a workpiece on a machine tool according to a measurement command which is output positively earlier than the timing of predetermined time intervals by a time difference which is preset by a predictive system. As a result, a first time at which the programmable controller acquires the positional data of the measuring head and a second time at which the measuring head measures the workpiece in response to the measurement command synchronize. The workpiece measuring apparatus is capable of measuring the workpiece highly accurately in a three-dimensional space according to a minimum required amount of measured data without the need for modifying an existing NC apparatus combined with the machine tool.

    摘要翻译: 工件测量装置包括获取测量头的位置数据的可编程控制器。 在可编程控制器获取位置数据的同时,脉冲输出单元输出定时脉冲。 测量头根据由预测系统预设的时间差比预定时间间隔的时间提前输出的测量命令来测量机床上的工件。 结果,可编程控制器第一次获取测量头的位置数据,并且第二次测量头响应于测量命令测量工件同步。 工件测量装置能够根据测量数据的最小要求在三维空间中高精度地测量工件,而不需要修改与机床结合的现有NC设备。

    Operation management system
    3.
    发明授权
    Operation management system 失效
    运行管理系统

    公开(公告)号:US07099736B2

    公开(公告)日:2006-08-29

    申请号:US10546118

    申请日:2004-02-20

    摘要: Operational administration system enabling reduction in expense burden on user, and permitting manufacturer to comprehend accurately and timely operational status of machine tools on user end. Operational administration system (1) includes, interconnected via Internet (5): manufacturer-end administration device (20); operational data storage/transmission devices (10) connected to numerical controllers for NC machine tools (15); and user-end terminal device (30). The operational data storage/transmission devices (10) gather from the numerical controllers data pertaining to the operational status of the NC machine tools (15), store the data and, when specified transmission conditions are met, send the stored operational status data to administration device (20) in an e-mail data format. With the received operational status data, administration device (20) updates operational status data it stores, and sends to terminal device (30), in response to a request therefrom, machine-tool operational status data identified by user ID information appropriately input through terminal device (30).

    摘要翻译: 操作管理系统可以降低用户的费用负担,并允许制造商在用户端理解机床的准确和及时的运行状态。 操作管理系统(1)包括通过因特网互连(5):制造商端管理设备(20); 连接到数控机床数控机床的操作数据存储/传输设备(10); 和用户终端装置(30)。 操作数据存储/传输设备(10)从数控控制器收集与NC机床(15)的操作状态相关的数据,存储数据,并且当满足规定的传输条件时,将存储的操作状态数据发送到管理 设备(20)以电子邮件数据格式。 通过所接收的操作状态数据,管理设备(20)更新其存储的操作状态数据,并响应于其请求发送给终端设备(30),由通过终端适当地输入的用户ID信息识别的机床操作状态数据 装置(30)。

    APPARATUS FOR AND METHOD OF MEASURING WORKPIECE ON MACHINE TOOL
    4.
    发明申请
    APPARATUS FOR AND METHOD OF MEASURING WORKPIECE ON MACHINE TOOL 有权
    测量机床工具的方法和方法

    公开(公告)号:US20100241267A1

    公开(公告)日:2010-09-23

    申请号:US12713660

    申请日:2010-02-26

    IPC分类号: G05B19/401

    摘要: A workpiece measuring apparatus includes a programmable controller which acquires positional data of a measuring head. At the same time that the programmable controller acquires the positional data, a pulse output unit outputs timing pulses. The measuring head measures a workpiece on a machine tool according to a measurement command which is output positively earlier than the timing of predetermined time intervals by a time difference which is preset by a predictive system. As a result, a first time at which the programmable controller acquires the positional data of the measuring head and a second time at which the measuring head measures the workpiece in response to the measurement command synchronize. The workpiece measuring apparatus is capable of measuring the workpiece highly accurately in a three-dimensional space according to a minimum required amount of measured data without the need for modifying an existing NC apparatus combined with the machine tool.

    摘要翻译: 工件测量装置包括获取测量头的位置数据的可编程控制器。 在可编程控制器获取位置数据的同时,脉冲输出单元输出定时脉冲。 测量头根据由预测系统预设的时间差比预定时间间隔的时间提前输出的测量命令来测量机床上的工件。 结果,可编程控制器第一次获取测量头的位置数据,并且第二次测量头响应于测量命令测量工件同步。 工件测量装置能够根据测量数据的最小要求在三维空间中高精度地测量工件,而不需要修改与机床结合的现有NC设备。

    OPERATION MANAGEMENT SYSTEM
    5.
    发明申请
    OPERATION MANAGEMENT SYSTEM 失效
    操作管理系统

    公开(公告)号:US20060149412A1

    公开(公告)日:2006-07-06

    申请号:US10546118

    申请日:2004-02-20

    IPC分类号: G06F19/00

    摘要: Operational administration system enabling reduction in expense burden on user, and permitting manufacturer to comprehend accurately and timely operational status of machine tools on user end. Operational administration system (1) includes, interconnected via Internet (5): manufacturer-end administration device (20); operational data storage/transmission devices (10) connected to numerical controllers for NC machine tools (15); and user-end terminal device (30). The operational data storage/transmission devices (10) gather from the numerical controllers data pertaining to the operational status of the NC machine tools (15), store the data and, when specified transmission conditions are met, send the stored operational status data to administration device (20) in an e-mail data format. With the received operational status data, administration device (20) updates operational status data it stores, and sends to terminal device (30), in response to a request therefrom, machine-tool operational status data identified by user ID information appropriately input through terminal device (30).

    摘要翻译: 操作管理系统可以降低用户的费用负担,并允许制造商在用户端理解机床的准确和及时的运行状态。 操作管理系统(1)包括通过因特网互连(5):制造商端管理设备(20); 连接到数控机床数控机床的操作数据存储/传输设备(10); 和用户终端装置(30)。 操作数据存储/传输设备(10)从数控控制器收集与NC机床(15)的操作状态相关的数据,存储数据,并且当满足规定的传输条件时,将存储的操作状态数据发送到管理 设备(20)以电子邮件数据格式。 通过所接收的操作状态数据,管理设备(20)更新其存储的操作状态数据,并响应于其请求发送给终端设备(30),由通过终端适当地输入的用户ID信息识别的机床操作状态数据 装置(30)。

    Apparatus for and method of measuring workpiece on machine tool
    6.
    发明授权
    Apparatus for and method of measuring workpiece on machine tool 有权
    机床上工件测量装置及其测量方法

    公开(公告)号:US08532811B2

    公开(公告)日:2013-09-10

    申请号:US13079232

    申请日:2011-04-04

    IPC分类号: G06F19/00

    摘要: A workpiece measuring apparatus has an external module provided outside an NC device to acquire position data of one or more movable axes of a movable unit having a measuring head attached thereto. The position data of the measuring head is acquired at the same time interval as that for the distance measurement by the measuring head. The position of the workpiece is acquired by calculation from the acquired distance measurement data and the position data of the measuring head. The continuous shape of the workpiece can be measured by performing continuous measurement while moving the measuring head. Therefore, no modification or change is required such as adding a new function to the NC device. In addition, the present invention is applicable to any machine tool equipped with an NC device of any configuration, without being restricted by constraints of the NC device.

    摘要翻译: 工件测量装置具有设置在NC装置外部的外部模块,以获取具有连接到其上的测量头的可移动单元的一个或多个可移动轴的位置数据。 以与测量头的距离测量相同的时间间隔获取测量头的位置数据。 通过从获取的距离测量数据和测量头的位置数据的计算获得工件的位置。 通过在移动测量头时进行连续测量可以测量工件的连续形状。 因此,不需要修改或更改,例如向NC设备添加新功能。 此外,本发明可应用于配备有任何配置的NC设备的任何机床,而不受NC设备的约束的限制。

    Machining method and machining system
    7.
    发明授权
    Machining method and machining system 有权
    加工方法和加工系统

    公开(公告)号:US08397609B2

    公开(公告)日:2013-03-19

    申请号:US12776447

    申请日:2010-05-10

    IPC分类号: B23B1/00 B23B7/00

    摘要: A machining system 1 comprises a lathe 10 having end portion supporting mechanisms 13, 15 for supporting an elongated workpiece W horizontally, center rests 21 for supporting the middle portion of the workpiece W, an adjustment mechanism for adjusting the supported position of the workpiece W by adjusting the height positions of the center rests 21, a tool rest 20, and a control device 25, and a non-contact measuring device 30 for measuring the deflection amount of the workpiece W at portions thereof supported by the center rests 21 when the workpiece W is rotated. The control device 25 is configured to adjust the height positions of the center rests 21 by controlling the adjustment mechanism on the basis of the measured deflection amount, so that the height positions of both end portions of the workpiece W being rotated and the middle portion thereof become the same.

    摘要翻译: 加工系统1包括车床10,车床10具有用于水平地支撑细长工件W的端部支撑机构13,15,用于支撑工件W的中间部分的中心支架21,用于通过以下方式调节工件W的支撑位置的调节机构 调整中心支架21的高度位置,工具架20和控制装置25以及非接触式测量装置30,用于在工件W的部分由中心支架21支撑时测量工件W的偏转量 W旋转。 控制装置25通过基于测定的偏转量控制调整机构来调整中心支架21的高度位置,使得工件W的两端部的高度位置与其中间部分 变得相同

    Maintenance system for machine tool
    8.
    发明授权
    Maintenance system for machine tool 失效
    机床维修系统

    公开(公告)号:US06836698B2

    公开(公告)日:2004-12-28

    申请号:US10802744

    申请日:2004-03-18

    IPC分类号: G06F1900

    摘要: The invention relates to a maintenance system for machine tool. In the maintenance, system 1, a user management apparatus 10 connected to a numerical control section of a machine tool 15, and a manufacturer management apparatus 20 disposed on a side of a manufacturer are connected to each other via Internet 5. The user management apparatus 10 collects data relating to an operating condition of each driving mechanism of the machine tool 15, and accumulates the data. When a predetermined transmission condition is satisfied, the user management apparatus 10 transmits the accumulated operating condition data to the manufacturer management apparatus 20 in the form of an electronic mail. The manufacturer management apparatus 20 evaluates the consumption degree of each driving mechanism based on the received operating condition data, and outputs an alarm when the consumption degree exceeds a reference value.

    摘要翻译: 本发明涉及一种机床维护系统。 在维护中,系统1,连接到机床15的数控部分的用户管理装置10和设置在制造商侧的制造商管理装置20经由互联网5彼此连接。用户管理装置 10收集与机床15的各驱动机构的运转状况有关的数据,并积累数据。 当满足预定的传输条件时,用户管理装置10以电子邮件的形式将累积的操作条件数据发送到制造商管理装置20。 制造商管理装置20基于接收到的操作条件数据来评价各驱动机构的消耗程度,并且当消耗度超过参考值时,输出报警。

    Machining method and machining system
    9.
    发明授权
    Machining method and machining system 有权
    加工方法和加工系统

    公开(公告)号:US08534169B2

    公开(公告)日:2013-09-17

    申请号:US12777267

    申请日:2010-05-11

    IPC分类号: B23B3/06 G05B19/401

    摘要: The present invention relates to a machining system etc. capable of highly accurately machining a workpiece even in a case where the workpiece is deflected. A machining system 1 is configured with a lathe 10 having end portion supporting mechanisms 13, 15 for supporting both end portions of an elongated workpiece W horizontally, a tool rest 20 for holding a tool, a feed mechanism for moving the tool rest 20 in three orthogonal directions, and a control device 25 for controlling the feed mechanism, and a non-contact measuring device 30 for measuring the deflection shape of the workpiece W when the workpiece W is rotated. The control device 25 moves the tool along the deflection shape measured by the non-contact measuring device 30.

    摘要翻译: 本发明涉及即使在工件被偏转的情况下也能够高精度地加工工件的加工系统等。 机械加工系统1具有车床10,车床10具有用于水平地支撑细长工件W的两端部的端部支撑机构13,15,用于保持工具的刀架20,用于将刀架20移动到三个中的进给机构 以及用于控制进给机构的控制装置25和用于在工件W旋转时测量工件W的偏转形状的非接触测量装置30。 控制装置25沿着由非接触测量装置30测量的偏转形状移动工具。

    Method for controlling a machine tool and apparatus therefor
    10.
    发明授权
    Method for controlling a machine tool and apparatus therefor 有权
    用于控制机床及其装置的方法

    公开(公告)号:US08077327B2

    公开(公告)日:2011-12-13

    申请号:US12410761

    申请日:2009-03-25

    IPC分类号: G01B11/14

    CPC分类号: G05B19/402 B23Q17/2485

    摘要: Relative movement in X, Y and Z axis directions is made between a main spindle and a table 6 for application in a machine tool in which a work is machined. An emitting element 12 for irradiating laser beam 11 and a photosensitive element 13 are disposed on the table 6. A measuring tool 8 with its top end being shaped as a cone form is attached to the main spindle 4. The laser beam 11 is interrupted with the cone form portion 15 of the measuring tool 8 through relative movement between the table 6 and measuring tool 8 before and after machining a work. Detection signal of interruption is generated at the moment of interruption, position is detected, operation processing is performed so that difference in X, Y and Z axes before and after machining is obtained along with values for correction. Positional coordinate values for three axis directions are detected simultaneously with a measuring device of a simple constitution by use of laser beam and values for correction such as of thermal displacement is obtained by operation processing of displacement values.

    摘要翻译: 在主轴和工作台6之间进行X,Y和Z轴方向的相对运动,以用于加工工件的机床。 用于照射激光束11和感光元件13的发光元件12设置在台面6上。其顶端成锥形的测量工具8安装在主轴4上。激光束11被中断 通过在加工工件之前和之后在工作台6和测量工具8之间的相对运动,测量工具8的锥形部分15。 在中断时产生中断检测信号,检测位置,进行运算处理,使得加工前后的X,Y,Z轴的差异与校正值一起获得。 通过使用激光束与简单结构的测量装置同时检测三轴方向的位置坐标值,并且通过位移值的操作处理获得热位移等校正值。