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    • 83. 发明公开
    • 수치제어장치 및 캠시스템
    • 数控系统和CAM系统
    • KR1020020022597A
    • 2002-03-27
    • KR1020010057827
    • 2001-09-19
    • 도시바 기카이 가부시키가이샤
    • 마츠모토이치로후지타쥰
    • B23Q15/00
    • G05B19/4163G05B2219/35158G05B2219/49077Y10T409/300896
    • PURPOSE: A numerical control apparatus and CAM system is provided to reliably obtain an optimum main spindle revolution even under special relations of a tool and a workpiece, thereby alleviating wear of the tool and ensuring high-speed, high-accuracy processing. CONSTITUTION: Upon analyzing a processing program(5) in an analyzer(11), a numerical control apparatus extracts information about a contact position between a tool and a workpiece, and based on the information, it calculates a main spindle revolution instruction value in a main spindle revolution calculator(14). In a CAM system, information about the contact position between the tool and the workpiece to be supplied to the numerical control apparatus is calculated and added to the processing program.
    • 目的:提供一种数控设备和CAM系统,即使在刀具和工件的特殊关系下也可以可靠地获得最佳主轴转速,从而减轻刀具磨损,确保高速,高精度加工。 构成:在分析器(11)中分析处理程序(5)时,数值控制装置提取关于工具与工件之间的接触位置的信息,并且基于该信息,计算主轴转速指令值 主轴转数计算器(14)。 在CAM系统中,计算关于要提供给数值控制装置的工具与工件之间的接触位置的信息并将其相加到处理程序。
    • 85. 发明公开
    • ON DEMAND ADAPTIVE CONTROL SYSTEM
    • IF NEEDED自适应控制系统
    • EP1599770A2
    • 2005-11-30
    • EP04714088.4
    • 2004-02-24
    • GENERAL ELECTRIC COMPANY
    • SCHERER, Jerry, G.
    • G05B19/416
    • G05B19/4163G05B2219/49077G05B2219/49082G05B2219/49092
    • An adaptive control system and method for controlling the path feed rate to achieve a target spindle load during machine tool operations. The adaptive control system can provide load monitoring capability, which will actively monitor an incoming load signal from a spindle drive (126) and determine if it exceeds warning and alarm levels. If the incoming load being monitored exceeds the set warning level, a warning output is asserted and maintained until the incoming load falls below the set warning level. If the incoming load exceeds the set alarm level, the alarm output and feed hold output are asserted and maintained until an adaptive controller reset is requested. Normal cutting operations cannot resume until the conditions that generated the alarm level are addressed. Adaptive control of machine tool (128) operations is provided by monitoring of the incoming load and requesting feed rate changes based on a proportional integral derivative (PID) controller (104, 106, 108) algorithm. The adaptive controller (60) monitors the incoming load until an arming limit is exceeded, at which point the adaptive controller (60) proceeds to run the PID control algorithm to calculate a new feed rate that will cause the incoming load to obtain the user requested value. An interface application allows the user to set and view registers and the input/output status of the adaptive controller (60). The adaptive control system can be fully integrated into the machine tool management system, or can be integrated with custom tool interfaces. The adaptive control system can also be operated using a manual interface provided to the operator with no connection to tooling data.
    • 86. 发明公开
    • Numerical control apparatus for machine tool and numerical control method for machine tool
    • 用于机床的数值控制方法和装置
    • EP1484657A2
    • 2004-12-08
    • EP04253274.7
    • 2004-06-02
    • STAR MICRONICS CO., LTD.
    • Kajiyama, Takehisa
    • G05B19/414
    • G05B19/414G05B2219/34343G05B2219/43199G05B2219/49077G05B2219/49091
    • A numerical control apparatus for machine tool (1), including: an NC program storage portion; an electronic cam data transformation unit which transforms an NC program into electronic cam data; a constant circumferential velocity control command detection unit which detects whether a command for executing constant circumferential velocity control is present or not in the NC program; a reference axis pitch setting unit which sets the pitch for generating data; a main shaft rotational velocity calculation unit which calculates the rotational velocity of a main shaft on the basis of parameters corresponding to the position of a cutting edge of a tool; an axial feed velocity calculation unit which calculates axial feed velocity on the basis of the calculated rotational velocity of the main shaft; and an axial position data computing unit which calculates axial position on the basis of the axial feed velocity obtained at intervals of the set pitch.
    • 用于机床(1),其包括数控装置:NC程序存储部; 电子凸轮的数据变换单元,其变换到NC程序到电子凸轮的数据; 恒定圆周速度控制命令检测部,其检测是否用于执行恒定圆周速度控制的命令是在NC程序中存在或不存在; 基准轴间距设定单元,其设置用于产生数据的音调; 主轴旋转速度计算部,其计算的对应于刀具的切削刃的位置参数的基础上的主轴的旋转速度; 在轴向进料速度计算单元,其计算所述主轴的计算旋转速度的基础上,轴向进给速度; 和轴向位置数据计算单元,其计算在所述一组间距的间隔获得的轴向进给速度的基础上的轴向位置。
    • 90. 发明专利
    • 工作機械の制御装置
    • 用于机床的控制装置
    • JP5908552B1
    • 2016-04-26
    • JP2014194105
    • 2014-09-24
    • ファナック株式会社
    • 藤井 隆亮
    • G05B19/4103B23Q15/00B23Q17/22G05B19/4155
    • G05B19/402G05B2219/35101G05B2219/45145G05B2219/49077
    • 【課題】ロールインと呼ばれる切り込み時の加工経路を、簡単な操作で、自動的に生成し、加工プログラム内の切り込み部分の加工経路を置きかえることが可能な工作機械の制御装置を提供する。 【解決手段】メモリ内に記憶済みの切削指令コード(G1)が直線補間の場合、円弧補間の開始点、終了点、円弧半径、円弧補間方向を求め、記憶されたプログラム行数(L)の一行前に、切削開始位置(X3,Y3,Z3)への軸移動指令を追加し、記憶されたプログラム行数(L)に円弧補間指令を追加し、ロールインする円弧曲率半径(R)およびロールインする円弧方向(r)、切削終了位置(X4,Y4,Z4)を円弧補間パラメータとして挿入し、記憶されたプログラム行数(L)には、元々の直線補間指令が残り、円弧補間の次に元々の終点まで直線補間を行うことになる。 【選択図】図3
    • 在切割过程中的加工路径,称为卷中,通过简单的操作,自动生成的,提供一种能够替代在加工程序的机床加工路径的一切割部分的控制装置。 在存储器(G1)的情况已经存储切削命令代码是线性内插,所述圆弧插补的起点,终点,圆弧半径,获得圆形插值方向,线的存储的程序数(L) 一行之前,添加轴向运动指令到切割开始位置(X3,Y3,Z3),并且在线路的程序存储的号码(L)中,添加圆弧插补指令圆弧曲率半径滚轮(R)和 弧的方向卷在(R),并插入切端位置(X4,Y4,Z4),为圆弧插补参数,线(L)的所存储的程序数,余数为原来的直线插补指令,所述圆弧插补 接下来将执行线性插值到原来的终点。 点域