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    • 1. 发明专利
    • Numerical control device
    • 数控装置
    • JPS61131824A
    • 1986-06-19
    • JP24956884
    • 1984-11-28
    • Amada Metoretsukusu:KkHitachi Denshi Ltd
    • SHIMAZAKI KENICHIHONDA AKIRA
    • B23H7/02B23H7/20G05B13/00G05B13/02G05B19/4093
    • B23H7/20
    • PURPOSE:To keep off variations in machining as well as to make unattended operation performable, by letting a numerical control system select a machining condition if the desired surface roughness and machining accuracy are specified, while making it so as to control external units, in case of the numerical control system used for an electric discharge machine. CONSTITUTION:Input items out of an input medium 12 are linear/circular arc commands, coordinate data, cutting speed, servo voltage, surface roughness and machining accuracy as information of material quality and thickness of a work, material quality and thickness of a wire electrode and a cutting pattern. A detector 14 detects the present value of each of parameters in order to perform process control as to liquid pressure or flow of a dielectric fluid. Data transmission between a numerical control system 13' and external units such as a machining power supply 8, a machine proper 1, etc., is entirely carried out via an input-output control part 15. A optimum control processing part 16 searches for an optimum condition among various machining conditions registered on the basis of input information 12, namely, the work, the service electrode wire specified surface roughness and accuracy, and performs their output processes, controlling these external units via the input-output control part 15.
    • 目的:为了防止加工变化以及使无人值守的操作成为可能,如果指定了所需的表面粗糙度和加工精度,则通过数字控制系统选择加工条件,同时使其能够控制外部单元,以防万一 用于放电机的数控系统。 构成:输入介质12中的输入项目是线性/圆弧指令,坐标数据,切割速度,伺服电压,表面粗糙度和加工精度,作为材料质量和工件厚度,材料质量和线电极厚度的信息 和切割图案。 检测器14检测每个参数的当前值,以便对介质流体的液体压力或流动进行处理控制。 数控系统13'与加工电源8,机器本体1等外部单元之间的数据传输完全通过输入输出控制部件15进行。最佳控制处理部件16搜索 基于输入信息12登记的各种加工条件的最佳条件,即工件,维修电极丝规定的表面粗糙度和精度,并执行其输出处理,经由输入输出控制部15来控制这些外部单元。
    • 2. 发明专利
    • Display method and device for processing machine
    • 用于加工机器的显示方法和装置
    • JPS61131853A
    • 1986-06-19
    • JP24957084
    • 1984-11-28
    • Amada Metoretsukusu:KkHitachi Denshi Ltd
    • ADACHI MASARUHONDA AKIRASHIMAZAKI KENICHI
    • B23Q17/00G05B19/4061
    • PURPOSE: To visually recognize a processing position of an automatic processing machine by graphically displaying a processing configuration by using a CRT display and displaying the processing position on the processing configuration displayed.
      CONSTITUTION: An input program processing unit 4 obtains processing locus data from a processing program which is inputted by a paper tape reader 1 or a key board 2 through an input interface 3. A graphics processor 10 performs a data processing necessary for a graphic output based on the data to designate the address of a graphic processing locus on a CRT display and a display color at the designated address, the address and the display color being written in a locus display RAM11 and a color RAM12. An image signal generator 13 reads out the contents of the RAM11 and the RAM12 and performs the processing for generating an image signal to enable a graphic output from a CRT14. When a processing starts, a drive control unit 5 produces a drive control value for driving a driving unit 8.
      COPYRIGHT: (C)1986,JPO&Japio
    • 目的:通过使用CRT显示器图形显示处理配置并且显示对所显示的处理配置的处理位置来直观地识别自动处理机器的处理位置。 构成:输入程序处理单元4通过输入接口3从由纸带读取器1或键盘2输入的处理程序获得处理轨迹数据。图形处理器10执行基于图形输出的数据处理 在数据上指定CRT显示器上的图形处理轨迹的地址和指定地址处的显示颜色,地址和显示颜色被写入轨迹显示RAM11和颜色RAM12中。 图像信号发生器13读出RAM11和RAM12的内容,并执行用于产生图像信号的处理以使得能够从CRT14输出图形。 当处理开始时,驱动控制单元5产生用于驱动驱动单元8的驱动控制值。
    • 3. 发明专利
    • Reverberation simulating system for underwater acoustic equipment
    • 用于水下声学设备的反演模拟系统
    • JPS5754877A
    • 1982-04-01
    • JP12924980
    • 1980-09-19
    • Hitachi Denshi Ltd
    • SHIMAZAKI KENICHIWATANUKI AKIOKUBO YASUJI
    • G09B9/00G01S7/52G09B9/56
    • G01S7/52004
    • PURPOSE:To enable higher fidelity simulation, by recording an actual reverberation picture in a VTR and processing this data for using for a training device in a reverberation simulation system of an underwater acoustic equipment. CONSTITUTION:An actual reverberation data recorded using a VTR9 is regenerated and converted to digital quantities in a data converting part 10 and then enclosed in a memory part 13. A central processing unit 1 incorporates conditions for training and items for setting a sonar indicating part 3 to compute a reverberation indication starting position and level controlling data from them. Further, when said computed result is sent to a simulation signal generating device 2, an address generating part 14 incorporating a microcomputer in built-in manner is operated with the simulation signal generating device 2, and addressing is performed from the memory part 13 to allow data 15 to be incorporated in order. And, after a directional pattern 17 for transmission and a gain characteristic 18 for reception are operated, the signal is converted by using an exponential converting part 19, an integral function 20 and a D/A converter 21, and is indicated by use of a sonar indicating part 3.
    • 目的:通过在VTR中记录实际的混响图像并处理该数据,以便在水下声学设备的混响仿真系统中使用训练装置,来实现更高保真度的仿真。 构成:使用VTR9记录的实际混响数据在数据转换部分10中被再生并转换为数字量,然后被包围在存储器部分13中。中央处理单元1包含用于训练的条件和用于设置声纳指示部分3的项目 以计算来自它们的混响指示开始位置和电平控制数据。 此外,当所述计算结果被发送到模拟信号发生装置2时,以模拟信号产生装置2操作以内置方式结合微计算机的地址产生部分14,并且从存储器部分13执行寻址以允许 数据15按顺序并入。 并且,在用于传输的方向图17和用于接收的增益特性18之后,通过使用指数变换部分19,积分函数20和D / A转换器21来转换信号,并且使用 声纳表示第3部分。