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    • 1. 发明申请
    • NUMERICAL CONTROL SYSTEM
    • 数控系统
    • US20080125874A1
    • 2008-05-29
    • US11936369
    • 2007-11-07
    • Nobuyuki TakahashiHiromichi NigazawaTakashi Kamiya
    • Nobuyuki TakahashiHiromichi NigazawaTakashi Kamiya
    • G05B19/18
    • G05B19/4061G05B19/408
    • A numerical control system improves safety when asynchronously operating systems are operated as a single control unit. A machine control system outputs a command generated by interpreting a program with a command number assigned thereto, sends it to a collision detection system, and receives check result data therefrom, whereby when the number of commands for which check result data are obtained is more than or equal to a preset second threshold, a command number assigned to the check result data is output when it is determined that there is no probability of collision. When the result of a check on the probability of collision for a command received from a linkage data sending and receiving section is returned, the collision detection system returns check result data to the linkage data sending and receiving section by assigning a command number given to the checked command to the check result data.
    • 当异步操作系统作为单个控制单元运行时,数字控制系统可提高安全性。 机器控制系统输出通过解释具有分配给其的命令编号的程序而生成的命令,将其发送到冲突检测系统,并从其接收检查结果数据,由此当获得检查结果数据的命令数大于 或等于预设的第二阈值时,当确定不存在碰撞的可能性时,输出分配给检查结果数据的命令号。 当返回对从连接数据发送接收部接收到的命令的碰撞概率的检查结果时,碰撞检测系统通过分配给连接数据发送接收部的命令号码将检查结果数据返回给联动数据收发部 检查命令到检查结果数据。
    • 2. 发明授权
    • Numerical control system including machine control system and collision detection system
    • 数控系统包括机器控制系统和碰撞检测系统
    • US07738992B2
    • 2010-06-15
    • US11936369
    • 2007-11-07
    • Nobuyuki TakahashiHiromichi NigazawaTakashi Kamiya
    • Nobuyuki TakahashiHiromichi NigazawaTakashi Kamiya
    • G06F19/00
    • G05B19/4061G05B19/408
    • A numerical control system improves safety when asynchronously operating systems are operated as a single control unit. A machine control system outputs a command generated by interpreting a program with a command number assigned thereto, sends it to a collision detection system, and receives check result data therefrom, whereby when the number of commands for which check result data are obtained is more than or equal to a preset second threshold, a command number assigned to the check result data is output when it is determined that there is no probability of collision. When the result of a check on the probability of collision for a command received from a linkage data sending and receiving section is returned, the collision detection system returns check result data to the linkage data sending and receiving section by assigning a command number given to the checked command to the check result data.
    • 当异步操作系统作为单个控制单元运行时,数字控制系统可提高安全性。 机器控制系统输出通过解释具有分配给其的命令编号的程序而生成的命令,将其发送到冲突检测系统,并从其接收检查结果数据,由此当获得检查结果数据的命令数大于 或等于预设的第二阈值时,当确定不存在碰撞的可能性时,输出分配给检查结果数据的命令号。 当返回对从连接数据发送接收部接收到的命令的碰撞概率的检查结果时,碰撞检测系统通过分配给连接数据发送接收部的命令号码将检查结果数据返回给联动数据收发部 检查命令到检查结果数据。
    • 5. 发明申请
    • PROCESSING SIMULATION METHOD AND APPARATUS, AND PROGRAM MAKING COMPUTER EXECUTE THE METHOD
    • 处理模拟方法和装置,程序计算机执行方法
    • US20120016507A1
    • 2012-01-19
    • US13259004
    • 2009-05-20
    • Kenji IriguchiTakashi KamiyaMahito MatsuuraTakashi YonedaNobuyuki Takahashi
    • Kenji IriguchiTakashi KamiyaMahito MatsuuraTakashi YonedaNobuyuki Takahashi
    • G05B13/04
    • G05B19/4069G05B2219/49157
    • A processing simulation method and apparatus is provided, which can appropriately detect interference between a tool processing area and a shape model of a material without being affected by the accuracy of expression of a tool movement path and the shape model. A tool shape model for processing a material, that includes a strict tool shape, and a tool shape model for checking interference, that is included in the strict tool shape, are generated by tool model setting unit according to an error range set in consideration of the tool movement path and the expression accuracy of the shape model, and the processed material shape model is generated by generating a tool processing area shape model from the tool movement path during processing feed and the tool shape model for processing the material and removing the tool processing area shape model from the material shape model. The tool processing area shape model is generated from a tool movement path during fast feed and the tool shape model for detecting the interference, and the interference between the tool processing area shape model and the material shape model is detected.
    • 提供一种处理模拟方法和装置,其可以适当地检测工具处理区域和材料的形状模型之间的干扰,而不受工具移动路径和形状模型的表达精度的影响。 由工具模型设定单元根据考虑到的设定的误差范围,生成包含在严格的工具形状中的用于处理材料的工具形状模型(包括严格的工具形状)和用于检查干涉的工具形状模型 通过在处理进给期间从工具移动路径生成工具处理区域形状模型和用于处理材料并移除工具的工具形状模型来生成工具移动路径和形状模型的表达精度以及加工材料形状模型 加工区域形状模型从材料形状模型。 刀具加工区域形状模型由快速进给期间的刀具运动路径和用于检测干涉的刀具形状模型产生,并且检测刀具加工区域形状模型与材料形状模型之间的干涉。
    • 7. 发明申请
    • METHOD AND DEVICE FOR SIMULATING NC WORKING MACHINE
    • 用于模拟NC工作机的方法和装置
    • US20110257778A1
    • 2011-10-20
    • US13141735
    • 2008-12-24
    • Nobuyuki TakahashiKenji IriguchiTakashi KamiyaTakashi YonedaMahito Matsuura
    • Nobuyuki TakahashiKenji IriguchiTakashi KamiyaTakashi YonedaMahito Matsuura
    • G05B19/4069
    • G05B19/4069G05B2219/35316
    • Even in an uncuttable state in which an actual rotational direction of a main spindle is not matched with an actually cuttable main spindle rotational direction of a tool, an interference check between a workpiece and the tool is performed. Accordingly, the cuttable main spindle rotational direction of the selected tool or the uncuttable main spindle rotational direction is compared with each main spindle rotational direction of a working machine during execution of a simulation, and it is determined whether an interference check between the tool blade edge and the workpiece is necessary on the basis of the comparison result. When it is determined that the interference check is not necessary in the step above, the interference check between the tool blade edge and the workpiece is not performed. When it is determined that the interference check is necessary, the interference check between the tool blade edge and the workpiece is performed. When the interference therebetween is present, abnormality is detected.
    • 即使在主轴的实际旋转方向与工具的实际可切削主轴旋转方向不匹配的不切割状态下,也能够进行工件与工具之间的干涉检查。 因此,在执行模拟期间,将所选择的工具的可切割的主轴旋转方向或不可切削的主轴旋转方向与作业机械的主主轴旋转方向进行比较,并且确定工具刀刃之间的干涉检查 并且在比较结果的基础上需要工件。 当在上述步骤中确定不需要干涉检查时,不执行刀片刃与工件之间的干涉检查。 当确定需要进行干涉检查时,执行刀片刃和工件之间的干涉检查。 当存在它们之间的干扰时,检测到异常。