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    • 4. 发明公开
    • BENDING PRESS SYSTEM
    • BIEGEPRESSSYSTEM
    • EP1160024A1
    • 2001-12-05
    • EP00900374.0
    • 2000-01-13
    • Amada Company, Ltd.
    • AKAMI, IchioOGAWA, TakahiroSATO, MasaakiUMEMOTO, GoujyuKONDO, Toshiyuki
    • B21D5/02
    • B21D37/145B21D5/02B21D5/0236B21D37/14Y10T483/10Y10T483/12Y10T483/123Y10T483/13Y10T483/136Y10T483/138Y10T483/1729Y10T483/1731
    • A bending press system provided with a bending press (1) with at least one bending station to mount a plurality of divided tools and, tool housing devices (65, 123) to house divided metals to be used on the bending press and, tool exchange devices (61, 143) which mount said divided tools on the bending station, in which are provided a first memory means (403) which stores housed positions of each divided tool housed in the housing devices and a second memory means (405) which stores the bending line length of the bent part, the flange length and the bending angle of the bent product and, a first computation means (407) which, based on the bending line length, flange length, bending angle, computes the tool (cross section shape) type and the length of the bending station, and a second computation means (409) which, based on the tool type and length of the bending station computes the arrangement of each divided tool on the bending station, and an NC control means (411) which controls the tool exchange device so that each divided tool is moved from the housed position in the housing device to the determined arrangement position. Fig.38
    • 一种具有弯曲压力机(1)的弯曲压力机系统,所述弯曲压力机(1)具有至少一个弯曲站以安装多个分割的工具,以及工具壳体装置(65,123),以容纳用于弯曲压力机上的分割金属和工具交换 在所述弯曲台上安装所述分割工具的装置(61,143),其中设置有第一存储装置(403),所述第一存储装置存储容纳在所述壳体装置中的每个分割工具的容纳位置;以及第二存储装置, 弯曲部分的弯曲线长度,弯曲产品的凸缘长度和弯曲角度以及基于弯曲线长度,凸缘长度,弯曲角度,计算工具(横截面)的第一计算装置(407) 形状)和弯曲台的长度,以及基于弯曲台的刀具类型和长度计算弯曲台上的每个分割工具的布置的第二计算装置(409)和NC控制装置( 411) e工具更换装置,使得每个分割的工具从壳体装置中的容纳位置移动到确定的布置位置。 图38
    • 6. 发明公开
    • Bending press system method of mounting tools to such system and method for manufacturing bend products
    • 压弯机的系统,方法生产弯曲产品的这样的系统和方法上的工具安装
    • EP2143507A2
    • 2010-01-13
    • EP09174127.2
    • 2000-01-13
    • AMADA COMPANY, LIMITED
    • Akami, IchioOgawa, TakahiroSato, MasaakiUmemoto, GoujyuKondo, Toshiyuki
    • B21D5/02B21D37/14
    • B21D37/145B21D5/02B21D5/0236B21D37/14Y10T483/10Y10T483/12Y10T483/123Y10T483/13Y10T483/136Y10T483/138Y10T483/1729Y10T483/1731
    • A bending press system 1 provided with a bending press with at least one bending station, a tool housing device to house divided tools and a tool exchange device that moves the divided tools between the tool housing device and the bending station and mounts the divided tools on the bending station. The system comprises a first memory means (403) that stores the housing positions of each divided tool housed in the housing device, a second memory means (405) that stores the bending line length, flange length and the bending angle of the bent product, a first computing means (407) to calculate the tool (cross section shape) type to be mounted on the bending station and the length of the bending station, a second computing means (409) to calculate the arrangement of each divided tool on the bending station based on the tool type and length on the bending station, and an NC control means (411) that controls the tool exchange device so that each divided tool is moved from the housing position of the housing device to the arranged position.
    • 设置有弯曲压力机与至少一个弯曲站,工具容纳装置,以容纳分割工具和一个工具交换装置压弯机系统1那样移动,所述工具容纳装置之间的分割的工具弯曲台和上安装所述分割工具 弯曲站。 该系统包括一个第一存储装置(403)没有存储在所述壳体装置容纳在每个分割工具的壳体的位置,一个第二存储装置(405)没有存储该弯曲线的长度,凸缘长度和弯曲加工制品的弯曲角度, 一个第一计算装置(407)来计算所述工具(横截面形状)类型将被安装在弯曲站和弯曲工位的长度,一个第二计算装置(409),以计算在弯曲每个分割工具的布置上 站基于弯曲站上的工具的类型和长度,以及NC控制装置(411)没有控制工具交换装置所以也各分割工具从壳体装置的所布置的位置上的壳体的位置移动。
    • 8. 发明公开
    • TOOL SELECTION METHOD FOR PUNCH PRESS MACHINE
    • WERKZEUGAUSWAHLVERFAHREN EINER STANZPRESSE。
    • EP0497983A1
    • 1992-08-12
    • EP91913107.8
    • 1991-07-24
    • FANUC LTD.
    • MIYAJIMA, Keiichiro Fanuc Manshonharimomi
    • B21D28/12
    • B21D28/12G05B19/408G05B19/40936G05B19/40938G05B2219/50253Y02P90/265Y10T83/04Y10T83/175Y10T83/8732Y10T483/123Y10T483/1729
    • In a method of tool selection control for a punch press machine equipped with a multi-tool holder, a tool selection instruction (1) consisting of 4-digit T codes such as (T1101) associated with a first punch tool (42a) of the multi-holder (42) is read from a machining program, and a holder designation code (T11XX) for designating the multi-tool holder provided to a magazine (4), which consists of the upper two digits of the T code, is converted to a target rotation position of the magazine by a first angle parameter (2). A tool designation code (TXX01) for designating a first punch tool fitted to the designated multi-tool holder, which consists of the lower two bits of the T code, is converted to a target rotation position of the designated multi-tool holder by a second angle parameter (3). The magazine and each of the designated multi-tool holders are rotated round their axes of rotation (T axis or C axis) and are positioned to their target rotation positions, so that the designated punch tool of the designated multi-tool holder is selected.
    • 在配备有多刀架的冲压机的刀具选择控制方法中,由4位T代码构成的刀具选择指令(1),该指令由与第1刀具(42a)相关联的(T1101) 从加工程序读取多支架(42),并且将用于指定提供给盒(4)的多刀架的保持器指定代码(T11XX)(由T代码的高两位数组成)被转换 通过第一角度参数(2)到料仓的目标旋转位置。 用于指定装配到指定的多刀架的第一冲压工具的刀具指定代码(TXX01)由T代码的低两位组成,被转换成指定的多刀架的目标旋转位置 第二角度参数(3)。 刀库和每个指定的多刀架都绕其旋转轴线(T轴或C轴)旋转,并被定位到其目标旋转位置,以便选择指定的多刀架的指定的打孔工具。
    • 10. 发明公开
    • A sequence controller for a machine tool and a method of preparing and executing sequence program for sequence controller used in machine tool control
    • 定时的机床和方法的顺序控制用于在所使用的时钟序列控制的机床的控制设置和执行的控制程序。
    • EP0028068A1
    • 1981-05-06
    • EP80303261.4
    • 1980-09-17
    • FANUC LTD.
    • Imazeki, RyojiKusumi, KatsuakiNakajima, Yoshihiro
    • G05B19/04
    • G05B19/056G05B2219/13005G05B2219/13008G05B2219/13093Y10T483/10Y10T483/123
    • A sequence controller executes sequence control of a machine tool through a sequence program by executing a subroutine program. A function command specifying a subroutine (ROT SUB 6) is divided into control condition data (RNO, DIR, POS, ACT) and operational parameters (Number of rotational positionings, present position address etc.). A memory holds the control condition data (RNO, DIR, POS, ACT). In response to a command the control condition data is read from the memory to a register. Under control of the subroutine program the control condition data is read from the register and the operational parameters are read. The result of. execution of the subroutine program is stored in the memory and the machine tool is controlled in dependence upon that result.
      The subroutine program thus includes command (RD or. RD. STK) for reading the control condition data from the register, and operational parameter data. Sequence control involving the subroutine program can be represented in a sequence diagram in which a function command for the subroutine is divided into control conditions (RNO, DIR, POS, ACT) and parameters (number of rotational positionings present position address etc.).
    • 序列控制器通过执行子例程程序通过执行一个顺序程序的机床的顺序控制。 函数命令指定的子程序(RED SUB 6)被划分成控制条件数据(RNO,DIR,POS,ACT)和操作参数(旋转positionings数目,当前位置地址等)。 存储器保持控制条件数据(RNO,DIR,POS,ACT)。 响应于命令的控制条件数据从存储器到寄存器读出。 下的子例程程序的控制的控制条件的数据从寄存器中读出和操作参数被读出。 的子例程程序的执行结果存储在所述存储器和所述机床在该结果时依赖性控制。 ... 子程序程序包括命令THUS(RD或RD。STK),用于从所述寄存器读取的控制状态数据,并且运行参数数据。 顺序控制涉及的子例程程序可在其中用于子程序的功能命令被划分为控制条件(RNO,DIR,POS,ACT)和参数(旋转positionings当前位置地址,数量等)的序列图来表示。