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    • 4. 发明专利
    • Quality inspection device, quality inspection system, qualification inspection method, computer program and recording medium
    • 质量检验装置,质量检验制度,资质检验方法,计算机程序和记录介质
    • JP2010039581A
    • 2010-02-18
    • JP2008198915
    • 2008-07-31
    • Incs Inc株式会社インクス
    • SATO SEIKITANIMOTO KAZUHISATANAKA MIZUKIWATANABE YUJIINOUE HIROBUMI
    • G06Q30/06G06Q50/00G06Q50/04
    • Y02P90/30
    • PROBLEM TO BE SOLVED: To provide a quality inspection device capable of securing quality of an object to be inspected, and efficiently performing acceptance inspection of the object to be inspected.
      SOLUTION: The quality inspection device for inspecting the quality of the object to be inspected, which is delivered from a supplier to a buyer, includes: a measurement item table for associating a plurality of measurement items for inspecting the quality of the object to be inspected and the validity/invalidity of measurement saving by the buyer; a first acquisition means for acquiring the measurement result by the supplier of each of the plurality of measurement items; a second acquisition means for acquiring the measurement result by the buyer of the measurement item whose measurement is required by the buyer by referring to the measurement item table; and a quality inspection means for inspecting the quality of the object to be inspected based on the measurement results acquired by the first and second acquisition means.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够确保待检查对象的质量的质量检查装置,并且有效地执行被检查物体的接受检查。 解决方案:用于检查从供应商交付给买方的待检查对象的质量的质量检查装置包括:用于关联用于检查对象的质量的多个测量项目的测量项目表 被检查和买方测量储蓄的有效性/无效性; 第一获取装置,用于获取供应商对所述多个测量项目中的每一个的测量结果; 第二获取装置,用于通过参考测量项目表获取买方所要求的测量项目的买方的测量结果; 以及质量检查装置,用于基于由第一和第二获取装置获取的测量结果来检查被检查物体的质量。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Mold and injection molding device
    • 模具和注塑成型设备
    • JP2009131963A
    • 2009-06-18
    • JP2007307592
    • 2007-11-28
    • Incs Inc株式会社インクス
    • SATO SEIKIYOKOMIZO TSUTOMUABE SHINICHI
    • B29C45/36
    • PROBLEM TO BE SOLVED: To provide a mold capable of simplifying the processing manufacturing process, and an injection molding device having the mold.
      SOLUTION: The mold 2 has a movable mold 10 and a fixed mold 14 which are used for the injection molding device 1, and are opposed to each other to form a cavity. The movable mold 10 and the fixed mold 14 are equipped with a cavity part 22 for forming the cavity, a guide part 24 which is separately formed from the cavity part 22 and mounted to both the ends of the cavity part 22, and a guide post 26 which is inserted into a through-hole 28 (mounting hole) formed on the guide part 24 and guides the moving mold 10 and the fixed mold 14 to the direction for approaching to or separating from each other.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够简化加工制造工艺的模具和具有模具的注射成型装置。 解决方案:模具2具有用于注射成型装置1的可动模具10和固定模具14,并且彼此相对以形成空腔。 可移动模具10和固定模具14配备有用于形成空腔的空腔部分22,与空腔部分22分开形成并安装到空腔部分22的两端的引导部分24和引导部分 26,其插入形成在引导部24上的通孔28(安装孔)中,并将移动模具10和固定模具14引导到接近或分离的方向。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Design support device and design support method
    • 设计支持设备和设计支持方法
    • JP2008102817A
    • 2008-05-01
    • JP2006286081
    • 2006-10-20
    • Incs Inc株式会社インクス
    • SATO SEIKININAGAWA DAICHISUZUKI SATOSHITAKEZAWA TAKETOSHISAKURAI ATSUSHISATO SHUNSUKESHIRAI TOSHINORITAKAMURA KENICHI
    • G06F17/50G05B19/418
    • G06F17/50
    • PROBLEM TO BE SOLVED: To provide a design support device and a design support method which support design of a product to support generation of design data surely incorporating production technical requirements relating to production of the product. SOLUTION: The design support method supports design of the product executed by a design device for generating design data by executing design of the product through a plurality of design items and an examination device for examining whether design data generated by the design device meet the production technical requirements or not and includes a step of storing production technical requirements relating to a plurality of design items into a storage device in association with respective design items and a step of displaying production technical requirements corresponding to design items executed by the design device, out of production technical requirements stored in the storage device, on a display part of a terminal device connected to the examination device. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供支持设计产品的设计支持设备和设计支持方法,以支持产生设计数据,确保结合与产品生产有关的生产技术要求。 解决方案:设计支持方法支持由设计设备执行的产品设计,用于通过多个设计项目执行产品的设计来生成设计数据,以及检查设备,用于检查设计设备生成的设计数据是否满足 生产技术要求,包括与各设计项目相关联地将与多个设计项目有关的生产技术要求存储到存储装置中的步骤和显示与设计装置执行的设计项目相对应的生产技术要求的步骤, 存储在存储装置中的生产技术要求在连接到检查装置的终端装置的显示部分上。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Automatic processing control device
    • 自动处理控制装置
    • JP2007105847A
    • 2007-04-26
    • JP2005300548
    • 2005-10-14
    • Incs Inc株式会社インクス
    • KOBAYASHI NORITOMOTAKAGUCHI JUNICHIOTSUBO MASATOTAKAYAMA YOSHIYASU
    • B23Q15/04B29C33/38B29C45/76
    • Y02P90/265
    • PROBLEM TO BE SOLVED: To provide an automatic processing control device capable of processing an assembly without dimensional cumulative error or know-how, at low costs, and in a short lead time, and molding a molding in a short lead time by one simple adjustment of a die after molding in press-processing. SOLUTION: This device processes and manufactures an assembly. An efficient processing schedule is created on the basis of assembly dependent relationship data. When each of parts is processed, an error is sequentially measured, and the parts influenced by a processing error are specified using the assembly dependent relationship data. By changing an NC path, automatic gauging becomes possible. This automatic processing control device manufactures a molding. By creating the assembly dependent relationship of the die and the molding, die parts required for adjustment are specified from failure portions specified by measuring the molding. Correction blocks are inserted in the portions required for adjustment in advance, so that the molding can be corrected without adjusting a die with a complicated shape. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够以低成本和短的提前期处理组装而没有尺寸累积误差或专有技术的自动处理控制装置,并且通过在短的交货时间内模制成型 在压制加工中成型后的模具的简单调整。

      解决方案:该设备处理和制造组件。 基于组装依赖关系数据创建有效的处理计划。 当处理每个零件时,依次测量出错误,并使用装配依赖关系数据指定受处理错误影响的零件。 通过更改NC路径,可以进行自动测量。 该自动处理控制装置制造成型品。 通过产生模具和模制件的组件依赖关系,需要调整的模具部件由通过测量模制件指定的故障部分指定。 校正块预先插入到需要调节的部分中,从而可以在不调整具有复杂形状的模具的情况下校正成型。 版权所有(C)2007,JPO&INPIT

    • 8. 发明专利
    • Machining center and automatic workpiece origin-obtaining method in machining center
    • 加工中心加工中心和自动加工中心的原始获取方法
    • JP2007098489A
    • 2007-04-19
    • JP2005288890
    • 2005-09-30
    • Incs Inc株式会社インクス
    • NAGAMATSU JUNYANAGISAWA MASAHITOOTSUBO MASATO
    • B23Q15/00B23Q17/00
    • B23Q17/2241
    • PROBLEM TO BE SOLVED: To obtain a workpiece origin with high reliability, high accuracy and automatically in obtaining a workpiece origin before cutting the workpiece using a cutting tool. SOLUTION: In order to automatically obtain the origin of the workpiece in the machining center, with the cutting tool rotated, the cutting tool, that is, the spindle is scanned from the position away from the workpiece toward the workpiece three times, and the contact sound is detected by an AE sensor to determine the contact and store the contact position. Simultaneously, the cutting tool is stopped, and the second and third scanning is performed at a lower scan speed than the first scanning and started from the position closer to the workpiece than the first scanning. When the contact detecting positions in the first and second scanning and the contact detecting positions in the second and third scanning are respectively within predetermined scan allowable error, the workpiece origin for the reference of the position of the workpiece is obtained based upon the contact detecting positions in the second and third scanning. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:在使用切削工具切削工件之前,以高可靠性,高精度和自动获得工件原点,以获得工件原点。

      解决方案:为了在加工中心自动获得工件的原点,随着切削刀具的旋转,切削刀具(即主轴)从远离工件的位置向工件扫描三次, 并且由AE传感器检测接触声音以确定接触并存储接触位置。 同时,停止切割工具,并且以比第一扫描更低的扫描速度执行第二扫描和第三扫描,并且从比第一扫描更靠近工件的位置开始扫描。 当在第二扫描和第三扫描中的第一扫描和第二扫描中的接触检测位置和接触检测位置分别在预定的扫描允许误差内时,基于接触检测位置获得用于参考工件位置的工件原点 在第二次和第三次扫描。 版权所有(C)2007,JPO&INPIT

    • 9. 发明专利
    • Technique for obtaining profile of cross-section in rotator
    • 用于获取旋转器中交叉剖面的技术
    • JP2007003346A
    • 2007-01-11
    • JP2005183847
    • 2005-06-23
    • Incs Inc株式会社インクス
    • INOMATA TAKASHIOTSUBO MASATOSASAKI YUKIO
    • G01B11/24B23Q17/22
    • PROBLEM TO BE SOLVED: To obtain cross-sectional profiles in rotators simply and correctly.
      SOLUTION: In a technique for obtaining the profiles in the rotators, when irradiated with a laser beam along the Y-axis direction perpendicular to the Z-axis or the axis of rotation in the rotators, direction of radiation with the laser beam concerned is translated in parallel relatively in the X-axis direction perpendicular to both the Z-axis and the Y-axis concerned relating to the rotator, from a condition, parallel to the Y-axis concerned, with a blockade of laser beam concerned by the rotator to a condition without blockade and also from a condition without a blockade to a condition with blockade and a process acquiring a displacement value of laser beam during a critical state between the blockade condition and non-blockade condition in the X-axis direction from a reference point on the X-axis is repeated while sifting the direction of irradiation with the laser beam concerned only a predetermined value along the Z-axis direction.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:简单正确地获得旋转器中的横截面轮廓。 解决方案:在用于获得旋转体中的轮廓的技术中,当沿着垂直于Z轴的Y轴方向或旋转体中的旋转轴线的激光束照射激光束时,利用激光束 相关的平面相对于与所述旋转体有关的Z轴和Y轴两个方向的X轴方向从平行于所述Y轴的状态相对平移,所述激光束与 旋转器处于没有封锁的状态,并且还从没有封锁的条件到具有阻塞的状态,以及在X轴方向上的阻挡状态和非阻塞状态之间的临界状态期间获取激光束的位移值的处理 在沿着Z轴方向仅扫描预定值的激光束的照射方向上,重复X轴上的基准点。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • System and method for supporting processing work management
    • 用于支持加工工作管理的系统和方法
    • JP2006099804A
    • 2006-04-13
    • JP2005357603
    • 2005-12-12
    • Incs Inc株式会社インクス
    • OKAMOTO KEIJIFUJIMOTO AYAKO
    • G05B19/418
    • Y02P90/14Y02P90/18Y02P90/20Y02P90/205Y02P90/265
    • PROBLEM TO BE SOLVED: To surely avoid losing of tools, erroneous mounting of a tool, losing of work or the like by properly managing the tools and the work. SOLUTION: Product design software 100, model design software 200, NC data preparation software 300, work delivery management software 400 and machine tool control software 600 are connected to each other through a dedicated network line, and further, process management software 700 for managing all processes from product design to model formation is connected. A database 800 is a database that stores various information necessary for product design and model design. When a person in charge finishes preparing NC data, the obtained NC data and data attached to the NC data are sent to a computer in a factory division. The process management software 700 makes the work delivery management software 400 and plan management software 500 generate a task to be performed by a worker on the basis of the NC data and the data attached to the NC data. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过正确管理工具和工作,确保避免工具丢失,工具错误安装,工作丢失等。

      解决方案:产品设计软件100,模型设计软件200,NC数据准备软件300,工作交付管理软件400和机床控制软件600通过专用网络线彼此连接,此外,过程管理软件700 用于管理从产品设计到模型形成的所有过程都是连接起来的。 数据库800是存储产品设计和模型设计所需的各种信息的数据库。 当负责人完成准备NC数据时,所获得的NC数据和附加到NC数据的数据被发送到工厂部门的计算机。 过程管理软件700使工作交付管理软件400和计划管理软件500基于NC数据和附加到NC数据的数据生成由工作者执行的任务。 版权所有(C)2006,JPO&NCIPI