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    • 11. 发明专利
    • Defect inspection device and defect inspection method
    • 缺陷检查装置和缺陷检查方法
    • JP2014109530A
    • 2014-06-12
    • JP2012265062
    • 2012-12-04
    • Yasunaga Corp株式会社安永
    • HIKITA TETSUYAMURAKAMI RYOSUKE
    • G01N21/956G01B11/02G01B11/30
    • PROBLEM TO BE SOLVED: To provide a device and method for defect inspection, which allow in-line total inspection to be made quickly to check for defects on objects under inspection.SOLUTION: A defect inspection device includes: image acquisition means 121 which acquires a two-dimensional information image and a three-dimensional information image of an object under inspection; three-dimensional inspection area specifying means 122 which adjusts the position of the two-dimensional information image using two-dimensional information produced from the two-dimensional information image acquired by the image acquisition means, and specifies a partial area for performing defect inspection using three-dimensional information from a whole area of the positioned two-dimensional information image; three-dimensional information producing means 123 which produces three-dimensional information just for the partial area specified by the three-dimensional inspection area specifying means from the three-dimensional information image acquired by the image acquisition means; and specified area inspection means which checks for defects on the object under inspection by comparing the three-dimensional information produced for the specified partial area and reference three-dimensional information representing a reference for the object under inspection to pass the inspection.
    • 要解决的问题:提供一种用于缺陷检查的装置和方法,其允许快速地进行在线全面检查以检查被检查物体的缺陷。解决方案:缺陷检查装置包括:图像获取装置121,其获取 二维信息图像和被检查物体的三维信息图像; 三维检查区域指定装置122,其使用由图像获取装置获取的二维信息图像产生的二维信息来调整二维信息图像的位置,并且使用三个检查区域指定装置指定用于执行缺陷检查的部分区域 定位二维信息图像的整个区域的三维信息; 三维信息产生装置123,用于根据由图像获取装置获取的三维信息图像,为三维检查区域指定装置指定的部分区域产生三维信息; 以及指定区域检查装置,通过比较为指定的部分区域生成的三维信息和表示被检查对象的参考的参考三维信息来检查检查对象的缺陷以通过检查。
    • 12. 发明专利
    • Filtration method and filtration apparatus
    • 过滤方法和过滤装置
    • JP2014008419A
    • 2014-01-20
    • JP2012144163
    • 2012-06-27
    • Yasunaga Corp株式会社安永
    • INADA MINORUIKENAGA KUNINOBUABE TAKASHI
    • B01D25/12
    • PROBLEM TO BE SOLVED: To provide a filtration method and a filtration apparatus where flow reduction in slurry filtration can be prevented even when slurry containing very fine particles is filtered.SOLUTION: A filtration apparatus comprises: filter plates 6 where recessed parts 9 are formed on both surfaces; a filter cloth to cover at least the recessed parts 9 and separate the slurry to particles and a filtrate by filtration; filtration rooms which are formed by overlapping of the filter plates 6 and surrounded with the opposed recessed parts 9; a traveling unit to travel a plurality of the filter plates 6 to an overlapping direction opposed with the recessed parts 9; introduction parts 12 which are formed at the filter plates 6 and which introduce the slurry into the filtration rooms; discharge parts which are formed at the filter plates 6 and which discharge the filtrate passed through the filter cloth; and mesh bodies 17 located between the recessed parts 9 and the filter cloth.
    • 要解决的问题:提供一种过滤方法和过滤装置,即使在过滤含有非常细小颗粒的浆料时也可以防止浆料过滤中的流动减少。解决方案:过滤装置包括:过滤板6,其上形成有凹陷部分9 两面 至少覆盖凹部9并将浆料分离成颗粒的滤布和滤液滤过; 过滤室由过滤板6重叠形成并被相对的凹部9包围; 行走单元,将多个滤板6移动到与凹部9相对的重叠方向; 引入部件12,其形成在过滤板6上并将浆料引入过滤室中; 排出部件,其形成在过滤板6上,并排出滤液通过滤布; 以及位于凹部9和滤布之间的网状体17。
    • 13. 发明专利
    • Coolant control system for wire saw
    • 电磁干扰控制系统
    • JP2012040640A
    • 2012-03-01
    • JP2010183518
    • 2010-08-18
    • Yasunaga Corp株式会社安永
    • INADA MINORUIKENAGA KUNINOBUABE TAKASHI
    • B24B57/00B24B27/06B28D5/04B28D7/02H01L21/304
    • PROBLEM TO BE SOLVED: To provide a coolant control system for a wire saw that allows a semiconductor wafer to be manufactured inexpensively and efficiently at a higher yield.SOLUTION: The coolant control system is for the fixed abrasive type wire saw that manufactures a plurality of thin semiconductor wafers from a semiconductor ingot. The coolant control system includes a recycled coolant circulation channel for lowering an SS concentration of at least part of a coolant used when the ingot is cut with a wire saw 600 (610, 620, 630) and reusing the coolant with the lowered SS concentration as a recycled coolant for ingot cutting by the wire saw. The coolant control system also includes filter presses 810 and 820 (800) which are disposed in the middle of the recycled coolant circulation channel and create the recycled coolant that is the used coolant with its SS concentration lowered.
    • 要解决的问题:提供一种线锯的冷却剂控制系统,其允许以更高的产率廉价且有效地制造半导体晶片。 解决方案:冷却液控制系统适用于从半导体锭制造多个薄半导体晶片的固定研磨型线锯。 冷却剂控制系统包括回收的冷却剂循环通道,用于降低当使用线锯600(610,620,630)切割锭时所使用的冷却剂的至少一部分的SS浓度,并且将具有降低的SS浓度的冷却剂重新使用 用于钢丝锯切割的回收冷却剂。 冷却剂控制系统还包括设置在回收的冷却剂循环通道的中间的压滤机810和820(800),并产生作为其SS浓度降低的使用过的冷却剂的再循环冷却剂。 版权所有(C)2012,JPO&INPIT
    • 14. 发明专利
    • Working fluid feeding device of wire saw
    • 工作液体输送装置
    • JP2008213103A
    • 2008-09-18
    • JP2007055567
    • 2007-03-06
    • Yasunaga CorpYasunaga Wire Saw Systems Co Ltdヤスナガワイヤソーシステムズ株式会社株式会社安永
    • TANAKA YOSHIAKI
    • B24B27/06B24B57/02B28D5/04
    • PROBLEM TO BE SOLVED: To provide a working fluid feeding device of a wire saw, which reduces the amount of working fluid usage and improves the machining ability and machining accuracy of the wire saw, by making the working fluid efficiently adhere to a wire. SOLUTION: The wire saw functions to cut a workpiece 5 by pressing the same to the reciprocating wire 2 in a perpendicular direction while feeding the working fluid to the wire 2. The working fluid feeding device is composed of a working fluid introducing guide 13 which is arranged between a working fluid feeding nozzle 11 for ejecting the working fluid and a wire row 4, for introducing the working fluid ejected from the working fluid feeding nozzle 11, on an upper surface of the wire 2 in the vicinity of a machining point 15. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种线锯的工作流体供给装置,其通过使工作流体有效地粘附到一个工件流体,从而减少了工作流体的使用量,并提高了线锯的加工能力和加工精度 线。 解决方案:线锯用于在将工作流体馈送到线材2的同时将工件5按照垂直方向按压到往复式线材2上来切割工件5.工作流体供给装置由工作流体导入引导件 13,其布置在用于喷射工作流体的工作流体供给喷嘴11和用于将从工作流体供给喷嘴11喷射的工作流体引入到线材2的上表面的线排4附近的加工 (C)2008,JPO&INPIT
    • 15. 发明专利
    • Oil mist generator and oil feeder
    • 油雾发生器和油料进料器
    • JP2005224876A
    • 2005-08-25
    • JP2004033612
    • 2004-02-10
    • Yasunaga Corp株式会社安永
    • HASE KOICHI
    • B23Q11/10B05B1/34B05B7/06
    • PROBLEM TO BE SOLVED: To reduce adhesion of fine oil mist to a passage wall face by efficiently generating the fine oil mist and to increase the feed quantity of oil to a machining point of a cutting device.
      SOLUTION: This oil mist generator is provided with a first nozzle converting first air fed from an air feeder into a spiral flow, atomizing oil fed from an oil feeder to generate oil mist into a spiral flow, and jetting it to an oil mist passage 14b; a second nozzle jetting second air fed from the air feeder outside the first nozzle along the oil mist passage and moving the oil mist stuck to the wall face of the oil mist passage among the generated oil mist to a downstream side, a circulation route 18 recovering the oil mist stuck to the wall surface of the oil mist passage and moving therefrom, and circulating it to an oil input port; and an exhaust port 13b communicatedly provided in the oil mist passage and, when stopping the generation of the oil mist, exhausting the residual pressure in the oil mist passage.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:通过有效地产生细油雾并且将油的进料量增加到切割装置的加工点,以减少细油雾与通道壁面的粘附。 解决方案:该油雾发生器设置有将从空气供给器供给的第一空气转换为螺旋流的第一喷嘴,从供油器供给的雾化油,将油雾生成螺旋流,并将其喷射到油 雾通道14b; 第二喷嘴沿着油雾通道喷射从第一喷嘴外部的空气供给器供给的第二空气,并将粘附在所产生的油雾中的油雾通道的壁面上的油雾移动到下游侧,循环路线18回收 油雾粘附到油雾通道的壁表面并移动,并将其循环到油输入口; 以及连通地设置在油雾通道中的排气口13b,并且当停止产生油雾时,排出油雾通道中的残余压力。 版权所有(C)2005,JPO&NCIPI
    • 16. 发明专利
    • コンロッドの破断開始部形成方法及び形成装置
    • 连接零件和成型装置的断裂起始部件的形成方法
    • JP2014221504A
    • 2014-11-27
    • JP2013102065
    • 2013-05-14
    • 株式会社安永Yasunaga Corp
    • KAIMASU YUJIMATSUI JUNGO
    • B23D3/02B23P13/00
    • B23D31/002B23D3/02B23D13/00B23D2031/005B23P15/00B23P2700/04
    • 【課題】レーザー装置を用いた場合やブローチ刃を用いた場合にそれぞれ生じる問題点を一挙に全て解決し、破断後に安定した破断面を得ることのできるコンロッドの破断開始部を低コストで効率良く形成する方法を提供する。【解決手段】金属でできたコンロッド1の大端部の内周面の対向する位置にコンロッドの破断開始部を形成するコンロッドの破断開始部形成方法であって、先端のRの大きい第1のインサートチップを用いて破断開始部に対応する位置に溝部11を形成する第1のステップと、第1のインサートチップよりも先端のRが小さい第2のインサートチップを用いて溝部の底部のRをより小さく加工してV字溝12となった破断開始部を形成する第2のステップを有することを特徴とするコンロッドの破断開始部形成方法である。【選択図】図2
    • 要解决的问题:提供一种廉价有效地形成连杆的断裂起始部分的方法,其可以通过在使用激光装置和拉刀时完全解决出现的问题而在断裂之后获得稳定的断裂面。 解决方案:在钢连接杆1的大端部的内周面的位置形成连杆的断裂起始部分的连杆的制造起动部分形成方法具有:形成槽的第一步骤 11通过使用尖端在R中大的第一插入芯片对应于断裂起始部分的位置; 以及第二步骤,用于通过使用尖端小于R中的第一插入芯片的尖端的第二插入芯片来处理凹槽的底部的R,从而形成V形槽12的断裂起始部分 。
    • 17. 发明专利
    • Wire saw device and method for manufacturing wafer using the same
    • 电线制造装置及其制造方法
    • JP2011194560A
    • 2011-10-06
    • JP2010210240
    • 2010-09-17
    • Yasunaga Corp株式会社安永
    • FUKUOKA MASAHIKOINADA MINORUTANAKA YOSHIAKISHINOHARA TAKEHIRO
    • B24B27/06B28D5/04H01L21/304
    • PROBLEM TO BE SOLVED: To provide a wire saw device which cuts a workpiece formed of an ingot into a plurality of wafers without a saw mark and chipping, and to provide a method for manufacturing the wafer using the wire saw device.SOLUTION: The wire saw device includes wire holding rollers 120, 130 provided with a wire holding member holding a wire 110 cutting the workpiece W on the outer periphery and an auxiliary roller 140 provided with a wire holding member holding the wire cutting the workpiece on the outer periphery, a plurality of grooves for preventing wire deviation are formed on the outer peripheries of these rollers at predetermined intervals in the wire holding members provided on the outer peripheries, and an auxiliary roller position adjusting means is provided which adjusts a protruding amount of the auxiliary roller relative to the wire holding rollers so that an angle formed by the wire extended from the grooves of the wire holding members of the respective wire holding rollers to the groove of the wire holding member of the auxiliary roller becomes a constant angle.
    • 要解决的问题:提供一种线锯装置,其将由锭形成的工件切割成多个晶片而没有锯痕和切屑,并且提供使用线锯装置制造晶片的方法。解决方案:线 锯装置包括具有保持在外周上切割工件W的线材110的线保持构件的线夹持辊120,130,以及辅助辊140,其设置有保持在外周上切割工件的线的线保持构件, 在设置在外周的电线保持部件中,以预定的间隔在这些辊的外周上形成多个用于防止电线偏移的槽,并且设置辅助辊位置调节装置,其调节辅助辊相对于 电线保持辊使得由电线从相应电线保持架的电线保持构件的槽延伸的角度形成的角度 g辊到辅助辊的电线保持构件的槽变为恒定的角度。
    • 18. 发明专利
    • Liquid circulation device and hydroponic device for home using same
    • 液体循环装置和使用它们的家用液压装置
    • JP2011125307A
    • 2011-06-30
    • JP2009289178
    • 2009-12-21
    • Yasunaga CorpYumenokai Co Ltd株式会社安永農業生産法人株式会社夢農会
    • YAMAZAKI TETSUYASAKANISHI KOJIYAMAOKA TAKASHI
    • A01G31/00
    • A01G31/02A01G2031/006Y02P60/216
    • PROBLEM TO BE SOLVED: To provide a liquid circulation device circulating liquid in a container thoroughly in the container, and to provide a hydroponic device for home using the liquid circulation device. SOLUTION: The liquid circulation device includes a container 2 for storing liquid 6, a circulation path 3 having an inlet 3a and an outlet opening 3b opened in the liquid and circulating the liquid 6, an air supply pipe 4 connected with the circulation path 3 through an air supply opening 4a, and sucking the liquid 6 from the inlet opening 3a to circulate to one direction and send out from the outlet opening 3b, and an air pump 5 connected to the air supply pipe 4. One or both the inlet opening 3a and the outlet opening 3b of the circulation path 3 open to a direction along the inner wall surface of the container 2 near the inner wall surface, and the air supply port 4a is installed on a part rising in the circulation direction of the liquid 6 in the circulation path 3. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了在容器中将容器中的液体循环装置充分地提供到容器中,并且提供一种使用液体循环装置的家用水培装置。 液体循环装置包括用于储存液体6的容器2,具有入口3a和在液体中开放并使液体6循环的出口3b的循环路径3,与循环连通的空气供给管4 路径3通过供气开口4a,并且从入口开口3a吸入液体6以向一个方向循环并从出口3b排出;以及空气泵5,其与空气供应管4连接。一个或两个 循环路径3的入口3a和出口3b在内壁面附近沿着容器2的内壁面的方向开口,供气口4a安装在沿着内侧壁的循环方向上升的部分 液体6在循环路径3中。版权所有(C)2011,JPO&INPIT
    • 19. 发明专利
    • Water purifying apparatus
    • 水净化设备
    • JP2011025103A
    • 2011-02-10
    • JP2009170307
    • 2009-07-21
    • Yasunaga Corp株式会社安永
    • TAKASAKI MASATERUYAMAOKA TAKASHIYAMAZAKI TETSUYAKINE YOSHINORISAKANISHI KOJIMAEDA HIROTO
    • C02F1/72B01J35/02C02F1/32
    • Y02W10/37
    • PROBLEM TO BE SOLVED: To provide a water purifying apparatus which can perform photocatalytic reaction and can improve purification performance with respect to turbid water by making water contain oxygen. SOLUTION: The water purifying apparatus comprises a photocatalyst unit 2 which includes a purification container 5 placed outside the hydrosphere, a photocatalyst filter 4 accommodated in the purification container 5; and a water discharge part 6 for discharging water in the container 5, and an aeration unit 3 which includes aeration piping 9 having an outlet disposed in the purification container 5 and an inlet disposed in the hydrosphere, and supplying the turbid water in the hydrosphere into the purification container 5 together with air when the air is supplied from the inlet, an air supply pipe 8 having one end in the inlet of the aeration piping 9 and having the other end out side the hydrosphere, and an air pump 7 connected to the other end of the air supply pipe 8 to supply air into the aeration piping 9 through the air supply pipe 8. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够进行光催化反应的水净化装置,并且通过使水含有氧来提高相对于混浊水的净化性能。 解决方案:水净化装置包括光催化单元2,其包括放置在水圈外的净化容器5,容纳在净化容器5中的光催化剂过滤器4; 以及用于排出容器5中的水的排水部6,以及曝气单元3,其包括具有设置在净化容器5中的出口的排气管9和设置在水圈中的入口,并将水球中的混浊水供给到 当从入口供给空气时,净化容器5与空气一起供给空气供给管8,该供气管8的一端位于曝气管9的入口中,另一端位于水圈的外侧;空气泵7, 空气供给管8的另一端,通过供气管8向通气管道9供给空气。版权所有(C)2011,JPO&INPIT
    • 20. 发明专利
    • Wire saw apparatus
    • 线锯装置
    • JP2010105061A
    • 2010-05-13
    • JP2008276634
    • 2008-10-28
    • Yasunaga Corp株式会社安永
    • FUKUOKA MASAHIKOTANAKA YOSHIAKIIWASAKI SHUICHI
    • B24B27/06B28D5/04H01L21/304
    • PROBLEM TO BE SOLVED: To provide a wire saw apparatus capable of preventing a wire from breaking, even if a fixed abrasive grain wire is used, and surely achieving high working efficiency and high-speed cutting inherent to a fixed abrasive grain method. SOLUTION: The wire saw apparatus 1 includes a wire 2 capable of reciprocating for cutting a workpiece 11 which is pushed, wherein abrasive grains are fixed to the wire 2 in advance. The apparatus includes a tension adjusting means 6 for adjusting the tension of the wire 2 while the wire 2 reciprocates, and a controller 12 for controlling the tension of the wire 2 via the means 6 and also controlling the traveling speed of the wire 2. The controller 12 controls the acceleration/deceleration of the wire 2 to be 36,000 m/min 2 or higher when the wire 2 is reversed in running from normal running in one direction to normal running in the other direction while controlling the tension of the wire 2 to be within ±2.5N with respect to a set value which is 50% or higher of the breaking strength of the wire 2 or controls the time required for the reverse in running to be 3 seconds or shorter. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使使用固定的磨粒线,也能够确保实现固定磨粒方法固有的高工作效率和高速切削,能够防止线断裂的线锯装置 。 解决方案:线锯装置1包括能够往复运动的线材2,用于切割被推动的工件11,其中磨料颗粒预先固定到线材2。 该装置包括用于在线2往复运动时调节线2的张力的张力调节装置6以及用于经由装置6控制线2的张力并控制线2的行进速度的控制器12。 当线2从一个方向的正常运行向另一个方向的正常运行反转时,控制器12将电线2的加速/减速控制为36,000m / min 2 或更高,同时控制 线材2的张力相对于线材2的断裂强度的50%以上的设定值在±2.5N以内,或将倒车时间所需的时间控制在3秒以下。 版权所有(C)2010,JPO&INPIT