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    • 3. 发明专利
    • Mold
    • 模子
    • JP2007326241A
    • 2007-12-20
    • JP2006157377
    • 2006-06-06
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • SASAKI MASAYUKIMANO TAKETOSHI
    • B29C33/02B29C33/38B29L22/00
    • PROBLEM TO BE SOLVED: To provide a mold which has abrasion resistance to the engagement part on the body side of a compression molding machine and can easily form a channel good in cooling efficiency in the mold.
      SOLUTION: The mold includes a lower part mold forming the blow part of a container preform and an upper part mold forming the mouth-neck part of the preform. The upper part mold is formed by a pair of semi-circular neck halves. The neck half 16 is composed of an inner layer block 27 and an outer layer block 26 which is engaged with the peripheral part of the inner layer block 27, and the inner layer block 27 and the outer layer block 26 are formed from different materials. A ditch is formed in at least one of the joining surfaces of the inner layer block 27 and the outer layer block 26. The ditch is made a passage 36 for cooling water cooling the mouth-neck part of the preform.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供对压缩成型机的主体侧的接合部具有耐磨性的模具,能够容易地形成模具中的冷却效率良好的通道。 解决方案:模具包括形成容器预制件的吹塑部分的下部模具和形成预成型件的口颈部分的上部模具。 上部模具由一对半圆形半部形成。 颈部半部16由内层块27和与内层块27的外周部配合的外层块26构成,内层块27和外层块26由不同的材料形成。 在内层块27和外层块26的至少一个接合表面中形成沟槽。沟槽被制成通道36,用于冷却冷却预成型件的口颈部分的水。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Preform takeoff device
    • 优先购买设备
    • JP2007196542A
    • 2007-08-09
    • JP2006018482
    • 2006-01-27
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • TAKANO SHOICHIROSASAKI MASAYUKI
    • B29C49/42B29B11/12B29C31/08B29C49/02B29L22/00
    • B29C43/08B29B2911/1402B29B2911/14026B29B2911/14033B29B2911/1404B29B2911/14106B29B2911/14213B29C31/048B29C43/34B29C2043/3472
    • PROBLEM TO BE SOLVED: To provide a preform takeoff device which stabilizes its posture while a preform is transferred and prevents its taking scratches.
      SOLUTION: The preform takeoff device 1 is installed, in which a preform 12, formed by a compression molding machine 2 as a pre-molded body of a container, is delivered from the compression molding machine 2 to a transferring conveyer 3 of the preform 12. The takeoff device 1 is constructed so as to have a grip 35 which, attached to a grip unit 11 that is rotatable through a rotary arm 10, supports the preform 12 and so as for the grip 35 to have a means which permits its advance and retreat to the direction of the radius of rotation and a means which enables the grip to swing by a swing axis furnished on the rotating arm 10 and make a follow for a predetermined distance along the rotating track of the preform 12.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种预成型件起飞装置,其在预成型体被转移时稳定其姿势,并且防止其划伤。 解决方案:安装预成型件起飞装置1,其中将由作为容器的预成型体的压缩成型机2形成的预成型体12从压缩成型机2输送到转印输送机3 起飞装置1被构造成具有把手35,该把手35附接到可通过旋转臂10旋转的把手单元11,支撑预成型件12,并且为了使手柄35具有一个装置 允许其向旋转半径的方向前进和后退,并且允许手柄通过设置在旋转臂10上的摆动轴线摆动并沿着预成型件12的旋转轨道沿着预定距离进行跟随。 P>版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Method and apparatus for controlling rotation of mandrel
    • 控制旋转旋转的方法和装置
    • JP2005058898A
    • 2005-03-10
    • JP2003291765
    • 2003-08-11
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • IWAKIRI YUJIKAWAI YOSHIJISASAKI MASAYUKI
    • B41F17/22B05C1/08B05C13/02B41M1/40B65C9/04
    • PROBLEM TO BE SOLVED: To provide a rotation control method for a mandrel capable of certainly rotating the mandrel and enabling the stable pre-spinning of the mandrel.
      SOLUTION: A rack-like fixed gear 10 is arranged along the revolution route of a mandrel shaft 5 in a preliminary-spinning section for preliminarily spinning the mandrel 3 at least from the predetermined upstream position of a tracking section to the start position of the tracking section, and a preliminary-rotation gear 7 and a cam clutch 15 are provided to the mandrel shaft 5. In the preliminary-spinning section, the rotatory power due to the meshing of the rack-like fixed gear 10 with the preliminary-rotation gear 7 is transmitted to the mandrel shaft 5 through the cam clutch 15 to preliminarily rotate the mandrel and, in the tracking section, the cam clutch 15 is detached and the mandrel shaft is rotated only by the frictional contact with a treatment rotary roll.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够确定地旋转心轴并使得心轴的稳定的预旋转的心轴的旋转控制方法。 解决方案:在预备纺纱部分中,沿着心轴轴5的旋转路径布置有齿条状固定齿轮10,用于将心轴3至少从跟踪部的预定上游位置旋转到起始位置 ,并且预备旋转齿轮7和凸轮离合器15设置在心轴轴5上。在预纺部分中,由于齿条状固定齿轮10与初步的啮合而产生的旋转动力 旋转齿轮7通过凸轮离合器15传递到心轴轴5以预先旋转心轴,并且在跟踪部中,凸轮离合器15被拆卸,并且心轴仅通过与处理旋转辊的摩擦接触而旋转 。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Mandrel rotating transferring device
    • MANDREL旋转传送装置
    • JP2004238084A
    • 2004-08-26
    • JP2004123146
    • 2004-04-19
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • SHIBASAKA MAMORUSASAKI MASAYUKIKAWAI YOSHIJI
    • B65C3/16
    • PROBLEM TO BE SOLVED: To obtain a mandrel rotating transferring device which gives a high plastering pressure even at a large tracking angle and showing a high mandrel rigidity.
      SOLUTION: A support plate 23 supporting a mandrel device 15 is radially displaceably mounted at the radial end of a rotor 22, and a cam follower 28 is mounted at both ends in the longitudinal direction. The cam follower 28 mates with a cam groove 31 formed in a pair of cam plates 30 fixed to both the frames 20 to support both the sides of the support plate 23. When the rotor 22 rotates according to the rotation of the working spindle 21, the support plate 23 rotates responding to the shape of the cam groove 31 while displacing in the radial direction of the rotor 22. Since the support plate 23 can not only move circularly but also move reciprocally in an arbitrary profile-closed loop and both ends of the support plate 23 are supported, the mandrel device 15 obtains high rigidity.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为了获得即使在大的跟踪角度也能提供高的抹灰压力并显示高的心轴刚度的心轴旋转转印装置。 解决方案:支撑心轴装置15的支撑板23径向可移动地安装在转子22的径向端,并且凸轮从动件28沿纵向两端安装。 凸轮从动件28与形成在两个框架20上的一对凸轮板30中形成的凸轮槽31配合,以支撑支撑板23的两侧。当转子22根据工作主轴21的旋转而旋转时, 支撑板23在转子22的径向方向上响应于凸轮槽31的形状而旋转。由于支撑板23不仅可以循环运动,而且可以在任意的轮廓闭合回路中往复运动,并且两端 支撑板23被支撑,心轴装置15获得高刚性。 版权所有(C)2004,JPO&NCIPI
    • 7. 发明专利
    • Inspection device and inspection method
    • 检查装置和检查方法
    • JP2009085597A
    • 2009-04-23
    • JP2007251617
    • 2007-09-27
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • TAKADA JUNICHITAKAHASHI YOTAROITO TAKESHIHASHIMOTO HIROYUKISASAKI MASAYUKIMANO TAKETOSHI
    • G01N21/90G01B11/00G01B11/24G01N21/89
    • PROBLEM TO BE SOLVED: To provide an inspection device and an inspection method capable of inspecting highly accurately and efficiently a flaw, a strain or other abnormalities generated in a cylindrical molded body.
      SOLUTION: This device includes a light source for irradiating inspection light to the cylindrical molded body molded by resin molding, the first polarization means arranged inside the cylindrical molded body, the second polarization means arranged in the traveling direction of the inspection light outside the cylindrical molded body, imaging means for imaging an interference pattern generated by the inspection light passing the first polarization means and the second polarization means, and analysis means for analyzing at least one of the strain, the shape and the appearance of the cylindrical molded body based on the interference pattern.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够高精度高效地检查圆筒形成形体中产生的缺陷,应变或其他异常的检查装置和检查方法。 解决方案:该装置包括用于将检查光照射到通过树脂成型模制的圆筒形成型体的光源,设置在圆筒形成型体内的第一偏振装置,沿着检查光外侧的行进方向布置的第二偏振装置 圆柱形成型体,用于对通过第一偏振装置和第二偏振装置的检查光产生的干涉图案进行成像的成像装置和用于分析圆筒形成型体的应变,形状和外观中的至少一个的分析装置 基于干扰模式。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Molding equipment of cup-shaped container, molding method and cup-shaped container
    • 杯形容器的成型设备,成型方法和杯形容器
    • JP2007111888A
    • 2007-05-10
    • JP2005302905
    • 2005-10-18
    • Asano Laboratories Co LtdToyo Seikan Kaisha Ltd東洋製罐株式会社株式会社浅野研究所
    • SASAKI MASAYUKISHIMOMURA TORUSUZUKI NAGAFUMITANAKA SHINJIGOTO OSAMUMATSUOKA KIKUOTAKAI TOSHIHIROMIZOGUCHI KENICHIMAEDA RYUJI
    • B29C51/10B29C51/36B29L22/00B65D1/26
    • PROBLEM TO BE SOLVED: To provide molding equipment of a cup-shaped container capable of making the air passing resistance of an air passage as low as possible to rapidly send in micropressure air and capable of precisely control the pressure at the time of sheet draw molding. SOLUTION: In the molding equipment of the cup-shaped container constituted so that a resin sheet 11 softened by heating is pushed in the cavity 20A of a mold 20 by a plug 30 and positive micropressure air (p) is supplied into the cavity 20A from the micropressure air supply passage 50 provided to the mold 20 while positive micropressure is produced in the space between the resin sheet 11 and the inner periphery of the cavity 20A to surround the resin sheet 11 around the plug 30 while the drawn resin sheet 11 is closely brought into contact with the inner peripheral surface of the mold 20 to be molded into a cup shape, the micropressure air supply passage 50 provided to the mold 20 is formed into a slit shape and the length of a slit is made long while restricting the width of the slit to a predetermined width to ensure the cross-sectional area of a flow channel to enhance air suction efficiency. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供能够使空气通道的空气通过阻力尽可能低的杯形容器的模制设备,以便在微压空气中快速发送并且能够精确地控制压力在 拉伸成型。 解决方案:在杯形容器的成型设备中,通过加热软化的树脂片11通过塞子30被推入模具20的空腔20A中,并将正的微压空气(p)供应到 同时在树脂片11与空腔20A的内周之间的空间中产生正的微压力,以围绕插塞30围绕树脂片11,同时拉伸树脂片 11与模具20的内周面紧密接触以成型为杯状,设置在模具20上的微压气体供给通路50形成为狭缝状,并且狭缝的长度长, 将狭缝的宽度限制在预定宽度,以确保流道的横截面积,以提高吸气效率。 版权所有(C)2007,JPO&INPIT