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    • 4. 发明授权
    • Injection molding machine
    • 注塑机
    • US08287264B2
    • 2012-10-16
    • US11528839
    • 2006-09-26
    • Akihiko MatsumotoYoshihiro OkumuraShinichiro HaraKanji Sekihara
    • Akihiko MatsumotoYoshihiro OkumuraShinichiro HaraKanji Sekihara
    • B29C45/78
    • B29C45/74B29C45/78B29C2045/0094B29C2045/2741B29C2045/2754B29L2011/00
    • An injection molding comprises: a fixed mold; a movable mold which is capable of contacting to and separating from the fixed mold; and an injection unit which supplies molten resin to a space formed between the fixed mold and the movable mold when being pressed to a non-molding face of the fixed mold. The injection unit comprises: a nozzle portion which injects molten resin to the space formed between the molds; an injecting portion which applies molten resin pressure toward the space formed between the fixed mold and the movable mold though the nozzle portion; a heater and a temperature sensor provided on the nozzle portion; and a heater and a temperature sensor provided on the injecting portion, and detection accuracy of the sensor of the nozzle portion is higher than that of the injecting potion. There is thus provided an injection molding machine capable of manufacturing optics with high accuracy without considerable cost-up by realizing stable and highly accurate injection.
    • 注射成型包括:固定模具; 能够与固定模具接触和分离的活动模具; 以及注射单元,其在被固定模具的非成型面压制时,将熔融树脂供给到形成在固定模具和可动模具之间的空间。 注射单元包括:喷嘴部分,其将熔融树脂注射到形成在模具之间的空间; 注射部分,其通过喷嘴部分向固定模具和可动模具之间形成的空间施加熔融树脂压力; 设置在喷嘴部上的加热器和温度传感器; 设置在喷射部上的加热器和温度传感器,喷嘴部的传感器的检测精度高于喷射部的传感器的检测精度。 因此,提供了一种注射成型机,其能够通过实现稳定且高度精确的注射而以高精度制造光学器件而不需要大量成本。
    • 5. 发明申请
    • Injection molding machine
    • 注塑机
    • US20070077327A1
    • 2007-04-05
    • US11528839
    • 2006-09-26
    • Akihiko MatsumotoYoshihiro OkumuraShinichiro HaraKanji Sekihara
    • Akihiko MatsumotoYoshihiro OkumuraShinichiro HaraKanji Sekihara
    • B29C45/78B29C45/74
    • B29C45/74B29C45/78B29C2045/0094B29C2045/2741B29C2045/2754B29L2011/00
    • An injection molding comprises: a fixed mold; a movable mold which is capable of contacting to and separating from the fixed mold; and an injection unit which supplies molten resin to a space formed between the fixed mold and the movable mold when being pressed to a non-molding face of the fixed mold. The injection unit comprises: a nozzle portion which injects molten resin to the space formed between the molds; an injecting portion which applies molten resin pressure toward the space formed between the fixed mold and the movable mold though the nozzle portion; a heater and a temperature sensor provided on the nozzle portion; and a heater and a temperature sensor provided on the injecting portion, and detection accuracy of the sensor of the nozzle portion is higher than that of the injecting potion. There is thus provided an injection molding machine capable of manufacturing optics with high accuracy without considerable cost-up by realizing stable and highly accurate injection.
    • 注射成型包括:固定模具; 能够与固定模具接触和分离的活动模具; 以及注射单元,其在被固定模具的非成型面压制时,将熔融树脂供给到形成在固定模具和可动模具之间的空间。 注射单元包括:喷嘴部分,其将熔融树脂注射到形成在模具之间的空间; 注射部分,其通过喷嘴部分向固定模具和可动模具之间形成的空间施加熔融树脂压力; 设置在喷嘴部上的加热器和温度传感器; 设置在喷射部上的加热器和温度传感器,喷嘴部的传感器的检测精度高于喷射部的传感器的检测精度。 因此,提供了一种注射成型机,其能够通过实现稳定且高度精确的注射而以高精度制造光学器件而不需要大量成本。
    • 6. 发明申请
    • OPTICAL ELEMENT MOLDING APPARATUS
    • 光学元件成型设备
    • US20090324764A1
    • 2009-12-31
    • US12438828
    • 2007-08-08
    • Kanji SekiharaShinichiro Hara
    • Kanji SekiharaShinichiro Hara
    • B29C45/66
    • B29C45/1744B29C45/2606
    • An optical element manufacturing apparatus is provided with a fixed side metal mold 5 attached to a fixed platen 1, and a movable side metal platen 6 attached to a movable platen 2. The fixed side metal mold 5 and the movable side metal mold 6 are clamped by bringing both platens 1 and 2 close to each other. In the clamped status, a molding material is injected into a molding cavity between the both metal molds and an optical element is produced. A taper recessed section 11a and a taper protruding section 21a, provided on the fixed side metal mold 5 and the movable side metal mold 6 respectively, fit each other. The movable side metal molds 6 provides a friction mechanism section 23 which permits the metal mold to shift within a plane perpendicular to the clamping direction with respect to the movable platen 2.
    • 光学元件制造装置设置有安装在固定台板1上的固定侧金属模5和安装在可动压板2上的可动侧金属压板6.固定侧金属模具5和可动侧金属模具6被夹紧 通过使压板1和2彼此靠近。 在夹紧状态下,将模制材料注入到两个金属模具之间的模制腔中,并且制造光学元件。 分别设置在固定侧金属模具5和可动侧金属模具6上的锥形凹部11a和锥形突出部21a彼此配合。 可移动侧金属模具6提供摩擦机构部分23,其允许金属模具相对于可动压板2在垂直于夹紧方向的平面内移动。
    • 8. 发明授权
    • Optical element molding apparatus
    • 光学元件成型装置
    • US07988441B2
    • 2011-08-02
    • US12438828
    • 2007-08-08
    • Kanji SekiharaShinichiro Hara
    • Kanji SekiharaShinichiro Hara
    • B29C33/22
    • B29C45/1744B29C45/2606
    • An optical element manufacturing apparatus is provided with a fixed side metal mold 5 attached to a fixed platen 1, and a movable side metal mold 6 attached to a movable platen 2. The fixed side metal mold 5 and the movable side metal mold 6 are clamped by bringing both platens 1 and 2 close to each other. In the clamped status, a molding material is injected into a molding cavity between the both metal molds and an optical element is produced. A taper recessed section 11a and a taper protruding section 21a, provided on the fixed side metal mold 5 and the movable side metal mold 6 respectively, fit each other. The movable side metal mold 6 provides a friction mechanism section 23 which permits the metal mold to shift within a plane perpendicular to the clamping direction with respect to the movable platen 2.
    • 光学元件制造装置设置有安装在固定台板1上的固定侧金属模具5和安装在可动台板2上的可动侧金属模具6.固定侧金属模具5和可动侧金属模具6被夹紧 通过使压板1和2彼此靠近。 在夹紧状态下,将模制材料注入到两个金属模具之间的模制腔中,并且制造光学元件。 分别设置在固定侧金属模具5和可动侧金属模具6上的锥形凹部11a和锥形突出部21a彼此配合。 可移动侧金属模具6提供摩擦机构部分23,其允许金属模具在垂直于夹紧方向的平面内相对于可动压板2移动。
    • 9. 发明申请
    • Optical Element, Holding Structure Therefor, And Optical Device
    • 光学元件,保持结构及光学元件
    • US20140233116A1
    • 2014-08-21
    • US14348860
    • 2012-09-10
    • Shinichiro HaraToshiyuki MajimaHiroshi TakagiAkihiko Matsumoto
    • Shinichiro HaraToshiyuki MajimaHiroshi TakagiAkihiko Matsumoto
    • G02B7/02
    • G02B7/02B41J2/471G02B26/125G11B7/1372G11B7/1374H04N1/113
    • An optical element has a first surface, a second surface on the opposite side of the first surface, an optical surface, and a protruding part. The protruding part is held in a prescribed position by being in contact with a holding member. The protruding part comprises a first protruding part and a second protruding part, The first protruding part comprises a first contact part that is a convex circular arc shape on at least one longitudinal plane and partly comes into contact with the holding member. The second protruding part comprises a second contact part that is a convex circular arc shape on at least one longitudinal plane and partly comes into contact with the holding member. A circular arc constitutes the first contact part and a circular arc that constitutes the second contact part are present in at least one cross-section that passes through a contact point between the first contact part and the holding member as well as a contact point between the second contact part and the holding member, and the center of the circular arc that constitutes the first contact part is aligned with the center of the circular arc that constitutes the second protruding part.
    • 光学元件具有第一表面,在第一表面的相对侧上的第二表面,光学表面和突出部分。 突起部通过与保持部件接触而保持在规定位置。 突出部包括第一突出部和第二突出部。第一突出部包括在至少一个纵向平面上呈凸圆弧形状并且部分地与保持部件接触的第一接触部。 第二突出部包括在至少一个纵向平面上是凸圆弧形状并且部分地与保持构件接触的第二接触部。 圆弧构成第一接触部分,并且构成第二接触部分的圆弧存在于穿过第一接触部分和保持部件之间的接触点的至少一个横截面以及接触点之间的接触点 第二接触部和保持构件,构成第一接触部的圆弧的中心与构成第二突出部的圆弧的中心对准。