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    • 1. 发明授权
    • Method for bending a glass sheet and apparatus for bending a glass sheet
    • 用于弯曲玻璃板的方法和用于弯曲玻璃板的装置
    • US08387415B2
    • 2013-03-05
    • US12488298
    • 2009-06-19
    • Masao FukamiTaisei MoriYutaka KitajimaKoji Izumi
    • Masao FukamiTaisei MoriYutaka KitajimaKoji Izumi
    • C03B23/025C03B23/027C03B23/03
    • C03B23/027C03B23/0305
    • The present invention relates to an apparatus for bending a glass sheet and a method for bending a glass sheet including an apparatus and a method for conveying a glass sheet, and it aims at producing with good efficiency a glass sheet of high quality, having complicated configuration.The method for bending a glass sheet comprises a step of placing a heated glass sheet on an inner mold with a tilting mechanism arranged at an inner side of a forming ring with a tilting mechanism, the forming ring being provided with a fixed frame and a movable frame, to thereby preform the glass sheet, a step of transferring the glass sheet preformed on the inner mold with a tilting mechanism onto the forming ring with a tilting mechanism and a step of pressing the glass sheet with a predetermined forming plane of the forming ring and tilting the movable frame, wherein the step of preforming the glass sheet includes a step of preforming the glass sheet placed on the inner mold by tilting a movable frame of inner mold pivoted at an end of a fixed frame of inner mold provided in the inner mold.
    • 本发明涉及一种玻璃板的弯曲装置和玻璃板的弯曲方法,该玻璃板包括玻璃板的输送装置和方法,其目的在于高效率地生产出具有复杂构造的玻璃板 。 弯曲玻璃板的方法包括将加热的玻璃板放置在具有倾斜机构的内模上,该倾斜机构布置在具有倾斜机构的成形环的内侧,成形环设置有固定框架和可移动 框架,从而预成型玻璃板,将倾斜机构上预成型在内模上的玻璃板用倾斜机构转移到成形环上的步骤,以及用成形环的预定成形平面挤压玻璃板的步骤 并且倾斜所述可动框架,其中预成型玻璃板的步骤包括通过倾斜内模的可移动框架来预先设置放置在所述内模上的所述玻璃板的步骤,所述内模的可移动框架在设置在所述内模具中的内模的固定框架的端部处 模子。
    • 2. 发明申请
    • METHOD OF DERIVING SCATTERED WAVE, METHOD OF MANUFACTURING LENS, AND NON-TRANSITORY RECORDING MEDIUM
    • 散射波的方法,制造镜头的方法和非记录记录介质
    • US20120260493A1
    • 2012-10-18
    • US13449373
    • 2012-04-18
    • Taisei MORI
    • Taisei MORI
    • G01N21/49B23P17/04
    • G01N21/47B82Y20/00Y10T29/49
    • A method of deriving a scattered wave includes the steps of calculating a first scattered wave from a scatterer at a predetermined position by using a predetermined electromagnetic wave entering the scatterer, calculating a second scattered wave from a spherical nanoparticle cluster at the predetermined position by using T-matrix method when the predetermined electromagnetic wave enters the spherical nanoparticle cluster in a state where the spherical nanoparticle cluster containing a plurality of spherical nanoparticles is arranged inside a region that has the same shape and size as those of the scatterer, determining a condition of the plurality of spherical nanoparticles so that the first scattered wave is equal to the second scattered wave, and obtaining the scattered wave from the scatterer at an arbitrary position when an arbitrary electromagnetic wave enters the scatterer, based on the determined condition of the spherical nanoparticle.
    • 导出散射波的方法包括以下步骤:通过使用进入散射体的预定电磁波,从预定位置的散射体计算第一散射波,使用T从球形纳米颗粒簇计算第二散射波 当在包含多个球形纳米颗粒的球形纳米颗粒簇布置在与散射体的形状和尺寸相同的形状和尺寸的区域内的状态下,当预定的电磁波进入球形纳米颗粒簇时,确定条件 多个球形纳米粒子,使得第一散射波等于第二散射波,并且在任意电磁波进入散射体的任意位置时,基于球形纳米粒子的确定条件,从散射体获得散射波。
    • 3. 发明申请
    • METHOD FOR BENDING A GLASS SHEET AND APPARATUS FOR BENDING A GLASS SHEET
    • 用于弯曲玻璃板的方法和用于弯曲玻璃板的装置
    • US20090320523A1
    • 2009-12-31
    • US12488298
    • 2009-06-19
    • Masao FUKAMITaisei MoriYutaka KitajimaKoji Izumi
    • Masao FUKAMITaisei MoriYutaka KitajimaKoji Izumi
    • C03B23/025C03B23/02
    • C03B23/027C03B23/0305
    • The present invention relates to an apparatus for bending a glass sheet and a method for bending a glass sheet including an apparatus and a method for conveying a glass sheet, and it aims at producing with good efficiency a glass sheet of high quality, having complicated configuration.The method for bending a glass sheet comprises a step of placing a heated glass sheet on an inner mold with a tilting mechanism arranged at an inner side of a forming ring with a tilting mechanism, the forming ring being provided with a fixed frame and a movable frame, to thereby preform the glass sheet, a step of transferring the glass sheet preformed on the inner mold with a tilting mechanism onto the forming ring with a tilting mechanism and a step of pressing the glass sheet with a predetermined forming plane of the forming ring and tilting the movable frame, wherein the step of preforming the glass sheet includes a step of preforming the glass sheet placed on the inner mold by tilting a movable frame of inner mold pivoted at an end of a fixed frame of inner mold provided in the inner mold.
    • 本发明涉及一种玻璃板的弯曲装置和玻璃板的弯曲方法,该玻璃板包括玻璃板的输送装置和方法,其目的在于高效率地生产出具有复杂构造的玻璃板 。 弯曲玻璃板的方法包括将加热的玻璃板放置在具有倾斜机构的内模上,该倾斜机构布置在具有倾斜机构的成形环的内侧,成形环设置有固定框架和可移动 框架,从而预成型玻璃板,将倾斜机构上预成型在内模上的玻璃板用倾斜机构转移到成形环上的步骤,以及用成形环的预定成形平面挤压玻璃板的步骤 并且倾斜所述可动框架,其中预成型玻璃板的步骤包括通过倾斜内模的可移动框架来预先设置放置在所述内模上的所述玻璃板的步骤,所述内模的可移动框架在设置在所述内模具中的内模的固定框架的端部处 模子。
    • 4. 发明授权
    • Method of deriving scattered wave, method of manufacturing lens, and non-transitory recording medium
    • 派生散射波的方法,制造镜片的方法和非暂时记录介质
    • US08874417B2
    • 2014-10-28
    • US13449373
    • 2012-04-18
    • Taisei Mori
    • Taisei Mori
    • G06G7/48G01N21/47B82Y20/00
    • G01N21/47B82Y20/00Y10T29/49
    • A method of deriving a scattered wave includes the steps of calculating a first scattered wave from a scatterer at a predetermined position by using a predetermined electromagnetic wave entering the scatterer, calculating a second scattered wave from a spherical nanoparticle cluster at the predetermined position by using T-matrix method when the predetermined electromagnetic wave enters the spherical nanoparticle cluster in a state where the spherical nanoparticle cluster containing a plurality of spherical nanoparticles is arranged inside a region that has the same shape and size as those of the scatterer, determining a condition of the plurality of spherical nanoparticles so that the first scattered wave is equal to the second scattered wave, and obtaining the scattered wave from the scatterer at an arbitrary position when an arbitrary electromagnetic wave enters the scatterer, based on the determined condition of the spherical nanoparticle.
    • 导出散射波的方法包括以下步骤:通过使用预定的电磁波进入散射体,从预定位置的散射体计算第一散射波,通过使用T从球形纳米颗粒簇计算第二散射波 当在包含多个球形纳米颗粒的球形纳米颗粒簇布置在与散射体的形状和尺寸相同的形状和尺寸的区域内的状态下,当预定的电磁波进入球形纳米颗粒簇时,确定条件 多个球形纳米粒子,使得第一散射波等于第二散射波,并且在任意电磁波进入散射体的任意位置时,基于球形纳米粒子的确定条件,从散射体获得散射波。
    • 6. 发明申请
    • BENDING METHOD FOR A GLASS PLATE AND BENDING APPARATUS FOR A GLASS PLATE
    • US20100236290A1
    • 2010-09-23
    • US12792868
    • 2010-06-03
    • Masao FukamiTaisei MoriYutaka Kitajima
    • Masao FukamiTaisei MoriYutaka Kitajima
    • C03B23/023C03B23/02
    • C03B23/027C03B23/0252C03B23/0256C03B23/03C03B23/0305C03B23/0357C03B35/145C03B35/202C03B2225/02
    • In a preliminary forming step, positioning of a glass sheet is facilitated, and generation of a hinge mark by a flapping mechanism and generation of excessively bent portions, are prevented at the same time.A bending method for a glass sheet comprising: a preliminary forming step of placing a heated and softened glass sheet on a preliminary forming supporting mold which supports edge portions of the glass sheet, and pressing the glass sheet against a forming face of the preliminary forming supporting mold in a state that the glass sheet is placed on the preliminary forming supporting mold to form the glass sheet into a desired preliminary bent shape; and a main forming step of transferring the glass sheet formed into the preliminary bent shape onto a main forming supporting mold which supports edge portions of the glass sheet, and pressing the glass sheet against a forming face of a main forming mold in a state that the glass sheet is placed on the main forming supporting mold to form the glass sheet into a desired final bent shape; wherein the preliminary forming supporting mold comprises an outer mold and an inner mold provided inside the outer mold and having a flatter glass-plate-placing face than that of the outer mold, the main forming supporting mold comprises a lower mold having a forming face opposed to the main forming mold; the preliminary forming step includes a step of transferring the heated and softened glass sheet onto the inner mold, a step of transferring the glass sheet on the inner mold onto the outer mold, a step of pressing the glass sheet placed on the outer mold against the forming face of the preliminary forming mold, and a step of holding the glass sheet formed into the preliminary bent shape by the preliminary forming mold; and the main forming step includes a step of transferring the glass sheet formed into the preliminary bent shape onto the main forming supporting mold, and a step of pressing the glass sheet against the forming face of the main forming mold while an under surface of the glass sheet is supported by the forming face of the lower mold while the glass sheet is placed on the main forming supporting mold.
    • 7. 发明授权
    • Method and apparatus for bending a glass sheet
    • 用于弯曲玻璃板的方法和装置
    • US08033138B2
    • 2011-10-11
    • US11610811
    • 2006-12-14
    • Junji HoriTaisei MoriMasao FukamiYutaka Kitajima
    • Junji HoriTaisei MoriMasao FukamiYutaka Kitajima
    • C03B11/04C03B11/07
    • C03B23/0357C03B23/0305
    • It is an object of the present invention to provide a method for bending a glass sheet which can appropriately prevent cloth mark due to suctioning.The present invention is characterized by a method for bending a glass sheet comprising a heating step for heating a glass sheet to soften the glass sheet, and a bending step for bending the heated and softened glass sheet to have a predetermined shape, wherein the bending step comprises a step of pressing the heated and softened glass sheet, whose edges are supported by a supporting frame, against a forming surface of a bending mold opposed to the supporting frame, and a vacuum forming step for providing a negative pressure through a plurality of suction holes formed on the forming surface so that the shape of the pressed glass sheet is bent along the forming surface of the mold, and wherein in the vacuum forming step, the plurality of suction holes are grouped into at least two groups, and the raised negative pressures for the respective groups are lowered at different timings.
    • 本发明的目的是提供一种弯曲玻璃板的方法,该方法可以适当地防止由于抽吸引起的布痕。 本发明的特征在于一种弯曲玻璃板的方法,其包括用于加热玻璃板以加热玻璃板的加热步骤,以及用于将加热软化的玻璃板弯曲成具有预定形状的弯曲步骤,其中弯曲步骤 包括将边缘由支撑框架支撑的加热软化玻璃板压靠在与支撑框架相对的弯曲模具的成形表面上的步骤,以及通过多个抽吸提供负压的真空成型步骤 形成在成形表面上的孔,使得压制玻璃板的形状沿着模具的成形表面弯曲,并且其中在真空成形步骤中,多个吸入孔被分成至少两组,并且升高的负值 各组的压力在不同的时刻降低。
    • 8. 发明申请
    • METHOD AND APPARATUS FOR BENDING A GLASS SHEET
    • 弯曲玻璃板的方法和装置
    • US20070144211A1
    • 2007-06-28
    • US11610811
    • 2006-12-14
    • Junji HoriTaisei MoriMasao FukamiYutaka Kitajima
    • Junji HoriTaisei MoriMasao FukamiYutaka Kitajima
    • C03B31/00C03B23/02C03B21/00
    • C03B23/0357C03B23/0305
    • It is an object of the present invention to provide a method for bending a glass sheet which can appropriately prevent cloth mark due to suctioning. The present invention is characterized by a method for bending a glass sheet comprising a heating step for heating a glass sheet to soften the glass sheet, and a bending step for bending the heated and softened glass sheet to have a predetermined shape, wherein the bending step comprises a step of pressing the heated and softened glass sheet, whose edges are supported by a supporting frame, against a forming surface of a bending mold opposed to the supporting frame, and a vacuum forming step for providing a negative pressure through a plurality of suction holes formed on the forming surface so that the shape of the pressed glass sheet is bent along the forming surface of the mold, and wherein in the vacuum forming step, the plurality of suction holes are grouped into at least two groups, and the raised negative pressures for the respective groups are lowered at different timings.
    • 本发明的目的是提供一种弯曲玻璃板的方法,该方法可以适当地防止由于抽吸引起的布痕。 本发明的特征在于一种弯曲玻璃板的方法,其包括用于加热玻璃板以加热玻璃板的加热步骤,以及用于将加热软化的玻璃板弯曲成具有预定形状的弯曲步骤,其中弯曲步骤 包括将边缘由支撑框架支撑的加热软化玻璃板压靠在与支撑框架相对的弯曲模具的成形表面上的步骤,以及通过多个抽吸提供负压的真空成型步骤 形成在成形表面上的孔,使得压制玻璃板的形状沿着模具的成形表面弯曲,并且其中在真空成形步骤中,多个吸入孔被分成至少两组,并且升高的负值 各组的压力在不同的时刻降低。