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    • 1. 发明授权
    • Hermetic container and manufacturing method of the same
    • 密封容器和制造方法相同
    • US08821677B2
    • 2014-09-02
    • US13046868
    • 2011-03-14
    • Nobuhiro ItoMamo MatsumotoKazuya Ishiwata
    • Nobuhiro ItoMamo MatsumotoKazuya Ishiwata
    • B65D6/28B29C65/00B29C65/18H01J9/26H01J11/48H01J31/12H01L51/52
    • H01J9/261H01J11/48H01J31/123H01L51/5246
    • Adherence between a sealing material and a glass substrate is assured, thereby improving airtightness of a hermetic container. A manufacturing method of the hermetic container has: an assembling step of sealing a first glass substrate and a second glass substrate through a circumferential sealing material having plural straight line portions and plural coupling portions which connect the plural straight line portions so as to define an internal space between the first glass substrate and the second glass substrate; and a sealing step of maintaining the internal space to a negative pressure to an outside after the assembling step, applying such local force as to compress the coupling portions of the circumferential sealing material in a thickness direction of the sealing material, and heating and melting the sealing material by irradiating local heating light to the sealing material, to seal the first glass substrate and the second glass substrate.
    • 确保密封材料与玻璃基板之间的粘合性,从而提高密封容器的气密性。 密封容器的制造方法具有:通过具有多个直线部的周向密封材料密封第一玻璃基板和第二玻璃基板的组装工序,以及连接多个直线部分的多个连接部,以便限定内部 第一玻璃基板和第二玻璃基板之间的空间; 以及在组装步骤之后将内部空间保持为负压到外部的密封步骤,施加局部力以在密封材料的厚度方向上压缩周向密封材料的连接部分,并加热和熔化 通过将局部加热光照射到密封材料上来密封第一玻璃基板和第二玻璃基板。
    • 2. 发明授权
    • Manufacturing method of hermetic container
    • 密封容器的制造方法
    • US08475618B2
    • 2013-07-02
    • US13198867
    • 2011-08-05
    • Mamo MatsumotoTomohiro SaitoNobuhiro Ito
    • Mamo MatsumotoTomohiro SaitoNobuhiro Ito
    • B32B37/16
    • H01L51/5246H01J9/241H01L51/525
    • A manufacturing method of a hermetic container includes an assembling step of assembling the hermetic container and a sealing step of sealing by first and second sealing materials. Thus, in a case where local heating light is scanned toward an already-sealed portion of the second sealing material, since a separation portion of an unsealed state is located between the already-sealed portion and a downstream end of scanning, a load due to expansion/contraction of a frame body is applied to the first sealing material which is present in the separation portion of the unsealed state. After then, since the local heating light is irradiated to the first sealing material to which the load has been applied so as to heat and melt it, the load is relieved, whereby it is possible to suppress deterioration of joining strength and airtightness of the hermetic container.
    • 密封容器的制造方法包括组装密封容器的组装步骤和通过第一和第二密封材料密封的密封步骤。 因此,在向第二密封材料的已经密封的部分扫描局部加热光的情况下,由于未密封状态的分离部位于已经密封的部分和扫描的下游端之间,所以由于 将框体的伸缩进行施加到存在于未密封状态的分离部中的第一密封材料。 然后,由于局部加热光被照射到已经施加负载的第一密封材料上以加热和熔化,所以负载被释放,从而可以抑制密封件的接合强度和气密性的劣化 容器。
    • 3. 发明授权
    • Manufacturing method of hermetic container
    • 密封容器的制造方法
    • US08425714B2
    • 2013-04-23
    • US13046883
    • 2011-03-14
    • Nobuhiro ItoMamo Matsumoto
    • Nobuhiro ItoMamo Matsumoto
    • B32B37/06
    • H01J9/261H01L51/5246
    • A manufacturing method of a hermetic container, comprises: an assembling step of aligning a first glass substrate and a second substrate through a circumferential sealing material having plural straight line portions and plural coupling portions, so as to define an internal space between these substrates; and a sealing step of sealing the first glass substrate and the second glass substrate to each other, by performing a scanning step of performing scanning with local heating light, wherein the sealing step is performed in a state that local force is applied, thereby improving airtightness of the hermetic container.
    • 密封容器的制造方法包括:通过具有多个直线部分和多个连接部分的周向密封材料对准第一玻璃基板和第二基板的组装步骤,以限定这些基板之间的内部空间; 以及通过进行利用局部加热灯进行扫描的扫描步骤,将第一玻璃基板和第二玻璃基板密封的密封工序,其中,在施加局部力的状态下进行密封工序,从而提高气密性 的密封容器。
    • 4. 发明申请
    • MANUFACTURING METHOD OF HERMETIC CONTAINER
    • 渗透容器的制造方法
    • US20110237150A1
    • 2011-09-29
    • US13070527
    • 2011-03-24
    • Nobuhiro ItoMamo Matsumoto
    • Nobuhiro ItoMamo Matsumoto
    • H01J9/26
    • H01J9/261C03C23/0025C03C27/10H01L51/5246
    • A manufacturing method of a high-reliability hermetic container includes an assembling step of arranging, between first and second glass substrates, a sealing material including first and second straight line portions stretching in different directions and a coupling portion connecting these straight line portions, with a viscosity of the sealing material having a negative temperature coefficient, and a scanning sealing step of performing scanning to the first straight line portion and the coupling portion while irradiating local heating light at least once. Scanning to the second straight line portion and the coupling portion is performed while irradiating the local heating light at least once, and the assembling step further forms at least a part of the sealing material at the coupling portion with a film thickness thinner than the sealing material in a region adjacent to the coupling portion of the first straight line portion.
    • 高可靠性密封容器的制造方法包括:组装步骤,在第一和第二玻璃基板之间配置密封材料,所述密封材料包括沿不同方向拉伸的第一直线部分和第二直线部分,以及连接这些直线部分的连接部分, 具有负温度系数的密封材料的粘度和对第一直线部分和耦合部分进行扫描的扫描密封步骤,同时照射局部加热光至少一次。 在向局部加热灯照射至少一次的同时进行扫描到第二直线部分和耦合部分,并且组装步骤进一步在耦合部分形成具有比密封材料薄的膜厚度的密封材料的至少一部分 在与第一直线部分的联接部分相邻的区域中。
    • 5. 发明授权
    • Bonding method of base materials, and manufacturing method of image display apparatus
    • 基材的接合方法,图像显示装置的制造方法
    • US08429935B2
    • 2013-04-30
    • US12879652
    • 2010-09-10
    • Mitsutoshi HasegawaMamo MatsumotoTomohiro Saito
    • Mitsutoshi HasegawaMamo MatsumotoTomohiro Saito
    • C03B23/203
    • H01J9/261H01J29/86H01J31/127
    • It arranges a bonding material between a pair of base materials having different heat capacities and in which a difference between thermal expansion coefficients thereof is within 10×10−7/° C.; and bonds the pair of the base materials by the bonding material, by irradiating electromagnetic wave to the bonding material to melt and then harden it, wherein a thermal expansion coefficient at part of the bonding material facing one of the pair of the base materials of which the heat capacity is smaller is smaller than a thermal expansion coefficient at part of the bonding material facing the other of the pair of the base materials of which the heat capacity is larger by a difference within 10×10−7/° C., thereby bonding the base materials of which a difference of thermal expansion coefficients is relatively small, as preventing breakage and crack from occurring and further suppressing a degree of warp.
    • 在具有不同热容的一对基材之间布置粘结材料,其热膨胀系数之差在10×10-7 /℃以内。 并且通过所述接合材料将所述一对基材接合,通过向所述接合材料照射电磁波来熔化,然后使其硬化,其中所述接合材料部分的面对所述一对基材中的一个的热膨胀系数 热容量小于接合材料的一部分的热膨胀系数,所述接合材料的一部分热容容差大于10×10-7 /℃的基材中的另一个,从而 粘合热膨胀系数差相对较小的基材,防止破裂和裂纹发生,并进一步抑制翘曲度。
    • 6. 发明授权
    • Manufacturing method of hermetic container
    • 密封容器的制造方法
    • US08257130B2
    • 2012-09-04
    • US13070527
    • 2011-03-24
    • Nobuhiro ItoMamo Matsumoto
    • Nobuhiro ItoMamo Matsumoto
    • H01J9/00
    • H01J9/261C03C23/0025C03C27/10H01L51/5246
    • A manufacturing method of a high-reliability hermetic container includes an assembling step of arranging, between first and second glass substrates, a sealing material including first and second straight line portions stretching in different directions and a coupling portion connecting these straight line portions, with a viscosity of the sealing material having a negative temperature coefficient, and a scanning sealing step of performing scanning to the first straight line portion and the coupling portion while irradiating local heating light at least once. Scanning to the second straight line portion and the coupling portion is performed while irradiating the local heating light at least once, and the assembling step further forms at least a part of the sealing material at the coupling portion with a film thickness thinner than the sealing material in a region adjacent to the coupling portion of the first straight line portion.
    • 高可靠性密封容器的制造方法包括:组装步骤,在第一和第二玻璃基板之间配置密封材料,所述密封材料包括沿不同方向拉伸的第一直线部分和第二直线部分,以及连接这些直线部分的连接部分, 具有负温度系数的密封材料的粘度和对第一直线部分和耦合部分进行扫描的扫描密封步骤,同时照射局部加热光至少一次。 在向局部加热灯照射至少一次的同时进行扫描到第二直线部分和耦合部分,并且组装步骤进一步在耦合部分形成具有比密封材料薄的膜厚度的密封材料的至少一部分 在与第一直线部分的联接部分相邻的区域中。
    • 8. 发明申请
    • MANUFACTURING METHOD OF HERMETIC CONTAINER AND IMAGE DISPLAY APPARATUS
    • 流体容器和图像显示装置的制造方法
    • US20110265518A1
    • 2011-11-03
    • US13079104
    • 2011-04-04
    • Mamo MatsumotoNobuhiro Ito
    • Mamo MatsumotoNobuhiro Ito
    • C03C27/00C03B29/00
    • H01J9/261H01J11/34H01J29/86H01L51/5246
    • A manufacturing method of a hermetic container includes the steps of sandwiching a frame-like sealing material between a first glass substrate and a second glass substrate, irradiating first local heating light to a first region of the sealing material, and sealing the first glass substrate and the second glass substrate to each. The sealing is performed by irradiating, on a boundary between the first region of the sealing material and a second region of the sealing material which is adjacent to the first region and on which the first local heating light is not irradiated, second local heating light to heat and melt a portion of the second region adjacent to the boundary, during a period that viscosity of the sealing material at a portion of the first region adjacent to the boundary is equal to or lower than 1018 Pa·sec.
    • 密封容器的制造方法包括以下步骤:将第一玻璃基板和第二玻璃基板之间的框状密封材料夹持,将第一局部加热光照射到密封材料的第一区域,并密封第一玻璃基板, 第二玻璃基板。 密封是通过在密封材料的第一区域和密封材料的与第一区域相邻的第二区域和第一局部加热光未被照射的边界上照射第二局部加热光, 在邻近边界的第一区域的部分处的密封材料的粘度等于或低于1018Pa·sec的期间,加热并熔化邻近边界的第二区域的一部分。
    • 10. 发明申请
    • MANUFACTURING METHOD OF AIRTIGHT CONTAINER AND IMAGE DISPLAY APPARATUS
    • 空气容器和图像显示装置的制造方法
    • US20120205032A1
    • 2012-08-16
    • US13357001
    • 2012-01-24
    • Mamo Matsumoto
    • Mamo Matsumoto
    • C03C27/10
    • H01L51/5246H01L2251/566
    • An airtight container manufacturing method comprises: a step of obtaining an assembled body comprising a pair of glass substrates which is arranged facing each other, and a plurality of frame-like bonding materials each of which is arranged between the pair of the glass substrates; and a step of, by irradiating local heating light to at least a part of the boding materials, melting at least the part of the bonding materials. The melting step includes first step of irradiating the local heating light to the part of the bonding materials so that at least one not-irradiated bonding material is present inside one closed region supposed by linearly linking the irradiated bonding materials, and second step of irradiating the local heating light to the not-irradiated bonding material present inside the one closed region.
    • 一种气密性容器制造方法,其特征在于,包括以下步骤:获得包括相对配置的一对玻璃基板的组装体,以及配置在所述一对玻璃基板之间的多个框状接合材料。 以及通过将局部加热光照射到至少一部分编织材料的步骤,熔化至少部分粘结材料。 熔融步骤包括将本地加热光照射到接合材料的一部分的第一步骤,使得在通过线性连接照射的接合材料所假定的一个闭合区域内存在至少一个未照射的接合材料,以及第二步骤 局部加热到位于一个封闭区域内的未照射的接合材料。