会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • Heat insulating and shielding glass panel
    • 隔热和屏蔽玻璃面板
    • US20060083873A1
    • 2006-04-20
    • US11289231
    • 2005-11-28
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • E06B3/24
    • C03C17/3618B32B17/00C03C17/36C03C17/3626C03C17/3644C03C17/3652C03C17/366C03C27/10C03C2217/78E06B3/66304
    • A heat insulating and shielding glass panel that is capable of maintaining heat shielding performance even if heat treatment is carried out during manufacture. The heat insulating and shielding glass panel 1 is comprised of a pair of glass plates 11 and 12 that are hermetically joined together at their outer peripheral edges via a sealing frame 13 that fluidizes at low temperature, such that respective one surfaces of the glass plates 11, 12 face each other and a hollow layer 14 is formed between the glass plates; and pillars 15 that are substantially cylindrical spacers that are inserted into the hollow layer 14 as atmospheric pressure supporting members and determine the gap between the glass plates 11 and 12. A low-emission transparent multilayer 17 having an emittance of not more than 0.1 is coated by sputtering on each of surfaces 11a and 12a of the respective glass plates 11 and 12 facing the hollow layer 14 so as to realize high heat insulation performance. The low-emission transparent multilayer 17 is comprised of ZnO layers 33 and 35 as dielectric layers separated from each other in the direction of film thickness by an SiNx layer 34 as an amorphous layer, and an Ag—Pd layer 32 as a metal layer containing Ag and Pd.
    • 即使在制造过程中进行热处理也能够保持隔热性能的隔热屏蔽玻璃面板。 隔热屏蔽玻璃面板1由一对玻璃板11和12组成,玻璃板11和12通过密封框架13在其外周缘处气密地接合在一起,该密封框架13在低温下流化,使得玻璃板11的相应一个表面 12彼此面对,并且在玻璃板之间形成中空层14; 以及作为大气压支撑构件插入中空层14中的大致圆柱形间隔件并且确定玻璃板11和12之间的间隙的柱15。 通过溅射将面对中空层14的各个玻璃板11和12的表面11a和12a上的发射率不大于0.1的低发射透明多层17覆盖,以实现高绝热性能。 低发射透明多层17由ZnO层33,35构成,作为电介质层,通过作为非晶层的SiNx层34在膜厚方向上彼此分离的电介质层和作为金属层的Ag-Pd层32 Ag和Pd。
    • 3. 发明授权
    • Method of joining glass plates
    • 连接玻璃板的方法
    • US07165424B2
    • 2007-01-23
    • US10450291
    • 2002-06-20
    • Tetsuo MinaaiRichard Edward CollinsNelson Ng
    • Tetsuo MinaaiRichard Edward CollinsNelson Ng
    • C03B23/20E06B3/24
    • E06B3/6612C03C8/24C03C10/00E06B3/66304E06B3/66333E06B3/6775Y02A30/25Y02B80/24
    • In order to provide a method of manufacturing a glass panel which, in time of a baking process, restrains an internal stress generated in both of glass plates (1, 2) to prevent a decline in strength, and restrains inorganic and organic substances remaining within a void (V) defined between the glass plates (1, 2) to prevent deterioration in quality, a method of manufacturing a glass panel comprises the steps of executing a joining process for joining the pair of glass plates (1, 2) opposed to each other across the void (V) at peripheries thereof by using a low melting point glass (4) in a melted condition, executing a baking process for suctioning gas from said void (V) through a suction portion disposed in said glass plates while heating said void (V) defined between the glass plates (1, 2), and sealing said suction portion to seal said void (V), wherein the gas is suctioned from said void (V) with said low melting point glass (4) being in a softened condition in which a coefficient of viscosity thereof is 1010 Pascal seconds (Pa·s) or less when said baking process is executed.
    • 为了提供一种制造玻璃面板的方法,在玻璃板的烘烤过程中,玻璃板(1,2)在两个玻璃板(1,2)中产生的内部应力都能够抑制强度的降低,并且抑制残留在其中的无机和有机物质 限定在玻璃板(1,2)之间以防止质量劣化的空隙(V),制造玻璃面板的方法包括以下步骤:执行接合工艺,以将所述一对玻璃板(1,2) 在熔融状态下通过使用低熔点玻璃(4)在其周围通过空隙(V)彼此隔开,执行烘烤处理,用于通过设置在所述玻璃板中的吸入部分从所述空隙(V)抽吸气体,同时加热 所述空隙(V)限定在所述玻璃板(1,2)之间,并且密封所述吸入部分以密封所述空隙(V),其中所述气体从所述空隙(V)被所述低熔点玻璃(4)吸入 在软化条件下,ac 当执行所述烘焙处理时,其粘度的低于10帕斯卡秒(Pa.s)或更小。
    • 5. 发明授权
    • Double-glazing unit
    • 双层玻璃单元
    • US5989659A
    • 1999-11-23
    • US952840
    • 1997-11-24
    • Hidemi KatoTetsuo Minaai
    • Hidemi KatoTetsuo Minaai
    • E06B3/66C03C27/06C03C27/12E06B3/663E04C2/34
    • E06B3/6612E06B3/66304Y02B80/24Y10T428/24182
    • This invention relates to double glazing having two glass sheets with numerous spacers arranged therebetween, a void therebetween being sealed in a decompressed condition. Conventionally, the glass sheets have edges thereof spaced from each other by a seal. Under the influence of the binding force of the seal atmospheric pressure tends to act less on outermost spacers than on the other spacers. Consequently, the outermost spacers tend to move between the glass sheets. According to this invention, an outer interval (L1) between each outermost row of spacers (2) and a seal (4) is set at least equal to a basic interval (L0) between the outermost row and a second row adjacent thereto. Consequently, the spacers in the outermost rows bear a larger share of atmospheric pressure acting on the sheet surfaces than the spacers in the other rows. A sufficient force is secured to hold the spacers in the outermost rows in place, thereby preventing the spacers in the outermost rows from moving between the two glass sheets.
    • PCT No.PCT / JP97 / 01065 Sec。 371日期:1997年11月24日 102(e)1997年11月24日PCT PCT 1997年3月27日PCT公布。 公开号WO97 / 36838 日期:1997年9月10日本发明涉及具有布置在其间的多个间隔件的两个玻璃板的双层玻璃,其间的空隙被密封在减压状态。 通常,玻璃板的边缘通过密封彼此间隔开。 在密封条约束力的影响下,与其他间隔物相比,大气压力往往对最外层间隔作用较小。 因此,最外侧的间隔件倾向于在玻璃板之间移动。 根据本发明,隔离物(2)和密封件(4)的每个最外排之间的外部间隔(L1)被设定为至少等于与其相邻的最外面的行和第二行之间的基本间隔(L0)。 因此,最外排的间隔物在其他行中承受作用在片材表面上的较大份额的大气压力。 确保足够的力将间隔件保持在最外排中,从而防止最外排中的间隔件在两个玻璃板之间移动。
    • 6. 发明授权
    • Method of manufacturing a glass panel and a glass panel manufactured by such a method
    • 通过这种方法制造玻璃面板和玻璃面板的方法
    • US07553527B2
    • 2009-06-30
    • US11978357
    • 2007-10-29
    • Tetsuo Minaai
    • Tetsuo Minaai
    • E06B3/00E04C2/54
    • E06B3/6612E06B3/66304E06B3/6775Y02A30/25Y02B80/24
    • A method of manufacturing a glass panel and a glass panel manufactured such a method, comprising a pair of glass plates opposed to each other to define a void therebetween by a number of space-maintaining members arranged along plate surfaces with predetermined intervals between rows, and a thermally meltable seal member for joining the glass plates throughout a circumference thereof to be hermetically sealed by a heat-joining process. The void between the glass plates being decompressed by a decompressing process, and the distance between outermost rows of the space-maintaining members and peripheral edges of the glass plates being at most 5.8 times the thickness of the thinner one of the glass plates.
    • 一种制造这样一种方法的玻璃面板和玻璃面板的制造方法,其特征在于,包括一对玻璃板,它们彼此相对以通过在行间沿预定间隔沿着板表面布置的多个间隔保持构件形成空隙, 一种用于将玻璃板整个圆周连接起来以通过热连接工艺气密密封的热熔密封件。 通过减压工艺减压玻璃板之间的空隙,并且玻璃板的空间保持构件和周边边缘的最外排之间的距离为玻璃板较薄的一个的厚度的至多5.8倍。
    • 7. 发明授权
    • Method of manufacturing a glass panel
    • 制造玻璃面板的方法
    • US07305853B2
    • 2007-12-11
    • US10494501
    • 2003-02-21
    • Tetsuo Minaai
    • Tetsuo Minaai
    • C03B23/203E06B3/24
    • E06B3/6612E06B3/66304E06B3/6775Y02A30/25Y02B80/24
    • A method of manufacturing a glass panel and a glass panel manufactured such a method, comprising a pair of glass plates opposed to each other to define a void therebetween by a number of space-maintaining members arranged along plate surfaces with predetermined intervals between rows, and a thermally meltable seal member for joining the glass plates throughout a circumference thereof to be hermetically sealed by a heat-joining process. The void between the glass plates being decompressed by a decompressing process, and the distance between outermost rows of the space-maintaining members and peripheral edges of the glass plates being at most 5.8 times the thickness of the thinner one of the glass plates.
    • 一种制造这样一种方法的玻璃面板和玻璃面板的制造方法,其特征在于,包括一对玻璃板,它们彼此相对以通过在行间沿预定间隔沿着板表面布置的多个间隔保持构件形成空隙, 一种用于将玻璃板整个圆周连接起来以通过热连接工艺气密密封的热熔密封件。 通过减压工艺减压玻璃板之间的空隙,并且玻璃板的空间保持构件和周边边缘的最外排之间的距离为玻璃板较薄的一个的厚度的至多5.8倍。
    • 8. 发明授权
    • Heat insulating and shielding glass panel
    • 隔热和屏蔽玻璃面板
    • US07282248B2
    • 2007-10-16
    • US11289231
    • 2005-11-28
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • Osamu AsanoTerufusa KunisadaTetsuo Minaai
    • E06B3/00B32B19/00E04C2/54
    • C03C17/3618B32B17/00C03C17/36C03C17/3626C03C17/3644C03C17/3652C03C17/366C03C27/10C03C2217/78E06B3/66304
    • A heat insulating and shielding glass panel that is capable of maintaining heat shielding performance even if heat treatment is carried out during manufacture. The heat insulating and shielding glass panel 1 is comprised of a pair of glass plates 11 and 12 that are hermetically joined together at their outer peripheral edges via a sealing frame 13 that fluidizes at low temperature, such that respective one surfaces of the glass plates 11, 12 face each other and a hollow layer 14 is formed between the glass plates; and pillars 15 that are substantially cylindrical spacers that are inserted into the hollow layer 14 as atmospheric pressure supporting members and determine the gap between the glass plates 11 and 12. A low-emission transparent multilayer 17 having an emittance of not more than 0.1 is coated by sputtering on each of surfaces 11a and 12a of the respective glass plates 11 and 12 facing the hollow layer 14 so as to realize high heat insulation performance. The low-emission transparent multilayer 17 is comprised of ZnO layers 33 and 35 as dielectric layers separated from each other in the direction of film thickness by an SiNx layer 34 as an amorphous layer, and an Ag—Pd layer 32 as a metal layer containing Ag and Pd.
    • 即使在制造过程中进行热处理也能够保持隔热性能的隔热屏蔽玻璃面板。 隔热屏蔽玻璃面板1由一对玻璃板11和12组成,玻璃板11和12通过密封框架13在其外周缘处气密地接合在一起,该密封框架13在低温下流化,使得玻璃板11的相应一个表面 12彼此面对,并且在玻璃板之间形成中空层14; 以及作为大气压支撑构件插入中空层14中的大致圆柱形间隔件的柱15,并且确定玻璃板11和12之间的间隙。发射率不大于0.1的低发射透明多层17被涂覆 通过溅射在面对中空层14的各个玻璃板11和12的每个表面11a和12a上,以实现高隔热性能。 低发射透明多层17由ZnO层33,35构成,作为电介质层,通过作为非晶层的SiNx层34在膜厚方向上彼此分离的电介质层和作为金属层的Ag-Pd层32 Ag和Pd。