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
    • 1. 发明申请
    • Non-Contact Etching of Moving Glass Sheets
    • 移动玻璃板非接触蚀刻
    • US20130062312A1
    • 2013-03-14
    • US13671883
    • 2012-11-08
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • C03C15/00
    • C03C15/00Y10T428/24355
    • Methods and apparatus are disclosed for etching flexible glass sheets (13) in which the sheets (13) are transported in a near vertical orientation past non-contact, liquid-ejecting bearings (3) which apply an etching solution (e.g., an aqueous NaF/H3PO4 solution) to the sheets (13). In certain embodiments, the uppermost liquid-ejecting bearing (3) is above the top edge of the sheet (13) and thus is able to apply etching solution to the top of the sheet. In other embodiments, a top shower (11), which includes a set of spray nozzles (21) located above and distributed along the length of the apparatus, is used to apply etching solution to the top of the sheet (13). Using the disclosed methods and apparatus, glass sheets (13) produced by a fusion process are provided which have areas greater than five square meters and average surface roughness values in the range of 0.5 nanometers to 1.1 nanometers.
    • 公开了用于蚀刻柔性玻璃板(13)的方法和装置,其中片材(13)以接近垂直的方向输送通过非接触的液体喷射轴承(3),该轴承(3)施加蚀刻溶液(例如,NaF / H 3 PO 4溶液)。 在某些实施例中,最上面的液体喷射轴承(3)在片材(13)的顶部边缘之上,因此能够将蚀刻溶液施加到片材的顶部。 在其它实施例中,使用顶部喷淋器(11),其包括位于设备上方并沿着设备长度分布的一组喷嘴(21),以将蚀刻溶液施加到片材(13)的顶部。 使用所公开的方法和装置,提供了通过熔融方法生产的玻璃板(13),其具有大于5平方米的面积,并且在0.5纳米至1.1纳米的范围内的平均表面粗糙度值。
    • 2. 发明申请
    • Liquid-Ejecting Bearings for Transport of Glass Sheets
    • 液体输送轴承用于运输玻璃板
    • US20120000749A1
    • 2012-01-05
    • US13231124
    • 2011-09-13
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • B65G49/06
    • B65G49/063B65G2249/02B65G2249/04
    • Non-contact, liquid-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 15 meters/minute and above. The operating parameters and physical properties of the bearings satisfy at least one of the following conditions: (a) the average flow rate from the bearing's orifices (22) is in the range of 100-800 milliliters/minute/orifice; (b) the orifices' average horizontal pitch (P) is in the range of 20-55 millimeters; and/or (c) the orifices' average size (e.g., D0) is in the range of 1.0-4.5 millimeters. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at 15 meters/minute and the face (20) of the bearing (3) to less than 100 microns, thus reducing the chances that the bearing (3) will lose control of the substrate (13) or that the substrate (13) will hit the bearing (3).
    • 非接触式液体喷射轴承(3)用于以高传送速度(例如15米/分钟以上的速度)输送诸如LCD基板的柔性玻璃板(13)。 轴承的操作参数和物理性能满足以下条件中的至少一个条件:(a)来自轴承的孔口(22)的平均流速在100-800毫升/分钟/孔的范围内; (b)孔口的平均水平间距(P)在20-55毫米的范围内; 和/或(c)孔口的平均尺寸(例如,D0)在1.0-4.5毫米的范围内。 轴承(3)可以将以15米/分钟行进的LCD基板(13)与轴承(3)的面(20)之间的间隔的时间平均,峰 - 峰变化减小到小于100 从而减少轴承(3)将失去对基板(13)的控制或基板(13)将击中轴承(3)的机会。
    • 3. 发明授权
    • Liquid-ejecting bearings for transport of glass sheets
    • 用于运输玻璃板的液体喷射轴承
    • US08047354B2
    • 2011-11-01
    • US12428672
    • 2009-04-23
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • B65G45/00
    • B65G49/063B65G2249/02B65G2249/04
    • Non-contact, liquid-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 15 meters/minute and above. The operating parameters and physical properties of the bearings satisfy at least one of the following conditions: (a) the average flow rate from the bearing's orifices (22) is in the range of 100-800 milliliters/minute/orifice; (b) the orifices' average horizontal pitch (P) is in the range of 20-55 millimeters; and/or (c) the orifices' average size (e.g., D0) is in the range of 1.0-4.5 millimeters. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at 15 meters/minute and the face (20) of the bearing (3) to less than 100 microns, thus reducing the chances that the bearing (3) will lose control of the substrate (13) or that the substrate (13) will hit the bearing (3).
    • 非接触式液体喷射轴承(3)用于以高传送速度(例如15米/分钟以上的速度)输送诸如LCD基板的柔性玻璃板(13)。 轴承的操作参数和物理性能满足以下条件中的至少一个条件:(a)来自轴承的孔口(22)的平均流量在100-800毫升/分钟/孔的范围内; (b)孔口的平均水平间距(P)在20-55毫米的范围内; 和/或(c)孔口的平均尺寸(例如,D0)在1.0-4.5毫米的范围内。 轴承(3)可以将以15米/分钟行进的LCD基板(13)与轴承(3)的面(20)之间的间隔的时间平均,峰 - 峰变化减小到小于100 从而减少轴承(3)将失去对基板(13)的控制或基板(13)将击中轴承(3)的机会。
    • 5. 发明授权
    • Non-contact etching of moving glass sheets
    • 移动玻璃板的非接触蚀刻
    • US09120700B2
    • 2015-09-01
    • US12732597
    • 2010-03-26
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • B32B3/00C03C15/00
    • C03C15/00Y10T428/24355
    • Methods and apparatus are disclosed for etching flexible glass sheets (13) in which the sheets (13) are transported in a vertical or near vertical orientation past non-contact, liquid-ejecting bearings (3) which apply an etching solution (e.g., an aqueous NaF/H3PO4 solution) to one or both sides of the sheets (13). In certain embodiments, the uppermost liquid-ejecting bearing (3) is above the top edge of the sheet (13) and thus is able to apply etching solution to the top of the sheet. In other embodiments, a top shower (11), which includes a set of spray nozzles (21) located above and distributed along the length of the apparatus, is used to apply etching solution to the top of the sheet (13). Using the disclosed methods and apparatus, glass sheets (13) produced by a fusion process are provided which have areas greater than five square meters and average surface roughness values in the range of 0.5 nanometers to 1.1 nanometers.
    • 公开了用于蚀刻柔性玻璃板(13)的方法和装置,其中片材(13)以垂直或接近垂直取向通过非接触式液体喷射轴承(3)输送,该轴承(3)施加蚀刻溶液(例如, NaF / H 3 PO 4水溶液)到片材(13)的一侧或两侧。 在某些实施例中,最上面的液体喷射轴承(3)在片材(13)的顶部边缘之上,因此能够将蚀刻溶液施加到片材的顶部。 在其它实施例中,使用顶部喷淋器(11),其包括位于设备上方并沿着设备长度分布的一组喷嘴(21),以将蚀刻溶液施加到片材(13)的顶部。 使用所公开的方法和装置,提供了通过熔融方法生产的玻璃板(13),其具有大于5平方米的面积,并且在0.5纳米至1.1纳米的范围内的平均表面粗糙度值。
    • 6. 发明授权
    • Non-contact etching of moving glass sheets
    • 移动玻璃板的非接触蚀刻
    • US08535548B2
    • 2013-09-17
    • US13671883
    • 2012-11-08
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • B44C1/22
    • C03C15/00Y10T428/24355
    • Methods and apparatus are disclosed for etching flexible glass sheets (13) in which the sheets (13) are transported in a near vertical orientation past non-contact, liquid-ejecting bearings (3) which apply an etching solution (e.g., an aqueous NaF/H3PO4 solution) to the sheets (13). In certain embodiments, the uppermost liquid-ejecting bearing (3) is above the top edge of the sheet (13) and thus is able to apply etching solution to the top of the sheet. In other embodiments, a top shower (11), which includes a set of spray nozzles (21) located above and distributed along the length of the apparatus, is used to apply etching solution to the top of the sheet (13). Using the disclosed methods and apparatus, glass sheets (13) produced by a fusion process are provided which have areas greater than five square meters and average surface roughness values in the range of 0.5 nanometers to 1.1 nanometers.
    • 公开了用于蚀刻柔性玻璃板(13)的方法和装置,其中片材(13)以接近垂直的方向输送通过非接触的液体喷射轴承(3),该轴承(3)施加蚀刻溶液(例如,NaF / H 3 PO 4溶液)。 在某些实施例中,最上面的液体喷射轴承(3)在片材(13)的顶部边缘之上,因此能够将蚀刻溶液施加到片材的顶部。 在其它实施例中,使用顶部喷淋器(11),其包括位于设备上方并沿着设备长度分布的一组喷嘴(21),以将蚀刻溶液施加到片材(13)的顶部。 使用所公开的方法和装置,提供了通过熔融方法生产的玻璃板(13),其具有大于5平方米的面积,并且在0.5纳米至1.1纳米的范围内的平均表面粗糙度值。
    • 7. 发明申请
    • Non-Contact Etching of Moving Glass Sheets
    • 移动玻璃板非接触蚀刻
    • US20110236630A1
    • 2011-09-29
    • US12732597
    • 2010-03-26
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaChih Yuan LuWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • C03C15/00B32B3/00
    • C03C15/00Y10T428/24355
    • Methods and apparatus are disclosed for etching flexible glass sheets (13) in which the sheets (13) are transported in a vertical or near vertical orientation past non-contact, liquid-ejecting bearings (3) which apply an etching solution (e.g., an aqueous NaF/H3PO4 solution) to one or both sides of the sheets (13). In certain embodiments, the uppermost liquid-ejecting bearing (3) is above the top edge of the sheet (13) and thus is able to apply etching solution to the top of the sheet. In other embodiments, a top shower (11), which includes a set of spray nozzles (21) located above and distributed along the length of the apparatus, is used to apply etching solution to the top of the sheet (13). Using the disclosed methods and apparatus, glass sheets (13) produced by a fusion process are provided which have areas greater than five square meters and average surface roughness values in the range of 0.5 nanometers to 1.1 nanometers.
    • 公开了用于蚀刻柔性玻璃板(13)的方法和装置,其中片材(13)以垂直或接近垂直取向通过非接触式液体喷射轴承(3)输送,该轴承(3)施加蚀刻溶液(例如, NaF / H 3 PO 4水溶液)到片材(13)的一侧或两侧。 在某些实施例中,最上面的液体喷射轴承(3)在片材(13)的顶部边缘之上,因此能够将蚀刻溶液施加到片材的顶部。 在其它实施例中,使用顶部喷淋器(11),其包括位于设备上方并沿着设备长度分布的一组喷嘴(21),以将蚀刻溶液施加到片材(13)的顶部。 使用所公开的方法和装置,提供了通过熔融方法生产的玻璃板(13),其具有大于5平方米的面积,并且在0.5纳米至1.1纳米的范围内的平均表面粗糙度值。
    • 8. 发明申请
    • Liquid-Ejecting Bearings for Transport of Glass Sheets
    • 液体输送轴承用于运输玻璃板
    • US20100078295A1
    • 2010-04-01
    • US12428672
    • 2009-04-23
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • Gautam Narendra KudvaWeiwei LuoYoshihiro NakamuraTetsuzou Yamada
    • B65G35/00B65G47/00
    • B65G49/063B65G2249/02B65G2249/04
    • Non-contact, liquid-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 15 meters/minute and above. The operating parameters and physical properties of the bearings satisfy at least one of the following conditions: (a) the average flow rate from the bearing's orifices (22) is in the range of 100-800 milliliters/minute/orifice; (b) the orifices' average horizontal pitch (P) is in the range of 20-55 millimeters; and/or (c) the orifices' average size (e.g., D0) is in the range of 1.0-4.5 millimeters. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at 15 meters/minute and the face (20) of the bearing (3) to less than 100 microns, thus reducing the chances that the bearing (3) will lose control of the substrate (13) or that the substrate (13) will hit the bearing (3).
    • 非接触式液体喷射轴承(3)用于以高传送速度(例如15米/分钟以上的速度)输送诸如LCD基板的柔性玻璃板(13)。 轴承的操作参数和物理性能满足以下条件中的至少一个条件:(a)轴承孔口(22)的平均流速在100-800毫升/分钟/孔的范围内; (b)孔口的平均水平间距(P)在20-55毫米的范围内; 和/或(c)孔口的平均尺寸(例如,D0)在1.0-4.5毫米的范围内。 轴承(3)可以将以15米/分钟行进的LCD基板(13)与轴承(3)的面(20)之间的间隔的时间平均,峰 - 峰变化减小到小于100 从而减少轴承(3)将失去对基板(13)的控制或基板(13)将击中轴承(3)的机会。
    • 9. 发明授权
    • Gas-ejecting bearings for transport of glass sheets
    • 用于运输玻璃板的喷气轴承
    • US08511461B2
    • 2013-08-20
    • US12465859
    • 2009-05-14
    • Gautam Narendra KudvaWeiwei Luo
    • Gautam Narendra KudvaWeiwei Luo
    • B65G45/22C03B35/24
    • C03B35/24B65G49/061B65G49/062B65G49/063F16C32/0603H01L21/67712H01L21/67721
    • Non-contact, gas-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 40 meters/minute and above, e.g., 60 meters/minute. Gas is provided to the bearing's orifices (22) from a plenum which operates at a pressure Pplenum and the bearings have a calculated static pressure Pmidpoint at the midpoints (27) between the bearing's centermost orifice (26) and each of its nearest neighbors (28) in a horizontal direction which satisfies the relationship Pmidpoint/Pplenum≧0.05. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at, for example, 60 meters/minute and the face (20) of the bearing (3) to less than 500 microns, thus reducing the chances that the substrate (13) will hit and be damaged by the bearing (3).
    • 提供非接触式气体喷射轴承(3),以高输送速度(例如40米/分钟以上,例如60米/分钟)的速度传送诸如LCD基板的柔性玻璃板(13)。 气体从在压力Pplenum上工作的增压室提供给轴承的孔口(22),并且轴承在轴承的最中心孔口(26)和其最近的邻近件(28)之间的中点(27)处具有计算的静态压力Pmidpoint )满足关系Pmidpoint / Pplenum> = 0.05的水平方向。 轴承(3)可以减少以例如60米/分钟行进的LCD基板(13)与轴承(3)的表面(20)之间的间隔的时间平均,峰 - 峰变化, 到小于500微米,从而减少了衬底(13)将被轴承(3)撞击并损坏的机会。
    • 10. 发明申请
    • Gas-Ejecting Bearings for Transport of Glass Sheets
    • 气体输送轴承用于运输玻璃板
    • US20100126830A1
    • 2010-05-27
    • US12465859
    • 2009-05-14
    • Gautam Narendra KudvaWeiwei Luo
    • Gautam Narendra KudvaWeiwei Luo
    • C03B35/24F16C32/06
    • C03B35/24B65G49/061B65G49/062B65G49/063F16C32/0603H01L21/67712H01L21/67721
    • Non-contact, gas-ejecting bearings (3) are provided for conveying flexible glass sheets (13), such as LCD substrates, at high conveyance speeds, e.g., speeds of 40 meters/minute and above, e.g., 60 meters/minute. Gas is provided to the bearing's orifices (22) from a plenum which operates at a pressure Pplenum and the bearings have a calculated static pressure Pmidpoint at the midpoints (27) between the bearing's centermost orifice (26) and each of its nearest neighbors (28) in a horizontal direction which satisfies the relationship Pmidpoint/Pplenum≧0.05. The bearings (3) can reduce the time-averaged, peak-to-peak variation in the spacing between a LCD substrate (13) traveling at, for example, 60 meters/minute and the face (20) of the bearing (3) to less than 500 microns, thus reducing the chances that the substrate (13) will hit and be damaged by the bearing (3).
    • 提供非接触式气体喷射轴承(3),以高输送速度(例如40米/分钟以上,例如60米/分钟)的速度传送诸如LCD基板的柔性玻璃板(13)。 气体从在压力Pplenum上工作的增压室提供给轴承的孔口(22),并且轴承在轴承的最中心孔口(26)和其最近的邻近件(28)之间的中点(27)处具有计算的静态压力Pmidpoint )满足Pmidpoint /Pplenum≥0.05的水平方向。 轴承(3)可以减少以例如60米/分钟行进的LCD基板(13)与轴承(3)的表面(20)之间的间隔的时间平均,峰 - 峰变化, 到小于500微米,从而减少了衬底(13)将被轴承(3)撞击并损坏的机会。