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公开(公告)号:US10121607B2
公开(公告)日:2018-11-06
申请号:US14166523
申请日:2014-01-28
Applicant: Corning Incorporated
Inventor: Felipe Miguel Joos , Satyanarayana Kodali , Atul Kumar , Charles Warren Lander , Kamjula Pattabhirami Reddy , Huthavahana Kuchibhotla Sarma
Abstract: A separator such as for an electrochemical double layer capacitor includes acicular inorganic particles that are dried to form a porous membrane. Example inorganic particles are calcium silicate particles. A deposition method implementing slurry that includes the acicular inorganic particles and a dispersing medium along with a binder material can be used to form the separator layer directly on electrode materials.
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公开(公告)号:US10068715B2
公开(公告)日:2018-09-04
申请号:US14568333
申请日:2014-12-12
Applicant: Corning Incorporated
Inventor: Atul Kumar , Jia Liu , Kamjula Pattabhirami Reddy
IPC: H01G11/32 , H01G11/34 , H01G11/42 , H01G11/44 , C01B32/336
Abstract: An activated carbon composition having a relatively high transition metal content and a low covalent oxygen as defined herein. Also disclosed is a method of making and using the disclosed activated carbon composition, and an EDLC article incorporating the activated carbon composition.
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公开(公告)号:US20170239748A1
公开(公告)日:2017-08-24
申请号:US15496428
申请日:2017-04-25
Applicant: Corning Incorporated
Inventor: Dana Craig Bookbinder , Stephan Lvovich Logunov , Sasha Marjanovic , Albert Roth Nieber , Garrett Andrew Piech , Kamjula Pattabhirami Reddy , Pushkar Tandon , Sergio Tsuda , Natesan Venkataraman , Robert Stephen Wagner
IPC: B23K26/00 , C03B25/087 , B23K26/0622 , C03B33/09 , B23K26/53 , C03B33/02 , C03B33/07
CPC classification number: C03B33/0222 , B23K26/0006 , B23K26/0622 , B23K26/0624 , B23K26/359 , B23K26/402 , B23K26/53 , B23K26/55 , B23K26/57 , B23K2103/166 , B23K2103/172 , B23K2103/50 , B23K2103/54 , B32B7/02 , B32B17/00 , B32B2457/20 , C03B17/02 , C03B17/064 , C03B25/087 , C03B29/10 , C03B33/0215 , C03B33/07 , C03B33/091 , Y02P40/57 , Y10T428/15 , Y10T428/24777
Abstract: The present disclosure relates to a process for cutting and separating arbitrary shapes of thin substrates of transparent materials, particularly tailored composite fusion drawn glass sheets, and the disclosure also relates to a glass article prepared by the method. The developed laser method can be tailored for manual separation of the parts from the panel or full laser separation by thermally stressing the desired profile. The self-separation method involves the utilization of an ultra-short pulse laser that can be followed by a CO2 laser (coupled with high pressure air flow) for fully automated separation.
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公开(公告)号:US20170225996A1
公开(公告)日:2017-08-10
申请号:US15496393
申请日:2017-04-25
Applicant: Corning Incorporated
Inventor: Dana Craig Bookbinder , Stephan Lvovich Logunov , Sasha Marjanovic , Albert Roth Nieber , Garrett Andrew Piech , Kamjula Pattabhirami Reddy , Pushkar Tandon , Sergio Tsuda , Natesan Venkataraman , Robert Stephen Wagner
IPC: C03B33/02 , C03B25/087 , C03B33/07 , B23K26/53 , B23K26/00 , B23K26/0622 , B23K26/402 , C03B17/06 , C03B33/09
CPC classification number: C03B33/0222 , B23K26/0006 , B23K26/0622 , B23K26/0624 , B23K26/359 , B23K26/402 , B23K26/53 , B23K26/55 , B23K26/57 , B23K2103/166 , B23K2103/172 , B23K2103/50 , B23K2103/54 , B32B7/02 , B32B17/00 , B32B2457/20 , C03B17/02 , C03B17/064 , C03B25/087 , C03B29/10 , C03B33/0215 , C03B33/07 , C03B33/091 , Y02P40/57 , Y10T428/15 , Y10T428/24777
Abstract: The present disclosure relates to a process for cutting and separating arbitrary shapes of thin substrates of transparent materials, particularly tailored composite fusion drawn glass sheets, and the disclosure also relates to a glass article prepared by the method. The developed laser method can be tailored for manual separation of the parts from the panel or full laser separation by thermally stressing the desired profile. The self-separation method involves the utilization of an ultra-short pulse laser that can be followed by a CO2 laser (coupled with high pressure air flow) for fully automated separation.
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公开(公告)号:US09701563B2
公开(公告)日:2017-07-11
申请号:US14530244
申请日:2014-10-31
Applicant: Corning Incorporated
Inventor: Dana Craig Bookbinder , Stephan Lvovich Logunov , Sasha Marjanovic , Albert Roth Nieber , Garrett Andrew Piech , Kamjula Pattabhirami Reddy , Pushkar Tandon , Sergio Tsuda , Natesan Venkataraman , Robert Stephen Wagner
IPC: C03B33/02 , C03B17/00 , B32B17/00 , B32B7/02 , C03B25/087 , C03B29/10 , B23K26/0622 , B23K26/00 , B23K26/402 , B23K26/57 , B23K26/53 , B23K26/55 , C03B33/07 , C03B33/09 , C03B17/02 , C03B17/06 , B23K103/16 , B23K103/00
CPC classification number: B23K26/0057 , B23K26/0006 , B23K26/0622 , B23K26/0624 , B23K26/359 , B23K26/402 , B23K26/53 , B23K26/55 , B23K26/57 , B23K2103/172 , B23K2103/50 , B23K2103/54 , B32B7/02 , B32B17/00 , B32B2457/20 , C03B17/02 , C03B17/064 , C03B25/087 , C03B29/10 , C03B33/0215 , C03B33/0222 , C03B33/07 , C03B33/091 , Y02P40/57 , Y10T428/15 , Y10T428/24777
Abstract: The present disclosure relates to a process for cutting and separating arbitrary shapes of thin substrates of transparent materials, particularly tailored composite fusion drawn glass sheets, and the disclosure also relates to a glass article prepared by the method. The developed laser method can be tailored for manual separation of the parts from the panel or full laser separation by thermally stressing the desired profile. The self-separation method involves the utilization of an ultra-short pulse laser that can be followed by a CO2 laser (coupled with high pressure air flow) for fully automated separation.
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公开(公告)号:US09472353B2
公开(公告)日:2016-10-18
申请号:US14031406
申请日:2013-09-19
Applicant: Corning Incorporated
CPC classification number: H01G11/32 , H01G11/04 , H01G11/24 , H01G11/26 , H01G11/62 , Y02E60/13 , Y02T10/7022 , Y10T29/417
Abstract: An electric double layer capacitor comprises first and second electrodes, each comprising respective first and second carbon materials having distinct pore size distributions. A pore volume ratio of the first carbon material is greater than a pore volume ratio of the second carbon material. The pore volume ratio R is defined as R=V1/V, where V1 is a total volume of pores having a pore size of less than 1 nm, and V is a total volume of pores having a pore size greater than 1 nm.
Abstract translation: 双电层电容器包括第一和第二电极,每个电极包括具有不同孔径分布的相应的第一和第二碳材料。 第一碳材料的孔体积比大于第二碳材料的孔体积比。 孔体积比R定义为R = V1 / V,其中V1是孔径小于1nm的孔的总体积,V是孔径大于1nm的孔的总体积。
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公开(公告)号:US09293268B2
公开(公告)日:2016-03-22
申请号:US14087761
申请日:2013-11-22
Applicant: Corning Incorporated
Inventor: John Paul Krug , Kamjula Pattabhirami Reddy , James Scott Sutherland , Todd Marshall Wetherill
Abstract: A method for fabricating an EDLC includes (a) coating a porous activated carbon material onto current collector sheets to form carbon-based electrodes, (b) drying the carbon-based electrodes, (c) winding or stacking carbon-based electrodes interleaved with separator sheets to fabricate a jelly roll or prismatic electrode assembly, (d) inserting the electrode assembly into a package and forming electrical connections between the electrode assembly and package terminals, (e) filling the package with a liquid electrolyte, and (f) sealing the package. Steps (a)-(f) are performed in an atmosphere having a low moisture content. The atmosphere may be vacuum or purged with dry gas.
Abstract translation: 一种制造EDLC的方法包括(a)将多孔活性炭材料涂覆到集电体片材上以形成碳基电极,(b)干燥碳基电极,(c)缠绕或堆叠交替分离的碳基电极 制造果冻卷或棱柱电极组件,(d)将电极组件插入包装中并在电极组件和封装端子之间形成电连接,(e)用液体电解质填充封装,和(f)将 包。 步骤(a) - (f)在具有低水分含量的气氛中进行。 气氛可能是真空或用干燥气体吹扫。
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公开(公告)号:US20150062779A1
公开(公告)日:2015-03-05
申请号:US14164796
申请日:2014-01-27
Applicant: Corning Incorporated
Inventor: Jonas Bankaitis , Atul Kumar , Martin Joseph Murtagh , Obiefuna Chukwuemeka Okafor , Kamjula Pattabhirami Reddy
Abstract: A method of forming a carbon-based electrode includes forming a mixture of activated carbon particles, carbon black particles, binder, and an optional liquid, fibrillating the binder to form a fibrillated mixture, and forming a carbon mat from the fibrillated mixture, wherein the mixture, during the forming of the mixture, is maintained at a temperature less than 19° C. The low temperature process facilitates dispersive and distributive mixing of the components of the carbon mat.
Abstract translation: 形成碳基电极的方法包括形成活性炭颗粒,炭黑颗粒,粘合剂和任选液体的混合物,使粘合剂原纤化以形成原纤化混合物,并从原纤化混合物形成碳毡,其中 混合物在形成混合物期间保持在低于19℃的温度。低温方法有利于碳毡组分的分散和分配混合。
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