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1.
公开(公告)号:US20240001415A1
公开(公告)日:2024-01-04
申请号:US18253989
申请日:2022-01-25
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Jodi L. Connell , Raymond P. Johnston , John J. Sullivan , Karl J.L. Geisler , Vivian W. Jones , Gordon A. Kuhnley , Patrick G. Zimmerman , Bradley W. Eaton , Kurt J. Halverson , Brian W. Lueck , Alexandr C. Eldredge , Hyacinth L. Lechuga , Lynn E. Lorimor , Diane R. Wolk , Junia M. Pereira , Caroline M. Yitalo , Linda W. Suszko , Daniel J. Rogers , Bryon A. Mrrill
CPC classification number: B08B17/065 , B29C2059/023 , B08B17/04
Abstract: Films and articles are described comprising a microstructured surface having an array of peak structures and adjacent valleys. For improved cleanability, the valleys preferably have a maximum width ranging from 10 microns to 250 microns and the peak structures have a side wall angle greater than 10 degrees. The peak structures may comprise two or more facets such as in the case of a linear array of prisms or an array of cube-corners elements. The facets form continuous or semi-continuous surfaces in the same direction. The valleys typically lack intersecting walls. Also described are methods of making and methods of use. The microstructured surface of the article can be prepared by various microreplication techniques such as coating, injection molding, embossing, laser etching, extrusion, casting and curing a polymerizable resin; and bonding microstructured film to a surface or article with an adhesive.
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2.
公开(公告)号:US11766822B2
公开(公告)日:2023-09-26
申请号:US17182507
申请日:2021-02-23
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Jodi L. Connell , Raymond P. Johnston , John J. Sullivan , Karl J. L. Geisler , Vivian W. Jones , Gordon A. Kuhnley , Patrick G. Zimmerman , Bradley W. Eaton , Kurt J. Halverson , Brian W. Lueck , Alexander C. Eldredge , Hyacinth L. Lechuga
CPC classification number: B29C59/022 , B08B17/065 , B29C51/02 , B29C51/14 , B29C2059/023 , B29L2031/756 , B32B37/12 , B32B2307/754
Abstract: Films and articles are described comprising a microstructured surface having an array of peak structures and adjacent valleys. For improved cleanability, the valleys preferably have a maximum width ranging from 10 microns to 250 microns and the peak structures have a side wall angle greater than 10 degrees. The peak structures may comprise two or more facets such as in the case of a linear array of prisms or an array of cube-corners elements. The facets form continuous or semi-continuous surfaces in the same direction. The valleys typically lack intersecting walls. Also described are methods of making and methods of use. The microstructured surface of the article can be prepared by various microreplication techniques such as coating, injection molding, embossing, laser etching, extrusion, casting and curing a polymerizable resin; and bonding microstructured film to a surface or article with an adhesive.
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3.
公开(公告)号:US20210187819A1
公开(公告)日:2021-06-24
申请号:US17182507
申请日:2021-02-23
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Jodi L. Connell , Raymond P. Johnston , John J. Sullivan , Karl J.L. Geisler , Vivian W. Jones , Gordon A. Kuhnley , Patrick G. Zimmerman , Bradley W. Eaton , Kurt J. Halverson , Brian W. Lueck , Alexander C. Eldredge , Hyacinth L. Lechuga
Abstract: Films and articles are described comprising a microstructured surface having an array of peak structures and adjacent valleys. For improved cleanability, the valleys preferably have a maximum width ranging from 10 microns to 250 microns and the peak structures have a side wall angle greater than 10 degrees. The peak structures may comprise two or more facets such as in the case of a linear array of prisms or an array of cube-corners elements. The facets form continuous or semi-continuous surfaces in the same direction. The valleys typically lack intersecting walls. Also described are methods of making and methods of use. The microstructured surface of the article can be prepared by various microreplication techniques such as coating, injection molding, embossing, laser etching, extrusion, casting and curing a polymerizable resin; and bonding microstructured film to a surface or article with an adhesive.
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公开(公告)号:US20180015495A1
公开(公告)日:2018-01-18
申请号:US15548668
申请日:2016-03-04
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Alvaro S. Domenighi , Kim L. Gustafson , Patrick G. Zimmerman
CPC classification number: B05C1/006 , B05C5/0204 , B05C17/00516 , B05D5/10 , E04F21/0046
Abstract: Nozzles are provided, for applying setting resins onto the edge of a partial cut in a panel, in some embodiments a honeycomb panel. The nozzle comprises a connector portion and an application head, wherein the application head comprises: a) a supporting wall, and b) a finish wall joining the supporting wall along an edge at an angle of 90 degrees or greater and less than 120 degrees. In some embodiments, the finish wall has a trailing edge which has a curved profile wherein the curve radius remains between 1.0 and 7.0 cm throughout the curve. In some embodiments, the finish wall has a leading edge which comprises a block wall which at least partially blocks movement of applied resin beyond the leading edge of the finish wall. In addition, methods of applying a setting resin onto the edge of a partial cut in a panel are provided.
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5.
公开(公告)号:US20230405915A1
公开(公告)日:2023-12-21
申请号:US18447807
申请日:2023-08-10
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Jodi L. Connell , Raymond P. Johnston , John J. Sullivan , Karl J.L. Geisler , Vivian W. Jones , Gordon A. Kuhnley , Patrick G. Zimmerman , Bradley W. Eaton , Kurt J. Halverson , Brian W. Lueck , Alexander C. Eldredge , Hyacinth L. Lechuga
CPC classification number: B29C59/022 , B29L2031/756 , B29C51/02 , B08B17/065
Abstract: Films and articles are described comprising a microstructured surface having an array of peak structures and adjacent valleys. For improved cleanability, the valleys preferably have a maximum width ranging from 10 microns to 250 microns and the peak structures have a side wall angle greater than 10 degrees. The peak structures may comprise two or more facets such as in the case of a linear array of prisms or an array of cube-corners elements. The facets form continuous or semi-continuous surfaces in the same direction. The valleys typically lack intersecting walls. Also described are methods of making and methods of use. The microstructured surface of the article can be prepared by various microreplication techniques such as coating, injection molding, embossing, laser etching, extrusion, casting and curing a polymerizable resin; and bonding microstructured film to a surface or article with an adhesive.
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公开(公告)号:US20220163951A1
公开(公告)日:2022-05-26
申请号:US17436886
申请日:2019-10-03
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Brian E. Brooks , Gilles J. Benoit , Peter O. Olson , Tyler W. Olson , Himanshu Nayar , Frederick J. Arsenault , Nicholas A. Johnson , Brett R. Hemes , Thomas J. Strey , Jonathan B. Arthur , Nathan J. Herbst , Aaron K. Nienaber , Sarah M. Mullins , Mark W. Orlando , Cory D. Sauer , Timothy J. Clemens , Scott L. Barnett , Zachary M. Schaeffer , Patrick G. Zimmerman , Gregory P. Moriarty , Jeffrey P. Adolf , Steven P. Floeder , Andreas Backes , Peter J. Schneider , Maureen A. Kavanagh , Glenn E. Casner , Miaoding Dai , Christopher M. Brown , Lori A. Sjolund , Jon A. Kirschhoffer , Carter C. Hughes
IPC: G05B19/418 , B25J11/00
Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for optimizing a process of manufacturing a product. In one aspect, the method comprises repeatedly performing the following: i) selecting a configuration of input settings for manufacturing a product, based on a causal model that measures causal relationships between input settings and a measure of a quality of the product; ii) determining the measure of the quality of the product manufactured using the configuration of input settings; and iii) adjusting, based on the measure of the quality of the product manufactured using the configuration of input settings, the causal model.
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公开(公告)号:US20180015646A1
公开(公告)日:2018-01-18
申请号:US15548646
申请日:2016-03-04
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Alvaro S. Domenighi , Kim L. Gustafson , Patrick G. Zimmerman
IPC: B29C44/18 , B05C17/005 , B29C39/02 , B29L31/60
Abstract: Nozzles are presented, for application of a setting resin into cells of a honeycomb core to provide the panel with reinforced segments. The nozzle comprises a connector portion and an application head, where the connector portion is adapted to receive setting resin from a resin dispensing device and deliver the setting resin to the application head, and the application head comprises: an exit hole, and a flange surrounding the exit hole. The flange comprises a bottom surface which comprises a planar surface which planar surface has a minimum width around the exit hole. The bottom surface of flange curves upward at its outer perimeter. In some embodiments, the nozzle is optically translucent or transparent. In addition, methods of applying a setting resin into cells of a honeycomb core to form a honeycomb core reinforcement are presented. In some embodiments, the setting resin is a low density void filler.
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公开(公告)号:US20250036112A1
公开(公告)日:2025-01-30
申请号:US18917251
申请日:2024-10-16
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Brian E. Brooks , Gilles J. Benoit , Peter O. Olson , Tyler W. Olson , Himanshu Nayar , Frederick J. Arsenault , Nicholas A. Johnson , Brett R. Hemes , Thomas J. Strey , Jonathan B. Arthur , Nathan J. Herbst , Aaron K. Nienaber , Sarah M. Mullins , Mark W. Orlando , Cory D. Sauer , Timothy J. Clemens , Scott L. Barnett , Zachary M. Schaeffer , Patrick G. Zimmerman , Gregory P. Moriarty , Jeffrey P. Adolf , Steven P. Floeder , Andreas Backes , Peter J. Schneider , Maureen A. Kavanagh , Glenn E. Casner , Miaoding Dai , Christopher M. Brown , Lori A. Sjolund , Jon A. Kirschhoffer , Carter C. Hughes
IPC: G05B19/418 , B25J11/00
Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for optimizing a process of manufacturing a product. In one aspect, the method comprises repeatedly performing the following: i) selecting a configuration of input settings for manufacturing a product, based on a causal model that measures causal relationships between input settings and a measure of a quality of the product; ii) determining the measure of the quality of the product manufactured using the configuration of input settings; and iii) adjusting, based on the measure of the quality of the product manufactured using the configuration of input settings, the causal model.
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公开(公告)号:US20250035473A1
公开(公告)日:2025-01-30
申请号:US18717047
申请日:2022-12-09
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Joerg Hahn , Knut Schumacher , Benjamin Muenstermann , Robert J. Bialluch , Waleri Wischnepolski , Christian Weinmann , Michael Bahners , David M. Rudek , John A. Merchant , Alissa P. Wenner , Patrick G. Zimmerman , Vincent Jusuf , Kyle R. Hubbs , Max Kontak , Brijesh Gupta Chagi Ramesh , Robert J. Koch , Andreas M. Geldmacher , Marcus Saurborn , Kalc C. Vang
Abstract: An electrical property sensor is presented that includes a printed circuit board with a first face separated from a second face by a thickness, the first face having a length and a width. The sensor also includes an aperture extending from a first face of the printed circuit board to a second face of the printed circuit board. The aperture includes a receiving electrode and a transmitting electrode. When a fluid flows through the aperture and a voltage is provided at the transmitting electrode, a cunent flow is measured at the receiving electrode.
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公开(公告)号:US12140938B2
公开(公告)日:2024-11-12
申请号:US17436886
申请日:2019-10-03
Applicant: 3M INNOVATIVE PROPERTIES COMPANY
Inventor: Brian E. Brooks , Gilles J. Benoit , Peter O. Olson , Tyler W. Olson , Himanshu Nayar , Frederick J. Arsenault , Nicholas A. Johnson , Brett R. Hemes , Thomas J. Strey , Jonathan B. Arthur , Nathan J. Herbst , Aaron K. Nienaber , Sarah M. Mullins , Mark W. Orlando , Cory D. Sauer , Timothy J. Clemens , Scott L. Barnett , Zachary M. Schaeffer , Patrick G. Zimmerman , Gregory P. Moriarty , Jeffrey P. Adolf , Steven P. Floeder , Andreas Backes , Peter J. Schneider , Maureen A. Kavanagh , Glenn E. Casner , Miaoding Dai , Christopher M. Brown , Lori A. Sjolund , Jon A. Kirschhoffer , Carter C. Hughes
IPC: G05B19/00 , B25J11/00 , G05B19/418
Abstract: Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for optimizing a process of manufacturing a product. In one aspect, the method comprises repeatedly performing the following: i) selecting a configuration of input settings for manufacturing a product, based on a causal model that measures causal relationships between input settings and a measure of a quality of the product; ii) determining the measure of the quality of the product manufactured using the configuration of input settings; and iii) adjusting, based on the measure of the quality of the product manufactured using the configuration of input settings, the causal model.
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