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61.
公开(公告)号:US20230191442A1
公开(公告)日:2023-06-22
申请号:US18066227
申请日:2022-12-14
Applicant: Illinois Tool Works Inc.
Inventor: Edward Wayne Bolyard, Jr. , Mel Steven Lessley
CPC classification number: B05C11/1002 , B05C5/0241 , B05C5/027 , B05C5/0225
Abstract: An extruder assembly may include an entry die, an exit die, and one or more shims. The exit die can be coupled with a fluid applicator system with the entry die facing away from a body of the system to direct adhesive flowing into the exit die, through the shims, and out of the exit die, the entry die, and the shims onto a web or strand moving in a first direction. The entry die may be coupled with the body of the system with the exit die facing away from the body to direct the adhesive onto a web or strand moving in a second, opposite direction.
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公开(公告)号:US20230182166A1
公开(公告)日:2023-06-15
申请号:US18080525
申请日:2022-12-13
Applicant: Phillip G. Langhorst
Inventor: Phillip G. Langhorst
CPC classification number: B05C11/1002 , B05C1/025 , B25J11/0075 , B25J9/026
Abstract: A Robotic Coating System with Real-Time Mixing has a particular arrangement of a robotic gantry, two peristaltic pumps, a mixer, a hollow brush, two tanks, and a computerized controller. The invention has tubes providing fluid communication from a coating tank and a thinner tank through the pumps and mixer to the brush. The invention provides everything necessary for robotic coating in one compact system. This invention provides the ability to apply coatings to an item, without pre-mixing the coating components. A computerized controller drives the brush through a pre-programmed path to coat required areas and not coat sensitive areas. The System operates upon utility service, typically 110 VAC, and it also self-cleans.
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公开(公告)号:US11673158B1
公开(公告)日:2023-06-13
申请号:US17673452
申请日:2022-02-16
Applicant: Jon Kyle Lavender , Alex Jon Lavender
Inventor: Jon Kyle Lavender , Alex Jon Lavender
IPC: B05C11/10 , B05C3/09 , B05C11/11 , A47G21/18 , A61K45/06 , D21H19/82 , D21H19/38 , A61K31/05 , A61K31/352 , D21H23/66
CPC classification number: B05C11/1039 , A47G21/18 , A61K31/05 , A61K31/352 , A61K45/06 , B05C3/09 , B05C11/11 , D21H19/38 , D21H19/822 , D21H23/66
Abstract: A method for coating a paper drinking straw, an apparatus for coating a paper drinking straw, and a coated drinking straw assembly are disclosed. The apparatus includes a dipping tank containing a liquid bath for coating a straw when submerged in the liquid and a straw engagement means for submerging the straw in the bath. The method includes receiving an uncoated paper drinking straw and submerging the straw in a bath containing a water-resistant and/or a water-soluble coating. The drinking straw assembly includes an elongate tubular body and a coating that has been applied to all surfaces of the straw by submerging the body in a bath containing the coating.
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公开(公告)号:US20230166291A1
公开(公告)日:2023-06-01
申请号:US18096769
申请日:2023-01-13
Applicant: Akadeum Life Sciences, Inc.
Inventor: Brandon H. McNaughton , Nadia Petlakh , John G. Younger , Greg Hermanson , Bill Hyun , Vanessa Kelchner
Abstract: A system for buoyant particle processing includes: a reaction vessel, a stirring mechanism, a set of one or more pumps, and a filter. The system can additionally or alternatively include a set of pathways and/or any other suitable component(s). A method for buoyant particle processing includes: stirring the contents of a reaction vessel; washing a set of buoyant particles; and filtering the contents of the reaction vessel. Additionally or alternatively, the method can include any or all of: preprocessing the set of buoyant particles; adding a set of inputs to the reaction vessel; washing the set of buoyant particles; repeating one or more; and/or any other suitable process(es).
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公开(公告)号:US20230166286A1
公开(公告)日:2023-06-01
申请号:US17913243
申请日:2021-03-24
Applicant: AKZENTA PANEELE + PROFILE GMBH
Inventor: Yavuz MADANOGLU
CPC classification number: B05C5/0204 , B05C11/1039
Abstract: The disclosure relates to a coating device for edge-coating a panel with a coating medium, the device comprising at least one medium line, for guiding a coating medium, which comprises an inlet and an outlet, wherein the medium line comprises a recess for introducing a panel into a coating-medium stream, and wherein the medium line and the recess are designed such that the coating medium can be applied to the edge of the panel by means of suction in the flow direction of the medium. The present disclosure also relates to a coating system for edge-coating a panel with a coating medium.
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公开(公告)号:US20230147887A1
公开(公告)日:2023-05-11
申请号:US18065797
申请日:2022-12-14
Applicant: Kateeva, Inc.
Inventor: Eliyahu Vronsky , Nahid Harjee
IPC: H01L21/66 , H01L21/02 , H04N1/405 , B41J2/205 , B41J2/01 , B05C11/10 , H01L21/67 , H01L33/52 , H01L31/0203 , H01L31/048 , H01L33/54 , B41J2/21
CPC classification number: H01L22/12 , B05C11/10 , B41J2/01 , B41J2/21 , B41J2/2054 , H01L21/02288 , H01L21/67126 , H01L22/26 , H01L31/048 , H01L31/0203 , H01L33/52 , H01L33/54 , H04N1/405 , H10K50/84 , H10K50/844 , H10K71/00 , H10K71/70 , H10K71/135 , H01L33/56 , H10K50/8445 , H10K59/1201 , Y02E10/549 , Y02P70/50
Abstract: An ink jet process is used to deposit a material layer to a desired thickness. Layout data is converted to per-cell grayscale values, each representing ink volume to be locally delivered. The grayscale values are used to generate a halftone pattern to deliver variable ink volume (and thickness) to the substrate. The halftoning provides for a relatively continuous layer (e.g., without unintended gaps or holes) while providing for variable volume and, thus, contributes to variable ink/material buildup to achieve desired thickness. The ink is jetted as liquid or aerosol that suspends material used to form the material layer, for example, an organic material used to form an encapsulation layer for a flat panel device. The deposited layer is then cured or otherwise finished to complete the process.
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公开(公告)号:US20230128483A1
公开(公告)日:2023-04-27
申请号:US17908723
申请日:2021-03-04
Applicant: Nordson Corporation
Inventor: Jian QIN , Chunyun Qin
Abstract: In one example, a nozzle of a fluid material dispenser has a first nozzle body and a second nozzle body. The first body has a first inlet end, a first outlet end, a first outer surface extending, and a first inner surface. The first inner surface defines a first channel that can direct a fluid material from the first inlet end to the first outlet end. The second body has a second inlet end, a second outlet end, a second outer surface, and a second inner surface. The second inner surface defines a second channel that can receive at least a portion of the first nozzle body therein such that the first outer surface is inwardly spaced from the second inner surface so as to define a space between the first outer surface and the second inner surface. The space can direct a gas to the second outlet end.
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68.
公开(公告)号:US20230120764A1
公开(公告)日:2023-04-20
申请号:US17965233
申请日:2022-10-13
Applicant: SEMES CO., LTD.
Inventor: Joon-Ho SHIN
IPC: B05C11/10
Abstract: The inventive concept provides a substrate treating apparatus. The substrate treating apparatus includes a housing having a treating space for treating a substrate therein; a support unit configured to support the substrate at the treating space; a nozzle for supplying a liquid to the substrate placed on the support unit; a liquid supply unit configured to supply the liquid to the nozzle and have a flow meter; and a flow rate measuring unit configured to verify an error of the flow meter; and a controller for controlling the liquid supply unit and the flow rate measuring unit, and wherein the flow rate measuring unit comprises: a cup for accommodating the liquid; a measuring means configured to verify a level of the liquid accommodated in the cup; and a discharge line for discharging the liquid within the cup and having a discharge valve installed thereon, and wherein the controller controls the liquid supply unit to discharge a liquid of a first amount to the cup for a first time in a state at which the discharge valve is closed, and controls the measuring means to determine whether an error has occurred in the flow meter by determining whether the level of the liquid accommodated in the cup is the first amount.
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公开(公告)号:US11626298B2
公开(公告)日:2023-04-11
申请号:US16603044
申请日:2018-03-23
Applicant: TOKYO ELECTRON LIMITED
Inventor: Yusuke Takamatsu , Yasuhiro Takaki , Shinichi Umeno , Shogo Fukui
Abstract: A liquid supply device includes: a storage tank configured to store a processing liquid including a first processing liquid (sulfuric acid) and a second processing liquid (hydrogen peroxide solution); a circulation path having a first pipeline through which the processing liquid passes in a horizontal direction, and configured to circulate the processing liquid stored in the storage tank; a branch path configured to supply the processing liquid to a processing unit; and a branching part having an opening for allowing the processing liquid to flow out from the first pipeline to the branch path, wherein the opening is formed in the branching part and formed below a periphery of the first pipeline when the first pipeline is viewed in section.
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公开(公告)号:US20230095269A1
公开(公告)日:2023-03-30
申请号:US17910098
申请日:2021-03-01
Applicant: MUSASHI ENGINEERING, INC.
Inventor: Kazumasa IKUSHIMA
Abstract: Problem: To provide a technology for forming a planar liquid film having less surface unevenness than ever before using a jet-type discharge device.
Solution: Provided is a planar liquid film forming method of forming a planar liquid film on an application target using a jet-type discharge device having a plurality of discharge ports, and an apparatus for implementing the method. In the method, the plurality of discharge ports are arranged on a straight nozzle arrangement line 140, and are arranged with such a distance from one another that globs of a liquid material having landed on the application target can join together to form a linear liquid film. The method includes: a unitary linear liquid film forming step of forming a unitary linear liquid film 404 by discharging the liquid material such that a plurality of liquid globs simultaneously discharged from the plurality of discharge ports have no contact with one another before landing on the application target, and by letting globs of the liquid material having landed join together on the application target; and a specific planar liquid film forming step of forming a specific planar liquid film 405 from a plurality of unitary linear liquid films 404 by successively executing the unitary linear liquid film forming steps while moving the jet-type discharge device and the application target relative to each other in a direction perpendicular to the nozzle arrangement line 140 so that the plurality of unitary linear liquid films 404 join together.
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