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公开(公告)号:US20240361077A1
公开(公告)日:2024-10-31
申请号:US18455873
申请日:2023-08-25
申请人: TZU-CHIN HUNG
发明人: TZU-CHIN HUNG
摘要: A quick-release air knife of a package thermal-shrinking oven includes at least one fixing ring, at least one pair of fixing elements, a plurality of air knife tubes, and air knife blades. The fixing ring is at least formed, in an interior thereof, with a through hole and at least one pair of notches and fixing holes are formed in a periphery of the through hole. The fixing elements respectively extend through the fixing holes to connect to a bottom portion of a hot airflow combination box arranged on a top portion of a package thermal-shrinking oven. A top portion of each of the air knife tubes is provided with a connecting portion and at least one pair of fitting blocks. The fitting blocks of the air knife tube match with the notches of the fixing ring, and a top end of the air knife tube is pushed upwards to pass through the through hole and the notches and then rotated by an angle to have the fitting blocks fit to a top surface of the fixing ring and the connecting portion of the air knife tube connected to the bottom portion of the hot airflow combination box for introducing a hot airflow into the air knife tube. The air knife blades are combined to the exteriors of the air knife tubes to guide a path of discharging the hot airflow out of the air knife tubes. Thus, a quick-release air knife structure that is operable through clockwise or counterclockwise direction to have the air knife tube to connect to or disconnect from the bottom portion of the hot airflow combination box.
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公开(公告)号:US20240360004A1
公开(公告)日:2024-10-31
申请号:US18764850
申请日:2024-07-05
发明人: Tomohiro YOKOYAMA
CPC分类号: C01G53/50 , F27B9/28 , F27B9/36 , H01M4/505 , H01M4/525 , F27D2003/0042 , H01M2004/028
摘要: Provided is a production apparatus for a cathode active material for lithium ion secondary batteries which can improve productivity. The production apparatus is provided with: a conveying device that conveys a raw material of a cathode active material, the raw material containing a metallic compound and a lithium compound, the metallic compound including at least one metallic element selected from the group consisting of nickel, cobalt, and manganese; and a heating unit in which the raw material is heated, wherein the heating unit has at least one heating member that heats the raw material by heat conduction, the conveying device has a conveying member that conveys the raw material, the heating member heats the raw material via the conveying member, and the conveying member has a retaining part for the raw material of the cathode active material along a side part thereof in a width direction.
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公开(公告)号:US12123651B2
公开(公告)日:2024-10-22
申请号:US17997310
申请日:2021-05-17
申请人: IHI Corporation
发明人: Naoki Satou , Tatsurou Tanoue
CPC分类号: F27D21/02 , G01J5/0044 , G01J5/0859 , G06T7/0002 , H04N7/183 , H04N23/23 , F27D2021/026 , G06T2207/10048 , G06T2207/30232
摘要: A furnace monitoring device includes an imaging unit to capture an image of combustion ash adhering to a monitoring position in a furnace, an evaluation unit to evaluate a deposition state of combustion ash on the basis of a monitoring image which is output from the imaging unit, and an alert unit to output an alert for the combustion ash on the basis of a result of evaluation from the evaluation unit.
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公开(公告)号:US12123650B2
公开(公告)日:2024-10-22
申请号:US17768803
申请日:2020-10-12
CPC分类号: F27D15/0213 , C04B7/47 , C04B7/48 , F27D2015/026
摘要: A method can be used to cool bulk material in a fine material cooler. The method may involve admitting bulk material to be cooled into the fine material cooler through a material inlet, conveying the coarse material with a first mechanical or pneumatic conveying unit, and conveying the fine material with a second conveying unit in a conveying direction through the fine material cooler to a material outlet. The bulk material may have a fine material proportion of 70% to 95% and a coarse material proportion of 5% to 30%. The fine material may have a grain size of 10-5 mm to 4 mm, and the coarse material may have a grain size of 4 mm to 100 mm.
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公开(公告)号:US20240344768A1
公开(公告)日:2024-10-17
申请号:US18633889
申请日:2024-04-12
申请人: GPRE IP, LLC
发明人: John M. Peterman , Bruce S. Miller
CPC分类号: F27B7/38 , F27B7/18 , F27D21/0014 , F27D2009/0016 , F27M2001/10
摘要: An evaporative cooling system for a scrap metal furnace with an afterburner, a rotary kiln and a conveyor that loads scrap metal into the kiln. Pressurized water runs through water lines to two water spray subassemblies. The first subassembly sprays atomized water into a heating duct between the afterburner and a gas recycle return duct. The second subassembly sprays water onto the scrap metal on the conveyor. Water flow through the subassemblies is regulated by one or more water flow controllers, pumps and/or flow sensors, which may be computer controlled. A water heater warms the water to a desired temperature.
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公开(公告)号:US12114666B2
公开(公告)日:2024-10-15
申请号:US16720565
申请日:2019-12-19
发明人: Neomar Giacomini
CPC分类号: A21B3/04 , A21B1/40 , A23L5/15 , F27D21/02 , A23V2002/00 , F27D2021/026
摘要: A cooking appliance includes a body having a first cavity. A sensor is operably coupled with the first cavity to obtain a first data. A humidifier is in fluid communication with the first cavity to control a relative humidity within the first cavity. A controller is in electric communication with the sensor to receive the first data. The controller detects at least one of a surface condition and a growth condition of a food substrate using the first data.
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公开(公告)号:US20240327302A1
公开(公告)日:2024-10-03
申请号:US18740022
申请日:2024-06-11
发明人: Hiroaki YANO , Yuta SETO , Sho TANIGUCHI
CPC分类号: C04B38/0006 , C04B38/0051 , C04B41/0072 , C04B41/4578 , F27D5/0031
摘要: A method of forming a setter for firing a ceramic has a sheet formation step (S1 to S3) to form a structure by sheet formation. The structure has a porous layer S1 with ceramic fibers. A shaping step S5 shapes the structure, into a predetermined shape. A coating step S6 impregnates the predetermined shape structure, with an impregnation liquid to form a dense layer S2 on the outer surface of the porous layer S1. The dense layer S2 is denser than the porous layer S1. A firing step S7, fires, at a predetermined temperature, the structure that has been subjected to the coating step S6.
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公开(公告)号:US20240318916A1
公开(公告)日:2024-09-26
申请号:US18259660
申请日:2021-11-09
CPC分类号: F27D99/0073 , F27B9/201 , F27D3/00 , F27D2003/0048
摘要: The subject of the present invention is a shielding shoe for covering openings in the bottom of a walking beam furnace, the shielding shoe having a semi-circular recess and can thereby be taken up by a vertical support of the walking beam furnace. The shielding shoe consists essentially of refractory cast concrete or refractory rammed concrete and, according to the invention, has a honeycomb-like structure below the shielding jacket. The present invention also relates to a walking beam furnace with such shielding shoes.
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公开(公告)号:US20240304471A1
公开(公告)日:2024-09-12
申请号:US18666710
申请日:2024-05-16
发明人: Kai-Wen WU , Chun-Ta CHEN , Chin-Shen HSIEH , Cheng-Yi HUANG
IPC分类号: H01L21/67 , F27B17/00 , F27D3/00 , F27D5/00 , H01L21/324
CPC分类号: H01L21/67103 , F27B17/0025 , F27D3/0084 , F27D5/0037 , H01L21/324
摘要: In an embodiment, an apparatus comprising: a heater configured to heat a wafer located on a wafer staging area of the heater, the heater comprising a heater shaft extending below the wafer staging area; and a heater lift assembly comprising: a lift shaft configured to move the heater shaft in a vertical direction; a clamp that connects the heater shaft to the lift shaft; and a damper disposed on top of the clamp.
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公开(公告)号:US12085341B2
公开(公告)日:2024-09-10
申请号:US17654932
申请日:2022-03-15
申请人: AFC-Holcroft, L.L.C.
发明人: William Disler
CPC分类号: F27D21/0014 , C21D11/00 , F27D2021/0057
摘要: Apparatuses and processes for evaluating degradation and potential failure of components in an industrial heat treatment system include means and steps for establishing process settings for a baseline process cycle, collecting sensor data for at least one non-process control performance parameter during the baseline process cycle to establish a set of benchmark performance data, performing a calibration process cycle using the established process settings and collecting sensor data for the at least one non-process control performance parameter to establish a set of calibration performance data, and comparing the calibration performance data to the benchmark performance data.
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