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公开(公告)号:US11486052B2
公开(公告)日:2022-11-01
申请号:US17562032
申请日:2021-12-27
Inventor: Chun-Hsiang Kao , Yi-Cherng Ferng , Kuo-Kuang Jen , Shun-Yi Jian , Ming-Hsien Lin , Yu-Chih Tzeng , Chia-Yu Lee
Abstract: Provides an electropolishing treatment method for a stainless steel workpiece, wherein the method comprises the following steps: placing the stainless steel workpiece in an oxalic acid solution and performing supersonic oscillation; performing a first electropolishing treatment to the stainless steel workpiece, wherein the first electropolishing treatment uses the stainless steel workpiece as an anode and 10% to 15% perchloric acid as an electrolyte, and when a constant voltage is set as 12V, the first electropolishing treatment procedure is performed; and performing a second electropolishing treatment to the stainless steel workpiece, wherein the second electropolishing treatment uses the stainless steel workpiece after the first electropolishing treatment as an anode, and an electrolyte consists of ethanol, sulfuric acid and perchloric acid, and when a constant voltage is set as 12V, the second electropolishing treatment is performed to obtain the stainless steel workpiece after the second electropolishing treatment.
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公开(公告)号:US20210187699A1
公开(公告)日:2021-06-24
申请号:US16719899
申请日:2019-12-18
Inventor: Po-Shen Lin , Ming-Wei Liu , Chih-Peng Chen , Kuo-Kuang Jen
IPC: B24C5/00
Abstract: The present invention discloses a multi-dimensional vibration grinding cavity body. By adjusting amplitudes (power) and frequencies of the multi-dimensional ultrasonic vibration source, such that the multi-directional macroscopic flow is formed in the cavity body while keeping the vibration medium to have the original characteristics to improve the performance of grinding of slurry.
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公开(公告)号:US10444295B2
公开(公告)日:2019-10-15
申请号:US15848177
申请日:2017-12-20
Inventor: Shu-Hsien Wen , Kuo-Kuang Jen , Gwo-Huei You , Chung-Ling Tseng
IPC: H02J7/00 , G01R31/387 , H01M10/42 , H01M10/44
Abstract: A battery balance management circuit includes an active and passive testing balance bus, a plurality of battery sets, a primary charging converter, a secondary charging system, an electrical load and a battery management system. An external balance management mechanism is utilized to compensate for current loss of the battery set, effectively enabling the battery sets to provide stable large current output.
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公开(公告)号:US10377262B2
公开(公告)日:2019-08-13
申请号:US15370889
申请日:2016-12-06
Inventor: Wei-Min Hsiao , Kuo-Kuang Jen , Jeng-Chyan Lin , Hsun-Ming Hsien , Fu-Min Fang
Abstract: Electric vehicle range extending apparatus includes a step-down voltage provision unit, cell voltage sensing unit, cell switching unit, and control unit. The step-down voltage provision unit has an input port to be coupled to the main battery pack or an auxiliary battery pack, and an output port to output a power balancing signal. The cell voltage sensing unit is for being coupled to the battery cells and sensing individual voltages of the battery cells. The cell switching unit, including a plurality of switches, is coupled to the battery cells respectively, and coupled to the output port. The control unit, coupled to the cell voltage sensing unit, step-down voltage provision unit, and cell switching unit, is for controlling the cell switching unit based on the individual voltages of the battery cells so as to apply the power balancing signal to at least one of the battery cells selectively.
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公开(公告)号:US20190186669A1
公开(公告)日:2019-06-20
申请号:US16169986
申请日:2018-10-24
Inventor: Po-Shen Lin , Chih-Peng Chen , Kuo-Kuang Jen , Yu-Ching Tseng
Abstract: The curved flow channel with built-in lattice structure provided by the present application is configured with the lattice structure disposed at the outer inside wall of the curved section away from a center of curvature of the curved section. Through geometry and distribution design of the lattice structure, flow rate and flow direction of fluid impacting the lattice structure can be altered, which achieves the purpose of flow rate redistribution in the curved flow channel and produces a downstream flow field with uniform distribution.
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公开(公告)号:US20210215761A1
公开(公告)日:2021-07-15
申请号:US16744109
申请日:2020-01-15
Inventor: Wei-Min Hsiao , Shih-Chang Tseng , Kuo-Kuang Jen , Gwo-Huei You , Chih-Hsien Chung
IPC: G01R31/364 , G01R31/36 , H01M10/42 , H01M10/48
Abstract: The present invention discloses an external battery short-circuit testing device, configured to perform short-circuit test on a battery pack under test. The external battery short-circuit testing device comprises a plurality of fuses; a Hall current transducer, coupled to the plurality of fuses; a current meter, coupled to the Hall current transducer and the battery pack under test; a voltmeter, coupled to the battery pack under test; a variable resistor, coupled to the Hall current transducer; an electromagnetic switch, coupled to the variable resistor and the battery pack under test; and an operation unit, comprising a voltage measurement unit, a current measurement unit, a temperature measurement unit and a switch control unit.
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公开(公告)号:US10780504B2
公开(公告)日:2020-09-22
申请号:US15815728
申请日:2017-11-17
Inventor: Yi-Lun Xiao , Li-Tsung Sheng , Shu-San Hsiau , Kuo-Kuang Jen , Chih-Peng Chen , Po-Shen Lin , Chung-Chun Huang
Abstract: A powder recycling system includes a supply tank, a continuous loss-in-weight module, a pneumatic module, a transfer channel, a recycle module, and a refilling tank. The supply tank accommodates recycling powder. The continuous loss-in-weight module includes a storage tank receiving the recycling powder from the supply tank and a rotary output pipe connected to the storage tank to output the recycling powder. The continuous loss-in-weight module controls the mass flow rate of the output of the recycling powder according to the weight change of the storage tank. The pneumatic module enables the recycling powder to float and move in the transfer channel. The recycle module is connected to the transfer channel to receive the recycling powder, sieves the recycling powder, provides virgin powder, and mixes the virgin powder with the recycling powder. The refilling tank is connected to the recycle module to receive the recycling powder and the virgin powder.
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公开(公告)号:US20190187213A1
公开(公告)日:2019-06-20
申请号:US15848177
申请日:2017-12-20
Inventor: Shu-Hsien Wen , Kuo-Kuang Jen , Gwo-Huei You , Chung-Ling Tseng
CPC classification number: G01R31/387 , G06F2217/78 , H01M10/4285 , H01M10/441 , H02J7/0006 , H02J7/0019 , H02J7/0021 , H02J7/0026 , H02J2007/005
Abstract: A battery balance management circuit includes an active and passive testing balance bus, a plurality of battery sets, a primary charging converter, a secondary charging system, an electrical load and a battery management system. An external balance management mechanism is utilized to compensate for current loss of the battery set, effectively enabling the battery sets to provide stable large current output.
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公开(公告)号:US20190151954A1
公开(公告)日:2019-05-23
申请号:US15815728
申请日:2017-11-17
Inventor: Yi-Lun Xiao , Li-Tsung Sheng , Shu-San Hsiau , Kuo-Kuang Jen , Chih-Peng Chen , Po-Shen Lin , Chung-Chun Huang
IPC: B22F8/00
Abstract: A powder recycling system includes a supply tank, a continuous loss-in-weight module, a pneumatic module, a transfer channel, a recycle module, and a refilling tank. The supply tank accommodates recycling powder. The continuous loss-in-weight module includes a storage tank receiving the recycling powder from the supply tank and a rotary output pipe connected to the storage tank to output the recycling powder. The continuous loss-in-weight module controls the mass flow rate of the output of the recycling powder according to the weight change of the storage tank. The pneumatic module enables the recycling powder to float and move in the transfer channel. The recycle module is connected to the transfer channel to receive the recycling powder, sieves the recycling powder, provides virgin powder, and mixes the virgin powder with the recycling powder. The refilling tank is connected to the recycle module to receive the recycling powder and the virgin powder.
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公开(公告)号:US10063070B2
公开(公告)日:2018-08-28
申请号:US15361321
申请日:2016-11-25
Inventor: Wei-Min Hsiao , Kuo-Kuang Jen , Jeng-Chyan Lin , Hsun-Ming Hsien , Fu-Min Fang
CPC classification number: H02J7/0019 , G01R19/16542 , G01R31/396 , H01M10/425 , H01M10/441 , H01M10/482 , H01M2010/4271 , H02J7/0026 , H02J7/35
Abstract: A battery active-balancing system comprises an external balancing power; a buck converter having a first side-winding and a second side-winding induced thereby, the first side-winding and the second side-winding each having a positive terminal and a negative terminal; a battery comprising series-connected cell-units each having a positive terminal and a negative terminal; a cell voltage-sensing unit coupled to the battery to sense a voltage of each cell unit of the series-connected cell-units; a main switch component coupled to the first side-winding and the battery in an ON state, or coupled to the first side-winding and the external balancing power in an OFF state; a cell-switch unit comprising first cell-switch components and second cell-switch components, wherein each of the first cell-switch components is coupled to the positive terminal of corresponding one cell-unit and the positive terminal of the second side-winding, and each of the second cell-switch components is coupled to the negative terminal of corresponding one cell-unit and the negative terminal of the second side-winding; and a microcontroller for controlling the main switch component and the cell-switch unit, and determining a voltage level fed back from the cell voltage-sensing unit.
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