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公开(公告)号:US11633824B2
公开(公告)日:2023-04-25
申请号:US16718222
申请日:2019-12-18
Inventor: Po-Shen Lin , Ming-Wei Liu , Chih-Peng Chen , Kuo-Kuang Jen
Abstract: The present invention discloses a grinding cavity body of multiple vibration sources, in which a plurality of ultrasonic vibration sources are disposed, capable of controlling the multi-directional macroscopic medium flow, making benefits to the vibration medium (the abrasive of the slurry) to enter the fine structure of the workpiece to be processed, and to the abrasive to vibrate itself slightly to enhance the performance of abrasive to the workpiece which needs to be ground.
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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: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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4.
公开(公告)号:US11065814B2
公开(公告)日:2021-07-20
申请号:US16168840
申请日:2018-10-24
Inventor: Chung-Chun Huang , Chih-Peng Chen , Po-Shen Lin
IPC: B29C64/295 , B33Y30/00 , B29C35/08 , B33Y40/00 , B29C64/153 , B29C64/245 , B29C64/268 , B33Y10/00
Abstract: The present application provides not only a heating device for additive manufacturing but also a heating module and a manufacturing apparatus utilizing the heating device. The heating device utilizes a rotational reflective cover to modulate a heating direction of a heating source, which expands an area correspondingly irradiated by the heating source and enhances uniformity of heating. Besides, the heating modules can be coupled and controlled by a controlling subsystem so as to respectively irradiate different areas with ranges at least partially intersecting each other, which also improves heating uniformity for heating a large area.
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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: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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7.
公开(公告)号:US20190160751A1
公开(公告)日:2019-05-30
申请号:US16168840
申请日:2018-10-24
Inventor: Chung-Chun Huang , Chih-Peng Chen , Po-Shen Lin
IPC: B29C64/295 , B29C64/153 , B29C64/268 , B29C64/245
Abstract: The present application provides not only a heating device for additive manufacturing but also a heating module and a manufacturing apparatus utilizing the heating device. The heating device utilizes a rotational reflective cover to modulate a heating direction of a heating source, which expands an area correspondingly irradiated by the heating source and enhances uniformity of heating. Besides, the heating modules can be coupled and controlled by a controlling subsystem so as to respectively irradiate different areas with ranges at least partially intersecting each other, which also improves heating uniformity for heating a large area.
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公开(公告)号:US11768112B2
公开(公告)日:2023-09-26
申请号:US17184624
申请日:2021-02-25
Inventor: Yuan-Yao Lin , Chao-Kuei Lee , Yi-Jen Chiu , Chung-Chun Huang , Qian-Mao Zhou , Ya-Hsuan Cheng , Ming-Wei Liu , Kuo-Kuang Jen , Chih-Peng Chen
IPC: G01J5/00 , G01J5/0806 , G01J5/10
CPC classification number: G01J5/0806 , G01J5/10 , G01J2005/0077
Abstract: An insert coaxial thermal radiation image evaluating system includes a cage support, first lens, first cage movable frame, second cage movable frame, cage holder and light detector. The first cage movable frame is movably disposed at the cage support and connected to the first lens. The second cage movable frame is movably disposed at the cage support and connected to the light detector. The cage holder is connected to the cage support to fix the cage support to an optical substrate. The first cage movable frame is movably disposed in the cage holder. The first lens and a second lens of a metal additive manufacturing system together form a structure of conjugate foci, such that a thermal radiation generated from a high-power infrared laser irradiation zone forms according to a fixed ratio an image captured by the light detector.
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公开(公告)号:US11628539B2
公开(公告)日:2023-04-18
申请号:US16719899
申请日:2019-12-18
Inventor: Po-Shen Lin , Ming-Wei Liu , Chih-Peng Chen , Kuo-Kuang Jen
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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10.
公开(公告)号:US10814556B2
公开(公告)日:2020-10-27
申请号:US16166134
申请日:2018-10-21
Inventor: Chung-Chun Huang , Chih-Peng Chen , Po-Shen Lin , Yu-Ching Tseng
IPC: B29C64/35 , B33Y30/00 , B33Y40/00 , B29C64/153 , B22F3/105 , B29C64/357 , B29C64/25 , B29C64/245 , B29C64/371 , B33Y50/02 , B29C64/393
Abstract: An additive manufacturing apparatus includes a main system and a cleaning transportation system separated from the main system. The main system includes an additive manufacturing module. The additive manufacturing module includes an additive manufacturing chamber. The additive manufacturing chamber includes a powder discharging openings and a vibration unit. The powder discharging openings are formed at a lower portion of the additive manufacturing chamber, and the powders in the additive manufacturing chamber are discharged down via gravitation. The vibrational unit is for vibrating the powders so as to accelerate downward powder discharging via vibration of the vibrational unit. The present application solves the conventional problems of excessive consumed energy, large required installation and operational space, inconvenience of powder removing and swirled raised powder haze in the environment.
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