Patents by Inventor Chor Yen YAP
Chor Yen YAP has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12251884Abstract: Systems and methods of support structures in powder-bed fusion (PBF) are provided. Support structures can be formed of bound powder, which can be, for example, compacted powder, compacted and sintered powder, powder with a binding agent applied, etc. Support structures can be formed of non-powder support material, such as a foam. Support structures can be formed to include resonant structures that can be removed by applying a resonance frequency. Support structures can be formed to include structures configured to melt when electrical current is applied for easy removal.Type: GrantFiled: April 28, 2017Date of Patent: March 18, 2025Assignee: DIVERGENT TECHNOLOGIES, INC.Inventors: Eahab Nagi El Naga, John Russell Bucknell, Chor Yen Yap, Broc William TenHouten, Antonio Bernerd Martinez
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Patent number: 11845130Abstract: Systems and methods for rotational additive manufacturing are disclosed. An apparatus in accordance with an aspect of the present disclosure comprises a build floor, a depositor system configured to deposit a layer of powder onto the build floor, a motor system causing a rotational motion between the depositor system and the build floor, wherein the depositor system deposits the layer of powder during the rotational motion, a receptacle wall configured to contain the powder on the build floor, an energy beam source configured to apply an energy beam in an active area of the layer of powder to selectively fuse a portion of the powder in the active area to form a portion of a build piece and a gas flow system configured to provide a gas flow across the active area while the energy beam selectively fuses the portion of the layer of powder in the active area.Type: GrantFiled: March 9, 2022Date of Patent: December 19, 2023Assignee: DIVERGENT TECHNOLOGIES, INC.Inventors: Michael Thomas Kenworthy, Samuel Noah Miller, Krzysztof Artysiewicz, Chor Yen Yap, Gregory S. Weaver
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Publication number: 20230235763Abstract: The present aspects include an assembly having discretized and segmented joint architecture. The assembly comprises a first structure including an outer wall and an inner wall, wherein the outer wall and the inner wall extend from a base of the first structure, and define a groove, and a plurality of connecting walls extending between the outer wall and the inner wall such that the groove is divided into a plurality of groove segments defined by the outer wall, the inner wall, and the plurality of connecting walls. The assembly further comprises a second structure including a plurality of tongue segments which extend into the plurality of groove segments. A first adhesive is inserted into the groove, thereby bonding the plurality of tongue segments within the plurality of groove segments such that the first and second structures are fixed together.Type: ApplicationFiled: January 25, 2023Publication date: July 27, 2023Inventors: Bahram ISSARI, Shahan Soghomon KASNAKJIAN, Eric Paul MONTEITH, Lukas Philip CZINGER, Samuel Noah MILLER, Chor Yen YAP, Matthew Cooper KELLER
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Publication number: 20220297233Abstract: Apparatuses for additive manufacturing producing an annular beam are disclosed herein. An apparatus in accordance with an aspect of the present disclosure comprises an energy beam source configured to generate an energy beam and a beam shaping applicator configured to shape the energy beam into a geometry and apply the shaped energy beam to an additive manufacturing material, wherein the geometry includes a two-dimensional shape with a perimeter and a hole in the two-dimensional shape within the perimeter.Type: ApplicationFiled: March 17, 2022Publication date: September 22, 2022Inventors: Chor Yen YAP, Michael Thomas Kenworthy
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Publication number: 20220288693Abstract: Systems and methods for rotational additive manufacturing are disclosed. An apparatus in accordance with an aspect of the present disclosure comprises a build floor, a depositor system configured to deposit a layer of powder onto the build floor, a motor system causing a rotational motion between the depositor system and the build floor, wherein the depositor system deposits the layer of powder during the rotational motion, a receptacle wall configured to contain the powder on the build floor, an energy beam source configured to apply an energy beam in an active area of the layer of powder to selectively fuse a portion of the powder in the active area to form a portion of a build piece and a gas flow system configured to provide a gas flow across the active area while the energy beam selectively fuses the portion of the layer of powder in the active area.Type: ApplicationFiled: March 9, 2022Publication date: September 15, 2022Inventors: Michael Thomas KENWORTHY, Samuel Noah Miller, Krzysztof Artysiewicz, Chor Yen Yap, Gregory S. Weaver
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Publication number: 20220288850Abstract: Systems and methods for rotational additive manufacturing are disclosed. An apparatus in accordance with an aspect of the present disclosure comprises a build floor, a depositor system configured to deposit a layer of powder onto the build floor, a motor system causing a rotational motion between the depositor system and the build floor, wherein the depositor system deposits the layer of powder during the rotational motion, a receptacle wall configured to contain the powder on the build floor, an energy beam source configured to apply an energy beam in an active area of the layer of powder to selectively fuse a portion of the powder in the active area to form a portion of a build piece and a gas flow system configured to provide a gas flow across the active area while the energy beam selectively fuses the portion of the layer of powder in the active area.Type: ApplicationFiled: March 9, 2022Publication date: September 15, 2022Inventors: Michael Thomas KENWORTHY, Samuel Noah Miller, Krzysztof Artysiewicz, Chor Yen YAP, Gregory S. Weaver
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Publication number: 20220288689Abstract: Systems and methods for rotational additive manufacturing are disclosed. An apparatus in accordance with an aspect of the present disclosure comprises a build floor, a depositor system configured to deposit a layer of powder onto the build floor, a motor system causing a rotational motion between the depositor system and the build floor, wherein the depositor system deposits the layer of powder during the rotational motion, a receptacle wall configured to contain the powder on the build floor, an energy beam source configured to apply an energy beam in an active area of the layer of powder to selectively fuse a portion of the powder in the active area to form a portion of a build piece and a gas flow system configured to provide a gas flow across the active area while the energy beam selectively fuses the portion of the layer of powder in the active area.Type: ApplicationFiled: March 9, 2022Publication date: September 15, 2022Inventors: Michael Thomas Kenworthy, Samuel Noah Miller, Krzysztof Artysiewicz, Chor Yen Yap, Gregory S. Weaver
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Publication number: 20220195561Abstract: Alloyed metals, and techniques for creating parts from alloyed metals, are disclosed. An apparatus in accordance with an aspect of the present disclosure comprises an alloy. Such an alloy comprises magnesium (Mg), zirconium (Zr), manganese (Mn), and aluminum (Al), wherein inclusion of the Mg, the Zr, and the Mn produce a structure of the alloy, the structure having a yield strength of at least 80 Megapascals (MPa) and having an elongation of at least 10 percent (%).Type: ApplicationFiled: April 23, 2021Publication date: June 23, 2022Inventors: Chan Cheong PUN, Chor Yen YAP, Finley Hugh MARBURY, Taiki Thomas SHIRAI, Shahan Soghomon KASNAKJIAN, Michael Thomas KENWORTHY
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Publication number: 20220097174Abstract: Systems and methods of adapting the geometrical shape of a laser beam in laser-based powder-bed fusion (PBF) are provided. An apparatus for laser-based powder-bed fusion includes a depositor that deposits a plurality of layers of a powder material. The apparatus further includes a laser beam source that generates a laser beam having a variable beam geometry. A laser application component applies the laser beam in one of a plurality of beam geometries to fuse the powder material to construct a build piece.Type: ApplicationFiled: December 9, 2021Publication date: March 31, 2022Inventor: Chor Yen YAP
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Publication number: 20220088684Abstract: In various aspects, 3D printers, and sensor systems coupled to or integrated with the 3D printers are disclosed. The sensor systems may include image and second sensors for detecting potential defects or print artifacts. During printing, an energy beam source forms a weld pool by melting selected regions of print material, which solidifies to produce the build piece. The image sensor may image an area including the weld pool to determine a landing location of matter ejected during the heating of print material to form the weld pool. The second sensor may detect a defect in the build piece based on the determination of the landing location. Print operation may be suspended while the sensor data is used to repair the defect, after which 3D printing resumes. In this way, for example, high quality build pieces can be produced with reduced post-processing times, and hence a higher manufacturing throughput.Type: ApplicationFiled: September 17, 2021Publication date: March 24, 2022Inventors: Michael KENWORTHY, Eric YANG, Narender LAKSHMAN, Chor Yen YAP, Simon PUN
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Patent number: 11224943Abstract: Systems and methods of adapting the geometrical shape of a laser beam in laser-based powder-bed fusion (PBF) are provided. An apparatus for laser-based powder-bed fusion includes a depositor that deposits a plurality of layers of a powder material. The apparatus further includes a laser beam source that generates a laser beam having a variable beam geometry. A laser application component applies the laser beam in one of a plurality of beam geometries to fuse the powder material to construct a build piece.Type: GrantFiled: March 7, 2018Date of Patent: January 18, 2022Assignee: DIVERGENT TECHNOLOGIES, INC.Inventor: Chor Yen Yap
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Publication number: 20200232071Abstract: According to some configurations of the present disclosure, an alloy may include a composition that includes magnesium (Mg) that is approximately 5 to 12% by weight of the composition; manganese (Mn) that is approximately 0.1 to 2% by weight of the composition; and silicon (Si) that is approximately 0.3 to 3% by weight of the composition; and aluminum (Al) that is a balance of the composition. In one configuration, the composition may further include one or more of iron (Fe), titanium (Ti), zirconium (Zr), chromium (Cr), and/or yttrium (Y).Type: ApplicationFiled: July 30, 2019Publication date: July 23, 2020Inventors: Prabir Kanti Chaudhury, Chan Cheong Pun, Chor Yen Yap, Taiki Thomas Shirai
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Additively manufacturing structures for increased spray forming resolution or increased fatigue life
Patent number: 10691104Abstract: Systems, apparatus, and method for forming a structure are disclosed. An apparatus for forming a structure may be configured to receive instructions for printing at least one portion of the structure. The instructions may be based on a data model of the structure. The apparatus for forming a structure may be configured to receive material and print the at least one portion of the structure based on the instructions. The printing may include spray forming the material to produce the at least one portion of the structure.Type: GrantFiled: May 16, 2018Date of Patent: June 23, 2020Assignee: DIVERGENT TECHNOLOGIES, INC.Inventors: Alexander Pai-chung Teng, Chor Yen Yap -
ADDITIVELY MANUFACTURING STRUCTURES FOR INCREASED SPRAY FORMING RESOLUTION OR INCREASED FATIGUE LIFE
Publication number: 20190354083Abstract: Systems, apparatus, and method for forming a structure are disclosed. An apparatus for forming a structure may be configured to receive instructions for printing at least one portion of the structure. The instructions may be based on a data model of the structure. The apparatus for forming a structure may be configured to receive material and print the at least one portion of the structure based on the instructions. The printing may include spray forming the material to produce the at least one portion of the structure.Type: ApplicationFiled: May 16, 2018Publication date: November 21, 2019Inventors: Alexander Pai-chung TENG, Chor Yen YAP -
Publication number: 20190275612Abstract: Systems and methods of adapting the geometrical shape of a laser beam in laser-based powder-bed fusion (PBF) are provided. An apparatus for laser-based powder-bed fusion includes a depositor that deposits a plurality of layers of a powder material. The apparatus further includes a laser beam source that generates a laser beam having a variable beam geometry. A laser application component applies the laser beam in one of a plurality of beam geometries to fuse the powder material to construct a build piece.Type: ApplicationFiled: March 7, 2018Publication date: September 12, 2019Inventor: Chor Yen YAP
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Publication number: 20180311760Abstract: Systems and methods for beam scanning for powder bed fusion (PBF) systems are provided. A PBF apparatus can include a structure that supports a layer of powder material, an energy beam source that generates an energy beam, and a deflector that applies the energy beam to fuse an area of the powder material in the layer at multiple locations, the deflector being further configured to apply the energy beam to each of the locations multiple times. A PBF apparatus can include a deflector configured to provide multiple scans to a layer powder material supported by the structure. A PBF apparatus can include a deflector that applies the energy beam to fuse an area of the powder material in the layer at multiple locations, the deflector being further configured to apply the energy beam in a raster scan.Type: ApplicationFiled: April 28, 2017Publication date: November 1, 2018Inventors: Eahab Nagi EL NAGA, John Russell BUCKNELL, Chor Yen YAP
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Publication number: 20180311732Abstract: Systems and methods of support structures in powder-bed fusion (PBF) are provided. Support structures can be formed of bound powder, which can be, for example, compacted powder, compacted and sintered powder, powder with a binding agent applied, etc. Support structures can be formed of non-powder support material, such as a foam. Support structures can be formed to include resonant structures that can be removed by applying a resonance frequency. Support structures can be formed to include structures configured to melt when electrical current is applied for easy removal.Type: ApplicationFiled: April 28, 2017Publication date: November 1, 2018Inventors: Eahab Nagi EL NAGA, John Russell BUCKNELL, Chor Yen YAP, Broc William TenHOUTEN, Antonio Bernerd MARTINEZ