Patents by Inventor Bi-Oh Ryu
Bi-Oh Ryu 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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Publication number: 20220033653Abstract: The present invention relates to a polyamide resin in which an average particle size of individual crystals measured by a small-angle X-ray scattering apparatus is 8.0 nm or less, and a UV-cut slope (dT/d?) measured for a specimen having a thickness of 45 ?m or more and 55 ?m or less according to ASTM E424 is 0.25 or more in the range of 10% to 80% transmittance, and a polymer film and resin laminate using the same. In addition, the present invention relates to a polyamide resin with characteristic profile in which a small-angle X-ray scattering function obtained by irradiating the polyamide resin with X-rays having an energy of 10 KeV to 20 KeV using a small-angle X-ray scattering apparatus satisfies Equation 1 and Equation 2, and a polymer film and resin laminate using the same.Type: ApplicationFiled: November 1, 2019Publication date: February 3, 2022Applicant: LG CHEM, LTD.Inventors: Il Hwan CHOI, Soonyong PARK, Bi Oh RYU, Young Ji TAE, Youngseok PARK
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Publication number: 20210230449Abstract: The present disclosure relates to a cover window for a flexible display device including a polymer substrate including a polyamide resin; and a hard coating layer formed on at least one surface of the polymer substrate, wherein a yellow index of the polymer substrate measured in accordance with STM E 313 is 4.00 or less, and an elastic modulus of the polymer substrate measured at a strain rate of 12.5 mm/min in accordance with ISO 527-3 is 4 to 9 GPa.Type: ApplicationFiled: October 25, 2019Publication date: July 29, 2021Applicant: LG CHEM, LTD.Inventors: Jin Young PARK, Bi Oh RYU, Young Ji TAE, Youngseok PARK, Yongjoon HEO, Yeongrae CHANG
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Publication number: 20210230425Abstract: The present invention relates to a polyamide resin film having improved light resistance by minimizing color difference variation rate due to long-term ultraviolet irradiation, and a resin laminate using the same.Type: ApplicationFiled: December 26, 2019Publication date: July 29, 2021Applicant: LG CHEM, LTD.Inventors: Il Hwan CHOI, Soonyong PARK, Young Ji TAE, Youngseok PARK, Bi Oh RYU
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Publication number: 20210234229Abstract: A crosslinked polyolefin separator having an average value of light transmittance of 30% or more in a region of 380 nm to 700 nm, after four sides of the separator are fixed and allowed to stand at 130° C. for 30 minutes. A method for manufacturing the crosslinked polyolefin separator is also provided. The crosslinked polyolefin separator has a low shutdown temperature to provide improved safety. The crosslinked polyolefin separator also has a high meltdown temperature and is inhibited from die-drooling.Type: ApplicationFiled: September 11, 2019Publication date: July 29, 2021Applicant: LG Chem, Ltd.Inventors: Won-Sik Bae, Joo-Sung Lee, Bi-Oh Ryu, A-Young Lee
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Publication number: 20210222007Abstract: The present invention relates to a polyamide resin film having improved UV shielding function by using a polyamide resin having a backbone chain of alternative structure of two types of polyamide segments; and a resin laminate using the polyamide resin film.Type: ApplicationFiled: December 26, 2019Publication date: July 22, 2021Applicant: LG CHEM, LTD.Inventors: Il Hwan CHOI, Young Ji TAE, Soonyong PARK, Youngseok PARK, Bi Oh RYU
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Publication number: 20210189067Abstract: The present invention relates to a polyamideimide copolymer and a colorless and transparent polyamideimide copolymer film. The polyamideimide copolymer according to the present invention enables to provide a polyamideimide film having improved UV shielding function while exhibiting excellent scratch resistance and mechanical properties.Type: ApplicationFiled: January 31, 2018Publication date: June 24, 2021Applicant: LG CHEM, LTD.Inventors: Bi Oh RYU, Soon Yong PARK, Young Ji TAE, Young Seok PARK, Kwan Yeol PAEK
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Publication number: 20210125792Abstract: A crosslinked polyolefin separator and a method of making the same are disclosed herein. In some embodiments, a crosslinked polyolefin separator includes inorganic particles and a crosslinked polyolefin having Si—O—Si crosslinking bonds, wherein the inorganic particles are chemically bound to silicon (Si) atoms of the Si—O—Si crosslinking bonds by oxygen (O) atoms. The crosslinked polyolefin separator has low resistance, high air permeability and improved heat resistance.Type: ApplicationFiled: November 29, 2019Publication date: April 29, 2021Applicant: LG Chem, Ltd.Inventors: Bi-Oh Ryu, Joo-Sung Lee, Won-Sik Bae
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Publication number: 20210036287Abstract: A separator for an electrochemical device is provided. The separator comprises a porous substrate having a plurality of pores, and a porous coating layer positioned on at least one surface of the porous substrate, the porous coating layer including a plurality of inorganic particles and a binder polymer positioned on a whole or a part of the surface of the inorganic particles to connect the inorganic particles with one another and fix the inorganic particles, wherein the binder polymer comprises a first binder polymer and a second binder polymer. The first binder polymer has an electrolyte uptake of 80-165%, and the second binder polymer has an electrolyte uptake of 20-40%. An electrochemical device including the separator is also disclosed.Type: ApplicationFiled: September 16, 2019Publication date: February 4, 2021Applicant: LG Chem, Ltd.Inventors: A-Young Lee, Joo-Sung Lee, Won-Sik Bae, Bi-Oh Ryu
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Publication number: 20210017351Abstract: A method for manufacturing a crosslinked polyolefin separator and the crosslinked polyolefin separator obtained therefrom are provided. The method includes non-grafted polyolefin having a weight average molecular weight of 300,000 or more and silane-grafted polyolefin having a weight average molecular weight of 300,000 or more. The method minimizes gel formation, a side reaction occurring in an extruder during the manufacture of a-the separator, and provides a-the separator having a uniform surface.Type: ApplicationFiled: August 30, 2019Publication date: January 21, 2021Applicant: LG Chem, Ltd.Inventors: Joo-Sung Lee, Won-Sik Bae, Bi-Oh Ryu
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Publication number: 20210002425Abstract: The present disclosure relates to a polyamide block copolymer and a polyamide film including the same. The polyamide block copolymer according to the present disclosure makes it possible to provide a polyamide film exhibiting excellent mechanical properties while being colorless and transparent.Type: ApplicationFiled: May 3, 2019Publication date: January 7, 2021Applicant: LG CHEM, LTD.Inventors: Bi Oh RYU, Soonyong PARK, Youngseok PARK, Young Ji TAE, Kwanyeol PAEK, Il Hwan CHOI
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Patent number: 10882958Abstract: A polyamideimide copolymer which is an imide of a polyamic acid resulting from copolymerizing an aromatic diamine monomer, an aromatic dianhydride monomer, and an aromatic dicarbonyl monomer and a colorless and transparent polyamideimide film including the polyamideimide copolymer. The polyamideimide copolymer according to the present disclosure makes it possible to provide a polyamideimide film exhibiting excellent scratch resistance while being colorless and transparent.Type: GrantFiled: November 29, 2017Date of Patent: January 5, 2021Assignee: LG CHEM, LTD.Inventors: Bi Oh Ryu, Kwan Yeol Paek, Young Ji Tae, Soon Yong Park, Young Seok Park
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Publication number: 20200411826Abstract: A lithium secondary battery is disclosed herein. In some embodiments, a lithium secondary battery comprises a positive electrode, a negative electrode and a separator interposed between the positive electrode and the negative electrode, wherein the separator includes a crosslinked polyolefin porous membrane having a shutdown temperature of 125 to 145° C., a difference between the shutdown temperature and a meltdown temperature ranging between 20 and 80° C., and a meltdown temperature that is higher by 5 to 35° C. than a self-heating temperature of the positive electrode. The lithium secondary battery according to the present disclosure has improvements in both safety and processing.Type: ApplicationFiled: June 5, 2019Publication date: December 31, 2020Applicant: LG Chem, Ltd.Inventors: Joo-Sung Lee, Heon-Sik Song, Won-Sik Bae, Bi-Oh Ryu
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Publication number: 20200407501Abstract: The present disclosure relates to a polyamide block copolymer and a polyamide film including the same. The polyamide block copolymer according to the present disclosure makes it possible to provide a polyamide film exhibiting excellent mechanical properties while being colorless and transparent.Type: ApplicationFiled: April 2, 2019Publication date: December 31, 2020Applicant: LG CHEM, LTD.Inventors: Bi Oh RYU, Soonyong PARK, Youngseok PARK, Kwanyeol PAEK, Young Ji TAE, Il Hwan CHOI
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Publication number: 20200369816Abstract: The present invention relates to an aromatic poly(amide-imide) copolymer film having high retardation in the thickness direction and exhibiting a low moisture absorption rate, and a method for preparing the same.Type: ApplicationFiled: December 7, 2018Publication date: November 26, 2020Applicant: LG CHEM, LTD.Inventors: Bi Oh RYU, Soonyong PARK, Youngseok PARK, Il Hwan CHOI, Young Ji TAE, Kwanyeol PAEK
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Publication number: 20200373540Abstract: A separator for an electrochemical device is provided. The separator comprises a porous substrate having a plurality of pores and a porous coating layer positioned on at least one surface of the porous substrate, the porous coating layer including a plurality of inorganic particles and a binder polymer positioned on a whole or a part of the surface of the inorganic particles to connect the inorganic particles with one another and fix the inorganic particles, wherein the binder polymer comprises a first binder polymer and a second binder polymer. The first binder polymer is poly(vinylidene fluoride-co-hexafluoroproyplene) (PVdF-HFP), and the second binder polymer is poly(vinylidene fluoride-co-tetrafluoroethylene) (PVdF-TFE). The first binder polymer has an electrolyte uptake of 80-165%, and the second binder polymer has an electrolyte uptake of 20-40%. An electrochemical device including the separator is also disclosed.Type: ApplicationFiled: September 16, 2019Publication date: November 26, 2020Applicant: LG Chem, Ltd.Inventors: A-Young Lee, Joo-Sung Lee, Won-Sik Bae, Bi-Oh Ryu
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Publication number: 20200365860Abstract: The present disclosure relates to a A method for manufacturing a crosslinked polyolefin separator and the crosslinked polyolefin separator obtained by the method are provided. The method includes (S1) mixing polyolefin, a diluting agent, an initiator and alkoxysilane containing a carbon-carbon double bonded group to an extruder, and then carrying out extrusion to obtain a silane-grafted polyolefin composition; (S2) molding and orienting the extruded silane-grafted polyolefin composition in the form of a sheet; (S3) introducing the oriented sheet to an extraction water bath containing a crosslinking catalyst to extract the diluting agent and perform aqueous crosslinking; and (S4) thermally fixing a resultant aqueous crosslinked product. The method can provide a separator having a high meltdown temperature and improved heat shrinkage.Type: ApplicationFiled: September 3, 2019Publication date: November 19, 2020Applicant: LG Chem, Ltd.Inventors: Bi-Oh Ryu, Won-Sik Bae, Joo-Sung Lee, A-Young Lee
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Publication number: 20200266411Abstract: A method for manufacturing a crosslinked polyolefin separator, including the steps of: (S1) introducing polyolefin having a weight average molecular weight of 200,000-1,000,000, a first diluting agent, alkoxysilane containing a carbon-carbon double bonded group, an initiator and a crosslinking catalyst to an extruder; (S2) introducing a second diluting agent to the extruder, followed by mixing, to carry out reactive extrusion of a silane-grafted polyolefin composition; (S3) molding and orienting the reactive extruded silane-grafted polyolefin composition in a form of a sheet; (S4) extracting the first diluting agent and the second diluting agent from the oriented sheet to obtain a silane-grafted polyolefin porous membrane; (S5) thermally fixing the porous membrane; and (S6) crosslinking the porous membrane in the presence of water and a crosslinked polyolefin separator are provided.Type: ApplicationFiled: June 11, 2019Publication date: August 20, 2020Applicant: LG Chem, Ltd.Inventors: Joo-Sung Lee, Won-Sik Bae, Bi-Oh Ryu, Heon-Sik Song
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Publication number: 20200266410Abstract: A method for manufacturing a crosslinked polyolefin separator and a separator are provided. The method includes putting a polyolefin and a polyolefin elastomer into an extruder first, and putting an alkoxy silane containing a carbon-carbon double bond functional group, an initiator and a crosslinking catalyst to form the separator. The crosslinked polyolefin separator has high meltdown temperature and low shutdown temperature.Type: ApplicationFiled: August 14, 2019Publication date: August 20, 2020Applicant: LG Chem, Ltd.Inventors: Won-Sik Bae, Bi-Oh Ryu, Joo-Sung Lee
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Publication number: 20200220139Abstract: A crosslinked polyolefin separator which has gels with a longer side length of 50 ?m or more in a number ranging from 0 to 3 per 1 m2 of the separator, and shows a standard deviation of absorbance ratio between the center of the separator and the side thereof ranging from 0.01 to 0.5 is provided. A method for manufacturing the crosslinked polyolefin separator is also provided. The method includes (S1) preparing a polyolefin porous membranes, and (S2) applying a coating solution containing an initiator and alkoxy group-containing vinylsilane onto at least one surface of the porous membrane. The coating solution can permeate even to the inside of exposed pores. Thus, it is possible to provide a crosslinked polyolefin separator in which silane crosslinking occurs uniformly even inside of the pores.Type: ApplicationFiled: July 26, 2019Publication date: July 9, 2020Applicant: LG Chem, Ltd.Inventors: Joo-Sung Lee, Bi-Oh Ryu, Won-Sik Bae, A-Young Lee, Heon-Sik Song
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Publication number: 20200024401Abstract: A poly(amide-imide) copolymer composition comprising an imide of a polyamic acid and an ultraviolet stabilizer, and a colorless and transparent poly(amide-imide) film including the composition. The poly(amide-imide) copolymer composition according to the present disclosure makes it possible to provide a poly(amide-imide) film exhibiting excellent scratch resistance, UV shielding property, and UV weather resistance while being colorless and transparent. This film can be suitably used as a cover film of various flexible or foldable devices.Type: ApplicationFiled: April 10, 2018Publication date: January 23, 2020Applicant: LG CHEM, LTD.Inventors: Bi Oh RYU, Soon Yong PARK, Young Ji TAE, Young Seok PARK, Kwan Yeol PAEK, Il Hwan CHOI