Myeong-Hee
Myeong Hee Kim, Yongin-Si KR
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20140106489 | METHOD OF MANUFACTURING A DISPLAY DEVICE - It is provided a method of manufacturing a display device for which the damage caused to the display panel due to processing at high temperatures is reduced. The method of manufacturing a display device includes: preparing a carrier substrate including a surface treated region; laying a mother substrate on the carrier substrate; progressing a process of forming a thin film on the mother substrate; and separating the carrier substrate from the mother substrate by using the surface treated region as an initial separation point. Bonding is formed between the carrier substrate and the mother substrate during forming the thin film over the areas that are not surface treated. The two substrates may be separated by disposing permeating oil on the surface treated region wherefrom oil permeates through the remaining regions by osmotic pressure. This way damage caused to the display panel during thin film processing is reduced. | 04-17-2014 |
Myeong Hee Kim US
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20150378179 | GLASSES HAVING DETACHABLE AUXILIARY LENSES - Disclosed herein are glasses having detachable auxiliary lenses. A transparent magnetic film ( | 12-31-2015 |
Myeong Hee Kim, Anyang-Si, Gyeonggi-Do KR
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20150376896 | EXTERIOR INSULATION MORTAR FOR COLD WEATHER AND METHOD FOR CONSTRUCTING EXTERIOR INSULATION SYSTEM USING SAME - Disclosed are an exterior insulation mortar for cold weather which may prevent freezing and improve strength at temperatures below 0° C., and an exterior insulation system using the same. | 12-31-2015 |
Myeong Hee Kim, Daegu KR
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20150378179 | GLASSES HAVING DETACHABLE AUXILIARY LENSES - Disclosed herein are glasses having detachable auxiliary lenses. A transparent magnetic film ( | 12-31-2015 |
Myeong-Hee Kim, Daejeon KR
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20130260078 | CORE MATERIAL FOR A VACUUM INSULATION PANEL FORMED OF A PHENOLIC RESIN-CURED FOAM AND VACUUM INSULATION PANEL USING SAME, AND METHOD FOR MANUFACTURING SAME - The present invention relates to a core material for a vacuum insulation panel that is formed with a phenolic resin, a vacuum insulation panel using the core material, and a method for manufacturing the vacuum insulation panel. More particularly, the core material is formed with a cured phenolic resin foam having a closed cell content of 20% or less. The cured phenolic resin foam includes cells whose average diameter is adjusted to 50 to 500 μm. The cells have fine holes with an average diameter of 0.5 to 30 μm on the surfaces thereof to allow the cured phenolic resin foam to have a void content of at least 50%. The use of the cured phenolic resin foam ensures high thermal insulation performance and improved structural strength of the core material, and enables the production of the core material at reduced cost. | 10-03-2013 |
20130310506 | BIODEGRADABLE POLYMER COMPOSITE MATERIAL - The present invention relates to a biodegradable polymer composite material, and more particularly, to a technique for providing a polymer composite material comprising an acrylonitrile-butadiene-styrene (ABS) resin and a biodegradable resin, wherein said polymer composite material has superior impact resistance. | 11-21-2013 |
Myeong-Hee Kim, Mungyeong-Si KR
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20090047859 | Method of Fabricating Flexible Display Device - A method of fabricating a flexible display device, the method including applying an adhesive layer including polyimide on a carrier substrate, laminating a flexible substrate on the adhesive layer, and separating the carrier substrate from the flexible substrate by irradiating a laser beam or light onto the adhesive layer. | 02-19-2009 |
20090231675 | DISPLAY APPARATUS AND METHOD OF MANUFACTURING THE SAME - A display apparatus according to an embodiment includes a first substrate including a plastic material, a second substrate facing the first substrate, and a coating layer formed on at least one surface of the first substrate. The coating layer includes a first compound having an acryl-based monomer and a second compound having a silicon derivative, and prevents reflection of light from the first substrate when light is provided to the first substrate. Thus, the display apparatus may have enhanced lightness (brightness) thereby improving the display quality. | 09-17-2009 |
Myeong-Hee Lee, Ulju-Gun KR
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20120064408 | POSITIVE ACTIVE MATERIAL FOR RECHARGEABLE LITHIUM BATTERY, METHOD OF PREPARING THE SAME, AND RECHARGEABLE LITHIUM BATTERY INCLUDING THE SAME - Provided is a positive active material for a lithium rechargeable battery that includes primary particles including a compound being capable of intercalating and deintercalating lithium, and secondary particles including the primary particles gathered with one another, wherein the secondary particles have a void core structure. A method of preparing the same and a lithium rechargeable battery including the same are also provided. | 03-15-2012 |