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Min-Chi
Min-Chi Chung, Houli Township TW
| Patent application number | Description | Published |
|---|---|---|
| 20090123750 | Method for modifying carbon nanotube - A method for modifying CNT is disclosed. The modified CNT by the above-mentioned method mixed with a resin is provided with an enhanced diffusibility; therefore the electronic property and mechanical property of resin are enhanced obviously with lower quantity of CNT. | 05-14-2009 |
| 20090274838 | Method for modifying carbon nanotube - A method for modifying CNT is disclosed. The modified CNT by the above-mentioned method mixed with a resin is provided with an enhanced diffusibility; therefore the electronic property and mechanical property of resin are enhanced obviously with lower quantity of CNT. | 11-05-2009 |
Min-Chi Chung, Taichung County TW
| Patent application number | Description | Published |
|---|---|---|
| 20080269362 | Recycled thermosetting flour composites and method for preparing the same - The recycled thermosetting flour composites and method for preparing the same are disclosed. The silane coupling agent is used as a coincidental bridge between recycled thermosetting flour and plastic materials, to apparently promote the mechanical properties of composites by linking with each other. As a result, the recycled polyolefin and recycled thermosetting flour are applied through interfacial modification, coupling, modification, mixing and granulating process to generate a composite with better mechanical properties and recycle the resource. | 10-30-2008 |
| 20080300364 | Carbon nanotube/polyolefin composite by water-crosslinking reaction and method thereof - A method for preparing a carbon nanotube (CNT)/polyolefin composite by a water-crosslinking reaction and its preparation method are disclosed. Taking an embodiment for example, a carbon nanotube, an organic unsaturated silane and a plastic material are provided, and then the carbon nanotube and the organic unsaturated silane are mixed uniformly by a dispersant. The mixture is bonding with the plastic material by the silicon of organic unsaturated silane. A composite provided with a better combination of carbon nanotube and plastic material is generated by the method of the present invention. | 12-04-2008 |
Min-Chi Ko, Bali Township TW
| Patent application number | Description | Published |
|---|---|---|
| 20100169510 | AUTO-EXECUTION SIGNAL PROCESSING METHOD AND APPARATUS PERFORMING THE METHOD - An auto-execution signal processing method and an apparatus performing the method are provided. That method is particularly applied to the apparatus supporting recognition of a human interface device standard. The apparatus preferably has an activation element such as a button, and it is to execute an automatic execution process by a key-activation manually or automatically as in connection with a computer system. Therefore, a predetermined purpose is met. According to a preferred embodiment, the apparatus having the auto-execution function is firstly initialized. Next, the activation element thereon is used to launch the automatic execution process. The process includes a step of driving a Finite State Machine to transfer an executable string of code to a computer system via a connection interface. After that, the executable string is compiled by an operating system in order to launch an application, such as entering a proprietary webpage. | 07-01-2010 |
Min-Chi Wu, Taipei TW
| Patent application number | Description | Published |
|---|---|---|
| 20100066621 | Ultra wideband antenna with band-notched characteristics - The invention relates to an ultra wideband antenna with band-notched characteristics, particularly to an ultra wideband antenna capable of suppressing transmission and reception in a particular frequency range. The ultra wideband antenna includes: a substrate; a grounding unit, installed on the substrate and scooped with a first slot and a first strip hole; a signal feeding unit, installed on the substrate and including a horizontal portion and a vertical portion, in which the horizontal portion is located in the first slot and the vertical portion is located in the first strip hole; a first complementary, separate, circular resonator; and a second complementary, separate, circular resonator, wherein the first complementary, separate, circular resonator and the second complementary, separate, circular resonator are installed in the horizontal portion of the signal feeding unit and are connected with each other. | 03-18-2010 |
