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국가과학기술정보센터(ScienceON) 특허검색
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1 커피 백 / 더 코카콜라 컴파니
커피 백(1)은 입도가 #16 메쉬 온 0.5% 이상 80% 이하인 커피가루(13)를 수용하고, 백 본체(10)는 170 cc/㎠·sec 이상 650 cc/㎠·sec 이하인 통기성을 갖추고 있다.
2 COFFEE BAG / SHIBATA MARIKO
A coffee bag 1 stores coffee grounds 13, with between 0.5% and 80% of the grounds having a granule size of #16 mesh-on; the bag main body 10 has an air permeability that is between 170cc/cm2/sec and 650cc/cm2/sec.
3 Magnetic sensor / Resonac Corporation
A magnetic sensor 1 includes: a non-magnetic substrate 10; and a sensitive element 30 disposed on the substrate 10. The sensitive element 30 has a longitudinal direction and a transverse direction and has a uniaxial magnetic anisotropy in a direction intersecting the longitudinal direction. The sensitive element 30 is configured to sense a magnetic field by a magnetic impedance effect. The sensitive element 30 includes a soft magnetic material layer 101 made of an amorphous alloy based on Co and having a saturation magnetization of greater than or equal to 300 emu/cc and less than or equal to 650 emu/cc.
4 MAGNETIC SENSOR / SHOWA DENKO K.K.
A magnetic sensor 1 includes: a non-magnetic substrate 10; and a sensitive element 30 disposed on the substrate 10. The sensitive element 30 has a longitudinal direction and a transverse direction and has a uniaxial magnetic anisotropy in a direction intersecting the longitudinal direction. The sensitive element 30 is configured to sense a magnetic field by a magnetic impedance effect. The sensitive element 30 includes a soft magnetic material layer 101 made of an amorphous alloy based on Co and having a saturation magnetization of greater than or equal to 300 emu/cc and less than or equal to 650 emu/cc.
5 AUDIO APPARATUS / PIONEER ELECTRONIC CORP
PROBLEM TO BE SOLVED: To quickly perform audio adjustment corresponding to acceleration with simple configuration. SOLUTION: An acceleration sensitive capacitor element is adopted as an element of a circuit for performing audio adjustment processing of an analog voice signal to change an audio adjustment characteristic in accordance with a change in acceleration. For example, in a lowpass filter circuit 230, complex capacitor circuits 620 and 650 being a portion of an element for determining a cut-off frequency are configured including the acceleration sensitive capacitor element. Consequently, when acceleration changes, capacitance values CC1F and CC2F of the complex capacitor circuits 620 and 650 change to change a cut-off frequency of the lowpass filter 230.
6 COFFEE BAG / THE COCA-COLA COMPANY
PROBLEM TO BE SOLVED: To provide a coffee bag capable of making coffee with appropriate strength in a short time.SOLUTION: A coffee bag 1 stores coffee grounds 13 in an amount from 0.5% to 80% inclusive having a granule size of #16 mesh-on. A bag main body 10 has an air permeability from 170 cc/cm2/sec to 650 cc/cm2/sec inclusive.SELECTED DRAWING: Figure 1
7 MAGNETIC SENSOR / SHOWA DENKO KK
PROBLEM TO BE SOLVED: To increase the sensitivity of a magnetic sensor by using a magnetic impedance effect.SOLUTION: A magnetic sensor 1 includes: a non-magnetic substrate 10; and a receiving element 30 on the substrate 10, the sensitive element having a longer direction and a shorter direction and also having the uniaxial magnetic anisotropy in a direction that intersects with the longer direction, and including a soft magnetic body layer 101 of an amorphous alloy mainly containing Co of which saturation magnetization is in the range from 300 emu/cc to 650 emu/cc, both inclusive, the sensitive element receiving a magnetic field by the magnetic impedance effect.SELECTED DRAWING: Figure 1
8 Method for rapid fabrication of fiber preforms and structural composite materials / Lockheed Martin Energy Systems, Inc.
A densified carbon matrix carbon fiber composite preform is made by vacuum molding an aqueous slurry of carbon fibers and carbonizable organic powder to form a molded part. The molded part is dried in an oven at 50.degree. C. for 14 hours and hot pressed at 2000 psi at 400.degree. C. for 3 hours. The hot pressed part is carbonized at 650.degree. C. under nitrogen for 3 hours and graphite at 2400.degree. C. to form a graphitic structure in the matrix of the densified carbon matrix carbon fiber composite preform. The densified preform has a density greater than 1.1 g/cc.
9 Method for rapid fabrication of fiber preforms and structural composite materials / Martin Marietta Energy Systems, Inc.
A densified carbon matrix carbon fiber composite preform is made by vacuum molding an aqueous slurry of carbon fibers and carbonizable organic powder to form a molded part. The molded part is dried in an oven at 50.degree. C. for 14 hours and hot pressed at 2000 psi at 400.degree. C. for 3 hours. The hot pressed part is carbonized at 650.degree. C. under nitrogen for 3 hours and graphitized at 2400.degree. C. to form a graphitic structure in the matrix of the densified carbon matrix carbon fiber composite preform. The densified preform has a density greater than 1.1 g/cc.
10 Air separation by pressure swing adsorption with a high capacity carbon molecular sieve / Air Products and Chemicals, Inc. (Allentown PA 02)
Nitrogen is produced by separating air in a pressure swing adsorption process using a high capacity kinetically O2 selective material as the adsorbent. An example of such an adsorbent is a carbon molecular sieve made from coconut shell char. Such a coconut shell char having a high oxygen volumetric capacity is provided by crushing and sizing coconut shells to form granules which are then heated in flowing inert gas at a temperature ramp rate of about 2 to 12°C. per minute to a peak temperature of 775 to 900°C. which is then held so that the total heating time is up to 8 hours and thereafter the granular char is cooled in an inert gas atmosphere. The granular char thus produced is kinetically selective for O2 over N2 without further modification to narrow the openings of its micropores and has an oxygen volumetric capacity in excess of 8.0 cc/cc at 1 atm. and ambient temperature. Further modification of this char is provided by contacting it with an oxidizing atmosphere of carbon dioxide or a mixture of inert gas and carbon dioxide, H2O or O2 at temperatures ranging from 650°to 900°C. until the gasified char has been altered so that its volumetric oxygen capacity is greater than 9.0 cc/cc at 1 atm. and ambient temperature.

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