Ishimine
Junichi Ishimine, Kanagawa JP
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20090192770 | Analysis supporting apparatus, analysis supporting method, and analysis supporting program - An analysis supporting apparatus that supports a product analyzing operation includes a model-data generating unit that generates model data regarding an analysis model of an analysis target component in association with component hierarchy data representing a hierarchy of components forming an analysis target product; a model-data updating unit that reflects results of an analyzing process in the model data; and a calorific-value summing unit that sums analysis information regarding the analysis target product based on the model data stored in associated with the component hierarchy data. | 07-30-2009 |
Tadashi Ishimine, Naha-Shi Okinawa JP
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20140077505 | Wind Turbine Apparatus - A wind turbine apparatus includes a wind turbine, a support column supporting the wind turbine, and a turning base as a base for the support column, the turning base including a turning gear and a turning base shaft. By turning the turning gear 360 degrees or more, only the wind turbine, or the support column and the wind turbine can turn 360 degrees or more about a rotating axis of the turning gear. | 03-20-2014 |
Takeshi Ishimine, Shinjuku-Ku JP
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20120177914 | PRESS-MOLDING GLASS MATERIAL, METHOD OF MANUFACTURING PRESS MOLDING GLASS MATERIAL, AND METHOD OF MANUFACTURING OPTICAL ELEMENT - An aspect of the present invention relates to a press-molding glass material, which comprises a core part comprised of optical glass and a silicon oxide film of less than 15 nm in thickness covering at least a portion of the core part, the portion being to be an optically functional surface, as well as has a surface free energy as measured by a three-liquid method of equal to or lower than 75 mJ/m | 07-12-2012 |
Tomoyuki Ishimine, Itami-Shi JP
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20100044618 | SOFT MAGNETIC MATERIAL, DUST CORE, METHOD FOR MANUFACTURING SOFT MAGNETIC MATERIAL, AND METHOD FOR MANUFACTURING DUST CORE - A soft magnetic material, a dust core, a method for manufacturing the soft magnetic material, and a method for manufacturing the dust core that can improve DC bias characteristics are provided. | 02-25-2010 |
20130181802 | SOFT MAGNETIC POWDER, GRANULATED POWDER, DUST CORE, ELECTROMAGNETIC COMPONENT, AND METHOD FOR PRODUCING DUST CORE - Provided are a soft magnetic powder for obtaining a dust core having a low iron loss, the dust core, and a method for producing a dust core. The present invention relates to a soft magnetic powder including a plurality of soft magnetic particles, each having an insulating layer. The Vickers hardness HV0.1 of a material constituting the soft magnetic particles is 300 or more, and the insulating layer contains Si, O, and at least one of an alkali metal and Mg. As long as the soft magnetic powder has such features, a material having a high electric resistance, such as an iron-based alloy, can be used. The eddy current loss can be reduced, and it is possible to effectively obtain a dust core having a low iron loss. | 07-18-2013 |
Yusaku Ishimine, Kirishima JP
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20110253924 | Sliding Part, Mechanical Seal, Faucet Valve, and Rolling Support Device Each Including the Sliding Part - Provided are a sliding component, such as a mechanical seal ring, which is capable of maintaining superior sliding characteristics even in the long-term continuous use thereof, as well as a mechanical seal, a faucet valve, and a rolling support device, each of which includes the sliding component. The sliding component includes a stationary member, and a movable member contactedly sliding on the stationary member. The stationary member and the movable member are respectively composed of a silicon carbide sintered body containing graphite. The content of the graphite in one of the stationary member and the movable member is at least 4% by mass greater than in the other. Thus, the sliding component includes the stationary member and the movable member which are a combination of those having different contents of graphite. Owing to a high lubricating effect, the superior sliding characteristics can be maintained, permitting a long-term continuous sliding. | 10-20-2011 |
Yuusaku Ishimine, Kyoto JP
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20120281362 | SILICON NITRIDE SUBSTRATE, CIRCUIT SUBSTRATE AND ELECTRONIC DEVICE USING THE SAME - A silicon nitride substrate comprises a substrate comprising a silicon nitride sintered body, and a plurality of granular bodies containing silicon and integrated to a principal surface of the substrate, wherein a plurality of needle crystals or column crystals comprising mainly silicon nitride are extended from a portion of the granular bodies. A brazing material is applied to a principal surface of the substrate, and a circuit member and a heat radiation member are arranged on the applied brazing material, and bonded by heating. Because of a plurality of granular bodies integrated to the principal surface of the substrate, and a plurality of the needle crystals or the column crystals extended from a portion of the granular bodies, a high anchor effect is produced so that the circuit member and the heat radiation member are firmly bonded to the silicon nitride substrate. | 11-08-2012 |
Yuusaku Ishimine, Kirishima-Shi JP
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20100004115 | Sliding Member, Manufacturing Method Thereof, Mechanical Seal Ring Using Sliding Member and Mechanical Seal Using Mechanical Seal Ring - A sliding member having a sliding surface comprising a silicon carbide sintered body having a primary phase comprising mainly silicon carbide, and a subphase having a different composition from the primary phase and containing at least boron, silicon and carbon. The ratio of pores having a roundness of 6 μm or less and a pore diameter of 10 to 60 μm with respect to all pores having a pore diameter of 10 μm or more in the sliding surface is 60% or more. This enables retention of good seal properties even in a long-term continuous use. The subphase in the silicon carbide sintered body is preferably granular crystal phases dotted among a plurality of the primary phases. This provides excellent lubricating liquid holding performance as well as excellent thermal conductivity and excellent thermal shock resistance properties. | 01-07-2010 |
20100327204 | Sliding Member, Mechanical Seal Ring, Mechanical Seal and Faucet Valve - Provided is a sliding member which includes a plurality of open pores in a sliding surface, which each comprises one or more opening portions having a circularity of 0.24 or more and a circle equivalent diameter of 10 μm to 150 μm. A ratio of the number of open pores having the overlapping degree of 10% or more between the opening portions is 3% or less. Another sliding member includes a plurality of open pores in a sliding surface, which each comprises one or more opening portions having a circularity of 0.24 or more and a circle equivalent diameter of not less than 10 μm nor more than 78 μm. A coefficient of variation of the opening portions satisfies the following equation: 1.03≦√V/X≦1.51 where √V is a standard deviation of circle equivalent diameters, and X is an average value of the circle equivalent diameters. A mechanical seal ring, a mechanical seal and a faucet valve each using the sliding member are also provided. | 12-30-2010 |
20120321853 | SILICON CARBIDE SINTERED BODY AND SLIDING COMPONENT USING THE SAME, AND PROTECTIVE BODY - Disclosed are a silicon carbide sintered body and a sliding component using the same, and a protective body which, even when fine cracks are generated due to thermal shock or mechanical impact over prolonged use, are capable of inhibiting development of the cracks. The silicon carbide sintered body contains silicon carbide grains as a major component and has a relative density of 95% or more. On an observation surface of the silicon carbide sintered body, coarse silicon carbide grains | 12-20-2012 |
20150084261 | FLOW PATH MEMBER, HEAT EXCHANGER INCLUDING THE FLOW PATH MEMBER, AND SEMICONDUCTOR MANUFACTURING APPARATUS INCLUDING THE FLOW PATH MEMBER - A flow path member includes a flow path which has an inlet and an outlet in a base made of ceramics, and a low resistance portion whose surface resistance is less than 1×10 | 03-26-2015 |