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公开(公告)号:US20230010884A1
公开(公告)日:2023-01-12
申请号:US17779957
申请日:2020-10-29
Inventor: Kentaro SHII , Yoshitaka NAKAMURA , Tatsuya NAKAMURA , Yusuke OGIHARA
IPC: F28F13/00
Abstract: A heat transfer device includes a first member and a first and second heat transfer element. In the first heat transfer element, a first contact area that is a contact area between the first heat transfer element and the first member varies. In the second heat transfer element, a second contact area that is a contact area between the second heat transfer element and the first member varies. The first contact area is greater when magnitude of a first external force applied to the first member is smaller than a first threshold than when the magnitude of the first external force is equal to or greater than the first threshold. The second contact area is smaller when the magnitude of the first external force is smaller than the first threshold than when the magnitude of the first external force is equal to or greater than the first threshold.
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公开(公告)号:US20210031789A1
公开(公告)日:2021-02-04
申请号:US16980222
申请日:2019-03-13
Inventor: Yuta MORIURA , Yoshitaka NAKAMURA , Yasufumi KAWAI , Hiroyuki HANDA , Yohei MORISHITA , Toru OKINO , Hiroyuki HAGINO , Toru SAKURAGAWA , Satoshi MORISHITA
IPC: B60W50/00 , B60N2/02 , A61B5/11 , A61M21/02 , B60H3/00 , B60H1/00 , A61B5/16 , B60W50/14 , A61M21/00 , A61B5/024
Abstract: A travel sickness estimation system includes an estimation unit and an output unit. The estimation unit is configured to perform estimation processing of estimating, based on person information indicating conditions of a person who is on board a moving vehicle, whether or not the person is in circumstances that would cause travel sickness for him or her. The output unit is configured to output a result of the estimation processing performed by the estimation unit.
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公开(公告)号:US20200024150A1
公开(公告)日:2020-01-23
申请号:US16499794
申请日:2018-03-20
Inventor: Yoshitaka NAKAMURA , Tsutomu FURUTA , Hiroyoshi YODEN
Abstract: A time-dependent element of the present invention includes a time-dependent phase transition material that undergoes solid-solid phase transition developing with time after production irrespective of the presence of an external stimulus, in which one or more physical properties of the time-dependent element selected from a group consisting of composition, volume, transmittance, reflectance, electric resistance, and magnetic property change with time. A physical property temporal change prediction device includes a physical property temporal change prediction device body having the time-dependent element and is configured to predict a temporal change in one or more physical properties selected from a group consisting of composition, volume, transmittance, reflectance, electric resistance, and magnetic property.
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公开(公告)号:US20230400261A1
公开(公告)日:2023-12-14
申请号:US18250315
申请日:2021-11-08
Inventor: Yoshitaka NAKAMURA , Kotaro ONO , Tatsuya NAKAMURA , Kentaro SHII
CPC classification number: F28D20/0056 , F28F21/086 , F28F21/087 , C22C19/007 , C22C19/03 , C22C14/00
Abstract: A Ni—Ti-based alloy contains a Ni atom, a Ti atom, and a Si atom. The Ni—Ti-based alloy has a heat-absorbing/generating property.
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公开(公告)号:US20190185338A1
公开(公告)日:2019-06-20
申请号:US16329491
申请日:2017-08-25
Inventor: Yoshitaka NAKAMURA , Tsutomu FURUTA , Hiroyoshi YODEN
IPC: C01G23/047 , G01K11/12 , B32B9/04
Abstract: A functional element includes functional titanium oxide. The functional titanium oxide includes crystal grains of one or more of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5). The functional titanium oxide includes the property that at least a portion of crystal grains of one or more of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5) changes into crystal grains of titanium oxide (TiO2) when the functional titanium oxide is heated to 350° C. or higher.
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公开(公告)号:US20160322607A1
公开(公告)日:2016-11-03
申请号:US15104366
申请日:2014-11-14
Inventor: Yoshitaka NAKAMURA , Yasuhisa INADA , Akira HASHIYA , Taku HIRASAWA
CPC classification number: H01L51/5275 , H01L51/5012 , H01L51/5203 , H01L51/5268 , H01L51/56 , H01L2251/5361
Abstract: An illuminator includes: a light-emitting element and a light-extraction layer which transmits light occurring from the light-emitting element. The light-emitting element includes a first electrode layer on the light-extraction layer side, the first electrode layer having a light transmitting property; a second electrode layer on the opposite side from the light-extraction layer; an emission layer between the first and the second electrode layers; and a feed portion disposed close to the first electrode layer, the second electrode layer, and the emission layer to apply a voltage between the first electrode layer and the second electrode layer. The light-extraction layer has a structure in which a low-refractive index layer having a relatively low refractive index and a high-refractive index layer having a higher refractive index than does the low-refractive index layer are stacked, an interface between the low-refractive index layer and the high-refractive index layer representing bump-dent features.
Abstract translation: 照明器包括:发光元件和透光从发光元件发出的光的光提取层。 发光元件包括在光提取层侧的第一电极层,第一电极层具有透光性; 与所述光提取层相反一侧的第二电极层; 在第一和第二电极层之间的发射层; 以及靠近第一电极层,第二电极层和发射层设置的馈电部分,以在第一电极层和第二电极层之间施加电压。 光提取层具有层叠具有折射率相对较低的折射率低折射率层和折射率高于低折射率层的高折射率层的结构,低折射率层之间的界面 - 折射率层和表示凹凸特征的高折射率层。
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公开(公告)号:US20210301770A1
公开(公告)日:2021-09-30
申请号:US17262123
申请日:2019-06-21
Inventor: Yoshitaka NAKAMURA , Kentaro SHII , Kou SUGANO , Tatsuya NAKAMURA , Yusuke OGIHARA , Ryuichi OZAKI
Abstract: A fluid heating device includes a pressurizing chamber configured to store a working fluid and a heat accumulator disposed in the pressurizing chamber. The heat accumulator includes a heat accumulating member configured to release heat by receiving a pressure applied to the working fluid. The fluid heating device has improved actuation efficiency.
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公开(公告)号:US20190285489A1
公开(公告)日:2019-09-19
申请号:US16345174
申请日:2017-10-18
Inventor: Yoshitaka NAKAMURA , Tsutomu FURUTA , Hiroyoshi YODEN , Mitsuo YAGUCHI , Takeshi UEDA
IPC: G01L1/20 , B32B9/04 , C01G23/047 , G01K11/00 , G01L1/24 , G01L11/02 , G01L9/02 , G01N25/02 , H01L29/84
Abstract: a pressure sensor 1 according to the first aspect of the invention includes: a substrate 50; and a functional element 40 which is laid on the substrate 50 and is composed of functional titanium oxide including crystal grains of at least one of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5) and having the property that at least a portion of crystal grains of at least one of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5) change into crystal grains of titanium dioxide (TiO2) when the functional titanium oxide is heated to 350° C. or higher. The substrate 50 includes a substrate thin-film section 51 having a thin film form in which the thickness in the stacking direction of the substrate 50 and the functional element 40 is smaller than that in the other directions.
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