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    • 2. 发明申请
    • Heat-insulating container and method for manufacturing same
    • 隔热容器及其制造方法
    • US20080237244A1
    • 2008-10-02
    • US12076503
    • 2008-03-19
    • Keiji TsukaharaTakahiro OhmuraKunihiko Yano
    • Keiji TsukaharaTakahiro OhmuraKunihiko Yano
    • B65D81/38B31B49/00A47J41/00
    • F24H1/182F01P11/029F24H9/12F28D20/0034F28F2270/00Y02E60/142Y10T29/49Y10T29/49826
    • The present invention provides a heat-insulating container and a method for manufacturing the same which make it possible to lower manufacturing costs, and to obtain a sufficient heat-insulating effect, and which are also suitably used in a limited installation space such as an engine compartment or the like. The present invention is a heat-insulating container for storing and maintaining a temperature of a liquid, comprising an inside container (1) having inlet and outlet opening part (5) for the liquid, and a sheet-form outer covering (3) which accommodates the inside container (1). A heat-insulating material (2) is sealed between the outer covering (3) and the inside container (1), and a heat-insulating space in a state of reduced pressure is formed between the outer covering (3) and the inside container (1), flange parts are formed on the liquid inlet and outlet openings of the inside container (1), the outer covering (3) and the inside container (1) are joined by the flange parts. The resulting heat-insulating container has exceptional heat-insulating properties and can be used in a limited space.
    • 本发明提供一种隔热容器及其制造方法,能够降低制造成本,获得充分的绝热效果,并且也适用于有限的安装空间,例如发动机 隔间等。 本发明是一种用于储存和保持液体温度的绝热容器,包括一个具有用于液体的入口和出口开口部分(5)的内部容器(1)和一个片状外壳(3),其中 容纳内部容器(1)。 绝热材料(2)被密封在外壳(3)和内容器(1)之间,并且在外覆盖物(3)和内容器(1)之间形成减压状态的绝热空间 (1)中,凸缘部分形成在内侧容器(1),外罩(3)和内侧容器(1)的液体入口和出口上。 所得绝热容器具有优异的隔热性能并且可以在有限的空间中使用。
    • 5. 发明申请
    • Illumination device and projector
    • 照明装置和投影机
    • US20050157501A1
    • 2005-07-21
    • US10961220
    • 2004-10-12
    • Koichi AkiyamaKunihiko YanoToshiaki Hashizume
    • Koichi AkiyamaKunihiko YanoToshiaki Hashizume
    • F21V13/04G03B21/14
    • G03B21/208G03B21/2026G03B21/2066
    • An illumination device of the invention is an illumination device 100A including an ellipsoidal reflector 130, an arc tube 120, a sub-mirror 122, and a parallelizing lens 140A, which is characterized in that on a light incident-surface 140Ai of the parallelizing lens 140A is formed a reflection reducing layer 142A optimized to match with a light, which is, of the lights emitted from a luminescent center P of the arc tube 120, a light that is emitted toward the ellipsoidal reflector at any angle of 60° to 80° with respect to an illumination optical axis 100Ax and goes incident on the light incident-surface 140Ai of the parallelizing lens 140A after the light is reflected on the ellipsoidal reflector 130. The illumination device of the invention is thus able to further improve efficiency of light utilization as well as further reduce unwanted stray lights by further reducing overall reflectance of the light incident-surface or the light exiting-surface of the parallelizing lens. A projector of the invention, by including the illumination device capable of further improving efficiency of light utilization as well as further reducing unwanted stray lights, serves as a high-intensity, high-quality projector.
    • 本发明的照明装置是包括椭圆反射镜130,电弧管120,副镜122和平行化透镜140A的照明装置100A,其特征在于,在光入射面140A1 平行化透镜140A形成有反射减少层142A,该反射减少层142A被优化以与从发光管120的发光中心P发射的光即与任何角度向椭圆反射体发射的光匹配 相对于照明光轴100Ai为60°〜80°,并且在光被反射到椭圆反射体130上之后入射到并行化透镜140A的光入射面140A 1上。本发明的照明装置 从而能够进一步提高光的利用效率,并进一步降低并行化透镜的光入射面或光出射面的整体反射率,进一步减少不需要的杂散光 。 通过包括能够进一步提高光利用效率以及进一步减少不期望的杂散光的照明装置,本发明的投影仪用作高强度,高质量的投影仪。
    • 6. 发明授权
    • Squeak preventing shim
    • 吱吱声防止垫片
    • US06213257B1
    • 2001-04-10
    • US09189169
    • 1998-11-09
    • Kunihiko YanoTakahiro NiwaMasaki Yoshihara
    • Kunihiko YanoTakahiro NiwaMasaki Yoshihara
    • F16D6538
    • F16D65/0006F16D65/0971
    • A squeak preventing shim for a disk brake for an automobile has a squeak preventing effect, even if no lubricant is used, and also prevents decreased durability due to buckling, flow, etc. A shim construction is formed with a plurality of grooves or recesses in rubber layers 2 disposed on two surfaces of a metal plate in a rubber coated member. Owing to these grooves or recesses, apparent transversal elastic modulus of the rubber layers is lowered and a squeak preventing effect due to vibration in a parallel direction to the shim can be obtained, even if no lubricant is used. Further, since longitudinal elastic modulus does not vary much, the shim construction is durable.
    • 即使没有使用润滑剂,也能够防止汽车的盘式制动器的防止吱吱声的垫片,并且防止由于弯曲,流动等引起的耐久性降低。垫片结构形成有多个凹槽或凹槽 橡胶层2设置在橡胶涂覆部件的金属板的两个表面上。 由于这些槽或凹槽,橡胶层的表观横向弹性模量降低,并且即使不使用润滑剂,也可以获得由于与垫片平行的方向的振动引起的防止吱吱声的效果。 此外,由于纵向弹性模量变化不大,垫片结构是耐用的。
    • 8. 发明授权
    • Multi-layer film cut filter and production method therefor, UV cut filter, dustproof glass, display panel and projection type display unit
    • 多层薄膜切割过滤器及其制作方法,UV切割过滤器,防尘玻璃,显示面板和投影型显示单元
    • US07172294B2
    • 2007-02-06
    • US10469130
    • 2002-02-20
    • Kunihiko YanoTakahiro Uchidani
    • Kunihiko YanoTakahiro Uchidani
    • G03B21/14G03B21/26G03B21/28G02B5/30G02B1/10G02B5/28F02F1/1335
    • G02B5/283
    • A multi-layer film, wherein a ratio H/L or L/H, a balance in optical film thickness between a high-refractive-index layer H and a low-refractive-index layer L, is set within a range of 1.2–2.0 to bias a balance in thickness. A method of producing a dielectric multi-layer film, wherein, when a dielectric multi-layer film is formed, a proportion at which an optical film thickness is formed on a monitor substrate is made larger than usual. A UV reflection film, having a step difference in average transmittance of 70–90% at a specified half-power point and within a wavelength range of 430–450 nm, is provided on a substrate to form a UV cut filter. A UV reflection film at a specified half-power point, a step difference in average transmittance of 70–90% within a wavelength range of 430–450 nm, and a blue conditioning film having a transmittance of at least 90% within a wavelength range of 460–520 nm may be combined. This UV cut filter is applied to the projection type display unit of a ultra-high pressure mercury lamp light source. The UV reflection film may be provided on the dustproof glass of a display unit.
    • 将高折射率层H和低折射率层L之间的光学膜厚度的平衡值设定在1.2〜1.2的范围内的多层膜,其中H / L或L / 2.0以抵消厚度的平衡。 一种电介质多层膜的制造方法,其中,当形成电介质多层膜时,使得在监测器基板上形成光学膜厚度的比例大于通常。 在基板上设置在特定的半功率点和430-450nm的波长范围内平均透射率为70-90%的台阶差的紫外线反射膜,形成紫外线截止滤光片。 在特定的半功率点的UV反射膜,在430-450nm的波长范围内的平均透射率的阶梯差为70-90%,以及在波长范围内具有至少90%透射率的蓝色调节膜 可以组合460-520nm。 该紫外线截止滤波器被应用于超高压汞灯光源的投影型显示单元。 UV反射膜可以设置在显示单元的防尘玻璃上。
    • 10. 发明授权
    • Laser source device and projector equipped with the laser source device
    • 激光源装置和投影仪配备激光源装置
    • US07639717B2
    • 2009-12-29
    • US11780128
    • 2007-07-19
    • Akira KomatsuKunihiko Yano
    • Akira KomatsuKunihiko Yano
    • H01S3/10
    • H04N9/3129H01S3/08036H01S3/109H01S3/2391H01S5/141H01S5/183H01S5/4087
    • A laser source device includes a laser source for oscillating a laser beam with a predetermined wavelength, a mirror for reflecting the laser beam emitted from the laser source to form a resonator, and including a dielectric multilayer film having a property of reflecting a light beam with an oscillation wavelength and transmitting a light beam with a conversion wavelength, a wavelength conversion element disposed between the laser source and the mirror for converting the laser beam with the oscillation wavelength emitted- from the laser source and emitting a laser beam with the conversion wavelength, and a bandpass filter disposed between the laser source and the mirror, and including a bandpass filter multilayer film having a bandpass property at least around the oscillation wavelength.
    • 激光源装置包括用于振荡具有预定波长的激光束的激光源,用于反射从激光源发射的激光束以形成谐振器的反射镜,并且包括具有反射光束的性质的电介质多层膜, 振荡波长并且传输具有转换波长的光束;波长转换元件,设置在激光源和反射镜之间,用于将激光束从激光源发射的振荡波长转换并发射具有转换波长的激光束; 以及设置在激光源和反射镜之间的带通滤波器,并且包括具有至少在振荡波长周围的带通特性的带通滤波器多层膜。