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    • 2. 发明申请
    • Portable Heat Transfer Apparatus
    • 便携式传热装置
    • US20090117505A1
    • 2009-05-07
    • US11992863
    • 2006-09-29
    • Kenji Okayasu
    • Kenji Okayasu
    • F24H1/06
    • F24H1/08F23D14/60F23N1/027Y10S122/10
    • The present invention relates to a portable heat transfer apparatus designed to supply heat to an external heat load, such as a space-heating unit or a heating garment, in a manner to be usable in outdoor and other environments where it is difficult to receive a supply of electricity or fuel gas, and allows a ratio of LPG and air to be controlled so as to perform combustion in desirable conditions.The portable heat transfer apparatus of the present invention is adapted to ignite a mixture supplied from a fuel-gas supply unit and a fuel gas-air air-fuel unit having air-fuel ratio adjustment mechanism, using a piezoelectric ignition unit, so as to induce a flame burning in a combustion chamber of a burner, and drive a heat-drive pump disposed relative to burner while interposing a heat-collecting container therebetween, by heat generated from the flame burning, so as to transfer heat to an external heat load, while controlling the air-fuel ratio adjustment mechanism by using a spring-type timer adapted to be moved by a control lever, or by activating the air-fuel ratio adjusting temperature sensor installed in the heat-collecting container.
    • 便携式传热装置技术领域本发明涉及一种便携式传热装置,其设计成可以在室外和其他难以接收的环境中的其它环境中使用的方式向诸如空间加热装置或加热衣服的外部热负荷供应热量 供应电力或燃料气体,并且允许控制LPG和空气的比例以在期望的条件下进行燃烧。 本发明的便携式传热装置适用于使用压电点火装置点燃由燃料气体供给装置供给的混合气体和具有空燃比调节机构的燃料气体空气燃料装置, 在燃烧器的燃烧室中引起火焰燃烧,并且通过从火焰燃烧产生的热量驱动相对于燃烧器设置的热驱动泵,同时在其间插入集热容器,以将热量传递到外部热负荷 同时通过使用适于由控制杆移动的弹簧式定时器或通过启动安装在集热容器中的空燃比调节温度传感器来控制空燃比调节机构。
    • 3. 发明申请
    • MIRROR
    • 镜子
    • US20120087027A1
    • 2012-04-12
    • US13376481
    • 2010-03-03
    • Kenji Okayasu
    • Kenji Okayasu
    • G02B7/188
    • G02B5/10A45D42/00G02B26/06G02B26/0825
    • There is provided a high-performance mirror which is capable of being varied between a plane mirror and a concave mirror. The mirror comprises a base (1), a mirror holder (2), a mirror surface sheet (12) and a back sheet (13) both capable of varying their curvature and retained in a spaced-apart relation by the mirror holder (2) to define an air-tight space between the sheets, the back sheet (13) being deformed from its center to reduce the pressure in the space, the mirror surface sheet being deformed into a concave spherical surface by a difference between the reduced pressure and the atmospheric pressure thereby to vary the curvature thereof.
    • 提供了能够在平面镜和凹面镜之间变化的高性能反射镜。 反射镜包括基座(1),镜支架(2),镜面片(12)和背片(13),两者都能够改变它们的曲率并且通过镜保持器(2)保持间隔开的关系 )以限定片材之间的气密空间,背片(13)从其中心变形以减小空间中的压力,镜面片通过减压和 大气压力因此改变其曲率。
    • 4. 发明授权
    • Method for controlling a drawing apparatus, a drawing apparatus and a
waveform recording apparatus
    • 控制绘图装置,绘图装置和波形记录装置的方法
    • US6144766A
    • 2000-11-07
    • US969412
    • 1997-11-10
    • Kenji Okayasu
    • Kenji Okayasu
    • B43L13/00G01D18/00G05B1/00G06K9/00G06K9/32G06K9/36G06K9/46G08C21/00
    • B43L13/00
    • Ruled lines printed on a graph paper g are optically detected by a vertical ruled line reading sensor and a horizontal ruled line reading sensor. Ruled line spacing Dp in a plotter coordinate system P is measured and compared with ruled line spacing Dg in a coordinate system G of a given graph paper, and the correspondence relationship between coordinate system G of the graph paper and coordinate system P of the plotter is determined. When a drawing command is inputted, a a coordinate Zc in the drawing command is treated as coordinate Zg in the coordinate system G of the graph paper, and this coordinate Zg is converted to coordinate Zp in the coordinate system P of the plotter, using the correspondence relationship. The drawing command is then executed with respect to the converted coordinate Zp. As a result, figures or waveforms that match the ruled lines of the graph paper can be drawn. Ordinary graph paper can be used because the ruled lines are read, contributing to ease of use. Even if a graph paper with ruled line spacing that differs from the ruled line spacing in the drawing command is used, figures can be modified easily without performing complex calculations.
    • 通过垂直格线读取传感器和水平线条读取传感器光学检测印刷在图纸g上的标线。 测量绘图仪坐标系P中的线间距Dp,并与给定图纸的坐标系G中的划线间距Dg进行比较,图纸的坐标系G与绘图仪坐标系P之间的对应关系为 决心。 当输入绘图命令时,将绘图命令中的坐标Zc视为图形纸的坐标系G中的坐标Zg,并且使用对应关系将该坐标Zg转换为坐标系P中的坐标Zp 关系。 然后对转换的坐标Zp执行绘制命令。 因此,可以绘制与图纸的格线匹配的图形或波形。 可以使用普通图纸,因为读取了划线,有助于使用。 即使使用与绘图命令中的划线间距不同的划线间距的图形纸,也可以轻松修改图形,而无需执行复杂的计算。
    • 5. 发明授权
    • Heat-driven pump
    • 热驱泵
    • US4792283A
    • 1988-12-20
    • US65322
    • 1987-06-22
    • Kenji Okayasu
    • Kenji Okayasu
    • F04B37/06F04B19/24F04F1/04
    • F04F1/04
    • A heat-driven pump for performing the transport of liquid by the function of bubbles produced by vaporization and condensation of the liquid under heating includes an inlet pipe, an inlet-side check valve, a charging pipe, a bubble forming portion, a discharging pipe, an outlet-side check valve, and an outlet pipe. The bubbles forming portion includes a heating portion for receiving heat supplied from outside, a liquid cavity formed in the heating portion having a cross-sectrion which is reduced along the longitudinal axis of the heating portion, and a vapor-liquid exchange chamber communicated with the liquid cavity and having a volume greater than the volume of a bubble extruded from the liquid cavity. In this heat-driven pump, a bubble is generated and expanded in the liquid cavity by heat received by the heating portion, a discharge of liquid is carried out by the expansion of the bubble, an introduction of new liquid into the liquid cavity is carried out by extrusion of the bubble into the vapor-liquid exchange chamber, and elimination of the bubble is carried out by a cooling of the heating portion, and accordingly, a successive pumping of liquid is carried out.
    • 6. 发明授权
    • Rocket damping device
    • 火箭减震装置
    • US06119414A
    • 2000-09-19
    • US684079
    • 1996-07-19
    • Kenji Okayasu
    • Kenji Okayasu
    • E04H9/02
    • E04H9/02
    • A damping device includes a plurality of rockets (3) each having a nozzle (4) directed outward and disposed at the four corners on the upper floor of a building structure (1) and a device for sensing an earthquake and operating the rockets. With this arrangement, there can be provided a damping device for a building structure which is applicable not only to new building structures but also to existing building structures and can cope with a sudden exciting force caused by, for example, an earthquake with a vertical shock which has been conventionally impossible to be coped with.
    • 阻尼装置包括多个火箭(3),每个火箭(3)具有指向外部并设置在建筑物结构(1)的上部楼层上的四个角落处的喷嘴(4)和用于感测地震和操作火箭的装置。 通过这种布置,可以提供一种用于建筑结构的阻尼装置,其不仅适用于新的建筑结构,而且适用于现有的建筑结构,并且可以应付由例如具有垂直震动的地震引起的突然的激发力 这通常是不可能应付的。
    • 9. 发明授权
    • Mirror
    • 镜子
    • US08641213B2
    • 2014-02-04
    • US13376481
    • 2010-03-03
    • Kenji Okayasu
    • Kenji Okayasu
    • G02B7/182
    • G02B5/10A45D42/00G02B26/06G02B26/0825
    • There is provided a high-performance mirror which is capable of being varied between a plane mirror and a concave mirror. The mirror comprises a base (1), a mirror holder (2), a mirror surface sheet (12) and a back sheet (13) both capable of varying their curvature and retained in a spaced-apart relation by the mirror holder (2) to define an air-tight space between the sheets, the back sheet (13) being deformed from its center to reduce the pressure in the space, the mirror surface sheet being deformed into a concave spherical surface by a difference between the reduced pressure and the atmospheric pressure thereby to vary the curvature thereof.
    • 提供了能够在平面镜和凹面镜之间变化的高性能反射镜。 反射镜包括基座(1),镜支架(2),镜面片(12)和背片(13),两者都能够改变它们的曲率并且通过镜保持器(2)保持间隔开的关系 )以限定片材之间的气密空间,背片(13)从其中心变形以减小空间中的压力,镜面片通过减压和 大气压力因此改变其曲率。