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    • 44. 发明授权
    • Surf-driven electrical apparatus
    • 冲浪驱动电器
    • US6133644A
    • 2000-10-17
    • US200777
    • 1998-11-28
    • Joseph SmithRichard Cornely
    • Joseph SmithRichard Cornely
    • F03B13/22F03B13/10F03B13/12
    • F03B13/22Y02E10/38
    • An apparatus for converting the energy of the ocean's surf into electricity, which comprises a buoyant body that floats on the surface of the water and rises and falls with the waves, at a fixed and predetermined distance from the shore. Fixed securely to the buoyant body, is a horizontally extending shaft, in such a manner that it bears a constant height above the water's surface, regardless of water amplitude variation, and/or height of tide. Connected to the shaft are blades which are rotably mounted. Said blades will intercept the ocean at a point where the surf breaks, and shall receive the energy produced from the breaking wave. Said energy shall be converted into mechanical energy by driving the blades in motion, which in turn rotates the shaft. An electric power generator is drivingly connected to the shaft, whereby producing electricity.
    • 一种用于将海洋冲浪能量转换成电的装置,其包括漂浮在水面上的漂浮体,并以与波浪固定并预定的距离离岸而上升和下降。 稳定地固定在浮力体上,是一个水平延伸的轴,使其在水表面上方具有恒定的高度,而不管水的幅度变化和/或潮汐的高度。 连接到轴上的是可旋转安装的叶片。 所述叶片将在冲浪断裂的一个点拦截海洋,并且将接收从断裂波产生的能量。 所述能量通过驱动叶片运动而转化为机械能,这反过来旋转轴。 发电机驱动地连接到轴,从而产生电力。
    • 45. 发明授权
    • Wreath device
    • 花圈装置
    • US4133922A
    • 1979-01-09
    • US801058
    • 1977-05-27
    • Joseph Smith
    • Joseph Smith
    • A01G5/04A47G33/06A47G33/00
    • A47G33/06A01G5/04
    • A component to facilitate the hand fabrication of decorative wreaths comprising a flat annular member, preferably molded or vacuum formed of plastic. A plurality of integrally formed bridges extend radially from the surface of the annular member at substantially uniform distances apart. The bridges are spaced from the planar surface of the annular member to permit stems of fir twigs or picks to be inserted underneath. In use, a plurality of picks are attached to the component by sliding the stem of a twig under the cross member of a bridge with the other end of the twig overlying the next adjacent bridge. Twigs are arranged around the entire circumference of the annual member in shingle-like fashion to form a conventionally appearing decorative tree wreath.
    • 用于促进装饰花环的手工制造的部件,其包括平坦的环形构件,优选地由塑料模制或真空形成。 多个整体形成的桥以距离相等的距离从环形构件的表面径向延伸。 桥与环形构件的平坦表面间隔开,以允许在下面插入冷杉枝或挑选的茎。 在使用中,通过将桥梁的横梁上的一根枝条的茎杆滑动到该树枝的另一端上,覆盖下一个相邻的桥梁,将多个拾取物附接到该部件上。 树枝状围绕整个圆周布置在木瓦状时尚中,以形成传统的装饰树花圈。
    • 46. 发明授权
    • Axle mountings
    • 车轴安装
    • US4008507A
    • 1977-02-22
    • US645346
    • 1975-12-30
    • Joseph Smith
    • Joseph Smith
    • B60B33/06
    • B60B33/06Y10T16/1943
    • This invention relates to an axle mounting including a plate having first and second interconnected slot portions provided therein. The first slot portion is longer than the second slot portion and the slot portions are interconnected into a substantially "j" configuration and are adapted so as to accommodate an axle movable therein. The arrangement is such that in use the plate is secured to a movable article with the slot portions substantially vertical such that transporting means connected to the axle are engageable and disengageable with an adjacent surface or floor as the axle is moved between the slots. In a further form of the invention an axle mounting includes a first plate and a second plate. The second plate is pivotally mounted on the first plate and the first and second interconnected slot portions are provided in each of the plates, the first slot portions being longer than the second slot portions and in each plate the first and second slot portions being interconnected to form a substantially "j" shaped formation. The arrangement of the invention is such that in use, the raising and lowering of an article to which the plates are attached, causes the axle to move between the first and second slot portions the second plate pivoting about the first plate so as to enable the axle movement to take place.
    • 本发明涉及一种车轴安装件,其包括具有设置在其中的第一和第二互连槽部分的板。 第一狭槽部分比第二狭槽部分长,并且槽部分互连成大致“j”形并且适于容纳可在其中移动的轴。 该布置使得在使用中,板被固定到可移动物品上,其中狭槽部分基本上是垂直的,使得当车轴在槽之间移动时,连接到轴的输送装置可与相邻的表面或地板接合并脱离。 在本发明的另一形式中,轴安装件包括第一板和第二板。 第二板枢转地安装在第一板上,并且第一和第二互连槽部设置在每个板中,第一槽部分比第二槽部分长,并且在每个板中,第一和第二槽部分互连到 形成基本上“j”形的结构。 本发明的布置使得在使用中,附着有板的物品的升高和降低使得轴在第一和第二槽部之间移动,第二板围绕第一板枢转,以使得能够 轴运动发生。
    • 47. 发明申请
    • METHOD OF PROVIDING AN IMAGING SYSTEM AND IMAGING SYSTEM THEREOF
    • US20200043952A1
    • 2020-02-06
    • US16601411
    • 2019-10-14
    • Joseph SmithRita BotteschJohn Stowell
    • Joseph SmithRita BotteschJohn Stowell
    • H01L27/12H01L29/786H01L23/498H01L21/683H01L23/31H01L21/768H01L27/146H01L27/15H01L21/306G01T1/20
    • Some embodiments include an imaging system. The imaging system can comprise: a scintillator structure; and an electronic device engaged with the scintillator structure, wherein: the scintillator structure can comprise: a scintillator support layer; and a scintillator layer; the scintillator support layer can comprise: a first substantially non-planar surface; a second substantially non-planar surface, the first substantially non-planar surface can be approximately parallel to the second substantially non-planar surface; and a scintillator support layer thickness greater than approximately 200 micrometers and less than or equal to approximately 300 micrometers; the scintillator layer can comprise: a first surface; a second surface opposite the first surface, the second surface being configured to scintillate; and one or more granular phosphor materials can comprise a diameter of greater than or equal to approximately 2 micrometers and less than or equal to approximately 30 micrometers; the first surface of the scintillator layer can be coupled to the second substantially non-planar surface of the scintillator support layer such that the second surface of the scintillator layer comprises a contour of the second substantially non-planar surface of the scintillator support layer; the electronic device can comprise a device substrate and one or more active sections; the device substrate can comprise a first surface and a second surface opposite the first surface of the device substrate; the one or more active sections are at the second surface of the device substrate; and the second surface of the device substrate and the one or more active sections can conform to the second surface of the scintillator layer. Other embodiments are described herein.