PIVOT STOPPING MECHANISM
    1.
    发明申请

    公开(公告)号:US20220410140A1

    公开(公告)日:2022-12-29

    申请号:US17816872

    申请日:2022-08-02

    申请人: Willy Wei Yu Ho

    发明人: Willy Wei Yu Ho

    IPC分类号: B01L3/02

    摘要: According to aspects of the present disclosure, a seat of an exercise bench may be repositioned (e.g., raised and rotated) to function as an elbow or arm rest for various weightlifting exercises (referred to as the “deployed position”). The repositioning of the seat (or arm rest) is achieved with a pivot stopping mechanism that securely limit the desired reposition angle and location during adjustment.

    Foldable exercise bench
    2.
    发明授权

    公开(公告)号:US11465010B2

    公开(公告)日:2022-10-11

    申请号:US17145553

    申请日:2021-01-11

    申请人: Willy Wei Yu Ho

    发明人: Willy Wei Yu Ho

    IPC分类号: A63B21/00 A63B21/078

    摘要: Embodiments are disclosed of an exercise bench. The exercise bench includes a girder coupled to a seat, the girder including a front end and a rear end. A first fitting is coupled to the front end and a second fitting is coupled to the rear end. A front leg is rotatably coupled to the first fitting so that the front leg can rotate about the first fitting between a deployed position and a stored position, and a rear leg is rotatably coupled to the second fitting so that the rear leg can rotate about the second fitting between a deployed position and a stored position. A pair of backrest rails are coupled to a backrest and rotatably coupled to the second fitting, and an angular adjustment mechanism can be used to adjust the angle of the backrest relative to the seat.

    3D VISUAL INTELLIGENT SIMULATION MONITORING SYSTEM AND SIMULATION DISPLAY METHOD THEREOF

    公开(公告)号:US20200169714A1

    公开(公告)日:2020-05-28

    申请号:US16199482

    申请日:2018-11-26

    摘要: The present invention provides a 3D visual intelligent simulation monitoring system and a simulation display method thereof, comprising a plurality of monitoring devices and at least one central control device. The monitoring devices capture video screens and generate a plurality of image signals to the central control device. A signal receiving unit of the central control device receives the image signals of the monitoring devices and transmits to an operational simulation unit, and the operational simulation unit operates the image signals with a location data and a geographic data incorporatively and generates at least one 3D simulation image. Thereby monitoring personnel can directly monitor with the 3D simulation image of the central control device, thus achieving comprehensive viewing and perfect monitoring, and functions of responding and manipulating at the first instant through the central control device.

    Foldable trampoline
    7.
    发明授权

    公开(公告)号:US09868007B2

    公开(公告)日:2018-01-16

    申请号:US15044542

    申请日:2016-02-16

    IPC分类号: A63B5/11 A63B5/16

    摘要: A foldable trampoline includes a tubular frame having a first section and a second section coupled to each other via a pair of frame hinges. The device further includes a flexible fabric stretched outwardly attached to the tubular frame to form a trampoline mat, wherein the tubular frame is configured to in an unfolded position or a folded position via the pair of frame hinges. When the tubular frame is in the unfolded position, the first section and the second section are laid out flat away from each other via the frame hinge to form a full-pie shape. When the tubular frame is in the folded position, the first section and the second section are folded towards to each other via the pair of frame hinges to form a half-pie shape, without having to remove the flexible fabric from the first section and second section.

    Device and method for electrospinning multiple layered and three dimensional nanofibrous composite materials for tissue engineering

    公开(公告)号:US09803294B1

    公开(公告)日:2017-10-31

    申请号:US14098711

    申请日:2013-12-06

    IPC分类号: D01D5/00 A61L31/14

    CPC分类号: D01D5/0076 A61L2400/12

    摘要: The present invention relates to a device for preparing three dimensional (3D) nanofibers (blended or coaxial) materials by electrospinning. An automatic nanofiber collector device is used to control the porosity, pore size, crystallinity, geometry, the layer number and thickness of formed nanofibers. The automatic nanofiber collector device includes: (1) a collector platform; (2) a non-conductive device used to fix the collector device; (3) a plurality of electro-conductive wires or needles being pierced through the collector platform with various heights, and (4) the ends of the needles (at bottom) are wired and controlled by a microcontroller, providing forward, stand and backward movements for attached needles. The desired 3D nanofiber scaffold structures can be tailored by the micro-stepping programmable motor controller by changing the pattern and velocity of needle movement, generalized or selective needles movements, as well as intermittent versus continuous movement.