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    • 1. 发明授权
    • Lens and pattern printing and coating method for manufacturing same
    • 镜片和图案印刷及其制造方法
    • US08958160B2
    • 2015-02-17
    • US13549850
    • 2012-07-16
    • Chih-Ming Wu
    • Chih-Ming Wu
    • G02B1/06G02B3/12G02B5/128G02B5/18G02B1/10G02B5/08
    • B41M1/30B41M1/34C23C14/042C23C14/08G02B1/10G02B3/12G02C7/021
    • The invention discloses a lens, which comprises an outer surface and an inner surface, wherein a pattern outline is printed on the outer surface; and an argon gas layer, a high refractive index layer, a lower refractive index layer and a waterproof layer are evaporated at an area, outside the pattern outline, of the outer surface from inside to outside in turn. By adoption of clear patterns formed on the outer surface by the manufacturing processes and a four-layer vacuum electroplating film evaporated at an area, outside the pattern outline, of the outer surface, the coating does not block the sight and the lens is more beautiful and has the functions of radiation resistance and ultraviolet resistance. The invention also discloses a pattern printing and vacuum electroplating method which has simple and efficient processes and realizes the functions of the coated lens.
    • 本发明公开了一种透镜,其包括外表面和内表面,其中图案轮廓印刷在外表面上; 并且在外表面的图案轮廓外侧的区域内依次从内向外蒸发氩气层,高折射率层,低折射率层和防水层。 通过采用通过制造工艺在外表面上形成的透明图案和在外表面的图案轮廓外的区域蒸发的四层真空电镀膜,涂层不阻挡视线,并且镜片更美观 具有耐辐射和耐紫外线功能。 本发明还公开了一种图案印刷和真空电镀方法,其具有简单有效的工艺并实现了涂层透镜的功能。
    • 2. 发明申请
    • FLEXIBLE SPINE FIXING STRUCTURE
    • 灵活的脊柱固定结构
    • US20120078305A1
    • 2012-03-29
    • US13309943
    • 2011-12-02
    • Jaw-Lin WangDar-ming LaiShan-Chang ChuehChih-Ming WuShian-Yih Wang
    • Jaw-Lin WangDar-ming LaiShan-Chang ChuehChih-Ming WuShian-Yih Wang
    • A61B17/70
    • A61B17/7059A61B17/8085
    • A flexible spine fixing structure includes a first flexible element and a second flexible element. The first flexible element includes a first flexible part, a first fixing part and a second fixing part. The first fixing part and the second fixing part are respectively connected to two ends of the first flexible part and used for fixing to a first vertebra, and the first flexible part includes a first through hole and a second through hole. The second flexible element includes a second flexible part, a third fixing part and a fourth fixing part. The third fixing part and the fourth fixing part are respectively connected to two ends of the second flexible part and used for fixing to a second vertebra. The second flexible part is disposed by penetrating through the first through hole and the second through hole.
    • 柔性脊柱固定结构包括第一柔性元件和第二柔性元件。 第一柔性元件包括第一柔性部件,第一固定部件和第二固定部件。 第一固定部分和第二固定部分分别连接到第一柔性部分的两端并且用于固定到第一椎骨,并且第一柔性部分包括第一通孔和第二通孔。 第二柔性元件包括第二柔性部件,第三固定部件和第四固定部件。 第三固定部分和第四固定部分分别连接到第二柔性部分的两端并用于固定到第二椎骨。 第二柔性部件穿过第一通孔和第二通孔设置。
    • 4. 发明授权
    • Calibration instrument for micro-positively-sensed force and calibration method therefor
    • 用于微积极感测力的校准仪器及其校准方法
    • US06176117B1
    • 2001-01-23
    • US09201994
    • 1998-12-01
    • Li-Sen ChenHung-Ju YenChih-Ming WuWei-Tai Jao
    • Li-Sen ChenHung-Ju YenChih-Ming WuWei-Tai Jao
    • G01L122
    • G01L25/00
    • A calibration instrument for micro-positively-sensed force, including: a platform support stand having a base with a vise thereon for clamping an elastically deformable strain measuring device to be calibrated, a micro-distance meter at an upper portion of the platform support, a probe connected to and positioned beneath the micro-distance meter, displacement of the probe in vertical direction being adjustable through the micro-distance meter, the probe having a load cell. The load cell and elastically deformable strain measuring device to be calibrated are each connected to a signal transmitting device which outputs the signals thererof to a signal amplifying device so as to display the signals being measured. And, a method for calibrating a calibration instrument for micro-positively-sensed force that uses the calibration instrument to calibrate a precision measuring device.
    • 一种用于微积极感测力的校准仪器,包括:平台支撑架,其具有其上具有台钳的基座,用于夹紧待校准的可弹性变形的应变测量装置,在所述平台支撑件的上部的微距离计, 连接到微距离计量器并位于微距离计量器下方的探头,探头沿垂直方向的位移可通过微距离计调节,探头具有称重传感器。 要校准的称重传感器和可弹性变形的应变测量装置各自连接到信号发送装置,该信号发送装置将信号输出到信号放大装置,以显示被测量的信号。 而且,一种用于校准用于微积极感测力的校准仪器的方法,其使用校准仪器校准精密测量装置。
    • 6. 发明授权
    • Eyeglasses able to instantly install or remove lens
    • 眼镜能够立即安装或拆卸镜头
    • US09223150B2
    • 2015-12-29
    • US14038788
    • 2013-09-27
    • Chih Ming Wu
    • Chih Ming Wu
    • G02C1/00G02C13/00G02C1/06
    • G02C13/00G02C1/06G02C1/10G02C2200/08
    • A pair of eyeglasses includes a lens and a frame. The frame has a holder and two temples connected to two ends of the holder. The holder has a clip slot able to fix the lens. A through hole is defined in the holder and communicates with the clip slot. A bead and a spring are accommodated in the through hole. A restriction member is connected to the holder and blocks the through hole at the inside of the holder. The spring is installed between the bead and the restriction member. The bead partially protrudes from the through hole. The lens has a positioning portion corresponding to the bead. The bead that partially protrudes from the through hole is engaged with the positioning portion. The lens is easily installed or removed by shifting the bead in the clip slot from the positioning portion of the lens.
    • 一对眼镜包括透镜和框架。 框架有一个支架和两个连接到支架两端的镜腿。 支架具有能够固定透镜的夹子槽。 通孔被限定在保持器中并与夹子槽连通。 珠和弹簧容纳在通孔中。 限制部件连接到保持器,并且在保持器的内侧阻塞通孔。 弹簧安装在胎圈和限制件之间。 胎圈部分地从通孔突出。 透镜具有对应于珠的定位部分。 从通孔部分突出的凸缘与定位部分接合。 通过将夹子槽中的珠子从透镜的定位部分移位来容易地安装或移除镜片。
    • 8. 发明授权
    • Enhanced spine fixation apparatus
    • 增强脊柱固定装置
    • US06328739B1
    • 2001-12-11
    • US09436268
    • 1999-11-08
    • Chien-Lin LiuChi-Ming ShihTze-Hong WongBen-Hwa JangWei-Tai JaoChih-Ming WuChen-Dao ShaioAudy Choeo
    • Chien-Lin LiuChi-Ming ShihTze-Hong WongBen-Hwa JangWei-Tai JaoChih-Ming WuChen-Dao ShaioAudy Choeo
    • A61B1756
    • A61B17/7041
    • An enhanced spine fixation apparatus for fixing a number of vertebrae of a spine column is disclosed. The spine fixation apparatus comprises a plurality of pedicel screws, a plurality of coupling blocks, a plurality of first securing elements, a plurality of second securing elements, a connecting rod, and a plurality of third securing elements. Each coupling block is secured on a pedicel screw by the first securing element while the connecting rod is secured on the coupling block by the second securing element. Each first securing element is fixed by the third securing element. By virtue of the provisions of a first and a second spherical convex surfaces as well as a first and a second recesses respectively on the surfaces of the pedicel screw and the first securing element as well as the surfaces of the coupling block which are being abutted, an adjustment concerning a vertical tilt angle and a horizontal rotating angle of the coupling block relative to the pedicel screw is available. By way of the third securing element, the first securing element is prevented from loosening.
    • 公开了一种用于固定脊柱的多个椎骨的增强脊柱固定装置。 脊柱固定装置包括多个花梗螺钉,多个连接块,多个第一固定元件,多个第二固定元件,连接杆和多个第三固定元件。 每个联接块通过第一固定元件固定在花梗螺钉上,而连杆通过第二固定元件固定在联接块上。 每个第一固定元件由第三固定元件固定。 通过分别在花梗螺钉和第一固定元件的表面上以及被紧靠的连接块的表面设置第一和第二球形凸面以及第一和第二凹槽, 可以使用关于联接块相对于花梗螺钉的垂直倾斜角度和水平旋转角度的调整。 通过第三固定元件,防止第一固定元件松动。
    • 10. 发明申请
    • PHOTOCHROMIC LENS
    • US20200166779A1
    • 2020-05-28
    • US16198791
    • 2018-11-22
    • Chih Ming WU
    • Chih Ming WU
    • G02C7/10
    • A photochromic lens includes an optical body made of polycarbonates and a polycarbonate film combination located at a front surface of the optical body. The polycarbonate film combination is constructed of a first polycarbonate film and a second polycarbonate film, between which a photochromic material and an optical adhesive are provided. The optical body and the polycarbonate film combination are subsequently placed in a mold into which a molten polycarbonate material is fed. As such, the optical body and the polycarbonate film combination can be joined together after the molten polycarbonate material is cooled and solidified, thus making a lens with a stable and excellent performance on changing color. Preferably, each of the first and second polycarbonate films has a thickness between 0.1 and 0.5 mm. The temperature inside the mold reaches about 260 to 280 degrees C. upon the molten polycarbonate material being fed into the mold.