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    • 1. 发明授权
    • Double-sided maskless exposure system and method
    • 双面无掩模曝光系统及方法
    • US08994916B2
    • 2015-03-31
    • US13523924
    • 2012-06-15
    • Wenhui MeiWeichong DuLujie Qu
    • Wenhui MeiWeichong DuLujie Qu
    • G03F7/20G03F9/00
    • G03F7/2032G03F7/2057G03F7/70275G03F7/70291G03F7/70425G03F9/00G03F9/7088
    • A double-sided maskless exposure system and method consists of light sources which includes two light wavelength segments, maskless optical engines in which a 2D spatial light modulation (spatial light modulator) device, such as DMD, is generating a plurality of pixel array of the pattern, vision system, moving substrate and computer control system. The double-sided maskless exposure system at least includes two maskless optical engines with auto-calibration function which can correct any alignment error in-line. Each optical engine is for each side of the substrate. The optical engines are aligned each other in pairs and are simultaneously patterning on each side of the moving substrate. The system also includes a manipulator for moving, stepping or scanning the optical engines, relative to the substrate so that it can create a contiguous whole image on the both sides of the subject.
    • 双面无掩模曝光系统和方法由包括两个光波长段的光源组成,其中2D空间光调制(空间光调制器)设备(诸如DMD)正在产生多个像素阵列的无掩模光学引擎 图案,视觉系统,移动基板和计算机控制系统。 双面无掩模曝光系统至少包括具有自动校正功能的两个无掩模光学引擎,可以校正任何对准误差。 每个光学引擎用于衬底的每一侧。 光学引擎成对地彼此对准,并且在移动的基板的每一侧上同时进行图案化。 该系统还包括用于相对于基板移动,步进或扫描光学引擎的操纵器,使得其可以在对象的两侧上创建连续的整个图像。
    • 4. 发明申请
    • Double-Sided Maskless Exposure System and Method
    • 双面无掩膜曝光系统及方法
    • US20130044300A1
    • 2013-02-21
    • US13523924
    • 2012-06-15
    • Wenhui MeiWeichong DuLujie Qu
    • Wenhui MeiWeichong DuLujie Qu
    • G03B27/68
    • G03F7/2032G03F7/2057G03F7/70275G03F7/70291G03F7/70425G03F9/00G03F9/7088
    • A double-sided maskless exposure system and method consists of light sources which includes two light wavelength segments, maskless optical engines in which a 2D spatial light modulation(spatial light modulator) device, such as DMD, is generating a plurality of pixel array of the pattern, vision system, moving substrate and computer control system. The double-sided maskless exposure system at least includes two maskless optical engines with auto-calibration function which can correct any alignment error in-line. Each optical engine is for each side of the substrate. The optical engines are aligned each other in pairs and are simultaneously patterning on each side of the moving substrate. The system also includes a manipulator for moving, stepping or scanning the optical engines, relative to the substrate so that it can create a contiguous whole image on the both sides of the subject.
    • 双面无掩模曝光系统和方法由包括两个光波长段的光源组成,其中2D空间光调制(空间光调制器)设备(诸如DMD)正在产生多个像素阵列的无掩模光学引擎 图案,视觉系统,移动基板和计算机控制系统。 双面无掩模曝光系统至少包括具有自动校正功能的两个无掩模光学引擎,可以校正任何对准误差。 每个光学引擎用于衬底的每一侧。 光学引擎成对地彼此对准,并且在移动的基板的每一侧上同时进行图案化。 该系统还包括用于相对于基板移动,步进或扫描光学引擎的操纵器,使得其可以在对象的两侧上创建连续的整个图像。
    • 5. 发明申请
    • COATED PIPE AND METHOD USING STRAIN-HARDENING BRITTLE MATRIX COMPOSITES
    • 涂层管和使用应变硬化矩阵复合材料的方法
    • US20090035459A1
    • 2009-02-05
    • US11833746
    • 2007-08-03
    • Victor C. LiMichael LepechWeiping LiuWeichong Du
    • Victor C. LiMichael LepechWeiping LiuWeichong Du
    • B05D1/36
    • F16L58/109F16L58/06
    • Pipe cladding is based upon a fiber-reinforced brittle matrix composite material. The coating is isotropic, demonstrating pseudo-strain hardening behavior in uniaxial tension, and damage tolerance by design, not relying on stratified layers of reinforcing mesh embedded within concrete or other brittle cementitious matrices for impact resistance, fracture toughness, or crack width control. The fiber reinforced brittle matrix composite cladding protects both the pipe and inner thin, anti-corrosion layer (if present) from impact or abrasion damage while permitting bending of coated and clad pipe. The finished composite clad can be in a simple circular form alone the pipe or in some complex form providing an integrated housing for electrical or optical fiber cables, or optical sensing sensors for continuous or intermittent sensing of pipeline leakage or failure.
    • 管道覆层基于纤维增强的脆性基质复合材料。 涂层是各向同性的,证明单轴拉伸的假应变硬化行为和设计的损伤公差,不依赖于嵌入在混凝土或其他脆性水泥基质中的增强网的分层,用于抗冲击性,断裂韧性或裂纹宽度控制。 纤维增强的脆性基质复合材料包层可以保护管道和内部薄的防腐层(如果有的话)免受冲击或磨损损伤,同时允许涂层和复合管弯曲。 完成的复合包层可以是单独的管道的简单圆形形式或者以一些复杂形式提供用于电缆或光纤电缆的集成外壳,或用于连续或间歇地检测管道泄漏或故障的光学感测传感器。