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    • 13. 发明申请
    • SINGLE LAYER SELF-CAPACITANCE TOUCH SCREEN REALIZING MULTI-TOUCH IDENTIFICATION AS WELL AS ITS DATA PROCESSING METHOD
    • 单层自适应触摸屏实现多触摸识别及其数据处理方法
    • US20140009438A1
    • 2014-01-09
    • US13929267
    • 2013-06-27
    • Weiping LiuJK Zhang
    • Weiping LiuJK Zhang
    • G06F1/16G06F3/044
    • G06F1/16G06F3/044G06F2203/04104
    • A single layer self-capacitance touch screen and its data processing method which can realize multi-touch identification, the said touch screen includes at least two self-capacitance electrode assemblies independent of each other, all of which are located in the same plane layer and fully cover the whole touch zone of the touch screen without overlapping each other; the said self-capacitance electrode assembly includes at least a pair of self-capacitance coupling electrode couples, which include two electrode plates seated in the same plane, and these two electrode plates all include their own straight-line electrode plate coupling side and straight-line electrode plate base, which have included angle of acute angle; in the self-capacitance electrode assembly, the centre lines of the self-capacitance coupling electrode couples are placed parallel to each other, and the centre lines of arbitrarily two self-capacitance coupling electrode couples are also placed parallel to each other. This invention fully utilizes simple technological structure feature of single layer self-capacitance touch screen and realizes multi-point touch control function at possible lowest manufacturing cost.
    • 一种可实现多点触摸识别的单层自电容触摸屏及其数据处理方法,所述触摸屏包括彼此独立的至少两个自电容电极组件,它们都位于相同的平面层中,并且 完全覆盖触摸屏的整个触摸区域,而不会重叠; 所述自电容电极组件包括至少一对自电容耦合电极耦合,其包括两个位于同一平面中的电极板,并且这两个电极板都包括它们自己的直线电极板耦合侧和直线电极板耦合侧, 线电极板底座,具有夹角角; 在自电容电极组件中,自电容耦合电极耦合的中心线彼此平行放置,并且任意两个自电容耦合电极对的中心线也彼此平行放置。 本发明充分利用单层自电容触摸屏的简单工艺结构特点,以最低的制造成本实现多点触摸控制功能。
    • 15. 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。