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    • 3. 发明申请
    • Lip exfoliation and gloss application
    • 唇部剥脱和光泽应用
    • US20120234336A1
    • 2012-09-20
    • US13385868
    • 2012-03-12
    • Ken PaquetJianming Dai
    • Ken PaquetJianming Dai
    • A45D34/06A45D40/24A45D40/18A45D34/04
    • A45D40/24A45D40/262A45D2200/207
    • Human lip exfoliation is provided using a device to apply flowable exfoliant material to the user's lips, and then effecting powered vibration of a tip of the same device to gently exfoliate the user's lips. The device can include an exfoliator unit and a lip gloss unit, with a magnetic coupling between the units to hold them together until positively separated, yet movement of the lip gloss unit will not result in discharge of exfoliant. The exfoliator unit has a silicone applicator tip with a number of integral silicone bristles for contact with a user's lips. The tip is connected by a passage to a chamber containing exfoliant, and a check valve can be provided between the passage and chamber. Powered vibration of the applicator tip can be provided by an eccentric mass motor mounted immediately adjacent the tip
    • 使用装置提供人体唇部剥脱,以将可流动的去角质材料施加到使用者的嘴唇上,然后对相同装置的尖端进行动力振动,以轻轻地剥离使用者的嘴唇。 该装置可以包括去角质单元和唇彩单元,在单元之间具有磁耦合以将它们保持在一起直到被分离,然而唇彩单元的运动不会导致去角质剂的排出。 剥离器单元具有硅胶施用器尖端,其具有多个用于与使用者嘴唇接触的聚硅氧烷刷毛。 尖端通过通道连接到包含去角质的室,并且可以在通道和室之间设置止回阀。 施加器尖端的动力振动可以由紧邻尖端的偏心质量马达提供
    • 5. 发明申请
    • METHOD AND SYSTEM FOR PLASMA-INDUCED TERAHERTZ SPECTROSCOPY
    • 用于等离子体诱导的TERAHERTZ光谱的方法和系统
    • US20080203306A1
    • 2008-08-28
    • US11835152
    • 2007-08-07
    • Xi-Cheng ZhangJianming DaiXu Xie
    • Xi-Cheng ZhangJianming DaiXu Xie
    • G01J5/02G01J5/00
    • G01J3/42G01J3/443G01N21/3581G01N21/718G01N2021/1761G01N2021/1795G01N2201/0697
    • A method of analyzing a remotely-located object includes the step of illuminating at least a portion of a targeted object with electromagnetic radiation to induce a phase transformation in the targeted object, wherein the phase transformation produces an emitter plasma, which emits terahertz radiation. The method also includes the step of ionizing a volume of an ambient gas to produce a sensor plasma by focusing an optical probe beam in the volume and the step of detecting an optical component of resultant radiation produced from an interaction of the focused optical probe beam and the terahertz radiation in the sensor plasma. Detecting an optical component of the resultant radiation emitted by the sensor plasma facilitates detection of a characteristic fingerprint of the targeted object imposed onto the terahertz radiation produced as a result of the induced phase transformation.
    • 分析遥远物体的方法包括用电磁辐射照射目标物体的至少一部分以引起目标物体中的相变的步骤,其中相变产生发射太赫兹辐射的发射体等离子体。 该方法还包括使体积的环境气体电离以通过将光学探针束聚焦在体积中来产生传感器等离子体的步骤,以及检测由聚焦的光学探针光束和 传感器等离子体中的太赫兹辐射。 检测由传感器等离子体发射的所得辐射的光学部件有助于检测施加在由感应相变所产生的太赫兹辐射上的目标物体的特征指纹。
    • 6. 发明申请
    • Light transmitting slap wrist device
    • 透光拍手腕装置
    • US20160290624A1
    • 2016-10-06
    • US14545176
    • 2015-04-03
    • Jianming DaiBanghui An
    • Jianming DaiBanghui An
    • F21V33/00F21L4/08F21V23/04F21L4/02A44C5/00F21V23/00
    • F21L4/02A44C5/0053A44C15/0015F21Y2115/10G02B6/00
    • A slap wrist device includes a bottom strip having top and bottom surfaces with at least the top surface of thermoplastic material, a middle strip having top and bottom surfaces and of or coated with a thermoplastic material, and a top strip having top and bottom surfaces, at least the bottom surface being of thermoplastic material. A bistable spring is disposed between the bottom and middle strips, and a light emitting and elongated flexible light transmitting element is disposed between the top and middle strips. The bottom and middle strips are sealed together by high frequency (HF) welding along substantially their entire peripheries, and the top and middle strips are sealed together by HF welding along at least the majority of their peripheries. A battery casing, with or without an external safety light, or a fabric bag, may be mounted to an end of the device.
    • 拍击手腕装置包括底部条带,其具有顶部和底部表面,至少具有热塑性材料的顶部表面,具有顶部和底部表面并由热塑性材料涂覆的中间条带以及具有顶部和底部表面的顶部条带, 至少底面是热塑性材料。 双稳态弹簧设置在底部和中间带之间,并且发光和细长的柔性透光元件设置在顶部和中间条带之间。 底部和中部条带通过基本上其整个周边的高频(HF)焊接密封在一起,并且顶部和中部条通过至少其大部分外围部分的HF焊接密封在一起。 具有或不具有外部安全灯的电池外壳或织物袋可以安装在设备的一端。
    • 7. 发明授权
    • Method and system for plasma-induced terahertz spectroscopy
    • 等离子体太赫兹光谱法的方法和系统
    • US08134128B2
    • 2012-03-13
    • US12634282
    • 2009-12-09
    • Xi-Cheng ZhangJianming DaiXu Xie
    • Xi-Cheng ZhangJianming DaiXu Xie
    • G01J5/02
    • G01J3/42G01J3/443G01N21/3581G01N21/718G01N2021/1761G01N2021/1795G01N2201/0697
    • A method of analyzing a remotely-located object includes the step of illuminating at least a portion of a targeted object with electromagnetic radiation to induce a phase transformation in the targeted object, wherein the phase transformation produces an emitter plasma, which emits terahertz radiation. The method also includes the step of ionizing a volume of an ambient gas to produce a sensor plasma by focusing an optical probe beam in the volume and the step of detecting an optical component of resultant radiation produced from an interaction of the focused optical probe beam and the terahertz radiation in the sensor plasma. Detecting an optical component of the resultant radiation emitted by the sensor plasma facilitates detection of a characteristic fingerprint of the targeted object imposed onto the terahertz radiation produced as a result of the induced phase transformation.
    • 分析遥远物体的方法包括用电磁辐射照射目标物体的至少一部分以引起目标物体中的相变的步骤,其中相变产生发射太赫兹辐射的发射体等离子体。 该方法还包括使体积的环境气体电离以通过将光学探针束聚焦在体积中来产生传感器等离子体的步骤,以及检测由聚焦的光学探针光束和 传感器等离子体中的太赫兹辐射。 检测由传感器等离子体发射的所得辐射的光学部件有助于检测施加在由感应相变所产生的太赫兹辐射上的目标物体的特征指纹。
    • 8. 发明授权
    • Method and system for plasma-induced terahertz spectroscopy
    • 等离子体太赫兹光谱法的方法和系统
    • US07652253B2
    • 2010-01-26
    • US11835152
    • 2007-08-07
    • Xi-Cheng ZhangJianming DaiXu Xie
    • Xi-Cheng ZhangJianming DaiXu Xie
    • G01J5/02
    • G01J3/42G01J3/443G01N21/3581G01N21/718G01N2021/1761G01N2021/1795G01N2201/0697
    • A method of analyzing a remotely-located object includes the step of illuminating at least a portion of a targeted object with electromagnetic radiation to induce a phase transformation in the targeted object, wherein the phase transformation produces an emitter plasma, which emits terahertz radiation. The method also includes the step of ionizing a volume of an ambient gas to produce a sensor plasma by focusing an optical probe beam in the volume and the step of detecting an optical component of resultant radiation produced from an interaction of the focused optical probe beam and the terahertz radiation in the sensor plasma. Detecting an optical component of the resultant radiation emitted by the sensor plasma facilitates detection of a characteristic fingerprint of the targeted object imposed onto the terahertz radiation produced as a result of the induced phase transformation.
    • 分析遥远物体的方法包括用电磁辐射照射目标物体的至少一部分以引起目标物体中的相变的步骤,其中相变产生发射太赫兹辐射的发射体等离子体。 该方法还包括使体积的环境气体电离以通过将光学探针束聚焦在体积中来产生传感器等离子体的步骤,以及检测由聚焦的光学探针光束和 传感器等离子体中的太赫兹辐射。 检测由传感器等离子体发射的所得辐射的光学部件有助于检测施加在由感应相变所产生的太赫兹辐射上的目标物体的特征指纹。