会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • AIR DAM DEPLOYMENT AND RETRACTION SYSTEM
    • AIR DAM部署和撤回系统
    • US20120001450A1
    • 2012-01-05
    • US12826752
    • 2010-06-30
    • Yunjun LiTheodore Adamczyk, JR.Peter T. Karlson
    • Yunjun LiTheodore Adamczyk, JR.Peter T. Karlson
    • B62D35/02
    • B62D35/007B62D35/005
    • An air dam deployment and retraction system includes an air dam, a compressor, an air reservoir, a first switch, a second switch, and a third switch. The air dam is configured for moving between a deployed position and a retracted position. The compressor is configured to compress fluid. The air reservoir defines a chamber that is configured to receive a volume of the compressed fluid. The first switch is configured to selectively move between a first inactive position and a first active position. The first inactive position is configured to provide the compressed fluid to the atmosphere. The first active position is configured to provide the compressed fluid from the compressor to one of the chamber of the air reservoir and the air dam. The air dam is configured to move from the retracted position to the deployed position upon receiving the compressed fluid.
    • 一个空气坝的展开和缩回系统包括一个空气坝,一个压缩机,一个储气室,一个开关,一个第二个开关和一个第三个开关。 空气坝被构造成在展开位置和缩回位置之间移动。 压缩机构造成压缩流体。 空气储存器限定了被配置为容纳一定体积的压缩流体的室。 第一开关被配置为选择性地在第一非活动位置和第一活动位置之间移动。 第一非活动位置被配置成将压缩流体提供给大气。 第一主动位置被配置成将压缩流体从压缩机提供到空气储存器和空气坝的一个室。 空气坝被构造成在接收压缩流体时从缩回位置移动到展开位置。
    • 3. 发明授权
    • Air dam deployment and retraction system
    • 空气坝部署和撤回系统
    • US08677817B2
    • 2014-03-25
    • US12826752
    • 2010-06-30
    • Yunjun LiTheodore Adamczyk, Jr.Peter T. Karlson
    • Yunjun LiTheodore Adamczyk, Jr.Peter T. Karlson
    • G01P5/00B60J9/00
    • B62D35/007B62D35/005
    • An air dam deployment and retraction system includes an air dam, a compressor, an air reservoir, a first switch, a second switch, and a third switch. The air dam is configured for moving between a deployed position and a retracted position. The compressor is configured to compress fluid. The air reservoir defines a chamber that is configured to receive a volume of the compressed fluid. The first switch is configured to selectively move between a first inactive position and a first active position. The first inactive position is configured to provide the compressed fluid to the atmosphere. The first active position is configured to provide the compressed fluid from the compressor to one of the chamber of the air reservoir and the air dam. The air dam is configured to move from the retracted position to the deployed position upon receiving the compressed fluid.
    • 一个空气坝的展开和缩回系统包括一个空气坝,一个压缩机,一个储气室,一个开关,一个第二个开关和一个第三个开关。 空气坝被构造成在展开位置和缩回位置之间移动。 压缩机构造成压缩流体。 空气储存器限定了被配置为容纳一定体积的压缩流体的室。 第一开关被配置为选择性地在第一非活动位置和第一活动位置之间移动。 第一非活动位置被配置成将压缩流体提供给大气。 第一主动位置被配置成将压缩流体从压缩机提供到空气储存器和空气坝的一个室。 空气坝被构造成在接收压缩流体时从缩回位置移动到展开位置。
    • 7. 发明授权
    • Curing binder material for carbon nanotube electron emission cathodes
    • 用于碳纳米管电子发射阴极的固化粘合剂材料
    • US08264137B2
    • 2012-09-11
    • US11612313
    • 2006-12-18
    • Yunjun Li
    • Yunjun Li
    • H01J1/62
    • H01B1/18B82Y10/00H01J1/304H01J9/025H01J31/127H01J2201/30469Y10T428/2991
    • A binder material, inorganic polymer, is used to formulate carbon nanotube pastes. This material can be cured at 200° C. and has a thermal-stability up to 500° C. Low-out gassing of this binder material makes it a good candidate for long life field emission devices. Due to better adhesion with this binder material, a strong adhesive peelable polymer from liquid form can be applied on the CNT cathode to achieve a uniform activation with even contact and pressure on the surface. The peelable polymer films may be used both as an activation layer and a mask layer to fabricate high-resolution patterned carbon nanotube cathodes for field emission devices using lithographic processes.
    • 使用粘合剂材料,无机聚合物来配制碳纳米管浆料。 该材料可以在200℃下固化,并且具有高达500℃的热稳定性。该粘合剂材料的低温放气使其成为长寿命场致发射器件的良好候选物。 由于与该粘合剂材料的粘合性更好,可以在CNT阴极上施加强力的液体形式的粘合剂可剥离聚合物,以实现均匀的活化,甚至在表面上具有均匀的接触和压力。 可剥离聚合物膜可以用作活化层和掩模层,以使用光刻工艺制造用于场致发射器件的高分辨率图案化碳纳米管阴极。