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    • 6. 发明申请
    • NANO TRI-CARBON COMPOSITE SYSTEMS AND MANUFACTURE
    • 纳米三碳复合材料系统与制造
    • WO2014022314A1
    • 2014-02-06
    • PCT/US2013/052580
    • 2013-07-29
    • CALIFORNIA INSTITUTE OF TECHNOLOGY
    • LYON, BradleyARIA I., AdrianusGHARIB, Morteza
    • B82B3/00B82B1/00C01B31/02
    • H01G11/36B81B2203/0361B81C1/00031H01G11/28H01G11/70Y02E60/13Y10T428/30
    • Nano-carbon material is described that combines the common and unique properties of spherical fullerenes, carbon nanotubes and graphene carbon allotropes to create an architecture that has unique mechanical and electrical properties. The combined tensile strength of graphene with the compressive strength of fullerenes attached to nanotubes creates a high strength material. By attaching fullerenes to nanotubes, the surface area of the material is greatly enhanced beyond the high surface area normally associated with vertically aligned nanotube arrays. Fabrication can be performed via several complementary methods including catalyst deposition, hydrocarbon chemical vapor deposition, and surface functionalization. The fabrication of the NTC is based on its sub-composites: graphene-nanotubes and nanotubes-fullerenes and their respective fabrication processes.
    • 描述了纳米碳材料,其结合球形富勒烯,碳纳米管和石墨烯碳同素异形体的常见和独特性质,以产生具有独特的机械和电学性质的结构。 具有连接到纳米管的富勒烯的抗压强度的石墨烯的组合拉伸强度产生高强度材料。 通过将富勒烯附着到纳米管,材料的表面积大大增强超过通常与垂直排列的纳米管阵列相关联的高表面积。 可以通过几种互补方法进行制造,包括催化剂沉积,烃化学气相沉积和表面官能化。 NTC的制造基于其亚复合材料:石墨烯纳米管和纳米管 - 富勒烯及其各自的制造工艺。
    • 7. 发明申请
    • ANTI-NEEDLE STICK SAFETY DEVICE FOR INJECTION DEVICE
    • 用于注射装置的防刺针安全装置
    • WO2013159059A1
    • 2013-10-24
    • PCT/US2013/037476
    • 2013-04-19
    • SAFETY SYRINGES, INC.
    • VERESPEJ, James M.SCHOONMAKER, RyanDOWDS, PhilipFIELD, Frederic P.
    • A61M5/24A61M5/28A61M5/32
    • A61M5/3202A61M5/24A61M5/28A61M5/326A61M2005/2433A61M2005/3261A61M2005/3264
    • A safety device for a medicine cartridge comprising a body for receiving a cartridge, a guard for covering a used needle, a plunger to dispense medicine from the cartridge and a spring for activation of the guard. The trigger fingers of the guard are spaced to avoid or minimize contact with the syringe flange during assembly to avoid trigger finger unseating. An elongated trigger finger head enables the device to activate for all known syringe and syringe plunger tolerances. The spring end coils have larger diameter than the inner coils to reduce the likelihood of the spring end coil end interfering with the cartridge subassembly. Syringe capture features are configured to retain a syringe having a small round or conventional cut flange in place during use and reduce the stress on the syringe flange during insertion while maintaining the ability to hold the syringe in place during use.
    • 一种用于药筒的安全装置,包括用于接收药筒的主体,用于覆盖用过的针的保护罩,用于从药筒分配药物的柱塞和用于激活护罩的弹簧。 防护罩的触发指是间隔开的,以避免或最小化在组装期间与注射器凸缘的接触,以避免触发手指松动。 细长的触发指头使得装置能够针对所有已知的注射器和注射器柱塞公差进行激活。 弹簧端部线圈的直径大于内部线圈,以减少弹簧端部线圈端部与盒式组件的干扰的可能性。 注射器捕获特征被配置为在使用期间将具有小圆形或常规切割法兰的注射器保持在适当位置,并且在插入期间减小注射器法兰上的应力,同时保持在使用期间将注射器保持在适当位置的能力。