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    • 1. 发明申请
    • EXPANDABLE AND COLLAPSIBLE TABLES AND RELATED METHODS
    • 可扩展和可拆卸表和相关方法
    • WO2013152432A1
    • 2013-10-17
    • PCT/CA2013/000347
    • 2013-04-11
    • COOPER, Christopher
    • COOPER, Christopher
    • A47B3/083A47B1/08A47B3/00A47B3/10A47B5/06
    • A47B1/05A47B3/0803A47B3/0815A47B3/083A47B5/06A47B83/045A47B2001/053
    • A table comprises a base support including a base table leaf having a generally planar base table leaf surface, and at least one main table leaf movably carried by the base support. Each main table leaf is movable between a retracted position and an expanded position in which the respective main table leaf surface is generally coplanar with and in registration with the base table leaf surface. The table further comprises at least one extension table leaf. Each extension table leaf is slidably carried by a respective main table leaf to be slidably movable between a nested position and an extended position. The extension table leaf surface is substantially parallel to the main table leaf surface in both the nested position and the extended position. End supports are pivotally carried by the at least one main table leaf, and are pivotable between a stowed position and a support position.
    • 一种桌子包括一个基座支架,它包括一个具有大致平面的基台台面的基台台板,以及至少一个主台板,可移动地由基座支承。 每个主台面叶片可以在缩回位置和扩展位置之间移动,在该位置中,相应的主台面叶片大致与基台叶面共面并与其对准。 该桌子还包括至少一个延伸台叶。 每个延伸台叶片由相应的主台面可滑动地携带,以在嵌套位置和延伸位置之间可滑动地移动。 延伸台叶表面在嵌套位置和延伸位置两者中基本上平行于主台叶表面。 端部支撑件由至少一个主台面叶片枢转地承载,并且可在收起位置和支撑位置之间枢转。
    • 2. 发明申请
    • METHODS OF GENERATING ENERGY AND/OR HE-4 USING GRAPHENE BASED MATERIALS
    • 使用基于石墨的材料产生能量和/或HE-4的方法
    • WO2012088472A1
    • 2012-06-28
    • PCT/US2011/066992
    • 2011-12-22
    • COOPER, Christopher, H.COOPER, William, K.LOAN, James, F.
    • COOPER, Christopher, H.COOPER, William, K.LOAN, James, F.
    • G21B3/00
    • G21B3/002H05H3/02
    • There is disclosed a method of generating non-ionizing radiation, non-ionizing 4He atoms, or a combination of both, the method comprising: contacting graphene materials with a source of deuterium; and aging the graphene materials in the source of deuterium for a time sufficient to generate non-ionizing radiation, non-ionizing 4He atoms. In one embodiment, graphene materials may comprise carbon nanotubes, such as nitrogen doped single walled or multi-walled carbon nanotubes. Unlike an alpha particle, the non-ionizing 4He atoms generated by the disclosed method are a low energy particles, such as one having an energy of less than 1 MeV, such as less than 100 keV. Other non-ionizing radiation that can be generated by the disclosed process include soft x-rays, phonons or energetic electrons within the carbon material, and visible light.
    • 公开了产生非电离辐射,非电离4He原子或二者的组合的方法,所述方法包括:使石墨烯材料与氘源接触; 并将氘源中的石墨烯材料老化足以产生非电离辐射,非电离4He原子的时间。 在一个实施方案中,石墨烯材料可以包括碳纳米管,例如氮掺杂的单壁或多壁碳纳米管。 与α粒子不同,通过公开的方法产生的非电离4He原子是低能量粒子,例如具有小于1MeV的能量,例如小于100keV的能量粒子。 可以通过公开的方法产生的其它非电离辐射包括碳材料内的软X射线,声子或能量电子以及可见光。