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    • 1. 发明授权
    • Thermally-insulated vibration welding tool
    • 绝热振动焊接工具
    • US08444039B2
    • 2013-05-21
    • US12971875
    • 2010-12-17
    • Wayne W. CaiPaul F. SpacherEdgar M. Storm, Jr.Xingcheng XiaoSusan M. Smyth
    • Wayne W. CaiPaul F. SpacherEdgar M. Storm, Jr.Xingcheng XiaoSusan M. Smyth
    • B23K20/00B23K20/10
    • B23K20/10B29C65/08B29C66/81433B29C66/8167B29C66/81821
    • A welding assembly for forming a weld along a welding interface of a work piece(s) using vibrations includes a welding tool and a thermal barrier. The thermal barrier is at least a chemical and/or mechanical insulating layer positioned adjacent to the welding tool, which minimizes the rate of dissipation of heat generated by the vibrations at or along the welding interface. The welding assembly may also include a wear-resistant layer adjacent to the thermal barrier, which protects the thermal barrier from damage or wear. The welding tool is a portion an anvil assembly and/or a sonotrode assembly. A method of insulating a welding tool includes applying or connecting a thermal barrier to a surface of the welding tool, and minimizing the rate of dissipation of heat generated by the vibrations at or along the welding interface using the thermal barrier, which includes an insulating layer.
    • 用于使用振动沿着工件的焊接界面形成焊缝的焊接组件包括焊接工具和热障。 热障是至少与焊接工具相邻定位的化学和/或机械绝缘层,其最小化由焊接界面处或沿着焊接界面的振动产生的热耗散速率。 焊接组件还可以包括邻近热障的耐磨层,其保护热障免受损坏或磨损。 焊接工具是砧座组件和/或超声波组件的一部分。 绝缘焊接工具的方法包括将热障施加或连接到焊接工具的表面,并且使用热障将最小化由焊接界面处或沿着焊接界面的振动产生的热的散失速率降低,其包括绝缘层 。
    • 2. 发明申请
    • THERMALLY-INSULATED VIBRATION WELDING TOOL
    • 热绝缘振动焊接工具
    • US20110186616A1
    • 2011-08-04
    • US12971875
    • 2010-12-17
    • Wayne W. CaiPaul F. SpacherEdgar M. Storm, JR.Xingcheng Xiao
    • Wayne W. CaiPaul F. SpacherEdgar M. Storm, JR.Xingcheng Xiao
    • B23K20/10
    • B23K20/10B29C65/08B29C66/81433B29C66/8167B29C66/81821
    • A welding assembly for forming a weld along a welding interface of a work piece(s) using vibrations includes a welding tool and a thermal barrier. The thermal barrier is at least a chemical and/or mechanical insulating layer positioned adjacent to the welding tool, which minimizes the rate of dissipation of heat generated by the vibrations at or along the welding interface. The welding assembly may also include a wear-resistant layer adjacent to the thermal barrier, which protects the thermal barrier from damage or wear. The welding tool is a portion an anvil assembly and/or a sonotrode assembly. A method of insulating a welding tool includes applying or connecting a thermal barrier to a surface of the welding tool, and minimizing the rate of dissipation of heat generated by the vibrations at or along the welding interface using the thermal barrier, which includes an insulating layer.
    • 用于使用振动沿着工件的焊接界面形成焊缝的焊接组件包括焊接工具和热障。 热障是至少与焊接工具相邻定位的化学和/或机械绝缘层,其最小化由焊接界面处或沿着焊接界面的振动产生的热耗散速率。 焊接组件还可以包括邻近热障的耐磨层,其保护热障免受损坏或磨损。 焊接工具是砧座组件和/或超声波组件的一部分。 绝缘焊接工具的方法包括将热障施加或连接到焊接工具的表面,并且使用热障将最小化由焊接界面处或沿着焊接界面的振动产生的热的散失速率降低,其包括绝缘层 。
    • 4. 发明授权
    • Lithium-ion batteries with coated separators
    • 带有涂层分离器的锂离子电池
    • US08470468B2
    • 2013-06-25
    • US12704694
    • 2010-02-12
    • Xingcheng XiaoXiaosong HuangMark W. VerbruggeIon C. Halalay
    • Xingcheng XiaoXiaosong HuangMark W. VerbruggeIon C. Halalay
    • H01M2/16
    • H01M10/052H01M2/16H01M2/1646H01M2/1653H01M2/166H01M2/1686H01M10/0565Y02T10/7011
    • A porous polymer sheet or membrane is provided with a thin coating of an electrically non-conductive ceramic composition and the coating conforms to all surfaces, including the pore surfaces, of the membrane. Such a coated membrane serves well, for example, as an intra-cell separator in a lithium ion battery. The coating increases the mechanical properties and thermal stability of the separator in battery operation and retains electrolyte. The coating may be formed by a two-step vapor-phase process in which atoms of one or more metals such as aluminum, calcium, magnesium, titanium, silicon and/or zirconium are deposited in a conformal layer on a workpiece surface. The metal atoms may then be reacted with ammonia, carbon dioxide, and or water to form their respective non-conductive nitrides, carbides, and/or oxides on the surface. The two-step process is repeated as necessary to obtain a ceramic material coating of desired thickness.
    • 多孔聚合物片或膜设置有非导电陶瓷组合物的薄涂层,并且涂层符合膜的所有表面,包括孔表面。 这样的涂布膜例如作为锂离子电池中的细胞内分离器良好地起作用。 涂层在电池操作中增加了隔膜的机械性能和热稳定性,并保持了电解液。 涂层可以通过两步气相法形成,其中一种或多种金属如铝,钙,镁,钛,硅和/或锆的原子沉积在工件表面上的共形层中。 然后可以将金属原子与氨,二氧化碳和/或水反应,以在表面上形成它们各自的非导电氮化物,碳化物和/或氧化物。 根据需要重复两步法以获得所需厚度的陶瓷材料涂层。