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    • 3. 发明授权
    • Quick-donning head harness assembly
    • 快速头戴组件
    • US5069205A
    • 1991-12-03
    • US512784
    • 1990-04-20
    • Tina Urso
    • Tina Urso
    • A62B18/08
    • A62B18/084
    • A quick-donning head harness assembly (10) used in combination with a respirator face mask assembly (12) of the type including a rigid facepiece (14) and a flexible face seal (16), which head harness assembly and face mask assembly may be quickly donned and adjusted without becoming entangled with the wearer's hair. The head harness assembly includes a cap (24) provided with a lower strap casing (24.2) and an upper strap casing (33). A lower elasticized strap passes through the lower casing, the forward ends of the strap passing through adjusting buckles (46) supported by lower corners of the facepiece. Rings (38) are connected to the upper corners of the facepiece (14) and an upper adjustable strap (48) has right and left temple portions (48.2) passing through the ring, the strap being folded back upon itself, the end portions (48.3) of the strap being provided with a "velcro" pile which may cooperate with a "velcro" pile on the upper strap casing (33) for adjustably positioning the upper corners of the facepiece. In addition, a rigid support (26) extends between the upper corners of the facepiece and the top forward corners of the cap (24).
    • 一种与包括刚性面罩(14)和柔性面部密封件(16)类型的呼吸器面罩组件(12)组合使用的快速头戴式头带组件(10),该头部线束组件和面罩组件可以 快速穿戴和调整,而不会与佩戴者的头发缠结。 头带组件包括设置有下带壳体(24.2)和上带壳体(33)的盖(24)。 下部弹性带穿过下壳体,带的前端穿过由面罩的下角支撑的调节带扣(46)。 环(38)连接到面罩(14)的上角,并且上可调节带(48)具有通过环的右和左腿部(48.2),带自身折回到端部 带子的48.3)设置有“魔术贴”,其可以与上带子壳体(33)上的“魔术贴”桩配合,以可调整地定位面罩的上角。 此外,刚性支撑件(26)在面罩的上角和帽(24)的顶部前角之间延伸。
    • 7. 发明授权
    • Electrochemical cell having a galaxy wind design
    • 具有星系风设计的电化学电池
    • US07718310B1
    • 2010-05-18
    • US11552156
    • 2006-10-24
    • Dominick FrustaciTina UrsoPaul HallifaxKenneth P. Moceri
    • Dominick FrustaciTina UrsoPaul HallifaxKenneth P. Moceri
    • H01M2/16H01M2/14H01M2/02
    • H01M6/14H01M2/0404H01M2/046H01M10/0431H01M10/0525H01M10/0587
    • An electrochemical cell is described. The cell comprises a cathode material contacted to a perforated current collector having a portion left uncovered and an anode material contacted to an anode current collector. The anode comprises first and second strips positioned on opposite sides of the cathode, which is also in the form of a strip, but one that is much longer than each of the anode strips. Proximal ends of the anode strips reside adjacent to where the cathode is secured to a terminal pin/sleeve assembly. Distal ends of the anode strips are adjacent to the opposed ends of the cathode strip. A separator sheet segregating the anode from direct contact with the cathode provides an upper portion at least partially sealed to a lower portion along an aligned peripheral edge and through the uncovered perforations of the cathode current collector to lock the cathode in position. The anode and cathode are then wound into a galaxy electrode assembly housed in a cylindrical casing and activated with an electrolyte.
    • 描述了电化学电池。 电池包括与具有未被覆盖的部分和与阳极集电器接触的阳极材料的穿孔集电体接触的阴极材料。 阳极包括位于阴极的相对侧上的第一和第二条带,其也是条带的形式,但是比每个阳极条长得多。 阳极条的近端位于阴极固定到端子销/套管组件的附近。 阳极条的远端与阴极条的相对端相邻。 将阳极偏离与阴极直接接触的隔片提供了沿着对齐的外围边缘和通过阴极集电器的未覆盖穿孔至少部分地密封到下部的上部,以将阴极锁定在适当位置。 然后将阳极和阴极卷绕成容纳在圆柱形壳体中并用电解质活化的星系电极组件。
    • 8. 发明授权
    • Primary electrochemical cell having scalloped electrodes
    • 具有扇形电极的初级电化学电池
    • US07273674B1
    • 2007-09-25
    • US10788823
    • 2004-02-27
    • Dominick FrustaciTina UrsoPaul Hallifax
    • Dominick FrustaciTina UrsoPaul Hallifax
    • H01M2/26H01M6/14
    • H01M6/14H01M4/13H01M4/131H01M4/134H01M4/382H01M4/405H01M4/485Y10T29/49108
    • A primary lithium electrochemical cell housed in a casing having a curved side wall intermediate opposed generally planar face walls is described. The cell comprises an anode and a cathode that each has a plurality of face portions joined together by connecting portions. The opposite polarity face portions and connecting portions are aligned with each other and then the electrodes are wound to provide an electrode assembly that fits in the casing. Regardless whether the cell is balanced as either an anode-limited or cathode-limited configuration, however, it is desirable to have the active material of one electrode face portion directly facing the electrode material of the counter electrode face portion. This means that the dimensional extent of the facing electrodes should be as close to each other in areas as possible to match the desired anode- or cathode-limited balance. The same is true for the connecting portions. The cell is of a high energy density for an implantable biomedical device.
    • 描述了容纳在壳体中的初级锂电化学电池,其具有中间相对的大致平坦的面壁的弯曲侧壁。 电池包括阳极和阴极,每个阳极和阴极具有通过连接部分连接在一起的多个面部。 相反的极性面部分和连接部分彼此对准,然后缠绕电极以提供装配在壳体中的电极组件。 然而,无论电池是否被平衡为阳极限制或阴极限制的结构,希望使一个电极面部分的活性材料直接面对对电极面部的电极材料。 这意味着面对电极的尺寸范围应尽可能地相互接近以匹配所需的阳极或阴极限制的平衡。 对于连接部分也是如此。 该细胞对于植入式生物医学装置具有高能量密度。
    • 9. 发明申请
    • Electrochemical cell designs with anode plates and connections which facilitate heat dissipation
    • 具有阳极板和连接的电化学电池设计,有利于散热
    • US20050238953A1
    • 2005-10-27
    • US10832195
    • 2004-04-26
    • Tina UrsoDominick FrustaciEsther TakeuchiMark Visbisky
    • Tina UrsoDominick FrustaciEsther TakeuchiMark Visbisky
    • H01M2/02H01M2/06H01M2/26H01M2/28H01M8/10H01M10/50
    • H01M2/266H01M2/0202H01M2/06H01M10/613H01M10/623H01M10/647H01M10/654
    • Heat generation is an important concern of electrochemical cell design. The invention is directed toward a cell design that efficiently and responsively dissipates heat by transfer from the cell to the casing through multiple parallel connections. This invention relates to battery designs having cell stacks in which both the anode and cathode are of a plate structure and the anode plates are independently connected to the cell casing or connected thereto via a bridge or bus. They may also consist of cell assemblies of wound electrode configurations or plate-serpentine configurations having multiple parallel connections to the cell casing. Surface area is an important criterion in battery design since it increases the current draw capability of the battery. The total surface area of this cell is potentially larger than any of the above mentioned types without sacrificing safety since the rate of heat conduction along the electrode pathway is approximately proportional to half an individual plate length, rather than the total anode length. Also, since the rate of heat leaving the cell is in excess of that found in traditional, galaxy or cathode plate and serpentine anode types of cells, the probability of cell venting is minimal.
    • 热电生成是电化学电池设计的重要问题。 本发明涉及一种电池设计,其通过多个并联连接将电池从电池转移到壳体而有效且响应性地散热。 本发明涉及具有电池堆的电池设计,其中阳极和阴极均为板状结构,并且阳极板独立地连接到电池壳体或通过电桥或母线与其连接。 它们还可以由具有多个平行连接到电池壳体的卷绕电极配置或板 - 蛇形结构的电池组件组成。 表面积是电池设计中的重要标准,因为它增加了电池的电流消耗能力。 该电池的总表面积潜在地大于任何上述类型,而不牺牲安全性,因为沿着电极通路的热传导速率大约与单独板长度的一半成比例,而不是总阳极长度。 此外,由于离开电池的热量超过传统的星系或阴极板和蛇形阳极类型的电池中的热量,所以细胞排出的可能性是最小的。
    • 10. 发明授权
    • Device and method for uniformly distributing electrode particles
    • 均匀分布电极颗粒的装置和方法
    • US06788524B2
    • 2004-09-07
    • US10684077
    • 2003-10-09
    • Tina UrsoDominick FrustaciMichael Guidi
    • Tina UrsoDominick FrustaciMichael Guidi
    • H01G9145
    • H01M4/131H01M4/04H01M4/0404H01M4/043H01M4/0435H01M4/133H01M4/485H01M4/525H01M4/583
    • A drop-fill assembly and method for uniformly distributing electrode active particles onto a current collector is described. The drop-fill assembly comprises a conduit containing two or more spaced apart sifting screens. A funnel is located upstream of the sifting screens to distribute an electrode active powder into the center of the conduit with a downward velocity. The mesh of any one sifting screen is out of direct alignment with respect to the next or previous screen. The electrode active powder is poured into the funnel and distributed across the conduit's cross-section as it bounces off and passes through the misaligned sifting screens. The powder exits at the bottom of the conduit lying in a thin, uniform layer on a current collector, taking on the shape of the desired electrode due to the boundary of the conduit and pressing fixtures located above and beneath the current collector. The powder layer is then pressed on to the current collector to produce an electrode.
    • 描述了将电极活性粒子均匀地分布到集电器上的滴注组件和方法。 液滴填充组件包括含有两个或更多个间隔开的筛网的导管。 漏斗位于筛网的上游,以电流有效的粉末以向下的速度分布在导管的中心。 任何一个筛网的网格相对于下一个屏幕或上一个屏幕都不直接对齐。 将电极活性粉末倒入漏斗中并分布在导管的横截面上,当其反弹并穿过未对准的筛选筛。 粉末在位于集电器上的薄的均匀层中的管道的底部离开,由于位于集电器上方和下方的管道和压制夹具的边界,呈现所需电极的形状。 然后将粉末层压在集电器上以产生电极。