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    • 4. 发明授权
    • Reconfigurable fixed suspension semi-trailer, flatbed or chassis
    • 可重构固定悬挂半挂车,平板或底盘
    • US09039022B2
    • 2015-05-26
    • US13064604
    • 2011-04-04
    • Robert Horton
    • Robert Horton
    • B62D53/06
    • B62D53/068B62D53/06
    • A reconfigurable fixed position suspension and support structure attached to the trailer body using a locking device consisting of pins, bolts and/or other fastening devices. The support structure has a removable locking device that when attached to the support structure locks the support structure and suspension into a fixed position relative to the trailer body. When the trailer is not in operation, the locking device can be removed allowing the suspension group to be reconfigured, and each suspension to be repositioned relative to the trailer body. The removable locking device is then reattached to the suspension support structure locking the support structure and suspension into a new fixed position relative to the trailer body.
    • 使用由销,螺栓和/或其他紧固装置构成的锁定装置连接到拖车主体上的可重构固定位置悬架和支撑结构。 支撑结构具有可移除的锁定装置,当附接到支撑结构时,将支撑结构和悬架相对于拖车主体锁定到固定位置。 当拖车不工作时,可以拆卸锁定装置,允许重新配置悬挂组,并且每个悬架相对于拖车主体重新定位。 然后将可移除的锁定装置重新连接到悬架支撑结构,将支撑结构和悬架锁定到相对于拖车主体的新的固定位置。
    • 5. 发明申请
    • Spot Locator
    • 现货定位器
    • US20070063893A1
    • 2007-03-22
    • US11275669
    • 2006-01-23
    • Robert HortonPhillip Coiner
    • Robert HortonPhillip Coiner
    • G01S5/14
    • G01S19/11G01S19/34G01S19/37
    • A system and method is provided for enhancing the coverage and capabilities of Global Navigation Satellite Systems (GNSS) using signal emitters. The signal emitters generate and emit GNSS Radio Frequency (RF) signals that may possess varying sets of information. In some situations, the information may include relative pseudo-random code phases and Doppler frequencies that correspond to the known location of the signal emitter or other locations. In some situations, the GNSS satellite constellation time, and the GNSS satellites that may be visible at a known location were the authentic GNSS signals not obscured or at another location.
    • 提供了一种用于增强使用信号发射器的全球导航卫星系统(GNSS)的覆盖和能力的系统和方法。 信号发射器产生并发射可能拥有不同信息集的GNSS射频(RF)信号。 在某些情况下,信息可以包括对应于信号发射器或其他位置的已知位置的相对伪随机码相位和多普勒频率。 在某些情况下,GNSS卫星星座时间以及可能在已知位置可见的GNSS卫星是真实的GNSS信号不被模糊或在另一位置。
    • 8. 发明申请
    • Wrapped pile weatherstripping and methods of making same
    • 包裹桩密封条和其制作方法
    • US20070094934A1
    • 2007-05-03
    • US10572338
    • 2003-10-15
    • James AlbaneseRobert HortonAlan DeMelloThongdy Chanthabane
    • James AlbaneseRobert HortonAlan DeMelloThongdy Chanthabane
    • E06B7/16
    • B32B5/26B29C65/08B29C66/1122B29C66/432B29C66/4722B29C66/71B29C66/72343B29C66/7392B29C66/80B29C66/81423B29C66/81431B29C66/83423B29L2031/26B32B3/04B32B38/0004B32B38/0008B32B2262/0253B32B2307/7265B32B2310/028E06B7/22B29K2023/12
    • Pile weatherstrip-ping, which is clad with a wrapping of a film (14, 25, 104, 216) of flexible material, has one or more rows (19, 27, 100, 102, 212, 214) of pile (10, 24, 105, 233) on a backing (12, 28, 106, 218) in side-by-side relationship. The wrapping film material conforms to the outside surface of the row (19, 27, 100, 212 21 102, 214) of pile so as to define a bulb or bulbs which are completely filled with pile. Single row (19, 27) pile weatherstripping is made by wrapping the pile (10, 24) with the film material (14, 25) after first ultrasonically welding the film material along one edge thereof to the backing (12, 28) under the pile. Then, the film material (14, 25) may be bent around the pile as it moves through a guide (88). The film material (14, 25) is then attached along the opposite edge to the backing thereof so as to completely enclose and clad the row (19, 27) of weatherstripping. The film material may be wrapped around one row (214) of two adjacent rows (212, 214) of pile (233) and attached to the backing (218), leaving the other row (212) unclad. The film material (104) may be wrapped separately around adjacent rows and attached to the backing (106) to provide two clad rows (100, 102) of weatherstripping. By selection of the porosity of the film material (14, 25, 104, 216) and the density of the pile (10, 24, 105, 233), weatherstripping having desired compressibility and air and water infiltration control properties may be produced.
    • 用柔性材料的薄膜(14,25,104,216)的包裹物包覆的密封条带有一排或多排(19,27,100,102,212,214)的桩(10, 24,105,233)在背衬(12,28,106,218)上并排关系。 包裹膜材料与桩的排(19,27,100,212,221,214)的外表面一致,以便确定完全填充桩的灯泡或灯泡。 在第一次将薄膜材料沿其一个边缘超声波焊接到背衬(12,28)之下时,通过在薄膜材料(14,25)之前将薄片材料(14,25)包裹在一起(12,28)来制造单列(19,27)桩密封条, 桩。 然后,当薄膜材料(14,25)移动通过引导件(88)时,薄膜材料(14,25)可以围绕堆叠弯曲。 然后将膜材料(14,25)沿着相对边缘附接到其背衬,以便完全包围并包覆耐候条纹的行(19,27)。 薄膜材料可以缠绕在桩(233)的两个相邻排(212,214)的一排(214)上并且附接到背衬(218),留下另一排(212)不包围。 薄膜材料(104)可以分开缠绕在相邻的行上并且附着到背衬(106)上,以提供耐候条纹的两个包覆行(100,102)。 通过选择膜材料(14,25,104,216)的孔隙率和桩的密度(10,24,105,233),可以产生具有期望的压缩性和空气和水渗透控制性能的耐候条纹。