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    • 1. 发明授权
    • Method for sealing flashing joints below flashing
    • 闪烁接头闪烁的方法
    • US08468750B2
    • 2013-06-25
    • US13110027
    • 2011-05-18
    • Howard M. ClearfieldGary D. ParsonsKatherine L. Johnson
    • Howard M. ClearfieldGary D. ParsonsKatherine L. Johnson
    • E04D1/36E04D13/14E04D3/38
    • E04B2/707E04B1/70E04D13/1478
    • Seal a flashing joint on an open frame structure using a first barrier sheet having first and second adhesive strips on opposing primary surfaces proximate to opposing edges and running the length of the first barrier sheet by applying the first barrier sheet over the flashing joint with one edge below the flashing joint and adhering an adhesive strip to a building element below the flashing joint with the first adhesive strip and applying a second barrier sheet overlapping the first barrier sheet and adhere the first and second barrier sheets together using the second adhesive strip. The process can include applying flashing over the first barrier sheet and flashing joint and then overlaying the flashing with the second barrier sheet and sealing the second barrier sheet to both the first barrier sheet and the flashing.
    • 在开放的框架结构上使用第一阻挡片密封闪光接头,该第一阻挡片具有靠近相对边缘的相对的主表面上的第一和第二粘合带,并且通过将第一阻挡片施加在闪光接头上, 在闪光接头下方,并且用第一粘合带将粘合带粘附到闪光接头下面的建筑元件上,并施加与第一阻挡片重叠的第二阻挡片,并使用第二粘合带将第一和第二阻挡片粘合在一起。 该过程可以包括在第一阻挡片和闪光接头上施加闪光,然后将闪光覆盖在第二阻挡片上,并将第二阻挡片密封到第一阻挡片和闪光。
    • 2. 发明申请
    • METHOD FOR SEALING FLASHING JOINTS BELOW FLASHING
    • 用于密封闪电接头的方法
    • US20110296768A1
    • 2011-12-08
    • US13110027
    • 2011-05-18
    • Howard M. ClearfieldGary D. ParsonsKatherine L. Johnson
    • Howard M. ClearfieldGary D. ParsonsKatherine L. Johnson
    • E04B1/68E04B1/92
    • E04B2/707E04B1/70E04D13/1478
    • Seal a flashing joint on an open frame structure using a first barrier sheet having first and second adhesive strips on opposing primary surfaces proximate to opposing edges and running the length of the first barrier sheet by applying the first barrier sheet over the flashing joint with one edge below the flashing joint and adhering an adhesive strip to a building element below the flashing joint with the first adhesive strip and applying a second barrier sheet overlapping the first barrier sheet and adhere the first and second barrier sheets together using the second adhesive strip. The process can include applying flashing over the first barrier sheet and flashing joint and then overlaying the flashing with the second barrier sheet and sealing the second barrier sheet to both the first barrier sheet and the flashing.
    • 在开放的框架结构上使用第一阻挡片密封闪光接头,该第一阻挡片具有靠近相对边缘的相对的主表面上的第一和第二粘合带,并且通过将第一阻挡片施加在闪光接头上, 在闪光接头下方,并且用第一粘合带将粘合带粘附到闪光接头下面的建筑元件上,并施加与第一阻挡片重叠的第二阻挡片,并使用第二粘合带将第一和第二阻挡片粘合在一起。 该过程可以包括在第一阻挡片和闪光接头上施加闪光,然后将闪光覆盖在第二阻挡片上,并将第二阻挡片密封到第一阻挡片和闪光。
    • 4. 发明授权
    • Method for sealing fenestration openings
    • 密封开窗口的方法
    • US08641846B2
    • 2014-02-04
    • US13558379
    • 2012-07-26
    • Gary D. ParsonsMichael D. BoweJanah C. Szewczyk
    • Gary D. ParsonsMichael D. BoweJanah C. Szewczyk
    • B60J1/00E06B3/00E06B5/00E06B7/00E04B2/00E04F13/00
    • E06B7/16E06B1/62E06B2001/628Y10T428/1476
    • Seal a fenestration opening that contains a gap having a width of greater than 1.6 millimeters by providing a dispersion having the following components dispersed in an aqueous phase: (i) a film-forming polymer binder having a glass transition temperature in a range of −100 degrees Celsius to −20 degrees Celsius; (ii) a shear thinning rheology modifier at a concentration sufficient to cause the dispersion to have a Brookfield viscosity greater than 300,000 centiPoise as measured using spindle #3 at 0.3 revolutions per minute; and (iii) optionally, a filler; and then spraying the dispersion directly onto the building elements within the fenestration opening so as to form a continuous coating over the building elements and gap within the fenestration opening; wherein there is an absence of reinforcement or sealing material filling or spanning the gap prior to spraying the dispersion over the gap.
    • 通过提供具有分散在水相中的以下组分的分散体来密封宽度大于1.6毫米的间隙的开窗口:(i)玻璃化转变温度在-100范围内的成膜聚合物粘合剂 摄氏度至-20摄氏度; (ii)剪切稀化流变学改性剂,其浓度足以使得分散体的Brookfield粘度大于每分钟0.3转的纺锤#3测得的30万厘泊; 和(iii)任选的填料; 然后将分散体直接喷洒在开窗开口内的建筑构件上,以便在开窗口内的建筑构件和间隙上形成连续的涂层; 其中在将分散体喷涂在间隙上之前,没有加强或密封材料填充或跨越间隙。