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    • 1. 发明申请
    • METHOD FOR SEALING FENESTRATION OPENINGS
    • 密封加工开口的方法
    • US20130042961A1
    • 2013-02-21
    • US13558379
    • 2012-07-26
    • Gary D. ParsonsMichael D. BoweJanah C. Szewczyk
    • Gary D. ParsonsMichael D. BoweJanah C. Szewczyk
    • B05D7/22B32B37/14
    • 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。
    • 2. 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。