Metal Flake-Surfaced Roofing Materials
    2.
    发明申请
    Metal Flake-Surfaced Roofing Materials 审中-公开
    金属片状浮雕屋面材料

    公开(公告)号:US20090291260A1

    公开(公告)日:2009-11-26

    申请号:US12471866

    申请日:2009-05-26

    IPC分类号: E04D1/00

    摘要: The present invention relates to roofing materials for roofs, sidewalls and other exterior surfaces exposed to the weather such as, but not limited to, asphaltic and non-asphaltic roofing materials, wherein metal flakes cover up to 100% of the weathering surface of the roofing materials. The metal flakes may be applied to the surface in striations or bands separated by conventional roofing granules or may be blended with conventional roofing granules. The metal flakes may have antimicrobial potential and may provide resistance to microbial growth to roofing materials when dispersed in or applied thereto. The present invention also relates to methods of making the roofing materials.

    摘要翻译: 本发明涉及用于屋顶,侧壁和暴露于天气的其它外表面的屋顶材料,例如但不限于沥青和非沥青屋面材料,其中金属薄片覆盖屋顶的风化表面的100% 材料 金属薄片可以用常规屋顶颗粒分开的条纹或带施加到表面,或者可以与常规屋顶颗粒混合。 金属薄片可能具有抗微生物潜力,并且当分散在其中或施加于其上时可以提供对屋顶材料的微生物生长的抵抗力。 本发明还涉及制作屋顶材料的方法。

    Energy saving insulated shingle and method of manufacturing same
    9.
    发明授权
    Energy saving insulated shingle and method of manufacturing same 有权
    节能隔热板及其制造方法

    公开(公告)号:US08763339B2

    公开(公告)日:2014-07-01

    申请号:US12363478

    申请日:2009-01-30

    摘要: An energy saving insulated roofing shingle and related method of manufacturing. One embodiment of the shingle has an insulator attached to, or formed as part of, the interior surface of an outer layer across a portion of the headlap area about equal to the designed exposure surface area of the installed shingle. The insulation reduces the heat absorbed by the shingle and transmitted into the deck that in turn heats the attic space. The disclosed principles reduce the heat load directed into a building from the sun. In addition, the thickness of the insulation under the shingle nailing area may be minimized, thereby allowing for the normal asphalt shingle surfaces to lay against each other. Moreover, to reduce the overall shingle thickness, the insulation could replace all or part of the backsurfacing materials applied to the back of shingles in the location where the insulation is added. Additionally, asphalt applied to the back of the shingle could be reduced to accommodate insulation thickness.

    摘要翻译: 节能绝缘屋顶瓦及相关制造方法。 板的一个实施例具有连接到外层的内表面的绝缘体的一部分,或者形成为头顶区域的一部分的大致等于所设置的瓦的设计的暴露表面积的一部分。 隔热层减少了瓦片吸收的热量,并传递到甲板上,从而加热阁楼空间。 所公开的原理减少了从太阳进入建筑物的热负荷。 此外,瓦楞钉钉区域下的绝缘体的厚度可以被最小化,从而允许普通的沥青瓦板彼此相对铺设。 此外,为了减少整体瓦楞厚度,绝缘可以替代在添加绝缘的位置施加到瓦the背面的所有或部分后表面材料。 此外,施加到木瓦背面的沥青可以减少以适应绝缘层厚度。

    ENERGY SAVING INSULATED SHINGLE AND METHOD OF MANUFACTURING SAME
    10.
    发明申请
    ENERGY SAVING INSULATED SHINGLE AND METHOD OF MANUFACTURING SAME 有权
    节能绝缘片及其制造方法

    公开(公告)号:US20100192499A1

    公开(公告)日:2010-08-05

    申请号:US12363478

    申请日:2009-01-30

    IPC分类号: E04D1/28 B32B37/02

    摘要: Disclosed herein are an energy saving insulated roofing shingle and related method of manufacturing. One embodiment of the shingle has an insulator attached to, or formed as part of, the interior surface of an outer layer across a portion of the headlap area about equal to the designed exposure surface area of the installed shingle. The insulation reduces the heat absorbed by the shingle and transmitted into the deck that in turn heats the attic space. The disclosed principles reduce the heat load directed into a building from the sun. In addition, the thickness of the insulation under the shingle nailing area may be minimized, thereby allowing for the normal asphalt shingle surfaces to lay against each other. Moreover, to reduce the overall shingle thickness, the insulation could replace all or part of the backsurfacing materials applied to the back of shingles in the location where the insulation is added. Additionally, asphalt applied to the back of the shingle could be reduced to accommodate insulation thickness.

    摘要翻译: 本文公开了一种节能绝缘屋顶瓦和相关的制造方法。 板的一个实施例具有连接到外层的内表面的绝缘体的一部分,或者形成为头顶区域的一部分的大致等于所设置的瓦的设计的暴露表面积的一部分。 隔热层减少了瓦片吸收的热量,并传递到甲板上,从而加热阁楼空间。 所公开的原理减少了从太阳进入建筑物的热负荷。 此外,瓦楞钉钉区域下的绝缘体的厚度可以被最小化,从而允许普通的沥青瓦板彼此相对铺设。 此外,为了减少整体瓦楞厚度,绝缘可以替代在添加绝缘的位置施加到瓦the背面的所有或部分后表面材料。 此外,施加到木瓦背面的沥青可以减少以适应绝缘层厚度。