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Multi-layered fire door and method for making the same

a fire door and multi-layer technology, applied in the field of fire doors, can solve the problems of increasing manufacturing costs, reducing the flexibility of fire door manufacturers, and heavy doors, and achieve the effects of reducing the complexity and cost of manufacturing wood, improving the insulative quality, or r-value, of fire-rated doors

Inactive Publication Date: 2007-06-07
JELD-WEN
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The solution results in a lighter-weight fire door that meets stringent fire protection standards, reduces manufacturing costs, enhances insulative and sound-dampening qualities, and increases flexibility in producing custom orders, while minimizing susceptibility to warping from moisture.

Problems solved by technology

Not only is such a door extremely heavy, but manufacturing it can be costly and difficult as well.
While using molds to make a paneled door is generally less costly on a high-volume basis than machining reliefs into a door, molding custom-ordered doors can significantly add to the manufacturing expense—in some cases, this expense can become cost-prohibitive.

Method used

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  • Multi-layered fire door and method for making the same
  • Multi-layered fire door and method for making the same
  • Multi-layered fire door and method for making the same

Examples

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Embodiment Construction

[0027] The present invention includes doors, parts of doors, and methods of making doors. One embodiment of the present invention includes a multilayer fire door and methods of making such a door.

[0028]FIG. 1 shows a front plan view of a door according to an embodiment of the invention. A standard-pair wood, paneled fire door 100 includes two separate but adjacent doors, 110 and 210. The door 100 can also be a single-swing door (not shown). As doors 110 and 210 are identical in material respect, only door 110 will be described in detail.

[0029] Door 110 has a major axis and a minor axis. The major axis extends vertically and the minor axis extends horizontally. The door 110 includes an outer peripheral frame including a bottom rail 112, a top rail 114, and a pair of side stiles 116 and 118. The top rail 114 and the bottom rail 112 extend horizontally along the minor axis and generally parallel to one another. The side stiles 116 and 118 extend vertically along the major axis and ge...

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Abstract

A door has a core that includes a porous layer having a thickness and two opposing major surfaces. In one construction, the core also includes three fire-retardant layers, and two of the fire-retardant layers are separated by the porous layer. The porous layer and the fire-retardant layers are coupled together. Other constructions include one or more fire-retardant layers in balanced or unbalanced placement around the porous layer.

Description

NOTICE OF COPYRIGHT PROTECTION [0001] A portion of the disclosure of this patent document and its figures contain material subject to copyright protection. The copyright owner has no objection to the facsimile reproduction by anyone of the patent document, but otherwise reserves all copyrights whatsoever. FIELD OF THE INVENTION [0002] This invention relates to doors in general, and more particularly to a fire door having several fire-retardant layers. BACKGROUND [0003] Fire doors are designed and installed in an attempt to protect lives and property from fire, smoke, and heat by providing a barrier to withstand the fire, smoke, and heat for a period of time. To be labeled or certified as a fire door, a door must fulfill the requirements of certain codes or standards that regulate the construction and installation of such doors. These codes or standards include, among others, the Uniform Building Code (UBC), and codes promulgated by the National Fire Protection Association (NFPA), an...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): E04C2/00B32B5/22B32B7/02B32B21/02E04B1/94E06B3/70E06B5/16
CPCB32B5/22B32B7/02B32B21/02E04B1/942E06B3/7001E06B5/16E06B2003/7023E06B2003/7025B32B3/30B32B21/08B32B2607/00B32B27/12B32B27/302B32B2325/00B32B5/18B32B2266/0228B32B2307/3065B32B7/12B32B2305/026
Inventor CLARK, RANDY JONKOEPKE, GARY LEELEWALLEN, KEITH LYNNOLSON, BRENT DAVIDTRANSUE, WILLIAM ROBERT
Owner JELD-WEN
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