Abstract:
The present invention provides a chlorinated vinyl chloride resin composition for a window frame having excellent properties including moldability, heat resistance, and impact resistance and capable of preventing or reducing deformation such as warpage or damage even after exposure to sunlight for a long time. Provided is a chlorinated vinyl chloride resin composition for a window frame, containing a chlorinated vinyl chloride resin and an infrared reflective pigment.
Abstract:
A patio door assembly includes a panel with a glass unit, and a polymer frame including a bottom member with a sill platform. A support beam is coupleable to the bottom member over the sill platform. The support beam defines a first channel between a top surface of the support beam and a platform, defines a second channel between the platform and the sill platform, a slot defined in the platform of the support beam. A structural insert is insertable in an end of the support beam and can be positioned in the support beam such that the structural insert supports a setting block for the glass unit of the panel to facilitate transferring a weight of the panel to the sill platform. The structural insert inhibits deformation of the frame when the patio door assembly is exposed to a high temperature environment (e.g., a desert environment).
Abstract:
A patio door assembly includes a panel with a glass unit, and a polymer frame including a bottom member with a sill platform. A support beam is coupleable to the bottom member over the sill platform. The support beam defines a first channel between a top surface of the support beam and a platform, defines a second channel between the platform and the sill platform, a slot defined in the platform of the support beam. A structural insert is insertable in an end of the support beam and can be positioned in the support beam such that the structural insert supports a setting block for the glass unit of the panel to facilitate transferring a weight of the panel to the sill platform. The structural insert inhibits deformation of the frame when the patio door assembly is exposed to a high temperature environment (e.g., a desert environment).
Abstract:
An encapsulated glass assembly includes a glass panel and a plastic frame and a clip. The frame has at least three frame sides and has a lower wall portion extending from an outer wall surface along each of the at least three frame sides. The clip has a C-shaped clip channel and is coupled to a first frame side of the frame such that a portion of the panel is retained within the C-shaped clip channel. An optional clip can be coupled to a second frame side. The plastic frame can alternatively include a C-shaped channel on the second frame side, wherein another portion of the panel is retained within the C-shaped channel. An encapsulant is bonded onto the panel, the frame, and the clip to secure the frame to the panel. The encapsulant has a Shore hardness less than the Shore hardness of the frame.
Abstract:
The present invention provides a door frame comprising of two piece units and the method of installment to provide connection between the casing and the frame with a self-alignment system. This is done by a tongue and groove connection and plurality of prefabricated dowels that are specially formed to engage the grooves provided in the frame through the entire attachment area of the frame units together. The door frame units are being assembled and secured together by providing a solid reinforced assembly. In the door frame system of the present invention a strong square joint can be produced by inserting dowels at critical joints which is significantly stronger fastening mechanism than other fastening means such as nails, staples, etc. Low expansion reinforced foam fills the cavities of the frame and creates a solid bond between door system and casing.
Abstract:
The framing device includes an upper lintel (20) and a lower support (22).The lintel (20) with an L-section including a first branch (34) able to cover the upper wall (14), and a second branch (36) able to cover the outer (10) or inner (11) surface of the wall (2).The support (22) has an L-section such that the support (22) comprises a first branch (38) able to cover the lower wall (16), and a second branch (40) able to cover the outer (10) or inner (11) surface of the wall (2).The support (22) and the lintel (20) are molded together.
Abstract:
A window or door system includes a frame adapted to be received within a window or door opening. A window or door unit is disposed on the frame, and a retainer is received by interference fit on either the frame or the window or door unit. The retainer has a portion that extends to engage the other of the frame and window or door unit, and to hold the window or door unit on the frame. The frame can be rectangular, for example, and the retainer may be linear extending along at least one edge of the frame. The frame can include an outwardly opening slot, and the retainer may be received by snap fit in the slot.
Abstract:
Novel structural support framing assemblies and component thereof are described herein for use in residential, commercial, and industrial building construction. Preferred embodiments of the inventive framing assembly include the employment of a variety of structural studs and stud mounts, the studs preferably fabricated of a composite material.
Abstract:
A vehicle window panel assembly and a manufacturing method for such assemblies having a gasket made from a melt-processible material and providing a long-term, failure-resistant bond between the gasket and window panel for retaining the window panel assembly in the vehicle. The gasket material provides a bond which resists both short- and long-term dynamic and static loads exerted on attachment members embedded in the gasket to prevent failure or separation between the gasket member and the window panel assembly for prolonged assembly life and substantial saving to vehicle manufacturers and owners. A method for identifying and selecting the melt-processible material for forming the gasket member is also disclosed.
Abstract:
The window buck is made of extruded irregular shapes consisting of a combination of cellulose and polymer compounded specifically to be used in connection with building walls of poured concrete. The combination desirably is a mixture of approximately 70% cellulose and approximately 30% polymer. The cellulose is preferably sawdust, and the polymer preferably is polyethylene.