Door rail system
11613923 · 2023-03-28
Assignee
Inventors
Cpc classification
E06B3/72
FIXED CONSTRUCTIONS
E06B2003/7046
FIXED CONSTRUCTIONS
E06B3/36
FIXED CONSTRUCTIONS
E06B3/305
FIXED CONSTRUCTIONS
E06B3/306
FIXED CONSTRUCTIONS
International classification
Abstract
An improved door rail system for holding a panel, such as a glass panel, is presented. The door rail system includes a core rail and clamping rails having a wedging geometry so that when the clamping rails are actuated with respect to the core rail, clamping force is applied to the glass panel to secure the panel within the core rail. The improved door rail system accommodates panels of varying thickness, features the use of modular side covers and incorporates a door to door jamb adjustment device allowing for angular adjustments.
Claims
1. A rail system for securing a panel, comprising: a core rail having a clamping channel, wherein the clamping channel is defined by mutually opposed inclined surfaces; two clamping rails disposed mutually opposed within the clamping channel, each clamping rail having an inclined surface which bears upon one of the mutually opposed inclined surfaces of the clamping channel, and, each clamping rail being configured to bear upon a face of a panel to be secured; a pulling rail disposed within the clamping channel, the pulling rail being at least partially disposed between and, in contact with, the clamping rails and supporting an edge of the panel to be secured; actuation hardware configured to move the two clamping rails relative to the core rail in a driven direction; and wherein the core rail includes at least one groove and at least one tongue disposed on an exterior face of the core rail, which interface with at least one tongue and at least one groove of at least one side cover.
2. The rail system for securing a panel of claim 1, further including an accessory channel disposed under the clamping channel.
3. The rail system for securing a panel of claim 2, wherein the accessory channel includes a dovetail for mounting accessories within the accessory channel.
4. The rail system for securing a panel of claim 1, wherein the at least one groove of the core rail and at least one side cover has a semicircular inside perimeter and includes a plurality of protrusions which extend inwardly from the semicircular inside perimeter.
5. The rail system for securing a panel of claim 4, wherein the at least one tongue of the core rail and at least one side cover has a semicircular outside perimeter configured to contact only the protrusions of the at least one groove.
6. The rail system for securing a panel of claim 1, wherein panels to be secured of thicknesses within a range of about ⅜ inch to about ¼ inch can be installed without changing the core rail, the clamping rails, and the actuation hardware.
7. The rail system for securing a panel of claim 1, wherein the at least on side cover includes weather seal retention features at two or more different horizontal locations, wherein the at least one side cover can accommodate panels to be secured of different thickness with the same weather seals.
8. The rail system for securing a panel of claim 1, further including a shear pin joint between each clamping rail and the core rail wherein the shear pin joint comprises a shear pin disposed in each clamping rail which interfaces with a slot in the core rail, wherein each clamping rail is prevented from sliding out of the core rail.
9. The rail system for securing a panel of claim 8, wherein the slot in the core rail is elongated in the driven direction such that the shear pin will not contact a bottom of the slot upon actuation of the actuation hardware.
10. The rail system for securing a panel of claim 1, further including an alignment device, the alignment device comprising: an interface member, an angular adjustment member, and, an axial adjustment member; the angular adjustment member being pivotally connected to the interface member and connectable to a door pivot; the axial adjustment member being connected to the interface member such that the interface member is axially moveable inwardly and outwardly with respect to the axial adjustment member; means for attaching interface member to the core rail; wherein, when the alignment device is installed in the core rail, the interface member is slidable within the core rail and the axial adjustment member is fixed to the core rail; wherein, when the alignment device is installed in the core rail and the angular adjustment member is connected to a door pivot, the core rail can be moved axially inward and outward with respect to the door pivot by causing the interface member to move relative to the axial adjustment member; and wherein, set screws installed in the core rail are configured to bear against an edge of the angular adjustment member and to be equidistantly spaced about the door pivot, such that adjustment of the set screws angularly moves the core rail with respect to the door pivot.
11. The rail system for securing a panel of claim 10, wherein the means for attaching the interface member to the core rail comprises a dovetail slot in the interface member which engages with a dovetail in the door rail.
12. The rail system for securing a panel of claim 10, wherein the angular alignment device further includes a detent on an end of the angular adjustment member that interfaces with a spring loaded plunger in the interface member, wherein the detent is configured to indicate a zero degree setting of the alignment device.
13. The rail system for securing a panel of claim 1, wherein the mutually opposed inclined surfaces of the core rail and the inclined surface of each clamping rail are inclined relative to the driven direction so that the clamping members move inwardly in a direction transverse to the driven direction upon being moved in the driven direction by the actuation hardware, wherein clamping force is applied to the faces of the panel to be secured.
14. The rail system for securing a panel of claim 1, wherein the at least one side cover includes one or more receptacles configured to receive a prong formed on an end cap, wherein the end cap closes out an end of the rail assembly.
15. A rail system for securing a panel, comprising: a core rail having a clamping channel, wherein the clamping channel is defined by mutually opposed inclined surfaces; two clamping rails disposed mutually opposed within the clamping channel, each clamping rail having an inclined surface which bears upon one of the mutually opposed inclined surfaces of the clamping channel, and, each clamping rail being configured to bear upon a face of a panel to be secured; a pulling rail disposed within the clamping channel, the pulling rail being at least partially disposed between and, in contact with, the clamping rails and supporting an edge of the panel to be secured; actuation hardware configured to move the two clamping rails relative to the core rail in a driven direction; and further including a shear pin joint between each clamping rail and the core rail wherein the shear pin joint comprises a shear pin disposed in each clamping rail which interfaces with a slot in the core rail, wherein each clamping rail is prevented from sliding out of the core rail.
16. The rail system for securing a panel of claim 15, wherein the slot in the core rail is elongated in the driven direction such that the shear pin will not contact a bottom of the slot upon actuation of the actuation hardware.
17. The rail system for securing a panel of claim 15, further including an accessory channel disposed under the clamping channel.
18. The rail system for securing a panel of claim 17, wherein the accessory channel includes a dovetail for mounting accessories within the accessory channel.
19. The rail system for securing a panel of claim 15, wherein the core rail includes at least one groove and at least one tongue disposed on an exterior face of the core rail, which interface with at least one tongue and at least one groove of at least one side cover.
20. The rail system for securing a panel of claim 19, wherein the at least one groove of the core rail and at least one side cover has a semicircular inside perimeter and includes a plurality of protrusions which extend inwardly from the semicircular inside perimeter.
21. The rail system for securing a panel of claim 20, wherein the at least one tongue of the core rail and at least one side cover has a semicircular outside perimeter configured to contact only the protrusions of the at least one groove.
22. The rail system for securing a panel of claim 19, wherein the at least on side cover includes weather seal retention features at two or more different horizontal locations, wherein the at least one side cover can accommodate panels to be secured of different thickness with the same weather seals.
23. The rail system for securing a panel of claim 19, wherein the at least one side cover includes one or more receptacles configured to receive a prong formed on an end cap, wherein the end cap closes out an end of the rail assembly.
24. The rail system for securing a panel of claim 15, wherein panels to be secured of thicknesses within a range of about ⅜ inch to about ¼ inch can be installed without changing the core rail, the clamping rails, and the actuation hardware.
25. The rail system for securing a panel of claim 15, further including an alignment device, the alignment device comprising: an interface member, an angular adjustment member, and, an axial adjustment member; the angular adjustment member being pivotally connected to the interface member and connectable to a door pivot; the axial adjustment member being connected to the interface member such that the interface member is axially moveable inwardly and outwardly with respect to the axial adjustment member; means for attaching interface member to the core rail; wherein, when the alignment device is installed in the core rail, the interface member is slidable within the core rail and the axial adjustment member is fixed to the core rail; wherein, when the alignment device is installed in the core rail and the angular adjustment member is connected to a door pivot, the core rail can be moved axially inward and outward with respect to the door pivot by causing the interface member to move relative to the axial adjustment member; and wherein, set screws installed in the core rail are configured to bear against an edge of the angular adjustment member and to be equidistantly spaced about the door pivot, such that adjustment of the set screws angularly moves the core rail with respect to the door pivot.
26. The rail system for securing a panel of claim 25, wherein the means for attaching the interface member to the core rail comprises a dovetail slot in the interface member which engages with a dovetail in the door rail.
27. The rail system for securing a panel of claim 25, wherein the angular alignment device further includes a detent on an end of the angular adjustment member that interfaces with a spring loaded plunger in the interface member, wherein the detent is configured to indicate a zero degree setting of the alignment device.
28. The rail system for securing a panel of claim 15, wherein the mutually opposed inclined surfaces of the core rail and the inclined surface of each clamping rail are inclined relative to the driven direction so that the clamping members move inwardly in a direction transverse to the driven direction upon being moved in the driven direction by the actuation hardware, wherein clamping force is applied to the faces of the panel to be secured.
29. A rail system for securing a panel, comprising: a core rail having a clamping channel, wherein the clamping channel is defined by mutually opposed inclined surfaces; two clamping rails disposed mutually opposed within the clamping channel, each clamping rail having an inclined surface which bears upon one of the mutually opposed inclined surfaces of the clamping channel, and, each clamping rail being configured to bear upon a face of a panel to be secured; a pulling rail disposed within the clamping channel, the pulling rail being at least partially disposed between and, in contact with, the clamping rails and supporting an edge of the panel to be secured; actuation hardware configured to move the two clamping rails relative to the core rail in a driven direction; and further including an alignment device, the alignment device comprising: an interface member, an angular adjustment member, and, an axial adjustment member; the angular adjustment member being pivotally connected to the interface member and connectable to a door pivot; the axial adjustment member being connected to the interface member such that the interface member is axially moveable inwardly and outwardly with respect to the axial adjustment member; means for attaching interface member to the core rail; wherein, when the alignment device is installed in the core rail, the interface member is slidable within the core rail and the axial adjustment member is fixed to the core rail; wherein, when the alignment device is installed in the core rail and the angular adjustment member is connected to a door pivot, the core rail can be moved axially inward and outward with respect to the door pivot by causing the interface member to move relative to the axial adjustment member; and wherein, set screws installed in the core rail are configured to bear against an edge of the angular adjustment member and to be equidistantly spaced about the door pivot, such that adjustment of the set screws angularly moves the core rail with respect to the door pivot.
30. The rail system for securing a panel of claim 29, wherein the means for attaching the interface member to the core rail comprises a dovetail slot in the interface member which engages with a dovetail in the door rail.
31. The rail system for securing a panel of claim 29, wherein the angular alignment device further includes a detent on an end of the angular adjustment member that interfaces with a spring loaded plunger in the interface member, wherein the detent is configured to indicate a zero degree setting of the alignment device.
32. The rail system for securing a panel of claim 29, further including an accessory channel disposed under the clamping channel.
33. The rail system for securing a panel of claim 32, wherein the accessory channel includes a dovetail for mounting accessories within the accessory channel.
34. The rail system for securing a panel of claim 29, wherein the core rail includes at least one groove and at least one tongue disposed on an exterior face of the core rail, which interface with at least one tongue and at least one groove of at least one side cover.
35. The rail system for securing a panel of claim 34, wherein the at least one groove of the core rail and at least one side cover has a semicircular inside perimeter and includes a plurality of protrusions which extend inwardly from the semicircular inside perimeter.
36. The rail system for securing a panel of claim 35, wherein the at least one tongue of the core rail and at least one side cover has a semicircular outside perimeter configured to contact only the protrusions of the at least one groove.
37. The rail system for securing a panel of claim 34, wherein the at least on side cover includes weather seal retention features at two or more different horizontal locations, wherein the at least one side cover can accommodate panels to be secured of different thickness with the same weather seals.
38. The rail system for securing a panel of claim 29, wherein panels to be secured of thicknesses within a range of about ⅜ inch to about ¼ inch can be installed without changing the core rail, the clamping rails, and the actuation hardware.
39. The rail system for securing a panel of claim 29, further including a shear pin joint between each clamping rail and the core rail wherein the shear pin joint comprises a shear pin disposed in each clamping rail which interfaces with a slot in the core rail, wherein each clamping rail is prevented from sliding out of the core rail.
40. The rail system for securing a panel of claim 39, wherein the slot in the core rail is elongated in the driven direction such that the shear pin will not contact a bottom of the slot upon actuation of the actuation hardware.
41. The rail system for securing a panel of claim 29, wherein the mutually opposed inclined surfaces of the core rail and the inclined surface of each clamping rail are inclined relative to the driven direction so that the clamping members move inwardly in a direction transverse to the driven direction upon being moved in the driven direction by the actuation hardware, wherein clamping force is applied to the faces of the panel to be secured.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(42) The present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which preferred embodiments of the invention are shown. The invention however, may be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein. Rather these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art. Like numbers refer to like elements throughout.
(43) Wherever used, the terms “comprises,” “comprising,” “includes,” “including,” “has,” “having,” or any other variation thereof, are intended to cover a non-exclusive inclusion. For example, processes, methods, articles, or apparatuses that comprise a list of elements are not necessarily limited to only those elements but may include other elements not expressly listed or inherent to such processes, methods, articles, or apparatuses. Further, unless expressly stated otherwise, the word “or” means the inclusive “or.” For example, a condition A or B is satisfied by any one of the following: A is true (or present) and B is false (or not present), A is false (or not present) and B is true (or present), both A and B are true (or present).
(44) With reference to
(45) With reference to
(46) In the embodiment shown in
(47) The pulling rail 16 includes one or more threaded holes 52 spaced along a longitudinal length 54 of the pulling rail 16. (See
(48) With reference to
(49) With reference to
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(51) With reference to
(52) With reference to
(53) Similarly, for the ⅝-inch and ¾-inch thick panels, the weather seals 60 are installed in the lower weather seal installation channels 68. The relatively inward facing position of the lower weather seal installation channels 68, with respect to the faces 42 of the panels 32, allows the lower weather seal installation channel 68 to accommodate both ⅝-inch and ¾-inch thickness panels, again with a sufficiently compressible weather seal 60.
(54) With reference to
(55) With particular reference to
(56) In certain embodiments, one or more protrusions 76 may be formed on the interior perimeter of one or more grooves 72. In the exemplary embodiment of
(57) With reference to
(58) With reference to
(59) The core rail interface member 86 includes a dovetail slot 98, a pivot cylinder 106, a threaded hole 112 at an aft end 114, and a bore 118 at a forward end 116 and an access slot 132. The angular adjustment member 88 has an aft end 122 and a forward end 120. A detent 108 is provided at the forward end 120 and a clearance slot 124 is provided at the aft end 122. At a center of the angular adjustment member 88 is a bore 110 configured to accept the pivot bushing 90. The end cap 92 includes a pocket 126 that is configured to accept the head of the axial adjustment screw 94 and has a clearance hole 128 in an aft side 130, which allows a tool (T-handle wrench) to access the head of the axial adjustment bolt. The end cap 92 also includes a pair of through holes 132, which allow the end cap 92 to be fixed to the core rail 12 via screws 138.
(60) The angular alignment device 84 is assembled by pressing the pivot bushing 90 into the bore 110 of the angular adjustment member 88. The angular adjustment member 88 and pivot bushing 90 are then pressed over the pivot cylinder 106 of the core rail interface member 86. Subsequently, the spring-loaded plunger 96 is inserted and retained in the hole 118 located in the forward end 116 of the core rail interface member 86. The spring-loaded plunger 96 is inserted until an end of the plunger engages the detent 108 in the angular adjustment member 88. The detent 108 indicates when the angular adjustment member 88 is in a zero degree or centered position. Angular adjustment causes the detent 108 to move away from the end of the spring-loaded plunger 96. If re-centering of the angular adjustment member 88 is desired, an installer may find the centered or neutral position of the angular adjustment member 88 by moving the member through its range of motion until the detent 108 again engages the end of the spring-loaded plunger 96.
(61) Assembly of the angular alignment device 84 is completed by partially threading the axial adjustment screw 94 into the threaded hole 112 at the aft end 114 of the alignment device 84 and pressing the end cap 92 over the head of the screw 94.
(62) The angular alignment device 84 is installed in a core rail as follows. The core rail interface member 86 interfaces with the core rail 12 by means of a sliding dovetail joint 102. (See
(63) The angular alignment device 84 may also be equipped with an axial alignment limiting feature which comprises a limiting screw 153, (see
(64) Door rails in accordance with door rail system 10 of the present invention may be installed as both upper and lower door rails. Therefore, the angular alignment device 84 may be installed in one or both of the upper or lower door rails as may be present in any particular door installation. In either case, door pivots 145 of a door jamb 147 which support the door are vertically aligned with the pivot cylinder 106 of the core rail interface member 86. Axial alignment, i.e., adjusting the door inward or outward with respect to a door pivot 145 is accomplished with the axial adjustment bolt 94, which, in the exemplary embodiment, is a socket head cap screw. A commercially available T-Handle adjustment tool is used to rotate the axial adjustment screw 94. Access to the head of the bolt is made via the access hole 128 formed in the end cap 92. An exemplary installation of the door rail system 10 is shown in
(65) Angular adjustment of a door rail is accomplished by rotating the set screws 140. The set screws 140 bear against a side 142 of the angular adjustment member 88. The set screws are spaced apart on both sides of the pivot bore 110 so as to allow the door rail to be angularly adjusted relative to a door pivot 145 in either a clockwise or counterclockwise direction. In other embodiments, the set screws 140 may be located on opposite sides of the angular adjustment member 88 and spaced together on the same side of the pivot bore 110 (e.g., directly across from one another) so as to allow such angular adjustment. However, locating the set screws 140 on the same side of angular adjustment member 88 allows for angular adjustment to be accomplished without having to switch from one side of the door to the other. In various embodiments, one of the set screws 140 may be replaced by a spring, including a plunger or other spring-loaded device, that exerts a force on the angular adjustment member 88 sufficient to maintain the angular adjustment member 88 in the desired angular position when the door is closed.
(66) With particular reference to
(67) For receipt of each shear pin 144 disposed in each clamping rail 14, a slot 148 is formed in right and left walls of the clamping channel 20 of the core rail 12. The width 150 (see
(68) With reference to
(69) The core rail 12, clamping rails 14 and pulling rails 16 may be made from variety of metallic materials with aluminum extrusions and castings generally being preferred for their combination of strength, light weight and ease of manufacturing. Structural plastics may also be suitable. The cladding may comprise a variety of materials with brushed or polished stainless steel, powder coated or painted steel, and anodized, powder coated or painted aluminum, being the most common.
(70) It will be appreciated that an improved door rail system featuring: the ability to accommodate multiple thicknesses of panels, modular side covers, an angular adjustment device, and a shear pin connection between the core rail and the pulling rails has been provided. While the present invention has been described with regards to particular embodiments, it is recognized that additional variations of the present invention may be devised without departing from the inventive concept.