This invention relates to a connector for joining structural members. In particular, the connector of the present invention has particular application as a sheet metal hanger for joining multiple truss and framing members.
In the particular application for joining multiple members, the framing members may be either standard dimension lumber or wood trusses and truss girders. Specifically, the connection is most typically made at the juncture of the supporting truss girder or framing header and one or two hip framing members or wood trusses or a hip truss or wood framing member and a jack framing member or jack truss; or two hip and two jack trusses or four wood framing members.
Prior art U.S. Pat. No. 5,253,465, granted to Tyrell T. Gilb teaches a sheet metal connector for connecting multiple truss connections and is herein incorporated by reference and made a part of this application. (See drawing
The improved connector and connection of the present invention provides a connector with a seat member that is stronger and less likely to deflect under load conditions. The seat member is less likely to deflect because it is stiffened by first and second reinforcing flange members that extend across the entire seat member, by a major embossment in the seat and by a third back wall member.
The present invention for holding four trusses or four framing members is lighter than commercially available hangers for holding four trusses of four framing members; yet, the present invention holds greater loads.
The present invention, unlike the presently commercially available hanger, requires no welding or painting and is easier and less expensive to manufacture.
The present invention is easier to install than the presently available commercial hanger because the truss or framing member arms are initially more flexible and can, unlike the commercially available hanger, be field bent to accommodate some initial misalignment of the trusses or framing members being supported.
The improved connector of the present invention, when used as a multiple framing member or truss connector is capable of making several separate connections: viz.; (A). joining to a support girder, (1) a right hip truss and a jack truss, (2) a left hip truss and a jack truss, (3) a right and left hip truss (4) two jack trusses, (5) a left hip truss and two jack trusses, or (6) right and left hip trusses and two jack trusses; or (B) joining to a support header, (1) a right hip framing member and a jack framing member, (2) a left hip framing member and a jack framing member, (3) a right and left hip framing member, (4) two jack framing members, (5) a left hip framing member and two jack framing members, or (6) right and left hip framing members and two jack framing members.
Another advantage of the present invention when used as a multiple truss hanger connector or a multiple framing member hanger connector is that the seat of the present connector better resists deflection.
Referring to
In a second form of the present invention, building structural hanger 15 includes the elements described in the above paragraph, and in addition includes: a third flange arm 85 having an end edge 88 integrally attached to end portion 97 of first L-shaped flange arm 83 along a substantial portion of bend line 93 and third flange arm 85 extends a selected distance to distal end 129, and third flange arm 85 is bent along bend line 93 forming an acute angle 111 with end portion 97 of first L-shaped flange arm 83.
As set forth above, due to the unique construction of the building structural hanger 15, the same hanger 15 can hold 1 or 2 hangers. While this is somewhat inefficient, yet this factor can be an important time factor to a contractor on the job who finds that custom hangers for holding one, two or even three trusses were not delivered to the job site. To accommodate less than 4 trusses, only minor on site bending need be done to fashion an acceptable hanger. The structure for a hanger capable of holding three trusses is as follows and includes: a second reinforcing flange 68 extending along third edge 64 of seat member 16 from adjacent second virtual corner 66, the second reinforcing flange 68 extends upwardly from seat member 16 to a maximum selected height 70; and second flange arm 84 having a distal end edge 130 and a proximal end portion 98 having a proximal end bend edge 91 is connected to third back wall member 81 along second side edge 90 of third backwall member 81 and bent at an angle 110 from third back wall member 81.
The preferred form of the invention is capable of attaching four mono trusses to a supporting girder as shown in
As previously stated, the building structural hanger 15 of the present invention is strong yet light due to the structure set forth above. Structural design factors contributing to these advantageous attributes for constructing a building structural hanger 15 include the following: seat member 16 is formed with a substantial portion 131 of front edge 114 extending a selected distance 132 beyond forward side edges 133 and 134 of first and second side members 18 and 21, an embossment 113 in seat member 16 extending a substantial portion of the length of seat member 16 adjacent and in a non linear line in general conformity with the front edge 114 of seat member 16; and building structural hanger 15 is constructed from a single contiguous sheet of sheet metal.
Preferably building structural hanger 15 as previously described is constructed so that first and second reinforcing flange members 67 and 68 are integrally attached to the third back wall member 81.
Preferably building structural hanger 15 as previously described is constructed so that fastener opening means 31 in first and second L-shaped flange arms 83 and 84 and fastener opening means 31 in third and fourth flange arms 85 and 86 are obround in shape permitting slant insertion of fasteners therethrough.
As shown in
As shown in
Referring to
The truss connection 1 for two supported trusses is described as follows: The truss connection 1 includes: first flange arm 83 is L-shaped and proximal end portion 97 is formed with a distal bend edge 93 spaced from and parallel to proximal end bend edge 87; third flange arm 85 having a distal end edge 129 and a proximal bend edge 88 integrally attached to distal bend edge 93 of first L-shaped flange arm 83, third flange arm 85 being bent along proximal end edge 88 forming an acute angle 111 with proximal end portion 97 of first L-shaped flange arm 83, first hip truss 5 including a wood bottom chord 6 having a bottom edge 7, an end face 55 and parallel first and second sides 8 and 9, bottom edge 7 of first hip truss 5 is mounted on seat 16 of building structural hanger 15 with end face 55 of first hip truss 5 mounted adjacent third edge 64 of seat member 16 and with second side 9 of wood bottom chord 6 mounted flush with face 139 of flange arm 85, and first arm fasteners 100 inserted through third flange arm 85 into wood bottom chord 6.
An alternate configuration for holding two trusses with the trusses spaced on either side of the mid line of the connector 15 is briefly described and includes the following elements: a second reinforcing flange 68 extending along third edge 64 of seat member 16 from adjacent second virtual corner 66, second reinforcing flange 68 extending upwardly from seat member 16 to a maximum selected height 70; a second flange arm 84 having a distal end edge 130 and a proximal end portion 98 having a proximal end bend edge 91 connected to third back wall member 81 along second side edge 90 of third backwall member 81 and bent at an angle 110 from third back wall member 81; a second jack truss 38 including a wood bottom chord 39 having a bottom edge 40, an end face 57 and parallel first and second sides 41 and 42; bottom edge 40 of second jack truss 38 is mounted on seat 16 of building structural hanger 15 with end face 57 of second jack truss 38 mounted adjacent and spaced from third edge 64 of seat member 16 and with second side 42 of wood bottom chord 39 mounted flush with face 136 of second flange arm 84, and third arm fasteners 102 inserted through second flange arm 84 into wood bottom chord 39.
Another alternate connection is described below in which the connection includes two jack trusses and a single hip truss and further includes: a first flange arm 83 which is L-shaped and has a proximal end portion 97 formed with a distal bend edge 93 spaced from and parallel to the proximal end bend edge 87, a third flange arm 85 bent along the proximal end edge 88 forming an acute angle 111 with the proximal end portion 97 of first L-shaped arm 83, a first hip truss 5 including a wood bottom chord 6 having a bottom edge 7, an end face 55 and parallel first and second sides 8 and 9, a bottom edge 7 of first hip truss 5 is mounted on seat 16 of building structural hanger 15 with end face 55 of first hip truss 5 mounted adjacent third edge 64 of seat member 16 and with second side 9 of wood bottom chord 6 mounted flush with face 139 of third flange arm 85, and first arm fasteners 100 inserted through third flange arm 85 into wood bottom chord 6.
Still another alternate connection is described below in which the connection includes two hip trusses and a single jack truss and further includes: a second L-shaped flange arm 84 having a distal end edge 130 and a proximal end portion 98 is formed with a distal bend edge 96 spaced from and parallel to proximal end bend edge 91 connected to third backwall member 81; a fourth flange arm 86 having a distal end edge 138 and a proximal bend edge 92 integrally attached to distal bend edge 96 of second L-shaped flange arm 84, a fourth flange arm 86 being bent along proximal end edge 96 forming an acute angle 112 with proximal end portion 98 of second L-shaped flange arm 84, a second hip truss 33 having a wood bottom chord 34 having a bottom edge 35 placed on seat member 16 and an end face 137 positioned adjacent third edge 64 of seat member 16 and in registration with face 140 of fourth flange arm 86 and; fourth arm fasteners 103 inserted through fourth flange arm 86 and into wood bottom chord 34 of second hip jack truss 33.
A still further alternate connection is described below in which the connection includes two hip trusses and two jack trusses and further includes: a second arm 84 having an L-shape having a distal end edge 130 and a proximal end portion 98 formed with a distal bend edge 96 spaced from and parallel to proximal end bend edge 91 connected to third backwall member 81; a fourth flange arm 86 having a distal end edge 138 and a proximal bend edge 92 integrally attached to distal bend edge 96 of second L-shaped flange arm 84, a fourth flange arm 86 bent along proximal end edge 96 forming an acute angle 112 with proximal end portion 98 of second L-shaped flange arm 84; a second hip truss 33 having a wood bottom chord 34 having a bottom edge 35 placed on seat member 16 and an end face 137 positioned adjacent third edge 64 of seat member 16 and in registration with face 140 of fourth flange arm 86 and; fourth arm fasteners 103 inserted through fourth flange arm 86 and into wood bottom chord 34 of second hip jack truss 33.
Preferably the connections 1 include building structural hangers 15 which have the fastener opening means 31 in the first and second L-shaped flange arms 83 and 84 and fastener openings 31 in the third and fourth flange arms 85 and 86 which are obround in shape permitting slant insertion of fasteners therethrough.
Another alternate form of the truss connection of the present invention is best shown in
A further alternate truss connection of the present invention is shown in
As shown in
In a connector 15 formed according to the present invention, first and second reinforcing flanges 67 and 68 are connected to the seat 16. The first reinforcing flange 67 is connected to a portion of the third edge 64 of the seat member 16 near the first corner 65, and the first reinforcing flange 67 may extend around the first corner 65 to connect to a portion of the first edge 62. The second reinforcing flange 68 is connected to a portion of the third edge 64 of the seat member 16 near the second corner 66, and the second reinforcing flange 68 may extend around the second corner 66 to connect to a portion of the second edge 63.
The first and second reinforcing flanges 67 and 68 extend upwardly from the seat member 16 to maximum selected heights 69 and 70, respectively.
As shown in
In a connector 15 formed according to the present invention, a first side member 18 is connected to a portion of the first edge 62 of the seat member 16. This first side member 18 extends upwardly from the seat member 16 to a maximum selected height 71 that is substantially greater than the maximum selected height 69 of the first reinforcing flange 67. The first side member 18 and the first reinforcing flange 67 are distinct members.
In a connector 15 formed according to the present invention, a second side member 21 is connected to a portion of the second edge 63 of the seat member 16. This second side member 21 extends upwardly from the seat member 16 to a maximum selected height 72 that is substantially greater than the maximum selected height 70 of the second reinforcing flange 68. The second side member 21 and the second reinforcing flange 68 are distinct members.
As best shown in
The preferred hanger 15 formed according to the present invention for making a multiple framing member connection also includes: a seat member 16, as previously mentioned, for receiving the bottom edges 7 and 12 of the first hip truss 5 and the first jack truss 10 respectively; a first backwall member 17 formed to register with this front face 4 of the support girder 2; a first side member 18 integrally connected to the first backwall member 17 at a right angle 19 and integrally connected to the seat member 16; a second backwall member 20 spaced from the first backwall member 17 formed for registration with the front face 4 of the support girder 2; a second side member 21 integrally connected to the second backwall member 20 at a right angle 22, and integrally connected to the seat member 16; and a third backwall member 81 having a first face 82 integrally connected to the seat member 16 through reinforcing flanges 7 and 68 and extending upwardly therefrom and located adjacent the end face 53 of first jack truss 10 and in registration with the front face 4 of the support girder 2.
Still referring to
Referring to 3, first fasteners 27 insert through the first backwall member 17 into the support girder 2, second fasteners 28 insert through the second backwall member 20 into the support girder 2, third fasteners 29 insert through the third back wall member 81 into the support girder 2, first arm fasteners 100 insert through the third flange arm 85 into the bottom chord 6 of first hip truss 5; second arm fasteners 101 insert through first L-shaped arm 83 into bottom chord 11 of the first jack truss 10, third arm fasteners 102 insert through second L-shaped flange arm 84 into bottom chord 39 of second jack truss 38 and fourth arm fasteners 103 insert through flange arm 86 and into bottom chord 34 of second hip truss 33 to complete the multiple truss connection 1.
Referring to
Still referring to
For ease in making the installation, fastener opening means 31 are formed in the first backwall member 17, the second backwall member 20, the first L-shaped flange arm 83, the second L-shaped flange arm 84, the third flange arm 85 and the fourth flange arm 86 for permitting slant angle fastening.
Another multiple truss connection 32 is illustrated in
The only difference between sheet metal hanger 15 illustrated in
Preferred hanger 15 in
Referring to
The bottom edges 7, 12, 40, and 35, of bottom chords 6, 11, 39, and 34 respectively rest on seat 16 of sheet metal hanger 15. First and second L-shaped flange arms 83 and 84 are connected to third backwall member 81 at angles of approximately 70° as indicated by angles 109 and 110. Third and fourth flange arms 85 and 86 are connected to L-shaped flange arms 83 and 84 at angles of approximately 45° as indicated by angles 111 and 112. Angled pluralities of fasteners 100, 101, 102 and 103 connect bottom chords 6, 11, 39, and 34 to flange arms 83, 8485, and 86 as illustrated in
The placement of the four trusses 5, 10, 38 and 33, on seat member 16 of sheet metal hanger 15′ and connection of the chords 6,11, 39, and 34 to flange arms 83, 84, 85, and 86 is the same as described above with respect to the sheet metal hanger 15 illustrated in
Although the four trusses are closely space, the use of obround openings in fastener openings 31 permits slant nailing so that hammers or nailing guns can easily drive nail fasteners through the openings in the sheet metal hangers 15 and 15′ and into the truss chords 6, 11, 39, and 34 without difficulty.
The hanger of the present invention is not limited to making multiple truss connections, but may also be used in a multiple framing member connection. The description of the following multiple framing member connection is identical to the multiple truss connection described earlier except that simple framing members are described. The framing members could be made out of any common building material for structural framing members such as wood or steel. If wood framing members are used they could be standard wood framing members such as 2×6's, 2×8's or other standard size lumber that may be used instead of wood trusses. No change has been made in the numbering system and no separate drawings of standard lumber have been made as the drawings in plan view would look identical. The following description is provided for preferred wood framing members.
A multiple framing member connection 1 made with a hanger formed according to the present invention includes: a support header member 2 having a front face 4, a first wood framing member 5 having a bottom edge 7 and parallel first and second sides 8 and 9, a second wood framing member 10 having a bottom edge 12 and parallel first and second sides 13 and 14, and a sheet metal hanger 15 formed according to the present invention.
The sheet metal hanger 15 of the present invention also includes: a seat member 16 for receiving the bottom edges 7 and 12 of the first wood framing member 5 and the second wood framing member 10, a first backwall member 17 formed for registration with the front face 4 of the support header member 2, a first side member 18 integrally connected to the first backwall member 17 a right angle 19 and integrally connected to the seat member 16, a second backwall member 20 spaced from the first backwall member 17 and formed for registration with the front face 4 of the support header member 2, a second side member 21 integrally connected to the second backwall member 20 at a right angle 23 with the second side member 21 and integrally connected to the seat member 16, and a third backwall member 81 integrally connected to seat member 16 at a position generally midway between the first and second backwall members 17 and 20.
First fasteners 27 are inserted through the first backwall member 17 into the support header member 2, second fasteners 18 are inserted through the second backwall member 20 into the support header member 2, third fasteners 29 are inserted through third backwall member 81 of the sheet metal hanger 15 into the support header member 2, first arm fasteners 100 insert through third flange arm 85 into the first wood framing member 5, second arm fasteners 101 insert through first L-shaped flange arm 83 into the second wood framing member 10, third arm fasteners 102 insert through second L-shaped flange arm 84 into the third wood framing member 39, and fourth arm fasteners 103 insert through fourth flange arm 86 into fourth wood framing member 34 to complete the multiple wood framing member connection 1.
When formed for use in a multiple truss connection, a preferred embodiment of a sheet metal hanger 15 formed according to the present invention, and illustrated in
A typical blank 46 is illustrated in
Next, bends are made in the blank 46 as follows, but not necessarily in the order set forth below. Backwall member 17 is bent upwardly 90° along bend line 47 or downwardly 90° depending upon whether hanger 15 as shown in
Those fastener openings 31 illustrated in the drawings as obround openings have a structure and function which is fully described in Gilb, U.S. Pat. No. 4,230,416, and which is incorporated herein by reference. Another way of constructing the obround openings 31 to permit slant fastening is described in Gilb, U.S. Pat. No. 4,480,941, which is also incorporated herein by reference.
In one preferred embodiment, for use as a multiple framing member, hanger, the connector 15 of the present invention is preferably made of 14 gauge sheet metal and finished by galvanizing. In its final configuration, such a preferred sheet metal hanger 15 can be 16.6260″ in width, 4.0000″ in depth, and 4.0000″ in height. The first and second reinforcing flanges 67 and 68 are joined to the third back wall member 81 and each have a length of about 7.5000″. Seat member 16 has a length of 16.6250″ a minimum depth of 2.5973″ and a maximum depth of 4.0000″. First and second side members 18 and 21 have a width of 2.5973° and a height of 5.5000″. First and second back wall members 17 and 20 have a width of 3.0625″ and a height of 5.5000″. Third back wall member 81 has a width of 1.6236″ and a height of 4.000″. First and second L-shaped flange arms 83 and 84 are joined to third back wall member 81 and have a maximum width of 1.7999″.
Third and fourth flange arms 85 and 86 are joined to third back wall member 81 and have a width of 1.6875″. The seat embossment 113 is embossed to a depth of 0.125″. Circular fastener openings have a diameter of 0.1710″ and obround openings have a length of 0.3750″. L-shaped flange members are bent at an angle 110 of 75.5° and third and fourth flanges 85 and 86 are bent at angles 111 and 112 to 45°.
Testing is not yet complete but is expected to be in the 2400 pound range. Nailing can be with 10 d nails.
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Number | Date | Country | |
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20080209845 A1 | Sep 2008 | US |