Brief Description of the Drawings
FIG. 1 is an isometric view of a preset insert
FIG. 2 is an isometric view of a duct having an access opening therein
FIG. 3 shows the preset insert of FIG. 1 in its initial non-aligned position when first inserted into the access opening of the duct of FIG. 2.
FIG. 4 shows the preset insert of FIG. 1 after being moved to its final aligned position relative to the access opening of the duct of FIG. 2.
FIG. 5 is a section elevation view taken along line 5--5 of FIG. 4, showing the duct and preset insert assembled together and in place within a poured concrete floor.
Detailed Description of the Preferred Embodiments
Referring now to the drawings, FIG. 1 is an isometric view of a preset insert generally designated by the numeral 10. FIG. 2 illustrates a duct 12 having an access opening 14 defined in a top wall 18 thereof.
It will be appreciated that the duct 12 will have a number of access openings such as 14 located therein and spaced at predetermined intervals along the length thereof.
Access opening 14 has a generally rectangular primary perimeter 16 having somewhat rounded corners. Primary perimeter 16 is indicated in phantom lines. Access opening 14 further includes a plurality of notches 22, 24, 26 and 28 extending beyond the primary perimeter 16.
The preset insert 10 has an extension collar 30 defining an insert opening 32 therethrough similar in size and shape to the primary perimeter 16 of access opening 14.
Preset insert 10 includes a support flange 34 extending outwardly from a lower end 36 of collar 30.
A plurality of locking tabs such as 38, 40 and 42 extend downward from the collar 30 below the support flange 34. There are four such locking tabs, but only three are visible in FIG. 1. Each of the locking tabs includes outwardly extending locking lip portions 44, 46 and 48.
The tabs 38 through 42 are located relative to each other in a pattern corresponding to the notches 22 through 28, and are located on the preset insert 10 so that when the tabs 38 through 42 are inserted into the notches 22 through 28, the insert opening 32 is partially out of alignment with the access opening 14 as shown in FIG. 3. Subsequently, the preset insert 10 is slid forward in a direction indicated by the arrow 50 in FIG. 2 to an aligned position as shown in FIG. 4.
This sliding movement can be described as linearly displacing or sliding the preset insert 10 from its nonaligned first position to its aligned second position in the direction 50 generally parallel to the top wall 18.
In the aligned position as shown in FIG. 4, the insert opening 32 is substantially aligned with the access opening 14, with the top wall 18 of duct 12 being located between the support flange 34 and the locking lips 44 through 48 of the tabs 38 through 42.
The relative position of the top wall 18 and the flange 34 and locking lips 44 through 48 are best seen in the elevation section view of FIG. 5. When the preset insert 10 is assembled with the duct 12, the support flange 34 is located above the plane of top wall 18 and the locking lips 44 through 48 are located below the plane of the top wall 12.
The preset insert 10 further includes a plurality of flexible barbs such as 52 and 54 formed in the support flange 34 and extending downward therefrom. There preferably are four such barbs, two on each side of the preset insert 10. The barbs 52 and 54 can generally be described as a resilient latching means 52,54 operably associated with the duct 12 and the preset insert 10 for automatically latching the preset insert 10 in place relative to the duct 12 when the preset insert 10 is moved to an aligned position as shown in FIG. 4.
The barbs such as 52 and 54 are located on the support flange 34 so that when the preset insert 10 is moved to its aligned position the barbs will snap into the notches 22 through 28 thus latching preset insert 10 to the duct 12.
The top wall 18 of duct 12 includes a plurality of recesses 56, 58, 60 and 62 in which the barbs such as 52 and 54 are initially received when the tabs 38 through 42 are initially inserted into the notches 22 through 28 as shown in FIG. 3. Each of these recesses 56 through 62 is spaced from an associated one of the notches 22 through 28 by bridging portions 64, 66, 68 and 70, respectively, of the top wall 18. The barbs such as 52 and 54 must deflect over these bridging portions 64 through 70 as the preset insert 10 is moved from its initial non-aligned position to its final aligned position. Tapered surfaces 71, 73, 75 and 77 join the recesses 56 through 62 to the bridging portions 64 through 70.
Referring again to the general arrangement of the access opening 14, it is noted that the primary perimeter 16 of access opening 14 is generally rectangular in shape as indicated in phantom lines, and has two generally parallel longer sides 72 and 74 and two generally parallel shorter sides 76 and 78. The longer sides 72 and 74 are preferably arranged generally parallel to the length of duct 12, and the notches 22 through 28 are arranged in pairs of opposed notches such as first pair 22 and 28 and second pair 24 and 26 which are disposed in the longer sides 72 and 74.
The locking tabs 38 through 42 and the latch means 52,54 can collectively be referred to as a locking means operably associated with the duct 12 and the preset insert 10 for automatically locking the preset insert 10 to the duct 12 when the preset insert 10 is moved to its aligned second position as shown in FIG. 4. The locking lips 44 through 48 can generally be referred to as lateral locking projections 44 through 48.
It is noted that in its broader aspects the present invention could be applied to other shapes of preset inserts. For example, the preset insert could have a circular extension collar and have a plurality of locking tabs with locking lips extending substantially radially outward from the locking collar. An access opening could be constructed in the duct having a generally circular primary perimeter with a plurality of notches extending radially outward from the circular primary perimeter for receipt of the locking tabs of the round extension collar. Then, the round extension collar could be locked in place by a rotational motion which would move the locking tabs under the wall of the duct. Resilient latching means similar to the barbs 52 and 54 could be utilized with such a round preset extension construction.
The assembly of the preset insert 10 with the access opening 14 of duct 12 is generally performed as follows. The tabs 38 through 42 of preset insert 10 are inserted into the notches 22 through 28 to define a first, non-aligned position of the preset insert 10 relative to the duct 12 as shown in FIG. 3 with the support flange 34 located above the plane of top wall 18 and with the locking lips 44 through 48 located below the plane of the top wall 18 with those locking lips 44 through 48 still located directly below the notches 22 through 28.
Then, the preset insert 10 is moved in the direction of arrow 50 to its second aligned position as shown in FIG. 4. This is preferable performed manually with the aid of a manually operating impacting tool (not shown) such as a hammer. A block of wood (not shown) may be placed against an end wall 80 of preset insert 10 and the block of wood then impacted with a hammer to move the preset insert 10 in the direction 50.
The resilient barbs such as 52 and 54 which must be deflected over the bridging portions 64 through 70 resiliently resist movement of the preset insert 10 from its non-aligned first position to its aligned second position.
When the preset insert 10 is moved to its second aligned position as illustrated in FIG. 4, the resilient barbs such as 52 and 54 will snap into place within the notches such as 22 and 24 after they pass over the bridging portions 64 and 66, thus resiliently latching the preset insert 10 in its second aligned position.
As best seen in FIG. 5, after the duct 12 is assembled with the preset insert 10, the duct 12 will be set in place above a floor base 82. The underfloor duct 12 will typically be held in place relative to floor 82 by various support legs (not shown). Then a concrete floor 84 is poured around the duct 12 and preset inserts 10. The concrete floor 84 is poured up to an elevation 86 providing a relatively thin layer 88 of concrete over the top of preset insert 10. The top opening of preset insert 10 is closed by a removable closure cap 89 which snaps in place therein prior to pouring the concrete.
The concrete 84 will typically be covered by tile or other floor covering 90.
As will be understood by those skilled in the art, when it is desired to locate an electrical outlet on top of the tile floor 90, one of the preset extensions 10 will be located, and the tile 90 and the thin layer 88 of concrete located immediately above the preset extension 10 will be broken away. The closure cap 89 will be removed so as to provide access down through the preset extension 10 into the duct 12 to access electrical cables such as 92 located therein.
The preset insert construction of the present invention provides several advantages as compared to conventional preset extensions which must be assembled with the duct at the factory prior to shipment to the job site.
With the preset insert construction of the present invention, the duct 12 can be shipped separate from the preset inserts 10 thus providing significant economies due to the fact that the duct 12 can be packaged much more efficiently and handled much more easily without the preset inserts 10 in place.
Additionally, the use of separable preset inserts 10 allows the manufacturer to provide the construction contractor with the option of assembling the preset inserts 10 and duct 12 at the construction site, thus allowing the products to be sold at a lesser cost than would be required for products which have already been assembled prior to shipping.
Of course, with the preset insert construction of the present invention, the preset inserts 10 can also be assembled with the duct 12 in the factory prior to shipping if the customer so desires.
Thus it is seen that the apparatus and methods of the present invention readily achieve the ends and advantages mentioned as well as those inherent therein. While certain preferred embodiments of the invention have been illustrated and described for purposes of the present disclosure, numerous changes in the arrangement and construction of parts and steps may be made by those skilled in the art which changes are encompassed within the scope and spirit of the present invention as defined by the appended claims.