Deck systems and related methods
10526796 ยท 2020-01-07
Inventors
Cpc classification
E04F2015/02072
FIXED CONSTRUCTIONS
E04F15/02183
FIXED CONSTRUCTIONS
E04F2015/02088
FIXED CONSTRUCTIONS
E04F15/02044
FIXED CONSTRUCTIONS
International classification
E04F15/02
FIXED CONSTRUCTIONS
E04F19/04
FIXED CONSTRUCTIONS
E02B3/06
FIXED CONSTRUCTIONS
Abstract
A deck board supporting system includes a plurality of interconnected skirt joists configured as an outer perimeter of the deck board supporting system and a plurality of deck joists configured to be attached to one or more of the plurality of skirt joists within the outer perimeter. Each of the skirt joist and deck joist has a respective longitudinal groove formed on a respective top surface, and the longitudinal groove extends downwards perpendicular to the respective top surface. The longitudinal groove is configured for receiving one or more fasteners for connecting one or more deck boards to the top surfaces of the respective skirt joists and deck joists.
Claims
1. A deck board supporting system comprising: a plurality of interconnected skirt joists configured as an outer perimeter of the deck board supporting system; a plurality of deck joists configured to be attached to one or more of the plurality of skirt joists within the outer perimeter; each of the skirt joists and deck joists having a longitudinal groove formed on a respective top surface; and a plurality of plastic inserts configured to be fitted inside the respective longitudinal grooves and configured with an upper insert opening to receive one or more fasteners inserted therein through upper surfaces of one or more deck boards for connecting the one or more deck boards to the respective top surfaces of the skirt joists and the deck joists.
2. The deck board supporting system of claim 1, wherein each of the plastic inserts is made of polyvinylchloride (PVC).
3. The deck board supporting system of claim 1, wherein the one or more fasteners are one or more screws.
4. The deck board supporting system of claim 1, wherein one or more of the plurality of deck joists are supported by a vertical post situated on a base.
5. The deck board supporting system of claim 4, wherein the base is made of concrete and secured to an underlying surface.
6. The deck board supporting system of claim 1, wherein one or more of the plurality of deck joists are supported by a plurality of cross members, and wherein the plurality of cross members are secured to the outer perimeter of the deck board supporting system via respective L-shaped mounting brackets.
7. The deck board supporting system of claim 6, wherein the plurality of cross members are further supported by a flotation device.
8. The deck board supporting system of claim 1, wherein each of the skirt joists and the deck joists is an elongated rectangular member having a first end and a second end defining a length thereof, and each of the deck joists and the skirt joists includes a respective hollow tubular portion at each of the first end and the second end thereof, and wherein the supporting system further comprising a plurality of splice members sized and shaped to be received within the respective hollow tubular portions to span a desired length.
9. The deck board supporting system of claim 8, wherein the respective hollow tubular portions are each configured to be covered by a wall flange.
10. The deck board supporting system of claim 1, wherein the plurality of skirt joists and deck joists are made of aluminum or polystyrene.
11. The deck board supporting system of claim 1, wherein each of the skirt joists includes one or more ledges on an outer surface thereof configured to engage with a respective one of the deck joists positioned perpendicular to the skirt joists.
12. The deck board supporting system of claim 1, wherein a height of the skirt joists is twice that of the deck joists, such that two deck joists stacked together achieve a same height as that of the skirt joists.
13. The deck board supporting system of claim 1, further comprising a joist clip configured to connect two perpendicular positioned ones of the deck joists or skirt joists.
14. A method of installing of a deck system using a plurality of deck boards and a deck board supporting system, wherein the deck board supporting system includes a plurality of skirt joists, a plurality of deck joists, and each of the skirt joists and deck joists has a longitudinal groove formed on a respective top surface, and a plurality of plastic inserts configured to be snuggly fitted inside the respective longitudinal grooves on the top surfaces of the skirt joists and deck joists, the method comprising: interconnecting the plurality of skirt joists to form an outer perimeter of the deck board supporting system; positioning the plurality of deck joists within the outer perimeter of the deck board supporting system to form an inner portion of the supporting system; inserting a plurality of plastic inserts into the respective longitudinal grooves; placing the plurality of deck boards on the top surfaces of the interconnected skirt joists and deck joists; and securing the plurality of deck boards to the top surfaces of the interconnected skirt joists and deck joists via inserting one or more fasteners into the plastic inserts in the respective longitudinal grooves on the top surfaces of the skirt joists and deck joists.
15. The method of claim 14, further comprising securing one or more of the plurality of deck joists to one or more vertical posts and securing the one or more vertical posts on a concrete base.
16. The method of claim 14, wherein the one or more fasteners are screws.
17. The method of claim 14, wherein each of the skirt joists and deck joists is an elongated rectangular member having a first end and a second end defining a length thereof, and each of the deck joists and skirt joists includes at least a respective hollow tubular portion at each of the first end and the second end thereof; and wherein interconnecting the plurality of skirt joists to form an outer perimeter and positioning the plurality of deck joists within the outer perimeter of the deck board supporting system includes positioning a plurality of splice members within the respective hollow tubular portions to span a desired length.
18. The method of claim 14, wherein positioning the plurality of deck joists within the outer perimeter of the deck board supporting system to form an inner portion of the supporting system includes positioning one or more of the plurality of deck joists perpendicular to one or more of the plurality of skirt joists via one or more ledges formed on an outer surface of the respective skirt joists.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(18) Referring to
(19) In the embodiment depicted in
(20) In the embodiment depicted in
(21) Referring to
(22) Each joist can include a hollow tubular portion at the first end and the second end. For example, a splice member 22, as illustrated in
(23) Referring to
(24) Each joist (skirt joist and deck joist) has a longitudinal groove 28 formed on its top surface. The longitudinal groove extends perpendicular to the respective top surface. A plastic insert 30 is fitted inside each groove 28 for receiving fasteners for connecting a deck board 16 onto a deck joist 14 or a skirt joist 12. The plastic insert 30 is depicted as a U-shaped plastic insert. For example, when connecting a deck board 16 to a skirt joist 12, one or more fasteners 32 can be extended downward through deck boards 16 into the U-shaped plastic insert 30 inside the groove 28 on a skirt joist 12 and/or a deck joist 14, thereby fixing the deck boards 16 to the respective skirt joist 12 as shown in
(25) According to another embodiment of the present invention, two perpendicularly positioned joists (e.g., two perpendicularly positioned deck joists) are securely connected by an L-shaped joist clip 34 (shown in
(26) According to another embodiment of the present invention, a post clip 42 (shown in
(27) The disclosed no-drill deck system 10 can prevent galvanic corrosion because the plastic insert 30 acts as a dielectric between the fastener and the aluminum. Fasteners will thus not corrode and be able to last for many years without degradation of the joists, fasteners or deck boards. A fastener captivated within a plastic extrusion will allow for expansion/contraction within a metal (e.g., aluminum) joist without sacrificing grip force. The no-drill deck attachment system does not require a timber batten as the fastener will not subject to the shear forces created by expansion and contraction of the deck boards.
(28) The components (e.g., skirt joist 12, deck joist 14, plastic insert 30, joist clip 34, post clip 42) of the deck supporting system 10 can be packaged into a standard kit and delivered in a box. The standard and unified dimensions of the skirt joist 12 and deck joist 14 can also be easy and low cost to manufacture.
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(33) At step 1704, a plurality of deck joists are positioned within the outer perimeter of the deck board supporting system to form an inner portion of the supporting system. In one embodiment, each skirt joist (e.g., skirt joist 12) includes one or more ledges on an outer surface of the skirt joist configured to engage with a deck joist (e.g., deck joist 14) positioned perpendicular to a respective skirt joist. The height of the skirt joists are twice that of the deck joists. As such, two deck joist are stacked together perpendicularly to achieve a same height as that of a skirt joist 12. The decking boards 16 can thus be leveled on top of the supporting system 10. Alternatively, a plurality of cross member 50 are used to replace the lower deck joist 14. In this scenario, the plurality of cross members 50 are positioned between parallel skirt joists 12 of the outer perimeter and underneath and perpendicular to the plurality of deck joists 14, as shown in
(34) At step 1706, a plurality of plastic inserts are inserted into respective grooves on the top surfaces of the interconnected deck joists and skirt joists. As an example, the plastic insert is depicted as a U-shaped plastic insert. The plastic insert 30 is preferably rendered from polyvinylchloride (PVC), but any suitable thermoplastic material such as polypropylene, polyethylene, high density polyethylene (HDPE), vinyl acetate copolymers, vinyl chloride monomers (VCM), or acrylonitrile-butadiene-styrene (ABS) can be used.
(35) At step 1708, the plurality of deck boards are placed on the top surfaces of the interconnected skirt joists and deck joists. In the depicted embodiment shown in
(36) At step 1710, the plurality of deck boards are secured to on top surfaces of the interconnected skirt joists and deck joists via inserting one or more fasteners into plastic inserts in the longitudinal grooves on the top surfaces of the skirt joists and deck joists. For example, the one or more fasteners are one or more screws, nail, and the like. For example, when connecting a deck board (e.g., deck board 16) to a skirt joist (e.g., skirt joist 12), one or more fasteners 32 can be extended downward through deck boards into the insert (e.g., a U-shaped plastic insert) inside the groove (e.g., groove 28) on a skirt joist (e.g., skirt joist 12) and/or a deck joist (e.g., deck joist 14), thereby fixing the deck boards 16 to the respective skirt joist 12 and deck joist 14.
(37) The deck system can be secured to a fixed support. For example, one or more of the plurality of deck joists can be further secured to a fixed support. The one or more vertical posts are secured to the one or more vertical posts situated on a base (e.g., base 20). This can further elevate the height of a deck system. As an example, the vertical post 18 can be made from a pressure treated wood or other polymer material that has high strength and is highly endurable. The base 20 can be cast in concrete and secured to an underlying surface (e.g., ground). The deck system can also be supported by flotation devices (e.g., flotation devices 70 shown in
(38) The present deck system and method can be used in a floating dock and pier system. The deck system can be further supported by flotation devices and/or fixed supports (e.g., vertical posts). The plastic insert of the deck supporting system is designed to exert an appropriate grip force to the fastener being inserted. No pre-drilling of the metal joist is needed. Because the fasteners are isolated from the metal joists by plastic insert, the life expectancy of the fastener and the joists are greatly improved.
(39) The foregoing is provided for illustrative and exemplary purposes; the present invention is not necessarily limited thereto. Rather, those skilled in the art will appreciate that various modifications, as well as adaptations to particular circumstances, are possible within the scope of the invention as herein shown and described.