Interface for Inserting Bonding Material Between the Joins of Two Interlocking Members
20180333741 ยท 2018-11-22
Inventors
Cpc classification
B05C11/11
PERFORMING OPERATIONS; TRANSPORTING
B05C7/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
To increase the strength and water resistance of a joint between two slabs of building materials, an interface for inserting bonding material between the joins of two interlocking members is used. The interface has two interlocking slabs, a tongue ridge, a groove slot, a fill channel, and a quantity of adhesive. The two interlocking slabs are the pieces of building material that are joined by the interface. To accomplish this, the tongue ridge connects to the first interlocking slabs, and the groove slot traverses into the second interlocking slab. The tongue ridge engages the groove slot to form an interlocking connection. The fill channel traverses through the tongue ridge along the length of the tongue ridge so that the quantity of adhesive can be deposited into the interlocking connection between the tongue ridge and the groove slot.
Claims
1. An interface for inserting bonding material between the joins of two interlocking members comprises: a first interlocking slab; a second interlocking slab a slab interface; the slab interface comprises a tongue ridge, a groove slot, a fill channel, and a quantity of adhesive; the tongue ridge being adjacently connected to the first interlocking slab; the fill channel traversing into the tongue ridge, opposite to the first interlocking slab and perpendicular to a length of the tongue ridge; the fill channel traversing through the tongue ridge, parallel to the length of the tongue ridge; the groove slot traversing into the second slab; the tongue ridge engaging into the groove slot; and the quantity of adhesive being retained within the fill channel and the engagement between the tongue ridge and the groove slot.
2. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 1 comprises: the slab interface further comprises a pumping channel; the pumping channel traversing through the second interlocking slab and into the groove slot; and the pumping channel being in fluid communication with the fill channel.
3. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 2 comprises: an inlet of the pumping channel traversing out of a face of the second interlocking slab.
4. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 2 comprises: the slab interface further comprises a female threading; and the female threading being integrated into an inlet of the pumping channel.
5. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 2 comprises: an outlet of the pumping channel traversing out of the groove slot and into the fill channel.
6. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 1 comprises: a transversal cross section of the fill channel being a triangular shape; a transversal cross section of the tongue ridge being a convex trapezoidal shape; and a transversal cross section of the groove slot being a concave trapezoidal shape.
7. (canceled)
8. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 1 comprises: a first caulk-receiving crevice; a second caulk-receiving crevice; the first caulk-receiving crevice being integrated into the first interlocking slab and the second interlocking slab; the second caulk-receiving crevice being integrated into the first interlocking slab and the second interlocking slab, opposite to the first caulk-receiving crevice; and the slab interface being positioned in between the first caulk-receiving crevice and the second caulk-receiving crevice.
9. A system of filling the interface for inserting bonding material between the joins of two interlocking members as claimed in claim 1 comprises: a pump; an adhesive reservoir; a valve; the adhesive reservoir being in fluid communication with the pump; and the pump being in fluid communication with the fill channel through the valve.
10. A system of filling the interface for inserting bonding material between the joins of two interlocking members as claimed in claim 9 comprises: a hose; a first end of the hose being in fluid communication with the pump; and a second end of the hose being in fluid communication with the valve.
11. A system of filling the interface for inserting bonding material between the joins of two interlocking members as claimed in claim 9 comprises: a nipple; and the valve being in fluid communication with a pumping channel through the nipple.
12. An interface for inserting bonding material between the joins of two interlocking members comprises: a first interlocking slab; a second interlocking slab a slab interface; the slab interface comprises a tongue ridge, a groove slot, a fill channel, a pumping channel, and a quantity of adhesive; the tongue ridge being adjacently connected to the first interlocking slab; the fill channel traversing into the tongue ridge, opposite to the first interlocking slab and perpendicular to a length of the tongue ridge; the fill channel traversing through the tongue ridge, parallel to the length of the tongue ridge; the groove slot traversing into the second slab; the tongue ridge engaging into the groove slot; the quantity of adhesive being retained within the fill channel and the engagement between the tongue ridge and the groove slot; the pumping channel traversing through the second interlocking slab and into the groove slot; the pumping channel being in fluid communication with the fill channel; a transversal cross section of the fill channel being a triangular shape; a transversal cross section of the tongue ridge being a convex trapezoidal shape; and a transversal cross section of the groove slot being a concave trapezoidal shape.
13. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 12 comprises: an inlet of the pumping channel traversing out of a face of the second interlocking slab.
14. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 12 comprises: the slab interface further comprises a female threading; and the female threading being integrated into an inlet of the pumping channel.
15. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 12 comprises: an outlet of the pumping channel traversing out of the groove slot and into the fill channel.
16. (canceled)
17. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 12 comprises: a first caulk-receiving crevice; a second caulk-receiving crevice; the first caulk-receiving crevice being integrated into the first interlocking slab and the second interlocking slab; the second caulk-receiving crevice being integrated into the first interlocking slab and the second interlocking slab, opposite to the first caulk-receiving crevice; and the slab interface being positioned in between the first caulk-receiving crevice and the second caulk-receiving crevice.
18. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 12 comprises: a pump; an adhesive reservoir; a valve; the adhesive reservoir being in fluid communication with the pump; and the pump being in fluid communication with the fill channel through the valve.
19. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 18 comprises: a hose; a first end of the hose being in fluid communication with the pump; and a second end of the hose being in fluid communication with the valve.
20. The interface for inserting bonding material between the joins of two interlocking members as claimed in claim 18 comprises: a nipple; and the valve being in fluid communication with the pumping channel through the nipple.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTIONS OF THE INVENTION
[0012] All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
[0013] In reference to
[0014] In reference to
[0015] In reference to
[0016] In reference to
[0017] Further describing the components of the slab interface 3, an inlet 351 of the pumping channel 35 traverses out of a first face 21 of the second interlocking slab 2. As a result, the external pumping mechanism is able to deliver the quantity of adhesive 34 to the pumping channel 35 through the inlet 351. The slab interface 3 further comprises a female threading 36 that is used to connect male threaded fasteners to the slab interface 3. To that end, the female threading 36 is integrated into the inlet 351 of the pumping channel 35. Thus positioned, the female threading 36 enables the external pumping mechanism with a male threaded connector to be attached to the pumping channel 35. Thereby enabling the external pumping mechanism to deliver the quantity of adhesive 34 to the fill channel 33, through the pumping channel 35. Finally, an outlet 352 of the pumping channel 35 traverses out of the groove slot 32 and into the fill channel 33. Accordingly, the outlet 352 maintains the pumping channel 35 in fluid communication with the fill channel 33.
[0018] In the preferred embodiment of the present invention, a transversal cross section of the fill channel 33 is a triangular shape. The triangular shape of the fill channel 33 is used to create a fill channel 33 that minimizes the amount of empty space between the tongue ridge 31 and the groove slot 32. A transversal cross section of the tongue ridge 31 is a convex trapezoidal shape. The shape of the tongue ridge 31 is designed to correspond to the shape of the groove slot 32 so that lateral displacement of the first interlocking slab 1 relative to the second interlocking slab 2 is inhibited. To that end, a transversal cross section of the groove slot 32 is a concave trapezoidal shape. This concave trapezoidal shape enables the groove shot to function as a receptacle for the tongue ridge 31.
[0019] In reference to
[0020] In reference to
[0021] In reference to
[0022] Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.