IP Library › Granted Patent US 11,572,684
Granted Patent B2
US 11,572,684 · App. 17/535,536 · Granted Feb 7, 2023

Rafter bracket

Inventor: Samuel Fox (Franklin, TN)
Assignee: Fox Hardwood Lumber Company, LLC
E04B1/1903E04B1/2604E04B2001/199E04B2001/1963E04B2001/1993E04B2001/405
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Quick Facts
Patent No.
US 11,572,684
App. No.
17/535,536
Granted
Feb 7, 2023
Kind
B2
Abstract

A rafter bracket configured to connect a vertical post to a rafter and beam(s) is described herein. The rafter bracket may include lower vertical side plates, a horizontal plate, and upper vertical side plates. The horizontal plate may be perpendicular to the upper and lower vertical side plates and may separate the upper vertical side plates from the lower vertical side plates. The horizontal plate and lower vertical side plates may create a lower cavity that receives the vertical post. Meanwhile, the rafter may be positioned on one of the upper vertical side plates and positioned between two of the upper vertical side plates and may be angled at an acute angle relative to the vertical post as well as the upper and lower vertical side plates. One or more of the lower vertical side plates may receive lateral plates that define a lateral cavity receiving the beam.

Claims (16)

1. A method of using a rafter bracket to connect a vertical post of a building to a rafter and beam of the building, the method comprising:

a) providing the rafter bracket comprising:

a first lower vertical side plate comprising at least one first lower vertical side plate fastener aperture, a first lower vertical side plate top, a first lower vertical side plate bottom, a first lower vertical side plate height extending from the first lower vertical side plate top to the first lower vertical side plate bottom, a first lower vertical side plate first end, a first lower vertical side plate second end opposite the first end, and a first lower vertical side plate width extending from the first lower vertical side plate first end to the first lower vertical side plate second end and substantially perpendicular to the first lower vertical side plate height;

a second lower vertical side plate opposite the first lower vertical side plate and extending substantially parallel to the first lower vertical side plate, the second lower vertical side plate comprising at least one second lower vertical side plate fastener aperture, a second lower vertical side plate top, a second lower vertical side plate bottom, a second lower vertical side plate height extending from the second lower vertical side plate top to the second lower vertical side plate bottom and substantially parallel to the first lower vertical side plate height, a second lower vertical side plate first end, a second lower vertical side plate second end opposite the first end, and a second lower vertical side plate width extending from the second lower vertical side plate first end to the second lower vertical side plate second end and substantially perpendicular to the second lower vertical side plate height;

a horizontal plate connected to at least one of the first and second lower vertical side plates, the horizontal plate located above the first and second lower vertical side plate bottoms, the horizontal plate extending substantially perpendicular to the first and second lower vertical side plate heights, the horizontal plate comprising a horizontal plate first end, a horizontal plate second end, a horizontal plate width extending from the horizontal plate first end to the horizontal plate second end and substantially parallel to the first lower vertical side plate width and second lower vertical side plate width, a horizontal plate proximal end, a horizontal plate distal end, and a horizontal plate length extending from the horizontal plate proximal end to the horizontal plate distal end and substantially perpendicular to the horizontal plate width;

a lower cavity defined by the first and second lower vertical side plates;

at least one upper brace plate resting on the horizontal plate and comprising a brace plate top above the first and second lower vertical side plate tops and above the horizontal plate, a brace plate bottom extending from the horizontal plate, a brace plate height extending from the brace plate top to the brace plate bottom and substantially parallel to the first and second lower vertical side plate heights, a brace plate first end, a brace plate second end, and a brace plate length extending from the brace plate first end to the brace plate second end and substantially perpendicular to the brace plate height;

an upper plate connected to the horizontal plate, the upper plate oriented at an angle greater than one degree and less than ninety degrees relative to the horizontal plate, the upper plate comprising a bottom surface facing the horizontal plate and a top surface opposite the bottom surface, wherein the upper plate rests on the brace plate top;

wherein the upper plate comprises at least one fastener aperture extending from the upper plate top surface to the upper plate bottom surface,

wherein the first lower vertical side plate and second lower vertical side plate are separated a first distance, the first distance substantially constant along the first lower vertical side plate and second lower vertical side plate widths and substantially parallel to the horizontal plate length, and

wherein at least a respective one of the first and second lower vertical side plates comprise a plurality of lateral plates extending laterally away from the respective lower vertical side plate and lower cavity and defining a lateral cavity;

b) positioning the rafter of the building on the upper plate top surface so that the rafter extends upwardly at an acute angle relative to the horizontal plate from the horizontal plate distal end to the horizontal plate proximal end;

c) positioning the beam of the building in the lateral cavity; and

d) positioning the vertical post of the building between the first and second lower vertical side plates in the lower cavity.

2. The method of claim 1 further comprising positioning at least one upper fastener through a respective upper plate fastener aperture and into the rafter, and further wherein at least one lower fastener is positioned through a respective fastener aperture of the first and second lower vertical side plates and into the vertical post.

3. The method of claim 1 wherein the lateral cavity has an open top.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: FOX, SAMUEL
To: FOX HARDWOOD LUMBER COMPANY, L.L.C.
Reel/Frame 058209/0974 →
Continuity (6)
Continuation 16883563 · May 26, 2020
Continuation 16517528 · Jul 19, 2019
Continuation 16273870 · Feb 12, 2019
Continuation In Part 16113022 · Aug 27, 2018
Continuation In Part 15912203 · Mar 5, 2018
Related Publication 20220081893A1 · Mar 17, 2022
Cited By (2)
US 12,392,129 US 12,460,408