The present invention relates generally to railing systems and relates more specifically to support hardware for use in railing installations.
Post mounts are frequently used in the construction of decks, porches, stairs, and other structures that include railings.
In order to mount the posts 106 to the support surface 104 (which may comprise, for example, wood or concrete) in a substantially invisible manner (i.e., little or no outwardly visible hardware), post mounts are often first installed in the support surface 104. For example, the post 1061 is mounted to the support surface via a post mount 108 (illustrated in phantom). Specifically, the post mount 108 is fastened to the support surface 104 in a secure manner, and the hollow post 1061 is then slipped over the post mount 108, like a sleeve. In this manner, the post 1061 is supported securely by the support surface 104 and in turn provides secure support for the railing 102.
The railing system 100 is most structurally sound when the posts 106 are oriented plumb with the vertical direction (e.g., substantially perpendicular to the support surface 104). In order to orient a post 106 plumb in the vertical direction, the post 106 may need to be moved or adjusted in a desired direction. Conventionally, this involves placing wedge shims under the flange at the bottom of the post mount 108 or a using a series of leveling screws that are tightened and/or loosened in a specific order. Such techniques, however, may be tedious and imprecise. In addition, if the post 106 shifts after installation (e.g., due to settling or concrete uplift), the entire affected portion of the railing system 100 must be taken apart, adjusted, and re-assembled.
In one embodiment, the invention is a method and apparatus for installing a post mount. In one embodiment, a support block for use in securing a post mount includes a body having a first end and a second end and an adjustment mechanism formed integrally with the first end of the body, by which a vertical orientation of a post mount incorporating the support block can be adjusted.
The teachings of the present invention can be readily understood by considering the following detailed description in conjunction with the accompanying drawings, in which:
To facilitate understanding, identical reference numerals have been used, where possible, to designate identical elements that are common to the figures.
In one embodiment, the invention is a method and apparatus for installing a post mount. Embodiments of the present invention allow a post to be leveled and plumbed quickly and easily after being installed over a post mount. Moreover, the post can be easily adjusted if it becomes out of plumb after installation (e.g., due to settling or uplift of the support surface).
Referring simultaneously to
In particular, the second end 301 of the first support block 2041 comprises a plurality of plates 3021-302n (hereinafter collectively referred to as “plates 302”) that are designed to secure the first support block 2041 to the support pipe 202 in an adjustable manner. In the illustrated embodiment, the second end 301 of the first support block 2041 comprises two plates: a first plate 3021 and a second plate 302n.
As also illustrated, the first plate 3021 comprises an aperture 502 formed within the surface 500. In one embodiment, the aperture 502 has a substantially elongated (e.g., oblong) shape. In one embodiment, the aperture 502 is positioned over the aperture 304 in the second end 301 of the first support block 2041.
Referring back to
Finally, a fastener 310 is disposed through the second end 301 of the first support block 2041. The faster 310 passes through the apertures 402 in the plates 302, as well as through the aperture 304 in the second end 301 of the first support block 2041 and an aperture 310 in the support pipe 202. This configuration is clearly illustrated in
The design of the first support block 2041 allows the position of a post placed over the post mount 200 to be adjusted so that it is plumb in the vertical direction.
The method 600 is initiated in step 602. In step 604, the fastener 308 is loosened until the first support block 2041 is able to slide along the apertures 502 that are formed in the plates 302.
In step 606, the first support block 2041 is slid into an appropriate position (i.e., so that it is plumb in the vertical direction). Because the plates 302 are arranged in a cross pattern (i.e., so that their respective apertures 502 are substantially perpendicular to each other), the first support block 2041 can be slid freely in substantially any direction. In particular, the elongated apertures 502 in the plates 302 define paths along which the first support block 2041 can be slid. The position of the first support block 2041 with respect to the support pipe 202 is therefore easily adjusted.
In step 608, the fastener 308 is tightened. This secures the first support block 2041 into place and secures the post mount 600 in the plumb position. The method 600 then ends in step 610.
The design of the first support block 2041 therefore allows the post mount 200 (and any post positioned over the post mount 200) to be plumbed quickly and easily with the turn of a single fastener. Moreover, because the means for plumbing the post mount 200 is built into the post mount itself (i.e., built into the first support block 2041), there is no need for secondary leveling or plumbing devices, which reduces the overall costs of constructing a railing system. Additionally, the design of the first support block 2041 allows the post mount 200 to be easily plumbed even after installation of the railing system.
It is noted that
Although various embodiments which incorporate the teachings of the present invention have been shown and described in detail herein, those skilled in the art can readily devise many other varied embodiments that still incorporate these teachings.
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Number | Date | Country | |
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20110204198 A1 | Aug 2011 | US |