Background of the Invention
The present invention relates to a mailbox mounting device which returns to its original position after side impact.
It is well known that rural mailboxes are subject to damage from various causes, such as snow plows, car mirrors hitting the mailbox during delivery or pick-up of mail or other items, or vandalism. With the present mounting device installed, the mailbox can be struck from either side and it will rotate 90 degrees in either direction, automatically returning to its original position. This mounting device does not hinder opening or closing of the mailbox door and can be used with any style of any rural mailbox. Other devices have, somewhat, addressed this problem, for example see U.S. Pat. Nos. 5,356,072 and 3,407,997. The first device at U.S. Pat. No. 5,356,072 involves a spring loaded side impact device which would allow the mailbox to shift back after being struck but does not provide for the dissipation of energy as the mailbox rotates out of the way from impact. The second device at U.S. Pat. No. 3,407,997, does provide for the mailbox to rotate, but does not provide for the mailbox to return to its original position.
Summary of the Invention
The present invention relates to a mounting device for a rural mailbox. The device essentially consists of five main components. The first component being a horizontal mounting member. This member enables the device to be mounted to a post or other structure secured to the ground on which the mailbox is generally mounted. The horizontal mounting member has a cylindrical pivot shaft mounted on its top. The second component is a base plate which has a circular hole in its center enabling it to be seated upon and rotated about the cylindrical pivot shaft. The next component is a cylindrical cap which fits upon the cylindrical pivot shaft above the base plate and is locked into place by the use of a cap pivot stopping pin. This pin extends out from the cylindrical cap and serves the additional function of preventing the base plate from rotating more than 90 degrees either clockwise or counter-clockwise about the cylindrical shaft by its interaction with two pivot stopping pins which are permanently attached to the base plate. The next component is a set of two springs. The springs are mounted to the opposite sides of the cylindrical cap and to the base plate in such a manner to retard the base plate from rotating about the cylindrical shaft and which cause the base plate to return to its original position after being rotated about the cylindrical shaft. The final component is a spacer mounting plate. This spacer mounting plate is permanently attached to the base plate and the mailbox, thereby allowing the mailbox to move independently of the horizontal mounting member just as the base plate does.
It is the object of this invention to provide a device that will minimize the damage to a rural mailbox from side impacts and to also cause the mailbox to return to its original position after impact.
Description of Drawings
This invention will become more readily apparent from the following description of preferred embodiment thereof shown, by way of example only, in the accompanying drawings, wherein:
FIG. 1 is a prospective view of a mailbox and mailbox post permanently attached to the preferred embodiment of the mailbox mounting device which returns to its original position after side impact.
FIG. 2 is a prospective view of the preferred embodiment of mailbox mounting device which returns to its original position after side impact.
FIG. 3 is a side view of the preferred embodiment of the mailbox mounting device which returns to its original position after side impact.
FIG. 4 is a top view of the preferred embodiment of the mailbox mounting device which returns to its original position after side impact.
FIG. 5 is a top view of the preferred embodiment of the mailbox mounting device which returns to its original position after side impact, with the base plate rotated out of its original position.
Description of the Preferred Embodiment
The preferred embodiment of the present invention, mailbox mounting device which returns to its original position after side impact, is illustrated in FIG. 2. The mailbox mounting device which returns to its original position after side impact comprises a horizontal mounting member 2, a base plate 7, a cylindrical cap 16, a spacer mounting plate 22, means 20 to permanently attach the said horizontal mounting member 2 to the said cylindrical cap 16, and resilient means 13 to retard the said cylindrical cap 16 from rotating out of position.
The said horizontal mounting member 2, as illustrated in FIGS. 1 and 2, is permanently attached to a mailbox post 1. The said horizontal mounting member 2 contains a horizontal mounting member hole 3 which enables the said horizontal mounting member 2 to be permanently attached to the said mailbox post 1. The said horizontal mounting member 2 has a permanently attached cylindrical pivot shaft 4, which contains a cylindrical pivot shaft hole 6. A cylindrical pivot shaft washer 5 is fitted over the outside diameter of the said cylindrical pivot shaft 4.
The next member is the said base plate 7 which is mounted above and upon the said cylindrical pivot shaft 4, the said base plate 7 having a hollow mounting cylinder 9 permanently attached to the bottom of said base plate 27, whereby, said hollow mounting cylinder 9 has an inside diameter substantially equal to the outside diameter of the said cylindrical pivot shaft 4. The said base plate 7 also contains a circular hole 8 which has a diameter substantially equal to the outside diameter of the said cylindrical pivot shaft 4. A base plate washer 15 is fitted over the outside diameter of the said cylindrical pivot shaft 4 on the top of the said base plate 26. The said base plate 7 also contains two spring holding pins 12 which form the mounting position for each of the said resilient means 13. Furthermore, the said base plate 7 contains two pivot stopping pins 11, such that, they interact with the cap pivot stopping pin 20 in such a manner to prevent the said base plate 7 from rotating more than 90 degrees either clockwise or counter-clockwise in its horizontal plane. The said pivot stopping pins 11 each have on their outside a pivot stopping pin bushing 14 which is comprised of a material which would enable the impact with the said cap pivot stopping pin 20 to be lessened upon the said pivot stopping pins 11.
Finally, the said base plate 7 also contains a plurality of mounting holes 10 which are used to permanently attach the said base plate 7 to the said spacer mounting plate 22.
The next member is the said cylindrical cap 16 which is mounted over the said cylindrical pivot shaft 4, such that, the inside diameter of the said cylindrical cap 16 is essentially equal to the outside diameter of the said cylindrical pivot shaft 4. The said cylindrical cap 16 also contains a cylindrical cap plate 17 which contains two cylindrical cap plate holes 18, for the purpose of mounting the end of the said resilient means 13 which is not mounted to the said spring holding pin 12. The said cylindrical cap 16, also contains a cylindrical cap hole 19, which provides for the said cap pivot stopping pin 20 to be inserted, such that, the said cap pivot stopping pin 20 will pass through the said cylindrical cap hole 19 and also through the said cylindrical pivot shaft hole 6, in such a manner to lock the said cylindrical cap 16 and said cylindrical pivot shaft 4 together. The said pivot cap stopping pin 20 also has on its outside a cap pivot stopping pin bushing 21 which is comprised of a material which would enable the impact to be lessened between the said cap pivot stopping pin 20 and the said pivot stopping pins 11.
The spacer mounting plate 22 contains a spacer mounting plate hole 23, which is of sufficient size to permit the said cylindrical pivot shaft 4, said cylindrical cap 16, said cylindrical cap plate 17, said cap pivot stopping pin 20, said spring holding pins 12, said pivot stopping pins 11, said pivot stopping pin bushings 14, said cap pivot stopping pin bushing 21, and said resilient means 13 to all fit through, and said spacer mounting plate 22 being of a sufficient thickness 28 to insure that none of the above stated components will protrude beyond the top of the said spacer mounting plate 25. Finally, the mailbox 24 is permanently attached to the top of the said spacer mounting plate 25.