Automotive ding and dents protection system
10493926 ยท 2019-12-03
Inventors
Cpc classification
B60R19/42
PERFORMING OPERATIONS; TRANSPORTING
B60R13/04
PERFORMING OPERATIONS; TRANSPORTING
B60J11/06
PERFORMING OPERATIONS; TRANSPORTING
B60Q9/00
PERFORMING OPERATIONS; TRANSPORTING
B60R16/03
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R13/04
PERFORMING OPERATIONS; TRANSPORTING
B60J11/06
PERFORMING OPERATIONS; TRANSPORTING
B60R19/42
PERFORMING OPERATIONS; TRANSPORTING
B60Q9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for protecting the automobile doors from scratches and dents to the finishes made by other cars or objects while the automobile is parked on a parking lot or other spaces. The device has an impact absorbing material attach to one side of and structural bar while a part of the door outside panel is attached to the other side of the structural bar. The structural bar and the absorbing material are stow inside the door frame. The structural bar is connected through a series of bearings and shafts to an electric motor that rotates the structural bar and exposes the impact material to provide the door protection. The motor is controlled by a solenoid valve.
Claims
1. An apparatus for protecting the outside surface of a vehicle from dings, dents and scratches, comprising: an impact absorbing material; a rotative structural bar; an electrical motor for rotating said rotative structural bar, said electrical motor stored inside said vehicle and connected to said rotative structural bar via a first shaft; wherein the rotative structural bar includes a front bar holder and rear bar holder for joining the rotative structural bar and the impact absorbing material to the outside surface of the vehicle; wherein the front bar holder and rear bar holder serve as rotation points for the rotative structural bar to rotate 180 degrees over its axis; wherein the front bar holder is connected to a first ball bearing and the rear bar holder is connected to a second ball bearing, which in turn facilitate the rotation of the rotative structural bar; a power source for providing energy to said electrical motor, said power source stored inside said vehicle and connected to said electrical motor; at least one solenoid; wherein the rotative structural bar comprises a second shaft and at least one hole capable of receiving the second shaft, which when received by the at least one hole, prevents the undesired rotation of the rotative structural bar; wherein said at least one solenoid is connected to the second shaft via a spring mechanism, such that when the rotative structural bar needs to rotate, the at least one solenoid pulls the shaft and allows the rotation of the structural bar, and wherein once the structural bar finishes its rotation, the spring mechanism releases the second shaft back to the at least one hole in the rotative structural bar; and a remote control to remotely activate said electrical motor.
2. The apparatus as defined in claim 1, wherein the remote control further comprises a microcontroller that emits control signals to control to the electrical motor and the at least one solenoid.
3. The apparatus as defined in claim 1, wherein said power source sends a voltage signal to a microcontroller, which in turn causes the electrical motor to operate and the at least one solenoid to pull the second shaft until the rotative structural bar reaches a desired position, once the desired position is reached, said voltage signal will stop and cause the at least one solenoid to return to its original position, thus securing and restricting the movement of said rotative structural bar.
4. The apparatus as defined in claim 1, wherein said electrical motor is capable of remote activation by emitting a voltage signal that causes a microcontroller to activate the operation of said at least one solenoid once the remote button of said remote control is pressed while the vehicle's shifter is set to parking mode.
5. The apparatus as defined in claim 1, further comprising an LCD screen configured to inform a driver of the vehicle that the apparatus is engaged.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention provides a protective device with an impact absorbing material that can be permanently attached to a rotating bar inside the door and/or side panels of an automobile so that when the automobile is positioned in the parking shift, the rotating bar expose the impact material will preclude the opening of adjacent car doors or other like objects will impact against the device rather than the automobile body.
(2)
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(5)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6)
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(19) Universal joint assembly 13 allows an axial displacement as well as the rotation of the structural bar 1, transferring the torque from the motor shaft 14 to the front bar holder 5.
(20)
(21) Sealed linear solenoid 15 prevents undesired rotation of the structural bar 1 when impacted. A small shaft is always inserted on a hole in the structural bar 1 and when the structural bar 1 needs to rotate, the solenoid 15 pulls the shaft and after the rotation, a spring releases the shaft to its initial position, holding the structural bar 1 in place.
(22) Solenoid holder 16 holds the solenoid 15 in place using shcs screw 17.
(23) Structural support bar-up 18 is used for support and to maintain the door integrity. Structural support bar-up 17 serves as anchor point for solenoid 15.
(24)
(25) Worm-geared motor 20 is used to rotate and to prevent back rotation of the structural bar 1.
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(29) Push button 24 allows for a local activation of the ding and dent protection device 40.
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(32) Voltage regulator 28 receives the voltage before it enters the motor 20 and regulates the output voltage.
(33)
(34) Shifter switch 30 represent when the car is being placed on the parking position.
(35) Although the protective device provided by the present invention have been described with a preferred embodiment, due to large quantity of cars models and the different shapes of those cars, it's is only natural that modifications and variations may be made to fit the cars geometry without departing from the scope of this invention as set forth in the following claims. Such modifications and variations are considered to be within the purview and scope of the appended claims.