IP Library › Granted Patent US 10,260,806
Granted Patent B2
US 10,260,806 · App. 15/137,434 · Granted Apr 16, 2019

Vehicle wash drying system

Inventors: Robert J. Wentworth (Farmington Hills, MI); Lionel Belanger (Northville, MI)
Assignee: Motor City Wash Works, Inc.
F26B5/16B60S3/002B60S3/06F26B15/10F26B2210/12
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Quick Facts
Patent No.
US 10,260,806
App. No.
15/137,434
Granted
Apr 16, 2019
Kind
B2
Abstract

A drying station for a vehicle wash facility includes at least one rotatable drying wheel positioned adjacent a vehicle treatment area. The at least one rotatable drying wheel has a drying material disposed thereon and is configured to engage an exterior of the vehicle to remove water accumulated thereon. The drying station includes a beater device disposed adjacent the at least one rotatable drying wheel with the beater device and the drying wheel being engageable as the at least one rotatable drying wheel rotates. As the rotatable drying wheel spins, the drying material contacts the beater device to help minimize its level of saturation.

Claims (78)

1. A method of reducing saturation of a drying material of a drying wheel of a vehicle wash facility, the method comprising:

rotating the drying wheel at a first speed, such that the drying material of the drying wheel is configured to engage an exterior of a vehicle; and

rotating the drying wheel at a second speed, greater than the first speed, such that the beater device radially penetrates the drying wheel as the drying wheel rotates, such that the beater device drives moisture from the drying material;

wherein the beater device is configured penetrate the drying material only when the drying wheel is rotating at a speed at least equal to the second speed.

2. The method, as set forth in claim 1 , further comprising positioning the beater device adjacent the drying wheel, such that the beater device is configured to radially penetrate the drying material when the drying wheel is rotating.

3. The method, as set forth in claim 1 , further comprising rotating the drying wheel such that the drying material is caused to engage the surface of the vehicle to remove moisture from the exterior of the vehicle.

4. A method of reducing saturation of a drying material of a drying wheel of a vehicle wash facility, the method comprising:

rotating the drying wheel;

radially penetrating the drying wheel with a beater device as the drying wheel rotates, such that the beater device drives moisture from the drying material;

monitoring, with a controller, a draw and a current being required to effectuate rotation of the drying wheel to dry an exterior of the vehicle with the drying material; and

sending a signal from the controller to the drying wheel to effectuate rotation of the drying wheel to cause the beater device to radially penetrate the drying material when the required draw and current exceeds a threshold amount;

wherein rotating the drying wheel such that the beater device is caused to radially penetrate the drying material is in response to receiving the signal from the controller to effectuate rotation.

5. The method, as set forth in claim 1 , further comprising moving the beater device from one of a first location and a second location to the other one of the first location and the second location;

wherein the beater device is positioned adjacent the drying wheel when the beater device is in the first location, such that the beater device radially penetrates the drying material when the drying wheel is rotating; and

wherein the beater device is not positioned adjacent the drying wheel when the beater device is in the second location, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating.

6. The method, as set forth in claim 5 , further comprising sending a signal from a controller to move the beater device from the one of the first location and the second location to the other one of the first location and the second location; and

wherein moving the beater device is further defined as moving the beater device from one of a first location and a second location to the other one of the first location and the second location in response to receiving the signal from the controller to move the beater device.

7. A method of reducing saturation of a drying material of a drying wheel of a vehicle wash facility, the method comprising:

rotating the drying wheel;

radially penetrating the drying wheel with a beater device as the drying wheel rotates, such that the beater device drives moisture from the drying material;

moving the drying wheel from one of a first position and a second position to the other one of the first position and the second position;

wherein the beater device is positioned adjacent the drying wheel when the drying wheel is in the second position, such that the beater device is configured to radially penetrate the drying material when the drying wheel is rotating to drive moisture from the drying material; and

wherein the drying material of the drying wheel is prevented from engaging the exterior of a vehicle when the drying wheel is positioned in the second position;

wherein the beater device is not positioned adjacent the drying wheel when the drying wheel is in the first position, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating; and

wherein the drying material of the drying wheel is configured to engage an exterior of a vehicle when the drying wheel is positioned in the first position.

8. The method, as set forth in claim 7 , further comprising sending a signal from a controller to move the drying wheel from the one of the first position and the second position to the other one of the first position and the second position; and

moving the drying wheel is further defined as moving the drying wheel from the one of the first position and the second position to the other one of the first position and the second position in response to receiving the signal from the controller.

9. A method of reducing saturation of a drying material of a drying wheel of a vehicle wash facility, the method comprising:

rotating the drying wheel;

radially penetrating the drying wheel with a beater device as the drying wheel rotates, such that the beater device drives moisture from the drying material;

counting, with a controller, a quantity of vehicles having an exterior dried by the drying material when the vehicle is in the wash facility without having effectuated engagement of the beater device with the drying material of the drying wheel; and

sending a signal from the controller to the drying wheel to effectuate rotation of the drying wheel when the counted quantity of quantity of vehicles having the exterior dried by the drying material is at least equal to a threshold quantity;

wherein rotating the drying wheel such that the beater device is caused to radially penetrate the drying material is in response to receiving the signal from the controller to effectuate rotation.

10. The method, as set forth in claim 9 , further comprising:

sending a signal from a controller to a supply of liquid; and

actuating the supply of water such that water is sprayed on the drying material in response to receiving the signal from the controller.

11. The method, as set forth in claim 10 , further comprising:

sending a signal from the controller to a supply of soap; and

actuating the supply of soap such that soap is applied to the drying material of the drying wheel in response to receiving the signal from the controller;

wherein radially penetrating the drying wheel with a beater device as the drying wheel rotates is further defined as radially penetrating the drying wheel with a beater device as the drying wheel rotates such that the beater device agitates the drying wheel and drives moisture and dirt from the drying material.

12. A method of reducing saturation of a drying material of a plurality of drying wheels of a vehicle wash facility, the method comprising:

sending a signal to the drying wheel, from a controller, to effectuate rotation of the drying wheel at a first speed;

rotating the drying wheel at the first speed, in response to receiving the signal from the controller, such that the drying material of the drying wheel is configured to engage an exterior of a vehicle located in the vehicle wash facility;

sending another signal to the drying wheel, from the controller, to effectuate rotation of the drying wheel at a second speed; and

rotating the drying wheel at the second speed, greater than the first speed, in response to receiving the other signal from the controller, such that the beater device is caused to radially penetrate the drying material to drive moisture from the drying material;

wherein the beater device cannot radially penetrate the drying material when the drying wheel is rotating at a speed less than the second speed.

13. The method, as set forth in claim 12 , further comprising monitoring, with the controller, a draw and a current being required to effectuate rotation of the drying wheel; and

sending a signal to the drying wheel, from the controller, to effectuate rotation of the drying wheel at the second speed to cause the beater device to radially penetrate the drying material when the draw and the current exceeds a threshold amount.

14. The method, as set forth in claim 12 , further comprising moving the beater device from one of a first location and a second location to the other one of the first location and the second location;

wherein the beater device is positioned adjacent the drying wheel when the beater device is in the first location, such that the beater device radially penetrates the drying material when the drying wheel is rotating at the second speed; and

wherein the beater device is not positioned adjacent the drying wheel when the beater device is in the second location, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating at the second speed.

15. The method, as set forth in claim 14 , further comprising sending a signal from the controller to move the beater device from the one of the first location and the second location to the other one of the first location and the second location.

16. The method, as set forth in claim 12 , further comprising moving the drying wheel from one of a first position and a second position to the other one of the first position and the second position;

wherein the beater device is positioned adjacent the drying wheel when the drying wheel is in the second position, such that the beater device radially penetrates the drying material when the drying wheel is rotating at the second speed; and

wherein the beater device is not positioned adjacent the drying wheel when the drying wheel is in the first position, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating at each of the first speed and the second speed.

17. The method, as set forth in claim 16 , further comprising sending a signal from a controller to move the drying wheel from the one of the first position and the second position to the other one of the first position and the second position;

wherein the drying material of the drying wheel is configured to engage an exterior of a vehicle in the drying station when the drying wheel is positioned in the first position; and

wherein the drying material of the drying wheel is prevented from engaging the exterior of a vehicle in the drying station when the drying wheel is positioned in the second position.

18. The method, as set forth in claim 12 , further comprising counting, with the controller, a quantity of vehicles having the exterior dried by the drying material without having effectuated engagement of the beater device with the drying material of the drying wheel; and

sending a signal from the controller to the drying wheel to effectuate rotation of the drying wheel to rotate at the second speed when the counted quantity of quantity of vehicles having the exterior dried by the drying material is at least equal to a threshold quantity.

19. A method of reducing saturation of a drying material of drying wheel of a vehicle wash facility, the method comprising:

rotating the drying wheel at a first speed, such that the drying material of the drying wheel is configured to engage and remove moisture from an exterior of a vehicle located in the vehicle wash facility;

rotating the drying wheel at a second speed, greater than the first speed, such that centrifugal force pushes water to the outer diameter of the drying wheel to reduce a level of saturation of the drying material; and

radially penetrating the drying wheel with a beater device as the drying wheel is rotating at the second speed, such that the beater device contacts the drying material to fling accumulated moisture from the outer diameter of the drying wheel.

20. The method, as set forth in claim 4 , further comprising positioning the beater device adjacent the drying wheel, such that the beater device is configured to radially penetrate the drying material when the drying wheel is rotating.

21. The method, as set forth in claim 4 , further comprising rotating the drying wheel such that the drying material is caused to engage the surface of the vehicle to remove moisture from the exterior of the vehicle.

22. The method, as set forth in claim 4 , further comprising moving the beater device from one of a first location and a second location to the other one of the first location and the second location;

wherein the beater device is positioned adjacent the drying wheel when the beater device is in the first location, such that the beater device radially penetrates the drying material when the drying wheel is rotating; and

wherein the beater device is not positioned adjacent the drying wheel when the beater device is in the second location, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating.

23. The method, as set forth in claim 22 , further comprising sending a signal from a controller to move the beater device from the one of the first location and the second location to the other one of the first location and the second location; and

wherein moving the beater device is further defined as moving the beater device from one of a first location and a second location to the other one of the first location and the second location in response to receiving the signal from the controller to move the beater device.

24. The method, as set forth in claim 9 , further comprising positioning the beater device adjacent the drying wheel, such that the beater device is configured to radially penetrate the drying material when the drying wheel is rotating.

25. The method, as set forth in claim 9 , further comprising rotating the drying wheel such that the drying material is caused to engage the surface of the vehicle to remove moisture from the exterior of the vehicle.

26. The method, as set forth in claim 9 , further comprising moving the beater device from one of a first location and a second location to the other one of the first location and the second location;

wherein the beater device is positioned adjacent the drying wheel when the beater device is in the first location, such that the beater device radially penetrates the drying material when the drying wheel is rotating; and

wherein the beater device is not positioned adjacent the drying wheel when the beater device is in the second location, such that the beater device is prevented from radially penetrating the drying material when the drying wheel is rotating.

27. The method, as set forth in claim 26 , further comprising sending a signal from a controller to move the beater device from the one of the first location and the second location to the other one of the first location and the second location; and

wherein moving the beater device is further defined as moving the beater device from one of a first location and a second location to the other one of the first location and the second location in response to receiving the signal from the controller to move the beater device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2016
From: WENTWORTH, ROBERT J.; BELANGER, LIONEL
To: MOTOR CITY WASH WORKS, INC.
Reel/Frame 038379/0622 →
Continuity (3)
Continuation 13411985 · Mar 5, 2012
Provisional Application 61449239 · Mar 4, 2011
Related Publication 20160238316A1 · Aug 18, 2016
Cited By (1)
US 12,472,908