IP Library › Granted Patent US 10,967,823
Granted Patent B2
US 10,967,823 · App. 16/112,292 · Granted Apr 6, 2021

Radiator stone impact protective guard

Inventors: Michael Wojdyla (Warren, MI); Michael Lacey (Allen Park, MI); Shane Harte (Novi, MI)
Assignee: DENSO International America, Inc.
B60R19/52B60K11/08B60R2019/525
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Quick Facts
Patent No.
US 10,967,823
App. No.
16/112,292
Granted
Apr 6, 2021
Kind
B2
Abstract

An engine cooling module having a radiator and a stone guard. The stone guard protects a core of the radiator from potential damage by foreign objects, such as stones.

Claims (25)

1. An engine cooling module comprising:

a radiator including a core having a plurality of coolant tubes, a first radiator bracket, and a second radiator bracket, the first radiator bracket and the second radiator bracket are configured to mount the radiator adjacent to an engine of a vehicle for cooling the engine; and

a stone guard directly mounted to the radiator with a first stone guard bracket and a second stone guard bracket both integral with the stone guard, the first stone guard bracket is mounted to the first radiator bracket, and the second stone guard bracket is mounted to the second radiator bracket, the stone guard including a grid having a plurality of first members and a plurality of second members extending perpendicular to the first members, an entirety of the grid is spaced apart from the core of the radiator such that no portion of the grid contacts the core.

2. The engine cooling module of claim 1 , wherein the first members are horizontal and the second members are vertical.

3. The engine cooling module of claim 1 , wherein the grid is suspended over the core without supports between the grid and the core.

4. The engine cooling module of claim 1 , wherein the stone guard is made of a polymeric material.

5. The engine cooling module of claim 1 , wherein the grid of the stone guard is flexible, and flexes towards the core when contacted by a foreign object.

6. The engine cooling module of claim 1 , wherein the grid of the stone guard is flexible, and flexes to touch the core when contacted by a foreign object including a stone.

7. The engine cooling module of claim 5 , wherein a natural vibration frequency (stiffness) of the grid of the stone guard is above a primary forcing frequency of a vehicle that the engine cooling module is included with, the grid flexes towards the core of the radiator and does not contact the plurality of coolant tubes during normal operation of the vehicle.

8. The engine cooling module of claim 7 , wherein the natural vibration frequency of the grid is at least 26 Hz.

9. The engine cooling module of claim 1 , wherein the stone guard extends across only an upper half of the core and does not extend to a lower half of the core.

10. The engine cooling module of claim 1 , wherein the radiator cools a vehicle low temperature circuit.

11. The engine cooling module of claim 1 , wherein the grid is spaced apart from the core of the radiator at a distance of about 3 mm to about 7 mm.

12. An engine cooling module for cooling an engine of a vehicle, the engine cooling module comprising:

a radiator including a core having a plurality of coolant tubes extending across the core; and

a stone guard directly mounted to the radiator, the stone guard including a grid that extends across the core of the radiator to protect the core from foreign objects, an entirety of the grid is spaced apart from the core to define a gap therebetween such that no portion of the grid contacts the core, a natural vibration frequency (stiffness) of the grid is above a primary forcing frequency of the vehicle that the engine cooling module is included with;

wherein:

the natural vibration frequency (stiffness) of the grid is such that during normal operation of the vehicle, vibrations transferred to the stone guard from the vehicle are insufficient to cause the grid of the stone guard to flex across the gap and contact the core of the radiator;

the natural vibration frequency (stiffness) of the grid is such that upon impact of a foreign object against the grid, the grid flexes inwards towards the core to absorb impact energy; and

the natural vibration frequency (stiffness) of the grid is such that when the impact energy exceeds a predetermined threshold, the grid flexes through the gap and contacts the core, the core is configured to support the grid to absorb impact of the foreign object.

13. The engine cooling module of claim 12 , wherein the stone guard is made of a polymeric material.

14. The engine cooling module of claim 12 , wherein the natural vibration frequency of the grid is at least 26 Hz.

15. The engine cooling module of claim 12 , wherein the stone guard is mounted to the radiator such that the stone guard extends across only an upper half of the core and does not extend to a lower half of the core.

16. The engine cooling module of claim 12 , wherein the grid is suspended over the core without supports between the grid and the core.

17. The engine cooling module of claim 12 , wherein the engine cooling module is a hybrid electric vehicle engine cooling module.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2018
From: WOJDYLA, MICHAEL; LACEY, MICHAEL; HARTE, SHANE
To: DENSO INTERNATIONAL AMERICA, INC.
Reel/Frame 047211/0031 →
Continuity (2)
Provisional Application 62549498 · Aug 24, 2017
Related Publication 20190061662A1 · Feb 28, 2019
Cited By (1)
US 12,687,352