IP Library › Granted Patent US 10,400,422
Granted Patent B2
US 10,400,422 · App. 14/685,265 · Granted Sep 3, 2019

Fender mounting system

Inventors: Collins Angelo (Chennai, IN); Andrew Rummer (Mt. Zion, IL)
Assignee: Caterpillar Inc.
E02F9/0858B62D25/163B62D25/168B62D25/186E02F3/764E02F3/765
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Quick Facts
Patent No.
US 10,400,422
App. No.
14/685,265
Granted
Sep 3, 2019
Kind
B2
Abstract

A fender mounting system for mounting a fender disposed partially around the circumference of a wheel can include a first bracket, a second bracket, and a third bracket. The first bracket can be attached to a leading radial edge of the fender and depends toward an axis line associated with the wheel. The second bracket can be attached to the radial mid-section of the fender and depends toward the axis line. The third bracket can be attached to a radial trailing edge and depends radial toward the axis line. In an embodiment, the first and third brackets can resist lateral forces along the axis line and the second bracket allows deflection due to lateral forces along the axis line.

Claims (31)

1. A mounting system for mounting a fender having a generally curved shape to a mobile machine such that a curve of the fender is generally aligned with an axis line associated with a wheel of the mobile machine and is disposed partially around a circumference of the wheel, the mounting system comprising:

a first bracket including a first mounting portion adapted to mount to a frame of the mobile machine at a first machine location proximate a wheel hub, a first attachment portion adapted to connect proximate to a leading radial edge of the fender, and a first extension leg between the first mounting portion and the first attachment portion, the first extension leg having a spring-like first flection adapted for resiliently deflecting in response to imparted forces on the fender, the first flection parallel to the axis line and providing an angle in the first extension leg;

a second bracket including a second mounting portion adapted to mount to the frame of the mobile machine at a second machine location proximate the wheel hub; a second attachment portion adapted to connect to a radial midsection of the fender; and a second extension leg between the first mounting portion and the first attachment portion, the second extension leg having a spring-like second flection adapted for resiliently deflecting in response to imparted forces on the fender, the second flection perpendicular to the axis line and providing an angle in the second extension leg; and

wherein the first extension leg includes a first sub-leg extending forward from the first attachment portion in a fore/aft direction and a second sub-leg extending back to the first mounting portion in the fore/aft direction.

2. The mounting system of claim 1 , wherein the first extension leg includes a first major surface and a first minor surface perpendicular to the first major surface.

3. The mounting system of claim 2 , wherein the first flection traverses the first major surface.

4. The mounting system of claim 1 , wherein the second extension leg includes a second major surface and a second minor surface perpendicular to the second major surface.

5. The mounting system of claim 4 , wherein the second flection traverses the second major surface.

6. The mounting system of claim 1 , wherein the second extension leg includes a first sub-leg extending axially inboard with respect to the fender from the second attachment portion and a second sub-leg extending axially outboard with respect to the fender to the second mounting portion.

7. The mounting system of claim 1 , further comprising:

a third bracket including a third mounting portion adapted to mount to the frame of the mobile machine at the second machine location proximate the wheel hub, a third attachment portion adapted to connect proximate to a trailing radial edge of the fender, and a third extension leg disposed between the third mounting portion and the third attachment portion, the third extension leg having a spring-like third flection adapted for resiliently deflecting in response to imparted force on the fender, the third flection parallel to the axis line and providing an angle in the third extension leg.

8. The mounting system of claim 7 , wherein the third extension leg includes a third major surface and third minor surface perpendicular to the third major surface, the third flection traversing the third major surface.

9. The mounting system of claim 8 , wherein the third extension leg includes a first sub-leg extending from the third attachment portion initially in an axial direction and then in an radial direction and a second sub-leg extending to the third mounting portion.

10. The mounting system claim 7 , wherein:

the first extension leg includes a first major surface;

the second extension leg includes a second major surface; and

the third extension leg includes a third major surface;

wherein a first width of the first major surface and a third width of the third major surface are less than a second width of the second major surface.

11. The mounting system of claim 1 , wherein:

the first attachment portion of the first bracket attaches to the fender via a first support tie having a support leg traversing the fender and an attachment leg disposed radially inward; and

the second attachment portion of the second bracket attaches to the fender via a second support tie having a support leg traversing the fender and a second attachment leg disposed radially inward.

12. The mounting system of claim 11 , wherein the support leg of the first support tie and the support leg of the second support tie attach to a fender support radially disposed along the fender.

13. A mounting system for mounting a fender to a mobile machine having fore/aft directions, inboard/outboard directions, and up/down directions, the mounting system comprising:

a first bracket including a first mounting portion adapted to mount to a frame of the mobile machine, a first attachment portion adapted to connect to the fender disposed partially around a wheel of the mobile machine, and a first extension leg between the first mounting portion and the first attachment portion, the first extension leg having a first major surface and a first spring-like flection traversing the first major surface allowing resilient deflection of the fender in the fore/aft directions and the up/down directions;

a second bracket including a second mounting portion adapted to mount to the frame of the mobile machine, a second attachment portion adapted to connect to the fender, and a second extension leg between the second mounting portion and the second attachment portion, the second extension leg having a second major surface and a second spring-like flection traversing the second major surface allowing resilient deflection in the inboard/outboard directions and the up/down directions; and

a third bracket having a third mounting portion adapted to mount to the frame and a third attachment portion adapted to attach to the fender.

14. The mounting system of claim 13 ,

wherein the third bracket includes a third extension leg between the third mounting portion and the third attachment portion, the third extension leg having a third major surface and a spring-like third flection traversing the third major surface allowing resilient deflection of the fender in fore/aft directions and the up/down directions.

15. The mounting system of claim 14 , wherein the fender has a generally curved shape and is mounted such that a curve of fender is aligned with an axis line of the wheel of the mobile machine.

16. The mounting system of claim 15 , wherein the first flection and the third flection are aligned parallel to the axis line.

17. The mounting system of claim 16 , wherein the second flection is aligned perpendicular to the axis line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2015
From: ANGELO, COLLINS; RUMMER, ANDREW
To: CATERPILLAR INC.
Reel/Frame 035401/0200 →
Continuity (2)
Provisional Application 61980079 · Apr 16, 2014
Related Publication 20150299982A1 · Oct 22, 2015
Cited By (1)
US 1,126,845