Oversized brake piston footing
A brake piston is described. The brake piston is configured for use in a disk brake system, the piston comprising: a body having an outside width perpendicular to a central axis; a footing disposed at a distal end of the piston; wherein the footing is configured to exert force on a brake pad during actuation of the disk brake system; the footing having a face configured to contact the brake pad, the face having a length and a width, wherein the length is longer than the outside width of the body, and the length is greater than the width.
1. A disk brake piston comprising:
a load bearing column within a piston body, the load bearing column comprising:
a footing configured to push against a brake pad; and
a core extending from the footing and slidably located within the piston body; and
a spindle nut located at least partially within the core, the spindle nut having an inner surface configured for functional communication with a spindle, and an outer surface in functional communication with the core, the outer surface having a first portion and the core having a corresponding portion, wherein the first portion and the corresponding portion prevent relative rotation of the core and the spindle nut;
wherein the spindle nut is configured to push the load bearing column which pushes on the brake pad, and
wherein an internal cavity for receiving hydraulic fluid to provide braking force is formed between an inner surface of the core and the outer surface of the spindle nut.
2. The disk brake piston of claim 1 , wherein the spindle nut has a distal end proximate the footing, and the distal end of the spindle nut pushes the load bearing column which pushes on the brake pad.
3. The disk brake piston of claim 2 , wherein the distal end of the spindle nut pushes on the footing which pushes on the brake pad.
4. The disk brake piston of claim 2 , wherein the distal end of the spindle nut pushes on a portion of the core proximate the footing.
5. The disk brake piston of claim 1 , wherein the core is slidable in an axial direction with respect to the spindle nut.
6. The disk brake piston of claim 1 , wherein the footing and the core comprise metallic material and the piston body comprises non-metallic material.