IP Library › Granted Patent US 11,149,416
Granted Patent B2
US 11,149,416 · App. 16/748,961 · Granted Oct 19, 2021

System for securing bits against rotation

Inventors: David B. Parzynski (Peoria, IL); Thomas M. Congdon (Dunlap, IL)
Assignee: Caterpillar Inc.
E02F9/2825E02F3/8152E02F9/2816E02F9/2833B28D1/188
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Quick Facts
Patent No.
US 11,149,416
App. No.
16/748,961
Granted
Oct 19, 2021
Kind
B2
Abstract

A system for use in securing bits against rotation in a motor grader may include a bit, with the bit having a shank. The shank may include a locking portion. The system may include an adapter board including a hole configured to receive the shank of the bit. The system may also include an anti-rotation plate configured to engage the locking portion of the shank of the bit such that the anti-rotation plate constrains the bit against rotation with respect to the adapter board.

Claims (28)

1. A bit securing system comprising:

at least two bits, each bit including a respective shank, each shank including a respective locking portion;

an adapter board including at least two holes, each respective hole of the adapter board configured to receive one respective shank of the at least two bits; and

an anti-rotation plate configured to engage the respective locking portions of the shanks of the at least two bits such that the anti-rotation plate constrains the at least two bits against rotation with respect to the adapter board, wherein

the adapter board includes a lower surface and an upper surface;

each bit includes a respective shoulder;

each shank extends from a respective shoulder; and

when each shank of the at least two bits is received within a respective hole of the adapter board with each shoulder abutting the lower surface of the adapter board, the respective locking portions extend outside each respective hole from the upper surface of the adapter board.

2. The bit securing system of claim 1 , wherein:

the locking portion of each shank includes a non-circular cross-sectional shape;

the anti-rotation plate includes at least two slots; and

each slot is configured to engage the non-circular cross-sectional shape of a respective locking portion of each shank.

3. The bit securing system of claim 2 , wherein each slot of the anti-rotation plate is configured to interlock with the non-circular cross-sectional shape of a respective locking portion of each shank.

4. The bit securing system of claim 2 , wherein each slot of the anti-rotation plate includes a complementary shape with respect to the non-circular cross-sectional shape of a respective locking portion of each shank.

5. The bit securing system of claim 1 , wherein:

each locking portion of the at least two bits includes an engagement surface;

the anti-rotation plate includes at least two slots;

each slot is configured to receive a respective locking portion; and

the anti-rotation plate is configured to contact the engagement surface of each locking portion.

6. The bit securing system of claim 1 , wherein:

each locking portion of the at least two bits includes an engagement surface;

the anti-rotation plate includes at least two slots; and

when two or more locking portions of the at least two bits are received within respective slots of the anti-rotation plate, the anti-rotation plate abuts the engagement surfaces of the locking portions.

7. A bit securing system comprising:

at least two bits, each bit including a respective shank, each shank including a respective locking portion;

an adapter board including at least two holes, each respective hole of the adapter board configured to receive one respective shank of the at least two bits;

an anti-rotation plate configured to engage the respective locking portions of the shanks of the at least two bits such that the anti-rotation plate constrains the at least two bits against rotation with respect to the adapter board; and

a plurality of linchpins, wherein each locking portion includes a respective hole configured to receive at least a portion of a respective linchpin therein.

Continuity (3)
Division 15864171 · Jan 8, 2018
Provisional Application 62444179 · Jan 9, 2017
Related Publication 20200157781A1 · May 21, 2020
Cited By (1)
US 12,486,638