IP Library › Granted Patent US 10,850,336
Granted Patent B2
US 10,850,336 · App. 16/250,040 · Granted Dec 1, 2020

Coolant bonnet for a cutting tool

Inventors: Nicholas J. Henry (Greensburg, PA); Tom Bobos (Morton Grove, IL); Keith Hoover (Rockford, IL)
Assignee: KENNAMETAL INC.
B23C5/28B23C5/06B23C2250/12B23D77/006
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Quick Facts
Patent No.
US 10,850,336
App. No.
16/250,040
Granted
Dec 1, 2020
Kind
B2
Abstract

A coolant bonnet for a cutting tool includes a head portion, a shank portion, an internal coolant passage extending through the shank portion and into a coolant manifold disposed within the head portion, and one or more coolant ducts extending radially outward from the manifold to an outlet port. Each coolant duct is aligned with the chip flutes of the cutting tool and directs coolant at a predetermined exit angle in an axially rearward direction toward the cutting edges of a cutting insert mounted on the cutting tool. A method of providing coolant to a cutting edge of a cutting insert mounted on the cutting tool is also disclosed.

Claims (38)

1. A coolant bonnet for a cutting tool, comprising:

a head portion;

a shank portion;

an internal coolant passage extending through the shank portion and into a coolant manifold disposed within the head portion; and

one or more coolant ducts extending radially outward extending from the coolant manifold to an outlet port, each coolant duct in fluid communication with the coolant manifold,

wherein a portion of the one or more coolant ducts is non-linear; and

wherein each coolant duct directs coolant at a predetermined exit angle with respect to a central, longitudinal axis of the coolant bonnet in an axially rearward direction toward the cutting tool.

2. The coolant bonnet of claim 1 , wherein the cutting tool includes one or more chip flutes, and wherein each outlet port is aligned with each chip flute of the cutting tool when the coolant bonnet is properly mounted onto the cutting tool.

3. The coolant bonnet of claim 1 , wherein each outlet port is located on a chamfered side surface of the coolant bonnet.

4. The coolant bonnet of claim 1 , wherein each coolant duct is circular in cross-sectional shape.

5. The coolant bonnet of claim 4 , wherein an amount of coolant emitted by each coolant duct is controlled by forming each coolant duct with a predetermined cross-sectional area at an exit of each coolant duct.

6. The coolant bonnet of claim 1 , wherein the cutting tool comprises a reamer.

7. A combination cutting tool and coolant bonnet, comprising:

a cutting tool, comprising:

a cutting portion having a forward end and a rearward end and a peripheral surface therebetween, the cutting portion including a chip flute that extends rearwardly from the forward end; and a cutting insert mounted on the cutting portion; and

a coolant bonnet mounted onto the cutting tool, the coolant bonnet comprising:

a head portion;

a shank portion;

an internal coolant passage extending through the shank portion and into a coolant manifold disposed within the head portion; and

one or more coolant ducts extending radially outward extending from the coolant manifold to an outlet port, each coolant duct in fluid communication with the coolant manifold,

wherein a portion of the one or more coolant ducts is non-linear; and

wherein each coolant duct directs coolant at a predetermined exit angle with respect to a central, longitudinal axis of the coolant bonnet in an axially rearward direction toward the cutting insert of the cutting tool.

8. The combination of claim 7 , wherein the outlet port of the coolant bonnet is aligned with the chip flute of the cutting tool when the coolant bonnet is properly mounted onto the cutting tool.

9. The combination of claim 7 , wherein each outlet port of the coolant bonnet is located on a chamfered side surface of the coolant bonnet.

10. The combination of claim 7 , wherein each coolant duct of the coolant bonnet is circular in cross-sectional shape.

11. The combination of claim 10 , wherein an amount of coolant emitted by each coolant duct of the coolant bonnet is controlled by forming each coolant duct with a predetermined cross-sectional area at an exit of each coolant duct.

12. The combination of claim 7 , wherein the cutting tool comprises a reamer.

13. A coolant bonnet for a cutting tool, comprising:

a head portion having a top surface and a bottom surface, the top surface defined by a wave-like topography comprising a plurality of crests separated by troughs;

a shank portion;

an internal coolant passage extending through the shank portion and into a coolant manifold disposed within the head portion; and

one or more coolant ducts extending radially outward from the manifold, through a respective crest, to an outlet port, each coolant duct in fluid communication with the coolant manifold,

wherein each coolant duct directs coolant at a predetermined exit angle with respect to a central, longitudinal axis of the coolant bonnet in an axially rearward direction toward the cutting tool.

14. The coolant bonnet of claim 13 , wherein an amplitude of the wave-like topography of the top surface increases in a radially outward direction.

15. The coolant bonnet of claim 13 , wherein the bottom surface is defined by a circumferential, annular surface and a recessed surface disposed radially inward with respect to the circumferential, annular surface.

16. The coolant bonnet of claim 13 , wherein the cutting tool includes one or more chip flutes, and wherein each outlet port is aligned with each chip flute of the cutting tool when the coolant bonnet is properly mounted onto the cutting tool.

17. The coolant bonnet of claim 13 , wherein each outlet port is located on a chamfered side surface of the coolant bonnet.

18. The coolant bonnet of claim 13 , wherein each coolant duct is circular in cross-sectional shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2019
From: HENRY, NICHOLAS J; BOBOS, TOM; HOOVER, KEITH
To: KENNAMETAL INC.
Reel/Frame 048045/0027 →
Continuity (1)
Related Publication 20200230716A1 · Jul 23, 2020
Cited By (1)
US 12,629,759