IP Library Granted Patent US 12,343,889
Granted Patent B2
US 12,343,889 · App. 18/421,299 · Granted Jul 1, 2025

Thermal insulative barrier blade cap

Inventors: Richard J. Tringali (Racine, WI); Jeffrey D. Gross (Kenosha, WI); Joseph Novak (Milwaukee, WI)
Assignee: Andis Company
B26B19/3813B26B19/3853B26B19/3846
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Quick Facts
Patent No.
US 12,343,889
App. No.
18/421,299
Granted
Jul 1, 2025
Kind
B2
Abstract

A blade cap is provided to shield a user from heat generated by operation of a blade assembly. The blade cap provides an insulative barrier between the blade assembly and the skin of the user. The blade cap may prevent discomfort or burns from the heat generated by the blade assembly. The blade cap includes openings, channels, projections, tabs, and other formations to allow the flow of air through the passageways between the blade cap and the blade.

Claims (44)

1. A hair cutter blade assembly comprising:

an inner blade including inner blade teeth;

an outer blade including outer blade teeth, wherein the inner blade is supported relative to the outer blade; and

a thermal barrier removably couplable to the outer blade, the thermal barrier comprising:

a perimeter wall, the perimeter wall comprising:

a plurality of tabs, the plurality of tabs positioned on a top of the perimeter wall and engaging an inner surface of the outer blade;

a clip; and

a plurality of vent openings defined within the top of the perimeter wall:

wherein the plurality of tabs and the clip engage the inner surface of the outer blade to secure the thermal barrier to the outer blade.

2. The hair cutter blade assembly of claim 1 , wherein at least one of the plurality of vent openings is positioned between the plurality of tabs.

3. The hair cutter blade assembly of claim 1 , further comprising projections on an inner surface of the thermal barrier.

4. The hair cutter blade assembly of claim 1 , the thermal barrier further comprising a lateral side positioned along a lateral edge of the outer blade and wherein the plurality of tabs are positioned along the lateral side of the thermal barrier.

5. The hair cutter blade assembly of claim 1 , further comprising a yoke coupled to the inner blade, wherein the yoke is configured to be coupled to an eccentric drive driven by a motor such that when the yoke is coupled to the eccentric drive, rotation of the eccentric drive moves the inner blade relative to the outer blade.

6. The hair cutter blade assembly of claim 1 , further comprising voids on an inner surface of the thermal barrier between the thermal barrier and the outer blade.

7. The hair cutter blade assembly of claim 6 , further comprising channels interconnecting the voids located between the thermal barrier and the outer blade.

8. The hair cutter blade assembly of claim 1 , wherein the thermal barrier is formed from a thermoplastic polymer.

9. A hair cutter assembly, comprising:

an inner blade including inner blade teeth;

an outer blade including outer blade teeth and a rear edge opposing the outer blade teeth, wherein the inner blade is supported relative to the outer blade; and

a blade cap coupled to the outer blade, the blade cap comprising:

open pockets located between an inner surface of the blade cap and a surface of the outer blade;

channels connecting the open pockets;

a perimeter wall surrounding the rear edge of the outer blade; and

a plurality of openings defined within a top of the perimeter wall and spaced from the open pockets.

10. The hair cutter assembly of claim 9 , the blade cap further comprising a plurality of projections on the inner surface of the blade cap facing the outer blade.

11. The hair cutter assembly of claim 10 , wherein the plurality of projections are positioned against the perimeter wall of the blade cap.

12. The hair cutter assembly of claim 10 , wherein the plurality of projections extend from the inner surface of the blade cap toward the outer blade.

13. The hair cutter assembly of claim 9 , further comprising snap tabs and a clip on the perimeter wall of the blade cap, the snap tabs and the clip engage the outer blade.

14. The hair cutter assembly of claim 13 , wherein at least one of the plurality of openings of the perimeter wall is positioned between the snap tabs and the clip.

15. A hair cutter, comprising:

a blade assembly comprising:

an inner blade including inner blade teeth;

an outer blade including outer blade teeth, wherein the inner blade is supported relative to the outer blade; and

a thermal barrier removably couplable to the blade assembly, the thermal barrier engaging an inner surface of the outer blade, the thermal barrier comprising:

open pockets located between an inner surface of the thermal barrier and the outer blade;

a plurality of projections on the inner surface of the thermal barrier and extending toward the outer blade;

a plurality of channels that are positioned on the inner surface of the thermal barrier and connect the open pockets; and

a vertical perimeter wall, wherein at least some of the plurality of projections are positioned against the vertical perimeter wall.

16. The hair cutter of claim 15 , the vertical perimeter wall further comprising one or more tabs partially surrounding the outer blade, the one or more tabs engage the inner surface of the outer blade.

17. The hair cutter of claim 15 , further comprising vent openings extending through the vertical perimeter wall of the thermal barrier, wherein the vent openings are in fluid communication with ambient air.

18. The hair cutter of claim 15 , further comprising:

a drive assembly comprising a motor coupled to an eccentric drive shaft; and

a yoke coupled to the inner blade and the eccentric drive shaft;

wherein rotation of the eccentric drive shaft moves the inner blade relative to the outer blade.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2024
From: TRINGALI, RICHARD; GROSS, JEFFREY; NOVAK, JOSEPH
To: ANDIS COMPANY
Reel/Frame 066425/0615 →
Continuity (4)
Continuation 17538546 · Nov 30, 2021
Continuation 16707494 · Dec 9, 2019
Provisional Application 62778650 · Dec 12, 2018
Related Publication 20240157587A1 · May 16, 2024
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