IP Library › Granted Patent US 11,331,825
Granted Patent B2
US 11,331,825 · App. 16/914,286 · Granted May 17, 2022

Portable cutting device with vacuum and laser guide

Inventor: Charles B. Martin (Washington, IL)
B27G19/04B23D59/006B27B9/02
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Quick Facts
Patent No.
US 11,331,825
App. No.
16/914,286
Granted
May 17, 2022
Kind
B2
Abstract

A portable cutting device having a cutting tool for cutting a material. The cutting device includes a motor driving the cutting tool and a shroud at least partially enclosing the cutting tool. The shroud defines a debris accumulation chamber for gathering debris created by the cutting tool cutting the material. An impeller is operatively coupled to the motor and driven by the motor to create suction pressure to draw the debris out of the debris accumulation chamber and into a collection bag.

Claims (19)

1. A cutting device comprising: a motor for driving a cutting blade to cut material; a shroud configured to at least partially enclose the cutting blade, said shroud defining a debris chamber into which material debris generated by the cutting blade during cutting is received; a source of vacuum in fluid communication with said debris chamber; a vacuum conduit defining a vacuum path extending between said debris chamber and said source of vacuum; a platform assembly coupled to said shroud and including: a deck plate defining an upper opening for receiving the cutting blade; a base plate defining a lower opening for receiving the cutting blade, said base plate being movable between a plurality of cut depth positions relative to said shroud; and a pivot joint coupling said base plate to said deck plate wherein said base plate is pivotable between a plurality of cut angle positions in which a relative angle between said deck plate and said base plate is varied; and an expandable section disposed between said shroud and said platform assembly, the expandable section comprising a first expandable portion sealing about said base plate and said shroud as said base plate moves between the plurality of cut depth positions relative to said shroud, and a second expandable portion sealing about said base plate and said deck plate as said deck plate moves between said plurality of cut angle positions relative to said base plate.

2. The cutting device of claim 1 , including a vacuum housing wherein said source of vacuum includes a vacuum impeller coupled to said motor and disposed in said vacuum housing, said vacuum housing defining a vacuum chamber in fluid communication with said debris chamber.

3. The cutting device of claim 2 , including a collection container wherein said vacuum housing includes an exhaust port for directing the material debris into said collection container.

4. The cutting device of claim 1 , including a second vacuum conduit defining a second vacuum path extending between said debris chamber and said source of vacuum.

5. The cutting device of claim 1 , wherein said second expandable portion sealing about said deck plate and said base plate is defined by a flexible bellows.

6. The cutting device of claim 1 , wherein said expandable section disposed between said shroud and said platform assembly is defined by a flexible bellows.

7. A cutting device comprising: a motor for driving a cutting blade to cut material; a shroud configured to at least partially enclose the cutting blade, said shroud defining a debris chamber into which material debris generated by the cutting blade during cutting is received; a source of vacuum in fluid communication with said debris chamber; a vacuum conduit defining a vacuum path extending between said debris chamber and said source of vacuum; a platform assembly coupled to said shroud and including: an upper member defining an upper opening for receiving the cutting blade; a lower member defining a lower opening for receiving the cutting blade, said lower member being movable between a plurality of cut depth positions relative to said shroud; and a pivot joint coupling said lower member to said upper member wherein said lower member is pivotable between a plurality of cut angle positions in which a relative angle between said upper member and said lower member is varied; and an expandable section disposed between said shroud and said platform assembly, the expandable section comprising a first expandable portion sealing about said lower member and said shroud as said lower member moves between the plurality of cut depth positions relative to said shroud, and a second expandable portion sealing about said lower member and said upper member as said upper member moves between said plurality of cut angle positions relative to said lower member.

8. The cutting device of claim 7 , including a vacuum housing wherein said source of vacuum includes a vacuum impeller coupled to said motor and disposed in said vacuum housing, said vacuum housing defining a vacuum chamber in fluid communication with said debris chamber.

9. The cutting device of claim 8 , including a collection container wherein said vacuum housing includes an exhaust port for directing the material debris into said collection container.

10. The cutting device of claim 7 , including a second vacuum conduit defining a second vacuum path extending between said debris chamber and said source of vacuum.

11. The cutting device of claim 7 , wherein said second expandable portion sealing about said upper member and said lower member is defined by a flexible bellows.

12. The cutting device of claim 7 , wherein said expandable section disposed between said shroud and said platform assembly is defined by a flexible bellows.

13. A cutting device comprising: a cutting blade; a motor coupled to said cutting blade to drive said cutting blade; a shroud configured to at least partially enclose said cutting blade, said shroud defining a debris chamber into which material debris generated by said cutting blade during cutting is received; a source of vacuum in fluid communication with said debris chamber; a vacuum conduit defining a vacuum path extending between said debris chamber and said source of vacuum; a platform assembly coupled to said shroud and including: an upper member defining an upper opening for receiving said cutting blade; a lower member defining a lower opening for receiving said cutting blade, said lower member being movable between a plurality of cut depth positions relative to said shroud; and a pivot joint coupling said lower member to said upper member wherein said lower member is pivotable between a plurality of cut angle positions in which a relative angle between said upper member and said lower member is varied; and an expandable section disposed between said shroud and said platform assembly, the expandable section comprising a first expandable portion sealing about said lower member and said shroud as said lower member moves between the plurality of cut depth positions relative to said shroud, and a second expandable portion sealing about said lower member and said upper member as said upper member moves between said plurality of cut angle positions relative to said lower member.

14. The cutting device of claim 13 , including:

a vacuum housing wherein said source of vacuum includes a vacuum impeller coupled to said motor and disposed in said vacuum housing, said vacuum housing defining a vacuum chamber in fluid communication with said debris chamber; and

a collection container wherein said vacuum housing includes an exhaust port for directing the material debris into said collection container.

15. The cutting device of claim 13 , including a second vacuum conduit defining a second vacuum path extending between said debris chamber and said source of vacuum.

16. The cutting device of claim 7 , wherein said second expandable portion sealing about said upper member and said lower member is defined by a flexible bellows.

17. The cutting device of claim 13 , wherein said expandable section disposed between said shroud and said platform assembly is defined by a flexible bellows.

Continuity (6)
Continuation 15984648 · May 21, 2018
Continuation 14993326 · Jan 12, 2016
Continuation 14136903 · Dec 20, 2013
Division 12767687 · Apr 26, 2010
Provisional Application 61172607 · Apr 24, 2009
Related Publication 20200324433A1 · Oct 15, 2020
Cited By (1)
US 12,318,853