IP Library › Granted Patent US 8,397,834
Granted Patent B2
US 8,397,834 · App. 12/726,623 · Granted Mar 19, 2013

Oscillating tool with vibration damping system

Inventors: Mark Hellig (Winnenden, DE); Juergen Blickle (Goeppingen, DE); Alfred Schreiber (Kirchheim, DE)
Assignee: C. & E. Fein GmbH
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Quick Facts
Patent No.
US 8,397,834
App. No.
12/726,623
Granted
Mar 19, 2013
Kind
B2
Abstract

An oscillating tool comprises a housing that accommodates a motor which for driving a tool is coupled with a drive shaft via an oscillation drive, for driving it about its longitudinal axis rotatingly oscillatingly. For reducing vibrations, there is provided an inertial mass that is movably held on the housing via at least one spring element.

Claims (36)

1. An oscillating tool comprising:

a housing;

a motor received within said housing;

a drive shaft for driving a tool;

an oscillation drive driven by said motor for driving said drive shaft rotatingly oscillatingly about a longitudinal axis thereof; and

an inertial mass having an annular shape with an inner cavity and comprising two slots extending from said cavity into said inertial mass; and

two leaf springs fixed to said housing and fixed at free ends thereof within said slots extending into said inertial mass; and

at least one piezoelectric element engaging said housing and said inertial mass for restricting movement of said inertial mass.

2. The oscillating tool of claim 1 , wherein said inertial mass, said leaf springs and said at least one piezoelectric element define a spring-mass system having a resonant frequency that is tuned to an operating frequency of said oscillating tool.

3. An oscillating tool comprising:

a housing;

a motor received within said housing;

a drive shaft for driving a tool;

an oscillation drive driven by said motor for driving said drive shaft rotatingly oscillatingly about a longitudinal axis thereof; and

an inertial mass having an annular shape with an inner cavity and comprising at least two slots extending from said cavity into said inertial mass; and

at least two spring elements engaging said housing and said inertial mass for suspending said inertial mass movably within said housing;

wherein said at least two spring elements are fixed to said housing and at free ends thereof are fixed within said slots extending into said inertial mass.

4. The oscillating tool of claim 3 , further comprising means for restricting movement of said inertial mass to one plane only.

5. The oscillating tool of claim 3 , wherein at least one of said spring elements is configured as a leaf spring.

6. The oscillating tool of claim 3 , wherein said oscillation drive comprises an eccentric shaft that is surrounded by said inertial mass.

7. The oscillating tool of claim 3 , wherein said motor comprises a motor shaft that is surrounded by said inertial mass.

8. The oscillating tool of claim 3 , wherein each of said spring elements has a variable spring characteristic.

9. The oscillating tool of claim 8 , further comprising a piezoelectric element for varying said spring characteristic of said spring elements.

10. The oscillating tool of claim 3 , further comprising a damping means for damping movement of said spring elements.

11. The oscillating tool of claim 3 , wherein said inertial mass and said at least two spring elements define a spring-mass system having a resonant frequency that is tuned to an operating frequency of said oscillating tool.

12. The oscillating tool of claim 11 , further comprising a vibration sensor that is coupled to at least one of said at least two spring elements for effecting adaptation of said resonant frequency of said spring-mass system to the resonant frequency of said oscillating tool during operation.

13. An oscillating tool comprising:

a housing;

a motor received within said housing;

a drive shaft for driving a tool;

an oscillation drive driven by said motor for driving said drive shaft rotatingly oscillatingly about a longitudinal axis thereof;

an inertial mass movably held within said housing by at least one spring element; and

an inner cavity formed within said inertial mass;

wherein said at least one spring element is fixed to said housing and secured at a free end thereof within said inner cavity of said inertial mass.

14. The oscillating tool of claim 13 , wherein said inertial mass has an annular shape with an opening wherein at least one spring element engages said inertial mass.

15. The oscillating tool of claim 13 , wherein said inertial mass and said at least one spring element define a spring-mass system having a resonant frequency that is tuned to an operating frequency of said oscillating tool.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2010
From: HEILIG, MARK; BLICKLE, JUERGEN; SCHREIBER, ALFRED
To: C. & E. FEIN GMBH
Reel/Frame 024232/0085 →
Priority Claims (1)
DE 10 2009 014 970 · Mar 18, 2009 · national
Continuity (1)
Related Publication 20100236806A1 · Sep 23, 2010