US2014038499A1PendingUtilityA1
Compact electric grinding machine
Est. expiryMar 21, 2027(~0.6 yrs left)· nominal 20-yr term from priority
Inventors:Caj Nordstrom
H02P 27/00H02M 1/4225H02M 1/4291H02P 29/00Y02P70/10H02M 1/4208H02P 6/00B24B 23/02B24B 47/12B24B 23/04B24B 23/00B23Q 11/127H02P 7/05
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Claims
Abstract
The present invention particularly relates to a hand-held sanding machine with an outer housing ( 1 ), a tool shaft ( 2 ) and a brushless electric drive motor. In the present invention, the rotor of the drive motor is fastened to the tool shaft ( 2 ) of the sanding machine, and the stator ( 6 ) is positioned in the outer housing ( 1 ). The present invention also relates to a control method for an electric sanding machine.
Claims
exact text as granted — not AI-modified1 - 18 . (canceled)
19 . A hand-held sanding machine comprising: an outer housing, a tool shaft and a brushless electric drive motor including a rotor, a stator is positioned in the outer housing wherein
the tool shaft has an eccentrically positioned tool holder said tool shaft being collinearly aligned with said rotor, and the rotor of the drive motor without its own shaft is removably fastened to the tool and wherein said tool shaft extends within the drive motor as part of the rotor.
20 . A sanding machine according to claim 19 , wherein the axis of the rotor and the axis of the tool shaft are spaced apart parallel axes.
21 . A sanding machine according to claim 19 , wherein the grinding disc is mounted on the tool shaft eccentrically freely rotationally.
22 . A sanding machine according to claim 21 , wherein the grinding disc is with or without reduction gear mounted on the tool shaft in such a way that a rotating movement is generated.
23 . A sanding machine according to claim 19 , wherein the control unit of the motor is arranged in such a way that the speed of rotation is constant irrespective of the load.
24 . A hand-held sanding machine with an outer housing, a tool shaft and a brushless electric drive motor, a stator is positioned in the outer housing, wherein
the tool shaft has a eccentrically positioned tool holder, and the rotor of the drive motor without its own shaft is removably fastened to the tool shaft, which extends within the rotor of the drive motor; wherein the control unit of the motor is arranged in such a way that the speed of rotation is constant irrespective of the load and, wherein the control unit is a sensorless control unit.
25 . A sanding machine according to claim 24 , wherein the sensorless control unit is arranged to determine the position of the rotor in the electronic commutation by the voltage generated in the phase that is not conducting.
26 . A sanding machine according to claim 24 , wherein the sensorless control unit is arranged to determine the position in the electronic commutation by the currents generated in the different phases or the relation between current and voltage in the phases.
27 . A hand-held sanding machine with an outer housing, a tool shaft and a brushless electric drive motor, a stator is positioned in the outer housing, wherein
the tool shaft has a eccentrically positioned tool holder, and the rotor of the drive motor without its own shaft is removably fastened to the tool shaft, which extends within the rotor of the drive motor; further including a control unit, where the mains voltage is rectified and the following capacitor (C2) is dimensioned so small that in use the voltage follows the rectified mains voltage and thus current is consumed from the network during the time when the voltage is loaded, wherein the motor is dimensioned in such a way that the nominal voltage of the motor is to be so much lower than the top value of the rectified mains voltage in relation to the required power that power correction is obtained when current is consumed during that part of the cycle when the voltage is higher than the nominal voltage of the motor and no current is consumed when the voltage is lower than the nominal voltage of the motor.
28 . A sanding machine according to claim 27 , wherein the relation between current and voltage is optimized in that part of the cycle in which the voltage is higher than the nominal voltage of the motor so that smallest harmonic component possible is generated, and thus also the best possible power correction is obtained.
29 . A sanding machine according to claim 27 , wherein the switched power aggregate uses only the motor's own inductance (L1) as the inductive component in the switching.
30 . A sanding machine according to claim 19 , wherein the motor is cooled by a blower which is mounted on the tool shaft.
31 . A sanding machine according to claim 19 , wherein the cooling air cools the stator of the motor by flowing through the slot generated between the inside of the outer housing and the outside of the stator.
32 . A sanding machine according to claim 19 , wherein the stator is shaped in such a way that it is, at the same time, the housing of the sanding machine.
33 . A sanding machine according to claim 32 , wherein the stator has built-in cooling channels.
34 . A sanding machine according to claim 19 , wherein the structure of the stator, the bearing housings and bearings, is a hermetic structure in which the cooling air passes only on the outside of the motor.
35 . A sanding machine according to claim 28 , wherein power correction is carried out also during that time when the rectified voltage is lower than the nominal voltage of the motor.Join the waitlist — get patent alerts
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