Abstract:
A motor-driven machine tool comprises a tool driven in a rotating fashion, a drive shaft driven by a drive unit and an output shaft for holding the tool. According to the invention, the rotating motion of the drive shaft can be transferred to the output shaft by way of an eccentric coupling device. A mass balancing device is provided for smoothing out vibrations, which has a stroking mass part moveably mounted in a carriage guide and impinged by an eccentric member driven by one of the shafts. The stroking mass part executes a rotary smoothing motion.
Abstract:
A motor-driven machine tool, in particular a hand-held power tool (1) includes a rotatably driveable tool (6), a drive shaft (4) which is driven by a drive unit (2), and an output shaft (5) on which the tool (6) is mounted. It is possible to transfer the rotational motion of the drive shaft (4) via an eccentric coupling device (7) to the output shaft (5). A mass-balancing device (10) provides for oscillation compensation and is operatively connected to at least one of the shafts (4, 5) and implements a compensation motion counter to the eccentric coupling motion.
Abstract:
A motor-driven machine tool comprises a tool driven in a rotating fashion, a drive shaft driven by a drive unit and an output shaft for holding the tool. According to the invention, the rotating motion of the drive shaft can be transferred to the output shaft by way of an eccentric coupling device. A mass balancing device is provided for smoothing out vibrations, which has a stroking mass part moveably mounted in a carriage guide and impinged by an eccentric member driven by one of the shafts. The stroking mass part executes a rotary smoothing motion.
Abstract:
A router includes a motor housing, from the underside of which a tool fitting for a milling tool connected with a drive extends, and which includes a guide unit—with at least two guide columns—for the motor housing, which is displaceably accommodated on the first guide column in at least one bearing, and on the second guide column in at least a second bearing. The at least one bearing is designed at least partially as a rolling element guide.
Abstract:
A router includes a motor housing, from the underside of which a tool fitting for a milling tool connected with a drive extends, and which includes a guide unit—with at least two guide columns—for the motor housing, which is displaceably accommodated on the first guide column in at least one bearing, and on the second guide column in at least a second bearing. The at least one bearing is designed at least partially as a rolling element guide.
Abstract:
An adapter is provided for a motor-driven machine tool which includes a tool driven in an oscillating rotational pendulum motion. The machine tool includes a driveable tool shaft (1), the end face of which is designed as a locating flange (2) having at least one form-fit element (3) for receiving and fastening the tool (5). The adapter (9) includes, on an end face (16), form-fit counter elements (10) which are matched to the form-fit elements (3) of the tool shaft (1). A plurality of axially projecting mandrels (11) is distributed around the circumference on the opposite end face (13) of the adapter (9).
Abstract:
A motor-driven machine tool (1) with a tool that can be rotatably driven comprises a drive shaft (5) and a tool shaft (6) on which the tool is received, the rotational movement of the drive shaft being transmissible onto the tool shaft via a coupling device (8). The drive shaft is rotatably received in pivot bearings (14, 15) in the housing of the machine tool, the coupling device acting upon the drive shaft in the portion between the two pivot bearings.
Abstract:
A router has a housing, from the underside of which a tool fitting for a milling tool connected with a drive extends, and a device for adjusting the milling depth, which is located in a tower of the housing, the device extending essentially in the direction of a vertical axis of the router and including an adjusting knob. It is provided that the device extends, at the maximum, to a plane formed by a top side of the housing.
Abstract:
A router has a housing, from the underside of which a tool fitting for a milling tool connected with a drive motor extends and the housing is displaceably accommodated on guide columns for adjusting the milling depth, a device for adjusting the milling depth, which includes a depth adjusting element that is displaceable in the direction of a vertical axis of the router using an adjusting element and that interacts with a stop element, and a device for locking the depth adjusting element. The device for locking the depth adjusting element is integrated in the device for adjusting the milling depth.
Abstract:
A motor-driven machine tool (1) with a tool (7) that can be rotatably driven comprises a drive shaft (5) and a driven shaft (6) on which the tool (7) is received, the rotational movement of the drive shaft (5) being transmissible onto the driven shaft (6) via a coupling device (8). The drive shaft and the driven shaft are arranged in parallel, the driven shaft (6) extending at least partially at the level of and parallel to the drive unit.