Drill hammer and/or chipping hammer device
10183390 ยท 2019-01-22
Assignee
Inventors
Cpc classification
B25D11/125
PERFORMING OPERATIONS; TRANSPORTING
B25D16/003
PERFORMING OPERATIONS; TRANSPORTING
B25D2211/003
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25D11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A drill hammer and/or a chipper hammer device includes a hammer mechanism having a drive unit and a transmission unit. The transmission unit transmits a drive torque from a motor to the hammer mechanism. The transmission unit includes at least one planetary drive. A drive element of the drive unit is disposed on a transmission element of the planetary drive.
Claims
1. A hammer device comprising: a hammer percussion mechanism that includes a drive unit; and a planetary gear unit that is configured to transmit a drive torque from a motor to the hammer percussion mechanism, and that includes: a first planetary gear stage that has at least one planetary gear; and a second planetary gear stage that is driven by the first planetary gear stage, and that has an eccentric drive element for driving the drive unit.
2. The hammer device as claimed in claim 1, wherein the first planetary gear stage further has an input element that is configured to drive the at least one planetary gear, the axis of rotation of which is arranged at least substantially coaxially to an axis of rotation of the drive element.
3. The hammer device as claimed in claim 1, wherein the drive element is configured to drive the drive unit of the hammer percussion mechanism, or is configured to drive a further planetary gear stage that is configured to drive the hammer percussion mechanism.
4. The hammer device as claimed in claim 1, wherein an axis of rotation of the first planetary gear stage and a beating axis of the hammer percussion mechanism form an angle unequal to zero.
5. The hammer device as claimed in claim 1, wherein: the hammer percussion mechanism further has a piston and a beater drivable by the piston via a gas cushion; and the eccentric drive element is configured to drive the piston.
6. The hammer device as claimed in claim 1, wherein the second planetary gear stage includes at least one gear element that is formed in one piece with the drive element.
7. The hammer device as claimed in claim 1, further comprising at least one lockup clutch.
8. The hammer device as claimed in claim 7, wherein: the hammer device further includes a housing; the planetary gear unit is mounted in the housing, and further includes a ring wheel and a planet carrier; and the lockup clutch is arranged in a region of engagement radially between at least one of (i) the planet carrier and the housing, and (ii) the ring wheel and the housing.
9. The hammer device as claimed in claim 1, wherein the planetary gear unit further has at least one sealing member which is configured and arranged to seal off an inner space defined by the planetary gear unit.
10. The hammer device as claimed in claim 1, wherein: the planetary gear unit further has a ring wheel and a planet carrier; and the ring wheel and the planet carrier are connected via a bearing connection.
11. The hammer device as claimed in claim 1, wherein the second stage of the planetary gear unit, on which the drive element is arranged, is driven, in at least one operating mode, with a superposed rotational movement, so that the drive element executes a linear movement along a beating axis of the hammer percussion mechanism.
12. The hammer device as claimed in claim 11, wherein: the second planetary gear stage further includes a second planetary gear; and the drive element of the drive unit is arranged on the second planetary gear.
13. The hammer device as claimed in claim 1, wherein the eccentric drive element of the second planetary gear stage is configured to drive the drive unit of the hammer percussion mechanism in a reciprocating motion.
14. A hammer comprising: a motor; and a hammer device including: a hammer percussion mechanism that has a drive unit; and a planetary gear unit that is configured to transmit a drive torque from the motor to the hammer percussion mechanism, and that includes: a first planetary gear stage with at least one planetary gear; and a second planetary gear stage that is driven by the first planetary gear stage, and that has: at least one further planetary gear; and an eccentric drive element arranged on the at least one further planetary gear, and configured to drive the drive unit.
15. The hammer of claim 14, wherein the eccentric drive element of the second planetary gear stage is configured to drive the drive unit of the hammer percussion mechanism in a reciprocating motion.
16. A hammer device comprising: a hammer percussion mechanism that includes a drive unit; and a planetary gear unit that is configured to transmit a drive torque from a motor to the hammer percussion mechanism, and that includes: a first planetary gear stage that has: an input element configured to rotate about a first axis of rotation; and at least one planetary gear that is driven by the input element; and a second planetary gear stage that is driven by the first planetary gear stage, and that has an eccentric drive element for driving the drive unit, the eccentric drive element configured to eccentrically rotate about a second axis of rotation that is at least substantially coaxial to the first axis of rotation.
17. The hammer device of claim 16, wherein the eccentric drive element of the second planetary gear stage is configured to drive the drive unit of the hammer percussion mechanism in a reciprocating motion.
18. The hammer device as claimed in claim 1, wherein: the second planetary gear stage further has a ring wheel; and the eccentric element is integral with the ring wheel.
19. The hammer device as claimed in claim 14, wherein: the second planetary gear stage further has a ring wheel; and the eccentric element is integral with the ring wheel.
20. The hammer device as claimed in claim 16, wherein: the second planetary gear stage further has a ring wheel; and the eccentric element is integral with the ring wheel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages may be gathered from the following drawing description. The drawing illustrates exemplary embodiments of the disclosure. The drawing, description and claims contain numerous features in combination. A person skilled in the art will expediently also consider the features individually and combine them into appropriate further combinations.
(2) In the drawing,
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION
(11)
(12) The drill hammer and chipping hammer device comprises a gear unit 12a for transmitting a drive torque from an electric motor 14a arranged in the housing 54a to the hammer percussion mechanism 10a or to the drive element 28a. The gear unit 12a has a planetary gear 16a. The planetary gear 16a has an input element 20a which is formed by a sun wheel and the axis of rotation 24a of which is arranged coaxially to an axis of rotation 26a of the drive element 28a of the hammer percussion mechanism 10a. The sun wheel is formed in one piece with a motor shaft of the electric motor 14a. The axis of rotation 24a of the planetary gear or of the sun wheel is arranged coaxially to an axis of rotation of the electric motor 14a. The axis of rotation 24a and a beating axis 30a of the hammer percussion mechanism 10a form an angle 32a of 90. Basically, however, other angles may also be envisaged. A ring wheel 42a of the planetary gear 16a forms an output element of the gear unit 12a. The drive element 28a is arranged on the ring wheel 42a, specifically, the ring wheel 42a is formed in one piece with the drive element 28a (
(13) In order to achieve advantageous lubrication, a planetary gear inner space 52a in which, in particular, the planets 74a are arranged is filled with lubricant. The planetary gear inner space 52a is sealed off by means of a sealed-off needle bearing 86a between the input element 20a and the planet carrier 46a and also by means of a sealing means 50a formed by a brushing seal. The annular sealing means 50a is fastened with its radially inner region to the planet carrier 46a and with its radially outer region lies, loaded by an internal tension force, on an end face of the ring wheel 42a.
(14)
(15)
(16)
(17)
(18) The planet carrier 40d of the planetary gear 16d has a driven element 92d on a side facing away from the sun wheel. The driven element 92d is arranged eccentrically to the axis of rotation 24d. The driven element 92d is formed by a bolt formed in one piece with the planet carrier 40d. A planet 75d of the planetary gear 16d is mounted rotatably on the driven element 92d and meshes outwardly in the radial direction with the ring wheel 42d. The drive element 28d is arranged on the planet 75d on a side facing away from the planet carrier 40d.
(19) The drive element 28d is arranged eccentrically to an axis of rotation 94d of the planet 75d about which the planet 75d is mounted rotatably on the driven element 92d. During operation, the planet 75d on which the drive element 28d is arranged is driven with a superposed rotational movement, so that the drive element 28d executes a linear movement along a beating axis 30d. The drive element 28d has a longitudinal axis 96d which runs through a reference circle 98d of the planet 74d and parallel to the axis of rotation 94d of the planet 75d. The reference circle 98d has a diameter which is half as large as a reference circle diameter of a reference circle 100d of the ring wheel 42d in which the planet 75d can roll. By means of the single ring wheel 42d, in which both the planets 74d and the planet 75d mesh, an especially space-saving construction can be achieved. Basically, however, two separate ring wheels could also be provided.
(20) To pick up a torque for driving a hammer tube in rotation, the planet carrier 40d could be connected to a gear wheel or a gear wheel could be integrally formed onto the planet carrier 40d. The planet carrier 40d is mounted rotatably in the ring wheel 42d of the planetary gear 16d by means of a bearing connection 69d formed by a rolling bearing 70d. In order to ensure a lockup function, the ring wheel 42d could be mounted in the housing of the drill hammer and chipping hammer via a lockup clutch, and/or a lockup clutch could be arranged between the planet carrier 40d and the hammer tube.