Power drill
09878434 ยท 2018-01-30
Assignee
Inventors
Cpc classification
B25D11/106
PERFORMING OPERATIONS; TRANSPORTING
B25D16/003
PERFORMING OPERATIONS; TRANSPORTING
B25F5/001
PERFORMING OPERATIONS; TRANSPORTING
B25D16/006
PERFORMING OPERATIONS; TRANSPORTING
B25D2216/0023
PERFORMING OPERATIONS; TRANSPORTING
B25B23/141
PERFORMING OPERATIONS; TRANSPORTING
B25D2250/165
PERFORMING OPERATIONS; TRANSPORTING
Y10T74/19251
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B25F5/00
PERFORMING OPERATIONS; TRANSPORTING
B25D16/00
PERFORMING OPERATIONS; TRANSPORTING
B25B23/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A power drill having percussion drilling function, drilling function and screwing function has a gearing for transmitting the drive motion of a drive unit to a tool spindle. Furthermore, two latching elements are provided which, in the percussion drilling function, are in latching engagement and in the drilling or screwing position are in the disengaged state. A mode setting device has a rotatable supporting ring and a thrust ring, coupled to the supporting ring in a torsionally fixed manner which, in the screwing position is held on the gear housing in an axially displaceable manner.
Claims
1. A power drill having a percussion drilling function, a drilling function and a screwing function, comprising: a gearing for transmitting the drive motion of a drive unit to a tool spindle; two latching elements which in a percussion drilling position are in latching engagement and in a drilling position and a screwing position are disengaged; a mode setting device including a supporting ring, wherein the mode setting device is rotatable by manual operation; and a thrust ring coupled to the supporting ring, in a torsionally fixed manner, which is supported on a gear housing of the gearing, by the rotation of the mode setting device the desired mode being able to be set, wherein the thrust ring in the screwing position is held axially displaceably on the gear housing and in the percussion drilling position and in the drilling position is fixed axially on the gear housing; wherein one of the latching elements is held axially adjustably, and the axially adjustably held latching element or a component connected to the axially adjustably held latching element is supported on an adjusting contour on the supporting ring for transferring between the percussion drilling function and the drilling function or screwing function, wherein the thrust ring includes at least one radially inwardly projecting protrusion which is accommodated in a circumferential groove on the gear housing for axially form-locking the thrust ring on the gear housing in the drilling and the percussion drilling function.
2. The power drill of claim 1, wherein the tool spindle is held axially adjustable with respect to the gear housing, for transferring between the percussion drilling position and the drilling position or the screwing position.
3. The power drill of claim 1, wherein the thrust ring is held in the axially fixed position, axially form-locking on the gear housing.
4. The power drill of claim 1, wherein at least one axially projecting shoulder is formed on the supporting ring which, for coupling in the rotational direction, engages in a corresponding recess on the thrust ring.
5. The power drill of claim 1, wherein the supporting ring encompasses the thrust ring at least partially.
6. The power drill of claim 1, wherein a locking part coupled to the latching element is supported on the adjusting contour on the supporting ring.
7. The power drill of claim 1, wherein a spring device having two spring retaining rings and at least one spring element lying in-between is provided for the axial application of force to the thrust ring.
8. The power drill of claim 7, wherein one of the two spring retaining rings facing away from the thrust ring is to be adjusted axially by a torque setting sleeve.
9. The power drill of claim 7, wherein one of the two spring retaining rings contacting the thrust ring is encompassed by the supporting ring.
10. The power drill of claim 8, wherein the torque setting sleeve is acted upon with a latching torque by a latching spring element.
11. The power drill of claim 1, wherein the thrust ring in the screwing position is held axially displaceably on the gear housing such that when the torque exceeds an adjustable threshold value, the thrust ring is configured to lift off axially from the gear housing.
12. The power drill of claim 1, wherein the mode setting device includes a manually operable mode setting sleeve which is rotatably supported relative to the gear housing about a longitudinal axis of the power drill to set the percussion drilling function, drilling function and screwing function.
13. The power drill of claim 1, wherein the thrust ring in the screwing position is held axially displaceably relative to the supporting ring.
14. The power drill of claim 1, wherein the adjusting contour is arranged on an end face of the supporting ring and the adjusting contour includes axial height changes which are transmitted onto the latching disk via the locking part such that the latching disk changes its corresponding axial position.
15. The power drill of claim 1, wherein the at least one radially inwardly projecting protrusion which is accommodated in an axial groove on the gear housing for holding the thrust ring axially displaceably on the gear housing in the screwing function.
16. A power drill having a percussion drilling function, a drilling function and a screwing function, comprising: a gearing for transmitting the drive motion of a drive unit to a tool spindle; two latching elements which in a percussion drilling position are in latching engagement and in a drilling position and a screwing position are disengaged; a mode setting device including a supporting ring, wherein the mode setting device is rotatable by manual operation; and a thrust ring coupled to the supporting ring, in a torsionally fixed manner, which is supported on a gear housing of the gearing, by the rotation of the mode setting device the desired mode being able to be set, wherein the thrust ring in the screwing position is held axially displaceably on the gear housing and in the percussion drilling position and in the drilling position is fixed axially on the gear housing; wherein one of the latching elements is held axially adjustably, and the axially adjustably held latching element or a component connected to the axially adjustably held latching element is supported on an adjusting contour on the supporting ring for transferring between the percussion drilling function and the drilling function or screwing function, wherein the adjusting contour is arranged on an end face of the supporting ring and the adjusting contour includes axial height changes which are transmitted onto the latching disk via the locking part such that the latching disk changes its corresponding axial position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION
(8) Identical elements are provided with the same reference numerals in the figures.
(9)
(10)
(11) Furthermore, power drill 1 is equipped with a spring device 10, which has the function of establishing a maximally transferable torque in the screwing operation. To spring device 10 belong a plurality of spring elements 11 that are distributed over the periphery, which are each embodied as screwing pressure springs, as well as a first annular spring mounting on gear housing 3, as well as a second spring retaining ring 13 that is arranged in a manner offset in parallel. Spring elements 11 extend between the two spring retaining rings 12 and 13. Spring retaining ring 13 is able to be adjusted axially, whereby the initial stress in spring elements 11 is changed. First spring retaining ring 12 lies directly on thrust ring 9 of mode setting device 7, and acts upon it using an axial force against gear housing 3. With increasing initial stress of spring elements 11, the axial force that is exerted by spring device 10 on thrust ring 9 thus also grows.
(12) Mode setting sleeve 5 is coupled in a torsionally fixed manner to supporting ring 8 which, on its part, is connected in a torsionally fixed manner to thrust ring 9. Consequently, in response to a rotational motion of mode setting sleeve 5, both supporting ring 8 and thrust ring 9 are rotated about the longitudinal axis.
(13)
(14) A spring element 18 is situated within latching pot 16, which acts with force to bring tool spindle 4 into the latching position, in which latching pot 16 and latching disk 17 are in latching position.
(15) Spring retaining ring 13 which, in common with first spring retaining ring 12 and the spring elements, lying in-between, forms the spring device, is screwed to torque setting sleeve 6, torque setting sleeve 6 being axially fixed in position, whereas spring retaining ring 13 is axially adjustable. In response to a rotational motion of torque setting sleeve 6, spring retaining ring 13 moves axially based on the screwing connection, whereby the initial stress of the spring device is changed.
(16) In order for torque setting sleeve 6 to be latched in discrete latching positions, torque setting sleeve 6 is acted upon with force by a latching spring element 20, which is retained at latching spring retainer 19, latching spring retainer 19 and latching spring element 20 being situated in the internal space encompassed by torque setting sleeve 6. Latching spring element 20 latches in at discrete angular positions by a latching contour on the inside of torque setting sleeve 6 being acted upon by latching spring element 20.
(17) Torque setting sleeve 6 is axially fixed in position on gear housing 3. This takes place with the aid of a screw 21, which connects a sheet metal 22 to gear housing 3, sheet metal 22 acting with force axially upon latching spring retainer 19 holding it against a shoulder on torque setting sleeve 6, and in this way also axially secures torque setting sleeve 6.
(18) A locking part 23 is fixedly connected to latching disk 17, which lies against supporting ring 8. On an end face, supporting ring 8 has an adjusting contour with which locking part 23 makes contact and transmits it to latching disk 17. Axial height changes in the adjusting contour on supporting ring 8, because of the contact with locking part 23, are transmitted onto latching disk 17, so that latching disk 17 experiences a corresponding axial position change. In this way, the latching engagement between latching disk 17 and latching pot 16 is able to be controlled.
(19) As may be seen in
(20) Thrust ring 9, both in the percussion drilling function (
(21) In
(22) As may be seen particularly in
(23) As may be seen in
(24) Divided over the circumference, a plurality of projections 24, pointing radially inwards are situated on thrust ring 9 which, in the screwing function, project into associated axial grooves 26 on gear housing 3.