Machine tool, in particular handheld machine tool
09776316 ยท 2017-10-03
Assignee
Inventors
Cpc classification
B23B45/008
PERFORMING OPERATIONS; TRANSPORTING
F16D7/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23B45/00
PERFORMING OPERATIONS; TRANSPORTING
F16D7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25F5/001
PERFORMING OPERATIONS; TRANSPORTING
B25B23/14
PERFORMING OPERATIONS; TRANSPORTING
B25B23/141
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23B45/00
PERFORMING OPERATIONS; TRANSPORTING
F16D7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
B25F5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A power tool, in particular a hand-held power tool, preferably embodied as a cordless screwdriver, is equipped with a torque limiting unit in which the release torque is settable by way of a locking brace that is equipped with a spring brace for locking elements that abut axially against parts of a planetary drive, in particular the ring gear thereof or the planet carrier thereof as a last gear stage, the spring elements of the spring brace and the locking elements being located with a radial offset from one another.
Claims
1. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including a plurality of spring elements, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the plurality of spring elements of the spring brace are radially offset from each other, wherein the plurality of spring elements of the spring brace are braced with respect to the radially offset locking elements via a spanning member, wherein the spanning member is embodied as a spring carrier having limbs extending radially between the plurality of spring elements and the locking elements.
2. The power tool of claim 1, wherein the power tool is a hand-held power tool.
3. The power tool as recited in claim 1, further comprising: a planetary drive, the locking elements being braced against a part of the planetary drive.
4. The power tool as recited in claim 3, wherein the locking elements are braced against (a) a ring gear of the planetary drive or (b) a planet carrier of the planetary drive.
5. The power tool as recited in claim 1, wherein the plurality of spring elements of the spring brace have a spring length which in an installed state is greater than a distance between a pressure face of the support member and a pressure face associated with the locking elements.
6. The power tool as recited in claim 1, wherein the plurality of spring elements of the spring brace are disposed with a radial outward offset with respect to the locking elements.
7. The power tool as recited in claim 6, wherein the plurality of spring elements is disposed with an axial overlap with respect to the locking elements.
8. The power tool as recited in claim 1, wherein the plurality of spring elements of the spring brace are disposed with a radial inward offset with respect to the locking elements.
9. The power tool as recited in claim 1, wherein the spanning member is embodied as an annular spring carrier including at least one radially inwardly projecting supporting limb configured to support the plurality of spring elements and at least one radially outwardly protruding cantilever limb configured to support the support member.
10. The power tool as recited in claim 9, wherein the at least one supporting limb and the at least one cantilever limb are disposed axially offset from each other and are connected to one another by an axially extending strut.
11. The power tool as recited in claim 9, wherein the plurality of spring elements are axially clamped between the at least one supporting limb and a carrier.
12. The power tool as recited in claim 11, wherein the plurality of spring elements are braced on a first face of the carrier ring and the locking elements are braced on a second face, opposite to the first face, of the carrier ring.
13. The power tool as recited in claim 1, wherein the plurality of spring elements of the spring brace are braced on a first face of a carrier ring and the locking elements are braced on a second face, opposite to the first face, of the carrier ring.
14. The power tool as recited in claim 13, wherein the plurality of spring elements are disposed with a radial inward offset with respect to the locking elements.
15. The power tool as recited in claim 1, wherein the support member is embodied as a compression nut having a threaded connection to the housing, the threaded connection located in axial alignment with the locking elements.
16. The power tool as recited in claim 1, wherein the spanning member is embodied as an angular spanning member including at least one axially extending spring support and at least one radially inwardly projecting supporting limb.
17. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including a plurality of spring elements, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the plurality of spring elements of the spring brace are radially offset from each other, wherein the plurality of spring elements of the spring brace are braced with respect to the radially offset locking elements via a spanning member, wherein the spanning member is embodied as a spring carrier including at least one axially extending spring support configured to support the plurality of spring elements on a first end and at least one radially inwardly extending supporting limb configured to support the locking elements.
18. The power tool as recited in claim 17, wherein a second end of the plurality of spring elements are supported on a spring guide.
19. The power tool as recited in claim 18, wherein the support member is braced at least indirectly on the spring guide.
20. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including at least one spring element, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the at least one spring element of the spring brace are radially offset from each other, wherein the at least one spring element of the spring brace is braced with respect to the radially offset locking elements via a spanning member, wherein the spanning member is embodied as a spring carrier having limbs extending radially between the at least one spring element and the locking elements.
21. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including at least one spring element, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the at least one spring element of the spring brace are radially offset from each other, wherein the at least one spring element of the spring brace is braced with respect to the radially offset locking elements via a spanning member, wherein the spanning member is embodied as an annular spring carrier including at least one radially inwardly projecting supporting limb configured to support the at least one spring element and at least one radially outwardly protruding cantilever limb configured to support the support member.
22. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including at least one spring element, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the at least one spring element of the spring brace are radially offset from each other, wherein the at least one spring element of the spring brace is disposed with a radial outward offset with respect to the locking elements, wherein the at least one spring element is disposed with an axial overlap with respect to the locking elements.
23. A power tool, comprising: a tool spindle including a drive; and a torque limiting unit disposed in the drive of the tool spindle and received in a housing, the torque limiting unit including locking elements configured to disengage the drive when a release torque is exceeded, an axial locking brace comprising at least one spring brace exerting a spring force on the locking elements, the at least one spring brace including at least one spring element, and a support member bracing the axial locking brace with respect to the housing, the support member being displaceable in an axial direction with respect to the housing in order to adjust and set the release torque, wherein the locking elements and the at least one spring element of the spring brace are radially offset from each other, wherein the at least one spring element of the spring brace is braced with respect to the radially offset locking elements via a spanning member, wherein the spanning member is embodied as an angular spanning member including at least one axially extending spring support and at least one radially inwardly projecting supporting limb.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(10) All that is shown of this last gear stage 7 in
(11) Spring braces 13 and 14 have respective spring elements 16, 17 that, in the exemplifying embodiment as helical springs, are distributed over the circumference of ring gear 8 at a distance from one another. Spring elements 16, 17 can each also be constituted by individual springs or spring pairs of a different configuration, and instead of a plurality of spring elements 16, 17 distributed over the circumference, it is also possible to use ring springs, if applicable also ring spring packets.
(12) A feature common to torque limiting unit 5 according to
(13) It is evident from
(14) At the bottom end the respective spring element 16 that is held on a spring support 21 and braced at the top end is braced in its lower (in the drawing) region protruding beyond spring carrier 20, i.e. in the opposite direction from ring gear 8, on an annular spring guide 23 that is in turn carried by a support member 24 that is displaceable in an axial direction and takes on the function of a compression nut. Support member 24 is disposed on a housing part 25 of gearbox housing 26 that is provided surroundingly with respect to ring gear 8, and is axially displaceable with respect to housing 26, via a threaded connection 27, in the direction of axis 15. The axial spacing between the annular spring guide 23 and spring carrier 20, on whose spring supports 21 the spring elements 16 are oppositely braced, is thereby modified. It is thus possible, by axial displacement of support member 24, with spring guide 23, with respect to spring brace 13, to determine the axial preload with which locking elements 10 abut against the end face of ring gear 8, which is braced, axially opposite to locking elements 10, against gearbox housing 26; in the exemplifying embodiment, this is illustrated by way of a clamping ring 28 engaging into an annular groove of housing 26. Also mounted in gearbox housing 26, opposite its housing part 25 as graphically depicted in
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(16) It is also evident from
(17) An approach largely corresponding to
(18) Whereas in the embodiment according to
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(20) In the embodiment according to
(21) A configuration, corresponding to the schematic depictions according to
(22) Additionally evident from
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(25) In the case of the exemplifying embodiments depicted with further simplification in
(26) Planet carrier 40 drives, via sun wheel 38, spindle 4 that is mounted via bearing 30 in housing part 25 that tapers toward the tool receptacle (not depicted). Supporting member 24, by way of which spring element 16 or 17 of the respective spring brace 13 or 14 is settable in terms of the supporting force with which the respective locking element 10 is braced against planet carrier 40 equipped with a locking lugs 52, is displaceable along said housing part 25.
(27) On the left side of
(28) Referring to the radially outwardly offset spring brace 13 shown on the left, its spring element 16 is clamped between an annular spring guide 23 resting on supporting member 24 and a spanning member 31 (depicted only schematically) that has a radial supporting limb 22 engaging under locking element 10 and a carrier limb 53, located with an axial offset with respect thereto in the overlap region with respect to peripheral wall 49 of housing 26 and protruding radially outward; in combination with a strut part 54 extending axially and proceeding between supporting member 24 and carrier limb 53, this results in a Z-shaped cross-sectional contour for the annular spanning member 31. As also already explained with reference to
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