Assembly comprising a support bracket, which diverts reaction torques, and a power screwdriver
10888980 · 2021-01-12
Inventors
Cpc classification
B25F5/025
PERFORMING OPERATIONS; TRANSPORTING
F16H2057/02026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25F5/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B23/00
PERFORMING OPERATIONS; TRANSPORTING
F16H57/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25F5/02
PERFORMING OPERATIONS; TRANSPORTING
B25F5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A power screwdriver has a gear housing with forwardly extending output shaft and a peripheral external spline with teeth lying on a first diameter. The gear housing has a peripheral groove with groove bottom arranged rearward of the external spline. The groove bottom lies on a second diameter smaller than the first diameter. The support bracket has a fastening portion with an annular fastening flange with internal spline and a support foot arranged laterally offset from the output shaft and placed against an external counter bearing for diverting reaction torques. Internal and external splines cooperate to rotationally fix the support bracket relative to the gear housing. A locking element on the fastening flange can assume a blocking setting or a release setting. In the blocking setting, the locking element extends partially or completely into the groove and locks the support bracket to the gear housing in longitudinal direction.
Claims
1. An assembly comprising: a support bracket (1) configured to divert reaction torques; a power screwdriver (2) comprising a drive part (3) and a gear housing (4) comprising an output shaft (7) extending forwardly out of the gear housing (4) in a longitudinal direction of the output shaft (7); the gear housing (4) comprising an external spline (8) extending peripherally around the gear housing (4), wherein the external spline (8) comprises teeth (9) with tips lying on a circle of a first diameter; the gear housing (4) comprising a peripheral groove (10) arranged rearwardly of the external spline (8) and extending about a periphery of the gear housing (4), wherein the peripheral groove (10) comprises a groove bottom (11) and the groove bottom (11) lies on a second diameter (D1) which is smaller than the first diameter (D2), wherein the teeth (9) extend rearwardly up to the peripheral groove (10); the support bracket (1) comprising a fastening portion (15) and further comprising a support foot (18), wherein the fastening portion (15) comprises an annular fastening flange (16) comprising an internal spline (16a); the support foot (18) arranged laterally offset from the output shaft (7) and configured to be placed against an external counter bearing; the internal spline (16a) of the annular fastening flange (16) cooperating with the external spline (8) of the gear housing (4) such that the support bracket (1) is rotationally fixed relative to the gear housing (4); a fixing apparatus comprising a locking element (20) arranged on the annular fastening flange (16) and configured to assume a blocking setting or a release setting, wherein, in the blocking setting, the locking element (20) extends partially or completely into the groove (10) and locks the support bracket (1) to the gear housing (4) in the longitudinal direction; the fixing apparatus further comprising an actuating element (21) and a compression spring (30), wherein the actuating element (21) comprises a pin (31) comprising a longitudinal axis, wherein the longitudinal axis is arranged tangentially relative to the annular fastening flange (16) and wherein the pin (31) is displaceable in a direction of the longitudinal axis and tangentially to the annular fastening flange (16) in the annular fastening flange (16), wherein the pin (31) is pretensioned against the compression spring (30) arranged at a first end of the pin (31) in the longitudinal direction, wherein the pin (31) comprises a recess (35), wherein the recess (35) extends in a radial direction relative to the longitudinal axis and is configured to partially receive the locking element (20) in the release setting.
2. The assembly according to claim 1, wherein the actuating element (21) further comprises a widened head (37) connected to a second end of the pin (31) opposite the first end, wherein the pin (31) is guided in a bore (36) of the fastening flange (16).
3. The assembly according to claim 2, wherein the compression spring (30) is supported with a first spring end against the first end of the pin (31) facing away from the widened head (37) and is supported with a second spring end opposite the first spring end against a plug (40) closing off the bore (36) of the annular fastening flange (16) in an outward direction.
4. The assembly according to claim 3, wherein the plug (40) is pressed into the bore (36) or fastened in the bore (36) by screwing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further details and advantages of the invention emerge from the following description of the associated drawings, in which an illustrative embodiment of the assembly according to the invention is represented.
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF PREFERRED EMBODIMENTS
(7) Component parts of the assembly according to the invention are a power screwdriver 2 and a support bracket 1 which absorbs screwdriving torques.
(8) In the drive part 3, a motorized device can be provided for the operation of the power screwdriver 2. In principle, a pneumatic or electric operating method can also be considered. Moreover, close to the drive part 3, a handle 5 and a storage battery 6 or other battery can be provided. Such a storage battery (rechargeable battery) 6 can be exchangeably fastened to the power screwdriver 2. The storage battery 6 provides the required electrical energy for the operation of the power screwdriver 2. Naturally, such a power screwdriver 2 can also be supplied with electrical energy via an appropriate cable connection. Within the gear housing 4, transmission components, for example, a torque converter and a gear mechanism, necessary for the operation of the power screwdriver 2 can also be arranged. A fundamental component part is also an output shaft 7 which extends forwardly out of the gear housing 4. This output shaft 7 terminates at its front end with a polygon 12 for attaching a tool.
(9) For the operation of the power screwdriver 2, the user holds the power screwdriver 2 in his hand by the handle 5. The activation of the power screwdriver 2 or control of the screwing operation takes place primarily by actuation of an appropriate switch 14. Via an additional switch 17, the direction of rotation of the output shaft 7 can be reversed.
(10) As can likewise be seen in
(11) As can be seen, in particular, in
(12) The actuating element 21 is preferably of two-part configuration, i.e. it consists of a pin 31, which is guided in a bore 36 of the fastening flange 16, and a widened head 37, which forms the pin end.
(13) From
(14) Similarly, an internal spline 16a is arranged on the annular fastening flange 16. This internal spline 16a (only schematically indicated in
(15) According to the invention, the fixing apparatus 25 can assume a blocking setting or a release setting, wherein the support bracket 1, in the blocking setting, is secured to the gear housing 4 in the longitudinal direction of the output shaft 7. To this end, the locking element 20, preferably a ball, extends in the blocking setting of the fixing apparatus 25 at least partially into the groove 10 (
(16) In order to reach from the blocking setting the release setting of the fixing apparatus 25, in which the support bracket 1 or the fastening flange 16 can be pulled off the gear housing 4, an actuating element 21 has to be actuated by the user. As represented, in particular, in
(17) Preferably, the actuating element 21 is comprised of a pin 31, which is guided in a bore 36 of the fastening flange 16, and a widened head 37, which forms the pin end of the actuating element 21. Pin 31 and head 37 are preferably of two-part configuration, but can also be of single-part or one-piece configuration. The head 37 is widened, for instance radially widened, in comparison to the pin 31. The radially widened part of the head 37 lies outside the bore 36 of the fastening flange 16 and can be actuated by a user.
(18) As is shown by
(19) In addition, the fastening flange 16 can be provided with further openings, which allow access to the bore 36 from outside. Thus, an appropriate opening 45 can be arranged to the side of the pin 31 in the fastening flange 16. This bore 36 can be sealed also with a plug 46. When the plugs 40, 46 are removed, the components, in particular the compression spring 30, the actuating element 21, and the locking element 20, disposed within the bore 36 or in the fastening flange 16 can be removed from the bore 36 or the flange 16 and exchanged. This is advantageous, in particular for maintenance purposes.
(20) In
(21) The specification incorporates by reference the entire disclosure of German priority document 10 2017 105 025.6 having a filing date of 9 Mar. 2017.
(22) While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it will be understood that the invention may be embodied otherwise without departing from such principles.
LIST OF REFERENCE CHARACTERS
(23) 1 support bracket 2 power screwdriver 3 drive part 4 gear housing 5 handle 6 storage battery 7 output shaft 8 external spline 9 tooth 10 groove 11 groove bottom 12 polygon 13 tip 14 switch 15 fastening portion 16 fastening flange 17 switch 18 support foot 19 supporting portion 20 locking element 21 actuating element 23 tooth flank 24 tooth base 25 fixing apparatus 30 compression spring 31 pin 35 recess 36 bore 37 head 40 plug 41 bore 45 opening 46 plug D1 diameter D2 diameter