Electric hand-held power tool with ball-type latching clutch
20230132195 · 2023-04-27
Inventors
Cpc classification
B25D2211/068
PERFORMING OPERATIONS; TRANSPORTING
B25D16/003
PERFORMING OPERATIONS; TRANSPORTING
B25D16/006
PERFORMING OPERATIONS; TRANSPORTING
B25D2250/165
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Electric hand-held power tool, in particular a hammer drill and/or rotary hammer, having a function setting tube, which can be actuated via a manual function selector switch to bring about various operating modes, a guide tube equipped with a tool fitting, and having a ball-type latching clutch for transmitting a rotary movement from the function setting tube to the guide tube, wherein the ball-type latching clutch has a radial aperture formed in the function setting tube, a main latching depression formed in the guide tube, a coupling ball mounted in the radial aperture and intended to engage in the main latching depression, and a spring-loaded cone ring against whose actuating force the coupling ball can deflect in the radial direction, wherein the guide tube has formed therein an auxiliary depression that is different from the main latching depression and whose opening angle is larger than an opening angle of the main latching depression.
Claims
1-11. (canceled)
12. An electric hand-held power tool comprising: a function setting tube actuatable via a manual function selector switch to bring about various operating modes; a guide tube equipped with a tool fitting and a main latching depression and an auxiliary depression different from the main latching depression; and a ball latching clutch for transmitting a rotary movement from the function setting tube to the guide tube, wherein the ball latching clutch has a radial aperture formed in the function setting tube, a coupling ball being mounted in the radial aperture and intended to engage in the main latching depression, and a spring-loaded cone ring, the coupling ball being deflectable in a radial direction against an actuating force of the spring-loaded cone ring, the auxiliary depression having an opening angle larger than an opening angle off the main latching depression.
13. The hand-held power tool as recited in claim 12 wherein the opening angle of the main latching depression is between 70 degrees and 80 degrees.
14. The hand-held power tool as recited in claim 13 wherein the opening angle of the main latching depression is 75 degrees.
15. The hand-held power tool as recited in claim 12 the opening angle of the auxiliary depression is larger than 90 degrees.
16. The hand-held power tool as recited in claim 15 the opening angle of the auxiliary depression is larger than 120 degrees.
17. The hand-held power tool as recited in claim 12 wherein the auxiliary depression is longer than the main latching depression in an axial direction.
18. The hand-held power tool as recited in claim 12 wherein the main latching depression or the auxiliary depression is groove-shaped in form in an axial direction.
19. The hand-held power tool as recited in claim 12 wherein an opening width, with respect to a circumferential circle of the guide tube, of the auxiliary depression is larger than an opening width, with respect to the circumferential circle, of the main latching depression.
20. The hand-held power tool as recited in claim 12 wherein the main latching depression and the auxiliary depression are spaced apart by a web in a circumferential direction of the guide tube.
21. The hand-held power tool as recited in claim 20 wherein the web has a web width of less than 1 millimeter.
22. The hand-held power tool as recited in claim 12 wherein the cone ring has a first cone shoulder and a second cone shoulder having different angles of inclination with respect to an axial direction.
23. The hand-held power tool as recited in claim 12 wherein that the radial aperture has a cylindrical passage with a cone bevel.
24. The hand-held power tool as recited in claim 23 wherein the cone bevel has a cone angle of 20 degrees.
25. The hand-held power tool as recited in claim 12 wherein the guide tube has a plurality of main latching depressions and a plurality of auxiliary depressions alternating along a circumferential direction of the guide tube.
26. The hand-held power tool as recited in claim 12 wherein the hand-held power tool is a hammer drill or rotary hammer.
27. A guide tube for an electric hand-held power tool, the guide tube comprising: a main latching depression for at least partial engagement of a coupling ball; an inner volume for receiving an exciter piston of an impact mechanism; and an auxiliary depression is different than the main latching depression and with an opening angle is larger than an opening angle of the main latching depression.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Further advantages will become apparent from the following description of the figures. Various exemplary embodiments of the present invention are illustrated in the figures. The figures, the description and the claims contain numerous features in combination. A person skilled in the art will expediently also consider the features individually and combine them to give useful further combinations. In the figures, identical and similar components are denoted by the same reference signs. In the figures:
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION
[0024] A first preferred exemplary embodiment of an electric hand-held power tool 100 according to the invention is illustrated in
[0025] As shown for example in
[0026] The hand-held power tool 100 is likewise equipped with a pneumatic impact mechanism 50, which has an exciter piston 51 which is movable in the axial direction AR along a working axis AX within the guide tube 30. The exciter piston 51 is coupled via a connecting rod 53 to an impact-mechanism eccentric wheel 55, which is driven via an electric motor that has not been shown here. By means of the exciter piston 51 it is possible for there to be generated, within the guide tube 30, a periodic impact-mechanism pressure since, in the hammer drilling operating mode BH shown in
[0027] Both the function setting tube 20 and the guide tube 30 are mounted in a housing 90 of the hand-held power tool 100 so as to be rotatable about the working axis AX. In order for the function setting tube 20 to be caused to rotate about the working axis AX, the hand-held power tool 100 has a bevel gear 23, which can be driven by the electric motor that has not been shown here. The bevel gear 23 in turn drives a cone ring 25, with which the function setting tube 20—at least in the hammer drilling operating mode BH illustrated in
[0028] The hand-held power tool 100 further has a ball-type latching clutch 40 for transmitting the rotary movement from the function setting tube 20 to the guide tube 30. For this purpose, the ball-type latching clutch 40 is equipped with a radial aperture 42 formed in the function setting tube 20. The ball-type latching clutch 40 also has a coupling ball 45 mounted in the radial aperture 42. The coupling ball 45 is intended to engage in a main latching depression 43 which is formed in the guide tube 30. If the coupling ball 45 is in engagement with the main latching depression 43, a rotary movement can be transmitted from the function setting tube 20 to the guide tube 30. In the presently illustrated exemplary embodiment, the guide tube 30 has a plurality of main latching depressions 43 which are formed on the guide tube 30 in the circumferential direction UR. Accordingly, a plurality of coupling balls 45 and likewise a plurality of radial apertures 42 are also provided. The ball-type latching clutch 40 has a cone ring 47 which is spring-loaded by means of the spring 48 and against whose actuating force AF the coupling balls 45 can deflect outward in the radial direction RR.
[0029]
[0030] As can be taken from
[0031] As can likewise be taken from
[0032]
[0033]
[0034] The main latching depressions 43 of the exemplary embodiment of
[0035] A preferred exemplary embodiment of a ball-type latching clutch 40 is illustrated in
[0036] As can be taken from
[0037]
[0038]
[0039] Both the function setting tube 20 and the guide tube 30 are mounted in a housing 90 of the hand-held power tools 100 so as to be rotatable about the working axis AX. In the chipping operating mode ME, a rotation of the guide tube 30 is not desired. Accordingly, in the chipping operating mode ME, the function setting tube 20 is not driven so as to rotate about the working axis AX. Although the bevel gear 23 continues to drive the cone ring 25 already known from
LIST OF REFERENCE SIGNS
[0040] 10 Function selector switch [0041] 20 Function setting tube [0042] 23 Bevel gear [0043] 25 Cone ring [0044] 27 Spur toothing [0045] 30 Guide tube [0046] 31 Vent opening [0047] 35 Tool fitting [0048] 36 Chisel [0049] 40 Ball-type latching clutch [0050] 42 Radial aperture [0051] 42′ Cylindrical passage [0052] 42″ Cone bevel [0053] 43 Main latching depression [0054] 43′ Flank portion [0055] 44 Auxiliary depression [0056] 44′ Flanks [0057] 45 Coupling ball [0058] 46 Web [0059] 47 Cone ring [0060] 47a First cone shoulder [0061] 47b Second cone shoulder [0062] 48 Compression spring [0063] 50 Impact mechanism [0064] 51 Exciter piston [0065] 53 Connecting rod [0066] 55 Impact-mechanism eccentric wheel [0067] 90 Housing [0068] 100 Electric hand-held power tool [0069] AF Actuating force [0070] AR Axial direction [0071] AX Working axis [0072] BH Hammer drilling operating mode [0073] FP Base point [0074] KW Cone angle [0075] KR Radius of curvature [0076] LH Main latching length [0077] LZ Auxiliary latching length [0078] ME Chipping operating mode [0079] N1 Angle of inclination of the first cone shoulder [0080] N2 Angle of inclination of the second cone shoulder [0081] OW1 Opening width of the main latching depression [0082] OW2 Opening width of the auxiliary depression [0083] RR Radial direction [0084] SK Secant [0085] UK Circumferential circle [0086] UK1 Proportion of the circumferential circle over the main latching depression [0087] UK2 Proportion of the circumferential circle over the auxiliary depression [0088] UR Circumferential direction [0089] W1 Opening angle of the main latching depression [0090] W2 Opening angle of the auxiliary depression