Impact mechanism arrangement
20240123589 ยท 2024-04-18
Inventors
Cpc classification
B25D17/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Hammer drill and/or chipping hammer having a drive motor, an impact mechanism and a tool fitting for fitting a tool, wherein the impact mechanism has an anvil that is axially displaceable in an anvil guide and acts on the tool, wherein the impact mechanism has an idle-strike damper element and a rebound-strike damper element, which are formed in one piece with one another and as such form a combined damper element, wherein the anvil guide is arranged outside, preferably only outside the combined damper element.
Claims
1-10. (canceled)
11. A hammer drill or chipping hammer comprising: a drive motor; an impact mechanism; and a tool fitting for fitting a tool, wherein the impact mechanism has an anvil axially displaceable in an anvil guide and acting on the tool, wherein the impact mechanism has an idle-strike damper element and a rebound-strike damper element formed in one piece with one another to define a combined damper element, the anvil guide being arranged outside the combined damper element.
12. The hammer drill or chipping hammer as recited in claim 11 wherein the anvil guide is arranged exclusively outside the combined damper element.
13. The hammer drill or chipping hammer as recited in claim 11 wherein anvil has a radial bead arranged so as to strike the idle-strike damper element on one side and to strike the rebound-strike damper element on an other side.
14. The hammer drill or chipping hammer as recited in claim 13 wherein anvil is cylindrically formed apart from the radial bead.
15. The hammer drill or chipping hammer as recited in claim 13 wherein the combined damper element has a cylindrical inner surface extending in an axial direction between an idle-strike stop surface and a rebound-strike stop surface, wherein a radial gap is provided between the cylindrical inner surface and the bead.
16. The hammer drill or chipping hammer as recited in claim 15 wherein the radial gap extends along an entirety of the inner surface.
17. The hammer drill or chipping hammer as recited in claim 11 wherein the combined damper element has a planar frontal stop surface, via which the combined damper element is supported on a shoulder of the tool fitting.
18. The hammer drill or chipping hammer as recited in claim 11 wherein the combined damper element has a longitudinal slot extending axially along the combined damper element on the tool-fitting side.
19. The hammer drill or chipping hammer as recited in claim 18 wherein when the idle-strike damper element is compressed, a residual opening remains of the longitudinal slot.
20. The hammer drill or chipping hammer as recited in claim 11 wherein the combined damper element consists of or exhibits an elastomer material.
21. The hammer drill or chipping hammer as recited in claim 11 wherein the idle-strike damper element exhibits greater impact stiffness than the rebound-strike damper element.
22. The hammer drill or chipping hammer as recited in claim 11 wherein the combined damper element is formed by two half-shells.
23. The hammer drill or chipping hammer as recited in claim 22 wherein a parting plane between the two half-shells is oriented parallel to the axial direction of the anvil.
24. The hammer drill or chipping hammer as recited in claim 11 wherein the anvil guide has at least one plain bearing or at least one rolling bearing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Further advantages will become apparent from the following description of the figures. Various exemplary embodiments of the present invention are shown 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 form useful further combinations.
[0015] In the figures, identical and similar components are denoted by the same reference signs. In the figures:
[0016]
[0017]
[0018]
DETAILED DESCRIPTION
[0019] A preferred exemplary embodiment of a hammer drill and/or chipping hammer 100 according to the invention is illustrated in
[0020] The impact mechanism 10 has an idle-strike damper element 11 and a rebound-strike damper element 13. The idle-strike damper element 11 and the rebound-strike damper element 13 are formed in one piece with one another and as such form a combined damper element 15. The combined damper element 15 has a central cutout 40, which extends along the entire length L (cf.
[0021] As is apparent from
[0022] The anvil 30 is formed in a cylindrical manner and has a radial bead 31 approximately in the middle. The radial bead 31 is arranged so as to strike the idle-strike damper element 11 on one side (left-hand side in
[0023] The combined damper element 15 has a cylindrical inner surface 16, which extends in the axial direction AR between an idle-strike stop surface 12 of the idle-strike damper element 11 and a rebound-strike stop surface 14 of the rebound-strike damper element 13. In other words, the cylindrical inner surface 16 is bounded on one side by the incipient idle-strike stop surface 12 and on the other side by the incipient rebound-strike stop surface 14, in each case as seen in the axial direction AR. Provided between the cylindrical inner surface 16 and the bead 31, to be more precise between the cylindrical inner surface 16 and the thickest point 32, in the radial direction RR, of the bead 31, is a radial gap 19 (particularly readily apparent in
[0024]
[0025] The combined damper element 15 in
[0026]
[0027] In the combined damper element 15 in
[0028] A second preferred exemplary embodiment of a combined damper element 15 is illustrated in
LIST OF REFERENCE SIGNS
[0029] 10 Impact mechanism [0030] 11 Idle-strike damper element [0031] 12 Idle-strike stop surface [0032] 13 Rebound-strike damper element [0033] 14 Rebound-strike stop surface [0034] 15 Combined damper element [0035] 15, 15 Half-shells [0036] 16 Cylindrical inner surface [0037] 17 Longitudinal slot [0038] 17 Residual opening [0039] 18 Parting plane [0040] 19 Radial gap [0041] 20 Anvil guide [0042] 21, 23 Rolling bearing [0043] 30 Anvil [0044] 31 Radial bead [0045] 32 Thickest point [0046] 40 Central cutout [0047] 50 Tool fitting [0048] 51 Planar frontal stop surface [0049] 52 Shoulder [0050] 70 Drive motor [0051] 90 Housing [0052] 100 Hammer drill and/or chipping hammer [0053] 110 Tool [0054] AR Axial direction [0055] RR Radial direction [0056] Q11, Q12 Cross sections