COMPOSITE GEARWHEEL FOR AN ELECTROPNEUMATIC HAMMER DRILL
20220213953 · 2022-07-07
Inventors
Cpc classification
B25D11/00
PERFORMING OPERATIONS; TRANSPORTING
F16H55/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23B2226/61
PERFORMING OPERATIONS; TRANSPORTING
B25F5/001
PERFORMING OPERATIONS; TRANSPORTING
F16H55/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H55/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B25F5/00
PERFORMING OPERATIONS; TRANSPORTING
F16H55/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Composite gearwheel for an electropneumatic hammer drill, wherein the composite gearwheel has a basic body, consisting of a first material, and an encircling toothing, and wherein the encircling toothing is formed, along a first circular arc, by a toothed body of the composite gearwheel, and is formed, along the remaining second circular arc, by the basic body itself, wherein the toothed body consists of a second material that is different than the first material.
Claims
1-9. (canceled)
10: A composite gearwheel for an electropneumatic hammer drill, the composite gearwheel comprising: a basic body consisting of a first material; and a toothed body consisting of a second material different from the first material; the composite gearwheel having an encircling toothing formed, along a first circular arc, by the toothed body, and formed, along a remaining second circular arc by the basic body.
11: The composite gearwheel as recited in claim 10 wherein the first circular arc has a center angle of less than 90 degrees, preferably less than 45 degrees.
12: The composite gearwheel as recited in claim 11 wherein the center angle is less than 45 degrees.
13: The composite gearwheel as recited in claim 10 wherein the basic body has a slot, the toothed body being at least partially introduced into and located in the slot.
14: The composite gearwheel as recited in claim 10 further comprising a balancing weight compensating for an imbalance caused by the toothed body.
15: The composite gearwheel as recited in claim 10 wherein the first material is a plastic.
16: The composite gearwheel as recited in claim 15 wherein the second material is a steel material.
17: The composite gearwheel as recited in claim 10 wherein the second material is a steel material.
18: The composite gearwheel as recited in claim 10 wherein exactly one toothed body having a plurality of teeth of the encircling toothing is provided.
19: The composite gearwheel as recited in claim 10 further comprising a central hub defining a timing of the composite gearwheel.
20: The composite gearwheel as recited in claim 19 wherein the central hub is in the form of an insert.
21: The composite gearwheel as recited in claim 19 wherein the central hub has an internal toothing with eight teeth.
22: An electropneumatic hammer drill comprising the composite gearwheel as recited in claim 10, wherein the composite gearwheel is installed in a transmission unit of the hammer drill in such a way that only the part of the encircling toothing formed by the toothed body is exposed to an increased torque of an impact mechanism of the hammer drill.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In the figures, identical and similar components are denoted by the same reference signs. In the figures:
[0014]
[0015]
[0016]
DETAILED DESCRIPTION
[0017] A preferred exemplary embodiment of a composite gearwheel 10 according to the invention is illustrated in
[0018] The composite gearwheel 10 has a basic body 1 consisting of a first material M1, in the present case for example a thermoplastic, and an encircling toothing 3. The encircling toothing 3 is formed, along a first circular arc K1, only by a toothed body 5 of the composite gearwheel 10. Exactly one toothed body 5 is provided, which has a plurality of teeth 3′ of the encircling toothing 3. The second toothed body 5 is formed from a second material M2, which is different than the first material M1. In the presented here, the second material M2 is a steel material.
[0019] As can be gathered from
[0020] In the exemplary embodiment illustrated in
[0021] The composite gearwheel 10 in
[0022]
[0023] As can be gathered from
[0024] As already mentioned, the composite gearwheel 10 has a central hub 2 for defining a timing of the composite gearwheel 10. In the present case, the central hub 2 is in the form of an insert, which is held in the basic body in a form-fitting manner (by means of the external teeth 8).
[0025]
[0026]
LIST OF REFERENCE SIGNS
[0027] 1 Basic body [0028] 2 Hub insert [0029] 3 Encircling toothing [0030] 4 Internal toothing [0031] 4′ Tooth [0032] 5 Toothed body [0033] 6, 6′ Cutout [0034] 7 Slot [0035] 8 External tooth [0036] 9 Balancing weight [0037] 9′ Pin hole [0038] 10 Composite gearwheel [0039] 20 Impact mechanism [0040] 21 Piston [0041] 23 Pneumatic spring [0042] 30 Transmission unit [0043] 35 Measurement point [0044] 40 Electric motor [0045] 100 Hammer drill [0046] D Axis of rotation [0047] K1 First circular arc [0048] K2 Second circular arc [0049] KW Crank angle [0050] M Torque [0051] M1 First material [0052] M2 Second material [0053] R Radial direction [0054] IU Inner circumference [0055] ZW Center angle