NAIL PUNCHING MACHINE FOR DRIVING IN OR PULLING OUT RAIL SPIKES OF A RAIL TRACK
20220154412 · 2022-05-19
Inventors
Cpc classification
B25D2217/0073
PERFORMING OPERATIONS; TRANSPORTING
B25D11/06
PERFORMING OPERATIONS; TRANSPORTING
B25C11/00
PERFORMING OPERATIONS; TRANSPORTING
B25D2250/171
PERFORMING OPERATIONS; TRANSPORTING
B25D17/043
PERFORMING OPERATIONS; TRANSPORTING
B25D17/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25D11/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A nail punching machine for driving in or pulling out rail spikes includes a driving mechanism, which is driven by an electric drive motor. The electric drive motor is supplied with electric power by an accumulator. The nail punching machine is held by an operator by at least one handle.
Claims
1. A nail punching machine for one of driving in and pulling out rail spikes of a rail track, the nail punching machine comprising: at least one handle for holding the nail punching machine; a driving mechanism with a striking mechanism for driving a rail spike into a tie; an electric drive motor for driving the driving mechanism; and an accumulator for supplying the electric drive motor with electric power.
2. The nail punching machine according to claim 1, further comprising a vibration decoupling device for decoupling vibrations of the at least one handle and the driving mechanism.
3. The nail punching machine according to claim 2, wherein the vibration decoupling device has at least one vibration damper for configuring a decoupling plane between the driving mechanism and the at least one handle.
4. The nail punching machine according to claim 2, wherein the driving mechanism and the electric drive motor are arranged on a working side of a decoupling plane configured by the vibration decoupling device.
5. The nail punching machine according to claim 2, wherein the at least one handle and the accumulator are arranged on an operating side of a decoupling plane configured by the vibration decoupling device.
6. The nail punching machine according to claim 5, wherein the accumulator is exchangeably mounted to a supporting frame and connected with a handle.
7. The nail punching machine according to claim 2, wherein a control device is arranged on an operating side of a decoupling plane configured by the vibration decoupling device.
8. The nail punching machine according to claim 2, wherein, exclusively, lines are running through a decoupling plane configured by the vibration decoupling device.
9. The nail punching machine according to claim 1, further comprising a cooling device for cooling at least one of the electric drive motor and the driving mechanism.
10. The nail punching machine according to claim 1, wherein the electric drive motor is arranged in an upper section of a pipe, turned away from the rail track.
11. The nail punching machine according to claim 1, wherein the electric drive motor is arranged in a lower section of a pipe, facing the rail track.
12. A nail punching machine for one of driving in and pulling out rail spikes of a rail track, the nail punching machine comprising: a nail punching machine structure comprising: a handle structure comprising a user engagement surface configured for a user to hold the nail punching machine structure; a driving mechanism comprising a striking mechanism configured to drive a rail spike into a tie; an electric drive motor configured to drive the driving mechanism; and an accumulator configured to deliver electric power to the electric drive motor.
13. The nail punching machine according to claim 12, wherein the nail punching machine structure further comprises a vibration decoupling device for decoupling vibrations of the handle structure and the driving mechanism.
14. The nail punching machine according to claim 13, wherein the vibration decoupling device has at least one vibration damper for configuring a decoupling plane between the driving mechanism and the handle structure.
15. The nail punching machine according to claim 13, wherein the driving mechanism and the electric drive motor are arranged on a working side of a decoupling plane defined by the vibration decoupling device.
16. The nail punching machine according to claim 13, wherein the handle structure and the accumulator are arranged on an operating side of a decoupling plane defined by the vibration decoupling device.
17. The nail punching machine according to claim 16, wherein the accumulator is exchangeably mounted to a supporting frame and connected with another handle structure.
18. The nail punching machine according to claim 13, wherein a control device is arranged on an operating side of a decoupling plane defined by the vibration decoupling device.
19. The nail punching machine according to claim 13, wherein, exclusively, lines are running through a decoupling plane defined by the vibration decoupling device.
20. The nail punching machine according to claim 12, wherein the nail punching machine structure further comprises a cooling device for cooling at least one of the electric drive motor and the driving mechanism.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In the drawings:
[0022]
[0023]
[0024]
[0025]
DESCRIPTION OF PREFERRED EMBODIMENTS
[0026] In the following, a first embodiment of the invention is described with reference to
[0027] The driving mechanism 4 is exchangeably coupled with a tool 6. The tool 6 is configured as a hammer for driving in a rail spike 7. The tool 6 comprises a hammer shaft 8 and a hammer head 9. The tool 6 configured as a hammer is known and common. The nail punching machine 1 with the tool 6 configured as a hammer thus serves as a spike driver.
[0028] The electric drive motor 2, the driving shaft 3 and the driving mechanism 4 are arranged in a pipe 10. The pipe 10 has an axial length L and is divided into an upper section 11 and a lower section 12. The upper section 11 has an axial length L.sub.O, whereas the lower section 12 has an axial length L.sub.U. For the length L.sub.O preferably applies: L.sub.O≤0.5 L, in particular L.sub.O≤0.4 L, and in particular L.sub.O≤0.3 L. On the other hand, for the length L.sub.U preferably applies: L.sub.U≤0.5 L, in particular L.sub.U≤0.6 L, and in particular L.sub.U≤0.7 L.
[0029] The electric drive motor 2 is arranged on an end of the pipe 10, turned away from the tool 6, in the upper section 11 and outside the lower section 12. On the other hand, the driving mechanism 4 is arranged near the tool 6 in the lower section 12 and outside the upper section 11. The driving shaft 3 is arranged in the pipe 10 and couples the electric drive motor 2 with the driving mechanism 4. The driving shaft 3 thus runs in the upper section 11 and the lower section 12. The driving shaft 3 is mounted in the pipe 10 by means of a bearing 13.
[0030] The nail punching machine 1 further comprises a supporting frame 14, on which a first handle 15 and a second handle 16 are arranged laterally. An accumulator 17 is exchangeably mounted to the supporting frame 14. The accumulator 17 is connected with a third handle 18. The accumulator 17 supplies the electric drive motor 2 and a control device 19 with electric power. The control device 19 comprises a control 20 mounted to the supporting frame 14 and an operating unit 21 arranged on one of the handles 15, 16. The operating unit 21, for example, has at least one operating agent for actuating the electric drive motor 2.
[0031] For decoupling vibrations of the handles 15, 16, 18 from the driving mechanism 4 and the electric drive motor 2, the nail punching machine 1 has a vibration decoupling device 22. The vibration decoupling device 22, on the operating side, comprises a mounting element 23, which is mounted to the supporting frame 14, and, on the working side, mounting elements 24 which are mounted to the pipe 10. The vibration decoupling device 22 further on comprises a number of first vibration dampers 25 which connect the mounting element 23 on the operating side with the mounting elements 24 on the working side. As an example, the nail punching machine 1 has four vibration dampers 25, which are arranged around the rotation axis 5 of the electric drive motor 2. Moreover, the vibration decoupling device 22 comprises a number of second vibration dampers 26, which connect the handles 15, 16 with the mounting element 23 on the operating side and the supporting frame 14. The vibration dampers 25, 26 are made of an elastomer material, for example a rubber material.
[0032] The vibration decoupling device 22 or the vibration dampers 25 configure a decoupling plane E, which decouples or separates a working side 27 from an operating side 28. On the working side 27, the pipe 10, the electric drive motor 2, the driving shaft 3 and the driving mechanism 4 as well as the tool 6 are arranged. On the other hand, on the operating side 28, the supporting frame 14 with the handles 15, 16 as well as the accumulator 17 with the handle 18 and the control device 19 are arranged.
[0033] Through the decoupling plane E, exclusively, electric lines 29 for actuation and energy supply of the electric drive motor 2 are running from the operating side 28 to the working side 27. The electric lines 29 are only depicted schematically in
[0034] The nail punching machine 1 serves for driving in rail spikes 7. The rail spikes 7 serve for connecting rails and ties of a rail track. By means of the control device 19, the electric drive motor 2 is actuated by an operator in a way that the hammer head 9 is displaced downwards and upwards in a linear manner from the driving mechanism 4 along the rotation axis 5, with the result that the hammer head 9 drives in a rail spike 7 in the desired manner. During this process, the operator holds the nail punching machine 1 with both hands on the handles 15 and 16. Due to the vibration decoupling device 22, forces or vibrations produced by the electric drive motor 2 and the driving in by means of the driving mechanism 4 are effectively dampened, with the result that the operating side 28 is decoupled from vibrations of the working side 27. The accumulator 17 here works as a counter mass on the operating side 28 and causes an effective vibration dampening.
[0035] When the accumulator 17 is discharged, it can be easily exchanged by means of the handle 18 and be replaced by a charged accumulator 17. Due to the fact that the control device 19 is arranged on the operating side 28, it is protected from vibrations.
[0036] In the following, a second embodiment of the invention is described with reference to
[0037] In the following, a third embodiment of the invention is described with reference to
[0038] While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.