Track tamping machine having separately stimulated vibrating tamping picks
09803323 · 2017-10-31
Assignee
Inventors
Cpc classification
International classification
Abstract
A tamping unit of a machine for simultaneously tamping at least two sleepers of a track, positioned one following the other with regard to a longitudinal direction of the machine, includes inner tamping tines provided for simultaneous immersion into the same sleeper crib and, arranged at either end, a respective outer tamping tine. Each tamping lever mounted on an assembly frame for pivoting about a pivot axis is connected to a squeeze drive. Each squeeze drive is mounted on a common eccentric shaft having an eccentricity with respect to an axis of rotation. The eccentricity causing vibrations of the inner tamping tine is configured differently as compared to the eccentricity causing vibrations of the outer tamping tine.
Claims
1. A machine, comprising: a tamping unit for simultaneously tamping at least two sleepers of a track, wherein the sleepers are positioned one following the other with regard to a longitudinal direction of the machine, said tamping unit having: a plurality of tamping levers each mounted for pivoting about a pivot axis on an assembly frame and connected to a squeeze drive; two inner tamping tines provided for simultaneous immersion into a common sleeper crib, said two inner tamping tines being disposed following one another in the longitudinal direction of the machine and being connected to respective said tamping levers; outer tamping tines respectively disposed at either end of said tamping unit with regard to the longitudinal direction of the machine, each said outer tamping tine being connected to a respective said tamping lever and configured for immersion into a respective sleeper crib by itself; and each squeeze drive being mounted on a common eccentric shaft having an eccentricity with respect to an axis of rotation, and wherein said eccentricity causing vibrations of said inner tamping tine is configured differently from said eccentricity causing vibrations of said outer tamping tine.
2. The machine according to claim 1, wherein said eccentricity for said inner tamping tine is smaller than said eccentricity for said outer tamping tine.
3. A ballast tamping machine, comprising: a tamping unit for simultaneously tamping at least two sleepers of a track, wherein the sleepers are positioned one following the other with regard to a longitudinal direction of the machine, said tamping unit having: a plurality of tamping levers each mounted for pivoting about a pivot axis on an assembly frame and connected to a squeeze drive; two inner tamping tines provided for simultaneous immersion into a common sleeper crib, said two inner tamping tines being disposed following one another in the longitudinal direction of the machine and being connected to respective said tamping levers; outer tamping tines respectively disposed at either end of said tamping unit with regard to the longitudinal direction of the machine, each said outer tamping tine being connected to a respective said tamping lever and configured for immersion into a respective sleeper crib by itself; and an eccentric shaft having an eccentricity with respect to an axis of rotation, said eccentricity including a relatively smaller eccentricity and a relatively greater eccentricity, said eccentric shaft being mounted to drive said tamping tines to vibrate via said tamping levers, and wherein said eccentricity causing vibrations of said inner tamping tine is smaller than said eccentricity causing vibrations of said outer tamping tine.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
(1) The invention will be described in more detail below with reference to an embodiment represented in the drawing in which
DESCRIPTION OF THE INVENTION
(2) A machine, 1, shown in
(3) As can be seen in
(4) Each tamping lever 14, mounted for pivoting about a pivot axis 13 on an assembly frame 11, is connected to a squeeze drive 15. The squeeze drives 15 of each assembly frame 11 are mounted in each case on a common eccentric shaft 21 having an eccentricity 17 with regard to an axis of rotation 16 (see
(5) Arranged at either end of the tamping unit 2, with regard to the longitudinal direction 10 of the machine, is a respective outer tamping tine 19 which is connected to a tamping lever 14 and provided for immersion into a sleeper crib 18 by itself. Provided for common immersion into the same sleeper crib 18 are two inner tamping tines 20 arranged one following the other in the longitudinal direction 10 of the machine, each connected to a tamping lever 14.
(6) As can be seen clearly in
(7) In a variant of the invention, it is also possible to use only a single, common assembly frame instead of two independently vertically adjustable assembly frames 11. Likewise, a tamping unit 2—shown in a simplified way in