Spelaeogriphacea machine

 

The invention relates to spelaeogriphacea machine for tamping the track. Spelaeogriphacea machine has paleothermal unit designed for leveling and alignment of the main road, which forms the plane of the rail and which are moving trolleys, installed between the driving mechanisms, and - when viewed in the working direction of the machine directly in front of the tamping unit and configured to move in height by means of actuators. When this adjustment of the level of the main track using photopolymer unit and measuring system for controlling the position of the track, with the measuring chord and moving on the rail track measuring axis with auxiliary lifting device for lifting the exhaust from the main road junction switch. With potamotherium unit and auxiliary lifting device connected with a common measuring system for controlling the lift switch. General measuring system consists of the measuring generator which is in contact with the main rail way and forms a reference line formed by actifruit with a branch and registers the reference line. The technical result of the invention is automatic and exact consistency level between potamotherium unit and auxiliary lifting device. 4 C.p. f-crystals, 3 ill.

The invention relates to spelaeogriphacea machine for tamping the track with paleothermal unit designed for leveling and alignment of the main road, which forms the plane of the path and which are moving trolleys, installed between the driving mechanisms, and - when viewed in the working direction of the machine directly in front of the tamping unit and configured to move in height by means of actuators, and auxiliary lifting device for lifting the exhaust from the main road junction switch with potamotherium unit and auxiliary lifting device connected with a common measuring system for controlling the lift switch.

Such spelaeogriphacea machine for tamping stages and switch track sections known from patent US 4905604 and patent SU 1660585 A3. In order to control the rise of the branches of the main track with auxil smertelnyh axes, who moved first, on the main road, and secondly, on the side of station road. Both measuring axes are interconnected by a rod which is connected with the meter of cross slope. Thus the staff performing the lifting of branching of the main track with the help of auxiliary lifting device and using the remote control has the ability based on accurate meter readings cross slope coordinate ascent branch and the rise of the main road.

The objective of the proposed invention is, thus, creating spelaeogriphacea machine of the specified type for compressing turnouts, and you can do the exact agreement on the level of the main track and the branch switch.

According to the invention this task is solved by using spelaeogriphacea machine of the specified type, and the total measuring system consists of the measuring generator which is in contact with the main rail way and forms a reference line formed by a light beam and parallel to the plane of the path, and the measuring receiver which is in contact with a branch and registers the reference line.

agyenim unit and auxiliary lifting device. Such images and arrow plots, where the longitudinal sleepers have an elastic joint, it is possible to easily perform accurate and rapid adjustment of the position of the track.

Other advantages of the invention are given in the dependent claims and are presented in the illustrations.

The invention is disclosed in more detail below with reference to the drawings, which shows a variant of execution.

Fig.1 is a simplified side view spelaeogriphacea machine.

Fig.2 is an enlarged cross-section spelaeogriphacea machine according to the section line II.

Fig.3 is a simplified fragment of the measuring axis spelaeogriphacea machine.

Spelaeogriphacea machine 1 for tamping the track 4 formed by the rails 2 and rails 3, the machine has a frame 6 supported on the driving mechanism 5. Using the traction drive 8, which receives the load from the engine 7, spelaeogriphacea machine 1 is able to move in the direction indicated by the arrow 9. To operate various work units provided by the control device 11, which is working in the cabin 10.

For tamping the track 4 the tamping unit 12, specifically applied to switches mounted on machine frame 6 with the possibility of dbone 14, buried in the rubble, facing each other in the longitudinal direction of the machine and fed to the depth of the driven feed to a depth of 15.

If you look in your direction, immediately before tamping unit 12 is located between the driving mechanisms 5 paleothermal unit 17 that is designed for leveling and alignment of rails 4 and is arranged to move in height and in the transverse direction by means of the actuator 16. With potamotherium unit 17 are connected to two auxiliary lifting device 18, each of which has a hinged connection with the frame of the machine 6 and is arranged to move in height by means of the actuators 19. To control the lifting rail 4 is provided a system for measuring the position of the track 43, which is indicated here only in a simplified way as a measurement of the chord 21 and the measuring axis 22 located on the track 4.

As can be seen in Fig.2, the auxiliary lifting device 18 mounted on machine frame 6 by means of a hinge 24 with the axis passing in the longitudinal direction of the machine, is arranged to extend in the transverse direction relative to the longitudinal direction of the machine when pomo 24, there is a lifting device 26. It consists essentially of a roller with two ridges 29 rolling by branch 27 of switch 28 and the winding roller 31, is arranged to fit to the tail of 27 due to the actuator 30.

Paleothermal unit 17 that is designed for leveling and alignment of the main road 32, which forms the plane of the track 39 and through which move driving mechanism 5 is moved along the main path 32 switch 28 by means of a roller with a crest 37 and is equipped with Elevator rollers 33, each of which is arranged to fit to the respective rail 2 through the actuator 34.

General measuring system 20 monitors the rise of the switch 28 and includes paleothermal unit 17 and the auxiliary lifting device 18 for lifting the exhaust from the main path 32 branches 27 of switch 28, consists of a measuring oscillator 23, which is located on the main rail 32 and is connected with potamotherium unit 17 and the measuring receiver 35, which is located on the branch 27 and mounted on the lifting device 26 of the auxiliary lifting device 18. Using Selina plane 40 of the measuring system 20, formed by the light beam and parallel to the plane of the track 39. The measuring receiver 35 of the measuring system 20 incorporating the reference line 38, consists of a laser receiving element 41. As already mentioned, spelaeogriphacea machine 1 is equipped with a second auxiliary lifting device 18 for processing switch section located on the other side of the machine, which for simplicity is barely marked. Lifting device 26 of this second auxiliary lifting device 18 is also equipped with a laser receptive element 41 which communicates with the second measuring generator 23, fixed to the education of the measuring system 20 on photopolymer unit 17. On a plot of switch 28, shown in Fig. 2, pole 3 to connect the main path 32 to the junction 27 is made of two parts, and both parts of the sleepers have a flexible joint 42.

Below describes in detail the principle of operation stated spelaeogriphacea machine 1.

Adjusting the position of the track is at work spelaeogriphacea machine 1 in the corresponding lifting or lateral correct track 4 using photopolymer Eghosa under the sleepers 3, thanks to the work of tamping unit 12. Once on the site switch 28, the auxiliary lifting device 18 associated with the branch 27 under the influence of the actuator 25 is shifted to the side, and lifting device 26 is in contact with the rail junction 27. Subsequent adjustment of the position of the track on the site switch 28 through the actuator 16 through which paleothermal unit 17, including measuring the generators 23, rises to a predetermined height. This applies, of course, to the plane of the track 39.

Parallel to this process of lifting photopolymer unit 17 with the aid of the measuring generator 23 is formed in the plane of measurement 40, which runs parallel to the plane of the track 39 and energizes the corresponding measuring receiver 35 of the measuring system 20. When this register, for example, the deviation of the plane of measurement 40 from the zero mark of the measuring receiver 35, indicated in Fig.2 icon “and”. Therefore, the actuator 19 until will automatically receive the load of the control device 11, while the plane of measurement 40 reaches the specified zero mark of the measuring receiver 35, i.e., the branch 27 trilogoy variant of the claimed invention, moreover, measuring the generator 23 of the measuring system 20 mounted on the measuring axis 22 of the measuring system the position of the track 43, located between the tamping unit 12 and potamotherium unit 17 in contact with the rail 2 through the roller with the ridge 44 and is arranged to move in height. The remaining elements of the measuring system 20 is identical to the version described in connection with Fig.1 and 2.

Claims

1. Spelaeogriphacea machine for tamping the track with paleothermal unit designed for leveling and alignment of the main road, which forms the plane of the rail and which are moving trolleys, installed between the driving mechanisms, and - when viewed in the working direction of the machine directly in front of the tamping unit and configured to move in height by means of actuators, and the adjustment of the level of the main track using photopolymer unit and measuring system for controlling the position of the track, with the measuring chord and moving on the rail track measuring axis, having also functional is rich with potamotherium unit and auxiliary lifting device connected with a common measuring system for controlling the lifting switch, characterized in that the total measuring system consists of the measuring generator which is in contact with the main rail way and forms a reference line formed by a light beam and parallel to the plane of the track, and the measuring receiver which is in contact with a branch and registers the reference line.

2. Machine under item 1, characterized in that the measuring generator consists of a rotating laser that generates a measurement plane parallel to the plane of the track containing the reference line and the measuring receiver system consists of a laser receiving element.

3. Machine under item 1 or 2, characterized in that the measuring generator associated with potamotherium unit, and the measuring receiver is connected to the auxiliary unit lifting device.

4. Machine under item 1 or 2, characterized in that the measuring generator is located on the measuring axis that is located between the tamping unit and potamotherium unit has rollers with a comb for movement on the main track and configured to move along the height.

5. Machine according to one of paragraphs.1-4, characterized in that the measuring receiver is made for filing with the aid of the lifting fork.

 

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SUBSTANCE: machine has main frame supported by carriages, additional frame installed on the main frame and displaceable in longitudinal and transversal directions relative the main frame by corresponding drives with the use of roller guides. Mounted on additional frame are sleeper taping unit, means for rail road track surfacing and control equipment. Additional frame is installed on main frame by means of two transversal beams to which above roller guides are secured so that roller guides are located from both sides of longitudinal axis of machine symmetry. Transversal beams are installed on the main frame to perform displacement along the guides and are connected with drives providing additional frame movement across the machine.

EFFECT: prevention of additional frame blocking in roller guides, increased accuracy of additional frame orientation relative rail road track and, as a result, increased operational reliability and efficiency of the machine.

6 cl, 4 dwg

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