The invention relates to a grinding machine, manually displaceable on a track, for grinding a rail of the track, having a support frame which is guided on the rails via two rail guides and on which is arranged a drive motor coupled to a vertically adjustable grinding member.
A machine of this kind is known, for example, from DE 1 154 496 B. This is a rail grinding apparatus, supported on a frame and manually mobile on a rail by means of running rollers, which is pivoted via a swivel bracket. A grinding device is raised and lowered relative to the frame by means of a spindle drive.
It is the object of the invention to show an improvement over the prior art for a grinding machine of the type cited at the beginning.
According to the invention, this object is achieved with a grinding machine according to claim 1. Dependent claims indicate advantageous embodiments of the invention.
The invention provides that the rail guide in each case comprises a quick-change device in which one of at least two interchangeable rail guiding systems is fastened. Thus, the rail guide can be adapted easily to the local conditions at the construction site. In particular, the different guides enable an ergonomic operation as well as a flexible use of the grinding machine depending on the work situation.
In an advantageous embodiment of the invention, it is provided that the respective quick-change device comprises a socket with internal teeth, and that the respective rail guiding system comprises a pin with external teeth. As a result of the form-fitting connection of the quick-change device, a secure guiding of the grinding machine is ensured. The pin with external teeth is pushed into the socket with internal teeth, and the respective rail guiding system is changed quickly and simply.
A further advantageous variant of the invention provides that the grinding member is connected to the drive motor via a gear unit for power transmission. In this, the transmission of power to the grinding member takes place in an optimized way, wherein the drive motor and the grinding member may be arranged on different axes.
A further improvement of the device according to the invention provides that a resistance of a vertical adjustment of the grinding member is adjustable by means of an adjustment element. Thus, the vertical adjustment can be adapted in working operations to the particular requirements, especially in order to compensate wear of the grinding member. In this, the resistance of the vertical adjustment can be set in a simple manner to the individual requirements of an operator.
In an advantageous embodiment of the invention, it is provided that a first rail guiding system comprises merely an inner plate disk and an outer plate disk for application to a rail head. For treatment of the rail head, the two plate disks are simply placed on the rail head at the desired angle. This ensures a rapid and uncomplicated work progress.
In this, it is useful if an axis of rotation of the outer plate disk is inclined downward at an angle relative to an axis of rotation of the inner plate disk. In this manner, a greater retention- or clamping force acts from the rail on the grinding machine during the lateral grinding of the rail. The grinding member is pulled harder towards the rail head, as a result of which an operator needs to apply less power.
Another advantageous variant of the invention provides that a second rail guiding system comprises two plate disks, a guide roller and a guide hook for application to a rail head. This variant of embodiment is suited particularly for use in a switch area or at rail crossings.
It is additionally advantageous if the respective rail guiding system is rotatably supported on an axle carrier. With this, the grinding machine is guided at the required angle to the rail and in the position desired by the operator.
In this, it is expedient if the axle carrier is connected to a guiding handle which is rotatable about a carrier axis and can be installed alternatingly. In this way, the grinding machine can be adapted simply to the individual ergonomic requirements and can be guided at the desired angle to the rail. As a result of the alternating installation of the guiding handle, the grinding machine can be used by right-handed as well as left-handed persons.
As a further improvement, the guiding handle can be locked via a locking device. Thus, the guiding handle, rotatable together with the axle carrier, can be locked simply in the desired position. If the locking device is active, no change of angle between the support frame and the guiding handle is possible, thus guaranteeing safe working.
In an advantageous embodiment of the invention, the locking device is designed as a multi-disc brake. Multi-disc brakes are subject to only very little wear and are almost maintenance-free, making them not only very reliable in operation but also very durable and dependable.
The invention will be described below by way of example with reference to the accompanying figures. There is shown in schematic representation in:
A grinding machine 1, visible in
Additionally provided is a locking device 12 between the support frame 5 and the guiding handle 9, designed in
In working operations, the respective rail guide 8 in each case comprises one of two different, alternatively usable rail guiding systems 14, 15. During a grinding procedure, either a first rail guiding system 14 or a second rail guiding system 15 is installed. (In
At a lower end 16, the support frame 5 additionally has two support rollers 17, designed to roll on the rails 2, and a carrying handle 18 at either end. The support rollers 17 (copying rollers) roll on the rail surface and form a surface reference for the grinding member 11.
The grinding member 11 is arranged to be variable as to its height by means of a vertical adjustment 19. For example, a spindle rotatable by a hand wheel 34 and a corresponding counterpart serve as vertical adjustment 19. A rotation resistance at the hand wheel 34 can be adjusted by means of an adjustment element 20 acting on a disk spring package 21. To that end, the adjustment element 20 is designed, for example, as a union nut with a non-slip surface. The variable vertical adjustment 19 in combination with the exchangeable rail guiding systems 14, 15 and the adjustable guiding handle 9 enables a particularly efficient and ergonomic mode of operation as well as flexible usability of the grinding machine 1.
In particular, the respective rail guiding system 14, 15 comprises one such pin 24. Thus, for example, the first rail guiding system 14 can be mounted at an inner front side of the sliding socket, and the second rail guiding system 15 can be mounted at an outer side of the sliding socket. For transport or storage, both rail guiding systems can thus also be mounted at the same time. A fixation of the respective pin 24 takes place via a screw, but can also be carried out via a lever, for example, in a variant not shown.
In
In
In
In
Number | Date | Country | Kind |
---|---|---|---|
10 2017 002 300.8 | Apr 2017 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2018/057231 | 3/22/2018 | WO | 00 |