BACKGROUND OF THE INVENTION
[0001] The present description refers to a Patent of Invention concerning a fixed installation
for changing the railway gage, which is intended for allowing to automatically change
the gap existing between the rolling wheels, adapting them to each of the two conventionally
used gages.
FIELD OF THE INVENTION
[0002] This invention applies to the industry for the manufacture of railway vehicles.
RELATED ART
[0003] At present, nothing is known about a fixed installation allowing the railway vehicles
to automatically change the gap between the rolling wheels used by the train known
as TALGO.
[0004] Nevertheless, there are, at present, different installations designed for this purpose,
having special features and configurations, to be used on the wheels of conventional
rollings which, in general, are utilized by all railway vehicles in an undiscriminatory
manner, save, of course, the exceptions existing in some type of railway vehicle having
specific wheels and for a specific use.
[0005] Nevertheless, with regard to the trains known as Talgo, nothing is known about the
existence of an installation allowing the gage to be changed, and being constituted
and positioned in a fixed way.
[0006] The obvious solution to this problem would be to rely on a fixed installation allowing
to automatically modify the gap between the rolling wheels of the trains Talgo, adapting
them conveniently to each of the two gages.
DESCRIPTION OF THE INVENTION
[0007] A fixed installation for changing the railway gage, as proposed by the invention,
constitutes an obvious solution to the present problems on this matter.
[0008] In a more definite way, the fixed installation for changing the gage, which is the
object of this invention, is constituted from its positioning on the upper part of
a large block of reinforced concrete, which is hollow inside, a series of elements
necessary to obtain the wheel translation and their subsequent locking being supported
on this block.
[0009] At the same time, this block transmits the vertical load corresponding to the vehicle
weigth to the ground, when the vehicle is passing over the installation and, in turn,
the forces generated in the gage change operation.
[0010] The fixed installation for changing the gage has, at the end corresponding to the
international gage, rails descending slightly until being later interrupted.
[0011] Before this interruption and transversely overlapping these rolling rails, there
are arranged two sliding and centering guide-rails, which are symmetrically located
with regard to the longitudinal axis of the fixed installation.
[0012] To carry out the translation operation of the wheels from a gage to other gage, it
is necessary that these wheels do not support the load, this requirement being obtained
by supporting the rollings on the guide-rails by means of sliding runners located
on the sides of said guide-rails.
[0013] Upon descending these rolling rails, the horizontal runners come into contact with
the upper flat face of the guide-rails, the wheels being unloaded for the whole process
of changing the gage.
[0014] On the descent zone of these rolling rails, there are guard rails, with which the
appropiate previous centering of the rolling rails is effected.
[0015] Apart from these horizontal runners, there are other vertical runners in contact
with the inner flat of the guide-rails, these ensuring the centering of the rollings
during the gage change - operation.
[0016] Both the horizontal and vertical runners and the sliding runners are made of a plastic
material.
[0017] In order to reduce the friction coefficient thereof with the guide-rail steel, they
are water lubricated.
[0018] This lubrication is obtained by wetting the guide-rails by means of an installation
located outside these ones, said installation being fitted with multiple diffusors.
[0019] The ends of the guide-rails are fitted with additional parts, the function of which
is to obtain an additional centering of the rolling.
[0020] The immobility of the rolling assemblies, i.e., wheel, axle and a pair of bearings,
when the rolling is in any of the two gages, is ensured by a double locking of the
latch pindles.
[0021] In view of the above-mentioned description, the fixed installation has four unlocking-locking
guides, which are symmetrically arranged with regard to the longitudinal axis of the
fixed installation.
[0022] Once the rolling has been supported on the guide-rails and it continues to advance
through the fixed installation, the lower bridges of the locking latches enter the
guides and the - latches descend, these latches being unlocked at the center part
of the guides, where their vertical profile is horizontal.
[0023] Owing to the fact that the friction parts of the latch bridges are also made of a
plastic material, they are also water lubricated through appropiate installations
which are located on each of the upper parts of these unlocking-locking guide cores.
[0024] In the hypothetic case that a locking latch would arrive at the fixed installation
under its nominal height, the ends of all guides incorporate a safety fixture.
[0025] Apart from this safety fixture, out of the fixed installation at both access ways
thereto, and about 38 m from each of its - ends, a devide for detecting the latch
height has been incorporated.
[0026] In the possible case, although of course very unlikely, that any of the latches would
descend below its nominal height, and in order that the rolling does not enter the
fixed installation, this device, by additionally producing the corresponding acoustic
or semaphoric signal, would give a relative order to the operator to immediately stop
the train.
[0027] During the latch unlocking process, the resilient portion of the wheel translation
guides entering the fixed installation thru the international gage side, comes into
contact with the outer face of the rims thereof, and the pressure exerted on the wheels
helps the latch unlocking operation.
[0028] Subsequently, and as the rolling advances through the fixed installation, the wheels
lose their contact with the resilient portion of the translation guides on the international
gage side, and immediately they come into contact with the rigid portion of the translation
guides on the gage side as used by RENFE.
[0029] During the contact of the wheels with this rigid portion of the translation guides
on the RENFE's gage side, the latches are unlocked and the wheels are transferred
to the gage of the type used by RENFE.
[0030] Then, the wheels are still in contact with the resilient portion of the translation
guides on the side of the type of gage as used by RENFE, and the latch guides pressure
them upwardly, locking them.
[0031] The pressure exerted on the resilient portion of the translation guides facilitates
the latch locking.
[0032] In the hypothetic case that a wheel does not carry out its total translation until
being placed in the correct position, and in order to avoid this can surmont the resilient
portion of the translation guides and damage it, there is provided an inclinate plane
at the upper part of these guides.
[0033] Once the translation process of the rolling assemblies ended, these assemblies are
locked in a position corresponding to the gage used by RENFE.
[0034] At the ends of the latch unlocking guides, height sensors are mounted, which check
if any latch is not correctly locked, owing, for example, to the fact that a rolling
assembly has not been fully transferred to its correct position.
[0035] These sensors, the same as those controlling the correct position of latches before
passing over the fixed installation, would drive the acoustic or semaphoric signal
for stopping the train.
[0036] Lastly, as the rolling continues to advance through the fixed installation, there
is a point in which the wheels come into contact with the upward rails of the gage
type as used by RENFE, and the sliping and centering runners lose their contact with
the guide-rails, and the rolling is ready to roll over the track of this type of gage.
[0037] The reverse process of passing from a gage of the type used by RENFE to the gage
as internationally used, is carried out in a fully similar way.
[0038] It must be pointed out that the gap between the inner faces of the wheels of the
TALGO rollings, capable of being displaceable in both gages, i.e. between the gage
used by RENFE and the international gage, should be included within limits of 1593
+/- 3 mm and 1360 +/- 3 mm.
[0039] The positioning of the rolling assemblies between both gages, in order to maintain
a gap between wheels within these limits, is ensured by its mounting technique and
the blocking system by means of the locking latches; now then,when carrying out, in
the fixed installation, the displacements of these assemblies to position the wheels
in the corresponding gage, the following points are to be followed:
- Do not carry ouy violently the unloading operation of the wheels and the subsequent
loading of same, bearing in mind that the wheel diameters decrease along their lives.
- During the passing of the rolling through the fixed installation, this is to be always
closed and not subject to vertical or oscillating motions.
- The entering of the locking latch bridges into their respective guides must be smooth,
and the vertical displacements imparted by these guides to the latches must ensure
their correct unlocking and subsequent locking.
- The wheel translation guides must ensure a correct motion thereof, by placing them
in the precise position corresponding to the gage in question.
[0040] In order to meet these requirements, it is necessary that the elements of the fixed
installation meet the following positioning conditions:
- The RENFE gage rails and the international gage rails interrumped at the two ends
of the fixed installation must descend 45 +/- 4 mm, with regard to the elevation of
both tracks, a length of 1500 mm.
- The upper part of the sliding and centering guide-rails in all its length must be
a relative height in relation to the rolling rails of 319 +/- 1 mm, and the separation
between inner faces all along the length must be 2570 +/- 2 mm.
[0041] It must be taken an exhaustive care with regard the relative position and its corresponding
tolerances, both in vertical and transverse direction, in relation to the latch unlocking
and locking guides as regards the slipping and centering guide-rails.
[0042] The dimensions and tolerances of the wheel translation guides, as well as their position
with regard to the longitudinal geometric axis of the railway installation, must be
also exhaustively taken care of.
- In order to get the correct translation of the wheels, ensuring that the wheels have
attained their accurate positions, it is necessary that the reaction spring of each
of the resilient portions has a decompression of 210 kg, and that its reaction - force
is included within a prefixed scale of values.
- To obtain low friction coefficients between runners and slides of plastic material
and the steel surfaces of the sliding and centering guides, as well as of the unlocking
guide heads, the rugosity of these steel surfaces must be less than .8 as per UNE
1-037 Standard.
[0043] Finally, in order to obtain the positioning requirements and their previously mentioned
tolerances, it is necessary not only to get remarkable qualities in the machining
of parts, but also to carry out a subsequent high precision assembly, bearing in mind
the dimensioning of the parts and that the anchoring of same must be made in a concrete
civil work.
[0044] This assembly is remarkably tough, since it requires to use a large amount of supplements
and a very detailed checking simultaneous with said assembly.
BRIEF DESCRIPTION OF THE DRAWINGS
[0045] In order to complement this description and to aid to a better understanding of the
features of this invention, the accompanying drawings, which are a part of same, show,
in an illustrative and non limitative manner, the following:
[0046] Figure 1 shows a diagramatic plan view of the fixed installation for changing the
railway gage, which is the object of the invention.
[0047] Figure 2 shows a detailed plan view of the installation which is the object of the
invention.
[0048] Figure 3 shows an elevational side view, properly sectioned, along the line A-B of
the object represented in Figure 2.
[0049] Figure 4 shows a detailed plan view of the installation illustrated in the previous
Figures.
[0050] Figure 5 shows an end elevational view seen by C/D, of the object illustrated in
Figures 2 and 3, seen from the zone in which the pit is incorporated.
[0051] Figure 6 shows an end elevational view, properly sectioned, of the installation zone
shown in Figures 2 and 3, without pit.
[0052] Figure 7 shows an end elevational view, properly sectioned, seen by G/H.
[0053] Figure 8 shows a new detail of the installation seen by I.
[0054] Figure 9 shows again other detail of the installation which is the objet of the invention,
seen by J-K.
[0055] Figure 10 shows an end elevational view, properly sectioned, seen by L-M.
[0056] Figure 11 shows a diagramatic plan view of the resilient guide incorporate into the
invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0057] In view of these Figures, it can be seen that the installation 1 is constituted by
rails 2 having the international gage, located on one of the sides, presenting on
the other side or opposed end rails 3 having the gage as used by RENFE.
[0058] The installation has, also, guide-rails 4 for the centering and sliding operation,
disposing of a resilient zone on the translation guide 5 and a rigid zone on the translation
guides 6.
[0059] The installation illustrated in Figure 2 has a complementary installation 7 composed
of rails and guard rails, relying on sliding guides 8 and 8 , as well as a resilient
guide 9 and 9', having a reinforced concrete assembly 10.
[0060] Also, the installation shown in Figure 2 has an outer guiding assembly 11 for the
unlocking operation, and an installation 12 for the sliding operation, as well as
centering guides 13, all them located in a general pit.
[0061] The installation disposes of an outer support 17, and an assembly composed of a support
22, a nut 21, a screwed cylinder 20 and a nut 19.
[0062] In Figure 7, it can be seen that the installation disposes of an outer unlocking
guide 14 and an upper pit framewoarh 15, while Figure 8 shows a fixture 16.
[0063] Figure 10 shows a moving armature 18.
[0064] Figure 11 represents a resilient guide 9.
[0065] In synthesis, this installation is designed to be applied to railway vehicles disposing
of bogies of two wheels of independent turn, in which each wheel is mounted on an
independent axle, which is fitted, in turn, with bearings at both ends, so forming
the appropiate rolling assembly, thereby said bogies allow the rolling assemblies
to be transversely and symmetrically translated, the bearing boxes being held in the
correct position by the action of fixed stops and by using a simple latch.
[0066] The essential purpose of this installation is to allow to change the position of
the rolling assemblies, enabling the train to follow its route over a railway network
disposing of a different gage.
[0067] The gage changing operation is automatically performed when the train passes over
the fixed installation, this operation being perfectly reversible and the rolling
assemblies returning to their initial position if the train passes again over said
installation in opposed direction.
[0068] The fixed installation has dual transition guard rails, which at one of their ends,
are adapted to the appropiate gage used as international gage, while, at the other
end, they are adapted to the gage as used by RENFE, so that they can guide the wheel
from one to other position.
[0069] Likewise, the installation has supporting runners which are parallel to the gage,
being designed to help the bogie frame to rest on them when the train runs, and to
facilitate the performance of the whole installation, although, in this point, their
function is essentially and specifically to make possible that the wheels can be incorporated
into the appropiate dimensions, so constituting, consequently, a step or stage of
function.
[0070] Also, the installation relies on extracting guides, which are parallel to the track
axis, and are inserted into a bridge located on the locking device, their function
being to lock and unlock the latches.
[0071] The extracting guides are arranged so that theirs ends are located at a fixed height
so allowing to be inserted by the lower suppats of the locking device bridges, progressively
descending towards their center part, which is maintained at a steady height during
the path necessary to allow the rolling assemblies to be laterally displaced, as during
this path the mentioned latches are to be held in their lower unlocking position.
[0072] In synthesis, to change its gap between wheels, each bogie carries out the following
process:
[0073] The train enters the transition station coming from a track having a large gage,
and any bogie belonging to the train, located at the entry of the fixed installation,
is driven from the runners having an upper upward face.
[0074] The horizontal supports of the bogie frame are located at the same vertical than
the runners.
[0075] The bogie continues to run on the rails until arriving at a fixed point, in which
the supports come into contact with the runners, and the bogie starts to ascend, their
supports sliding on the runners.
[0076] The wheels detach from the rails, so being unloaded, and the rolling assemblies remain
supported, thru their lugs, by the guides.
[0077] The runner slope is so fixed that it is smooth enough for the bogie frame to tilt
and rest on the runners all along the support length.
[0078] The height differential of a runner between two planes A and B is defined by the
addition of the variation to be presumable borne because the use by the wheel spoke,
and the descent produced at the bearing boxes from a running position to a sliding
position, and the minimal gap which is desired to have with the wheel having a maximum
diameter between the periphery thereof and the rail.
[0079] On arriving at plane B, the bogie attains its maximum height and it maintains this
height until arriving at the other plane, since the runner surface will be horizontal
between the planes in question.
[0080] At the mentioned plane B, the gage rails are eliminated from the gage A, since they
are not necessary because the wheels are not already supported by the rails, and there
the extracting guide start, which enter through the locking device bridges.
[0081] Said extracting guides descend gradually, so impelling the latches consequently to
be unlocked until arriving at a point in which they are fully unlocked.
[0082] By means of guard rails guiding transversely the wheel, this is held in position
even after the unlocking operation.
[0083] Later, the outer transition rails will act, displacing laterally the rolling assemblies
until arriving at a stop position corres p onding to the other gage.
[0084] During the transition path, only the outer guard rails will act in the case of passing
from a larger gage to a smaller gage, or only the inner ones in the case of passing
from a smaller gage to a larger gage, so that there is no possibility that the wheel
becomes inserted between them, since they are adequately apart.
[0085] These guard rails are located at a greater height than the rails, in order to compensate
for the elevation undergone by the wheels and the difference of rim diameter and the
opposed part of the wheel.
[0086] During the path, the guides are horizontal, having the function of holding the latches
unlocked, and from a definite point the rails are not already exist, and the guides
start to ascend, pushing the locking device upward until a fixed point, in which these
guides end, and locking device and the bearing boxes are again laterally locked in
a position corresponding to the smaller gage.
[0087] The guard rails having a smaller gage extend until a fixed point parallel to the
rails, in order to laterally guide the wheels by the part opposed to the rim, so impeding
their possible sideways displacement before producing the locking.
[0088] During the path with the bearing boxes unlocked, it is totally necessary to laterally
guide the bogie frame in order to hold it centered with the longitudinal axis of the
track.
[0089] This operation is attained by means of side guides which are a part of the runner,
said guides starting at a fixed point and, gradually, they reduce the play between
runner and bogie frame, until this play is adjusted and maintains these conditions
until a point in which the play starts to gradually increase, until other fixed point
in which the side guides disappear.
[0090] Later, the descent of the runners start, and the bogie frame descends gradually until
the wheels rest on the rails and the bogie frame rest on the upper faces of the bearing
boxes.
[0091] The runners end and leave the bogie ready to continue to run over the network having
the new gage.
[0092] Of course, and successively, all the train axles undergo this same process on passing
over the fixed installation.
[0093] Also, it is contemplated the possibility of maintaining a fixed installation wherein
the transition guard rails do not exist, displacing laterally the wheels, the guide
being a groove formed on the same runner.
[0094] In this variant, at the front of the outer bearing boxes there are mounted supports
fitted with bushings having vertical appendices the lower end of which is inserted
into the guide during the change operation.
[0095] Ths guides are parallel to the track axis, and later they approach one another a
distance equivalent to the difference of gages, and starting from this point it is
again parallel to the track axis.
[0096] When the train arrives at the fixed installation coming from a network having a greater
gage, the bushing appendices are inserted into the guides, so making easy the entry
into them by the surfaces, and the lifting operations of the bogie and unlocking follow
one another on the same planes as in the previous case, in which is contemplated the
existence of guard rails.
[0097] When each axle arrives at the fixed point, the unlocking has been already produced,
and the appendix slides inside the groove, and it is forced to displace towards the
track axis, pushing consequently the whole rolling assembly until placing the wheels
at the distance corresponding to the smaller gage.
[0098] Said appendices are still inserted through the parallel zone of the guides, so impeding
the bearing boxes to separate from the stop position before the locking operation.
[0099] An important advantage of this arrangement is that the necessary force to laterally
displace the rolling assembly is applied directly to the appendix on the same horizontal
plane as the friction force opposing to said displacement.
[0100] An additional improvement in this variant is obtained through a resilient mounting
of the bushing, placing it on the bearing box.
[0101] A rubber ring-shaped part interposed between the bushing and the fixed part of the
support, which is common to the bearing box, makes it possible said appendix to rotate
about a longitudinal horizontal axle, taking a tilted position.
[0102] Nevertheless, if it is preferred to harden the bushing resilience, when the appendix
arrives at certain angle, it is possible to resort to resilient stops, through which
the installation tolerances can be extended in relation to the relative position of
appendices and guides.
[0103] The invention has an additional advantage defined by laterally displacing the guides
some centimeters on the appropiate path, so generating a force maintaining the bearing
boxes squeezed against the bogie frame stop, so making easy the locking and unlocking
operations since the bearing boxes do not exert any force in the opposed direction,
i.e., against the latches themselves.
[0104] When passing from the smaller gage to the larger gage, the steps follow one another
according to the same above-mentioned process, excepting that the train will pass
over the same installation following a reverse sense, notwithstanding the sense followed
by the train, since the system operates indifferently, no matter whether the head
axle or the tail axle is the first one passing through the fixed installation.
[0105] The ends of the guides are slightly below the maximum height attained by these guides
so that the position of the latch bridge when leaving the installation corresponds
to an intermediate height.
[0106] So, when the bridges enter again the installation, they do not rub on said guides
until a part of same are inserted inside.
[0107] If the vertical force retaining the locking device exerted by springs has been completed
with the additional magnetic retainers, the maximum height of the guides has been
foreseen in order to ensure that both the fixed and moving parts of the magnetic retainers
contact intimately.
[0108] One of these parts has been flexibly disassembled in order to obviate that the bogie
becomes suspended from the extracting guides instead of from the runners.
[0109] Both in one variant and in the other variant, to unload the wheels it is necessary
to lift the runner on the rails, but this height variation is always relative, so
that there is a possibility that the runner be horizontal along its length, and that
the rails descend at their ends adjacent to the installation In both cases, the vertical
layout of the guard rail extracting guides, or of the guides transversely displacing
the wheels is made according to the height of the horizontal section of runner.
[0110] The installation, which is the object of the present invention, has other additional
advantages, such as the existence of more ample tolerances, since the possible dimensional
differences are absorbed by the support resilience, securing also the non existence
of any type of transverse force on the latch in the moment of unlocking, due to the
fact that the resilient - support is pushing the rolling assemblies against the fixed
stop.
[0111] A fixed stop, to be used in the event the spring breaks accidentaly, impedes the
guard rail from yielding even more to what is pre-established, and thus it is sure
a correct operation, even in the case that the spring breaks, although. it is evident,
in this case, that the resilient guard rail does not carry the wheel until its limit
position, but it can bring it near enough for the latch, the ends of which will be
formed by inclined faces, shaped like a pyramid trunk, to place, in its upward motion,
the rolling assembly in its correct position.
[0112] The fixed guard rails are not rigidly mounted on the fixed installation, but they
are mounted with a relative elasticity, in order to reduce the impact when the wheels
rest on them.
[0113] Nevertheless, the springs are generally precompressed, this precompression being
dimensioned to have the required force on the resilient guard rail without the need
to use springs having greater characteristics.
[0114] An additional improvement consists of transversely centering the bogie, with which,
before the latch bridge houses in the unlocking guide , the bogie becomes perfectly
centered.
[0115] Assuming that the train arrives at the transition station coming from a larger gage,
and considering any bogie belonging to the train located at the entrance of the fixed
installation, the runners begin upto the second plane, these runners having a lateral
transversely inclined face, so obtaining to laterally center the bogie.
[0116] Of course, between planes there is a gradual spacing out between the upper faces
of the rails and the runners, preferably by rail descent, so achieving that the bogie,
at its displacement, rests, through supports, on the runners, whilst the wheels stop
contacting the rails.
[0117] The rolling assemblies will rest on the bogie frame by means of lugs located on the
respective bearing boxes.
[0118] On the second plane, the rails are suppressed, as they are not necessary since the
wheels are not already resting on same, and, instead, the extracting guides begin
to gradually descend until the second plane, forcing the locking latches to unlock
progressively the rolling assemblies, which is fully obtained on the third plane.
[0119] Also on the second plane, the resilient guard rails begin to be driven by the action
of the springs, pivoting on the vertical axle compressing the bearing boxes against
the fixed stops of the bogie frame.
[0120] Between transverse planes, there are located fixed guard rails, the extracting guides
being horizontal along this lenght and holding the latches unlocked when the bogie
slides, which allows the rolling assemblies to be transversaly and gradually displaced
by the action on the wheels of the fixed guard rails.
[0121] Later, the guides begin to gradually ascend, pushing upward the locking device until
ending these guides, and the bearing boxes are fully locked laterally in the position
corresponding to the smaller gage.
[0122] During these operations and path, the outer resilient guard rails compress the bearing
boxes through the wheels against fixed stops of the bogie frame corresponding to the
new gage.
[0123] Afterwards, a progressive approach of the upper faces of runners and rails is effected,
and the wheels gradually approache the rails until resting on them, and the bogie
frame will rest on the upper curved surfaces of the bearing boxes.
[0124] On finishing the runner action, the bogie will be ready to continue to run over the
network of the new gage, and all bogies will undergo successively this same process
when passing over the fixed installation which is the object of the invention.
[0125] When changing from a smaller gage to the larger gage, such as mentioned in the above
descriptions, the operations follow one another according to the same mentioned process,
excepting only that the train will pass over the same installation in a reverse direction,
the sense followed by the train being totally indifferent, since, as Previously said,
the system works uniformly, whether the head axle or the tail axle enters the first
the fixed installation.
[0126] It is not considered necessary to extend more this description for an expert in the
art to understand the scope of the invention and the advantages derived from it.
[0127] The materials, shape, size and arrangements of the components are open to variation,
provided that it does not imply any alteration to the essence of the invention.
[0128] The terms under which this specification has been described should be taken in an
ample and non limitative sense.
1.- A fixed installation for changing the railway gage, characterized in that it is constituted
from a symmetric arrangement in relation to a vertical and axial plane which is common
to two end lengths of tracks of different gap between rails and located in an intermediate
space and adjacent to the rail ends; in which guiding and supporting elements are
installed including sliding surfaces formed by runners, on which different sliding
and supporting means are supported which are common to bogies in order that these
means, when a train passes on the installation, raise gradually in relation to the
rails until attaining a fixed level wherein the wheels lose their contact with said
rails and which guides have an inner lateral shape which is appropiate to guide at
the same time transversely said bogies, and relying on guiding means or guard rails
for transversely guiding the wheels when these wheels lose their contact with the
respective rails located in the space existing between the ends of the rolling rails
of the different gages, which guides or guard rails are in an inclined position in
relation to the longitudinal axis of tracks, in order that, once the wheels have been
released, they move transversely from a position corresponding to a gage to another
gage, relying also on means for driving blocking means arranged on the bogies fixing
the transverse positions of bearing boxes and the brake for each wheel, said driving
means including two longitudinal parallel guides arranged on both sides of the transverse
guiding guard rails of wheels, presenting means for hooking the unblocking device
compelling to a gradual motion to drive the blocking device in order to initiate the
unblocking process at one end and, at the other end, to determinate a new blocking,
thus the process being reversible and independent of the train traffic sense.
2.- A fixed installation for changing the railway gage, according to claim 1, characterized
in that the sliding runners of bogies are defined as fixed elements, parallel and
symmetrical arranged in relation to the mean vertical longitudinal plane of tracks,
displaying, on their upper part, a horizontal plane all along their length when the
rails of both gages have, at their ends, downward inclined planes, or displaying,
on their upper plane, a horizontal middle part and two downward inclined parts towards
the respective ends when the facing ends of the rails are horizontal, the level of
the runner horizontal plane being adequate so that the wheels, bearing in mind possible
wears on wheels and other constitutive elements, lose their contact with the tracks
since they rest on said supporting part of bogies, and the level and shape of the
inclined ends of runners or rails being sufficient so that, under any circumstance,
the sliding surfaces of respective runners come smoothly into contact with the bogie
supports.
3.- A fixed installation for changing the railway gage, according to the preceding claims,
characterized in that the sliding runners of the bogies have, at their inner faces
and on the upper part of same, a protruding shape including a middle part parallel
to the vertical longitudinal plane of the guides and two end divergent inclined parts
towards the ends, with regard to said plane, constituting guides to impede the transverse
motion of the respective bogies when these are resting on the runners.
4.- A fixed installation for changing the railway gage, according to the preceding claims,
characterized in that is has guides for the transverse motion of the wheels in order
to pass them through a gage to other gage. Said guides are formed, on each side, by
pairs of guard rails having a middle parallel part having an inclinaticnwhich is appropiate
to allow the rolling assembly to pass from a position to other, and relying, at each
element of each pair, on lengths which are parallel to each rail, arranged so that
the innet guard rail begins at the end and from the other inner part of the respective
rail of the track having the larger gage, and the outer guard rail begins at the end
and from the outer part of the respective track having the smaller gage, so that,
according to the sense of the train run, the distance between wheels decreases or
increases when they are guided through the outer or inner rail.
5.- A fixed installation for changing the railway gage, according to the preceding claims,
characterized in that it has extracting means for driving the transverse blocking
device of the bearing boxes and brake of each wheel, said means being formed, on each
rail, by parallel guides which are arranged between the ends of the rolling tracks
having different gages on both sides pf the transverse guiding guard rails of the
wheels, said extracting guides being formed by a profile adopting a T-shape, which
includes, at its middle part, a horizontal flat part coincidental, in length, with
the vertical flat middle part, and end parts inclined upward towards the end, in which
guides driving means for said devices blocking the wheels are housed, adequately adapted
so that the guides are housed, thru their upper part, in same, in such a way that
they cause, in the mentioned driving means as the train advances, a downward vertical
displacement, to give rise to their unblocking, and after effecting a run without
any displacement, a second vertical upward displacement to give rise to their returning
to the blocking position, said driving being, consequently, identical in any sense
of the run.
6.- A fixed installation for changing the railway gage, according to the preceding claims,
characterized in that the sliding runners for supporting the bogies have, on their
upper face, a guide having an adequate width comprising a length which is parallel
to the longitudinal axis of the track at each end, and spaced apart a same distance
from the respective rail of the corresponding track, and an inclined part to link
between both parallel lengths, the projection of which is coincidental with the horizontal
middle part of the extracting guides with which cooperate means arranged in the respective
bearing assemblies of each wheel, in order to obtain a displacement of each assembly
to pass from a gage to other.
7.- A fixed installation for changing the railway gage, according to the preceding claims,
characterized in that the guard rails for transversely guiding the wheels are constituted
by two parts, one fixed to the installation which markedly coincides with the inclined
length of guard rails, and one configured as an extension for the former, which coincides
with the length parallel to the track axis, this latter being articulated at its most
proximal end to the transverse middle plane of the installation and being laterally
elastic, by means of a spring which can be either precompressed or not, and which
makes the guard rail to push the wheel when passing over this zone in a reverse sense
to that of displacement imposed by the inclined length at the entry to the fixed installation,
and in the same sense at the exit.
8.- A fixed installation for changing the railway gage, according to claim 7, characterized
in that each resilient guard rail is fitted with a stop limiting its lateral displacement
in the - sense imposed by the action of the resilient device.
9.- A fixed installation for changing the railway gage, according to claim 7, characterized
in that each resilient guard rail is fitted with a stop delimiting its lateral displacement
in a sense opposed to that imposed by the action of its resilient device, until a
predetermined limit marked by the projection on a horizontal plane of each inclined
face of the unlocking latches.
10.- A fixed installation for changing the railway gage, according to claims 7, 8 and
9, characterized in that the sliding runners of the bogies have, at their inner faces
and on the upper part of same, a protruding configuration including a middle part
parallel to the vertical longitudinal plane of the installation, and two end inclined
parts which are divergent towards the ends, in relation to said plane, which constitute
transverse guides, thereby centering the bogies before the unlocking guides enter
through the bridges of the corresponding latches.