[0001] The present invention relates to railway maintenance apparatus and particularly,
but not exclusively to apparatus for lubricating railway fishplate equipment connecting
the distal ends of adjoining rails.
[0002] In the construction of a length of railway track it is necessary under certain circumstances
to mechanically join individual lengths of track by means of fishplates which are
bolted to the respective sides of adjoining rail stems and urged against the rail
heads and rail foots.
[0003] In order to avoid buckling of the track, expansion gaps are provided between individual
lengths of track. Fishplates must be designed in such a way that the adjacent rails
are allowed to expand and contract longitudinally during extremes of temperature.
To this end, the apertures through which the bolts are passed are elongated to allow
a degree of movement between the fishplates and the rails. To facilitate such movement,
it is essential that periodic lubrication of the bearing surfaces of the fishplates
be performed in order to minimise oxidation and friction, and minimise wear and failure
of the fishplate.
[0004] Presently, the lubrication of the bearing surfaces of the fishplates is performed
manually. The process involves (i) slackening and removing the four nuts which hold
the fishplates in place; (ii) removing the corresponding bolts from the apertures
provided in the rail and the fishplates; (iii) reinserting the bolts through the apertures
from the other side of the rail (to provide visual proof that maintenance has been
carried out) and re-threading the nuts; (iv) separating the bearing surfaces of the
fishplates from the rails; (v) applying a lubricant to the bearing surfaces of the
fishplates; and (vi) tightening the nuts with a torque wrench such that the fishplates
revert to their original position against the rails. Such a process is clearly very
labour intensive and has associated cost and time implications.
[0005] According to a first aspect of the present invention there is provided apparatus
for lubricating railway fishplate equipment, comprising a frame removably supported
on at least one railway rail, said frame supporting (i) a nut runner assembly for
selectively engaging and rotating fishplate nuts; (ii) a fishplate-engaging member
for prising a fishplate away from a railway rail; and (iii) lubrication means for
applying lubricant to fishplate equipment.
[0006] Preferably at least two bearing members support the frame on said at least one railway
rail.
[0007] Most preferably, four bearing members support the frame for movement along a pair
of parallel rails.
[0008] Preferably the bearing members are wheels.
[0009] Preferably the lubrication means includes a lubricant container.
[0010] Preferably the frame supports at least two lubricant applicators each in fluidic
communication with said lubricant container.
[0011] Alternatively the frame supports at least four pairs of lubricant applicators each
in fluidic communication with said lubricant container.
[0012] Preferably each lubricant applicator is positioned on the frame to allow selective
dispensing of lubricant onto bolt threads and/or bearing surfaces of a fishplate on
both sides of a pair of parallel rails.
[0013] Preferably each lubricant applicator is fixed relative to a nut runner assembly.
[0014] Preferably each lubricant applicator dispenses lubricant through a spray nozzle.
[0015] Preferably lubricant is adapted to be hydraulically pumped from the container to
each lubricant applicator through a conduit.
[0016] Preferably the frame supports at least two fishplate-engaging members.
[0017] Alternatively the frame supports at least four fishplate-engaging members.
[0018] Most preferably the frame supports four pairs of fishplate-engaging members.
[0019] Preferably each fishplate-engaging member comprises a head that is selectively deployable
between a retracted and a fishplate-engaging and prising position.
[0020] Preferably the fishplate-engaging members are positioned on the frame to allow selective
engagement and prising of a fishplate on both sides of a pair of parallel rails.
[0021] Preferably each head has a bevelled fishplate-engaging end.
[0022] Preferably the deployment of the head of each fishplate-engaging member is adapted
to be pneumatically controlled.
[0023] Alternatively the deployment of the head of each fishplate-engaging member is adapted
to be hydraulically controlled.
[0024] Preferably there are at least two nut runner assemblies.
[0025] Alternatively there are at least four nut runner assemblies.
[0026] Preferably each nut runner assembly comprises four nut engaging heads adapted for
simultaneous rotation.
[0027] Preferably a distance corresponding to the standard separation of fishplate nuts
separates each nut engaging head of each nut runner assembly.
[0028] Preferably each nut runner assembly is selectively moveable between a retracted and
a nut-engaging position.
[0029] Preferably the nut runner assemblies are positioned on the frame to allow selective
engagement of nuts on both sides of a pair of parallel rails.
[0030] Preferably each nut runner assembly is adapted to be pneumatically controlled.
[0031] Alternatively each nut runner assembly is adapted to be hydraulically controlled.
[0032] Preferably each nut runner assembly includes torque measuring means.
[0033] Preferably the frame supports positioning means adapted to align each lubricant applicator
with fishplate equipment.
[0034] According to a second aspect of the present invention there is provided a method
of lubricating railway fishplate equipment; said equipment including two or more fishplates
secured to one or more rails by nuts and bolts; and said method using the lubricating
apparatus of the first aspect and comprising the steps of:
(i) aligning the or each nut runner assembly with fishplate nuts;
(ii) moving the or each nut runner assembly into engagement with said nuts;
(iii) rotating said nuts to loosen their threaded engagement with their corresponding
bolts;
(iv) deploying the or each fishplate-engaging member to move the fishplates out of
abutment with their corresponding rail;
(v) dispensing a lubricant onto the bearing surfaces of each fishplate;
(vi) disengaging the or each fishplate-engaging member from the fishplates;
(vii) rotating said nuts to tighten their threaded engagement with their corresponding
bolts; and
(viii) disengaging the or each nut runner assembly.
[0035] Preferably the steps are performed automatically and controlled by a control means.
[0036] Preferably the step of aligning the or each nut runner assembly is achieved by moving
the lubricating apparatus along a pair of parallel rails on motor-driven wheels.
[0037] Alternatively the step of moving the lubricating apparatus along the rails is performed
manually.
[0038] Preferably the step of aligning the or each nut runner assembly with said nuts is
performed automatically by optical or mechanical means.
[0039] Alternatively, the step of aligning the or each nut runner assembly with said nuts
is performed manually.
[0040] Optionally, the step of rotating said nuts to loosen their threaded engagement with
their corresponding bolts is preceded by dispensing a lubricant onto the bolt threads
at their distal ends.
[0041] Optionally, the step of deploying the or each fishplate-engaging member is preceded
by dispensing a lubricant onto the bolt threads between the loosened nuts and the
fishplates.
[0042] Preferably the step of deploying the or each fishplate-engaging member to move each
fishplate out of abutment with its corresponding rail joint involves introducing a
bevelled head into a cavity between each fishplate and each rail adjacent to the distal
ends of each fishplate.
[0043] Preferably the step of rotating said nuts to tighten their threaded engagement with
their corresponding bolts is performed to a required measured torque.
[0044] Embodiments of the present invention will now be described, by way of example only,
with reference to the accompanying drawings in which:
Fig. 1 is a side view of two adjoining rails joined by means of a fishplate in a conventional
fashion.
Fig. 2 is a side view of the lubricating apparatus of the present invention;
Fig. 3 is a plan view of the lubricating apparatus of Fig. 1; and
Figs. 4a-f are cross-sectional views of a rail and a corresponding pair of fishplates
during various stages of the lubricating process in accordance with the present invention.
[0045] Fig. 1 shows conventional fishplate equipment secured in overlapping engagement against
two adjoining rails 10, 12. The fishplate equipment comprises an elongate plate 14
having four equally spaced apertures 16. These apertures are aligned with correspondingly
spaced apertures in the adjoining rails and receive threaded bolts fastened by nuts
to secure the elongate plate 14 against the respective rails 10, 12. Each rail joint
is secured by two fishplates, one on each side of the rail stem (as is illustrated
in Fig. 4).
[0046] Figs. 2 and 3 show the apparatus according to the present invention for lubricating
railway fishplate equipment. The apparatus is in the form of a railway bogey and comprises
a frame 20 supported for movement on each rail by two wheels 22.
[0047] The frame 20 supports a sub-frame 24 from which is suspended a support structure
25 lying below the frame 20 and adjacent the opposite longitudinal sides of each rail.
The support structure 25 supports four nut runner assemblies 26 each having four nut
engaging heads (not shown) which face the rails and are deployable between a retracted
and a nut-engaging position. The nut engaging heads are separated by a distance corresponding
to the standard separation of the fishplate apertures 16 (as shown in Fig. 1) and
their deployment is either hydraulically or pneumatically controlled.
[0048] The nut runner assemblies 26 comprise sockets (not shown) to engage the nuts 27 (and
bolt heads, if required), and drive means (not shown) to tighten and loosen the nuts
27. The sockets may be interchangeable/selective to accommodate different sized and
shaped nuts/bolt heads.
[0049] There is no standard protocol in the railway industry which dictates the direction
in which the nuts securing a fishplate should be directed (i.e. facing inwardly or
outwardly). Indeed, during manual maintenance of fishplates it is customary to swap
the orientation of the nuts as a means of providing visual proof that maintenance
has in fact been carried out. Accordingly, it will be appreciated by those skilled
in the art that the apparatus of the present invention has been designed such that
the nut runner assemblies 26 are positioned on the support structure 25 to allow selective
engagement of nuts 27 (in Fig. 3) on either side of both rails.
[0050] The support structure 25 also supports eight fishplate-engaging members 30 each of
which comprises a cylinder containing a bevelled or chisel-shaped head (not shown)
which is deployable, either hydraulically or pneumatically between a retracted (non-engaging
position) and a fishplate-engaging position to release or prise the fishplate away
from the rails 10, 12. Whilst in their non-engaging positions, the heads are retracted
within the cylinders 30 and face the rails at an acute angle. As with the nut runner
assemblies 26, the fishplate engaging members 30 are also positioned on the support
structure 25 to allow selective engagement of a fishplate on either side of both rails
10, 12.
[0051] The sub-frame 24 further supports lubrication means in the form of eight lubricant
applicators (not shown) each of which is connected to a fluid container or lubricant
container 32 mounted on the frame 20. The lubricant applicators are provided with
spray nozzles and positioned on the support structure 25 to allow lubricant to be
directed onto the bolt threads and/or the bearing surfaces of a fishplate. It is envisaged
that the lubricant applicators would be fixed relative to the nut runner assemblies
26 since when the nut runner assemblies 26 engage the fishplate nuts 27 they would
be in the correct position for the application of lubricant. The lubricant is hydraulically
pumped from the container 32 to each spray nozzle by means of a series of conduits
(not shown).
[0052] In use, the lubricating apparatus is moved along the rails (either motor driven or
manually) until at least one of four nut runner assemblies 26 is aligned with the
nuts 27 of the fishplates. It will be appreciated that the alignment of the nut runner
assemblies with the fishplate nuts could be performed manually or automatically by
optical or mechanical or electrical means (i.e. by means of proximity switches).
[0053] Usually two pairs of fishplates will be positioned substantially opposite one another,
one pair on each respective rail. In such circumstances it will be possible to simultaneously
align the nut engaging heads with the fishplate nuts 27 on both rails. Moreover, since
two pairs of nut runner assemblies 26 are provided (i.e. corresponding to the inside
and outside of each rail), the simultaneous alignment of the nut engaging heads and
the nuts 27 is not affected by the orientation of the nuts 27 and their corresponding
bolts (i.e. whether the nuts 27 are on the inside or outside of a rail).
[0054] Whilst two pairs of fishplates will often be found substantially opposite each other
on each rail, it is unlikely that each fishplate nut/bolt will be exactly aligned
with its corresponding nut/bolt on the other rail due to rail creep, temperature affects
and rail traffic effects. Accordingly, it is envisaged that the nut runner assemblies
26 will be moveable longitudinally and/or transversely in order to accommodate any
misalignment of the fishplate nuts/bolts. The adjusting movement of the nut runner
assemblies 26 may be performed manually, hydraulically, pneumatically or electrically
(i.e. by means of proximity switches).
[0055] It will be appreciated by those skilled in the art that by aligning the first or
fourth nut engaging head with the respective first or fourth nut 27 of a fishplate,
all other nut engaging heads will likewise be in alignment with their corresponding
nuts 27. Once aligned, the lubricating apparatus is fixed in position on the rails
and the sequence of operation of the apparatus is as illustrated in Figs. 4a-f.
[0056] Fig. 4a shows a pair of fishplates 40, 42 in a fully fastened state. Once the lubricating
apparatus is positioned such that the nut runner heads are aligned with the nuts 27,
each lubricant applicator directs lubricant onto a distal end 44 of a threaded bolt
46. The nut runner heads are then moved into fitting engagement with the nuts 27 and
simultaneously rotated to loosen the threaded connection with the corresponding bolts
46 (See Fig. 4b).
[0057] It is to be appreciated that the bolt is adapted to be held in gripping engagement
with the fishplates 40, 42 and rail stem 50 to prevent rotation of the bolt as the
nut 27 is being loosened; otherwise the bolt and nut could rotate simultaneously without
the nut being unthreaded. The gripping engagement is facilitated by virtue of teardrop-shaped
apertures through which the bolt passes, and the bolt head having a teardrop-shaped
portion; thus rotation of the bolt is prevented. It is also to be appreciated that
the apparatus could be modified to prevent the bolt from rotating, for example, the
nut runner assemblies could have interchangeable/selective sockets to match the size
of the bolt head and nuts, such that one nut runner assembly rotates and loosens the
nut 27, whilst the other nut runner assembly holds the bolt head stationary or rotates
this in an opposite direction. Alternatively, the fishplate-engaging members could
be engaged at the same time as the nut runner assemblies such that as the nut 27 is
loosened, the fishplate-engaging members prise the fishplate against the nut 27, allowing
the nut to be loosened.
[0058] In view of the fact that only four nuts are used to secure a fishplate to rails,
it will be appreciated that four out of eight nut-engaging heads in a pair of nut
runner assemblies will not engage a fishplate nut. Those nut-engaging heads which
do not engage a fishplate nut can rotate freely around a bolt head and therefore no
modification of the apparatus is necessary in order to accommodate the uncertainty
in the orientation of fishplate nuts.
[0059] Once the nuts 27 are loosened, a portion 48 of each threaded bolt is exposed between
the fishplate 42 and the nut 27. As illustrated by Fig. 4c, each lubricant applicator
directs lubricant onto the exposed portion 48 to facilitate both the movement of the
fishplate 42 away from the rail stem 50 and the subsequent tightening of the nut 27.
[0060] Once lubricant has been directed onto the both parts (44 and 48) of each threaded
bolt 46, the bevelled heads of the fishplate-engaging member 30 are deployed from
their cylinders towards the two distal ends of each fishplate at an acute angle with
respect to the longitudinal axes of the rails. The heads are introduced into cavities
52 defined by the surfaces of the rail stems 50 and the rail facing surfaces 54 of
the fishplates 40, 42. The bevelled surfaces of the heads act to move the fishplates
40, 42 out of abutment with each rail head 56 and each rail foot 58 respectively and
towards the loosened nuts 27 (See Fig. 4d). It may be possible to move each fishplate
out of abutment with each rail by deploying only one fishplate engaging head into
the cavity at one distal end of the fishplate. However, it will be appreciated that
the use of two fishplate engaging heads increases reliability by ensuring that both
ends of a fishplate are moved out of abutment with each rail head.
[0061] Once the fishplates 40, 42 are moved out of abutment with the rails their bearing
surfaces 60, 62 are exposed. The lubricant applicator then dispenses lubricant into
the gaps 64 between the bearing surfaces 60, 62 and the rail heads 56 and rail foots
58 (See Fig. 4e).
[0062] Once the bearing surfaces 60, 62 are lubricated, the fishplate-engaging heads are
retracted into their cylinders 30 and the nuts 27 tightened to a required measured
torque by the nut runner heads to thus move the fishplates 40, 42 back into abutment
with the rails (See Fig. 4e).
[0063] Finally, the nut runner heads are disengaged from the nuts 27 and the lubricating
operation is completed. The lubricating apparatus can then be moved along the track
to the next set of fishplates and the sequence of operation is repeated.
The various operations of the lubricating apparatus are controlled by means of a control
panel 50, having an electrical cabinet 52 mounted on the frame.
[0064] It will be appreciated by those skilled in the art that the apparatus of the present
invention provides a much more efficient means of performing the essential task of
maintaining fishplate equipment.
[0065] Modifications and improvements can be made without departing from the scope of the
present invention. For example, the lubricant applicators which dispense lubricant
onto the bolt threads may be separate from those which dispense lubricant onto the
bearing surfaces of the fishplates. For example, each nut runner head could be provided
with its own lubricant applicator in order to lubricate the bolt threads whilst separate
applicators direct lubricant onto the bearing surfaces of the fishplates.
[0066] The lubrication apparatus could be wholly automated instead of being manually controlled
via the control panel.
1. Apparatus for lubricating railway fishplate equipment, comprising a frame removably
supported on at least one railway rail, said frame supporting:
(i) a nut runner assembly for selectively engaging and rotating fishplate nuts; (ii)
a fishplate-engaging member for prising a fishplate away from a railway rail; and
(iii) lubrication means for applying lubricant to fishplate equipment.
2. Apparatus according to claim 1, wherein at least two bearing members support the frame
on said at least one railway rail.
3. Apparatus according to claim 2, wherein four bearing members support the frame for
movement along a pair of parallel rails.
4. Apparatus according to claim 2 or 3, wherein the bearing members are wheels.
5. Apparatus according to any preceding claim, wherein the lubrication means includes
a lubricant container.
6. Apparatus according to claim 5, wherein the frame supports at least two lubricant
applicators each in fluidic communication with said lubricant container.
7. Apparatus according to claim 5, wherein the frame supports at least four pairs of
lubricant applicators each in fluidic communication with said lubricant container.
8. Apparatus according to claim 6 or 7, wherein each lubricant applicator is positioned
on the frame to allow selective dispensing of lubricant onto bolt threads and/or bearing
surfaces of a fishplate on both sides of a pair of parallel rails.
9. Apparatus according to any of claims 6 to 8, wherein each lubricant applicator is
fixed relative to a nut runner assembly.
10. Apparatus according to any of claims 6 to 9, wherein each lubricant applicator dispenses
lubricant through a spray nozzle.
11. Apparatus according to any of claims 6 to 10, wherein lubricant is adapted to be hydraulically
pumped from the container to each lubricant applicator through a conduit.
12. Apparatus according to any preceding claim, wherein the frame supports at least two
fishplate-engaging members.
13. Apparatus according to any of claims 1 to 11, wherein the frame supports at least
four fishplate-engaging members.
14. Apparatus according to any of claims 1 to 11, wherein the frame supports four pairs
of fishplate-engaging members.
15. Apparatus according to any preceding claim, wherein each fishplate-engaging member
comprises a head that is selectively deployable between a retracted and a fishplate-engaging
and prising position.
16. Apparatus according to any preceding claim, wherein the fishplate-engaging members
are positioned on the frame to allow selective engagement and prising of a fishplate
on both sides of a pair of parallel rails.
17. Apparatus according to claim 15 or 16, wherein each head has a bevelled fishplate-engaging
end.
18. Apparatus according to any of claims 15 to 17, wherein the deployment of the head
of each fishplate-engaging member is adapted to be pneumatically or hydraulically
controlled.
19. Apparatus according to any preceding claim, wherein there are at least two nut runner
assemblies.
20. Apparatus according to any of claims 1 to 18, wherein there are at least four nut
runner assemblies.
21. Apparatus according to any preceding claim, wherein each nut runner assembly comprises
four nut engaging heads adapted for simultaneous rotation.
22. Apparatus according to any preceding claim, wherein a distance corresponding to the
standard separation of fishplate nuts separates each nut engaging head of each nut
runner assembly.
23. Apparatus according to any preceding claim, wherein each nut runner assembly is selectively
moveable between a retracted and a nut-engaging position.
24. Apparatus according to any preceding claim, wherein the nut runner assemblies are
positioned on the frame to allow selective engagement of nuts on both sides of a pair
of parallel rails.
25. Apparatus according to any preceding claim, wherein each nut runner assembly is adapted
to be pneumatically or hydraulically controlled.
26. Apparatus according to any preceding claim, wherein each nut runner assembly includes
torque measuring means.
27. Apparatus according to any preceding claim, wherein the frame supports positioning
means adapted to align each lubricant applicator with fishplate equipment.
28. A method of lubricating railway fishplate equipment; said equipment including two
or more fishplates secured to one or more rails by nuts and bolts; and said method
using the lubricating apparatus according to any of claims 1 to 27 and comprising
the steps of:
(i) aligning the or each nut runner assembly with fishplate nuts;
(ii) moving the or each nut runner assembly into engagement with said nuts;
(iii) rotating said nuts to loosen their threaded engagement with their corresponding
bolts;
(iv) deploying the or each fishplate-engaging member to move the fishplates out of
abutment with their corresponding rail;
(v) dispensing a lubricant onto the bearing surfaces of each fishplate;
(vi) disengaging the or each fishplate-engaging member from the fishplates;
(vii) rotating said nuts to tighten their threaded engagement with their corresponding
bolts; and
(viii) disengaging the or each nut runner assembly.
29. Method according to claim 28, wherein the steps are performed automatically and controlled
by a control means.
30. Method according to claim 28 or 29, wherein the step of aligning the or each nut runner
assembly is achieved by moving the lubricating apparatus along a pair of parallel
rails on motor-driven wheels.
31. Method according to claim 30, wherein the step of moving the lubricating apparatus
along the rails is performed manually.
32. Method according to any of claims 28 to 31, wherein the step of aligning the or each
nut runner assembly with said nuts is performed manually, or automatically by optical
or mechanical means.
33. Method according to any of claims 28 to 32, wherein the step of rotating said nuts
to loosen their threaded engagement with their corresponding bolts is preceded by
dispensing a lubricant onto the bolt threads at their distal ends.
34. Method according to any of claims 28 to 33, wherein the step of deploying the or each
fishplate-engaging member is preceded by dispensing a lubricant onto the bolt threads
between the loosened nuts and the fishplates.
35. Method according to any of claims 28 to 34, wherein the step of deploying the or each
fishplate-engaging member to move each fishplate out of abutment with its corresponding
rail joint involves introducing a bevelled head into a cavity between each fishplate
and each rail adjacent to the distal ends of each fishplate.
36. Method according to any of claims 28 to 35, wherein the step of rotating said nuts
to tighten their threaded engagement with their corresponding bolts is performed to
a required measured torque.