[0001] This invention relates to propulsion apparatus for trenching or trench excavating
apparatus wherein a deep trench is dug and corners are formed, the trench to receive
poured concrete as in the formation of an in ground retaining wall.
[0002] Propulsion apparatus which is engageable with the side or base walls of a trench
is known, and may be used to provide propulsive force within the trench, enabling
a relatively light machine to be used for a particular trenching operation. Such propulsion
apparatus may have difficulty adapting to varying ground types and may jam due to
the ingress of dirt dislodged during the excavation process, or wet concrete, which
is often poured immediately behind the trenching arm to minimise the probability of
trench collapse in soft ground conditions.
[0003] The prior art discloses endless chain excavators together with mobile concrete forms
mounted behind the excavator. It is intended that the excavator continuously dig a
trench and while the trench is being dug, concrete is poured behind the excavator
into the form carried by the excavator. The upper end of the excavator is mounted
on a tractor that moves along the ground carrying the excavator with it.
[0004] In digging trenches and pouring concrete for retaining walls, it is important for
the excavator to maintain a vertical attitude and for the assembly to dig itself into
the ground to the proper depth in a vertical attitude. In this way proper corners
can be formed.
[0005] When excavating a trench that is of considerable depth relative to the length and
width of the excavator, it is extremely difficult to move the lower end of the excavator
at the same pace as the tractor which carries the upper end. Hence, it is difficult,
if not impossible, to maintain the required vertical attitude of the excavator without
adding costly and heavy bracing structure between the tractor and excavator.
[0006] The specification of GB-A-1372467 discloses apparatus utilizing a supporting foot
adapted to resist the considerable downward forces generated by a trenching chain
excavator which tends to drive the chain deeper and tip the vehicle. The apparatus
is not adapted to advance the lower end of the elongate trenching arm and thus overcome
the torsional loads which would be inflicted on the tractor supporting an elongate
trenching arm as described above in failing to maintain the required vertical attitude.
[0007] US-A-2360316 discloses the use of excavation apparatus which is driven from the base
of the apparatus, but this apparatus cannot dig trenches below the level of its tractor
and is in any case braced across its excavating chain assembly.
[0008] AU-B-41139/85 discloses a trenching arm assembly including a digging device adapted
to provide the trenching arm with the ability to dig downward to commence a trench.
However, the trenching arm in general and the digging means in particular does not
provide propulsion apparatus adapted to prevent the translation of torsional loads
to the tractor or resist the trenching arm from straying from its desirable orientation
under such loads.
[0009] It is an object of the present invention to alleviate the above and other disadvantages
and to provide improved propulsion apparatus for trenching apparatus and methods of
forming in ground retaining walls which will be reliable and efficient in operation.
[0010] In one aspect, this invention resides broadly in trenching arm propulsion apparatus
for excavators of the type comprising a tractor (111) supporting an upper portion
of an elongate trenching arm (114) which extends to a trench depth and is advanceable
by said tractor to form a trench (117), a lower portion of said trenching arm remote
from said tractor being provided with propulsion means (121) engageable with a trench
wall and cooperable therewith to drive said lower portion of said trenching arm in
the direction of the advancing trench, characterised in that said propulsion means
comprises a combined digging and propulsion assembly mounted on the lower end of the
trenching arm assembly such that the trenching arm assembly may dig itself into the
ground in a substantially vertical attitude.
[0011] Preferably, the tractor comprises a vehicle adapted to move along the ground on crawler
tracks. The tractor preferably mounts a trenching arm comprising an endless chain
excavator assembly mounted to the tractor for vertical movement relative to the tractor.
Preferably, the arrangement of the tractor and trenching arm assembly includes a U-section
concrete form extending vertically along the rear face of the trenching arm assembly.
The trenching arm is preferably selected from trenching arms having digging means
associated with a lower portion of the trenching arm and conferring thereon the ability
to commence a trench by digging substantially vertically down from ground level to
a trenching depth.
[0012] The propulsion means may take the form of track means, endless belt, drive wheel
means or a propulsion foot assembly associated with the lower portion of the trenching
arm. The propulsion means may include a flat or curved plate engageable frictionally
with said trench wall, or there may be provided propulsion plate inclination means
whereby the propulsion plate may be moved between an engagement-drive attitude substantially
normal to said trench wall and a frictional-drive attitude substantially parallel
to said trench wall. Preferably, the propulsion means comprises a combined digging
means and propulsion means assembly mounted on the lower end of the trenching arm
assembly such that the trenching arm assembly may dig itself into the ground in a
substantially vertical attitude.
[0013] Preferably, the propulsion means is powered by drive means deriving energy from the
tractor assembly, such as by way of hydraulic drive. In the case of the preferred
combined digging means and propulsion means, this may comprise a digging and propulsion
assembly including a drive system selected to impart digging motion to a digging element
during the digging operation and to provide a propulsion imparting motion to the element
during the trench excavating operation. Preferably, the digging and propulsion assembly
includes means for thrusting the element downwardly into the base wall of the trench
so as to support a portion of the weight of the excavator such that a the propulsion
element may get a good grip upon the base wall of the trench. For example, a foot
may be mounted at the end of the trenching arm and be operable by a linkage and a
propulsion ram to impart a propulsion motion to the foot. A vertical loading ram may
be provided to lift the foot as it steps forward and to press the foot down so that
it takes part of the weight of the excavator.
[0014] Accordingly, there may be provided excavation apparatus having a tractor mounting
a vertical endless chain excavator, a form assembly for concrete extending vertically
behind the excavator, and an elongated foot mounted at the lower end of the form,
characterised in that said elongated foot is operable by foot rotation means for swinging
said foot back and forth in a vertical attitude for digging the excavator and form
assembly into the ground to commence a trench, by foot displacement means for moving
said foot back and forth in a horizontal attitude to drive a lower portion of said
vertical endless chain excavator in the direction of the advancing trench, and by
preloading means acting on the foot for applying at least a portion of the weight
of said excavator onto said foot.
[0015] The propulsion means may include a propulsion member, preload apparatus adapted for
urging said propulsion member against said trench wall, and drive apparatus for driving
the trenching arm forward along the trench relative to said propulsion member from
a starting position adjacent said propulsion member.
[0016] If required, the propulsion means may also include retraction apparatus for withdrawing
the propulsion means into a stowed position free of operative contact with the trench
wall or reverse drive apparatus for drawing the propulsion means forward to its starting
position, such that the propulsion means may be operated in reciprocating motion for
imparting discontinuous forward motion to the trenching arm.
[0017] The preload apparatus may include an actuator of any type such as a rotary or linear
electric actuator. It is preferred, however, that the preload apparatus include a
linear hydraulic preload actuator, and that the preload actuator be a reversible or
double-acting type, such that it may also operate the retraction apparatus; although
the latter may be operated by an independent hydraulic retraction actuator if desired.
[0018] The propulsion apparatus may be attached to the trenching arm by slides along which
the propulsion member may be driven by the preload actuator. The latter may be controlled
to provide any desired preload function, but it is preferred that the preload actuator
be controlled to maintain a substantially constant level of preload during operative
movement of the propulsion member such that a substantially constant tractive effort
may be obtainable therefrom.
[0019] Preferably, the drive means of the apparatus includes a double-acting propulsion
actuator for operating the drive means and reverse for reduced component count, although
separate actuators may be used if desired. A positioning actuator may also be provided
and may be adapted to interact with the propulsion actuator such that the displacement
of the propulsion member relative to the trenching arm along and normal to the trench
wall may be controlled to any desired configuration by actuator control means. For
instance, the actuator control means may control the propulsion and positioning actuators
to hold the propulsion member at a desired attitude relative to the wall while it
is extended relative to the trenching arm, and may then control the preload actuator
to withdraw the propulsion member from the wall before returning it to a position
adjacent the trenching arm.
[0020] The actuator control means may also be adapted for control of the preload, propulsion
and positioning actuators for operation of the propulsion member in an excavating
mode for cooperating with the trenching arm to excavate a starting slot for a trench,
and in a propulsion mode for urging the trenching arm forward within a trench. Actuator
travel sensing means may be provided for feedback of propulsion member position and
attitude, whereby the control means may be provided with feedback signals.
[0021] Where the propulsion means comprises a track type apparatus, the propulsion means
may include a propulsion element frame, a continuous propulsion element movable about
said propulsion element frame and having an endless propulsion surface engageable
between said propulsion element frame and said trench wall, preload apparatus connected
between the trenching arm and said propulsion support frame for urging said propulsion
element into engagement with said trench wall, and drive apparatus for moving said
continuous propulsion element about said propulsion element frame.
[0022] The continuous propulsion element may be divided transversely into a plurality of
propulsion segments between which support means for the propulsion element frame may
pass. The propulsion segments may be provided with extendible cutter apparatus moveable
between an extended position in which material may be cut from outside or between
the propulsion segments and a stowed position in which the cutter apparatus is confined
within the axial boundaries of the propulsion segments such that material may be excavated
adjacent the support means.
[0023] The drive means may be formed to drive the propulsion means in a reverse drive mode
to function as a supplementary excavation device for cooperating with the trenching
arm to excavate a starting slot from which the trench may be cut.
[0024] Where the propulsion means includes an endless belt, it may be segmented transversely
into belt segments whose travel paths away from said trench wall diverge to form a
transverse aperture through which support means for said propulsion element frame
may pass.
[0025] The endless belt may include a plurality of chain links pivoted together along transverse
pivot axes, each said chain link including a front link face and a rear link face
adapted for operative sealing engagement with respective rear and front link faces
on adjacent ones of said links over a range of angles of articulation between adjacent
ones of said links about said pivot axes such that operative sealing is maintained
between adjacent links during passage of the chain apparatus about a sprocket.
[0026] Suitably, the front and rear link faces are formed of part-cylindrical portions having
their cylinder axes substantially coincident with respective pivot axes, whereby they
may pivot cooperatively such that operative sealing is maintained therebetween.
[0027] In another aspect, this invention resides in a method of cutting a trench using an
excavator of the type comprising a tractor supporting an upper portion of an elongate
trenching arm which extends to a trench depth and is advanceable by said tractor to
form a trench, a lower portion of said trenching arm remote from said tractor being
provided with propulsion means engageable with a trench wall and cooperable therewith
to drive said lower portion of said trenching arm in the direction of the advancing
trench, the method including the steps of inserting said elongate trenching arm into
the trench, engaging a trench wall with said propulsion means and operating said propulsion
means to advance said lower portion in concert with said tractor to advance said trenching
arm.
[0028] In order that this invention may be more readily understood and put into practical
effect, reference will now be made to the accompanying drawings, wherein:-
FIG. 1 is a sectional side view of a propulsion apparatus according to the invention;
FIGS. 2, 3, 4 and 5 are partial side views of the propulsion apparatus of FIG. 1,
showing the propulsion foot in the four extremes of its movement during a slot excavation
cycle;
FIGS. 6, 7, 8 and 9 are partial side views of the propulsion apparatus of FIG. 1,
showing the propulsion foot in the four extremes of its movement during an arm propulsion
cycle;
FIG. 10 is a pictorial view of a wheel-type propulsion apparatus according to the
invention;
FIG. 11 is a sectional side view of a chain-type propulsion apparatus according to
the invention;
FIG. 12 is a sectional top view of the propulsion apparatus of FIG. 11;
FIGS. 13 and 14 show details of the propulsion chain links used in the propulsion
apparatus of FIGS. 11 and 12,
FIG. 15 is a sectional side view of a further chain-type propulsion apparatus according
to the invention;
FIG. 16 is a sectional top view of the propulsion apparatus of FIG. 15; and
FIG. 17 illustrates an excavator according to the invention.
[0029] The propulsion apparatus 10 shown in FIGS. 1 to 9 is enclosed in a housing 11 slidably
attached to the rear face of a trenching arm 12 along slides 13. The housing 11 is
moveable along the trenching arm 12 by a preloading actuator 14 attached to the trenching
arm 13 by a pair of interlocking racks 15 which may be adjusted to obtain the desired
range of movement for the housing 11 relative to the base of the trenching arm 12.
[0030] Within the housing 11 is a hydraulic positioning actuator 16, the operating rod 17
of which extends through a slide 20 and rod seals 21 attached to the base of the housing
11. The propulsion foot 22 is pivoted to the base of a foot carrier 23 by a foot pivot
24, and the foot carrier 23 in turn has an upper front pivot 25 connected direct to
the housing 11 and an upper rear pivot 26, which is connected to the housing 11 through
a propulsion actuator 27. A crank arm 30 formed on the rear of the propulsion foot
22 is connected to the operating rod 17 through a link 31. A flexible boot 28 surrounds
the lower end of the propulsion actuator 27 to prevent the ingress of dirt or wet
concrete into the housing 11.
[0031] An endless digging chain 33 passes around the trenching arm 12 and may be utilised
for excavating a slot beneath itself when excavating a vertical starting slot for
a trench or for excavating a trench in front of itself when forming the trench.
[0032] As shown in FIGS. 2 to 5, the trenching arm 12 is operable to excavate a vertical
starting slot beneath itself to position itself for the excavation of a trench. During
this phase of the trenching operation, the propulsion foot 22 is operated in a slot
excavation cycle to scrape material 32 from beneath the propulsion apparatus 10 and
deposit it adjacent the trenching arm 12 where it may be picked up by the trenching
chain and drawn to the surface for disposal. Firstly, the foot 22 is moved into a
raised horizontal position by retraction of the positioning actuator 16 and the preloading
actuator 14, as shown in FIG. 2. The foot 22 is then forced downward into the material
32 by extension of the preloading actuator 14, as shown in FIG. 3. While engaged within
the material 32, the foot 22 is then swung in an arc of approximately ninety degrees
about the foot pivot 24, as shown in FIG. 4, shearing material 32 from beneath the
propulsion apparatus 10 and depositing it adjacent the trenching arm 12, from where
the digging chain 33 conveys it around the front of the trenching arm 12 to the surface
of the ground. The preloading actuator 14 is then retracted to raise the foot 22 clear
of the material 32, as shown in FIG. 5, after which the foot 22 is swung back into
the horizontal position in which it began the cycle.
[0033] Referring now to FIGS. 6 to 9, it will be seen that, when the trenching arm 12 has
reached the desired depth for the excavation, the propulsion foot 22 may be operated
in a propulsion cycle to force the trenching arm 12 forward into the advancing face
of the trench. At the beginning of a propulsion cycle, as shown in FIG. 6, the foot
22 is held in a raised horizontal position with the preloading actuator 14 and the
positioning actuator 16 in their retracted positions. Referring now to FIG. 7, the
preloading actuator is then extended until the foot 22 is engaged with the base wall
34 of the trench with the desired level of preload applied to it. This preload may
be controlled to any desired value, but it is preferred that it attain a significant
portion of the weight of the trenching arm 12 and the trenching machine supporting
it, whereby significant longitudinal drive force may be generated by the propulsion
apparatus 10. The propulsion actuator 27 is then retracted, rotating the foot carrier
23 about the upper front pivot 25 such that the foot 22 is forced rearward relative
to the housing 11, as shown in FIG. 8, urging the trenching arm 12 forward. The foot
carrier 23 and the link 31 form a linkage which maintains the foot 22 in a substantially
horizontal attitude during this phase of the cycle. When the foot 22 has reached the
limit of its rearward travel relative to the trenching arm 12, the preloading actuator
14 is retracted, as shown in FIG. 9, raising the foot 22 away from the base wall 34,
after which extension of the propulsion actuator 27 drives the foot carrier 23 and
the attached foot 22 forward into its starting position.
[0034] If the ground conditions are deemed to be unsuitable for force transfer by frictional
contact between the foot 22 and the base wall 34, such as in the case of wet clay,
the positioning actuator 16 may be extended sufficiently to rotate the foot 22 into
a substantially vertical position such that it may embed itself into the base wall
34 to provide the necessary force transfer.
[0035] The wheel-type propulsion apparatus 40 shown in FIG. 10 has a support arm 41 pivoted
to a support frame 42 attached to a trenching arm 43. A radial-piston hydraulic motor
44 of the rotating-casing type has its shaft bolted to the outer end of the support
arm 41, and a wheel rim 45 with cleats 46 is attached around the motor casing 47.
A preload actuator 50 extends between the support arm 41 and the support frame 42
to permit the wheel rim 45 to be forced against the base of the trench 51.
[0036] The propulsion apparatus 40 may be operated to propel the trenching arm 43 along
the trench 51 by rotating the wheel rim 45 forward at the top at a slow rate comparable
to the advance rate of the trenching arm 43. Where it is necessary to excavate a slot
at the start of a trench 51, the wheel rim 45 may be rotated backwards at higher speed
such that the cleats 46 may scrape material from beneath the wheel rim 45 and deliver
it to the trenching arm 43 for transport to the surface.
[0037] The chain-type propulsion apparatus 60 shown in FIGS. 11 to 14 has a housing 61 which
is attached through slides 62 to a trenching arm 63. A chain assembly 64 is attached
to the lower end of the housing 61 and comprises a chain frame 65 about which a central
chain 66 and outer chains 67 pass. The central chain 66 passes over front sprocket
assembly 70 and rear sprocket 71, while the outer chains 67 also pass over upper sprocket
assembly 72. The chain frame 65 is connected to the housing 61 via a bifurcated support
73 which passes between the upper portions of the central and outer chains 66 and
67. Roller chains 74 and 75 provide drive from hydraulic motors 76 and 77 to the upper
sprocket assembly 72. The roller chain 74 from the upper hydraulic motor 76 passes
around idlers 80 to clear the lower hydraulic motor 77.
[0038] The chains 66 and 67 comprise links 81 formed with complementary front and rear faces
82 and 83 respectively which slide relative to one another as the links 81 pass around
a sprocket such that no significant passages open up for the ingress of dirt or wet
concrete. Face seals 85 attached to the chain frame 65 engage with recessed side faces
86 on the links 81 to minimise ingress of dirt or wet concrete through these gaps.
[0039] The propulsion apparatus 60 may be operated to propel the trenching arm 63 along
a trench by driving the chains 66 and 67 forward at the top at a slow rate comparable
to the advance rate of the trenching arm 63. Where it is necessary to excavate a slot
at the start of a trench, the chains 66 and 67 may be driven backwards at higher speed
such that the cleats 87 may scrape material from beneath the chains 66 and 67 and
deliver it to the trenching arm 63 for transport to the surface.
[0040] Referring now to FIGS. 15 and 16, it will be seen that the propulsion apparatus 90
is similar to the propulsion apparatus 60, but has a single hydraulic drive motor
91 mounted with its axis vertical and driving a primary drive sprocket 92 through
a crown wheel 93 and pinion 94. A roller chain 95 carries the drive from the primary
drive sprocket 92 to the primary driven sprocket 93, and the latter comprises part
of the upper sprocket assembly 96 which in turn drives the outer chains 97. A thrust
actuator 100 mounted between the propulsion frame 101 and the trencher arm 102 permits
a desired preload to be applied between the trench wall 103 and the chains 97 and
104. Seal plates 105 extend between the side faces of the sprockets 92 and 93 to seal
the crown wheel enclosure 106 from the ingress of dirt or concrete from the chains
97 and 104.
[0041] The excavator apparatus 110 shown in FIG. 17 comprises a tractor 111 which may move
along the ground 112 on crawler tracks 113. An endless chain excavator assembly 114
is mounted to the tractor 111 for vertical movement relative to the tractor 111, and
carries an endless digging chain 115 which may excavate the advancing face 116 of
a trench 117. A U-section concrete form 120 extends vertically along the rear face
of the excavator assembly 114, and a combined vertical digger and forward propulsion
unit 121 is mounted on the lower end of the concrete form 120. Hydraulic power for
the operation of the vertical digger and forward propulsion unit 121 is supplied by
a hydraulic power pack 122 mounted on the tractor 111, and operation of the vertical
digger and forward propulsion unit 121 is controlled by a solenoid assembly 123 under
the control of a control computer 124. The hydraulic power pack 122 also provides
power to drive the crawler tracks 113 and the digging chain 115.
[0042] To form an in ground wall, the excavator apparatus 110 is positioned above the starting
point for the wall with the excavator assembly 114 in a raised position fully above
the ground 112. The digging chain 115 is energised, and the vertical digger and forward
propulsion unit 121 is operated by the control computer 124 in its vertical digging
mode. The excavator assembly is then lowered into the ground, and the digging chain
115 and the vertical digger and forward propulsion unit 121 combine to excavate a
starting slot for the trench 117. When the starting slot has reached the desired depth,
the crawler tracks 113 are energised for forward motion, and the control computer
124 is switched to control the vertical digger and forward propulsion unit 121 in
a forward propulsion mode, urging the digging chain 115 forward against the advancing
face 116 of the trench 117.
[0043] Concrete is poured into the trench 117 behind the concrete form 120 to form an in
ground wall 125.
[0044] The advantages of the present invention are that it becomes possible to dig straight
down with the excavator and accessory equipment, such as a concrete form, and when
the desired depth has been obtained to proceed forward, digging a trench, with the
excavator maintained in a vertical attitude. At a corner, the excavator is raised,
is shifted to the proper angle to form the corner and is driven straight down to begin
the excavation of the adjacent wall.
1. Trenching arm propulsion apparatus for excavators of the type comprising a tractor
(111) supporting an upper portion of an elongate trenching arm (114) which extends
to a trench depth and is advanceable by said tractor (111) to form a trench (117),
a lower portion of said trenching arm (114) remote from said tractor (111) being provided
with propulsion means (121) engageable with a trench wall and cooperable therewith
to drive said lower portion of said trenching arm (114) in the direction of the advancing
trench, characterised in that said propulsion means comprises a combined digging and
propulsion assembly (121) mounted on the lower end of the trenching arm assembly (114)
such that the trenching arm assembly (114) may dig itself into the ground in a substantially
vertical attitude.
2. Trenching arm propulsion apparatus according to Claim 1, wherein said tractor (111)
comprises a vehicle having crawler tracks (113).
3. Trenching arm propulsion apparatus according to Claim 1, wherein said trenching arm
comprises an endless chain excavator assembly (114) mounted to the tractor (111) for
vertical movement relative to the tractor (111).
4. Trenching arm propulsion apparatus according to Claim 3, wherein said endless chain
excavator assembly (114) includes a form for concrete (120) extending vertically along
the rear face of the trenching arm assembly.
5. Trenching arm propulsion apparatus according to any one of the preceding Claims, wherein
said combined digging and propulsion assembly (121) is selected from track means,
endless belt means, drive wheel means or a propulsion foot assembly associated with
the lower portion of the trenching arm (114).
6. Trenching arm propulsion apparatus according to Claim 5, wherein said combined digging
and propulsion assembly (121) comprises a drive system selected to impart digging
motion to a digging element during the digging operation and to provide a propulsion
motion to the element during the trench excavating operation.
7. Trenching arm propulsion apparatus according to Claim 6, wherein said combined digging
and propulsion assembly (121) includes preloading means (14) for thrusting said element
downwardly into the base wall of the trench so as to support a portion of the weight
of the trenching arm assembly (114).
8. Excavation apparatus including:-
a tractor (111) mounting a vertical endless chain excavator (114);
a form assembly (120) for concrete extending vertically behind the excavator (114),
and
an elongated foot (22) mounted at the lower end of the form (120), characterised in
that said elongated foot (22) is operable by foot rotation means (20) for swinging
said foot (22) back and forth in a vertical attitude for digging the excavator (114)
and form assembly (120) into the ground to commence a trench (117), by foot displacement
means (17, 27) for moving said foot (22) back and forth in a horizontal attitude to
drive a lower portion of said vertical endless chain excavator (114) in the direction
of the advancing trench, and by preloading means (14) acting on the foot (22) for
applying at least a portion of the weight of said excavator (114) onto said foot (22).
9. Excavation apparatus according to Claim 8, wherein said preloading means include a
double acting linear hydraulic preload actuator (14) operable to preload said foot
(22) in one direction and retract said foot (22) in the other direction.
1. Ausschachtarm-Vortriebsvorrichtung für Bagger des Typs mit einem Traktor (111), der
einen oberen Abschnitt eines langgestreckten Ausschachtarms (114) trägt, der sich
zu einer Grabentiefe erstreckt und durch den Traktor (111) vorwärtsbewegt werden kann,
um einen Graben (117) zu bilden, wobei ein vom Traktor (111) entfernter unterer Abschnitt
des Ausschachtarms (114) mit einer Vortriebseinrichtung (121) versehen ist, die mit
einer Grabenwand in Eingriff gelangen kann und mit dieser zusammenwirken kann, um
den unteren Abschnitt des Ausschachtarms (114) in Richtung des vorzutreibenden Grabens
anzutreiben, dadurch gekennzeichnet, daß die Vortriebseinrichtung eine kombinierte
Grab- und Vortriebsbaueinheit (121) aufweist, die am unteren Ende der Ausschachtarm-Baueinheit
(114) angebracht ist, so daß sich die Ausschachtarm-Baueinheit (114) von selbst in
einer in wesentlichen vertikalen Stellung in den Boden graben kann.
2. Ausschachtarm-Vortriebsvorrichtung nach Anspruch 1, wobei der Traktor (111) ein Fahrzeug
mit Gleisketten (113) umfaßt.
3. Ausschachtarm-Vortriebsvorrichtung nach Anspruch 1, wobei der Ausschachtarm eine Endloskettenbagger-Baueinheit
(114) ist, die am Traktor (111) so angebracht ist, daß sie sich relativ zum Traktor
(111) vertikal bewegen kann.
4. Ausschachtarm-Vortriebsvorrichtung nach Anspruch 3, wobei die Endloskettenbagger-Baueinheit
(114) eine Form (120) für Beton enthält, die sich vertikal längs der Rückseite der
Ausschachtarm-Baueinheit erstreckt.
5. Ausschachtarm-Vortriebsvorrichtung nach irgendeinem der vorangehenden Ansprüche, wobei
die kombinierte Grab- und Vortriebsbaueinheit (121) ausgewählt ist aus einer Raupenketteneinrichtung,
einer Endlosriemeneinrichtung, einer Antriebsradeinrichtung oder einer Vortriebsfuß-Baueinheit,
die dem unteren Abschnitt des Ausschachtarms (114) zugeordnet ist.
6. Ausschachtarm-Vortriebsvorrichtung nach Anspruch 5, wobei die kombinierte Grab- und
Vortriebsbaueinheit (121) ein Antriebssystem enthält, das so gewählt ist, daß es während
des Grabvorgangs bei einem Grabelement eine Grabbewegung bewirkt und während des Grabenaushubvorgangs
für das Element eine Vortriebsbewegung schafft.
7. Ausschachtarm-Vortriebsvorrichtung nach Anspruch 6, wobei die kombinierte Grab- und
Vortriebsbaueinheit (121) eine Vorbelastungseinrichtung (14) zum Schieben des Elements
nach unten in die Bodenwand des Grabens enthält, um so einen Teil des Gewichts der
Ausschachtarm-Baueinheit (114) zu tragen.
8. Baggervorrichtung, mit:
einem Traktor (111), an dem ein vertikaler Endloskettenbagger (114) angebracht ist;
einer Formbaueinheit (120) für Beton, die vertikal hinter dem Bagger (114) verläuft,
und
einem langgestreckten Fuß (22), der am unteren Ende der Form (120) angebracht ist,
dadurch gekennzeichnet, daß der langgestreckte Fuß (22) durch eine Fußrotationseinrichtung
(20) betätigbar ist, um den Fuß in einer vertikalen Stellung rückwärts und vorwärts
zu schwenken, um die Bagger- und Formbaueinheit (114, 120) in den Boden zu graben,
um einen Graben (117) zu beginnen, und dadurch, daß sie eine Fußverschiebungseinrichtung
(17, 27), um den Fuß (22) in horizontaler Stellung rückwärts und vorwärts zu bewegen,
damit ein unterer Abschnitt des vertikalen Endloskettenbaggers (114) in Richtung des
vorgetriebenen Grabens angetrieben wird, sowie eine Vorbelastungseinrichtung (14)
enthält, die auf den Fuß (22) wirkt, um wenigstens einen Teil des Gewichts des Baggers
(114) auf den Fuß (22) auszuüben.
9. Baggervorrichtung nach Anspruch 8, wobei die Vorbelastungseinrichtung ein lineares
Doppelwirkungs-Hyraulikvorbelastungsbetätigungselement (14) enthält, das so betätigbar
ist, daß es den Fuß (22) in einer Richtung vorbelastet und den Fuß (22) in die andere
Richtung zurückzieht.
1. Appareil de propulsion de bras de creusement de tranchée pour excavateurs du type
comprenant un tracteur (111) supportant une partie supérieure d'un bras (114) de creusement
de tranchée allongé qui s'étend vers un fond de tranchée et est apte à être avancé
par ledit tracteur (111) pour former une tranchée (117), une partie inférieure dudit
bras (114) de creusement de tranchée distante dudit tracteur (111) étant munie de
moyens de propulsion (121) aptes à être mis en prise avec une paroi de tranchée et
à coopérer avec elle pour entraîner ladite partie inférieure dudit bras (114) de creusement
de tranchée dans la direction vers laquelle la tranchée avance, caractérisé en ce
que lesdits moyens de propulsion comprennent un ensemble (121) de propulsion et de
creusement combinés monté sur l'extrémité inférieure de l'ensemble (114) de bras de
creusement de tranchée de telle sorte que l'ensemble (114) de bras de creusement de
tranchée peut creuser lui-même dans le sol dans une position approximativement verticale.
2. Appareil de propulsion de bras de creusement de tranchée selon la revendication 1,
dans lequel ledit tracteur (111) comprend un véhicule ayant des chenilles de rampement
(113).
3. Appareil de propulsion de bras de creusement de tranchée selon la revendication 1,
dans lequel ledit bras de creusement de tranchée comprend un ensemble excavateur (114)
à chaîne sans fin monté sur le tracteur (111) en vue d'un mouvement vertical par rapport
au tracteur (111).
4. Appareil de propulsion de bras de creusement de tranchée selon la revendication 3,
dans lequel ledit ensemble excavateur (114) à chaîne sans fin comprend un coffrage
à béton (120) s'étendant verticalement le long de la face arrière de l'ensemble de
bras de creusement.
5. Appareil de propulsion de bras de creusement de tranchée selon l'une quelconque des
revendications précédentes, dans lequel l'ensemble (121) de propulsion et de creusement
combinés est sélectionné parmi des moyens à chenille, des moyens à courroie sans fin,
des moyens à roue d'entraînement ou un ensemble à pieds de propulsion en association
avec la partie inférieure du bras (114) de creusement de tranchée.
6. Appareil de propulsion de bras de creusement de tranchée selon la revendication 5,
dans lequel ledit ensemble (121) de propulsion et de creusement combinés comprend
un système d'entraînement sélectionné pour impartir un mouvement de creusement à un
élément de creusement pendant l'opération de creusement et pour procurer un mouvement
de propulsion à l'élément pendant l'opération d'excavation de tranchée.
7. Appareil de propulsion du bras de creusement selon la revendication 6, dans lequel
ledit ensemble (121) de propulsion et de creusement combinés comprend des moyens de
préchargement (14) pour pousser ledit élément vers le bas dans la paroi de base de
la tranchée afin de supporter une partie du poids de l'ensemble (114) de bras de creusement
de tranchée.
8. Appareil d'excavation comprenant :
un tracteur (111) mettant en oeuvre un excavateur (114) à chaîne sans fin verticale
;
un ensemble de coffrage (120) pour du béton s'étendant verticalement derrière l'excavateur
(114), et
un pied allongé (22) monté à l'extrémité inférieure du coffrage (120), caractérisé
en ce que ledit pied allongé (22) est actionnable par des moyens de rotation (20)
de pied pour faire balancer ledit pied (22) vers l'arrière et l'avant dans une position
verticale pour enterrer l'excavateur (114) et l'ensemble de coffrage (120) dans le
sol pour commencer une tranchée (117), par des moyens (17, 27) de déplacement de pied
pour mouvoir ledit pied (22) vers l'arrière et vers l'avant dans une position horizontale
pour entraîner une partie inférieure dudit excavateur (114) à chaîne sans fin verticale
dans la direction vers laquelle la tranchée avance, et par des moyens de préchargement
(14) agissant sur le pied (22) pour appliquer au moins une partie du poids dudit excavateur
(114) sur ledit pied (22).
9. Appareil d'excavation selon la revendication 8, dans lequel lesdits moyens de préchargement
comprennent un actionneur (14) de précharge hydraulique linéaire à double action actionnable
pour précharger ledit pied (22) dans une direction et rétracter ledit pied (22) dans
l'autre direction.