Technical Field
[0001] The present disclosure relates to a mining plow, in particular a coal mining plow,
having a plow base which is guidable on a reversible conveyor.
Background
[0002] Coal mining plows with extraction cutting bits fastened to pivotable cutting bit
carriers, which are connected in a direction-independent manner via a connecting rod
or a catch that is connected to the plow chain for the mining plow, are known, for
example, from
DE 201 18 259 U1 or
DE 196 37 789 A1. In order to be able to excavate different thicknesses (seam heights) with the same
plow, the height of the mining plow can be adjusted to the actual desired working
height, in which the height of the mining plow is increased using attachment members.
In
DE 196 37 789 A1, the height increase is achieved using an attachment member, which is supported via
a supporting portal on the goaf side on a guide rail provided on the conveyor for
this purpose, whereby even with mining plows having an especially high structure,
and optionally provided with a plurality of set-on attachment members, a reliable
stabilization of the plow can be achieved with effective removal of the forces on
the plow guide.
[0003] In underground mining, there is an increasing need for mining plows, in particular
coal mining plows, with which even small seam thicknesses (heights) can be mined as
variably as possible and with short re-tooling times. Furthermore,
DE 20 2010 000 457 U1 discloses a mining plow, which includes an attachment member and ancillary cutting
bit columns that are disposable on the attachment member.
Summary of the Disclosure
[0004] According to an aspect of the present disclosure, a mining plow, in particular a
coal mining plow, may comprise a plow base constructed to be guided on a reversible
conveyor and having a pivot pin on an inclined supporting surface for pivotably supporting
a cutting bit carrier in each direction of plow travel, two cutting bit carriers pivotably
supported on a respective pivot pin, including extraction cutting bits, and being
pivotable in a travel-direction-dependent manner, a roof cutting bit carrier attached
to the plow base in a height-adjustable manner, and including roof cutting bit columns.
The roof cutting bit carrier may be removably anchorable at different heights to an
attachment surface formed between the inclined supporting surfaces. The disclosed
mining plow may further comprise an attachment member settable on the plow base and
elongating the attachment surface for the roof cutting bit carrier to increase the
working height of the mining plow. The attachment member may include ancillary cutting
bit columns provided with extraction cutting bits and attached to the attachment member.
Each ancillary cutting bit column may be respectively positioned in its extraction
position for a plow trip above a cutting bit carrier, and an intermediate member may
be disposed between the attachment member and each ancillary cutting bit column. The
intermediate member may be foldable attached to the attachment member and may be folded
away into an installation position, in which the corresponding cutting bit carrier
may be removable while the attachment member and the intermediate part remain installed.
[0005] Other features and aspects of this disclosure will be apparent from the following
description and the accompanying drawings.
Brief Description of the Drawings
[0006]
Fig. 1 shows a view of the front side of a mining plow according the present teachings,
the front side facing towards the mining face during operation.
Fig. 2 shows a plan view of the mining plow according to Fig. 1, in which a left-side
ancillary cutting bit column is detached and an intermediate part is folded upward.
Fig. 3 shows a cross-sectional view of the mining plow of Fig. 1 along III-III in
Fig. 1.
Fig. 4 shows a plan view of an attachment member for the mining plow according to
the present disclosure.
Fig. 5 shows a side view of the attachment member of Fig. 4.
Fig. 6 shows a perspective view of the front side of the attachment member of Fig.
4.
Fig. 7 shows a perspective plan view of the attachment member of Fig. 4, in which
a left-side ancillary cutting bit column is detached and an intermediate part is folded
upward.
Fig. 8 shows a perspective view of the rear side of the attachment member of Fig.
7.
Detailed Description
[0007] The following is a detailed description of exemplary embodiments of the present disclosure.
The exemplary embodiments described therein and illustrated in the drawings are intended
to teach the principles of the present disclosure, enabling those of ordinary skill
in the art to implement and use the present disclosure in many different environments
and for many different applications. Therefore, the exemplary embodiments are not
intended to be, and should not be considered as, a limiting description of the scope
of patent protection. Rather, the scope of patent protection shall be defined by the
appended claims.
[0008] The present disclosure may be based in part on the realization that providing a mining
plow having a plow base with the lowest possible design may offer a high variability
for the mining of different seam thicknesses of the to-be-excavated mineral layer,
in particular coal, may be easy to assemble and may have an improved mining behavior
even in the face end region as well as the longwall tunnel itself when confined spaces
are present due to the work situation or a narrow roadway.
[0009] The present disclosure may be further based in part on the realization that the extraction
cutting bits of the disclosed mining plow may lie on the ancillary cutting bit column
above or in extension of the line of the extraction cutting bits of the associated
cutting bit carrier, such that by adding the ancillary cutting bit columns, which
are disposed substantially farther forward in the direction of travel, may improve
mining behavior, in particular in the face end region as well as in the longwall tunnel.
Thus, an upper bank or a concrete pack, with which a tunnel support structure may
be optionally backfilled, can be removed in the tunnel.
[0010] A mining plow according to the present disclosure is indicated overall with reference
number 1 in Figs. 1 to 3. The mining plow 1 can be moved using a plow chain 2 (only
shown in part) along plow guides (not shown) during underground mining operations.
The plow guides are part of a conveyor apparatus, which is laid along the mining face
over lengths of generally 200 m to 400 m for extracting minerals such as, for instance,
coal, and may be automatically advanced forwarding the direction of the mining face
using suitable advancing devices as the mining progresses.
[0011] In Fig. 3 a guide shoe 5 and a guide recess 6 on the rear side of a base 4 of the
mining plow 1 can be seen, with which the mining plow 1 is guided on guide bars, which
are part of the plow guide. The plow chain 2 is connected to a pull-sled serving as
a catch, which is disposed in a recess on the underside of the plow base 4 and moves
the mining plow 1 in the pulling direction of the plow chain 2 along the plow guide,
as is known from the prior art.
[0012] The mining plow 1 is provided with a cutting bit carrier 7 for both plow travel directions,
which are indicated with F and F', respectively, in Fig. 1. The cutting bit carrier
7 is pivotably supported on the plow base 4 about a pivot pin 8 that is visible in
Figs. 2 and 3, and rests with its weight on an oblique supporting surface 9 of the
plow base 4. As can be easily seen in Fig. 1, both cutting bit carriers 7 are provided
with a row of extraction cutting bits 11 disposed one above another. The extraction
cutting bits 11 extend over the entire height of the plow base 4 and over the height
of the material to be mined by the mining plow 1 with the cutting bit carrier 7, which
means the material that lies forward of the mining plow 1 in the direction of travel
F or F'.
[0013] Through the pivotability of the two cutting bit carriers 7, which are here rigidly
coupled by a connecting rod 62 between the two cutting bit carriers 7, it may be achieved
that the cutting bit carrier 7 disposed forward in the direction of travel rearwardly
displaces the cutting bit carrier 7 disposed rearward in the direction of travel.
Therefore, the extraction cutting bits 11 disposed rearward in the direction of travel
may not contact the coal mining face. Moreover, when the plow travel direction F is
reversed to the reverse direction F', extraction work is now performed by the extraction
cutting bits 11 on the other cutting bit carrier 7. That is, the other cutting bit
carrier is caused to pivot by the extraction forces opposite of the direction of travel
and accordingly shifts back the cutting bit carrier 7 that is now disposed rearward
in the direction of travel, as is also known to the person of skill in the art.
[0014] The mining plow 1 is further provided in a conventional manner with a roof cutting
bit carrier 12 having two roof cutting bit columns 13 equipped with extraction cutting
bits 14. The roof cutting bit carrier 12 is fastened to the plow base 4 in a height-adjustable
manner, and can be displaced along groove guides 15 in the height direction which
means vertically, in order to be anchored at different height positions.
[0015] The mining plow 1 is further provided in a known manner with an attachment member
20, with which the height, and thus the extraction height, of the mining plow 1 can
be increased. An ancillary cutting bit column 21, which is equipped with additional
extraction cutting bits 22, is disposed on the attachment member 20 for each direction
of travel, in order to additionally excavate minerals or rock on the coal mining face
along the height of the attachment member 20.
[0016] Groove guides 26 (see Figs. 5 to 7) are disposed in the center of the attachment
member 20 on its front surface. The groove guides 26 extend the groove guides 15 on
the plow base 4, in order to be able to move the roof cutting bit carrier 12 upwards
in such a manner that material can be excavated in the roof area by the roof cutting
bit carrier 12 also when the attachment member 20 is attached. Both the roof cutting
bit columns 13 and the ancillary cutting bit columns 21 are pivotable, so that only
the roof cutting bit column 13 and ancillary cutting bit column 21 disposed forward
in the travel direction F or F' perform extraction work.
[0017] In the mining plow 1 according to the present disclosure, both ancillary cutting
bit columns 21 are positioned on the mining plow 1 in such a way that the extraction
cutting bits 22 of the ancillary cutting bit columns 21 are located above the respective
cutting bit carriers 7 and in an arc-like extension of the extraction cutting bits
11. A correspondingly far-forwardmost positioning of the ancillary cutting bit column
21 in the direction of travel is achieved in the mining plow 1 by arranging an intermediate
part 30 between the attachment member 20 and each ancillary cutting bit column 21.
[0018] As shown in Fig. 2, the left-side intermediate part 30 has been folded away into
an installation position, whereas the right-side intermediate part 30 is shown in
the extraction position (or operational position) for the right-side ancillary cutting
bit column 21. In the installation position, neither the intermediate part 30 nor
an optional ancillary cutting bit column 21 fastened to the intermediate part 30 is
disposed over the underlying cutting bit carrier 7 in such a way that accessibility
of the pivot pin 8 would be hindered and/or the cutting bit carrier 7 could not be
removed and lifted off of the pivot pin 8.
[0019] Therefore, in order to uninstall (remove) the cutting bit holder 7, it is sufficient
in the present mining plow 1 to release a lock holding the respective intermediate
part 30, and fold it back into the installation position as shown at the left of Fig.
2. Optionally, the associated ancillary cutting bit column 21 may be removed before
the intermediate part 30 is folded back. The attachment member 20, which is usually
very heavy, can remain on the plow base 4 during installation/removal of the cutting
bit carrier 7.
[0020] Certain aspects of the structure of the attachment member 20, the intermediate part
30 and the ancillary cutting bit columns 21 will now be explained in further detail
with reference to Figs. 4 to 8.
[0021] As shown in Fig. 5, the underside of the attachment 20 may be attached to the plow
base 4. The latch pins 23 sit in corresponding latch recesses (not shown) on the plow
base 4, and thus fix the attachment member 20 to the plow base 4 in an interference-fit
manner and parallel to the direction of travel.
[0022] In order to prevent vertical movement between the attachment member 20 and the plow
base 4, wedge-jaws 24 are provided and can be moved relative to each other using turnbuckles
25 (see Fig. 6) in such a way that the jaws of the wedge-jaws 24 extend beyond the
attachment member 20 and grasp the plow base 4, thereby clamping the attachment member
20 onto the plow base 4. The wedge-jaws 24 are disposed on either side of the groove
guides 26, which are removably anchored to the attachment member 20, for example,
screw-fastened in this embodiment.
[0023] As shown in Fig. 6, a fork receptacle 29 is disposed on each end of the attachment
member 20 and is open towards the front side. Spaced-apart bolt receptacles 27 define
a gap for receiving a bolt eye 31 of the intermediate part 30. The bolt receptacles
27 and the bolt eye 31 are connected using a pivot bolt 45. The pivot axis of the
pivot bolt 45 extends parallel to the groove guides 26 and connects the bolt receptacles
27 and the bolt eye 31, and thus the intermediate part 30 and the attachment member
20, to one another. The bolt receptacles 27 and the bolt eye 31 are designed to be
suitably strong, so that the entire weight of the intermediate part 30 and the connected
additional column 21 can be retained in a pivotable manner.
[0024] As shown in Fig. 7, the intermediate part 30 has a middle part 32 that is integrally
connected with the bolt eye 31. A strong pressure plate 33 is formed on the rear side
of the middle part 32, as can be seen on the left side in Fig. 7. In the extraction
(mining or operational) position, as shown in the right-side intermediate part 30
in Fig. 7, a beveled rear end face 34 abuts in an form-fit manner on an abutment surface
28 of the attachment member 20. The abutment surface 28 also extends obliquely to
the direction of travel, in order to direct all of the forces arising on the ancillary
cutting bit columns 21 during the extraction movement to the attachment member 20
via the pressure plate 33.
[0025] As shown on the left side of Fig. 7, the middle part 32 is further provided with
pin receptacles 35 opposite the bolt eye 31. As shown on the right side of Fig. 7,
a supporting body 41 of the ancillary cutting bit column 21 is insertable into the
pin receptacles 35, preferably only in a certain relative position between the ancillary
cutting bit column 21 and the intermediate part 30. The supporting body 41 of the
ancillary cutting bit column 21 can or must then be pivoted into a position, relative
to the intermediate part 30, in which the supporting body 41 of the ancillary support
column 21 is fixedly held between an arm pair 36 on the intermediate part 30. The
arm pair 36 lies opposite the pin receptacles 35 at a short distance. The ancillary
support column 21 is consequently supported in the extraction (mining or operational)
position on the intermediate part 30 on the one hand via the pin receptacles 35 and
on the other hand between the arm pair 36.
[0026] The ancillary cutting bit column 21 can be installed or uninstalled only in a certain
pivot position, however not in the extraction (mining or operational) position, which
is shown on the right side of Fig. 7. The pivot pin connection between the ancillary
cutting bit column 21 and the intermediate part 30 can be effected using pin stumps
which are integrally formed on the supporting body 41 of the ancillary cutting bit
column 21.
[0027] As shown in Fig. 8, the intermediate part 30 is further provided with a supporting
projection 37 directly adjacent to the bolt eye 31. The supporting projection 37 is
cantilevered laterally beyond the bolt eye 31. In the extraction (mining or operation)
position the supporting projection 37 abuts on an abutment surface located in a step-shaped
recess 42 defined on the rear side of the attachment member 20. Receiving bores 38
and 43 are respectively formed in the supporting projection 37 and on the bottom of
the step-shaped recess 42. Locking screws 44 can be screwed into the bores 38,43 in
order to secure the intermediate part 30 and prevent unintentional pivoting-back in
the extraction position. Because the forces arising in mining operation press the
end face 34 of pressure plate 33 against the abutment surface 28, the locking screws
44 need not receive any transverse forces.
[0028] In order to be able to easily reach the locking screws 44, the pressure plate 33
is provided with a recess 39. The pivot axis formed by the pin projections and pin
receptacles 35 and the pivot axis formed by the pivot bolts 45 lie parallel to one
another and parallel to the groove guides 26.
[0029] As shown in Fig. 6, the front side of the supporting body 41 of the ancillary cutting
bit columns 21 and the intermediate part 30 are each provided with hook projections
48, 49, which lie opposite one another in the mining position and are surrounded by
a chain link, which permits a limited pivoting of the supporting body 41 of the ancillary
cutting bit columns 21 relative to the intermediate part 30, which is fastened on
the attachment member 20 so as to prevent movement, and is secured against falling
out using a cotter pin or the like.
Industrial Applicability
[0030] The roof cutting bit carrier may be fastened to the base in different ways. Under
certain circumstances, the roof cutting bit carrier may also allow itself to be moved
into a position in which the ancillary cutting bit columns may remain on the intermediate
parts, if these are pivoted out for an installation/removal of the cutting bit carrier.
The same could also be achieved through a different design of the supporting body
for the ancillary cutting bit columns.
[0031] In some embodiments, instead of pin projections, pivot bolts may also be used, which
could be secured in various ways. Different mining lines between the extraction cutting
bits on the cutting bit carriers and the extraction cutting bits on the ancillary
cutting bit carriers could be achieved through the choice of different intermediate
parts.
[0032] If one of the cutting bit carriers which may be pivotably mounted on the base body
may be replaced, the attachment member can remain on the base body, despite the ancillary
cutting bit column still being positioned in a cantilevered forward manner, and it
is only required to fold or pivot the intermediate part back into an installation
position, optionally after removing the ancillary cutting bit column and releasing
the associated locking means. In the installation position it may be possible to lift
off the cutting bit carrier from the base body without the intermediate part disturbing
the installation or removal of the cutting bit carrier.
[0033] For extraction work using the mining plow, it may be advantageous if the ancillary
cutting bit columns may be fastened to the intermediate part so as to be partially-pivotable
about an axis, so that when the plow may travel in the reverse direction they may
swing into a position in which they may have no contact with the face. In some embodiments,
the ancillary cutting bit columns may be pivotably fastened to the intermediate part
about pin stubs, which may be integrally formed on the ancillary cutting bit column
and which may be only insertable into edge-open pin receptacles when the ancillary
cutting bit column is located at a defined pivot position relative to the intermediate
part. By pivoting the ancillary cutting bit column to the extraction position, it
can then be achieved that all forces may be absorbed in an interference-fit manner
between the intermediate part and the ancillary cutting bit column.
[0034] In order to prevent a moving away from this position with a limited degree of freedom,
in some embodiments the ancillary cutting bit column and the intermediate part may
be provided with hook projections, which may lie opposite one another in the extraction
position. In particular with corresponding hook projections, but also with other designs,
the ancillary cutting bit columns may in each case be locked against pivoting back
into the pivot position for uninstalling using a chain-link-like securing element
on the associated intermediate part, wherein the eyelet length of the chain link may
determine the degree of freedom of pivoting.
[0035] The attachment member may be provided with latch pins on its underside, which in
the installation state may sit in latch recesses on the plow base, and/or the attachment
member may be clampable or clamped onto the plow base using wedge-jaws that may be
movable using turnbuckles.
[0036] In some embodiments, the intermediate part and the ancillary cutting bit column may
be movable about mutually parallel axes.
[0037] Further, the fastening surface on the plow base may be laterally bounded by groove
guides, and the attachment member may be provided with groove guides on its front
surface, wherein the ancillary cutting bit columns may be disposed on both sides of
the groove guides. The axes may then preferably extend parallel to the grooves on
the fastening surface for the roof cutting bit carrier.
[0038] In some embodiments, since significant forces act on the ancillary cutting bit columns
and the intermediate part during extraction travel (movement), the rear side of the
intermediate part may be provided with a pressure plate, which may abut on the attachment
member when the ancillary cutting bit column may be in the extraction position. In
some embodiments, in view of force dissipation, it may be preferable that an end face
of the pressure plate may abut on an abutment surface on the attachment member in
the extraction position in the direction of travel. For this purpose the end face
and the abutment surface may extend obliquely to the direction of travel, in order
to achieve as large as possible a contact surface between the parts with a small width
of the pressure plate.
[0039] In some embodiments, in order to be able to install locking means even when subjected
to confined space conditions, the pressure plate may be provided with an opening.
Receiving bores for locking screws may be respectively provided in the attachment
member and in the intermediate part, with which the attachment member may be fixable
to prevent folding back when disposed in the extraction position. In some embodiments,
the receiving bores may be formed in the intermediate part in the region of the opening.
[0040] The height adjustment and support of the roof cutting bit carrier could also be effected
in a way other than via groove guides.
[0041] Although the preferred embodiments of this invention have been described herein,
improvements and modifications may be incorporated without departing from the scope
of the following claims.
1. A mining plow (1), in particular a coal mining plow, comprising:
a plow base (4) constructed to be guided on a reversible conveyor, the plow base (4)
having a pivot pin (8) on an inclined supporting surface (9) for pivotably supporting
a cutting bit carrier (7) in each direction of plow travel;
two cutting bit carriers (7) pivotably supported on a respective pivot pin (8), including
extraction cutting bits (11), and being pivotable in a travel-direction-dependent
manner;
a roof cutting bit carrier (12) attached to the plow base (4) in a height-adjustable
manner, and including roof cutting bit columns (13), the roof cutting bit carrier
(12) being removably anchorable at different heights to an attachment surface formed
between the inclined supporting surfaces (9); and
an attachment member (20) mountable on the plow base (4) and elongating the attachment
surface for the-roof cutting bit carrier (12) to increase the working height of the
mining plow (1), the attachment member (20) including ancillary cutting bit columns
(21) provided with extraction cutting bits (22) and attached to the attachment member
(20), wherein
each ancillary cutting bit column (21) is respectively positioned in its extraction
position for a plow trip above a cutting bit carrier (7), and
an intermediate member (30) is disposed between the attachment member (20) and each
ancillary cutting bit column (21) characterised by the intermediate member (30) being foldably attached to the attachment member (20)
and may be folded away into an installation position, in which the corresponding cutting
bit carrier (7) is removable while the attachment member (20) and the intermediate
part (30) remain installed.
2. The mining plow (1) according to claim 1, wherein the ancillary cutting bit columns
(21) are attached to the intermediate parts (30) so as to be partially pivotable about
an axis.
3. The mining plow (1) according to claim 2, wherein the ancillary cutting bit columns
(21) are attached to the intermediate parts (30) so as to be pivotable about pin stubs,
which are integrally formed on a supporting body (41) of the ancillary cutting bit
column (21) and are insertable into edge-open pin receptacles on the intermediate
part (30) in a defined pivot position between the intermediate parts (30) and the
ancillary cutting bit column (21).
4. The mining plow (1) according to claim 3, wherein the ancillary cutting bit columns
(21) and the intermediate parts (30) are provided with hook projections (48, 49),
which lie opposite one another in the extraction position.
5. The mining plow (1) according to any one of claims 3 or 4, wherein each ancillary
cutting bit column (21) is lockable to prevent pivoting back into a pivot position
for removal by a chain-link-like securing element (47) disposed on the associated
intermediate part (30).
6. The mining plow (1) according to any one of claims 1 or 5, wherein:
latch pins (23) are provided on an underside of the attachment member (20), and in
the installation state the latch pins (23) sit in latch recesses on the plow base
(4), and/or
the attachment member (20) is clampable onto the plow base (4) using wedge-jaws (24)
that are movable using turnbuckles.
7. The mining plow (1) according to any one of claims 1 to 6, wherein the intermediate
part (30) and the ancillary cutting bit column (21) are movable about mutually parallel
axes.
8. The mining plow (1) according to any one of claims 1 to 7, wherein:
the attachment surface on the plow base (4) is laterally bounded by groove guides,
a front surface of the attachment member (20) is provided with groove guides (26),
and
the ancillary cutting bit columns (21) are respectively disposed on both sides of
the groove guides (26).
9. The mining plow (1) according to any claim 7 or 8, wherein the axes extend parallel
to the grooves on the fastening surface for the roof cutting bit carrier (12).
10. The mining plow (1) according to any one of claims 1 to 9, wherein a rear side of
the intermediate part (30) is provided with a pressure plate (33), which abuts on
the attachment member (20) when the ancillary cutting bit column (21) is disposed
in the extraction position.
11. The mining plow (1) according to claim 10, wherein:
an end face (34) of the pressure plate (33) abuts on an abutment surface (28) on the
attachment member (20) in the direction of travel, and
the end face (34) and the abutment surface (28) preferably extend obliquely to the
direction of travel.
12. The mining plow (1) according to any one of claims 10 or 11, wherein the pressure
plate (33) is provided with an opening (39).
13. The mining plow (1) according to any one of claims 1 to 12, wherein:
receiving bores are respectively defined in the attachment member (20) and in the
intermediate part (30), and
locking screws extend through the receiving bores to fix the intermediate part (30)
in the extraction position and prevent folding back.
14. The mining plow (1) according to any one of claims 12 or 13, wherein the receiving
bores are formed in the intermediate part (30) in the region of the opening (39).
1. Gewinnungshobel (1), insbesondere Kohlegewinnungshobel, umfassend:
eine Hobelbasis (4), die ausgelegt ist, auf einem reversiblen Förderer geführt zu
werden, wobei die Hobelbasis (4) einen Schwenkstift (8) auf einer geneigten Stützfläche
(9) aufweist, um einen Meißelträger (7) in jeder Richtung der Hobelbewegung schwenkbar
zu lagern;
zwei schwenkbar an einem jeweiligen Schwenkstift (8) gelagerte Meißelträger (7), die
Extraktionsmeißel (11) umfassen und in einer von der Bewegungsrichtung abhängigen
Weise schwenkbar sind;
einen Firstmeißelträger (12), der an der Hobelbasis (4) in einer höhenverstellbaren
Weise angebracht ist und Firstmeißelsäulen (13) umfasst, wobei der Firstmeißelträger
(12) lösbar in verschiedenen Höhen an einer Befestigungsfläche verankerbar ist, die
zwischen den geneigten Stützflächen (9) gebildet ist; und
ein Befestigungsglied (20), das an der Hobelbasis (4) montierbar ist und die Befestigungsfläche
für den Firstmeißelträger (12) verlängert, um die Arbeitshöhe des Gewinnungshobels
(1) zu erhöhen, wobei das Befestigungsglied (20) Nebenmeißelsäulen (21) umfasst, die
mit Extraktionsmeißeln (22) versehen und am Befestigungsglied (20) angebracht sind,
wobei
jede Nebenmeißelsäule (21) jeweils in ihrer Extraktionsposition für eine Hobeltour
über einem Meißelträger (7) positioniert ist, und
ein Zwischenglied (30) zwischen dem Befestigungsglied (20) und jeder Nebenmeißelsäule
(21) angeordnet ist, dadurch gekennzeichnet, dass das Zwischenglied klappbar am Befestigungsglied (20) angebracht ist und in eine Installationsposition
weggeklappt werden kann, in welcher der entsprechende Meißelträger (7) lösbar ist,
während das Befestigungsglied (20) und der Zwischenteil (30) installiert bleiben.
2. Gewinnungshobel (1) nach Anspruch 1, wobei die Nebenmeißelsäulen (21) an den Zwischenteilen
(30) so angebracht sind, dass sie teilweise rund um eine Achse schwenkbar sind.
3. Gewinnungshobel (1) nach Anspruch 2, wobei die Nebenmeißelsäulen (21) an den Zwischenteilen
(30) so angebracht sind, dass sie rund um Schwenkzapfen schwenkbar sind, die einstückig
auf einem Stützkörper (41) der Nebenmeißelsäule (21) gebildet und in randoffene Stiftaufnehmer
auf dem Zwischenteil (30) in einer definierten Schwenkposition zwischen den Zwischenteilen
(30) und den Nebenmeißelsäulen (21) einsetzbar sind.
4. Gewinnungshobel (1) nach Anspruch 3, wobei die Nebenmeißelsäulen (21) und die Zwischenteile
(30) mit Hakenfortsätzen (48, 49) versehen sind, die in der Extraktionsposition einander
gegenüberliegen.
5. Gewinnungshobel (1) nach einem der Ansprüche 3 oder 4, wobei jede Nebenmeißelsäule
(21) verriegelbar ist, um ein Zurückschwenken in eine Schwenkposition zur Entfernung
durch ein Sicherungselement (47) ähnlich einer Kettenverbindung zu verhindern, das
auf dem assoziierten Zwischenteil (30) angeordnet ist.
6. Gewinnungshobel (1) nach einem der Ansprüche 1 oder 5, wobei:
Verriegungsstifte (23) auf einer Unterseite des Befestigungsglieds (20) bereitgestellt
sind und im Installationszustand die Verriegelungsstifte (23) in Verriegelungsvertiefungen
auf der Hobelbasis (4) sitzen, und/oder
das Verriegelungsglied (20) auf die Hobelbasis (4) unter Verwendung von Keilbacken
(24) klemmbar ist, die unter Verwendung von Spannern bewegbar sind.
7. Gewinnungshobel (1) nach einem der Ansprüche 1 bis 6, wobei der Zwischenteil (30)
und die Nebenmeißelsäule (21) rund um zueinander parallele Achsen bewegbar sind.
8. Gewinnungshobel (1) nach einem der Ansprüche 1 bis 7, wobei:
die Befestigungsfläche auf der Hobelbasis (4) lateral durch Nutführungen begrenzt
ist,
eine Vorderfläche des Befestigungsglieds (20) mit Nutführungen (26) versehen ist,
und
die Nebenmeißelsäulen (21) jeweils auf beiden Seiten der Nutführungen (26) angeordnet
sind.
9. Gewinnungshobel (1) nach einem der Ansprüche 7 oder 8, wobei sich die Achsen parallel
zu den Nuten auf der Befestigungsfläche für den Firstmeißelträger (12) erstrecken.
10. Gewinnungshobel (1) nach einem der Ansprüche 1 bis 9, wobei eine Rückseite des Zwischenteils
(30) mit einer Druckplatte (33) versehen ist, die am Befestigungsglied (20) anliegt,
wenn die Nebenmeißelsäule (21) in der Extraktionsposition angeordnet ist.
11. Gewinnungshobel (1) nach Anspruch 10, wobei:
eine Endfläche (34) der Druckplatte (33) an einer Anlagefläche (28) auf dem Befestigungsglied
(20) in der Bewegungsrichtung anliegt, und
sich die Endfläche (34) und die Anlagefläche (28) vorzugsweise schräg zur Bewegungsrichtung
erstrecken.
12. Gewinnungshobel (1) nach einem der Ansprüche 10 oder 11, wobei die Druckplatte (33)
mit einer Öffnung (39) versehen ist.
13. Gewinnungshobel (1) nach einem der Ansprüche 1 bis 12, wobei:
Aufnahmebohrungen jeweils im Befestigungsglied (20) und im Zwischenteil (30) definiert
sind, und
sich Verriegelungsschrauben durch die Aufnahmebohrungen erstrecken, um den Zwischenteil
(30) in der Extraktionsposition zu fixieren und ein Rückklappen zu verhindern.
14. Gewinnungshobel (1) nach einem der Ansprüche 12 oder 13, wobei die Aufnahmebohrungen
im Zwischenteil (30) im Bereich der Öffnung (39) gebildet sind.
1. Rabot d'abattage (1), en particulier rabot d'abattage de charbon, comprenant :
une base de rabot (4) conçue pour être guidée sur un transporteur réversible, la base
de rabot (4) ayant une broche pivot (8) sur une surface de support inclinée (9) pour
supporter à pivotement un support de mèche coupante (7) dans chaque direction de déplacement
du rabot ;
deux supports de mèches coupantes (7) supportées à pivotement sur une broche pivot
respective (8), comprenant des mèches coupantes d'extraction (11) et pouvant pivoter
de manière dépendant de la direction de déplacement ;
un support de mèches coupantes de toit (12) fixé à la base de rabot (4) de manière
ajustable en hauteur et comprenant des colonnes de mèches coupantes de toit (13),
le support de mèches coupantes de toit (12) pouvant être ancré de manière amovible
à différentes hauteurs à une surface de fixation formée entre les surfaces de support
inclinées (9) ; et
un élément de fixation (20) montable sur la base de rabot (4) et allongeant la surface
de fixation pour le support de mèches coupantes de toit (12) afin d'augmenter la hauteur
de travail du rabot d'abattage (1), l'élément de fixation (20) comprenant des colonnes
de mèches coupantes auxiliaires (21) pourvues de mèches coupantes d'extraction (22)
et fixées à l'élément de fixation (20), dans lequel :
chaque colonne de mèches coupantes auxiliaires (22) est respectivement positionnée
dans la position d'extraction pour un déplacement du rabot au-dessus d'un support
de mèche de coupe (7) et
un élément intermédiaire (30) est disposé entre l'élément de fixation (20) et chaque
colonne de mèches de coupe auxiliaires (21), caractérisé en ce que l'élément intermédiaire (30) est fixé de manière repliable à l'élément de fixation
(20) et peut être déplié dans une position d'installation, dans laquelle le support
de mèche coupante correspondant (7) peut être retiré tandis que l'élément de fixation
(20) et la partie intermédiaire (30) restent installés.
2. Rabat d'abattage (1) selon la revendication 1, dans lequel les colonnes de mèches
coupantes auxiliaires (21) sont fixées aux parties intermédiaires (30) de manière
à pouvoir pivoter partiellement autour d'un axe.
3. Rabat d'abattage (1) selon la revendication 2, dans lequel les colonnes de mèches
coupantes auxiliaires (21) sont fixées aux parties intermédiaires (30) de manière
à pivoter autour de bouts de broche qui sont formés d'un seul tenant sur un corps
de support (41) de la colonne de mèches coupantes auxiliaires (21) et peuvent être
inséré dans des réceptacles de broche à bord ouvert sur la partie intermédiaire (30)
dans une position de pivotement définie entre les parties intermédiaires (30) et la
colonne de mèches coupantes auxiliaires (21).
4. Rabat d'abattage (1) selon la revendication 3, dans lequel les colonnes de mèches
coupantes auxiliaires (21) et les parties intermédiaires (30) sont pourvues de saillies
à crochet (48, 49) qui sont situées en regard l'une de l'autre dans la position d'extraction.
5. Rabat d'abattage (1) selon l'une quelconque des revendications 3 ou 4, dans lequel
chaque colonne de mèches coupantes auxiliaires (21) peut être verrouillée pour empêcher
le re-pivotement dans une position pivot de retrait par un élément de fixation (47)
du type à maillons de chaîne disposé sur la partie intermédiaire associée (30).
6. Rabat d'abattage (1) selon l'une quelconque des revendications 1 ou 5, dans lequel
:
des broches de verrouillage (23) sont prévues sur la partie inférieure de l'élément
de fixation (20) et, à l'état installé, les broches de verrouillage (23) sont disposées
dans des cavités de verrouillage sur la base de rabot (4) et/ou
l'élément de fixation (20) peut être bloqué sur la base de rabot (4) en utilisant
des mors de calage (24) qui sont mobiles en utilisant des manchons de serrage.
7. Rabat d'abattage (1) selon l'une quelconque des revendications 1 à 6, dans lequel
la partie intermédiaire (30) et la colonne de mèches coupantes auxiliaires (21) sont
mobiles autour d'axes mutuellement parallèles.
8. Rabat d'abattage (1) selon l'une quelconque des revendications 1 à 7, dans lequel
:
la surface de fixation sur la base de rabot (4) est délimitée latéralement par des
guides-rainures,
une surface avant de l'élément de fixation (20) est pourvue de guides-rainures (26)
et
les colonnes de mèches coupantes auxiliaires (21) sont respectivement disposées des
deux côtés des guides-rainures (26).
9. Rabat d'abattage (1) selon l'une quelconque des revendications 7 ou 8, dans lequel
les axes s'étendent parallèlement aux rainures sur la surface de fixation pour le
support de mèches coupantes de toit (12).
10. Rabat d'abattage (1) selon l'une quelconque des revendications 1 à 9, dans lequel
un côté arrière de la partie intermédiaire (30) est pourvue d'une plaque de pression
(33) qui s'appuie sur l'élément de fixation (20) lorsque la colonne de mèches coupantes
auxiliaires (21) est disposée dans la position d'extraction.
11. Rabot d'abattage (1) selon la revendication 10, dans lequel :
une face d'extrémité (34) de la plaque de pression (33) s'appuie sur une surface de
butée (28) sur l'élément de fixation (20) dans la direction de déplacement et
la face d'extrémité (34) et la surface de butée (28) s'étendent de préférence en oblique
par apport à la direction de déplacement.
12. Rabat d'abattage (1) selon l'une quelconque des revendications 10 ou 11, dans lequel
la plaque de pression (33) est pourvue d'une ouverture (39).
13. Rabat d'abattage (1) selon l'une quelconque des revendications 1 à 12, dans lequel
:
des alésages de réception sont respectivement définis dans l'élément de fixation (20)
et la partie intermédiaire (30) et
des vis de blocage s'étendent à travers les alésages de réception pour fixer la partie
intermédiaire (30) en position d'extraction et empêcher un repli en arrière.
14. Rabat d'abattage (1) selon l'une quelconque des revendications 12 ou 13, dans lequel
les alésages de réception sont formés dans la partie intermédiaire (30) de la région
de l'ouverture (39) .