Slurry Wall Cutter
20200232182 ยท 2020-07-23
Inventors
- Tobias GRIESEMER (Nueziders, AT)
- Sebastian Wedl (Feldkirch, AT)
- Maria KNUENZ (Sulz, AT)
- Adrian FEND (Koblach, AT)
Cpc classification
E02D17/13
FIXED CONSTRUCTIONS
E02F5/14
FIXED CONSTRUCTIONS
International classification
E02F3/24
FIXED CONSTRUCTIONS
Abstract
The invention relates to a slurry wall cutter for producing vertical ground trenches, which can be connected to a carrier apparatus, comprising a frame, a motor unit and a drive unit which is releasably connectable with the frame, wherein the drive unit comprises a carrier structure, at least one gear mechanism arranged on the carrier structure as well as a cutting tool for crushing ground material, which connected to the gear mechanism and drivable by the motor unit, wherein the motor unit is releasably connectable to the drive unit and wherein the frame and the drive unit respectively comprise guide means which are configured in such a way that the drive unit can be pushed laterally into and out of the frame.
Claims
1. Slurry wall cutter for producing vertical trenches in the ground, which is connectable to a carrier apparatus, comprising: a frame, a motor unit; and a drive unit releasably connectable with the frame, wherein the drive unit comprises a carrier structure, at least one gear mechanism arranged on the carrier structure as well as at least one cutting tool for crushing ground material which is connected to the gear mechanism and drivable by the motor unit, wherein the motor unit is releasably connectable to the drive unit, and that the frame and the drive unit respectively comprise guide means, which are configured in such a way that the drive unit, is pushable laterally into and out of the frame.
2. Slurry wall cutter according to claim 1, wherein the drive unit comprises a motor receptacle, to which the motor unit is releasably connectable, and which is arranged on the top side of the carrier structure.
3. Slurry wall cutter according to claim 2, wherein the frame comprises a cutout at at least one side, through which the motor receptacle is pushable when the drive unit is displaced in a manner guidable by the guide means.
4. Slurry wall cutter according to claim 1, wherein the guide means of the frame and of the drive unit are configured as beveled edges, the chamfered surfaces of which contact one another in the connected state.
5. Slurry wall cutter according to claim 1, wherein the frame comprises a recess on its lower side, into which a part, is introduceable, wherein a releasable connection of drive unit and frame, viewed relative to the frame, is producable via lateral introduction of the drive unit into the lateral cutout or introduction of the drive unit into the lower recess from top to bottom.
6. Slurry wall cutter according to claim 1, wherein the guide means are arranged and configured in such a way that a centering and fine-positioning of the drive unit relative to the frame takes place when the drive unit (12) is introduced into the lower recess of the frame.
7. Slurry wall cutter according to claim 6, wherein the drive unit is introduceable into the lower recess in a state in which the motor unit is connected with the motor receptacle.
8. Slurry wall cutter according to claim 1, wherein the drive unit is releasably connectable with the lower end of the frame.
9. Slurry wall cutter according to claim 1, wherein the motor unit is releasably connectable with the frame.
10. Slurry wall cutter for producing vertical trenches in the ground, which is connectable with a carrier apparatus, comprising: a frame; a motor unit; and a drive unit, wherein the drive unit comprises a carrier structure, at least one gear mechanism arranged on the carrier structure as well as at least one cutting tool for crushing ground material, which is connected to the gear mechanism and drivable by the motor unit, and wherein the frame and the drive unit comprise connecting means by means of which the frame and the drive unit can releasably be connected to one another, wherein the motor unit is releasably connected with the drive unit, and the connecting means are accessible from outside so that the establishing or releasing of the connection between drive unit and frame is performable from outside.
11. Slurry wall cutter according to claim 10, wherein the frame comprises indentations which allow access to the connecting means from outside.
12. Slurry wall cutter according to claim 11, wherein the frame is configured in such a way that the parts of the connecting means accessible from the outside are arranged within the indentations and within the outer contour of the frame extending beyond the indentations.
Description
BRIEF DESCRIPTION OF FIGURES
[0030]
[0031]
[0032]
DETAILED DESCRIPTION
[0033]
[0034]
[0035] The drive unit 12 includes a carrier structure 1, which has a carrying function for the further components of the drive unit 12, such as the cutting tools (not shown). Multiple gear mechanisms 3 are located in the lower region of the carrier structure 1, to which receptacles 4 for the cutting tools configured as cutting wheels are connected. The carrier structure 1, in a lateral view, has a substantially T-shaped cross-section, wherein gear mechanisms 3 are arranged at the same height to both sides of the longitudinal beam of the T-shaped cross-section. The carrier structure 1 comprise wear plates 5 on the face sides (viewed from the side).
[0036] The gear mechanisms 3 and the wear plates 5 constitute components of the drive unit 12 that are particular prone to wear and therefore are high-maintenance that need to be replaced at regular intervals. Conventionally, the entire drive unit 12 including the motor unit(s) 9 connected thereto have to be demounted and the respective components have to be exchanged or serviced to that end. The present invention significantly speeds up and simplifies this replacement or mounting/demounting process.
[0037] The drive unit 12 is reversibly connected to the lower side of the frame 7 of the slurry wall cutter 10 at the upper side of the drive unit (via the crossbar of the T-shaped cross-section, viewed from the side). The connecting means 8 form a screw-nut-connection, wherein the upper side of the carrier structure 1 and the lower region of the frame 7 comprise corresponding openings for the screws 8.
[0038] The slurry wall cutter 10 according to the invention can be fastened or suspended on a carrier apparatus 20 via the frame 7. The slurry wall cutter 10 further comprises at least one motor unit 9 by means of which the cutting wheels are drivable via the gear mechanisms 3. The energy supply of the motor unit(s) 9 is ensured via corresponding supply lines in or on the frame 7. The motor unit 9 can include or constitute a hydraulic or electric motor.
[0039] The connection of the motor unit 9 to the drive unit 12 occurs via a motor receptacle 2 arranged on the upper side of the drive unit 12, to which the motor unit 9 can be connected in a releasable manner. To that end, respective ports for mechanical, electrical, hydraulic and/or other connections are provided, which can be configured as quick-release couplings or multi-coupling, for example. The connection of motor unit 9 with the connections of the frame 7 is likewise releasable and can also be configured as a quick-release coupling or multi-coupling.
[0040] The motor receptacle 2 protrudes into the frame 7, so that in the mounted state, the motor unit 9 is arranged within the frame 7. For this purpose, the frame 7 comprises a recess at its lower side, into which the motor receptacle 2, optionally together with the motor unit 9 already connected with the motor receptacle 2, can be introduced when mounting the drive unit 12.
[0041] The upper side of the carrier structure 1 comprises guide means 6 configured as beveled edges which correspond with respective guide means 6 on the lower side of the frame 7 at the edge of the recess that are likewise configured as beveled edges. The chamfered surfaces of the beveled edges 6 of the frame 7 are directed downwards, wherein the chamfered surfaces of the beveled edges 6 of the drive unit 12 and of the frame 7 contact each other in the mounted state. When introducing the drive unit 12 into the lower recess, the beveled edges 6 function as auxiliary means which center the drive unit 12 during insertion on the last portion. Mounting of the drive unit 12 via the lower recess is simplified thereby.
[0042] The drive unit 12 including the motor unit 9 can be mounted on the frame 7 via the lower recess.
[0043] The frame 7 further comprises another cutout 13 laterally, the geometrical dimensions of which exceed those of the motor unit 9 (in a view from the side). The cutout 13 is open downwards and thus forms a contiguous opening with the lower recess. The beveled edges 6 (with the slurry wall cutter 10 in vertical orientation) are oriented horizontally and parallelly to one another and are located at opposite edges of the lower recess. The beveled edges 6 thus serve as guide means, via which the drive unit 12 can be displaced laterally-horizontally with respect to the frame 7 (with the slurry wall cutter 10 in vertical orientation). To that end, the connection via the connecting means 8 has to be released, of course.
[0044] The drive unit 12 can therefore be pushed laterally out of the frame 7 or pushed into said frame without the motor unit 9 after release of the connection between motor receptacle 2 and motor unit 9. The guidance along the guide means 6 facilitates the displacing process. This results in a simplified and faster mounting and demounting process of the drive unit 12, with the motor unit 9 remaining within the frame 7. This is particularly advantageous in cases where the drive unit 12 is to be demounted and mounted again for the purpose of replacement or maintenance of the components which are prone to wear, such as gear mechanism 3, cutter wheel receptacles 4 or wear plates 5.
[0045] The guide means 6 consequently fulfill a double function. On the one hand, they serve for centering the drive unit 12 during the mounting process from bottom to top (with the frame 7 in vertical orientation) via the lower recess (in which the motor unit 9 may already be connected with the motor receptacle 2), and on the other hand they serve for the guiding of the drive unit 12 during the lateral insertion and removal via the lateral cutout 13 (with the motor unit 9 not being connected to the motor receptacle 2 in this case).
[0046] The frame 7 can have such a cutout 13 at both sides, so that the lateral insertion and removal is possible via both sides. It can furthermore be provided that the geometrical dimensions of the lateral cutout exceed those of the motor receptacle 2 and of the motor unit 9 in the connected state, so that the drive unit 12 can be laterally mounted/demounted together with the motor unit 9.
[0047] The drive unit 12 can either extent over the entire or substantially the entire width of the frame 7, so that only one single drive unit 12 is used in the slurry wall cutter according to the invention. Alternatively, multiple, in particular two drive units 12 next to one another can be used, which are each assigned to respectively one motor unit 9. In this case, one lower recess for one drive unit 12 is respectively located on the lower side of the frame 7. Furthermore, the frame 7 expediently comprises a cutout 13 on both sides in this case, so that each of the drive units 12 can be pushed into the frame 7 on the respective side.
[0048] The frame 7 further comprises indentations 11 in the lower region of the front and rear sides (which are located to the right and to the left of the cutout 13 in
[0049]
[0050] The Figures are drawn to scale although other relative dimensions may be used if desired.
LIST OF REFERENCE CHARACTERS
[0051] 1 carrier structure [0052] 2 motor receptacle [0053] 3 gear mechanism [0054] 4 cutter wheel receptacle [0055] 5 wear plate [0056] 6 guide means [0057] 7 frame [0058] 8 connecting means [0059] 9 motor unit [0060] 10 slurry wall cutter [0061] 11 indentation [0062] 12 drive unit [0063] 13 cutout [0064] 20 carrier apparatus