EP2428614B1 - Finisseuse mobile - Google Patents

Finisseuse mobile Download PDF

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Publication number
EP2428614B1
EP2428614B1 EP11178944.2A EP11178944A EP2428614B1 EP 2428614 B1 EP2428614 B1 EP 2428614B1 EP 11178944 A EP11178944 A EP 11178944A EP 2428614 B1 EP2428614 B1 EP 2428614B1
Authority
EP
European Patent Office
Prior art keywords
support
joint
probe
switch
sensor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP11178944.2A
Other languages
German (de)
English (en)
Other versions
EP2428614A3 (fr
EP2428614A2 (fr
Inventor
Johann Owegeser
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SMG Sportplatzmaschinenbau GmbH
Original Assignee
SMG Sportplatzmaschinenbau GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by SMG Sportplatzmaschinenbau GmbH filed Critical SMG Sportplatzmaschinenbau GmbH
Publication of EP2428614A2 publication Critical patent/EP2428614A2/fr
Publication of EP2428614A3 publication Critical patent/EP2428614A3/fr
Application granted granted Critical
Publication of EP2428614B1 publication Critical patent/EP2428614B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C19/00Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving
    • E01C19/48Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving for laying-down the materials and consolidating them, or finishing the surface, e.g. slip forms therefor, forming kerbs or gutters in a continuous operation in situ
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C19/00Machines, tools or auxiliary devices for preparing or distributing paving materials, for working the placed materials, or for forming, consolidating, or finishing the paving
    • E01C19/004Devices for guiding or controlling the machines along a predetermined path

Definitions

  • the invention relates to a mobile paver for the installation of existing ground cover material plastic coverings, elastic support layers or floor screed, wherein the paver has a screed for the removal of the soil material and the screed is adjustable in its vertical position by a height adjustment and the paver a push button with a Tastfuß has, which scans the ground level next to the paver and the sensing unit acts on the height adjustment of the position of the screed so that a ground-level connection of the ground cover material is carried to the ground level.
  • the button unit comprises one of a probe carrier held Tastfuß and the probe carrier is hinged to a support joint. A held by a switch carrier sensor or switching unit is provided and the switch carrier is articulated to the probe carrier, wherein the probe carrier cooperates with the sensor or switching unit according to the position of the probe carrier and / or the position of the joint on the probe carrier.
  • the known paver pavers are equipped with screeds, which usually oscillate at right angles to the direction of travel of the paver and thus compact the ground cover material on the subfloor, but also smooth. At least the oscillation movement of the screed covers the chassis width in order to achieve a seamless connection of the individual flooring strips to each other.
  • ground cover material in the sense of this application is therefore that pourable and also understood granular material, which then forms the base layer in the installed state.
  • ground cover material is not limited to a specific embodiment of the material, it may consist of plastic or mineral raw materials, etc., the invention is not limited here.
  • the height adjustment device In order to achieve a ground-level connection of the individual floor strips to one another, it is known in the prior art to use a button unit which cooperates in a suitable manner with the height adjustment device which is responsible for the vertical position of the screed.
  • the height adjustment device also has the fundamental task of defining the layer thickness of the ground cover material to be incorporated. If this results in a corresponding inaccuracy in the substructure, this must be corrected in the base course and optionally by raising or lowering the screed, which then changes the correspondingly resulting layer thickness of the ground cover material.
  • the button unit comprises a pressure foot held by a probe carrier, the probe carrier is articulated to a support joint and a sensor or switch unit held by a switch carrier is provided and the switch carrier is articulated to the probe carrier at a hinge is.
  • the probe carrier acts together with the sensor or switching unit according to the position of the probe carrier and / or the position of the joint on the probe carrier.
  • the switch carrier has on both sides of the joint extending switch carrier sections. These switch carrier sections can be the same or have unequal lever lengths. As a result of this embodiment of the switch carrier, the switching sensitivity or sensing capability is further improved, since the response of the overall device can be further refined on account of the adjustable lever lengths. This results in an improvement of the switch operability.
  • the feeler carrier is variable in length, in particular telescopic, designed, since this can be done tunable to the desired positioning accuracy adjustment.
  • This positioning accuracy depends on the one hand according to the specifications for the installation, on the other hand also after the design of the material to be installed or the installation environment.
  • the probe carrier may comprise in a preferred embodiment of the invention, on both sides of the joint extending portions, wherein a portion is provided which extends from the joint to the support joint. It is considered advantageous if this portion is shorter than the portion extending from the joint in the direction of the Tastschenkels.
  • the sections may have an aspect ratio of 1: 1 to 1: 4, in particular from 1: 1 to 1: 3, preferably from 1: 1 to 1: 4.
  • the lowering movement of the pressure foot leads to a lowering pivoting movement of the feeler carrier about the rotary joint. Due to the joint, which is arranged on the probe carrier, and the switch carrier moves in the same way. It is favorable that the pressure foot and also the leveling stop are based on the joint of the same side. This results in a rectified moment, which leads to a corresponding counter-torque in the region of the switching arrangement and the pin, which is provided in the switching arrangement, with greater force on the carrier contact surface suppressed.
  • the rectified moment can be influenced by correspondingly advantageous adjustment of the respective carrier section lengths. Depending on the selected section length, the leverage and above the switch hysteresis can be influenced. This results in an improved response or adjustability for this purpose.
  • the above-mentioned length ratios refer to the relationships of the individual sections of the respective carriers to one another, but equally also to the relationships of the switch carrier sections and the Tastangeteil Kunststoffe each other.
  • the above-mentioned aspect ratios represent only corner points, of course, here all intervening length ratios can also be set.
  • the aspect ratios of the switch carrier sections may differ from those of the Tastaniiteil Publishede to each other.
  • the proposals of the prior art are characterized by a pressure foot, which is rigid with respect to its position on the paver and has a sensor unit which measures the distance of the rigidly mounted Tastfusses to the ground level.
  • the pressure foot is now arranged on a pivotable probe carrier which is articulated on a hinge, whereby the Tastfuß is basically against the ground level adjustable or set up on this.
  • the Tastfuß is basically against the ground level adjustable or set up on this.
  • the sensor or switching unit acts in a suitable manner on the height adjustment device and thus closes the control-regulating circuit.
  • Another advantage of the invention lies in the fact that the entire key unit is arranged on the installation paver according to the invention and no additional elements or preparations on the ground or at the construction site, etc. are needed to paragraphless, at ground level (and seamless, but this does not characterize the invention but advantageously further develops) to realize abutting support layers.
  • the vertical position of the sensor or switching unit is variable, in particular variable by the height adjustment device.
  • Such an embodiment ensures that a corresponding vertical adjustments of the position of the screed is also transmitted simultaneously to the position of the sensor and switching unit and thus the reference line of the sensor and switching unit is the same even with a changed position of the reference surface (the ground level).
  • the senor or switching unit is held by a switch carrier, which is articulated to the probe carrier at a joint.
  • the probe carrier scans the raising or lowering movement of the pressure foot due to the changing ground level, this height information is transmitted to the sensor or switching unit via this arrangement. In addition, however, also affects the adjustment of the height adjustment device on the switch carrier or the vertical position of the sensor or switching unit. It should be noted in this context that the term vertically describes here any movement or direction which describes at least a portion in the vertical direction, optionally also obliquely to the vertical.
  • the joint is located on the probe carrier between the pressure foot and the support joint.
  • the joint between the wearer's joint and the pressure foot is arranged fairly centrally or centrally.
  • the resulting section lengths can also be different or significantly different (for example greater than the ratio 1.5: 1 or 2: 1).
  • both the section from the touch foot to the joint, as well as the section from the joint to the support joint be greater or smaller than the other section.
  • the vertical position of the support joint is variable, by the height adjustment device is variable, wherein the height adjustment device raises or lowers the support joint in the same way as the screed.
  • the position of the support joint ultimately determines the inclination angle of the probe carrier and thus also the control of the sensor or switching unit.
  • a similar movement in the vertical direction results in the reference layer also adapting dynamically to the desired layer thickness of the ground cover material to be applied or to the variable position of the floor level.
  • the screed and the support joint are cleverly arranged on a common connection carrier and thus rigidly coupled together.
  • a leveling stop is provided on the sensor or switching unit or the switch carrier.
  • the leveling stop is a movement, in particular a rotation of the Sensor or switching unit reached around the joint.
  • the invention is designed very flexible. It is possible that this leveling stop is realized both in the independently mounted sensor or switching unit, as well as in the solution in which the sensor or switching unit is arranged on the switch carrier.
  • the invention comprises a variable by the height adjustment device in its vertical position, cooperating with the leveling abutment element.
  • this contact element is changed in the same way as the screed or the support joint in its vertical position.
  • the contact element is connected to a common carrier with at least the screed and / or the support joint or is raised or lowered in the same manner by the height adjustment device. That's it
  • Investment element for example, as a stop or support aussentbar. When interacting with the leveling stopper, it may be brought into operative position above, below or to the side of it.
  • the configuration of the switch carrier is similar to a rocker, such that the joint, on which the switch carrier is arranged on the probe carrier, is located between the leveling stop and the sensor or switching unit. This ensures that is rotated by an interaction of the leveling stop, for example, as proposed by the invention, with the contact element of the switch carrier about the axis of the joint and then the sensor or switching unit undergoes a corresponding change in position or moment or force.
  • the sensor or switching unit defines at least three positions and the sensor or Switching unit cooperates with a carrier contact surface of the Tastangos such that the sensor or switching unit is able to take one of the three positions, namely raising or lowering the height adjustment device and a neutral position.
  • This preferred embodiment of the sensor or switching unit can be realized in both variants provided according to the invention.
  • the invention encompasses both a solution in which the sensor or switching unit is not supported by the probe carrier, but cooperates with this, as well as the variant in which the sensor or switching unit as described connected via the switch carrier and the hinge to the probe carrier or is involved.
  • the sensor or switching unit takes one of the three positions and controls mutatis mutandis the height adjustment, which in turn raises the screed and the other associated elements or lowered or in their position not changed.
  • the senor or switching unit is designed as a switching arrangement and a pin of this switching arrangement cooperates against the force of a spring with the carrier contact surface and occupies one of the at least three positions.
  • the screed can be heated.
  • the floor covering material facing the bottom cover material can be heated on the screed. This energy is useful, for example, for densification or solidification or for increasing the lubricity of the binder of the ground cover material.
  • the proposal according to the invention is very variable in terms of the design of the pressure foot realized. So will be in one first variant proposed a relatively short pressure foot whose length is in particular less than 10% of the length of the installation tiger. Of course, with a relatively short touch foot, a very quick response of the height adjustment device (occurrence of corresponding floor level variations) is detected. With a slightly longer feeler foot, the reaction rate is reduced in this regard, which is why in an alternative embodiment of the invention, a long pressure foot is provided, the length of which is greater than 80% of the length of the finishing tiger. In specially designed situations, it may be particularly advantageous that the long pressure foot is preferably greater than 80% of the length of the installation tiger.
  • the pressure foot is connected via a Tastschenkel with the probe carrier.
  • the pressure foot is mounted in a bearing point on the Tastschenkel, in particular, the bearing point along at least a portion of the longitudinal extent of the pressure foot is variable.
  • the bearing point in such a configuration by appropriate clamping devices along the longitudinal extension of the pressure foot arbitrarily adjustable.
  • the Tastschenkel extends substantially vertically and carries at its lower end the Tastfuß.
  • the pressure foot scans the ground level next to the paver, for this purpose the probe leg is mounted or held in a substantially horizontally extending probe carrier.
  • the effective length of this Tastangos is variable such that it is telescopic, for example. Thereby, the distance is adjustable, in which the ground level is scanned next to the paver.
  • the height adjustment device has at least one guide, for example an adjusting spindle or the like, and a height adjustment drive, for example a rotary drive for the adjusting spindle (for example designed as an electric motor).
  • a height adjustment drive for example a rotary drive for the adjusting spindle (for example designed as an electric motor).
  • the abutment element is arranged on the guide, wherein the abutment element in particular as on the adjusting spindle
  • the adjusting spindle carries, for example by another nut the screed and / or the beam joint.
  • the embodiment of the invention is selected so that, depending on the switch position of the sensor or switching unit, a raising or lowering command to the height adjustment, in particular to the height adjustment.
  • the length of the switch carrier piece between the joint and the leveling stop is smaller than the length of the switch carrier piece between the joint and the sensor or switching unit.
  • the length of the switch carrier piece between the joint and the leveling stop is less than half, in particular less than 1/3 of the length of the switch carrier piece between the joint and the sensor or switching unit.
  • the proposal according to the invention can be realized both with a contactless as well as a touching scanning of the ground level by the feeler foot.
  • a contactless scanning of the ground level by the pressure foot a special drive for the position of the pressure foot is provided and provided thereby sensor arrangement only causes the distance of the pressure foot above the floor level remains the same.
  • a mechanical impairment of the soil level can be avoided by the pressure foot.
  • the correction of the position of the pressure foot relative to the ground level for example, due to corresponding unevenness of the ground level, then lead to a corresponding change in position of the pressure foot itself and this also to a corresponding rash of the Tägerägers, which carries the Tastfuß and its support joint.
  • the touching scanning of the ground level is provided by the pressure foot, which dispenses with the relatively complicated sensor structure.
  • the paver paver is designed as a self-propelled device, that is to say with its own chassis and traction drive, or else as a towed vehicle.
  • the self-propelled arrangement is to be preferred, since this is basically space-saving and leads to a more accurate work result, but the dragged configuration is also possible and provided according to the invention.
  • the installation paver 1 according to the invention is in Fig. 1 shown.
  • the paver 1 has a caterpillar drive 11, by which it is possible that the paver can work reliably even on poorly fixed ground.
  • the preferred direction of travel of the installation tiller 1, in particular its direction of installation, is directed to the left and identified by the arrow 10.
  • the rear arrangement of the seat 12 allows an immediate control of the work result, as well as the screed 2 in the rear of the prefabricated tiger 1 (based on its direction of travel 10) is located.
  • the screed 2 is substantially behind the Tastfuß 40 and is covered by this.
  • Fig. 2 the paver paver 1 is shown in front view.
  • the direction of travel 10 is in this case to the viewer.
  • the screed 2 extends transversely, in particular at right angles to the direction of travel 10 and is arranged in the lower region of the paver 1.
  • 11a and 11b the two caterpillars of the caterpillar drive 11 are marked, which extend on the left and right on the paver 1.
  • FIG. 3 shows a partial section through the paver 1 in height of the height adjustment device 3, wherein the representation is divided, left and right different positions of the Tastrichs 41 are shown.
  • Fig. 3 In particular, the key unit 4 is clearly visible.
  • the button unit 4 is connected via the support joint 42 with the frame 13 of the installation tiller.
  • the support joint 42 is mounted vertically displaceable in the frame 13, the vertical position of the support joint 42 is adjusted by the height adjustment device 3.
  • the button unit 4 comprises a pressure foot 40, which rests on the ground level 14 laterally next to the paver paver 1.
  • the button unit 4 is mounted on the side of the built-in paver on which a strip of ground cover material has just been installed on the respective surface and to which a ground-level connection of the now just to be installed Bodendeckmaterial strip takes place.
  • the position of the support joint 42 is approximately 1/3 of the total width of the prefabricator, resulting in a corresponding lever length of the feeler 41 results.
  • the probe carrier 41 is telescopically extendable by a retractable tube 41 'is provided, which is inserted into the probe carrier 41.
  • the Tastfuß 40 is located on the Tastschenkel 43, the Tastschenkel 43 includes substantially at an angle, in particular at right angles to the end of the Tastangos 41 or, as shown here, at the telescoping tube 41 'and extends downwards.
  • the sensor or switching unit 5 is supported by a switch carrier 50.
  • the switch carrier 50 in turn is articulated via a hinge 51 with the probe carrier 41.
  • Fig. 4 and Fig. 5 show the specific embodiment of the sensor or switching unit 5 on a larger scale.
  • the height adjustment device 3 is characterized by a height adjustment drive 30, for example an electric motor, which is arranged in the upper region.
  • the height adjustment device 3 further includes a guide or adjusting spindle 31, which is arranged oriented vertically to the paver paver 1.
  • the height adjustment drive 30 sets the adjusting spindle 31 in rotation about its longitudinal axis.
  • On the adjusting spindle 31 are one or more spindle nuts that change their axial position due to the rotation of the adjusting spindle 31.
  • a storage of the screed 2 and / or the support joint 42 can be realized, wordurch these elements are suitably height adjustable, in particular mounted vertically adjustable in height.
  • Sensor or switching unit shown here is designed in particular as a switching arrangement 52.
  • this switching arrangement has a pin 53 which protrudes from the bottom of the switching arrangement 52 and is axially movable.
  • This pin 53 is supported by a spring of the switching arrangement 52 and cooperates with the carrier contact surface 44 of the Tastangos 41.
  • the carrier contact surface 44 is relatively close to the support joint 42.
  • the invention includes, of course, also arrangements that implemented spatially reversed are.
  • the switching arrangement 52 is now chosen according to the embodiment shown here so that the switching arrangement 52 occupies at least three different positions. These three different positions are indicated by the axial position of the pin 53, which results from the interaction of the pin 53 with the carrier contact surface 44, against the force of the spring in the switching assembly 52.
  • the basic configuration of the switch carrier 50 is rocker-like, such that the switch carrier 50 extends on both sides of the joint 51.
  • the right GmbHeristeilmila 54 carries at its outer end, the switching assembly 52, the left Heidelbergerussiteil consensus 55, which extends from the joint 51 to the left up to a leveling stop 56 arranged there, is significantly shorter.
  • the operation of the leveling stop 56 results in particular Fig. 6 ,
  • the leveling stop 56 acts (directly or indirectly) together with the abutment element 32.
  • the abutment element 32 is formed as a spindle nut and is located on the adjusting spindle 31. In this case, the abutment element 32 on a support plate 33 on which the leveling abutment 56 is able to lie over a large area.
  • the leveling 56 is the end portion of the pivotally held on the hinge 51, the adjusting spindle 31st As a result, the position of the switching arrangement 52 relative to the probe carrier 41 can be influenced.
  • the sensor or switching unit 5, in particular the switching arrangement 52 defines at least three positions and the sensor or switching unit 5 of a carrier contact surface 44 of the feeler carrier 41 cooperates such that the sensor or switching unit 5, in particular the switching arrangement 52 one of three positions, raising or lowering the height adjustment or neutral occupies.
  • the neutral position is indicated by the fact that the touchpad 40 rests on the ground level 14, the leveling abutment 56 bears against the contact element 32 and the pin 53 rests on the carrier contact surface 44 and the switching arrangement 52 is in a first depressed position, this first switch position no signal for the height adjustment device 3 or their height adjustment 30 gives off.
  • the lowering position is in particular by Fig. 5 clear. It is good to see that the axial position of the abutment element 32 on the adjusting spindle 31 is higher up than in Fig. 4 , The feeler 40 has in the position after Fig. 5 the desire to sink. This lowering movement of the feeler carrier 41 is limited by the leveling stop 56 or predetermined in their length. The chain of action is as shown below.
  • the lowering movement of the pressure foot 40 leads to a lowering pivot movement of the feeler carrier 41 about the pivot 42. Due to the joint 51, which on the Tastango 41st
  • the switch carrier 50 moves in the same way. It is favorable that the feeler foot 40 and also the leveling stop 56 is based on the joint 51 on the same side. This results in a rectified torque, which leads to a corresponding counter-torque in the region of the switching arrangement 52 and presses the pin 53 with greater force on the carrier contact surface 44.
  • the unequal lever lengths of the two left and right of the hinge 51 extending switch carrier sections 54 and 55 as this further improves the response of the switching arrangement and the positioning accuracy is increased.
  • the length of the probe carrier 41 is variable (because telescopic).
  • the hinge 51 is arranged centrally. Otherwise, however, the right portion of the Tastangos 41, which extends from the joint 51 to the support joint 42, shorter than the portion of the Tastangos 41 which extends from the hinge 51 to the outside, to the ends connected Tastschenkel 43.
  • the aspect ratios can vary from about 1: 1 to 1: 2, 1: 3 or even 1: 4, which also results in a higher measurement or Sensiergenautechnik due to the improved response is achieved. Due to the leverage effect and the switch hysteresis which can be influenced by this, an improvement in the measuring or sensing accuracy is also favorably influenced.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Road Paving Machines (AREA)
  • Road Repair (AREA)

Claims (14)

  1. Finisseuse mobile (1) à utiliser lors de la mise en place de matériau de recouvrement de sol, de couches de soutien élastiques ou de chapes de sol, de façon à ce que la finisseuse (1) comporte une planche de nivellement (2) destinée à l'égalisation du matériau de sol de façon à ce que la position verticale de la planche de nivellement (2) peut être modifiée à l'aide d'un dispositif d'ajustement de hauteur (3) et de façon à ce que la finisseuse comporte une unité tactile (4) avec un pied palpeur (40) permettant de localiser le niveau du sol à côté de la finisseuse et de façon à ce que l'unité tactile (4) permet de modifier la position de la planche de nivellement (2) via le dispositif d'ajustement de hauteur (3) afin de pouvoir réaliser un raccord plan entre le matériau de recouvrement de sol et le niveau du sol par ailleurs, et de façon à ce que l'unité tactile (4) comprend un pied palpeur (40) maintenu par un support palpeur (41) lequel est supporté de façon mobile par une articulation de support (42) et de façon à ce qu'une unité de capteur ou de commutation (5) maintenue par un support de commutateur (50) est prévue de façon à ce que le support de commutateur (50) est maintenu de façon articulé au niveau du support de palpeur (41) par une articulation (51) de façon à ce que le support de palpeur (41) peut interagir avec l'unité de capteur ou de commutation (5) en fonction de la position du support de palpeur (41) et/ou de la position de l'articulation (51) sur le support de palpeur (41), caractérisée en ce que le support de commutateur (50) possède des éléments de support de commutation (54) s'étendant des deux côtés de l'articulation (51) et en ce que la position verticale de l'articulation de support (42) peut être modifiée par le dispositif d'ajustement de hauteur (3) de façon à ce que le dispositif d'ajustement de hauteur (3) peut soulever ou abaisser l'articulation de support (42) de la même façon à ce que la planche de nivellement (2) et en ce qu'une butée de nivellement (56) est prévue au niveau de l'unité de capteur ou de commutation (5) ou au niveau du support de commutateur (50) ainsi qu'un élément de butée (32) interagissant avec la butée de nivellement (56) et dont la position verticale pouvant être modifiée par le dispositif d'ajustement de hauteur (3) et en ce que l'unité de capteur ou de commutation (5) définie au moins 3 positions et en ce que l'unité de capteur ou de commutation (5) pouvant interagir avec une surface de contact (44) du support de palpeur (41) de façon à ce que l'unité de capteur ou de commutation (5) peut se positionner dans une des 3 positions possibles, soulever ou abaisser le dispositif d'ajustement de hauteur (3) ou la position neutre.
  2. Finisseuse selon la revendication 1, caractérisée en ce que les deux éléments de support de commutateur (54) possèdent des longueurs de levier identiques ou différentes.
  3. Finisseuse mobile selon la revendication 1 ou 2, caractérisée en ce que le support de palpeur (41) est construit de façon à permettre de varier sa longueur et en particulier par une construction télescopique et en ce que le support de palpeur (41) possède des éléments s'étendant des deux côtés de l'articulation (51) dont un élément s'étendant de l'articulation (51) vers l'articulation de support (42) et étant plus court que l'élément s'étendant de l'articulation (51) selon la direction vers le levier palpeur (43).
  4. Finisseuse selon une des revendications 1 à 3, caractérisée en ce que les éléments de support possèdent un rapport de longueurs allant de 1:1 à 1:4, en particulier allant de 1:1 à 1:3 et de préférence de 1:1 à 1:4.
  5. Finisseuse selon une des revendications précédentes, caractérisée en ce que la position verticale de l'unité de capteur ou de commutation (5) peut être modifiée par le dispositif d'ajustement de hauteur (3) et/ou en ce que l'unité de capteur ou de commutation (5) est supportée par un support de commutateur (50) fixé de façon articulée au niveau du support de palpeur (41) à une articulation (51) qui est située au niveau du support de palpeur (41) entre le pied palpeur (40) et l'articulation de support (42).
  6. Finisseuse selon la revendication 1, caractérisée en ce que l'articulation (51) est située au niveau du support de commutateur (50) entre la butée de nivellement (56) et l'unité de capteur ou de commutation (5).
  7. Finisseuse selon une des revendications précédentes, caractérisée en ce que l'unité de capteur ou de commutation (5) est configurée comme un dispositif de commutation (52) de façon à ce qu'une tige (53) du dispositif de commutation (52) agit contre la force d'un ressort sur la surface de contact (44) du support et se place en une des trois ou plus de trois positions dont la position neutre est définie par la configuration dont le pied palpeur (40) est en contact avec le niveau du sol (14), la butée de nivellement (56) est en contact avec l'élément de butée (32), la tige (53) est en contact avec la surface de contact (44) du support et le dispositif de commutation (52) est en position appuyée et/ou en ce que la position « soulever » est caractérisée par le soulèvement du pied palpeur (40) et résultant ainsi dans le soulèvement de la tige (53) de la surface de contact (44) et par la position ainsi définie déchargée du dispositif de commutation (52) et/ou en ce que la position « abaisser » est caractérisée par l'abaissement du pied palpeur (40), par exemple en raison d'un creux au niveau du sol (14) résultant en ce que la butée de nivellement (56) appuie sur l'élément de butée (32) et ainsi pousse via l'ensemble articulé à levier du support de commutation (50) au niveau de l'articulation (51) la surface de contact (44) et ainsi la tige (53) en une deuxième position appuyée du dispositif de commutation (52).
  8. Finisseuse selon une des revendications précédentes, caractérisée par une surface de la planche de nivellement (2) pouvant être chauffée et faisant face au matériau de recouvrement de sol de façon à ce que le pied palpeur (40) est maintenu en un point de fixation situé au niveau d'un levier palpeur (43).
  9. Finisseuse selon une des revendications précédentes, caractérisée en ce que le dispositif d'ajustement de hauteur (3) comprend au moins un guidage (31), par exemple une tige de réglage (31) ou un élément similaire et une commande d'ajustement de hauteur (30).
  10. Finisseuse selon une des revendications précédentes, caractérisée en ce que l'élément de butée (32) est situé sur le guidage (31) et en ce que l'élément de butée (32) est en particulier configuré comme un écrou d'ajustement sur la tige de réglage (31).
  11. Finisseuse selon une des revendications précédentes, caractérisée en ce que, en fonction de la position du commutateur de l'unité de capteur ou de commutation (5), un signal de soulèvement ou d'abaissement peut être envoyé au dispositif d'ajustement de hauteur (3) et en particulier à la commande d'ajustement de hauteur (30).
  12. Finisseuse selon une des revendications précédentes, caractérisée en ce que la longueur de l'élément de support du commutateur (55) entre l'articulation (51) et la butée de nivellement (56) est inférieure à celle de l'élément de support du commutateur (54) entre l'articulation (51) et l'unité de capteur ou de commutation (5).
  13. Finisseuse selon une des revendications précédentes, caractérisée en ce que le niveau du sol (14) peut être palpé sans contact ou avec contact à l'aide du pied palpeur (40).
  14. Finisseuse selon une des revendications précédentes, caractérisée en ce que la finisseuse (1) est configurée comme une finisseuse autopropulsée ou tractée.
EP11178944.2A 2010-09-10 2011-08-25 Finisseuse mobile Not-in-force EP2428614B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202010012455U DE202010012455U1 (de) 2010-09-10 2010-09-10 Fahrbarer Einbaufertiger

Publications (3)

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EP2428614A2 EP2428614A2 (fr) 2012-03-14
EP2428614A3 EP2428614A3 (fr) 2015-03-04
EP2428614B1 true EP2428614B1 (fr) 2017-09-20

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EP11178944.2A Not-in-force EP2428614B1 (fr) 2010-09-10 2011-08-25 Finisseuse mobile

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US (1) US8591141B2 (fr)
EP (1) EP2428614B1 (fr)
CN (1) CN102433826B (fr)
DE (1) DE202010012455U1 (fr)

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CN103498407B (zh) * 2013-09-24 2015-12-09 青岛科技大学 一种手推式铺砖机
CN105369720B (zh) * 2015-12-09 2017-05-03 华北理工大学 路缘石铺砌车载机械手
CN107476553B (zh) * 2017-09-01 2019-11-19 湖北麻一建设有限公司 一种用于建筑施工的混凝土摊铺机械
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CN109306650A (zh) * 2018-11-05 2019-02-05 安徽企路石工程技术开发有限公司 路肩石铺设装置
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US11933000B2 (en) * 2020-10-13 2024-03-19 Samuel C. Patterson Depth guide for paving machine

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Also Published As

Publication number Publication date
US20120063847A1 (en) 2012-03-15
DE202010012455U1 (de) 2011-12-12
EP2428614A3 (fr) 2015-03-04
CN102433826A (zh) 2012-05-02
CN102433826B (zh) 2016-02-03
EP2428614A2 (fr) 2012-03-14
US8591141B2 (en) 2013-11-26

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