EP1936037A1 - Compacteur de montage au vehicule - Google Patents

Compacteur de montage au vehicule Download PDF

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Publication number
EP1936037A1
EP1936037A1 EP07018555A EP07018555A EP1936037A1 EP 1936037 A1 EP1936037 A1 EP 1936037A1 EP 07018555 A EP07018555 A EP 07018555A EP 07018555 A EP07018555 A EP 07018555A EP 1936037 A1 EP1936037 A1 EP 1936037A1
Authority
EP
European Patent Office
Prior art keywords
compressor
drive
cultivation compressor
unbalance generator
cultivation
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.)
Granted
Application number
EP07018555A
Other languages
German (de)
English (en)
Other versions
EP1936037B1 (fr
Inventor
Rainer Schrode
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.)
MTS Gesellschaft fur Maschinentechnik und Sonderbauten mbH
Original Assignee
MTS Gesellschaft fur Maschinentechnik und Sonderbauten mbH
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.)
Filing date
Publication date
Application filed by MTS Gesellschaft fur Maschinentechnik und Sonderbauten mbH filed Critical MTS Gesellschaft fur Maschinentechnik und Sonderbauten mbH
Priority to DE502007008622.3A priority Critical patent/DE502007008622C5/de
Publication of EP1936037A1 publication Critical patent/EP1936037A1/fr
Application granted granted Critical
Publication of EP1936037B1 publication Critical patent/EP1936037B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D3/00Improving or preserving soil or rock, e.g. preserving permafrost soil
    • E02D3/02Improving by compacting
    • E02D3/046Improving by compacting by tamping or vibrating, e.g. with auxiliary watering of the soil
    • E02D3/074Vibrating apparatus operating with systems involving rotary unbalanced masses
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02FDREDGING; SOIL-SHIFTING
    • E02F3/00Dredgers; Soil-shifting machines
    • E02F3/04Dredgers; Soil-shifting machines mechanically-driven
    • E02F3/96Dredgers; Soil-shifting machines mechanically-driven with arrangements for alternate or simultaneous use of different digging elements
    • E02F3/967Dredgers; Soil-shifting machines mechanically-driven with arrangements for alternate or simultaneous use of different digging elements of compacting-type tools

Definitions

  • the invention relates to a cultivation compressor according to the preamble of claim 1.
  • a cultivation compressor of the type mentioned is known from the market and is used for cable trenches, seepage slots and other narrow trenches and pits.
  • the known cultivation compressor comprises an upper part, which is rotatably connected to a dome portion.
  • the dome section can in turn, for example via a quick coupling, be connected to a corresponding counterpart on a wheeled or crawler excavator.
  • the advantage of such a compressor is that when compacting No staff has to enter the trench and that the compaction depth is high due to the possible high static contact pressure.
  • such a crop compactor must be very robust compared to a hand-operated compressor in order to withstand the loads applied by the excavator.
  • the dome portion is connected to a tubular upper part, which in turn is connected elastically movable with a lower part comprising a compressor plate.
  • the compressor plate can be set in vibration by means of an unbalance generator. As a result, the soil located below the compactor plate is compressed during operation.
  • the unbalance generator is driven by an axially flanged hydraulic drive.
  • Object of the present invention is to provide a cultivation compressor of the type mentioned, which is particularly robust and provides a particularly uniform compression result.
  • the compactor should build so narrow that it can be used in very small ditches and columns.
  • the lower part is particularly stable against tilt connected to the upper part.
  • a tilting movement of the lower part relative to the upper part is namely effectively prevented or at least significantly reduced by the connecting arm and the stabilizing lever made possible by this between the two connecting devices.
  • the lower part retains its angular position relative to the upper part in all operating situations essentially, so that the add-on compactor can be positioned by the excavator operator with increased precision. This ultimately leads to a more uniform and thus better compaction result.
  • the described advantages are achieved without the width of the add-on compactor must increase.
  • the stabilization of the lower part is namely, as already explained above, realized solely by the upper part extending upwardly connecting arm.
  • the add-on compactor according to the invention can even be built very narrow due to this measure, without the lower part would therefore have an increased tendency to tilt with respect to the upper part.
  • a first development of the cultivation compressor according to the invention is characterized in that the unbalance generator and a (hydraulic) drive of the unbalance generator are arranged one above the other or side by side. Since the Unwuchterzeuger is usually an eccentric rotating mass and this must therefore be arranged with a rotational axis transverse to the longitudinal axis of a compressor plate of the lower part of the attachment compressor, the width of the add-on compactor according to the invention is additionally reduced by the proposed arrangement of unbalance generator and drive, as the from unbalance generator and drive unit formed very compact builds. Another advantage is that despite the compact design, a comparatively large hydraulic drive can be used, which interacts well with the hydraulic systems of conventional excavators, in particular insensitive to fluctuations in the hydraulic pressure and the return pressure, and also requires no complicated hydraulic throttling.
  • Minimum lateral dimensions of the add-on compactor are achieved if the maximum width of at least one section of the upper part pointing towards the lower part and the maximum width of the lower part correspond approximately to the greater length of each of the unbalance generator and the drive.
  • a simple, robust and inexpensive kinematic connection between unbalance generator and drive consists in a belt, for example a wedge or toothed belt.
  • the add-on compactor according to the invention is structurally simple if the connecting arm and a counterpart belonging to the upper part are designed as plates which are parallel to one another.
  • a space-saving accommodation of imbalance generator and drive is made possible when the connecting arm and / or the counterpart have a recess in which the imbalance generator and the drive are arranged.
  • the counterpart comprises two parallel plates, and that the connecting arm is at least partially received between the two plates.
  • Such a “sandwich construction" is robust, space-saving, and also allows a comparatively lightweight design of the lower part, which in turn improves the dynamics required for a good compaction.
  • the second connecting device comprises at least one rubber-metal buffer with a longitudinal axis lying essentially transversely to the unbalanced plane.
  • a rubber-metal buffer has a comparatively high rigidity in the direction of its longitudinal axis, whereas it is comparatively soft in a direction transverse to its longitudinal axis. This creates a kippstabile about a longitudinal axis of a compressor plate of the lower part connection between the lower part and the upper part, without that necessary for a good compaction vibration or shaking movement of the lower part relative to the upper part would be hindered.
  • connection between the lower part and upper part is stiffened by such a second connecting device, which reduces the risk that when the excavator on the attachment compressor exerts a strong vertical force, upper part and lower part rigidly connected together and thereby the vibrations of the attachment compressor on the Excavators are excessively transferred.
  • this measure ensures sufficient decoupling of the lower part from the upper part in most operating situations.
  • the advantages of the add-on compactor according to the invention are particularly evident when the upper part is connected via a rotating device with a dome portion which can be coupled to an excavator, wherein the axis of rotation of the rotary device relative to the lower part has an eccentricity.
  • the dome portion may have the dimensions required for safe coupling to the excavator, and at the same time the top and bottom can be made very narrow, and because of the eccentricity the axis of rotation relative to the lower part of this can easily work directly on an edge of a trench.
  • reference is again made to the DE 102 07 066 C1 the disclosure of which is hereby expressly incorporated into the disclosure of the present invention.
  • a cultivation compressor carries the total reference numeral 10. It comprises an upper part 12 which can be coupled to an excavator, not shown. Furthermore, the cultivation compressor 10 comprises a lower part Part 14 of the lower part 14 is again a horizontal position in the operating position compressor plate 16, on which an unbalance generator 18 and an associated drive 20 are attached (see. FIGS. 2 and 3 and 6 and 7). In FIG. 1 unbalance generator 18 and drive 20 are omitted for reasons of clarity.
  • the upper part 12 comprises a head portion 22 located at the top in the vertical operating position and a foot portion 24 arranged below it and extending in the direction of the bottom portion 14.
  • the foot portion 24 consists essentially of a metal box with two parallel side cover plates 26 and 28 and one front Cover plate 30 and a rear cover plate 32.
  • the two cover plates 30 and 32 are slightly shorter than the two cover plates 26 and 28 to the lower part 14, so that the foot portion 24 to the lower part 14 toward the front and rear is open (reference numerals 34 and 36).
  • an elongated recess 38 and 40 is also provided to the lower part 14 toward each. Their importance will be discussed in greater detail below.
  • the two cover plates 26 and 28 therefore in plan view a fork-shaped shape with the compressor plate 16 facing "tines" 42a to 42d.
  • the head portion 22 of the upper part 12 is integrally formed on the foot portion 24 and projects to the side with a Kragabites 43. He includes one in the FIGS. 1 and 2 only shown schematically rotating device 44, the axis of rotation 46 relative to a longitudinal axis 48 of the compressor plate 16 of the lower part 14 has an eccentricity E.
  • the rotator 44 may be connected to a dome portion 50, to which in turn a corresponding counterpart of an excavator arm (not shown) can be coupled.
  • unbalance generator 18 and drive 20 is still a to the upper part 12 toward extending connecting arm 52.
  • This is made of a plate and in the in the FIGS. 1 to 3 shown mounting position parallel to the two side cover plates 26 and 28 of the upper part 12 and received between them.
  • the connecting arm 52 is rigidly connected by a welded joint 54 to the compacting plate 16.
  • an elongated recess 56 is present in the connecting arm 52.
  • a support plate 58 is attached to the lateral edge of the compressor plate 16, whose dimensions are chosen so that it lies in the installed position within the recess 38 in the cover plate 26 of the upper part 12.
  • Unbalance generator 18 and drive 20 are connected by a V-belt (not visible).
  • V-belt (not visible).
  • FIG. 6 the compactor plate 16 whose width B determines the maximum width of the lower part 14 is only slightly larger than the length L of the support plate 58, unbalance generator 18 and drive 20 (cf. FIG. 6 ). This is even more true for the maximum width L2 of the foot portion 24 of the upper part 12 pointing towards the lower part 14, as seen in FIG FIG. 2 is apparent.
  • the recesses 38, 40 and 56 thus serve to accommodate unbalance generator 18 and drive 20th
  • the connecting arm 52 of the lower part 14 and the side cover plates 26 and 28 of the upper part 12 are connected to each other by a first connecting device 62 arranged adjacent to the compressor plate 16.
  • This first connection device 62 comprises a total of four rubber-metal bumpers 64a to 64d.
  • Their longitudinal axis 66 (only in FIG. 1 drawn for the rubber-metal buffer 64b) lies substantially transversely to an unbalanced plane 68, which is spanned perpendicular to the compressor plate 16 and passes through the longitudinal axis 48 thereof.
  • the rubber-metal bumpers 64a to d are relatively stiff, but comparatively soft in a direction orthogonal thereto.
  • the compressor plate 16 can be vibrated by the unbalance generator 18 relative to the upper part 12 in the unbalanced plane 68 and is still held in the direction of the longitudinal axis 66 fixed relative to the upper part 12.
  • the connecting arm 52 is still connected via a second connecting device 70 with the side cover plate 26 of the upper part 12.
  • the second connector 70 also includes a rubber-metal buffer 64e. Whose longitudinal axis (not shown) is parallel to the longitudinal axes 66 of the rubber-metal buffer 64a-d of the first connection means 62. As shown in FIGS FIGS. 1 to 3 As can be seen, the longitudinal axis of the rubber 'metal buffer 64e of the second connecting means 70 is disposed at a height which in the vertical operating position of the attachment compressor 10 shown in the figures by a distance D above the longitudinal axis 66 of the rubber-metal buffers 64a-d of the first connection means 62 is located. In this way it is prevented that the compressor plate 16 can tilt with respect to the upper part 12 about the longitudinal axis 48.
  • the minimum overall height of the add-on compactor 10 shown is essentially due to the design. This means that the height of the foot portion 24 is ultimately determined by the length of the distance D, and the height of the head portion 22 is determined by the height of the rotator 44 and the necessary accommodation of the required hydraulic components (in FIG. 4 indicated by reference numeral 72). If the rotary device 44 is dispensed with and the dome section 50 is attached directly to the head section 22, the minimum overall height is correspondingly reduced, so that a compact compactor 110 which is particularly compact in height is produced.

Landscapes

  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Mining & Mineral Resources (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Civil Engineering (AREA)
  • Environmental & Geological Engineering (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Paleontology (AREA)
  • Soil Sciences (AREA)
  • Agronomy & Crop Science (AREA)
  • Mechanical Engineering (AREA)
  • Soil Working Implements (AREA)
  • Road Paving Machines (AREA)
EP07018555A 2006-12-23 2007-09-21 Compacteur de montage au vehicule Active EP1936037B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE502007008622.3A DE502007008622C5 (de) 2006-12-23 2007-09-21 Anbauverdichter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102006061398A DE102006061398A1 (de) 2006-12-23 2006-12-23 Anbauverdichter

Publications (2)

Publication Number Publication Date
EP1936037A1 true EP1936037A1 (fr) 2008-06-25
EP1936037B1 EP1936037B1 (fr) 2011-11-09

Family

ID=39289084

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07018555A Active EP1936037B1 (fr) 2006-12-23 2007-09-21 Compacteur de montage au vehicule

Country Status (3)

Country Link
EP (1) EP1936037B1 (fr)
AT (1) ATE532908T1 (fr)
DE (2) DE102006061398A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013189622A3 (fr) * 2012-06-20 2014-02-20 Mts Maschinentechnik Schrode Ag Appareil de compactage du sol

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102011086085A1 (de) 2011-11-10 2013-05-16 MTS Gesellschaft für Maschinentechnik und Sonderbauten mbH Anbaugerät für einen Bagger
DE102013205231B4 (de) 2013-03-25 2016-12-29 Ammann Verdichtung Gmbh Anbauverdichter
DE102013205217B3 (de) * 2013-03-25 2014-09-11 Ammann Verdichtung Gmbh Anbauverdichter
CN112482131A (zh) * 2020-11-10 2021-03-12 周武昌 一种高速公路服务区彩色路面铺装材料的储运装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3592111A (en) * 1969-04-01 1971-07-13 Technology Inc Const Compactor
DE29500811U1 (de) * 1995-01-19 1995-03-02 Humme Thomas Erdverdichter
DE20105427U1 (de) * 2001-03-28 2002-08-08 Josef Martin Ges M B H & Co Kg Anordnung zum auswechselbaren Befestigen eines Bodenverdichters an einem Bagger
EP1411174A2 (fr) * 2002-10-15 2004-04-21 Rammax Maschinenbau GmbH Dispositif pour compacter le sol
DE202005006059U1 (de) * 2005-04-15 2005-06-23 MTS Gesellschaft für Maschinentechnik und Sonderbauten mbH Anbauverdichter mit einstellbarer Erregermasse

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1264349B (de) * 1960-04-05 1968-03-21 Juerg H Brigel Selbstfahrender Ruettelverdichter
US3128682A (en) * 1963-08-23 1964-04-14 Benny L Thompson Apparatus for compacting earth and other materials
US3427939A (en) * 1965-09-13 1969-02-18 Allied Steel Tractor Prod Inc Vibratory compacter
DE1708533A1 (de) * 1968-03-15 1969-11-27 Frisch Geb Kg Eisenwerk Halterung fuer Plattenruettler an einem Fahrzeug
US3561336A (en) * 1969-01-21 1971-02-09 Allied Steel Tractor Prod Inc Hydraulic vibratory compactor
DE2231404A1 (de) * 1971-11-01 1973-05-03 Allied Steel Tractor Prod Inc Vibrations-verdichtungsvorrichtung
US3917426A (en) * 1974-06-05 1975-11-04 Hed Corp Vibratory compactor
EP0220373B2 (fr) * 1985-10-29 1994-12-14 Hitachi Construction Machinery Co., Ltd. Dispositif de compaction par vibration
DE10355172B3 (de) * 2003-11-26 2005-06-02 MTS Gesellschaft für Maschinentechnik und Sonderbauten mbH Verdichtervorrichtung eines Baggers

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3592111A (en) * 1969-04-01 1971-07-13 Technology Inc Const Compactor
DE29500811U1 (de) * 1995-01-19 1995-03-02 Humme Thomas Erdverdichter
DE20105427U1 (de) * 2001-03-28 2002-08-08 Josef Martin Ges M B H & Co Kg Anordnung zum auswechselbaren Befestigen eines Bodenverdichters an einem Bagger
EP1411174A2 (fr) * 2002-10-15 2004-04-21 Rammax Maschinenbau GmbH Dispositif pour compacter le sol
DE202005006059U1 (de) * 2005-04-15 2005-06-23 MTS Gesellschaft für Maschinentechnik und Sonderbauten mbH Anbauverdichter mit einstellbarer Erregermasse

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013189622A3 (fr) * 2012-06-20 2014-02-20 Mts Maschinentechnik Schrode Ag Appareil de compactage du sol

Also Published As

Publication number Publication date
EP1936037B1 (fr) 2011-11-09
DE502007008622C5 (de) 2018-11-15
DE102006061398A1 (de) 2008-06-26
ATE532908T1 (de) 2011-11-15

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