EP2996461A1 - Dispositif permettant d'extraire des souches d'arbres - Google Patents

Dispositif permettant d'extraire des souches d'arbres

Info

Publication number
EP2996461A1
EP2996461A1 EP13723743.4A EP13723743A EP2996461A1 EP 2996461 A1 EP2996461 A1 EP 2996461A1 EP 13723743 A EP13723743 A EP 13723743A EP 2996461 A1 EP2996461 A1 EP 2996461A1
Authority
EP
European Patent Office
Prior art keywords
tree stump
expel
cylinder portion
sawing
stump
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.)
Withdrawn
Application number
EP13723743.4A
Other languages
German (de)
English (en)
Inventor
Lennart Nyman
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.)
Stubbfrasen I Trangsviken AB
Original Assignee
Stubbfrasen I Trangsviken AB
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 Stubbfrasen I Trangsviken AB filed Critical Stubbfrasen I Trangsviken AB
Publication of EP2996461A1 publication Critical patent/EP2996461A1/fr
Withdrawn legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G23/00Forestry
    • A01G23/02Transplanting, uprooting, felling or delimbing trees
    • A01G23/06Uprooting or pulling up trees; Extracting or eliminating stumps
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G23/00Forestry
    • A01G23/02Transplanting, uprooting, felling or delimbing trees
    • A01G23/06Uprooting or pulling up trees; Extracting or eliminating stumps
    • A01G23/062Pulling up trees or stumps
    • A01G23/065Pulling up trees or stumps in a substantially vertical plane

Definitions

  • the present invention pertains to a device for extracting a tree stump from the ground, which device utilizes an annular sawing means for detaching the tree stump from its roots.
  • the tree stump is a valuable resource since it comprises a large amount of fiber material, but the removal of tree stumps is also important to facilitate plantation of new trees and to decrease problems with root disease. Since fungal inoculums residing in roots and stumps after final felling can remain viable for decades, there is an increased risk of mortality in subsequently planted trees.
  • a device for extracting a tree stump from the ground according to the above is disclosed in SE524015C2, which shows a device which comprises an annular sawing means arranged in a cylinder portion enclosing an internal space.
  • the sawing means is arranged for simultaneous rotation and advancement along its axis of rotation for detaching a tree stump from its roots in the ground.
  • the device further comprises an expel means arranged inside the cylinder portion which, upon activation, in respect thereto is downwardly movably arranged for expelling the detached tree stump from the internal space.
  • the known device for extracting tree stumps is generally advantageous in that it provides a fast en simple extraction of tree stumps from the ground without simultaneously extracting the typically extensive root system thereof.
  • the annular sawing means for the known device is a wearing part which requires frequent and time- consuming maintenance or replacement.
  • the inventive concept of the device for extracting a tree stump from the ground of the present invention is based on an insight that by controlling the application of the sawing means into the ground, its life time expectancy increases and the detaching of the tree stumps becomes more efficient and stable.
  • a device for extracting a tree stump from the ground comprising: an annular sawing means for detaching the tree stump from its roots in the ground, which sawing means comprises a cylinder portion having an opening.
  • the cylinder portion encloses an internal space for confining the tree stump, an expel means arranged inside the cylinder portion, which expel means in respect thereto is movably arranged, and a feeding advancement mechanism of the sawing means arranged to control the expel means to bear against the tree stump during detaching thereof.
  • the feeding advancement means is arranged for controlling a current vertical position of the sawing means along its axis of rotation by controlling the expel means, which in contrast to the known device above, is activated during detaching of the tree stump, and arranged to bear against the tree stump at substantially all times during detaching of the tree stump. This provides a more controlled operation of the sawing means as it provides stabilization during sawing.
  • the device comprises a sensor means for detecting a working condition of the device being one of a current contact pressure of the sawing means, a current contact pressure of the expel means, and a current rotation speed of said sawing means, which is advantageous e.g. to initially detect when the expel means actually bears against the tree stump, or to detect when the applied pressure load of the sawing means to the ground is too big.
  • the sensor means may for instance be a hydraulic compression force sensor, any other applicable force sensor or pressure sensor, or a revolution counter.
  • the feeding advancement mechanism is arranged to, based on the detected working condition control the expel means, obtain or preserve a predetermined working condition during detaching of the tree stump. For instance, as the sawing means is lowered over the tree stump and subsequently digs through the ground and the roots, the contact pressure between the expel means and the tree stump will increase. To preserve a preset/predetermined contact pressure value, the expel means is thus continuously adjusted to let the tree stump be further received inside the cylinder portion, which in turn lowers the vertical position of the sawing means and allows it to keep sawing further into the ground. Further, as the sawing means is lowered over the tree stump, either by its own weight or by an external pressure load being applied, e.g.
  • the contact pressure between the sawing means and the ground/tree roots can exceed or be less than a predetermined optimal contact pressure value.
  • the expel means is controlled in response to detecting a current working condition of the sawing means, and in response thereto continuously adjust the expel means to let the tree stump be further received inside the cylinder portion or to push it outwards. This in turn controls the vertical position of the sawing means and thereby controls the contact pressure between of the sawing means.
  • the feeding advancement mechanism is further arranged to control the expel means in response to the rotation speed of the sawing means. If the rotation speed decreases for instance due to high resistance in the ground (or by the contact pressure increasing on the sawing means as it is pushed into the ground), the expel means is adjusted to push the tree stump a short portion out of the cylinder portion, thereby raising the vertical position of the sawing means. As the sawing means is lifted, the rotation speed is allowed to increase to a predetermined rotation speed again. This is advantageous as the wear on the sawing means decreases, and the risk of the sawing means getting stuck decreases.
  • the expel means comprises a stem and a supporting element.
  • the supporting element is preferably a circular plate having a diameter close to an inner diameter of the cylinder portion, which is advantageous to stabilize the rotation of the sawing means.
  • the expel means comprises a centering element, which is advantageous to stabilize the rotation of the sawing means.
  • the device further comprises a splitting element arranged for, when being in a first position, at least partly intersecting the opening, thereby providing splitting of the detached tree stump as it is expelled from the sawing means.
  • a splitting element arranged for, when being in a first position, at least partly intersecting the opening, thereby providing splitting of the detached tree stump as it is expelled from the sawing means.
  • the splitting element is arranged to be movable between at least the first position and a second position where it is distanced from the opening.
  • the latter position allows for the sawing means to work freely and thereby facilitates detaching of the tree stump from the ground.
  • the device further comprises a positioning mechanism for controlling the position of the splitting element.
  • the positioning mechanism comprises a support element which is arranged to at least partly bear against the cylinder portion when the splitting element is arranged in the first position.
  • the support element advantageously increases the stability of splitting means and the device as the tree stump is expelled and split.
  • a method for controlling feeding advancement of a device for extracting a tree stump according to the invention from the ground comprising controlling the expel means to bear against said tree stump during detaching of the tree stump.
  • it further comprises detecting a working condition of the device being one of a current contact pressure of the sawing means, a current contact pressure of the expel means, and a current rotation speed of the sawing means; and controlling a vertical position of the sawing means along its axis of rotation based on the detected working condition.
  • the step of controlling comprises adjusting a vertical position of the expel means.
  • a second device for extracting a tree stump from the ground comprising an annular sawing means for detaching the tree stump from its roots in the ground comprising a cylinder portion having an opening.
  • the cylinder portion encloses an internal space for confining the tree stump, an expel means arranged inside the cylinder portion, and which in respect thereto is downwardly movably arranged for expelling the detached tree stump from the internal space, and a splitting element arranged for, when being in a first position, at least partly intersecting the opening, thereby providing splitting of the detached tree stump as it is expelled from the sawing means.
  • the splitting element is arranged to be movable between at least the first position, and a second position where it is distanced from the opening.
  • the second device further comprises a positioning mechanism for controlling the position of the splitting element.
  • the positioning mechanism comprises a support element which is arranged to at least partly bear against the cylinder portion when the splitting element is arranged in the first position.
  • the splitting element comprises at least one elongated knife blade or splitting wedge.
  • the splitting element is arranged to split the stump into more than two pieces.
  • the splitting element is I-shaped, Y-shaped, or star shaped.
  • Fig. la) and b) are schematic illustrations showing a cut open cross sectional side view of an embodiment of a device according to the present invention.
  • Fig. 2a) - 2c) are schematic illustrations showing different side views of an embodiment of a device according to the present invention. DESCRIPTION OF PREFERRED EMBODIMENTS
  • Fig. la is a schematic illustration showing a partly cut open cross sectional side view of an embodiment of a device for extracting a tree stump from the ground according to the present invention, which for simplicity herein after is referred to as "stump extractor device".
  • the shown stump extractor device 100 comprises a sawing means 110 comprising a hollow cylinder 1 15 which has an open end 116, and which encloses a space 117.
  • the cylinder 115 is adapted to rotate about its central axis x - x.
  • the cylinder 115 is rotatably arranged with respect to a support structure 140, here by means of a slewing bearing.
  • a drive mechanism for the sawing means here a hydraulic drive mechanism, is arranged inside the support structure 140 (not shown).
  • connection element 150 is arranged on the supporting structure 140 to which a sub frame of e.g. a crane of a suitable carrier vehicle, like for instance an excavator, or a forest machine is connected when the stump extractor device 100 is used (not shown).
  • a sub frame of e.g. a crane of a suitable carrier vehicle, like for instance an excavator, or a forest machine is connected when the stump extractor device 100 is used (not shown).
  • the lower rim 118 at the open end 116 of the cylinder 115 is arranged having serrations, cutters, a toothing or similar.
  • Detaching of a tree stump is done by lowering the cylinder 115 over the tree stump while the sawing means 110 is activated.
  • the cylinder 115 is preferably oriented such that its central axis x-x, and a central axis of the tree stump substantially coincide.
  • the sawing means 110 i.e. lower rim 118, cuts through the dirt in the ground and through roots of the tree stump and thereby detaches the tree stump.
  • the sawing means 110 is then lifted by means of the crane, and due to remaining portions of the roots or buttresses of the stump core and dirt etc. putting pressure towards the inner side of the cylinder 115, the detached stump core remains inside the cylinder 115 during the lift.
  • the stump extractor device 100 further comprises expel means 130 for expelling the detached tree stump from the sawing means 110.
  • the expel means 130 comprises a plate 132 carried by a lower end of a stem 133.
  • the plate 132 is perpendicularly oriented with respect to the stem 133.
  • the stem 133 is here a piston rod coupled to a double-acting hydraulic cylinder system, which is arranged inside and fixated to the supporting structure 140.
  • a cylinder element 134 in which a piston connected to the piston rod moves back and forth upon activation, is arranged inside the supporting structure 140, while the piston rod, i.e.
  • stem 133 which is coupled to the cylinder element 134, operates within the space 117 of the sawing means 110.
  • the stem 133 is arranged such that its operation coincides with the central axis x-x of the cylinder 115.
  • the stem 133, and thereby the expel means 130 is fully expelled from the supporting structure 140.
  • the expel means 130 is shown when the stem 133 is retracted into the cylinder element 134, which will be the case when a tree stump is present inside the cylinder 115.
  • the expel means 130 is utilized to after detaching of the tree stump, i.e. when a tree stump has been lifted from the ground and is confined inside the cylinder 115, expel the tree stump from the sawing means 110. That is, the stem 133 is then operated to push out the tree stump from the cylinder 115.
  • the expel means 130 is initially in its fully expelled position as illustrated in Fig. la) such that when the cylinder 115 is lowered from above over the tree stump, the plate 132 bears against the top of the tree stump.
  • the stump extractor device comprises a sensor means for detecting a working condition of the stump extractor device, and a feeding advancement mechanism arranged for controlling a current vertical position of the sawing means along its axis of rotation based on the detected working condition.
  • the hydraulic cylinder system is actuated, e.g. by means of a hydraulic drive system, and the stem 133 is pushed along the central axis x-x of the cylinder 115 pushing the plate 132 towards the tree stump present at the open end 16 or being at least partly inside the space 117, such that the plate 132 and an optional pin element 131 is pressed with a predetermined contact pressure against the tree stump.
  • This advantageously stabilizes the rotary operation of the sawing means 110.
  • sensor means here a hydraulic compression force sensor of the hydraulic drive system, is utilized to detect a current working condition of the stump retractor device.
  • the pressure in the hydraulic drive system, which drives the sawing means indicates the current working load acting on the sawing means, corresponding to the contact pressure on the sawing means.
  • a high hydraulic pressure indicates a heavy working load (a heavy working condition of the sawing means), and vice versa.
  • the current vertical position of the sawing means 110 along its axis of rotation during detaching of the tree stump is controlled in response to the detected working condition. As the sawing means 110 is pushed down over the tree stump, the expel means 130 is controlled to maintain a predetermined working condition, e.g.
  • the contact pressure of the sawing means and the tree stump or the speed of rotation of the sawing means by retracting or expelling the stem 133 to allow the tree stump to enter or to be pushed outwardly from the cylinder 115, thereby providing lowering or raising of the sawing means over the tree stump, in a controlled manner.
  • the control of the expel means, and thereby the current vertical position of the sawing means is further done in response to a current rotation speed of the sawing means. If the rotation speed of the sawing means decreases below a given threshold value or, e.g. because the cylinder is lowered to quickly or if the ground is very hard, the expel means are pushed out to lift the sawing means from the ground/roots to maintain a predetermined rotation speed.
  • the support element of the expel means cf. plate 132 above
  • a centering element here in the form of a pin element 131 (optional) which is pressed into the top of tree stump during sawing thereby facilitating for the sawing means to run true.
  • the diameter of the plate 132 is preferably selected to be close to, but less than, an inner diameter of the cylinder 115.
  • the inner surface of the cylinder is according to an embodiment of the device provided with flat distance elements (not shown) arranged circumferentially to the plate 132 and evenly distributed about the inner surface, to provide a distance between the rotating sawing means 110 and the plate 132 during operation.
  • the free end of the expel means, the end of stem 133 is arranged with no plate or with some other applicable support element, other than the shown plate 132.
  • the diameter of the cylinder 115 is typically adapted to the size of the tree stumps to be extracted from the ground.
  • a cylinder diameter of at least 20 - 40 cm is applicable.
  • a cylinder diameter of about 80 -100 cm (or more) is applicable.
  • the diameter of the cylinder 115 is selected to be less than the tree stump diameter, thereby providing a cylinder shaped stump core, i.e. a stump core without any buttresses.
  • a stump extractor device 200 with a similar structure as described above with reference to Fig. 1, i.e. which comprises a sawing means 110 comprising a hollow cylinder 115 which has an open end, opening 116, and which encloses a space 117.
  • the cylinder 115 is adapted to rotate about its central axis x - x.
  • the cylinder 115 is rotatably arranged with respect to a support structure 140.
  • the stump extractor device 200 further comprises a splitting means 160 arranged for splitting the detached tree stump as it is expelled from the cylinder 115.
  • the splitting means comprises a splitting element in the form of a knife blade 161, which is connected to a positioning mechanism 162 which enables the knife blade 161 to be folded between a first position, and a second position.
  • the knife 161 In the first position, the knife 161 is positioned vertically below the opening 116 of the cylinder 115, as is shown in Fig. 2a.
  • the splitting element is positioned in the first position such that the knife 161 is oriented with an edge 161b thereof facing the opening 116 of the cylinder 115.
  • the knife blade 161 splits it into two pieces.
  • the knife 161 is here positioned at a center of the open end 116, and thereby intersects the central axis x-x- of the stump extractor device 100. Such positioning of the knife substantially provides splitting of the stump in two more or less equally large pieces.
  • the knife 161 In the second position, the knife 161 is positioned distanced from the opening 116 of the cylinder 115.
  • the positioning mechanism 162 provides a second position, substantially above and at a side (right-hand in the figure) of the cylinder 115, which leaves the cylinder 115 and thereby the sawing means free, such that it can be operated into the ground during detaching of the tree stump.
  • the positioning mechanism 162 here comprises a rotatable axis 173 (visible in Fig. 2c)) onto which the splitting means knife 161, is engaged.
  • the rotatable axis 173 is on its respective end portions connected via a respective linkage 174 to a bracket 163.
  • the bracket 163 and the splitting means are arranged on opposite sides of the cylinder 115.
  • Each linkage 174 comprises a lower lever 164, and a linked upper lever 165.
  • the lower lever 164 is at a first end portion thereof pivotally engaged with the rotatable axis 173, and on a second opposite end portion thereof pivotally arranged with the bracket 163.
  • the upper lever 165 is at a first end portion thereof pivotally engaged with the rotatable axis 173, and, via a pivotally arranged link 165b on a second opposite end portion thereof, pivotally arranged with the bracket 163. Further, at each end portion of the rotatable axis 173, it is connected to a respective piston rod 169a coupled to a double-acting hydraulic cylinder system 169 which at its opposite end is fixated to the support structure 140. As the cylinder system 169 is actuated, the rod piston rod 169a, is movable between being fully expelled with reference to the supporting structure 140, as shown in Fig. 2a) which causes the linkage 174 to be lowered, thereby placing the splitting element in its first position.
  • the bracket 163 is arranged to, when the splitting means is arranged in its first position, bear against the cylinder 115 thereby providing an extra support during the splitting of the tree stump, and to in the second position, as illustrated in Fig. 2b) to be separated from the cylinder 115 by a predetermined distance ⁇ to allow the sawing means 110 to rotate freely.
  • the distance ⁇ is provided by means of a loose or a play in a bracket engagement 163b with the support structure 140 which allows a lower portion of the bracket 163 to act as a support element for the splitting means.
  • the splitting means comprises at least one elongated knife blade or splitting wedge, which splits the detached tree stump.
  • the splitting means is arranged to split the stump into more than two pieces. For instance a Y-shaped splitting element, with three knife blades extending from a common centre, provides tree pieces of the stump. With even more knife blades extending from the common centre, forming a star shaped splitting element, a greater number of pieces can be produced, as long as the expel means can provide a high enough force to push the tree stump through the splitting means.
  • the drive mechanism for the sawing means and the expel means may comprise electrical motors and/or control elements, the positioning means of the splitting means may be arranged in alternative manners, a control system, the feeding advancement mechanism, which in the exemplifying example is provided within the hydraulic drive mechanism, to control the sawing means and the expel means can be based on some other applicable logic control system e.g. by means of a Programmable Logic Control (PLC) device etc.
  • PLC Programmable Logic Control

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Ecology (AREA)
  • Forests & Forestry (AREA)
  • Environmental Sciences (AREA)
  • Harvester Elements (AREA)

Abstract

La présente invention concerne un dispositif et un procédé permettant d'extraire une souche d'arbre du sol, le dispositif (100) comprenant un moyen de sciage annulaire (110) permettant de détacher la souche d'arbre de ses racines dans le sol. Le moyen de sciage comprend une partie cylindrique (115) possédant une ouverture (116). La partie cylindrique renferme un espace interne (117) permettant de confiner la souche d'arbre, un moyen d'expulsion (130) agencé à l'intérieur de la partie cylindrique, ledit moyen d'expulsion par rapport à celle-ci étant agencé de façon mobile, et un mécanisme d'avancée d'alimentation du moyen de sciage conçu pour commander le moyen d'expulsion pour qu'il appuie contre la souche d'arbre pendant le détachement de celle-ci. Le moyen d'avancée d'alimentation selon la présente invention est conçu pour commander une position verticale actuelle du moyen de sciage le long de son axe de rotation en commandant le moyen d'expulsion, qui est actif pendant le détachement de la souche d'arbre, et conçu pour appuyer constamment contre la souche d'arbre à tout moment. Cela permet de mieux commander le fonctionnement du moyen de sciage du fait que cela permet une stabilisation pendant le sciage.
EP13723743.4A 2013-05-14 2013-05-14 Dispositif permettant d'extraire des souches d'arbres Withdrawn EP2996461A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/EP2013/059931 WO2014183785A1 (fr) 2013-05-14 2013-05-14 Dispositif permettant d'extraire des souches d'arbres

Publications (1)

Publication Number Publication Date
EP2996461A1 true EP2996461A1 (fr) 2016-03-23

Family

ID=48468274

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13723743.4A Withdrawn EP2996461A1 (fr) 2013-05-14 2013-05-14 Dispositif permettant d'extraire des souches d'arbres

Country Status (2)

Country Link
EP (1) EP2996461A1 (fr)
WO (1) WO2014183785A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104838972B (zh) * 2015-05-18 2018-06-22 衢州学院 一种自动竹根挖掘机

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1114505A (en) * 1913-05-28 1914-10-20 Ambrose Larkin Moore Rotary stump extractor and lift.
SU895360A1 (ru) * 1980-08-19 1982-01-07 Kirov Ni Pi Lesnoj Promy Устройство для корчевания пней 1
DD231922A3 (de) * 1984-03-15 1986-01-15 Bauakademie Ddr Vorrichtung zum roden von stubben
US4637442A (en) * 1985-08-20 1987-01-20 Mozer Daniel S Machine for coring stumps
SE524015C2 (sv) 2002-10-15 2004-06-15 Lennart Nyman Anordning för upptagning av jordfasta stubbar
US20070034294A1 (en) * 2005-07-11 2007-02-15 Rayco Manufacturing, Inc. Load control for stump cutter
US8006726B2 (en) * 2009-06-18 2011-08-30 Aaron Lawson Tree stump coring apparatus and method

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2014183785A1 *

Also Published As

Publication number Publication date
WO2014183785A1 (fr) 2014-11-20

Similar Documents

Publication Publication Date Title
KR101833547B1 (ko) 사과, 감, 배, 양파의 농작물용의 발심, 박피 및 분할 장치
US4481989A (en) Tree stump extractor
FI126476B (fi) Kannonnostolaite, järjestelmä ja menetelmä kannon nostamiseksi
CN107047233B (zh) 一种园林管理便携自动定向伐木机
US20140000232A1 (en) Device for pruning plant growth
EP3116300B1 (fr) Grappin à bois de feu
EP2996461A1 (fr) Dispositif permettant d'extraire des souches d'arbres
EP1619940B1 (fr) Essoucheuse, son utilisation, procede d'essouchement et procede pour prevenir des maladies fongiques telles que le pourridie
US7007730B2 (en) Apparatus and method for severing a tree and reducing the tree stump
CN110692485B (zh) 一种伐根机机头
CN107624461A (zh) 一种揭膜装置及揭膜方法
CN103340124B (zh) 全自动揭膜机
RU2249943C2 (ru) Устройство для валки деревьев вместе с корнями (варианты)
FI121104B (fi) Laite kantojen nostamiseen
CN104115616B (zh) 断梢器
RU2201074C1 (ru) Устройство для вырезания пней
WO2007085696A1 (fr) Agencement d'écorçage pour un dispositif de manutention du bois
NL2005394C2 (nl) Verkleiningsinrichting en werkwijzen voor het verkleinen van plantaardig materiaal.
EP1026940B1 (fr) Dispositif d'elagage
RU155474U1 (ru) Машина для выкопки саженцев с комом почвы
EP3192355A1 (fr) Dispositif de découpe dans une tête d'abattage-ébranchage d'une abatteuse-façonneuse
RU99277U1 (ru) Выкопочная машина
SU397172A1 (ru) УСТРОЙСТВО дл КОРЧЕВКИ ПНЕЙJiwawftw*»---.
CN207151185U (zh) 一种大蒜联合收获机
CN105833960A (zh) 具有升降功能的高效率的香蕉茎秆粉碎装置

Legal Events

Date Code Title Description
PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

17P Request for examination filed

Effective date: 20151124

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

AX Request for extension of the european patent

Extension state: BA ME

DAX Request for extension of the european patent (deleted)
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN

18D Application deemed to be withdrawn

Effective date: 20160702