EP2864549A1 - Hammering device meant for hammering poles and other longish objects into the ground - Google Patents

Hammering device meant for hammering poles and other longish objects into the ground

Info

Publication number
EP2864549A1
EP2864549A1 EP13757881.1A EP13757881A EP2864549A1 EP 2864549 A1 EP2864549 A1 EP 2864549A1 EP 13757881 A EP13757881 A EP 13757881A EP 2864549 A1 EP2864549 A1 EP 2864549A1
Authority
EP
European Patent Office
Prior art keywords
jaws
vibrator
hammering
pair
hammered
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
EP13757881.1A
Other languages
German (de)
French (fr)
Other versions
EP2864549B1 (en
EP2864549A4 (en
EP2864549C0 (en
Inventor
Yrjö RAUNISTO
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.)
Y Raunisto Ltd Oy
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of EP2864549A1 publication Critical patent/EP2864549A1/en
Publication of EP2864549A4 publication Critical patent/EP2864549A4/en
Application granted granted Critical
Publication of EP2864549B1 publication Critical patent/EP2864549B1/en
Publication of EP2864549C0 publication Critical patent/EP2864549C0/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B06GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS IN GENERAL
    • B06BMETHODS OR APPARATUS FOR GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS OF INFRASONIC, SONIC, OR ULTRASONIC FREQUENCY, e.g. FOR PERFORMING MECHANICAL WORK IN GENERAL
    • B06B1/00Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency
    • B06B1/10Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency making use of mechanical energy
    • B06B1/16Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency making use of mechanical energy operating with systems involving rotary unbalanced masses
    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D11/00Methods or apparatus specially adapted for both placing and removing sheet pile bulkheads, piles, or mould-pipes

Definitions

  • LONGISH OBJECTS INTO THE GROUND Invention relates to a hammering device meant for hammering poles, profiles and other elongated objects into the ground
  • hammering device comprises a body which can be attached to a working machine, one or more moveable pair of jaws which is attached to the body in order to grip the object to be hammered at least with a side grip wherein the jaws of the pair of jaws can be brought nearer and brought farther away from each other with the help of an activator, such as a hydraulic cylinder and the object to be hammered can be pressed between the mentioned jaws and which device further comprises at least two vibrator devices in order to create impacts to be directed to the object to be hammered and that each jaw of the pair of jaws comprises a vibrator device and that the rotations of the vibrator devices are synchronized with each other.
  • Hammering devices according to the preamble above are previously known said devices comprising an attachment body with which it is attached for example to an excavator.
  • a vibrator device and another body have been attached to this body with the help of damping cushions wherein the other body partly surrounds the mentioned vibrator device and receives the impacts of the vibrator device and conveys them to the target.
  • Gripping jaws have been attached to the other body either to be stiff or to be turning with the help of a joint.
  • a Finnish patent specification no. 106219 can be mentioned as an example.
  • the known solutions have the disadvantage that with the vibrator casing gripping jaws with their arms, cylinders which move the jaws and the driving motor of the vibrator device are affected by the impacts of the vibrator device. It is resulting that as impact receiving masses there are many such masses which in vain attenuate the effectiveness of the impacts. The weight of these unnecessary, moveable masses may be the same as the mass of the pole/pile to be hammered. The coefficient of performance of the impacts will thus be less than 50 % already due to this reason. For example insufficient grip of the gripping jaw at the object to be hammered additionally decreases the coefficient of performance. In the known solutions there is also a disadvantage regarding harmful forces and stresses caused by the location of the vibrator device relating for example jaw structures because in the known solutions the vibrator device is located at the side from the longitudinal axis line of the object to be hammered.
  • both jaws comprise a jaw arm and a gliding rail at the end of it or a gripping head which is attached with the help of a bearing with a linear direction wherein the vibrator devices are located at the mentioned gripping heads.
  • the vibrator devices which are adjusted separately at both jaw arms and function side by side each comprise two axes for eccentric masses in which case when the masses are rotating and when the jaw arms are being compressed against each other, the operation effect of a vibrator device with four axes can be reached together with the help of two vibrator devices which have been installed in this way during which action effect there are hardly any sideway impacts.
  • the advantage of the invention is the fact that the impacts of the vibrator device are conveyed from the body of the vibrator device directly to the gripping element which is compressed to the object to be hammered.
  • the impacts will mainly stress only the gripping heads which are isolated from the other device body and convey impacts and are located at the ends of the jaws.
  • the impacts of the vibrator devices stress only the gripping heads of the jaws which convey the impacts and are vibration isolated wherein impact energy does not get wasted much for unnecessary masses.
  • adjacent vibrator devices are used symmetrically at the same stage, no eccentric masses are needed in spite of two vibrator devices more than in known solutions which comprise one vibrator device. Nearly all unnecessary moveable masses which decrease the impact efficiency of the vibrator devices have been eliminated.
  • Figure 1 shows a hammering device as a simplified version seen from above.
  • Figure 2 shows a hammering device as a side view in which case the backmost jaw construction can be seen.
  • Figure 3 shows a vibrator device diagonally seen by showing an external body solution.
  • Figure 4 shows the eccentric masses of the vibrator device.
  • Figure 5 shows a vibrator device when it hammers downwards.
  • the jaw structure of the hammering device according to the invention moving of the jaws 2, 7 with the help of a cylinder 9 and a toggle joint structure 12, 13, 17 and the vibrator devices 1, which are located at the jaws 2, 7 are shown in the figure 1.
  • the jaws 2, 7 form a pair of jaws between which gripping devices of the pair of jaws the object 18 to be hammered is taken.
  • the arms 7 of the jaws are adjusted to turn while resting on the joint pins 11.
  • the jaw arms 7 are turned with a cylinder 9 the piston rod of which cylinder pushes the toggle joint arms 12 from the pivot 17 to be straightened and to be lengthened.
  • a cylinder which is smaller than the used cylinders is nowadays enough to be a cylinder 9 regarding its power because in the toggle joint arrangement the power of the cylinder knowingly becomes multiplied when its power is inverted to be a recession force of the jaw arms 7.
  • a smallish cylinder 9 also opens the jaws quickly with a pulling movement of the cylinder.
  • the vibrator devices 1 are adjusted to be at both jaws 7, 2.
  • the gripping heads 2 of the jaws are structurally separated from the jaw arms 7.
  • the gripping heads 2 are bearing-mounted to be sliding in a vertical direction at the ends of the jaw arms 7 with the help of slide rails 6.
  • slide rails 6 For example a dovetailed form can be a suitable slide rail profile 5.
  • the bearing can be performed also with another linear bearing, for example with a roller bearing set which controls and fits the moveable rail profile, which is attached to the adjacent part, with a bearing.
  • the gripping heads 2 slide in the operating mode for the amount of an amplitude created by the vibrator device 1 in relation to the end of the jaw arm 7. This distance is fairly short, at the most 5-10 mm.
  • the gripping head 2 is attached to the end of the jaw arm 7 with the help of damping rubbers 6.
  • the damping rubbers 6 allow the above mentioned moving distance.
  • the vibrator devices 1 are located at the gripping heads 2 and in this example both vibrator devices 1 have two axes. Rotating force is transferred from the upper vibrator axis which can be seen in the figure to the other axis of the vibrator located underneath it with the help of a toothed wheel 3.
  • the vibrator devices 1 are located symmetrically at both sides of the object 18 to be hammered next to it in which case the impacts are being transferred efficiently to the object through gripping devices 4. Only the gripping heads 2 create vibrating movement when the vibrator devices 1 are being activated.
  • a body casing 10 which is adjusted around the jaws is shown in the figure 2 from which body casing the device can be attached in a such known way for example to an excavator through a tilting mechanism 15, 16 and a possible rotating device. Structures have been directed from the body casing 10 inwards in order to attach joint pins 1 1 to a casing 10 and in order to attach a hydraulic motor 8 to the casing 10. Also the other end of the cylinder is attached to the body casing 10. The backmost jaw arms 7 of the pair of jaws, gripping heads 2 and the attachment line L of the object are shown in the figure 2.
  • the hydraulic motor 8 rotates through an articulated shaft 1 1 the upper eccentric axis 19 of both vibrator devices (figures 4 and 5). A diverging rotating movement is arranged for them at their own articulated shafts, but as a mirror image at the same stage, such as is shown more accurately in the figures 4 and 5.
  • FIG 3 a body casing 10 and two support plates 21 which are adjusted inside it are shown in the figure 3 which body casing and support plates can be used as aids when one attaches for example joint pins 11 , the hydraulic motor 8 and a cylinder 9 to the body casing 10.
  • the figures 4 and 5 show how two vibrator devices with two axes can be used as vibrator devices 1 the rotating directions of the axes 19 of which vibrator devices are reversed both in relation to the axes 19 of the adjacent vibrator device and in the separate vibrator device.
  • the eccentric masses 20 of the adjacent vibrator devices are located symmetrically in relation to the vertical centre line.
  • the adjacent vibrator devices are almost like the same device regarding their body.
  • sideway impacts do not occur in this kind of solution. Only two rotating eccentric masses 20 are needed at the ends of both jaw arms 7 in order to create impacts. Sideway forces are being compensated when the jaw arms 7 are being compressed against each other.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Apparatuses For Generation Of Mechanical Vibrations (AREA)
  • Placing Or Removing Of Piles Or Sheet Piles, Or Accessories Thereof (AREA)

Abstract

Hammering device meant for hammering poles, profiles and other elongated objects into the ground which hammering device comprises a body (10) which can be attached to a working machine, one or more moveable pair of jaws which is attached to the body (10) in order to grip the object to be hammered at least with a side grip wherein the jaws (7, 2) of the pair of jaws can he brought closer or brought farther away from each other with the help of a regulating unit, such as a hydraulic cylinder (9) and object to be hammered can be pressed between the mentioned jaws (7, 2) and which device further comprises at least two vibrator devices (1 ) in order to create impacts which can be directed to the object to be hammered. Both jaws (7, 2) of the pair of jaws comprise their own vibrator device (1 ) the rotations of which vibrator device are synchronized with each other. Both jaws comprise a jaw arm (7) and a gliding rail (5) at its end or a gripping head (2) which is attached with the help of a bearing with a linear direction wherein the vibrator devices (1 ) are located at the mentioned gripping heads (2).

Description

HAMMERING DEVICE MEANT FOR HAMMERING POLES AND OTHER
LONGISH OBJECTS INTO THE GROUND Invention relates to a hammering device meant for hammering poles, profiles and other elongated objects into the ground which hammering device comprises a body which can be attached to a working machine, one or more moveable pair of jaws which is attached to the body in order to grip the object to be hammered at least with a side grip wherein the jaws of the pair of jaws can be brought nearer and brought farther away from each other with the help of an activator, such as a hydraulic cylinder and the object to be hammered can be pressed between the mentioned jaws and which device further comprises at least two vibrator devices in order to create impacts to be directed to the object to be hammered and that each jaw of the pair of jaws comprises a vibrator device and that the rotations of the vibrator devices are synchronized with each other.
Hammering devices according to the preamble above are previously known said devices comprising an attachment body with which it is attached for example to an excavator. A vibrator device and another body have been attached to this body with the help of damping cushions wherein the other body partly surrounds the mentioned vibrator device and receives the impacts of the vibrator device and conveys them to the target. Gripping jaws have been attached to the other body either to be stiff or to be turning with the help of a joint. A Finnish patent specification no. 106219 can be mentioned as an example.
Additionally hammering devices are known from the publications EP 1983112 and EP 2251489 in which publications both jaws comprise a vibrator device and the rotations of these vibrator devices are synchronized with each other.
The known solutions have the disadvantage that with the vibrator casing gripping jaws with their arms, cylinders which move the jaws and the driving motor of the vibrator device are affected by the impacts of the vibrator device. It is resulting that as impact receiving masses there are many such masses which in vain attenuate the effectiveness of the impacts. The weight of these unnecessary, moveable masses may be the same as the mass of the pole/pile to be hammered. The coefficient of performance of the impacts will thus be less than 50 % already due to this reason. For example insufficient grip of the gripping jaw at the object to be hammered additionally decreases the coefficient of performance. In the known solutions there is also a disadvantage regarding harmful forces and stresses caused by the location of the vibrator device relating for example jaw structures because in the known solutions the vibrator device is located at the side from the longitudinal axis line of the object to be hammered.
A new hammering device has been developed in order to remove these disadvantages with which hammering device the above mentioned problems can be solved and conveyance of the vibrating forces which is efficient in a new way to the object to be hammered can be reached. It is characteristic of the invention that both jaws comprise a jaw arm and a gliding rail at the end of it or a gripping head which is attached with the help of a bearing with a linear direction wherein the vibrator devices are located at the mentioned gripping heads.
It is characteristic of the second way of performance of the invention that the vibrator devices which are adjusted separately at both jaw arms and function side by side each comprise two axes for eccentric masses in which case when the masses are rotating and when the jaw arms are being compressed against each other, the operation effect of a vibrator device with four axes can be reached together with the help of two vibrator devices which have been installed in this way during which action effect there are hardly any sideway impacts.
The advantage of the invention is the fact that the impacts of the vibrator device are conveyed from the body of the vibrator device directly to the gripping element which is compressed to the object to be hammered. When there are two vibrator devices being symmetrically located close to the object to be hammered at its both sides, the impacts will mainly stress only the gripping heads which are isolated from the other device body and convey impacts and are located at the ends of the jaws. In one embodiment of the invention the impacts of the vibrator devices stress only the gripping heads of the jaws which convey the impacts and are vibration isolated wherein impact energy does not get wasted much for unnecessary masses. When adjacent vibrator devices are used symmetrically at the same stage, no eccentric masses are needed in spite of two vibrator devices more than in known solutions which comprise one vibrator device. Nearly all unnecessary moveable masses which decrease the impact efficiency of the vibrator devices have been eliminated. In the following the invention is described more detailed by referring to the
accompanying drawings in which
Figure 1 shows a hammering device as a simplified version seen from above.
Figure 2 shows a hammering device as a side view in which case the backmost jaw construction can be seen.
Figure 3 shows a vibrator device diagonally seen by showing an external body solution. Figure 4 shows the eccentric masses of the vibrator device.
Figure 5 shows a vibrator device when it hammers downwards.
The jaw structure of the hammering device according to the invention, moving of the jaws 2, 7 with the help of a cylinder 9 and a toggle joint structure 12, 13, 17 and the vibrator devices 1, which are located at the jaws 2, 7 are shown in the figure 1. The jaws 2, 7 form a pair of jaws between which gripping devices of the pair of jaws the object 18 to be hammered is taken. The arms 7 of the jaws are adjusted to turn while resting on the joint pins 11. The jaw arms 7 are turned with a cylinder 9 the piston rod of which cylinder pushes the toggle joint arms 12 from the pivot 17 to be straightened and to be lengthened. A cylinder which is smaller than the used cylinders is nowadays enough to be a cylinder 9 regarding its power because in the toggle joint arrangement the power of the cylinder knowingly becomes multiplied when its power is inverted to be a recession force of the jaw arms 7. A smallish cylinder 9 also opens the jaws quickly with a pulling movement of the cylinder. The vibrator devices 1 are adjusted to be at both jaws 7, 2.
In the embodiment according to the invention the gripping heads 2 of the jaws are structurally separated from the jaw arms 7. The gripping heads 2 are bearing-mounted to be sliding in a vertical direction at the ends of the jaw arms 7 with the help of slide rails 6. For example a dovetailed form can be a suitable slide rail profile 5. Instead of a slide rail the bearing can be performed also with another linear bearing, for example with a roller bearing set which controls and fits the moveable rail profile, which is attached to the adjacent part, with a bearing. The gripping heads 2 slide in the operating mode for the amount of an amplitude created by the vibrator device 1 in relation to the end of the jaw arm 7. This distance is fairly short, at the most 5-10 mm. The gripping head 2 is attached to the end of the jaw arm 7 with the help of damping rubbers 6. The damping rubbers 6 allow the above mentioned moving distance. The vibrator devices 1 are located at the gripping heads 2 and in this example both vibrator devices 1 have two axes. Rotating force is transferred from the upper vibrator axis which can be seen in the figure to the other axis of the vibrator located underneath it with the help of a toothed wheel 3. The vibrator devices 1 are located symmetrically at both sides of the object 18 to be hammered next to it in which case the impacts are being transferred efficiently to the object through gripping devices 4. Only the gripping heads 2 create vibrating movement when the vibrator devices 1 are being activated. A body casing 10 which is adjusted around the jaws is shown in the figure 2 from which body casing the device can be attached in a such known way for example to an excavator through a tilting mechanism 15, 16 and a possible rotating device. Structures have been directed from the body casing 10 inwards in order to attach joint pins 1 1 to a casing 10 and in order to attach a hydraulic motor 8 to the casing 10. Also the other end of the cylinder is attached to the body casing 10. The backmost jaw arms 7 of the pair of jaws, gripping heads 2 and the attachment line L of the object are shown in the figure 2.
The hydraulic motor 8 rotates through an articulated shaft 1 1 the upper eccentric axis 19 of both vibrator devices (figures 4 and 5). A diverging rotating movement is arranged for them at their own articulated shafts, but as a mirror image at the same stage, such as is shown more accurately in the figures 4 and 5.
In the figure 3 a body casing 10 and two support plates 21 which are adjusted inside it are shown in the figure 3 which body casing and support plates can be used as aids when one attaches for example joint pins 11 , the hydraulic motor 8 and a cylinder 9 to the body casing 10.
The figures 4 and 5 show how two vibrator devices with two axes can be used as vibrator devices 1 the rotating directions of the axes 19 of which vibrator devices are reversed both in relation to the axes 19 of the adjacent vibrator device and in the separate vibrator device. The eccentric masses 20 of the adjacent vibrator devices are located symmetrically in relation to the vertical centre line. When the vibrators are being activated and the jaws are being compressed against each other, the adjacent vibrator devices are almost like the same device regarding their body. One might imagine that they together form a vibrator device with four axes. During the impact situation sideway impacts do not occur in this kind of solution. Only two rotating eccentric masses 20 are needed at the ends of both jaw arms 7 in order to create impacts. Sideway forces are being compensated when the jaw arms 7 are being compressed against each other.
The above described joining of a vibrator device which is equipped with two eccentric masses 20 can be realized also according to the claim 7 in such a case wherein the gripping jaws are totally stiff arms without a separate possibility of movement organized for the gripping heads 2. Vibrator devices with two axes are then installed to the jaw arms 7 most advantageously to be located immediately at both sides of the gripping point, such as is shown in the figure 1. In relation to the figure 1 the bearings (5, 6) are missing in this solution and at the same time possibility of separate movement for the gripping heads.

Claims

CLAIMS 1. Hammering device meant for hammering poles, profiles and other elongated objects into the ground which hammering device comprises a body (10) which can be attached to a working machine, one or more moveable pair of jaws which is attached to the body ( 10) in order to grip the object to be hammered at least with a side grip wherein the jaws (7, 2) of the pair of jaws can be brought closer or brought farther away from each other with the help of a regulating unit, such as a hydraulic cylinder (9) and object to be hammered can be pressed between the mentioned jaws (7, 2) and which device further comprises at least two vibrator devices (1) in order to create impacts which can be directed to the object to be hammered and that both jaws (7, 2) of the pair of jaws comprise their own vibrator device (1 ) the rotations of which vibrator device are synchronized with each other, characterized in that both jaws comprise a jaw arm (7) and a gliding rail (5) at its end or a gripping head (2) which is attached with the help of a bearing with a linear direction wherein the vibrator devices (1) are located at the mentioned gripping heads (2).
2. Hammering device according to the claim 1 , characterized in that the gliding rail (5) located at the end of the jaw arm (7) or bearing has the same direction as the impacts of the vibrator device (1 ).
3. Hammering device according to the claim 1 , characterized in that there are damping rubbers (6) in combination with the gliding rails (5) and the bearing which damping rubbers attach gripping heads (2) to the jaw arms (7) and allow a mutual, limited vibration movement for them.
4. Hammering device according to the claim 1 , characterized in that rotations are arranged from a driving motor (8) to the vibrator devices (1) of the pair of jaws with the help of articulated shafts (11 ) and the rotations are synchronized to the same stage as a mirror image.
5. Hammering device according to the claim 1, characterized in that the moving of the jaws (7, 2) of the pair of jaws is adjusted to occur with the help of toggle joint arms (12) the common toggle joint (17) of the arms of which toggle joint arms is adjusted to be movable with the help of a hydraulic cylinder (9).
6. Hammering device according to the claim 1, characterized in that vibrator devices (1) functioning side by side and which are adjusted separately at the gripping heads (2) of both jaw arms (7) each comprise two axes (19) for the eccentric masses (20) wherein when the masses are rotating and when the gripping heads (2) of the jaws are being pressed against each other, an action effect of a vibrator device with four axes can be achieved together with the help of the two vibrator devices being installed in this way during which action effect there are hardly any sideway impacts.
7. Hammering device meant for hammering poles, profiles and other elongated objects into the ground which hammering device comprises a body (10) which can be attached to a working machine, one or more moveable pair of jaws which is attached to the body (10) in order to grip the object to be hammered at least with a side grip in which case the jaws (7) of the pair of jaws can be brought closer or brought farther away from each other with the help of an activator, such as a hydraulic cylinder (9) and the object to be hammered can be pressed between the mentioned jaws (7) and which device further comprises at least two vibrator devices (1) in order to create impacts which can be directed to the object to be hammered and that both jaws (7) of the pair of jaws comprises its own vibrator device (1) the rotations of which vibrator devices are synchronized with each other, characterized in that vibrator devices (1) which function side by side are adjusted separately to both jaw arm (7) each comprise two axes (19) for the eccentric masses (20) wherein when the masses are rotating when the jaw arms (7) are being pressed against each other, an action effect of a vibrator device with four axes can thus be reached together with two vibrator devices (1) which have been installed in this way during which action effect there are hardly any sideway impacts.
8. Hammering device according to the claim 7, characterized in that in both vibrator devices the eccentric masses (20) are located one after another seen in the impact direction.
EP13757881.1A 2012-03-07 2013-03-05 Hammering device meant for hammering poles and other longish objects into the ground Active EP2864549B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FI20120071 2012-03-07
PCT/FI2013/000010 WO2013132138A1 (en) 2012-03-07 2013-03-05 Hammering device meant for hammering poles and other longish objects into the ground

Publications (4)

Publication Number Publication Date
EP2864549A1 true EP2864549A1 (en) 2015-04-29
EP2864549A4 EP2864549A4 (en) 2016-12-14
EP2864549B1 EP2864549B1 (en) 2023-11-08
EP2864549C0 EP2864549C0 (en) 2023-11-08

Family

ID=49115988

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13757881.1A Active EP2864549B1 (en) 2012-03-07 2013-03-05 Hammering device meant for hammering poles and other longish objects into the ground

Country Status (2)

Country Link
EP (1) EP2864549B1 (en)
WO (1) WO2013132138A1 (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FI20140081A7 (en) * 2014-03-19 2015-09-20 Movax Oy Impact device to be connected to a working machine
KR102640403B1 (en) * 2021-11-26 2024-02-22 허일도 The vibro hammer with side gripper
GB2618092B (en) * 2022-04-26 2024-12-11 Dawson Const Plant Ltd Side grip vibratory pile driver
DE102022127205A1 (en) * 2022-10-18 2024-04-18 Terra Infrastructure Gmbh Side gripper for gripping and driving in pile material

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2130997B (en) * 1984-06-11 1985-09-18 Joseph Samuel Neil Vibration clamping device for use in supporting and placing sheeting when excavating
FI106219B (en) 1991-09-30 2000-12-15 Raunisto Airi Method and apparatus for driving piles or the like into the ground
JP2006169942A (en) * 2004-11-22 2006-06-29 Chowa Kogyo Kk Vibrating-rotating pile driver and vibrating-rotating pile driving method
ATE455210T1 (en) 2007-04-16 2010-01-15 Ihc Holland Ie Bv VIBRATIONAL SHAKER FOR FALLING A PILE OR A SHAPE TUBE
NL2002871C2 (en) 2009-05-12 2010-11-15 Decombi B V VIBRATOR.

Also Published As

Publication number Publication date
EP2864549B1 (en) 2023-11-08
WO2013132138A1 (en) 2013-09-12
EP2864549A4 (en) 2016-12-14
EP2864549C0 (en) 2023-11-08

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