VIBRO EXCAVATOR VIBRATION DAMPER
Patent Information
- Application Number
- TR202502997
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-09-21
Smart Images

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Abstract
Description
1 TARIFF VIBRO EXCAVATOR VIBRATION DAMPER Technical Area 5 This invention is used in vibratory pipe rigging machines, pipe rigging machines, and rigging applications. It dampens the vibrations, oscillations and resonances that occur during the process. This relates to a vibro-shaker vibration damper. Previous Technique Dams, bridges, settlements, construction sites, construction built on the sea Vibratory irrigation is used in many areas such as infrastructure works, water and river rehabilitation. Hammers are used. They provide very strong support to the ground for buildings and other structures. ground reinforcement and stabilization works to ensure stability This is done in ground strengthening works, in order to support the structure. Steel pipes, sheet piles, and profiles are driven into the ground. Steel pipe and vibratory pile drivers (vibro pile drivers) for driving sheet piles into the ground It is used. 20 Vibro hammers (Pile hammer, Vibro hammer) are used for cutting steel formed pipes, profiles, etc. by mounting the parts on top and driving these parts into the ground or from the ground It is used in a very wide range of applications in demolition. Vibro pile driver crane or It is transported by excavator (digging machine). The pipe to be driven in is then transported by vibro 25. It is mounted on a pile driver. Vibro pile drivers are used to drive pipes or profiles into the ground. It accomplishes the hammering task thanks to its eccentric weights. In cases where steel pipes need to be driven into the ground, the pipe is placed It is positioned perpendicular to the plane and a vibro-driven hammer is placed on top of it. Then, through the force generated by vibration, this steel pipe is driven into the ground 30 It is being driven inwards. 2 Rotating wheels in the vibration generation section found in vibro pile drivers. There are eccentric gears, each with a semi-cylindrical shape. There are weights. These weights move in different directions and with different intensities during rotation. It generates vibration. To generate vibration, a phase-changing motor (variable 5) is used. A hydromechanical system called a motor is used. The weights are the same. adjusting the direction in either direction, or the opposite direction, in other words, the vibration of the vibro chisel. whether or not it occurs depends on the operation of the phase change motor. This is achieved in vibro pile drivers by pumping hydraulic oil into the phase changer motor. The modifier is moved and the phase change, i.e., the phase of the weight set, changes. 10 This provides the vibration needed for the hammering process. The working principle of vibro-driven pile drivers is to obtain driving force through vibration, and This is the process of driving pipes into the ground using force applied from above. Vibro driver, driving tool. It is usually suspended from a crane in order to perform the operation. During the nailing process, 15 The operation of vibro-driven excavators causes vertical oscillation, shock, and vibration. This occurs and the oscillation is transmitted to the crane. Vibro pile drivers The direct transmission of the vibrations generated during operation to the crane is an important technique. This is a problem. The current application concerns issues that arise during the operation of the vibro milling machine. The vibration is dampened before it is transmitted to the crane, and this is a significant technical problem. 20 It is being resolved. In current technology, the vibrations and shocks generated during the operation of vibro-driven pile drivers... There are very few applications used to prevent the crane from transmitting the signal. This One of the applications is the one belonging to the Tünkers company. The 25 in question... In practice, a damper is suspended between the vibratory pile driver and the crane. The aforementioned... damper, vertical shock generated during the operation of the vibro-driven pipe and its driving of the pipe. It is used to dampen directional oscillation. The vibro-oscillation in question... In the damper, elastomer flexible damper is used, and this damper It is connected to the upper and lower connecting parts with ropes. Flexible material, rope 30 It is connected to the crane and vibratory pile driver with its links. The operation of the vibratory pile driver. 3 The vibration that occurs in the vertical direction during the process is damped before it is transmitted to the crane. It passes over it. The load on the damper causes the ropes to vibrate. It occurs due to the downward pulling caused by the pulley. Ropes, vibro It transmits the vibration of the hammer to the elastomer damper, thus reducing the vertical vibration. The movement is transmitted to the flexible damper via ropes, either completely or partially. 5 The vibration is damped and transmitted to the crane in a damped form. In this application, the rope... It is used, through vibrations, rope connections and the stretching of the ropes. The rope is transmitted to the damper. Over time, the rope wears down, can break, and is exposed to heat and... It can wear out due to expansion in cold weather. Another disadvantage of the rope structure used in this application is that the system The safety risk arises from working at height. Rope connection. It is not safe at high altitudes. In rope structures, over time, the ropes... This can lead to problems such as wear and tear, breakage, and tearing. Since the purpose of the damper is to prevent vibration, the ropes are protected from vibration by 15 Therefore, it is constantly in motion, and due to friction and stretching, it moves very quickly. It can wear out. Ropes need to be constantly replaced due to wear and tear, and rope scrap is also a problem. This leads to the creation of ropes. Ropes are frequently used as consumables. 20 They are being replaced. The ropes are constantly being replaced, and because of this replacement, new ones are needed. The production of ropes results in excessive carbon emissions and a carbon footprint. This situation is not environmentally friendly enough. In the damper that is the subject of the application, instead of a rope, linear damping arms are used. 25 It is used. The motion is transmitted through the joints to the damper. The motion, The transmission with mechanical arms is more robust and can be used trouble-free for a longer period of time. This has enabled the development of a damping system. The developed system is continuous. It can be used without requiring any consumables. Purpose of the Invention 4 The purpose of this invention is to reduce the vibration generated during the operation of vibro pile drivers to a rope. instead of damping with systems, it is damped with safer mechanical arms. The goal is to create a vibro-driven vibration damper. The aim of this invention is to reduce the vibration and oscillation generated during the operation of vibro-driven milling machines. A vibro-driven shock absorber that provides damping for impact shocks. to accomplish. Another purpose of this invention is to reduce the vibration generated during the operation of the vibro-hammer horizontally. by transferring it to the axes and damping it, and the vibration in question is removed by the vibro chisel. a vibro pile driver vibration damper that prevents the vehicle from being transported by cranes. to accomplish. Another purpose of this invention is to reduce the vibration generated during the operation of the vibro-hammer, 15 a vibro that allows it to be directed to a different axis with linear carrying arms The goal is to create a vibration damper. Another purpose of this invention is to reduce the vibration generated during the operation of the vibro milling machine. transported horizontally along the axis using linear conveyor arms, and again the aforementioned 20 absorption by flexible damping elements attached to linear horizontal arms The goal is to create a vibro-driven vibration damper that allows for (absorption) of vibrations. Brief Description of the Invention This invention is the result of independent will and commitment to achieve its purpose. Vibro damper, upper hanger, lower hanger, as defined in other related requirements. hanger, upper bearing, lower bearing, upper arms, lower arms, table arms, transport table and includes flexible elements. Vibration generated during the operation of the vibro pile driver. movements, vibration 30, the subject of the invention, located in the upper part of the vibro cutter. It is damped by a damper. The vertical current incident on the damper... The vibration is angularly split in two by the lower arms, and the movement is outside the vertical axis. It is being moved. The lower arms both separate the vibration movement and at the same time... It shifts the movement angularly to a different axis. The split vibration, transmission. The transfer is made to the flexible element located inside the table. The flexible element, reciprocally... It is located between two stationary transport platforms and moves with the movement of the transport platform. 5 It is stretched and flexed. Thus, the vibration motion is transmitted through the flexible element. It is damped. The transport plate and the plate arms located on it, on top It is connected to arms, and the upper arms join on the upper bearing. Thus The movement is repositioned by the arms and the upper bearing to the vertical axis and a single point. It is taken. The damper is attached to the crane with a hanger located on the upper bearing. 10 It is suspended. The vibration movement is completely or partially damped by the damper. is damped. Vince, damped or reduced vibration motion. It is being transmitted. Detailed Description of the Invention 15 A vibro-cracker oscillation was performed to achieve the purpose of this invention. The damper is shown in the attached figures; Figure 1. Perspective view of the Vibro-driven vibration damper. 20 Figure 2. Perspective of the Vibro-driven vibration damper from a different angle. It is the appearance. Figure 3. Front view of the Vibro-driven vibration damper. Figure 4. Perspective of the vibro-hammer vibration damper without the table cover. It is the appearance. 25 Figure 5. Vibro crusher vibration damper without table cover. It is the perspective view from that point of view. Figure 6. Cross-sectional perspective view of the vibro-driven vibration damper. Figure 7. Upper hanger, upper bearing and upper arms, lower hanger, lower bearing and lower arms. Perspective view of the arms. 30 6 The parts in the figures are individually numbered, and these numbers correspond to: It is given below. 1. Vibro hammer blower vibration damper 2. Top hanger 5 3. Bottom hanger 4. Top bearing 5. Bottom bearing 6. Bearing shaft 7. Transport platform 10 8. Table spindle 9. Table cover 10. Flexible element 11. Flexible element connection surface 12. Upper arm 15 13. Table arm 14. Lower arm From one end to the vibratory pile driver, and from the other end to the construction machine that holds the vibratory pile driver in suspension. connected, vibrations and shocks generated during the operation of the vibro hammer 20 a vibro-pile driver's vibration damper that prevents the vibration from being transmitted to the construction machine by dampening it. damper (1) includes the following; - at least one overhead sling (2) located at the top and connected to the crane, - at least one lower hanger (3) located at the bottom and connected to the vibro breaker, - attached to the upper suspension (3), into which the linear upper arms (12) are attached and the upper 25 At least one upper bearing (4) that provides bearing for the arms (12), - attached to the lower suspension (3), into which the linear lower arms (12) are attached and the lower At least one sub-bearing (5) that provides bearing for the arms (14), - passing through the hole located on the upper bearing (4) and upper arms (12), upper Bearing shaft (6) which connects the arms (12) to the upper bearing (4), 30 7 - passing through the hole located on the lower bearing (5) and lower arms (14), Bearing shaft (6) which connects the arms (14) to the lower bearing (5), - via the table arm (13) on it, from the upper part to the upper arms (12), connected to the lower arms (14) from the lower section, facing each other The transport platform consists of two parts and a flexible element (10) is mounted between them. 5 (7), - located inside the transport plate (7) and connected to the transport plate (7), flexible, flexing according to the movements of the transport plate (7) and coming onto it at least one flexible element that dampens the force (10), - connected to the upper bearing (4) and the lower bearing (5), which are also connected to each other 10 the lower bearing that is attached, which absorbs the vibration generated during the operation of the vibro-driven machine. (5) The lower arm (14) transmits through a different axis angularly and linearly, It includes a table arm (13) and a top arm (12). The vibro saw generates vibrations while operating, and the sawing process is also 15. during this process due to the hardness of the ground or rock fragments present in the ground Shocks and extra vibrations can occur. These vibrations affect the vibro jackhammer. The vibration is transmitted directly to the crane carrying it. Vibro hammer vibration damper (1) The aim is to prevent vibrations from being directly transmitted to the crane, by transmitting them without transmitting them to the crane. It first provides damping of the vibrations. The subject of the invention is vibro 20 The vibration damper (1) is used to place materials such as pipes and sheet pile profiles into the ground. The vibration of vibratory pile drivers used for driving in the earth is transmitted to cranes or construction machinery. It is used to prevent transmission. Vibro shock absorber (1) is a from the top hanger (2) at the end to the crane or construction machine carrying the vibro pile driver It is attached via the lower hanger (3) located at the other end, at the bottom of the vibro 25 It is attached to the pile driver. Vibro pile driver vibration damper (1), crane with vibro pile driver It is mounted between them; a vibro pile driver is located at the bottom, and a crane at the top. The crane, vibro pile driver vibration damper (1) and vibro pile driver are in the vertical direction, in the same straight line. They are connected to each other. The operation of the vibro saw is also 30 This occurs in the vertical direction. For all these reasons, vibrations and shocks are vertical. 8 The vibration is transmitted linearly to the crane in the direction of the vibro hammer. Vibro hammer damper (1) Its main purpose is to reduce the vibrations generated during the operation of the vibro pile driver in the vertical direction. It is the damping of the wavelength horizontally by shifting it at a different angle. Therefore, vibro shock absorber (1) directs the direction of vibrations coming in the vertical direction. by sliding linearly to the sides at a different angle and with flexible element (10) 5 It dampens these vibrations completely or partially by compressing them. Vibro pile driver vibration damper (1) is the vibration damper that comes vertically from the vibro pile driver onto it. It uses linear arms to dissipate vibrations and shocks. Linear arms It can preferably be manufactured from metal, rigid plastic, or a similar material. The invention has 10 In its preferred application, the linear arms are made of metal and form a linear shape. It is structured. The linear arms in question are the upper arm (12), the table arm (13) and the lower arm. (14). Connection holes at both ends of the upper arm (12), table arm (13) and lower arm (14). It is located there. The upper arm is formed by inserting connecting shafts into the aforementioned connecting holes. (12), table arm (13) and lower arm (14) are connected to each other. 15 Vibro hammer damper (1), upper arm (12), table arm (13) and lower arm (14) They are connected to each other at a narrow angle. Vibro jackhammer vibration. In the damper (1), the upper arm (12), the table arm (13) and the lower arm (14) are connected to each other. With a narrow angle, the upper arms (12) are in a “V” shape to the table arm (13), the lower arms 20 (14) is connected to the table arm (13) in a “V” shape. The upper arm (12) is connected to the table arm (13) and lower arm (14) with bearing shafts (6) and table shafts (8) The upper arm (12) and lower arm (14) are connected at one end to the upper bearing (4) and the lower arm (14). It is connected to the bearing (5) and to the table arm (13) at its other ends. It is connected. 25 The upper hanger (2) is located at the top end of the vibro damper (1). The top hanger (2) is preferably in the form of a closed hook. The hook form of the top hanger (2) The crane's carrier and holding hook is attached inside. Thus, via the upper sling... The vibro-driven vibration damper (1) is connected to the crane. Upper hanger 30 (2) is connected to the upper bearing (4). The upper bearing (4) is preferably a hinge-like structure. 9 It has a structure. The upper bearing (4) preferably has a connecting bracket and bearing element. It is used as. There is a place on the upper bearing (4) to which the upper hanger will be attached. a link extension and a "U" shaped upper arm below that link extension There is a connection channel. Upper bearing (4) connection extension and U-shaped There are mounting holes on the mounting channel. Top hanger (2), top 5 The bearing (4) is attached to the hole on the connecting extension of the upper bearing. (4) is fixed. The upper bearing (4) is also the upper arm (12) It is connected. The upper arm (12) passes into the upper bearing (4) connection channel. and bearing shaft (6) both through the connection channel hole and on the upper arm (12) Passing through the connection holes found, the upper arm (12) connects to the upper bearing (4) 10 The connection is made. The upper arm (12) is inside the upper bearing (4) bearing shaft. It can move along the (6) axis. In the vibro damper (1), the upper bearing (4) preferably has two opposite bearings. 15 upper arms are attached (12). Each upper arm (12) has 15 facing each other. It is connected to the conveyor plate (7) and the upper bearing (4). The conveyor plate (7) Each of them has a table handle (13). The table handle (13) is attached to the outside of the table (7) of the carrier. The viewing surface is fixed and moves together with the transport platform (7). The arm (13) is linear, like the upper arm (12) and lower arm (14), and has connections at both ends. There are holes. The upper arm (12) is connected to the upper bearing (4) at one end, and the other 20 from its end to the upper connecting channel of the table arm (13) attached to the transport table (7). It passes through. After the upper arm (12) passes into the table arm (13) connection channel, the table The upper arm (12) is fixed to the table arm (13) by attaching the spindle (8). The upper arm (12) is fixed to the table arm (13). The arm (13) can rotate around the axis of the table spindle (8) from its connection point. In the figure, the other transport table (7) is attached to the other transport table (12) which is opposite the other upper arm 25 It passes through the arm (13) and is connected to another table spindle (8). Thus two-part transport platform (7) with platform arms (13) on them It is connected to the upper arms (12) via and to the upper bearing (4) in the upper arms (12) It is connected. 10 The connection located on the underside of the table arm (13) on the transport table (7). The lower arm (14) is connected to the channel. The connection at the end of the lower arm (14) The hole passes into the connection channel of the table arm (13) and the table spindle (8) passes through the said channel passing through the hole and the connecting hole, from one end of the lower arm (14) to the table arm (13) and therefore it is connected to the transport platform (7). Preferably 5 on the lower arm (14). There are at least two upper arms (12) and they are placed opposite each other on the conveyor plates. (7) are connected to the fixed table arms (13). The lower arms (14) are connected to the table arms (13) It can rotate around the table spindle (8) inside. The other ends of the lower arms (14) are connected to the lower bearing (5). The lower arms The other end enters the connection channel of the lower bearing (5) and the 10 on it They are connected to each other by bearing shafts (6) which are inserted into the connection holes. Thus, the lower arms (14) are connected from one end to the lower bearing (5) and from the other end to the table The arms (13) are supported on the upper arms (12). The upper arms (12) are connected to the upper bearing at one end. (4) and at the other ends they are supported on the table arms (13). The lower bearing (5) is preferably of the same or similar structure as the upper bearing (4). The bearing has a U-shaped connection channel (5) and a lower hanger (3) on it. There is a connection extension (3). The lower hanger (3) is the same as the upper hanger (2). or is of a similar form. The lower hanger (3) is attached to the connecting extension on the lower bearing (5). It is attached. There is a hook form on the lower hanger (3) and the said hook is 20 The vibro cutter is attached to the form. Thus, the vibro cutter is attached via the lower hanger (3). It is connected and the crane connection is made on the upper hanger (2). The crane is connected. The subject carries the entire system linearly in the air. The lower arms (14) and upper arms (12) are attached to the table arms (13), and the table arms (13) are attached to the transport 25 It is attached to the transport plate (7). The transport plate (7) is preferably attached to two opposite sides. It is customary. The table handle (13) is mounted behind the transport table (7). Table handle (13) preferably it is covered with a table cover (9) and the table handle (13) is not visible. Flexible element (10) is located between the transport plate (7). Flexible element (10) Flexible element connection surfaces (11) are located along the outer edges. Flexible 30 The element connection surface (11) has connection holes and is flexible 11 element (10) passes through the connection holes into the transport plate (7) opposite each other. It is connected as a flexible element (10) plastic, elastomer damper. It can be used. In a different application of the invention, as a flexible element (10). spiral springs, leaf springs, or similar dampers of different structures and properties It can be used. The flexible element (10) is preferably inside the transport plate (7) and 5 It is attached between the opposite sides of the conveyor plate (7). To the plate arms (13) When any force is applied, that force is transferred to the bearing plate (7) It is transferred and conveyed to the flexible element (10) by the movement of the conveyor plate (7). The vibration force applied to the flexible element (10) is compressed or stretched It absorbs and dampens. 10 When the vibro pile driver is operating, the vibrations it generates drive pipes, profiles, and similar structures into the ground. It is being driven in. During this driving process, due to the ground conditions... Vibrations and shocks occur. These vibrations are where the vibro cutter is attached. The vibration of the vibro impactor is transmitted through the lower hanger (3) in the vibration damper (1). 15 Vibrations are transmitted from the lower hanger (3) to the lower bearing (5). Lower bearing (5) The lower arms (14) which are on the bearing, with the vibration force applied to them It is moving. The lower arms (14) are “V” shaped and connect to the table arms (13) and the transport It is attached to the table (7). The lower arms (14) are attached to the table arms (13) by the table spindle (8). because it is mounted on a bed and also preferably connected in a "V" shape at an angle 20 The movement of the table arms is angular according to the force applied to them (13) It transmits. This angular movement originates from the vibro-driven mechanism and The vibration motion coming linearly to the vibro-chain vibration damper (1) is below The table is divided into two by arms (14) and moved angularly towards the horizontal directions. It is transmitted to the arms (13) and the conveyor plate (7). 25 on the conveyor plate (7) The vibration force causes the oppositely standing conveyor tables (7) to move. This is connected between the transport plate (7) and the transport plate (7) with the movement of the transport plate (7). This causes the flexible element (10) to compress and move. Flexible Compression and stretching motion of element (10) Vibration force of flexible element (10) It ensures that the vibration is absorbed and dampened through this process. Vibration motion transmission 30 Because the load is damped by the flexible element (10) located inside the table (7) 12 If any vibration remains on the upper arms (12) attached to the table (7), It is transferred to the bearing (4) and from there to the crane via the upper hanger (2). Vibro The vibrator vibration damper (1) absorbs the vibration movement from the vibro vibrator into the lower arms. (14) and conveys it to the conveying table (7) via the table arms (13), The vibration is damped here via the flexible element (10) and then the upper 5 If there is any remaining vibration via the arms (12), it is transmitted to the crane. Vibro hammer The vibration damper (1) changes the direction of the vibration movement occurring in the vertical direction to “V”. It changes and dampens the voltage angularly through arms in its shape. 10 of the most important features of the vibro-driven vibration damper (1) which is the subject of the invention one of them is the operation of the vibro pile driver and the vibration movement caused by the ground. It is the splitting of a particle vertically into two, causing it to shift angularly horizontally. Vibration. The movement is achieved by "V" shaped lower arms (14) which are mounted on the lower bearing (5). It splits into two at the point and is oriented in a different angular direction. Another important feature of the vibro-driven vibration damper (1) which is the subject of the invention is two separate vibration forces, facing each other and with a flexible element between them. It is conveyed to the conveying table (7) located at (10) by two separate points with table arms (13). Thus, the vibrational motion is transferred to a wide conveyor plate (7) and the conveyor the movement of the table (7) and the 20 connected to the transport table (7) with the said movement With the movement of the flexible element (10), the vibration motion is damped. Then, on the transport table (7), the table arm (13) is attached in an inverted “V” shape. with the attached upper arms (12) and the upper bearing (4) on which the upper arms (12) are supported. The movement is brought back to a single point and transmitted to the crane via the upper sling (2). 25
Claims
13 REQUESTS 1. A device that attaches to a vibro saw at one end and holds the vibro saw in place at the other end. The vertical movement that occurs during the operation of the vibro-driven saw attached to the machine. It works by splitting and damping vibrations and shocks angularly in the horizontal direction. preventing it from being transmitted to the machine; - at least one overhead sling (2) located at the top and connected to the crane, - at least one lower hanger (3) located at the bottom and connected to the vibro breaker, - attached to the upper suspension (2), into which the linear upper arms (12) are attached and the upper At least one upper bearing (4) that provides bearing for the arms (12), 10 - attached to the lower suspension (3), into which the linear lower arms (14) are attached and the lower At least one sub-bearing (5) that provides bearing for the arms (14), - containing, - via the table arm (13) on it, from the upper part to the upper arms (12), connected to the lower arms (14) from the lower section, facing each other 15 a transport platform consisting of two parts with a flexible element (10) mounted between them (7), - located inside the transport plate (7) and connected to the transport plate (7), flexible, flexing according to the movements of the transport plate (7) and coming onto it at least one flexible element that absorbs the force (10), 20 - connected to the upper bearing (4) and the lower bearing (5), which are also connected to each other. the lower bearing that is attached, which absorbs the vibration generated during the operation of the vibro-driven machine. (5) The lower arm (14) transmits through a different axis angularly and linearly, A vibro-cracker characterized by a table arm (13) and upper arm (12) damper (1). 25 2. To divert vertically incoming vibrations to the sides at a linearly different angle. by sliding through the correctly positioned lower arms (14) and with the flexible element (10) characterized by the complete or partial damping of vibrations through compression. a vibro-driven vibration damper (1). 30 14 3. The vibration movement is carried on the lower bearing (5) which is a “V” shaped lower bearing. the arms (14) are divided into two at one point and in an angularly different direction. a vibro-chained vibration damper characterized by its direction (1).
4. Two separate vibration forces, facing each other and with an elastic band between them 5 element (10) is attached to the transport table (7) from two separate points by table arms (13) The vibration motion is transmitted to a wide conveying table (7) and the conveying the movement of the table (7) and the transport table (7) with the said movement Vibration motion together with the movement of the attached flexible element (10) a vibro-cracker vibration damper characterized by damping (1). 10 5. The vibration generated during the operation of the vibro hammer is first felt by the lower hanger (3) and vibrations are taken from the lower hanger (3) and transferred to the lower bearing (5) transmission and through the lower arms (14) which are mounted on the lower bearing (5) with the vibration being split into two “V” shaped table arms (13) and conveying 15 a vibro-shaker like the one in Claim 1, characterized by being transmitted to the table (7). vibration damper (1).
6. The lower arms (14) are supported by the table spindle (8) on the table arms (13) and are angularly Because they are connected, their movement is angular depending on the force applied to them. table 20 transfer to the arms (13) with the angular movement from the vibro jack originating from and linearly coming to the vibro-cracker vibration damper (1) The vibration motion is divided into two by the lower arms (14) and is horizontal at an angle. by being conveyed to the table arms (13) and the conveying table (7) by being moved in the directions A vibro-cracker vibration damper as described in Claim 1 (1). 25 7. The vibration movement from the vibro cutter is transmitted to the lower arms (14) and table arms (13) transmitting the vibration through the conveyor plate (7) to the flexible platform. It is damped via element (10) and then via upper arms (12). Claim 1, 30, is characterized by the transmission of any remaining vibration to the crane. such as a vibro-cracker vibration damper (1).
8. Operation of the vibro pile driver and the vibration movement caused by the ground. The vibrating motion of the "V" shaped lower arms is mounted on the lower bearing (5). (14) is divided into two from one point and in an angularly different direction. a vibro jackhammer like the one in Claim 1, characterized by its direction. vibration damper (1). 5 9. Linear in structure, in the form of a linear arm, with connecting holes at both ends. bearing shafts (6) and table shafts are located in the said connection holes. (8) The upper arm (12), table arm (13) and lower arm are connected to each other by being attached. A vibro-cracker vibration as in Claim 1 characterized by (14) 10 damper (1).
10. The upper arm (12), table arm (13) and lower arm (14) will be at a narrow angle to each other. In the figure, the upper arms (12) are in a “V” shape to the table arm (13), the lower arms (14) to the table 15 as in Claim 1, characterized by its attachment in a “V” shape to the arm (13). a vibro-cracker vibration damper (1).
11. A connecting extension to which the upper hanger (2) will be attached and the said connection The connection channel has an upper arm (12) in the shape of a "U" under its extension. The top 20 has an extension and connection holes on the "U" shaped connection channel. Vibro-cracker vibration as in Claim 1 characterized by bearing (4) damper (1).
12. A connecting extension to which the lower hanger (3) will be attached and the said connection connection channel with a "U" shaped lower arm (14) under its extension, connection 25 bottom with connection holes on the extension and "U" shaped connection channel Vibro-cracker vibration as in Claim 1 characterized by bearing (5) damper (1).
13. The upper bearing (4) passes into the connection channel and is connected to the bearing shaft (6) by 30 from the connection channel hole and from the connection holes on it, from above connected to the bearing (4) and thus the bearing inside the upper bearing (4) 16 The claim is characterized by an upper arm (12) that can move along the axis of the shaft (6). A vibro-cracker vibration damper like the one in 1 (1).
14. The lower bearing (5) passes into the connecting channel and is connected to the bearing shaft (6) from the connection channel hole and from the connection holes on it, the bottom 5 connected to the bearing (5) and thus the bearing inside the lower bearing (5) The claim is characterized by a lower arm (14) that can move along the axis of the shaft (6). A vibro-cracker vibration damper like the one in 1 (1).
15. Fixed to the outward-facing surface of the transport plate (7) and connected to the transport plate (7) and 10 Characterized by the table arm (13) that moves together, as in Claim 1 a vibro-cracker vibration damper (1).
16. One end is attached to the upper bearing (4), and the other end to the transport plate (7) The upper arm (12) is connected in a V shape to the attached table arm (13) and the lower arm (15) from one end. to the table arm connected to the bearing (5) and to the transport table (7) at the other end. (13) As in Claim 1, characterized by the lower arm (14) connected in a V shape. a vibro-cracker vibration damper (1).
17. Supported at one end to the lower bearing (5) and at the other end to the table arms (13), 20 lower arms (14) that can perform circular rotational movement at the connection points and one bearing from one end to the upper bearing (4) and from the other end to the table arms (13), with upper arms (12) that can perform circular rotational movement at the connection points A vibro-cracker vibration damper (1) as characterized in Claim 1.
18. Flexible element connection surface (11) along its outer edges and the surface in question The transport plate (7) has connection holes on it, through these connection holes The claim is characterized by a flexible element (10) connected to each other. A vibro-cracker vibration damper like the one in 1 (1).
19. Inside the transport plate (7) and opposite plates of the transport plate (7) When any force is applied to the table arms (13) connected between them, the word The subject is located between the transport plate (7) which moves with force and is compressed 17 or characterized by a flexible element (10) that absorbs the force by stretching A vibro-cracker vibration damper (1) as in Claim 1.
20. The table arm (13) located on the transport table (7) is connected in an inverted “V” shape. upper arms (12) and upper bearing (4) on which the upper arms (12) are supported, and 5 by taking the movement to a single point and transmitting it to the crane via the upper sling (2) A vibro-cracker vibration damper (1) as characterized in Claim 1. 15