Vibrating rod guide device capable of finely adjusting angle
By designing a vibratory rod guide device with adjustable angle, and using a servo motor to drive gear transmission and push rod mechanism, the vibration damage and noise problems caused by manual vibration are solved, and the automated operation and efficient vibration of the equipment are realized.
Patent Information
- Application Number
- CN202423048585.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-11
AI Technical Summary
When manually supporting the vibrator, the vibrator will produce high-frequency vibrations, which can cause injury to the worker's arms. The vibrator also generates noise when it is working, which can cause hearing damage to the workers on site. In addition, the vibrating area is limited and the efficiency is not high.
A finely adjustable vibratory rod guide device was designed, including a mounting component, a moving component, an adjusting component, and a placement component. The device utilizes a servo motor to drive gear transmission and a push rod mechanism to achieve automated movement and angle adjustment, reducing manual operation.
It has enabled automated operation of the equipment, expanded the vibration area, avoided vibration and noise damage caused by manual hand operation, and improved vibration efficiency.
Smart Images

Figure CN223647430U_ABST
Abstract
Description
Technical fields:
[0001] This utility model relates to the field of engineering construction equipment, specifically to a vibrating rod guide device with adjustable angle. Background technology:
[0002] With the development of science and technology, people have higher and higher requirements for living standards. The construction and development of cities cannot be separated from concrete. In concrete, sand and stone play a skeleton role and are called aggregates. Cement and water form cement paste. The cement paste coats the surface of the aggregate and fills its gaps. Before hardening, the cement paste plays a lubricating role, giving the mixture a certain workability and making it easy to construct. After the cement paste hardens, it binds the aggregate into a solid whole.
[0003] Currently, most concrete construction processes rely on manual support and vibration. However, when manually supporting the vibrator, the vibrator will generate high-frequency vibrations, which can cause arm damage to workers who hold it for a long time. The vibrator will also generate noise, causing hearing damage to workers on site. In addition, the vibrating area is limited, and the vibration efficiency is not high.
[0004] Therefore, improvements were made to this, and a vibratory rod guide device with a finely adjustable angle was proposed. Summary of the Invention:
[0005] The technical problem to be solved by this utility model is to provide a vibratory rod guide device with adjustable angle, which solves the problems of high-frequency vibration of the vibratory rod when manually supporting the vibrator, which causes injury to the worker's arm; noise generated when the vibratory rod is working, which causes hearing damage to the workers on site; and limited vibratory area and low vibratory efficiency.
[0006] The purpose of this utility model is achieved as follows:
[0007] A vibratory rod guide device with adjustable angle includes a mounting component for supporting various components, a movable component disposed on the mounting component, an adjustment component disposed on the movable component, and a placement component mounted on the adjustment component.
[0008] The mounting assembly consists of two end pieces and several intermediate connectors. Each intermediate connector includes a base plate, one end of which is fixedly connected to an outwardly extending support rod. The other end of the base plate has a recessed groove that is adapted to the support rod for inserting it. When the two intermediate connectors are connected, the support rod of one intermediate connector is inserted into the groove of the other intermediate connector.
[0009] Both end pieces include a base plate. One end piece has a base plate with a connecting rod fixed to the end facing the middle connector. The other end piece has a base plate with a groove for inserting the connecting rod at the end facing the middle connector. Both end pieces have a crossbeam fixed to the end away from the middle connector. Both end pieces have hooks fixed to the crossbeams.
[0010] Each intermediate connector and the two end pieces have two rows of auxiliary slots on their base plates. Each row of auxiliary slots includes several auxiliary slots. The auxiliary slots in the same row of each intermediate connector and the two end pieces are all on the same straight line.
[0011] Each pole has a downward-facing snap-fit groove on its lower surface. A locking block is installed inside the snap-fit groove. One end of a return spring is fixed to the bottom of the snap-fit groove, and the other end of the return spring is fixed to the side of the locking block facing the snap-fit groove. Each groove for inserting the pole has a through hole corresponding to the locking block on its lower side wall.
[0012] The locking block has protrusions extending outward at both ends, and the shape of the through hole is adapted to the shape of the locking block.
[0013] Axial moving grooves are provided on both sides of the upper surface of the bottom plate of the end piece and the bottom plate of the intermediate connecting piece.
[0014] The movable component includes a housing with two rows of movable wheels connected to the bottom of the housing. The two rows of movable wheels are respectively placed in two movable slots of the mounting component. A placement slot is opened inside the housing, and a servo motor is installed in the placement slot. A pulley is fixed to the output end of the servo motor. The component also includes two first gears and a driven wheel, which are all fixed on a shaft. The shaft is connected to the placement slot through a bearing, and the pulley and the driven wheel are connected by a belt.
[0015] Below each of the two first gears are two second gears, which are mounted in placement slots via shafts. Each of the two first gears meshes with the two second gears below it. The bottom plate of the housing at the positions of the two second gears has openings communicating with the placement slots, and the two second gears protrude from the two openings in the bottom plate of the housing. The two second gears are located at the two rows of auxiliary slots of the mounting assembly.
[0016] The spacing between the two second gears is the same as the spacing between the two rows of auxiliary slots on the mounting assembly, and the tooth spacing on the second gear is adapted to the spacing between two adjacent auxiliary slots in the same row.
[0017] The servo motor operates, driving the driven wheel to rotate via pulleys and belts. The rotation of the first gear drives the rotation of the second gear. At this time, the two second gears move in the auxiliary slots on the base plate of the mounting assembly, and drive the housing to move on the mounting assembly by continuously engaging with new auxiliary slots.
[0018] The adjustment assembly includes a protective shell fixed to one side of the upper surface of the housing and a mounting shell fixed to the other side of the upper surface of the housing. The two side walls of the mounting shell are respectively provided with vertical guide holes. The mounting shell is provided with a support bracket. The two ends of the support bracket extend from the guide holes on both sides of the mounting shell. The lower ends of the support brackets extending from the two guide holes are rotatably connected to push rods. The other ends of the two push rods are rotatably connected to inclined rods. The other ends of the two inclined rods are rotatably connected to rotating rods. The housing is provided with round holes communicating with the placement slots at the positions corresponding to the two rotating rods. The other ends of the two rotating rods extend into the placement slots from the round holes and are respectively fixed to the two first gears.
[0019] A lifting plate is fixedly connected to the middle of the top of the support bracket, and a locking block is fixedly connected to both sides of the lifting plate. The inner wall of the mounting housing is provided with a limiting groove that matches the locking block at the corresponding position, and the locking block is placed in the corresponding limiting groove.
[0020] The protective housing contains a power supply module, which is connected to the servo motor and vibrating rod via wires.
[0021] During the rotation of the first gear, the rotating rod is driven to rotate, which in turn causes the inclined rod and the push rod to move. At this time, the support bracket moves up and down along the guide hole under the thrust of the inclined rod and the push rod, which in turn causes the lifting plate to move.
[0022] The mounting assembly includes a vertical plate, which is fixed to the top of the lifting plate. A connecting seat is fixed to the top of one side of the vertical plate. One end of a first connecting plate is rotatably connected to the connecting seat. Two brackets are fixed to the top of the mounting housing. An adjusting plate located between the two brackets is rotatably connected to the two brackets.
[0023] The adjusting plate has a groove at one end facing the first connecting plate, the first connecting plate extends into the groove of the adjusting plate, and a spring connects the adjusting plate and the first connecting plate.
[0024] An inclined plate is movably connected to the end of the adjusting plate away from the connecting plate via a damping shaft. Both sides of the upper surface of the inclined plate are provided with damping shafts. Two arc-shaped retaining members are movably connected to the two damping shafts respectively. Two outwardly extending connecting posts are fixed in the middle of the outer arc surface of the two retaining members. A second connecting plate is connected between the outer ends of the two connecting posts. The second connecting plate is provided with threaded holes. The connecting posts and the second connecting plate form a locking device, which also includes a locking ring. The locking ring is provided with multiple threaded holes. After the two ends of the locking ring extend into the locking device, the locking ring and the locking device are locked by screwing bolts into its threaded holes and the threaded holes of the locking device.
[0025] Several wire fixing components are fixedly connected to the middle of the upper surface of the adjustment plate. The wire fixing components include two arc-shaped seats, both of which are fixed to the adjustment plate. Adjusting bolts are threaded onto both arc-shaped seats, and both adjusting bolts extend into the inner side of the seat. The ends of the adjusting bolts located inside the seat are movably connected to arc-shaped clamping plates.
[0026] The beneficial effects of this utility model are:
[0027] By setting up mounting and moving components, the independent operation of the equipment is realized and the operating distance of the equipment is extended, so that the equipment can operate within the required range, thereby effectively avoiding manual carrying and transfer operations. This solves the problem in the existing technology that workers have to hold the equipment by hand to vibrate, resulting in a limited vibrating area and low vibrating efficiency.
[0028] By setting adjustment and placement components, the equipment can be adjusted within a certain range, allowing the vibrator to vibrate concrete at multiple angles and depths. This ensures a reduction in air bubbles within the concrete, enabling independent operation of the equipment and extending its operating distance. This allows the equipment to operate within the required range, effectively avoiding manual handling and transfer. It also addresses the problems of existing technologies that mostly rely on manual support for vibration, which generates high-frequency vibrations that can injure workers' arms with prolonged hand-held operation; the noise generated during operation can cause hearing damage to workers; and the limited vibratory area and low efficiency. Attached image description:
[0029] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0030] Figure 2 This is a schematic diagram of the overall structure of this utility model from another angle;
[0031] Figure 3 This is a schematic diagram of the mounting component in this utility model;
[0032] Figure 4 This is a schematic diagram of the structure of the movable component in this utility model;
[0033] Figure 5 This is a schematic diagram of the moving component in this utility model from another angle;
[0034] Figure 6 This is a cross-sectional structural diagram of the moving component in this utility model;
[0035] Figure 7 This is a schematic diagram of the transmission relationship between the moving component and the adjusting component in this utility model;
[0036] Figure 8 This is a schematic diagram of the structure of the mounting component in this utility model;
[0037] Figure 9 This is a structural schematic diagram of the wire fixing component in this utility model. Detailed implementation method:
[0038] The following is combined with Figure 1-9 The present invention will be further described below;
[0039] A vibratory rod guide device with adjustable angle includes a mounting component 1 for supporting various components, a movable component 2 disposed on the mounting component, an adjustment component 3 disposed on the movable component 2, and a placement component 4 mounted on the adjustment component 3.
[0040] The mounting assembly 1 consists of two end pieces and several intermediate connectors. The intermediate connectors include a base plate 1-1, one end of which is fixedly connected to an outwardly extending support rod 1-2. The other end of the base plate has a recessed groove that is adapted to the support rod for inserting the support rod. When the two intermediate connectors are connected, the support rod of one intermediate connector is inserted into the groove of the other intermediate connector.
[0041] Both end pieces include a base plate. One end piece has a base plate with a connecting rod fixed at the end facing the middle connector. The other end piece has a base plate with a groove for inserting the connecting rod at the end facing the middle connector. Both end pieces have a crossbeam 1-3 fixed at the end away from the middle connector. Both end pieces have hooks 1-4 fixed on the crossbeams.
[0042] Each intermediate connector and the two end pieces have two rows of auxiliary grooves 1-5 on their base plates. Each row of auxiliary grooves includes several auxiliary grooves. The auxiliary grooves of the same row of the intermediate connectors and the two end pieces are all on the same straight line.
[0043] Each connecting pole has a downward-facing snap-fit groove 1-9 on its lower surface. A locking block 1-6 is provided in the snap-fit groove. One end of a return spring 1-7 is fixed to the bottom of the snap-fit groove, and the other end of the return spring is fixed to the side of the locking block facing the snap-fit groove. Each groove for inserting the connecting pole has a through hole 1-8 corresponding to the locking block on its lower side wall.
[0044] The locking block has protrusions 1-6-1 extending outward at both ends, and the shape of the through hole 1-8 is adapted to the shape of the locking block.
[0045] Axial moving grooves 1-10 are provided on both sides of the upper surface of the bottom plate of the end piece and the bottom plate of the intermediate connecting piece.
[0046] When connecting intermediate connectors, press the locking block to compress the return spring. At this time, the locking block is engaged inside the locking groove. Then, insert the connecting rod into the groove of the adjacent intermediate connector. After the connection is in place, when the locking block is at the through hole, the return spring resets and pops the locking block out. Then, the locking block can be rotated so that the protrusions on both sides engage with the corresponding positions of the through hole. At this time, the connection of two intermediate connectors is completed. After the connection is completed, repeat the operation as needed to connect multiple intermediate connectors. After the operation is completed, follow the same operation to complete the installation of two end pieces. Then, connect the mounting assembly to the steel frame using the hook.
[0047] The movable component 2 includes a housing 2-1, with two rows of movable wheels 2-2 connected to the bottom of the housing. The two rows of movable wheels are respectively placed in two movable slots of the mounting component. A placement slot is opened inside the housing, and a servo motor 2-3 is installed in the placement slot. A pulley 2-4 is fixed to the output end of the servo motor. It also includes two first gears 2-5 and a driven wheel 2-6. The two first gears and the driven wheel are fixed on a shaft. The shaft is connected to the placement slot through a bearing. The pulley 2-4 and the driven wheel 2-6 are connected by a belt 2-7.
[0048] Below each of the two first gears are two second gears 2-8, which are mounted in the placement slots via shafts. Each of the two first gears meshes with the two second gears below it. The bottom plate of the housing at the positions of the two second gears has openings communicating with the placement slots, and the two second gears protrude from the two openings in the bottom plate of the housing. The two second gears are located at the two rows of auxiliary slots of the mounting assembly.
[0049] The spacing between the two second gears is the same as the spacing between the two rows of auxiliary slots on the mounting assembly, and the tooth spacing on the second gear is adapted to the spacing between two adjacent auxiliary slots in the same row.
[0050] The servo motor operates, driving the driven wheel to rotate via pulleys and belts. The rotation of the first gear drives the rotation of the second gear. At this time, the two second gears move in the auxiliary slots on the base plate of the mounting assembly, and drive the housing to move on the mounting assembly by continuously engaging with new auxiliary slots.
[0051] The adjustment component 3 includes a protective housing 3-1 fixed to one side of the upper surface of the housing, and a mounting housing 3-2 fixed to the other side of the upper surface of the housing. The two side walls of the mounting housing are respectively provided with vertical guide holes 3-3. The mounting housing is provided with a support bracket 3-4. The two ends of the support bracket extend from the guide holes on both sides of the mounting housing. The lower ends of the support brackets extending from the two guide holes are rotatably connected to push rods 3-5. The other ends of the two push rods are rotatably connected to inclined rods 3-6. The other ends of the two inclined rods are rotatably connected to rotating rods 3-7. The housing 2-1 is provided with round holes that communicate with the placement groove at the positions corresponding to the two rotating rods. The other ends of the two rotating rods extend into the placement groove from the round holes and are respectively fixed to the two first gears 2-5.
[0052] A lifting plate 3-8 is fixedly connected to the middle of the top of the support bracket 3-4. A locking block 3-9 is fixedly connected to both sides of the lifting plate. The inner wall of the mounting housing 3-2 is provided with a limiting groove 3-10 that matches the locking block at the corresponding position. The locking block is placed in the corresponding limiting groove.
[0053] The protective housing 3-1 has a power supply module 3-11 inside, which is connected to the servo motor and vibrating rod through wires.
[0054] During the rotation of the first gear 2-5, the rotating rod 3-7 is driven to rotate, which in turn causes the inclined rod 3-6 and the push rod 3-5 to move. At this time, the bearing bracket 3-4 moves up and down along the guide hole under the thrust of the inclined rod and the push rod, which in turn causes the lifting plate 3-8 to move.
[0055] The mounting assembly 4 includes a vertical plate 4-1, which is fixed to the top of the lifting plate 3-8. A connecting seat 4-2 is fixed to the top of one side of the vertical plate. One end of the first connecting plate 4-3 is rotatably connected to the connecting seat. Two brackets 4-4 are fixed to the top of the mounting housing 3-2. An adjusting plate 4-5 located between the two brackets is rotatably connected to the two brackets.
[0056] The adjusting plate 4-5 has a groove at one end facing the first connecting plate, the first connecting plate extends into the groove of the adjusting plate, and a spring 4-12 is connected between the adjusting plate and the first connecting plate;
[0057] An inclined plate 4-6 is movably connected to the end of the adjusting plate 4-5 away from the connecting plate via a damping shaft. Both sides of the upper surface of the inclined plate are provided with damping shafts. Two arc-shaped retaining members 4-7 are movably connected to the two damping shafts respectively. Two outwardly extending connecting posts 4-8 are fixed in the middle of the outer arc surface of the two retaining members 4-7. A second connecting plate 4-9 is connected between the outer ends of the two connecting posts. The second connecting plate is provided with threaded holes. The connecting posts and the second connecting plate form a locking device. It also includes a locking ring 4-10. The locking ring is provided with multiple threaded holes. After the two ends of the locking ring extend into the locking device, the locking ring and the locking device are locked by screwing bolts 4-11 into its threaded holes and the threaded holes of the locking device.
[0058] Several wire fixing parts 5 are fixedly connected to the middle of the upper surface of the adjusting plate 4-5. The wire fixing parts include two arc-shaped seats 5-1 arranged opposite to each other. Both arc-shaped seats are fixed to the adjusting plate. Adjusting bolts 5-2 are threadedly connected to both arc-shaped seats. Both adjusting bolts extend into the inner side of the seat body. The ends of the adjusting bolts located inside the seat body are movably connected to arc-shaped clamping plates 5-3.
[0059] During the up-and-down movement of the vertical plate 4-1, the connecting seat 4-2 moves with it and drives the first connecting plate 4-3 to move synchronously. When the first connecting plate 4-3 moves too much, the first connecting plate can be pulled out from the adjusting plate. During this process, the spring 4-12 is extended. When the first connecting plate 4-3 swings up and down, the adjusting plate 4-5 swings synchronously around the bracket 4-4, which in turn causes the tilting plate 4-6 to move synchronously. The vibrator is placed between the two clamping parts 4-7, the locking ring is locked, and the power supply line is clamped to the fixing part to complete the fixation of the vibrator. Then, the excess power supply line is placed inside the protective shell and connected to the power supply module 3-4 to start the equipment.
[0060] The working process of this device:
[0061] When connecting the intermediate connectors of the mounting assembly, press the locking block to compress the return spring. At this time, the locking block is engaged inside the locking groove. Then, insert the connecting rod into the groove of the adjacent intermediate component. After the connection is in place, the return spring resets and pops the locking block out. Then, the locking block can be rotated so that the protrusions on both sides engage with the corresponding positions of the through holes. At this time, the connection of two intermediate connectors is completed. After the connection is completed, repeat the operation as needed to connect multiple intermediate connectors. After the operation is completed, follow the same operation to complete the installation of the end piece. Then, connect the mounting assembly to the steel frame using the hook.
[0062] The servo motor operates, driving the driven wheel to rotate via pulleys and belts. The rotation of the first gear drives the rotation of the second gear. At this time, the two second gears move in the auxiliary slots on the base plate of the mounting assembly, and drive the housing to move on the mounting assembly by continuously engaging with new auxiliary slots.
[0063] During the rotation of the first gear, the rotating rod is driven to rotate, which in turn causes the inclined rod and the push rod to move. At this time, the supporting bracket moves up and down along the guide hole under the thrust of the inclined rod and the push rod, which in turn causes the lifting plate to move. This causes the vertical plate on it to move up and down, thus forming a reciprocating state. During the up and down movement of the vertical plate, the connecting seat moves with it and drives the first connecting plate to move synchronously. When the first connecting plate moves too much, the first connecting plate is pulled out by the adjusting plate. During this process, the spring is extended. When the first connecting plate swings up and down, the adjusting plate swings synchronously around the bracket, which in turn causes the inclined plate to move synchronously. The vibrator is placed on the clamping part and fixed, and the power supply line is clamped on the fixing part, thus completing the fixation of the vibrating device. Then, the excess power supply line is placed inside the protective shell and connected to the power supply module, and the equipment can be started.
[0064] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A vibratory rod guide device with adjustable angle, characterized in that: Including for The mounting component (1) that carries each component, the moving component (2) set on the mounting component, the adjusting component (3) set on the moving component (2), and the placement component (4) installed on the adjusting component (3); The mounting assembly (1) consists of two end pieces and several intermediate connectors. The intermediate connectors include a base plate (1-1), one end of which is fixedly connected to an outwardly extending support rod (1-2). The other end of the base plate has a recessed groove that is adapted to the support rod for inserting the support rod. When the two intermediate connectors are connected, the support rod of one intermediate connector is inserted into the groove of the other intermediate connector. Both end pieces include a base plate. One end piece has a base plate with a connecting rod fixed at the end facing the middle connector. The other end piece has a base plate with a groove for inserting the connecting rod at the end facing the middle connector. Both end pieces have a crossbeam (1-3) fixed at the end away from the middle connector. Both end pieces have a hook (1-4) fixed on the crossbeam. Each intermediate connector and the two end pieces have two rows of auxiliary slots (1-5) on their base plates. Each row of auxiliary slots includes several auxiliary slots. The auxiliary slots of the same row of the intermediate connectors and the two end pieces are all on the same straight line. The moving component (2) includes a housing (2-1), with two rows of moving wheels (2-2) connected to the bottom of the housing. A placement slot is provided inside the housing, and a servo motor (2-3) is installed in the placement slot. A pulley (2-4) is fixed to the output end of the servo motor. It also includes two first gears (2-5) and a driven wheel (2-6). The two first gears and the driven wheel are fixed on a shaft, which is connected to the placement slot by a bearing. The pulley (2-4) and the driven wheel (2-6) are connected by a belt (2-7). Below the two first gears are two second gears (2-8), and the two second gears are respectively installed in the placement slots via shafts. The two first gears mesh with the two second gears below them. The bottom plate of the housing corresponding to the positions of the two second gears has an opening that communicates with the placement slots. The two second gears protrude from the two openings of the bottom plate of the housing. The two second gears are located at the two rows of auxiliary slots of the mounting assembly. The adjustment component (3) includes a protective housing (3-1) fixed on one side of the upper surface of the housing and a mounting housing (3-2) fixed on the other side of the upper surface of the housing. The two side walls of the mounting housing are respectively provided with vertical guide holes (3-3). The mounting housing is provided with a support bracket (3-4). The two ends of the support bracket extend from the guide holes on both sides of the mounting housing. The lower ends of the support brackets extending from the two guide holes are rotatably connected to push rods (3-5). The other ends of the two push rods are rotatably connected to inclined rods (3-6). The other ends of the two inclined rods are rotatably connected to rotating rods (3-7). The housing (2-1) is provided with round holes that communicate with the placement groove at the positions corresponding to the two rotating rods. The other ends of the two rotating rods extend into the placement groove from the round holes and are respectively fixed on the two first gears (2-5). A lifting plate (3-8) is fixedly connected to the middle of the top of the support bracket (3-4), and a locking block (3-9) is fixedly connected to both sides of the lifting plate. The inner wall of the mounting housing (3-2) is provided with a limiting groove (3-10) that matches the locking block at the position of the corresponding locking block, and the locking block is placed in the corresponding limiting groove. The mounting assembly (4) includes a vertical plate (4-1), which is fixed to the top of the lifting plate (3-8). A connecting seat (4-2) is fixed to the top of one side of the vertical plate. One end of the first connecting plate (4-3) is rotatably connected to the connecting seat. Two brackets (4-4) are fixed to the top of the mounting housing (3-2). An adjusting plate (4-5) located between the two brackets is rotatably connected to the two brackets. The adjusting plate (4-5) has a groove at the end facing the first connecting plate, and the first connecting plate extends into the groove of the adjusting plate; An inclined plate (4-6) is movably connected to the end of the adjusting plate (4-5) away from the connecting plate via a damping shaft. Both sides of the upper surface of the inclined plate are provided with damping shafts. Two arc-shaped retaining parts (4-7) are movably connected to the two damping shafts respectively. Two outwardly extending connecting posts (4-8) are fixed in the middle of the outer arc surface of the two retaining parts (4-7). A second connecting plate (4-9) is connected between the outer ends of the two connecting posts. The second connecting plate is provided with threaded holes. The connecting posts and the second connecting plate form a locking device. It also includes a locking ring (4-10). The locking ring is provided with multiple threaded holes. After the two ends of the locking ring are inserted into the locking device, the locking ring and the locking device are locked by screwing bolts (4-11) in its threaded holes and the threaded holes of the locking device.
2. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: Each pole has a downward-facing snap-fit groove (1-9) on its lower surface, and a locking block (1-6) is provided in the snap-fit groove. One end of a return spring (1-7) is fixed to the bottom of the snap-fit groove, and the other end of the return spring is fixed to the side of the locking block facing the snap-fit groove. Each groove for inserting the pole has a through hole (1-8) on its lower side wall corresponding to the locking block.
3. The vibratory rod guide device with adjustable angle according to claim 2, characterized in that: The locking block has protrusions (1-6-1) extending outward at both ends, and the shape of the through hole (1-8) is adapted to the shape of the locking block.
4. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: Axial moving grooves (1-10) are provided on both sides of the upper surface of the bottom plate of the end piece and the bottom plate of the intermediate connecting piece in the mounting assembly; the two rows of moving wheels of the housing are respectively placed in the two moving grooves of the mounting assembly.
5. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: The spacing between the two second gears is the same as the spacing between the two rows of auxiliary slots on the mounting assembly, and the tooth spacing on the second gear is adapted to the spacing between two adjacent auxiliary slots in the same row.
6. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: The protective housing (3-1) is equipped with a power supply module (3-11), which is connected to the servo motor and vibrating rod via wires.
7. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: A spring (4-12) connects the adjusting plate (4-5) and the first connecting plate (4-3).
8. The vibratory rod guide device with adjustable angle according to claim 1, characterized in that: Several wire fasteners (5) are fixedly connected to the middle of the upper surface of the adjusting plate (4-5).
9. The vibratory rod guide device with adjustable angle according to claim 8, characterized in that: The fixing component includes two arc-shaped seats (5-1) arranged opposite to each other. Both arc-shaped seats are fixed on the adjusting plate. Adjusting bolts (5-2) are threaded onto both arc-shaped seats. Both adjusting bolts extend into the inner side of the seat body. The ends of the adjusting bolts located inside the seat body are movably connected to arc-shaped clamping plates (5-3).