Civil engineering concrete vibrating and compacting device
By introducing a vibration rod, a U-shaped fixing block, and a reinforcing frame into the concrete vibration compaction device, combined with the guidance of the support block and the guide rail, the problems of insufficient vibration and tilting of thick concrete structures are solved, achieving a more efficient concrete compaction effect and device stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-27
AI Technical Summary
Existing concrete vibration compaction devices suffer from insufficient vibration and device tilting when dealing with concrete structures with different moisture contents and thicknesses, especially in thick, flat concrete structures where compaction is difficult.
A concrete vibration compaction device for civil engineering was designed. The output end of the first vibrator is driven to vibrate through a vibration rod, a U-shaped fixing block and a reinforcing frame. Multiple streamlined vibration plates are fixed to the bottom of the first vibration ruler to increase the vibration influence range. At the same time, the traction direction of the device is guided by a support block, a rotating wheel and a guide rail to avoid tilting. A second vibrator and a vibration ruler are also provided for secondary compaction to enhance the stability and compaction effect of the device.
It improves the compaction capacity, solves the problem of compacting thick, flat concrete structures, enhances the stability and convenience of the device, reduces safety hazards, and extends its service life.
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Figure CN224048695U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to concrete vibration technology field, concretely is a kind of civil engineering concrete vibration compaction device. BACKGROUND
[0002] When concrete pouring component, must exclude bubble therein, is tamped, make concrete dense combination, eliminate honeycomb pockmark of concrete etc. Phenomenon, to improve its strength, ensure the quality of concrete component, the process that above-mentioned concrete eliminates bubble, is tamped, namely concrete vibration, and the machine for carrying out mechanized tamping concrete is concrete vibrator, and the types of concrete vibrator are more.
[0003] The existing concrete vibration compaction device includes concrete vibration ruler, that is, a device for vibrating concrete on the surface of concrete by ruler-shaped structure, has the advantages of large vibration area and high effect, but in real engineering operation, since the water content of concrete is different, and the thickness of concrete structure also has difference, the concrete vibration ruler has the problems that concrete structure cannot bear its weight and thick concrete vibration is insufficient.
[0004] Therefore, the utility model provides a kind of civil engineering concrete vibration compaction device. UTILITY MODEL CONTENT
[0005] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background art is solved.
[0006] The technical scheme adopted by the utility model to solve its technical problems is: the utility model discloses a kind of civil engineering concrete vibration compaction device, including first vibration machine, the output of the first vibration machine is fixedly connected with transmission vibration rod;U-shaped fixed block is fixedly connected on the lateral wall of the transmission vibration rod, and multiple U-shaped fixed blocks are linearly arrayed and arranged;The abutment of multiple U-shaped fixed blocks is provided with reinforcing frame, and bolt is respectively arranged between the U-shaped fixed block and the reinforcing frame;The bottom of the reinforcing frame is fixedly connected with first vibration ruler;The bottom of the first vibration ruler is fixedly connected with tamping vibration piece, and multiple tamping vibration pieces are correspondingly arranged;The tamping vibration piece adopts streamline structure;Control handle is fixedly connected on the lateral wall of the first vibration machine, and two control handles are symmetrically arranged;This step is driven by the output vibration of first vibration machine by setting transmission vibration rod, U-shaped fixed block and reinforcing frame, by fixedly connecting multiple tamping vibration pieces of streamline structure at the bottom of first vibration ruler, multiple tamping vibration pieces intrude into concrete interior, so as to increase the vibration influence range of device, enhance the vibration capacity of concrete vibration compaction device, it is favorable to solve the compaction difficult problem of relatively thick plane concrete structure.
[0007] Preferably, the side wall of the first vibrating ruler is provided with limiting holes, and the plurality of limiting holes are correspondingly arranged; the bottom of the first vibrating ruler is provided with supporting blocks, and the two supporting blocks are correspondingly arranged; the bottom of the supporting block is rotatably connected with a rotating wheel, and the two rotating wheels are correspondingly arranged; the bottom of the rotating wheel is provided with a guide rail; the top of the supporting block is fixedly connected with a limiting rod, and a plurality of limiting rods are arranged at the positions corresponding to the limiting holes; the top of the supporting block is fixedly connected with a spring, and a plurality of springs are arranged at the positions corresponding to the limiting rods; the supporting block, the rotating wheel and the guide rail guiding device are arranged to guide the traction direction, so that the device is prevented from tilting during traction, the stability and convenience of the device are enhanced, and the problems of tilting during operation and the surface of part of the concrete being unable to bear when the device is too heavy are solved.
[0008] Preferably, the side wall of the first vibrating machine is provided with a second vibrating machine; the output end of the second vibrating machine is fixedly connected with a vibration transmission rod; the side wall of the vibration transmission rod is fixedly connected with a U-shaped fixed block, and a plurality of U-shaped fixed blocks are arranged in linear array; the bottom of the U-shaped fixed block is provided with a reinforcing frame, and the bottom of the reinforcing frame is fixedly connected with a second vibrating ruler; the second vibrating machine and the second vibrating ruler are arranged to cooperate with the first vibrating machine and the first vibrating ruler to perform the vibrating and compacting work of the concrete, the second vibrating ruler is used to vibrate and compact the concrete surface vibrated by the first vibrating ruler and the vibrating blade, and the surface cracks of the concrete are eliminated and the compacting effect of the device is improved.
[0009] Preferably, the side wall of the first vibrating machine is fixedly connected with a connecting block, the side wall of the second vibrating machine is fixedly connected with a connecting block, and the two connecting blocks are correspondingly arranged; a connecting bolt is arranged between the two connecting blocks, and the top of the connecting bolt is fixedly connected with a limiting piece; the connecting block and the connecting bolt are arranged to connect the first vibrating machine and the second vibrating machine, so that the connection relationship between the first vibrating machine and the second vibrating machine is more flexible, the device is prevented from being difficult to turn after the first vibrating machine and the second vibrating machine are connected, and the flexibility of the device is improved.
[0010] Preferably, the side wall of the supporting block is fixedly connected with a cleaning block, and a plurality of cleaning blocks are correspondingly arranged; the cleaning block is arranged to clean the falling objects on the top of the guide rail, so that the rotating wheel is prevented from being contacted, the operation of the device is kept stable, and the safety hazard is reduced.
[0011] Preferably, the first and second vibrating rulers are fixed with reinforcing blocks at the top, and the side walls of the reinforcing blocks are fixed on the side walls of the reinforcing frame; this step increases the anti-deformation ability of the first and second vibrating rulers by setting reinforcing blocks in cooperation with reinforcing frames, which helps to avoid deformation of the first and second vibrating rulers under the action of the reaction force of the concrete surface, and prolong the service life of the device assembly.
[0012] Preferably, the first and second vibrating rulers and the vibrating blades are made of stainless steel; this step maintains the structural strength of the device assembly by using stainless steel for the first and second vibrating rulers and the vibrating blades, which helps to reduce the maintenance requirements of the device and prolong the service life.
[0013] The beneficial effects of the utility model are as follows:
[0014] 1. The civil engineering concrete vibrating and compacting device, by setting the transmission rod, the U-shaped fixed block and the reinforcing frame transmission first vibrating machine output end vibration, by fixedly connecting a plurality of vibrating blades at the bottom of the first vibrating ruler, the plurality of vibrating blades intrude into the concrete, thereby increasing the vibration influence range of the device, enhancing the vibrating and compacting ability of the concrete vibrating and compacting device, and solving the compacting difficulty problem of the relatively thick and solid plane concrete structure.
[0015] 2. The civil engineering concrete vibrating and compacting device, by setting the support block, the runner and the guide device traction direction, thereby avoiding the device from tilting in the traction process, enhancing the stability and convenience of the device, and solving the tilting problem in the operation process of the device and the problem that part of the concrete surface cannot bear when the device is too heavy. BRIEF DESCRIPTION OF DRAWINGS
[0016] The utility model will be further described below with reference to the drawings.
[0017] Figure 1 is the perspective view of the utility model;
[0018] Figure 2 is the structural schematic view of the second vibrating ruler in the utility model;
[0019] Figure 3 is the structural schematic view of the U-shaped fixed block in the utility model;
[0020] Figure 4 is the structural schematic view of the support block in the utility model.
[0021] In the figure: 1, first vibration machine; 11, transmission vibration rod; 12, U-shaped fixed block; 13, reinforcing frame; 14, first vibration ruler; 15, tamping piece; 16, control handle; 2, support block; 21, rotating wheel; 22, guide rail; 23, limiting rod; 24, spring; 3, second vibration machine; 31, second vibration ruler; 4, connecting block; 41, connecting bolt; 5, clear material block; 6, reinforcing block. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0023] Specific embodiments are given below.
[0024] As Figures 1 to 4As shown, the utility model discloses a civil engineering concrete vibration compaction device, including first vibrator 1, the output of first vibrator 1 is fixedly connected with transmission vibration rod 11, the sidewall of transmission vibration rod 11 is fixedly connected with U type fixed block 12, and multiple U type fixed blocks 12 are linear array distribution setting, the abutment of multiple U type fixed blocks 12 is provided with reinforcing frame 13, and the bolt is respectively arranged between U type fixed block 12 and reinforcing frame 13, the bottom of reinforcing frame 13 is fixedly connected with first vibration ruler 14, the bottom of first vibration ruler 14 is fixedly connected with ramming vibration piece 15, and multiple ramming vibration pieces 15 are correspondingly set, and ramming vibration piece 15 adopts streamline structure, the sidewall of first vibrator 1 is fixedly connected with control handle 16, and two control handles 16 are symmetrically set, when working, the staff can pull the device through control handle 16, make the device move on the surface of concrete, to make the compaction of the concrete plane of relatively deep thickness, in the process, the staff can first drive first vibrator 1, so that transmission vibration rod 11 fixedly connected at the output of first vibrator 1 vibrates, then, because the sidewall of transmission vibration rod 11 is fixedly connected with U type fixed block 12, multiple U type fixed blocks 12 and reinforcing frame 13 are provided with bolt, and reinforcing frame 13 is fixedly connected with first vibration ruler 14, along with the vibration of U type fixed block 12, first vibration ruler 14 will vibrate synchronously, at this time, because the weight of the device, and multiple ramming vibration pieces 15 are vibrating, multiple ramming vibration pieces 15 of streamline structure can respectively enter the inside of concrete, and apply vibration to the concrete of deeper part, this step is through the transmission of transmission vibration rod 11, U type fixed block 12 and reinforcing frame 13 first vibrator 1 output vibration, through the bottom of first vibration ruler 14 is fixedly connected with multiple ramming vibration pieces 15, make multiple ramming vibration pieces 15 invade the inside of concrete, to increase the vibration influence range of the device, enhance the vibration ability of concrete vibration compaction device, be favorable to solve the compaction difficult problem of relatively thick plane concrete structure.
[0025] As Figure 2 With Figure 4As shown, the side wall of the first vibrating ruler 14 is provided with a limiting hole, and a plurality of limiting holes are correspondingly arranged; the bottom of the first vibrating ruler 14 is provided with a support block 2, and two support blocks 2 are correspondingly arranged; the bottom of the support block 2 is rotatably connected with a rotating wheel 21, and two rotating wheels 21 are correspondingly arranged; the bottom of the rotating wheel 21 is provided with a guide rail 22; the top of the support block 2 is fixedly connected with a limiting rod 23, and a plurality of limiting rods 23 are arranged at positions corresponding to the limiting holes; the top of the support block 2 is fixedly connected with a spring 24, and a plurality of springs 24 are arranged at positions corresponding to the limiting rods 23; in working, the workers can erect the guide rail 22 around the concrete, and erect the two ends of the first vibrating ruler 14 on the top of the support block 2, so as to guide the movement direction of the device by the guide rail 22 and the support block 2; in the process, the workers can first align the plurality of limiting holes on the surface of the first vibrating ruler 14 with the corresponding limiting rods 23, and then drop the first vibrating ruler 14 on the top of the support block 2; at this time, the plurality of springs 24 fixedly connected on the top of the support block 2 will be in contact with the bottom of the first vibrating ruler 14, and the plurality of springs 24 will be compressed; after the plurality of springs 24 are compressed, the device will fall to a certain extent, until the concrete surface is in contact with the first vibrating ruler 14, and the first vibrating ruler 14 is applied with sufficient supporting force; in the process of pulling the device by the workers, the plurality of rotating wheels 21 rotatably connected on the bottom of the support block 2 will slide on the top of the guide rail 22, and since the rotating wheel 21 and the guide rail 22 are correspondingly arranged, the pulling direction of the device will be limited; this step guides the pulling direction of the device by arranging the support block 2, the rotating wheel 21 and the guide rail 22, so as to avoid the inclination of the device in the pulling process, enhance the stability and convenience of the device, and be beneficial to solve the inclination problem in the operation process of the device, and the problem that part of the concrete surface cannot bear when the device is too heavy.
[0026] As Figure 1 With Figure 2As shown, the side wall of the first vibrating machine 1 is provided with the second vibrating machine 3; the output end of the second vibrating machine 3 is fixedly connected with the vibration transmission rod 11; the side wall of the vibration transmission rod 11 is fixedly connected with the U-shaped fixing block 12, and a plurality of U-shaped fixing blocks 12 are arranged in linear array; the bottom of the U-shaped fixing block 12 is provided with the reinforcing frame 13, and the bottom of the reinforcing frame 13 is fixedly connected with the second vibrating rod 31; in working, the second vibrating machine 3 has a connection relationship with the first vibrating machine 1, and in the process of pulling the first vibrating machine 1, the second vibrating machine 3 and the assembly connected with the second vibrating machine 3 will move synchronously with the first vibrating machine 1, and in the process, the plurality of tamping blades 15 fixedly connected to the bottom of the first vibrating rod 14 vibrate the concrete, and the second vibrating rod 31 which has conducted the vibration through the vibration transmission rod 11, the U-shaped fixing block 12 and the reinforcing frame 13 will vibrate the concrete surface again, so as to finally complete the vibration of the concrete; this step sets the second vibrating machine 3 and the second vibrating rod 31 to cooperate with the first vibrating machine 1 and the first vibrating rod 14 to vibrate and compact the concrete, and uses the second vibrating rod 31 to vibrate and compact the concrete surface vibrated by the first vibrating rod 14 and the tamping blade 15, which is beneficial to eliminate the cracks on the surface of the concrete and improve the compacting effect of the device.
[0027] As Figure 2 With Figure 3 As shown, the side wall of the first vibrating machine 1 is fixedly connected with the connecting block 4, the side wall of the second vibrating machine 3 is fixedly connected with the connecting block 4, and the two connecting blocks 4 are correspondingly arranged; the connecting pin 41 is arranged between the two connecting blocks 4, and the top of the connecting pin 41 is fixedly connected with the limiting piece; in working, the worker can connect the second vibrating machine 3 on the first vibrating machine 1 by means of the corresponding relationship of the two connecting blocks 4, and in the process, the worker can first align the two connecting blocks 4, then pass the connecting pin 41 through the two connecting blocks 4 at the same time, and until the limiting piece on the top of the connecting pin 41 contacts the top of one of the connecting blocks 4; this step sets the connecting block 4 and the connecting pin 41 to connect the first vibrating machine 1 and the second vibrating machine 3, so that the connection relationship between the first vibrating machine 1 and the second vibrating machine 3 is more flexible, which is beneficial to avoid the problem of difficult turning of the device after the first vibrating machine 1 and the second vibrating machine 3 are connected, and enhances the flexibility of the device.
[0028] As Figure 4As shown, the side wall of the support block 2 is fixed with the cleaning block 5, and a plurality of cleaning blocks 5 are correspondingly arranged; in work, a plurality of cleaning blocks 5 are arranged corresponding to the running direction of the first vibrator 1 and the second vibrator 3, and with the movement of the device, the cleaning block 5 fixed on the side wall of the support block 2 will contact with the sundries splashed on the top of the guide rail 22, and a plurality of cleaning blocks 5 can push the sundries by contact; this step cleans the splashed articles on the top of the guide rail 22 by arranging the cleaning block 5, so as to avoid the contact with the rotating wheel 21, which is beneficial to keep the device running smoothly and reduce the safety hazard.
[0029] As shown in Figure 2 The top of the first vibrating ruler 14 and the second vibrating ruler 31 is fixed with the reinforcing block 6, and the side wall of the reinforcing block 6 is fixed on the side wall of the reinforcing frame 13; in work, the reinforcing block 6 fixed on the top of the first vibrating ruler 14 can cooperate with the reinforcing frame 13 to enhance the anti-deformation ability of the first vibrating ruler 14 and the second vibrating ruler 31; this step increases the anti-deformation ability of the first vibrating ruler 14 and the second vibrating ruler 31 by arranging the reinforcing block 6 to cooperate with the reinforcing frame 13, which is beneficial to avoid the deformation of the first vibrating ruler 14 and the second vibrating ruler 31 under the action of the reaction force on the concrete surface, and is beneficial to prolong the service life of the device components.
[0030] As shown in Figure 2 The first vibrating ruler 14, the second vibrating ruler 31 and the vibrating blade 15 are made of stainless steel; in work, the first vibrating ruler 14, the second vibrating ruler 31 and the vibrating blade 15 made of stainless steel can take advantage of high structural strength and strong corrosion resistance; this step maintains the structural strength of the device components by using stainless steel for the first vibrating ruler 14, the second vibrating ruler 31 and the vibrating blade 15, which is beneficial to reduce the maintenance requirements of the device and prolong the service life.
[0031] In operation, the operator can pull the device through the control handle 16, and move the device on the surface of the concrete, so as to compact the concrete plane with a deeper thickness. In the process, the operator can first drive the first vibrator 1, so that the transmission rod 11 fixed to the output end of the first vibrator 1 vibrates. Then, since the side wall of the transmission rod 11 is fixed with the U-shaped fixing block 12, a plurality of U-shaped fixing blocks 12 are provided with bolts between the reinforcing frame 13, and the reinforcing frame 13 is fixed to the first vibrating ruler 14. With the vibration of the U-shaped fixing block 12, the first vibrating ruler 14 will vibrate synchronously. At this time, due to the weight of the device and the vibration of the plurality of vibrating pieces 15, the plurality of vibrating pieces 15 can respectively enter the inside of the concrete, and the vibration is applied to the concrete in the deeper part. The operator can erect the guide rail 22 on the periphery of the concrete, and erect the two ends of the first vibrating ruler 14 on the top of the support block 2 respectively, so as to guide the movement direction of the device through the guide rail 22 and the support block 2. In the process, the operator can first align a plurality of limiting holes on the surface of the first vibrating ruler 14 with the corresponding limiting rods 23, and then place the first vibrating ruler 14 on the top of the support block 2. At this time, a plurality of springs 24 fixed to the top of the support block 2 will respectively contact the bottom of the first vibrating ruler 14, and the plurality of springs 24 will be compressed. After the compression of the plurality of springs 24, the device will fall to a certain extent until the surface of the concrete contacts the first vibrating ruler 14 and applies sufficient support force to the first vibrating ruler 14. In the process of pulling the device by the operator, a plurality of rotating wheels 21 rotatingly connected to the bottom of the support block 2 will slide on the top of the guide rail 22. Since the rotating wheel 21 is correspondingly arranged with the guide rail 22, the pulling direction of the device will be limited. The second vibrator 3 is connected with the first vibrator 1. In the process of pulling the first vibrator 1 by the operator, the second vibrator 3 and the components connected with the second vibrator 3 will move synchronously with the first vibrator 1. In the process, after the plurality of vibrating pieces 15 fixed to the bottom of the first vibrating ruler 14 vibrate the concrete, the second vibrating ruler 31 which has transmitted the vibration through the transmission rod 11, the U-shaped fixing block 12 and the reinforcing frame 13 will vibrate the surface of the concrete again, so as to finally complete the vibration of the concrete. The operator can connect the second vibrator 3 with the first vibrator 1 through the corresponding relationship of the two connecting blocks 4. In the process, the operator can first align the two connecting blocks 4, and then pass the connecting pin 41 through the two connecting blocks 4 at the same time until the limiting piece on the top of the connecting pin 41 contacts the top of one of the connecting blocks 4. A plurality of cleaning blocks 5 are arranged corresponding to the movement direction of the first vibrator 1 and the second vibrator 3. With the movement of the device, the cleaning blocks 5 fixed to the side wall of the support block 2 will contact the sundries falling on the top of the guide rail 22. The plurality of cleaning blocks 5 can push the sundries away through contact.The reinforcing block 6 fixed on the top of the first vibrating ruler 14 can cooperate with the reinforcing frame 13 to enhance the deformation resistance of the first vibrating ruler 14 and the second vibrating ruler 31, and the first vibrating ruler 14, the second vibrating ruler 31 and the vibrating blade 15 made of stainless steel can have the advantages of high structural strength and strong corrosion resistance.
[0032] The basic principle, main features and advantages of the utility model are shown and described above. The skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the utility model. Without departing from the spirit and scope of the utility model, the utility model can also have various changes and improvements, and these changes and improvements all fall within the scope of the utility model claimed. The scope of protection of the utility model is defined by the appended claims and their equivalents.
Claims
1. A civil engineering concrete vibrating compacting device comprising a first vibrating engine (1), characterized in that: The output end of the first vibrating machine (1) is fixedly connected with a vibration transmission rod (11); the side wall of the vibration transmission rod (11) is fixedly connected with a U-shaped fixing block (12), and a plurality of U-shaped fixing blocks (12) are arranged in linear array; a plurality of U-shaped fixing blocks (12) are arranged in abutment with a reinforcing frame (13), and bolts are arranged between the U-shaped fixing blocks (12) and the reinforcing frame (13) respectively; the bottom of the reinforcing frame (13) is fixedly connected with a first vibrating ruler (14); the bottom of the first vibrating ruler (14) is fixedly connected with a tamping blade (15), and a plurality of tamping blades (15) are arranged correspondingly; the tamping blade (15) adopts a streamline structure; the side wall of the first vibrating machine (1) is fixedly connected with a control handle (16), and two control handles (16) are arranged symmetrically.
2. A civil engineering concrete vibrating compacting device according to claim 1, characterised in that: The side wall of the first vibrating ruler (14) is provided with a limiting hole, and a plurality of limiting holes are arranged correspondingly; the bottom of the first vibrating ruler (14) is provided with a supporting block (2), and two supporting blocks (2) are arranged correspondingly; the bottom of the supporting block (2) is rotatably connected with a rotating wheel (21), and two rotating wheels (21) are arranged correspondingly; the bottom of the rotating wheel (21) is provided with a guide rail (22); the top of the supporting block (2) is fixedly connected with a limiting rod (23), and a plurality of limiting rods (23) are arranged at positions corresponding to the limiting holes; the top of the supporting block (2) is fixedly connected with a spring (24), and a plurality of springs (24) are arranged at positions corresponding to the limiting rods (23).
3. A civil engineering concrete vibrating compacting device according to claim 1, characterized in that: The side wall of the first vibrating machine (1) is provided with a second vibrating machine (3); the output end of the second vibrating machine (3) is fixedly connected with a vibration transmission rod (11); the side wall of the vibration transmission rod (11) is fixedly connected with a U-shaped fixing block (12), and a plurality of U-shaped fixing blocks (12) are arranged in linear array; the bottom of the U-shaped fixing block (12) is provided with a reinforcing frame (13), and the bottom of the reinforcing frame (13) is fixedly connected with a second vibrating ruler (31).
4. A civil engineering concrete vibrating and tamping device according to claim 3, characterised in that: The side wall of the first vibrating machine (1) is fixedly connected with a connecting block (4), the side wall of the second vibrating machine (3) is fixedly connected with a connecting block (4), and two connecting blocks (4) are arranged correspondingly; a connecting pin (41) is arranged between two connecting blocks (4), and the top of the connecting pin (41) is fixedly connected with a limiting piece.
5. A civil engineering concrete vibrating compacting device according to claim 2, characterised in that: The side wall of the supporting block (2) is fixedly connected with a cleaning block (5), and a plurality of cleaning blocks (5) are arranged correspondingly.
6. A civil engineering concrete vibrating compacting device according to claim 2, characterised in that: The top of the first vibrating ruler (14) and the second vibrating ruler (31) is fixedly connected with a reinforcing block (6), and the side wall of the reinforcing block (6) is fixedly connected to the side wall of the reinforcing frame (13).
7. A civil engineering concrete vibrating and tamping device according to claim 6, characterised in that: The first vibrating ruler (14), the second vibrating ruler (31), and the tamping blade (15) are made of stainless steel.