Concrete vibrating device based on constructor concrete

By introducing mudguards and locking components into the concrete vibrating device, the problems of concrete splashing and low construction efficiency are solved, achieving the effects of preventing splashing and automatic smoothing, thus improving construction safety and efficiency.

CN223880777UActive Publication Date: 2026-02-06LIAOCHENG GUANHONG REAL ESTATE CO LTD
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Patent Information

Application Number
CN202520434549.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-06
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing concrete vibrating devices lack effective mud-blocking structures, leading to concrete splashing, which affects the safety and efficiency of the construction site. At the same time, manual or additional equipment is required for smoothing, increasing the difficulty and time cost of construction.

Method used

A concrete vibrating device including a mud-blocking mechanism and a smoothing mechanism was designed. The device uses mud-blocking plates and locking components to prevent concrete from splashing and automatically smooths the concrete surface after vibration, thereby improving construction efficiency.

Benefits of technology

It effectively prevents concrete splashing, simplifies the installation and disassembly of mudguards, improves operational convenience, and enhances construction efficiency and surface smoothness through automatic smoothing function.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of constructional engineering, and discloses a concrete vibrating device based on constructor concrete, which comprises a protective shell, an operating rod is fixedly connected to the outer side of the protective shell, a first switch and a second switch are mounted on the outer side of the operating rod, and a mounting plate is fixedly connected to the outer side of the protective shell. A vibration motor is fixedly connected to the interior of the mounting plate, a connecting plate is fixedly connected to the output end of the vibration motor, a plurality of vibration rods are mounted at the bottom of the connecting plate, a mud blocking mechanism is arranged on the outer side of the mounting plate, and a trowelling mechanism is arranged at the bottom of the protective shell. According to the utility model, the technical scheme that the mud guard is matched with the locking assembly is adopted, so that the technical effect of effectively preventing concrete from splashing in the vibrating process is achieved. Compared with a device without a mud guard in the prior art, concrete is prone to splashing during vibration, the problem that the mud guard is prone to splashing during vibration is solved, rapid mounting and dismounting of the mud guard are facilitated through the locking assembly and the self-locking component, and operation convenience is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of building engineering especially, relate to a concrete vibrating device based on building contractor concrete. BACKGROUND

[0002] In the construction process, concrete vibrating is the key link to ensure the quality of concrete structure. After pouring, concrete often produces bubbles and voids in the process of mixing, conveying and pouring. If not fully vibrated, internal defects such as honeycomb and hole may be formed, thereby affecting the compactness and strength of concrete. Therefore, the main purpose of vibrating is to make the air and excess water in the concrete interior discharge through high-frequency vibration, promote the concrete slurry to better fill the formwork and steel around, improve its overall adhesion and stability, and ultimately enhance the compressive strength, tensile strength and durability of concrete, ensuring the long-term stability and safety of building structure.

[0003] Concrete vibrating technology is widely used in various construction projects, including foundation, floor, bridge, tunnel, road, airport runway and high-rise building concrete structure construction. Different construction scenes have different requirements for vibrating process. For example, in the construction of bridge and high-rise building, due to the complexity of concrete structure and high stress requirement, more efficient and more uniform vibrating technology is needed to ensure the stability and bearing capacity of the structure. In large area pouring engineering such as road and airport runway, large range and high frequency vibrating equipment is needed to improve construction efficiency and ensure that the concrete surface is flat and durable. Therefore, according to different construction needs, selecting appropriate vibrating mode and equipment can effectively improve construction quality, prolong the service life of concrete structure and reduce the maintenance cost.

[0004] The existing concrete vibrating device has some problems. Most of the equipment lacks effective mud blocking structure, which causes concrete to splash during vibrating, not only polluting the construction site, but also affecting the operation safety of construction personnel. In addition, the existing equipment usually needs manual or additional equipment to smooth the surface of concrete after vibrating, which increases the construction difficulty and time cost. At the same time, the installation and removal of mudguard are often cumbersome, lack of convenient fixing device, and affect the construction efficiency.

[0005] Therefore, a concrete vibrating device based on building contractor concrete is proposed to solve the above problems. UTILITY MODEL CONTENTS

[0006] In order to make up for the above shortcomings, the utility model provides a concrete vibrating device based on building contractor concrete, which aims to improve the problems of splashing, inconvenient operation and low construction efficiency in the process of concrete vibrating.

[0007] In order to achieve the above object, the utility model discloses the following technical scheme: a concrete vibrating device based on builder's concrete, including protection shell, the protection shell outside fixedly connected with operating lever, the operating lever outside is installed with switch no.

[0008] The mud blocking mechanism comprises a mud flap and a fixed block, the fixed block is fixedly connected to the top of the mounting plate, the fixed block is internally provided with a locking assembly, and the mud flap is fixedly connected with a plug plate outside.

[0009] As a further description of the above technical scheme:

[0010] The smoothing mechanism comprises a driving part, the driving part is installed in the protection shell, the driving part output is fixedly connected with a smoothing plate, and the protection shell bottom is fixedly connected with a protective cover.

[0011] As a further description of the above technical scheme:

[0012] The locking assembly comprises a shell, the shell is fixedly connected in the fixed block outside, the shell is fixedly connected with an inner shell in the inside, the inner shell is slidably connected with a bolt in the inside, the bolt is sleeved with a spring outside, and the bolt is provided with a self-locking part outside as a further description of the above technical scheme:

[0013] The self-locking part comprises a pad plate, the pad plate is fixedly connected to the outside of the bolt, the pad plate is fixedly connected with a clamping block outside, and the inner shell is provided with a U-shaped clamping groove outside.

[0014] As a further description of the above technical scheme:

[0015] The plug plate is slidably connected in the fixed block, and the bolt penetrates through the fixed block and is inserted in the plug plate.

[0016] As a further description of the above technical scheme:

[0017] The switch no. 1 is electrically connected with the driving part, and the switch no. 2 is electrically connected with the vibration motor.

[0018] As a further description of the above technical scheme:

[0019] The smoothing plate is rotatably connected in the protective cover, and the mud flap top is fixedly connected with a handle.

[0020] As a further description of the above technical scheme:

[0021] One end of the spring is fixedly connected to the top of the pad plate, the other end of the spring is in abutment with the inner wall of the inner shell, the pad plate is slidably connected in the inner shell, and the clamping block is slidably connected in the U-shaped clamping groove.

[0022] The utility model has the advantages of the following beneficial effects:

[0023] 1、The utility model discloses a technical scheme that mud guard and locking assembly cooperate, which achieves the technical effect of effectively preventing concrete from splashing during vibration. Compared with the device without a mud guard in the prior art, concrete is prone to splashing during vibration, which not only solves this problem, but also facilitates quick installation and disassembly of the mud guard through the locking assembly and the self-locking part, greatly improving operation convenience.

[0024] 2、Through the design of the smoothing mechanism, the smoothing function is started immediately after the completion of concrete vibration, achieving the technical effect of efficiently smoothing the surface of concrete. Compared with the traditional technical scheme that requires additional tools or time for smoothing, the problem of low construction efficiency is solved, greatly improving work efficiency and surface smoothing degree. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 A three-dimensional schematic view of a concrete vibration device based on builder concrete is provided for the utility model;

[0026] Figure 2 A three-dimensional schematic view of a concrete vibration device based on builder concrete is provided for the utility model; Figure 1 An enlarged schematic view of position A in the three-dimensional schematic view of the concrete vibration device based on builder concrete is provided for the utility model;

[0027] Figure 3 An exploded structural schematic view of a mud guard of a concrete vibration device based on builder concrete is provided for the utility model;

[0028] Figure 4 An exploded structural schematic view of a mud guard of a concrete vibration device based on builder concrete is provided for the utility model; Figure 3 An enlarged schematic view of position B in the exploded structural schematic view of the mud guard of the concrete vibration device based on builder concrete is provided for the utility model;

[0029] Figure 5 An installation position schematic view of a smoothing plate of a concrete vibration device based on builder concrete is provided for the utility model.

[0030] LEGEND:

[0031] 1, operating rod; 2, driving piece; 3, guard; 4, vibrating rod; 5, mounting plate; 6, mud guard; 7, vibration motor; 8, protective shell; 9, switch one; 10, switch two; 11, fixed block; 12, pad plate; 13, spring; 14, U-shaped clamping groove; 15, outer shell; 16, inner shell; 17, bolt; 18, plug plate; 19, clamping block; 20, smoothing plate; 21, connecting plate. DETAILED DESCRIPTION

[0032] 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 the other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the present application.

[0033] With reference to Figure 1 - Figure 5The utility model provides a kind of embodiment based on builder's concrete concrete vibrating device, including protective housing 8, operating lever 1 is fixedly connected in protective housing 8 outside, switch one 9 and switch two 10 are installed in operating lever 1 outside, mounting plate 5 is fixedly connected in protective housing 8 outside, vibration motor 7 is fixedly connected in mounting plate 5 inside, connecting plate 21 is fixedly connected in vibration motor 7 output end, a plurality of vibrating rods 4 are installed in the bottom of connecting plate 21, mud blocking mechanism is provided in the outside of mounting plate 5, mud blocking mechanism is provided in the bottom of protective housing 8, mud blocking mechanism includes fender 6 and fixed block 11, fixed block 11 is fixedly connected in the top of mounting plate 5, locking assembly is provided in the inside of fixed block 11, fender 6 outside is fixedly connected with plugboard 18, switch one 9 is electrically connected with driving part 2, switch two 10 is electrically connected with vibration motor 7.The protective housing 8 is used to protect internal structure and improve the durability of equipment, operating lever 1 is fixedly connected in the outside of protective housing 8, operating lever 1 is used to control the operation of device and facilitate construction personnel to hold, switch one 9 is used to control the operation of mud blocking mechanism, switch two 10 is used to control the operation of vibration motor 7, to control vibrating rod 4 to work, mounting plate 5 is fixedly connected in the outside of protective housing 8, mounting plate 5 is used to fix vibration motor 7 and provide stable support, vibration motor 7 is fixedly connected in the inside of mounting plate 5, vibration motor 7 is used to generate high frequency vibration, and vibration is transmitted to vibrating rod 4, vibrating rod 4 is directly contacted with concrete to improve the compactness of concrete, connecting plate 21 is fixedly connected in the output end of vibration motor 7, connecting plate 21 is used to transmit the vibration of vibration motor 7 to vibrating rod 4, a plurality of vibrating rods 4 are installed in the bottom of connecting plate 21, vibrating rod 4 is used to penetrate into concrete interior and vibrate to eliminate bubble and improve structural strength, operating personnel can select appropriate length vibrating rod 4 according to the thickness of concrete, mud blocking mechanism is provided in the outside of mounting plate 5, mud blocking mechanism is used to prevent concrete from splashing, mud blocking mechanism is provided in the bottom of protective housing 8, mud blocking mechanism is used to directly flatten concrete surface after concrete vibrating is completed, effectively improve work efficiency.Fender 6 is used to block concrete splashing, fixed block 11 is used to fix fender 6 to ensure its stability, fixed block 11 is fixedly connected in the top of mounting plate 5, locking assembly is provided in the inside of fixed block 11, locking assembly is used to fix fender 6 and ensure that it does not loosen during use, plugboard 18 is fixedly connected in the outside of fender 6, plugboard 18 is used to install fender 6 in the inside of fixed block 11.

[0034] Refer to Figure 1 , Figure 2 and Figure 5The smearing mechanism comprises a driving member 2 installed inside a protective shell 8, a smearing plate 20 fixedly connected to an output end of the driving member 2, a shroud 3 fixedly connected to a bottom of the protective shell 8, the smearing plate 20 rotatably connected inside the shroud 3, and a handle fixedly connected to a top of the mudguard 6. The driving member 2 is installed inside the protective shell 8 and is used to drive the smearing plate 20 to rotate so as to smoothen the surface of the concrete. The output end of the driving member 2 is fixedly connected to the smearing plate 20, which is used to level the surface of the concrete and ensure the flatness of the surface. The bottom of the protective shell 8 is fixedly connected to the shroud 3, which is used to prevent the smearing plate 20 from accidentally injuring the worker when rotating. The smearing plate 20 is rotatably connected inside the shroud 3 and works by rotating inside the shroud 3, thereby ensuring that the surface of the concrete is evenly leveled. The top of the mudguard 6 is fixedly connected to the handle, which is used to facilitate the worker to pick up the mudguard 6.

[0035] With reference to Figure 3 and Figure 4 , the locking assembly comprises an outer shell 15 fixedly connected inside the fixed block 11, an inner shell 16 fixedly connected inside the outer shell 15, a latch 17 slidably connected inside the inner shell 16, a spring 13 sleeved outside the latch 17, a self-locking part provided outside the latch 17, an insertion plate 18 slidably connected inside the fixed block 11, and the latch 17 penetrating through the fixed block 11 and being inserted into the insertion plate 18. The outer shell 15 is used to protect the internal parts and ensure normal operation. The inner shell 16 is used to provide a sliding track for the latch 17 and ensure that the latch 17 can be smoothly inserted into the insertion plate 18, thereby achieving installation of the mudguard 6. The spring 13 is used to ensure stability of the latch 17 by preventing the latch 17 from moving without external force.

[0036] With reference to Figure 3 and Figure 4 , the self-locking part comprises a backing plate 12 fixedly connected outside the latch 17, a clamping block 19 fixedly connected outside the backing plate 12, a U-shaped clamping groove 14 provided outside the inner shell 16, one end of the spring 13 fixedly connected to a top of the backing plate 12, the other end of the spring 13 abutting against an inner wall of the inner shell 16, the backing plate 12 slidably connected inside the inner shell 16, and the clamping block 19 slidably connected inside the U-shaped clamping groove 14. The backing plate 12 is used to fix the clamping block 19 and transmit the elastic force of the spring 13 to the latch 17, thereby ensuring that the latch 17 can stably slide inside the inner shell 16. The U-shaped clamping groove 14 is used to cooperate with the clamping block 19. After the latch 17 is pulled out, the clamping block 19 can be clamped inside the U-shaped clamping groove 14 by rotating the latch 17, thereby temporarily locking the latch 17. When the mudguard 6 is installed, the latch 17 does not need to be pulled all the time. When the latch 17 needs to be unlocked, the latch 17 can be slightly pulled to rotate, and then the latch 17 is rotated in the opposite direction, so that the clamping block 19 can slide inside the U-shaped clamping groove 14, and at this time, the latch 17 is unlocked.

[0037] Working principle: when using the device, first install the appropriate length of the vibrating rod 4 on the connecting plate 21, at this time need to install the fender 6, pull the bolt 17, by rotating the bolt 17 to make the block 19 card in the U-shaped card slot 14 inside, at this time the bolt 17 is temporarily locked, do not always pull the bolt 17, at this time the plug plate 18 on the fender 6 is inserted into the fixed block 11, then pull the bolt 17 slightly, so that the bolt 17 can be rotated, and then rotate the bolt 17 in the opposite direction, so that the block 19 can slide in the U-shaped card slot 14, finally release the bolt 17, under the action of the spring 13, the bolt 17 will be inserted into the plug plate 18, thus completing the installation of the fender 6.

[0038] When working, the operator controls the operation of the device through the operating rod 1, the switch one 9 outside the operating rod 1 is used to control the start of the smoothing mechanism, and the switch two 10 is used to start the vibration motor 7, so that the vibration of the vibration motor 7 is transmitted to the vibrating rod 4 through the connecting plate 21, thereby realizing the vibration effect. The coordinated work of the vibration motor 7 and the vibrating rod 4 can ensure that the concrete is fully vibrated during pouring, avoid the formation of bubbles and voids, and improve the overall compactness and strength of the concrete, at this time the fender 6 can effectively block the splashing of concrete. After the vibration is completed, the smoothing mechanism smoothes the surface of the concrete through the driving part 2 and the smoothing plate 20. The smoothing plate 20 effectively keeps the concrete surface flat by rotating, improving the construction effect. The guard 3 at the bottom of the protective shell 8 effectively protects the smoothing plate 20, avoiding injury to the operator during rotation.

[0039] Finally, it should be pointed out that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A concrete vibrator based on the builder's concrete, comprising a protective casing (8), characterized in that: The operating rod (1) is fixedly connected outside the protective shell (8), switch one (9) and switch two (10) are installed outside the operating rod (1), the mounting plate (5) is fixedly connected outside the protective shell (8), the vibration motor (7) is fixedly connected inside the mounting plate (5), the connecting plate (21) is fixedly connected to the output end of the vibration motor (7), a plurality of vibrating rods (4) are installed at the bottom of the connecting plate (21), the mounting plate (5) is provided with a mud blocking mechanism, and the protective shell (8) is provided with a leveling mechanism; The mud blocking mechanism comprises a mud flap (6) and a fixed block (11), the fixed block (11) is fixedly connected to the top of the mounting plate (5), the fixed block (11) is provided with a locking assembly inside, and the mud flap (6) is fixedly connected with the plug-in board (18) outside.

2. A concrete vibrator for use in the construction industry as claimed in claim 1 wherein: The leveling mechanism comprises a driving piece (2), the driving piece (2) is installed inside the protective shell (8), the leveling plate (20) is fixedly connected to the output end of the driving piece (2), and the protective shell (8) is fixedly connected with the protective cover (3) at the bottom.

3. A concrete vibrator for use in the construction industry as claimed in claim 1 wherein: The locking assembly comprises an outer shell (15), the outer shell (15) is fixedly connected inside the fixed block (11), the inner shell (16) is fixedly connected inside the outer shell (15), the bolt (17) is slidably connected inside the inner shell (16), the spring (13) is sleeved outside the bolt (17), and the self-locking part is arranged outside the bolt (17).

4. A concrete vibrator for use in the construction industry as claimed in claim 3 wherein: The self-locking part comprises a backing plate (12), the backing plate (12) is fixedly connected outside the bolt (17), the clamping block (19) is fixedly connected outside the backing plate (12), and the U-shaped clamping groove (14) is formed in the outer side of the inner shell (16).

5. A concrete vibrator for use in the construction industry as claimed in claim 3 wherein: The plug-in board (18) is slidably connected inside the fixed block (11), the bolt (17) penetrates through the fixed block (11) and is inserted into the plug-in board (18).

6. A concrete vibrator for use in the construction industry as claimed in claim 2 wherein: The switch one (9) is electrically connected with the driving piece (2), and the switch two (10) is electrically connected with the vibration motor (7).

7. A concrete vibrator for use in the construction industry as claimed in claim 2 wherein: The leveling plate (20) is rotatably connected inside the protective cover (3), and the mud flap (6) is fixedly connected with the handle at the top.

8. A concrete vibrator for use in the construction industry as claimed in claim 4 wherein: One end of the spring (13) is fixedly connected to the top of the backing plate (12), the other end of the spring (13) abuts against the inner wall of the inner shell (16), the backing plate (12) is slidably connected inside the inner shell (16), and the clamping block (19) is slidably connected inside the U-shaped clamping groove (14).