An insertion type vibrator with evenly arranged insertion points and a vibration method
Through the cooperation of sliding shading components, heat dissipation components, anti-folding components and auxiliary components, the problem of uneven bonding, heat dissipation and vibration of the plug-in vibrator in concrete construction is solved, and the efficient, stable operation of the equipment and the acceleration of construction progress are achieved.
Patent Information
- Application Number
- CN202211426867.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-15
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2042-11-15
AI Technical Summary
The existing plug-in vibrator is easily bonded by concrete during use, which affects the equipment's heat dissipation and normal use. At the same time, the hose is prone to excessive bending to cause losses, and the vibration is uneven, affecting construction efficiency.
The sliding shielding assembly is used to open the dustproof cloth to resist the bonding of concrete, the heat dissipation component is used to accelerate heat dissipation, the anti-folding component reduces hose bending, the auxiliary component controls the insertion depth of the vibrating rod and uniform vibration, and combines the level and counting lamp to optimize the vibration process.
Effectively prevent concrete bonding, reduce equipment losses, improve heat dissipation efficiency, ensure vibration uniformity and construction stability, shorten solidification time, and improve formwork turnover.
Smart Images

Figure CN115573568B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building concrete, and particularly to a plug-in vibrator with uniformly arranged plug points and a vibrating method. Background Art
[0002] The plug-in vibrator is a device used in engineering construction. When pouring concrete components mixed by a concrete mixer, it is necessary to remove the air bubbles in them. Using a plug-in vibrator for tamping can make the concrete densely combined, eliminate phenomena such as honeycombing and pitting on the concrete surface, so as to improve its strength and ensure the quality of concrete components. After the reinforced concrete components are poured and vibrated, the bonding force between the steel bars and the concrete can also be significantly improved, ensuring and enhancing the strength of the concrete. The function of vibration is not only limited to ensuring the quality of components, but also extremely important for improving working conditions, shortening the setting time of concrete, increasing the turnover rate of formwork use, and accelerating the construction progress. Therefore, concrete vibration is an important link in concrete construction.
[0003] During the use of the plug-in vibrators on the market, the surface of the machine shell is often adhered to by concrete, and the equipment needs to be cleaned twice after work. At the same time, the adhesion of concrete will also affect the heat dissipation of the equipment, thereby affecting the normal use of the equipment. Summary of the Invention
[0004] The purpose of the present invention is to provide a plug-in vibrator with uniformly arranged plug points and a vibrating method to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions: A plug-in vibrator with uniformly arranged plug points and a vibrating method, including a device main body and an anti-bending component. A chute is provided on the outer surface of the device main body, and a shielding component is arranged inside the chute. A connector is provided at the bottom of the device main body, and a hose is connected to the bottom of the connector. The anti-bending component is installed on the outer surface of the hose, and a vibrating rod is connected to the end of the hose away from the connector. The shielding component includes a slider, elastic clamping blocks, a straight rod, a movable shaft, a main rod, a rotating shaft, and a dust-proof cloth. Elastic clamping blocks are provided on both sides of the slider. A straight rod is provided at the center position of the surface of the slider, and the end of the straight rod away from the slider is connected to the movable shaft. A main rod is arranged outside the movable shaft, and a rotating shaft is connected to the bottom of the main rod. The dust-proof cloth is arranged on the outer surface of the main rod.
[0006] Further, a heat dissipation component is provided on the lower surface of the device body, and the heat dissipation component includes a heat dissipation housing, heat dissipation holes, heat dissipation fins, a heat dissipation fan, and a dust-proof net. The heat dissipation holes are formed on the surface of the heat dissipation housing, and the heat dissipation fins are provided on the surface of the heat dissipation holes. The heat dissipation fan is snap-connected to the outer surface of the heat dissipation fins, and the dust-proof net is provided on the outer surface of the heat dissipation fan.
[0007] Further, the anti-fold component includes a plastic handle, an anti-slip pad, an elastic straight piece, and a soft film. The anti-slip pad is provided on the surface of the plastic handle. The elastic straight piece is provided below the plastic handle, and the soft film is bonded to the lower surface of the elastic straight piece.
[0008] Further, the anti-fold component further includes a fixing frame and a supporting block. The fixing frame is connected to both ends of the plastic handle, and the supporting block is provided on the lower surface of the fixing frame.
[0009] Further, the supporting block is in mutual fit with the hose, and the inner wall of the supporting block is in an arc-shaped structure. A cushion block is connected to the outer end of the supporting block, and the cushion block is fixedly connected to the supporting block.
[0010] Further, an auxiliary component is provided on the outer surface of the vibrating rod, and the auxiliary component includes a matrix frame, a return spring, a floating plate, and a sliding piece. The return spring is embedded in the lower surface of the matrix frame, and the floating plate is connected to one end of the return spring away from the matrix frame. The sliding piece is provided below the inner wall of the floating plate.
[0011] Further, the auxiliary component further includes a top seat, an auxiliary rod, a cavity, a rubber pad, and a magnetic ball. The top seat is connected to the top of the floating plate. The auxiliary rod is installed at the edge of the lower surface of the matrix frame, and a cavity is provided inside the auxiliary rod. The rubber pad is connected to the inner wall of the cavity, and the magnetic ball is placed inside the cavity.
[0012] Further, the magnetic ball is movably connected to the cavity, and there are two groups of magnetic balls. Moreover, the magnetic poles of the magnetic balls are designed with the same structure.
[0013] Further, a level is provided on the top of the matrix frame, and a counting lamp is provided inside the level.
[0014] Further, the vibrating method includes the following operating steps:
[0015] S1. Vibration preparation
[0016] Pushing the straight rod can make the slider slide downward on the surface of the chute. The elastic clamping block contacts with the inside of the chute to realize the real-time clamping and fixing of the slider. While the slider slides downward, the straight rod pushes the main rod to rotate outward around the rotating shaft, thus expanding the main rod. The outward-expanding main rod further expands the dust-proof cloth on the outer surface of the main rod, which can resist the interference of concrete during use and prevent the concrete from sticking to the surface of the device body during work;
[0017] S2. Taking the device
[0018] Lift the device with the right hand by holding the holding part at the top of the device body. Then, hold the plastic handle with the left hand to enhance the anti-slip measure. The plastic handle is connected to the outer surface of the hose by fixing brackets at both ends. When the plastic handle is lifted, the hose bends downward. At this time, the elastic straight piece bends together with the hose, and the elastic straight piece is used to prevent the excessive bending of the hose, thus realizing the control of the hose bending and reducing the loss caused by the excessive bending of the hose;
[0019] S3. Vibrating
[0020] Power on and start the device body, and quickly insert the vibrating rod below the plastic handle held by the left hand into the concrete. The vibrating function of the vibrating rod is used to shorten the setting time of the concrete and improve the turnover rate of the formwork. When the vibrating rod is inserted into the concrete, the floating plate adheres to the surface of the concrete. When the floating plate is stressed, the reset spring and the top seat can fit with the matrix frame. The matrix frame is used to limit the insertion depth of the vibrating rod into the concrete member. At the same time, the matrix frame is vertically placed to reduce the contact with the steel bars, realizing the stability of the vibrating process. At the same time, the vibration is transmitted through the sliding piece and the top seat to the matrix frame and the auxiliary rod at its edge. The vibration of the auxiliary rod makes the magnetic balls with the same magnetic poles and repelling each other in the cavity of the auxiliary rod collide with each other to assist the vibrating process of the auxiliary rod, realizing uniform array vibration and facilitating use.
[0021] The present invention provides an internal vibrator with uniformly arranged insertion points and a vibrating method, which has the following beneficial effects: The internal vibrator with uniformly arranged insertion points and the vibrating method, through the mutual cooperation of multiple components, can not only integrate the dust-proof cloth on the surface of the device body by using the sliding structure design, and the dust-proof cloth can be expanded by sliding to resist the influence of concrete adhesion during work, and use the heat dissipation component for heat dissipation to ensure the normal operation of the device. At the same time, with the setting of the anti-bending component, the excessive bending of the hose can be reduced, and the loss of the hose can be reduced. With the setting of the auxiliary component, not only the insertion depth of the vibrating rod can be controlled, but also uniform array vibration can be realized, which is convenient to use;
[0022] 1. Through the mutual cooperation between the shielding component and the device body, the present invention enables the slider to slide downward on the surface of the chute by pushing the straight rod. The elastic clamping block is used to realize the real-time clamping and fixing of the slider. While the slider moves downward, the straight rod pushes the main rod to rotate outward around the rotating shaft, thereby expanding the main rod. The outwardly expanding main rod further expands the dust-proof cloth on the outer surface of the main rod, which can resist the interference of concrete during use and prevent the concrete from adhering to the surface of the device body during work.
[0023] 2. Through the setting of the heat dissipation component, after the shielding component expands the dust-proof cloth, the present invention uses the operation of the heat dissipation fan to accelerate the air flow around the heat dissipation fins, thereby improving the efficiency of air inlet and outlet through the heat dissipation holes, and then achieving the purpose of dissipating heat from the device body. The dust-proof net can reduce the interference of external dust on the heat dissipation fan.
[0024] 3. Through the mutual cooperation between the anti-bending component and the hose, the present invention connects the plastic handle to the outer surface of the hose through the fixing frames at both ends of the plastic handle. The plastic handle serves as the holding position of the device, facilitating the use of the device. With the setting of the elastic straight piece, when the hose is bent, the elastic straight piece bends along with the hose, and the elastic straight piece can prevent the excessive bending of the hose, thereby realizing the control of the hose bending, reducing the excessive bending of the hose, and minimizing the loss of the hose.
[0025] 4. Through the mutual cooperation between the auxiliary component and the vibrating rod, when the vibrating plate is inserted into the concrete, the floating plate adheres to the surface of the concrete. When the floating plate is stressed, the return spring and the top seat can fit with the matrix frame. The matrix frame limits the depth of the vibrating rod inserted into the concrete member. At the same time, the matrix type vertical placement can reduce the contact with the steel bars, realizing the stability of the vibrating process.
[0026] 5. With the setting of the level gauge, the present invention can detect the horizontal situation of the matrix frame when the vibrating rod is inserted into the concrete. And with the setting of the counting lamp, it is used to remind the operator of the best vibration time, facilitating the use of the operator. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 is the overall structural schematic diagram of an internal vibrator with evenly arranged insertion points and a vibrating method according to the present invention;
[0028] Figure 2 is the side view structural schematic diagram of the shielding component of an internal vibrator with evenly arranged insertion points and a vibrating method according to the present invention;
[0029] Figure 3 is the structural schematic diagram of the anti-bending component of an internal vibrator with evenly arranged insertion points and a vibrating method according to the present invention;
[0030] Figure 4Schematic diagram of the surface structure of the device body of an insertion vibrator with evenly arranged insertion points and a vibration method according to the present invention;
[0031] Figure 5 For an insertion vibrator with evenly arranged insertion points and a vibration method according to the present invention Figure 4 Enlarged schematic diagram of the structure at A in
[0032] Figure 6 Schematic diagram of the structure of the auxiliary component of an insertion vibrator with evenly arranged insertion points and a vibration method according to the present invention;
[0033] Figure 7 Schematic diagram of the cross-sectional view of the auxiliary rod of an insertion vibrator with evenly arranged insertion points and a vibration method according to the present invention;
[0034] Figure 8 Top view schematic diagram of the matrix frame of an insertion vibrator with evenly arranged insertion points and a vibration method according to the present invention.
[0035] In the figure: 1. Device body; 2. Slide groove; 3. Shielding component; 301. Slide block; 302. Elastic clamping block; 303. Straight rod; 304. Moving shaft; 305. Main rod; 306. Rotating shaft; 307. Dust-proof cloth; 4. Connector; 5. Hose; 6. Anti-bending component; 601. Plastic handle; 602. Anti-slip pad; 603. Elastic straight piece; 604. Soft film piece; 605. Fixed frame; 606. Support block; 7. Vibrating rod; 8. Heat dissipation component; 801. Heat dissipation housing; 802. Heat dissipation holes; 803. Heat dissipation fins; 804. Heat dissipation fan; 805. Dust-proof net; 9. Pad; 10. Auxiliary component; 1001. Matrix frame; 1002. Return spring; 1003. Floating plate; 1004. Slide piece; 1005. Top seat; 1006. Auxiliary rod; 1007. Cavity; 1008. Rubber pad; 1009. Magnetic ball; 11. Level gauge; 12. Counting lamp. Detailed implementation manners
[0036] Please refer to Figures 1-8 , the present invention provides a technical solution: an insertion vibrator with evenly arranged insertion points and a vibration method, including a device body 1 and an anti-bending component 6. A slide groove 2 is provided on the outer surface of the device body 1, and a shielding component 3 is provided inside the slide groove 2. A connector 4 is provided at the bottom of the device body 1, and a hose 5 is connected to the bottom of the connector 4. The anti-bending component 6 is installed on the outer surface of the hose 5, and a vibrating rod 7 is connected to the end of the hose 5 away from the connector 4;
[0037] Please refer to Figures 1-2, the shielding component 3 includes a slider 301, an elastic clamping block 302, a straight rod 303, a movable shaft 304, a main rod 305, a rotating shaft 306 and a dustproof cloth 307. Elastic clamping blocks 302 are arranged on both sides of the slider 301. A straight rod 303 is arranged at the center of the surface of the slider 301. One end of the straight rod 303 away from the slider 301 is connected with a movable shaft 304. A main rod 305 is arranged outside the movable shaft 304. The bottom of the main rod 305 is connected with a rotating shaft 306. The dustproof cloth 307 is arranged on the outer surface of the main rod 305;
[0038] The specific operation is as follows. Through the mutual cooperation between the shielding component 3 and the device main body 1, pushing the straight rod 303 can make the slider 301 slide downward on the surface of the chute 2. The elastic clamping block 302 is used to contact the inside of the chute 2 to realize the clamping and fixing of the slider 301 in real time. While the slider 301 moves downward, the straight rod 303 pushes the main rod 305 to rotate outward around the rotating shaft 306, thereby expanding the main rod 305. The outward-expanded main rod 305 further expands the dustproof cloth 307 on the outer surface of the main rod 305, which can resist the interference of concrete during use and prevent the concrete from adhering to the surface of the device main body 1 during work;
[0039] Please refer to Figure 1 and Figure 3 , the anti-folding component 6 includes a plastic handle 601, an anti-slip pad 602, an elastic straight piece 603 and a soft film 604. An anti-slip pad 602 is arranged on the surface of the plastic handle 601. An elastic straight piece 603 is arranged below the plastic handle 601. A soft film 604 is bonded to the lower surface of the elastic straight piece 603. The anti-folding component 6 further includes a fixing frame 605 and a supporting block 606. The fixing frame 605 is connected to both ends of the plastic handle 601. A supporting block 606 is arranged on the lower surface of the fixing frame 605. The supporting block 606 is in mutual fit with the hose 5. The inner wall of the supporting block 606 is in an arc structure. The outer end of the supporting block 606 is connected with a cushion block 9, and the cushion block 9 is fixedly connected with the supporting block 606;
[0040] The specific operation is as follows. Through the mutual cooperation between the anti-folding component 6 and the hose 5, the fixing frame 605 at both ends of the plastic handle 601 is used to connect it to the outer surface of the hose 5. The plastic handle 601 serves as the holding position of the device, which is convenient for using the device. With the arrangement of the elastic straight piece 603, when the hose 5 is bent, the elastic straight piece 603 bends along with the hose 5. The elastic straight piece 603 can prevent the excessive bending of the hose 5, thereby realizing the control of the bending of the hose 5, reducing the excessive bending of the hose 5, and thus reducing the loss of the hose 5;
[0041] Please refer to Figure 1 , Figure 4 and Figure 5, a heat dissipation component 8 is provided on the lower surface of the device main body 1, and the heat dissipation component 8 includes a heat dissipation housing 801, heat dissipation holes 802, heat dissipation fins 803, a heat dissipation fan 804, and a dust-proof net 805. Heat dissipation holes 802 are formed on the surface of the heat dissipation housing 801, and heat dissipation fins 803 are provided on the surface of the heat dissipation holes 802. A heat dissipation fan 804 is snap-connected to the outer surface of the heat dissipation fins 803, and a dust-proof net 805 is provided on the outer surface of the heat dissipation fan 804;
[0042] The specific operation is as follows. Through the setting of the heat dissipation component 8, after the dust-proof cloth 307 is propped open by the shielding component 3, the working of the heat dissipation fan 804 is used to accelerate the air flow around the heat dissipation fins 803 to achieve the efficiency of air entering and leaving the heat dissipation holes 802, thereby achieving the purpose of dissipating heat from the device main body 1. The dust-proof net 805 can reduce the interference of external dust on the heat dissipation fan 804.
[0043] Please refer to Figure 1 , Figure 6 and Figure 7 , an auxiliary component 10 is provided on the outer surface of the vibrating rod 7, and the auxiliary component 10 includes a matrix frame 1001, a return spring 1002, a floating plate 1003, and a sliding piece 1004. The return spring 1002 is embedded in the lower surface of the matrix frame 1001, and one end of the return spring 1002 away from the matrix frame 1001 is connected to the floating plate 1003. A sliding piece 1004 is provided below the inner wall of the floating plate 1003. The auxiliary component 10 further includes a top seat 1005, an auxiliary rod 1006, a cavity 1007, a rubber pad 1008, and a magnetic ball 1009. The top seat 1005 is connected to the top of the floating plate 1003. The auxiliary rod 1006 is installed at the edge of the lower surface of the matrix frame 1001, and a cavity 1007 is provided inside the auxiliary rod 1006. A rubber pad 1008 is connected to the inner wall of the cavity 1007, and a magnetic ball 1009 is placed inside the cavity 1007. The magnetic ball 1009 is movably connected to the cavity 1007, and there are two groups of magnetic balls 1009, and the magnetic poles of the magnetic balls 1009 are designed with the same structure;
[0044] The specific operation is as follows: By using the vibration effect of the vibrating rod 7, the setting time of the concrete is shortened, and the turnover rate of the formwork is increased. When the vibrating rod 7 is inserted into the concrete, the floating plate 1003 adheres to the surface of the concrete. When the floating plate 1003 is stressed, the reset spring 1002 and the top seat 1005 can fit with the matrix frame 1001. The matrix frame 1001 is used to limit the depth of the vibrating rod 7 inserted into the concrete member. At the same time, the matrix frame 1001 is placed vertically to reduce contact with the steel bars, realizing the stability of the vibrating process. At the same time, through the conduction of vibration, the vibrating rod 7 is transmitted to the matrix frame 1001 and the auxiliary rod 1006 at its edge through the sliding piece 1004 and the top seat 1005. The vibration of the auxiliary rod 1006 causes the magnetic balls 1009 with the same magnetic poles and repelling each other inside the cavity 1007 of the auxiliary rod 1006 to collide with each other during the vibrating process of the auxiliary rod 1006, realizing uniform array vibration and facilitating use.
[0045] Please refer to Figure 1 and Figure 8 On the top of the matrix frame 1001, a spirit level 11 is provided, and a counting lamp 12 is provided inside the spirit level 11;
[0046] The specific operation is as follows: By setting the spirit level 11, the horizontal condition of the matrix frame 1001 can be detected when the vibrating rod 7 is inserted into the concrete, and by setting the counting lamp 12, it is used to remind the operator of the best vibrating time, facilitating the operator's use.
[0047] The vibrating method includes the following operation steps:
[0048] S1. Vibration preparation
[0049] Pushing the straight rod 303 can make the slider 301 slide downward on the surface of the chute 2. The elastic clamping block 302 contacts with the inside of the chute 2 to realize the real-time clamping and fixing of the slider 301. While the slider 301 is sliding downward, the straight rod 303 pushes the main rod 305 to rotate outward around the rotating shaft 306, further expanding the main rod 305. The outwardly expanding main rod 305 further expands the dust-proof cloth 307 on the outer surface of the main rod 305, resisting the interference of the concrete during use and preventing the concrete from adhering to the surface of the device main body 1 during work;
[0050] S2. Fetching the equipment
[0051] Lift the device by holding the handle at the top of the device body 1 with the right hand. Then, hold the plastic handle 601 with the left hand and cooperate with the anti-slip pad 602 to enhance the anti-slip measure. The plastic handle 601 is connected to the outer surface of the hose 5 by the fixing brackets 605 at both ends. When the plastic handle 601 is lifted, the hose 5 bends downward. At this time, the elastic straight piece 603 bends together with the hose 5. The elastic straight piece 603 is used to prevent the excessive bending of the hose 5, thereby realizing the control of the bending of the hose 5 and reducing the loss caused by the excessive bending of the hose 5.
[0052] S3. Vibrating
[0053] Power on and start the device body 1, and quickly insert the vibrating rod 7 below the plastic handle 601 held by the left hand into the concrete. Use the vibrating function of the vibrating rod 7 to shorten the solidification and forming time of the concrete and improve the turnover rate of the formwork. When the vibrating rod 7 is inserted into the interior of the concrete, the floating plate 1003 is attached to the surface of the concrete. When the floating plate 1003 is stressed, the reset spring 1002 and the top seat 1005 can fit with the matrix frame 1001. The matrix frame 1001 is used to limit the depth of the vibrating rod 7 inserted into the concrete member. At the same time, the matrix frame 1001 is vertically placed to reduce the contact with the steel bars, realizing the stability of the vibrating process. At the same time, use the vibration conduction to transfer the vibrating rod 7 to the matrix frame 1001 and the auxiliary rod 1006 at its edge through the sliding piece 1004 and the top seat 1005. The vibration of the auxiliary rod 1006 causes the magnetic balls 1009 with the same magnetic poles and mutually repulsive in the cavity 1007 of the auxiliary rod 1006 to collide with each other to assist the vibrating process of the auxiliary rod 1006, realizing uniform array vibration and convenient use.
[0054] In summary, for the inserted vibrator with evenly arranged insertion points and the vibration method, during use, first, pushing the straight rod 303 can make the slider 301 slide downward on the surface of the chute 2. The elastic clamping block 302 contacts the inside of the chute 2 to realize real-time clamping and fixing of the slider 301. While the slider 301 slides downward, the straight rod 303 pushes the main rod 305 to rotate outward around the rotating shaft 306, thus expanding the main rod 305. The outward-expanded main rod 305 further expands the dust-proof cloth 307 on the outer surface of the main rod 305 to resist the interference of concrete during use and prevent the concrete from adhering to the surface of the device main body 1 during work. Then, hold the device main body 1 at the holding part at the top with the right hand and lift the device. Then, hold the plastic handle 601 with the left hand and cooperate with the anti-slip pad 602 to enhance the anti-slip measure. The plastic handle 601 is connected to the outer surface of the hose 5 by the fixing brackets 605 at both ends. When the plastic handle 601 is lifted, the hose 5 bends downward. At this time, the elastic straight piece 603 bends together with the hose 5, and the elastic straight piece 603 is used to prevent the excessive bending of the hose 5, thereby realizing the control of the bending of the hose 5 and reducing the loss caused by the excessive bending of the hose 5. Then, power on the device main body 1 and quickly insert the vibrating rod 7 below the plastic handle 601 held by the left hand into the concrete. The vibration of the vibrating rod 7 shortens the solidification and forming time of the concrete and improves the turnover rate of the formwork. When the vibrating rod 7 is inserted into the concrete, the floating plate 1003 adheres to the surface of the concrete. With the setting of the level gauge 11, the horizontal condition of the matrix frame 1001 can be detected when the vibrating rod 7 is inserted into the concrete. The reset spring 1002 and the top seat 1005 can fit with the matrix frame 1001 when the floating plate 1003 is stressed. The matrix frame 1001 limits the depth of the vibrating rod 7 inserted into the concrete member. At the same time, the matrix frame 1001 is vertically placed to reduce the contact with the steel bars, realizing the stability of the vibrating process. At the same time, the vibration of the vibrating rod 7 is transmitted to the matrix frame 1001 and the auxiliary rod 1006 at its edge through the sliding piece 1004 and the top seat 1005. The vibration of the auxiliary rod 1006 causes the magnetic balls 1009 with the same magnetic poles and repelling each other in the cavity 1007 of the auxiliary rod 1006 to collide with each other to assist the vibrating process of the auxiliary rod 1006, realizing uniform array vibration. The setting of the counting lamp 12 is used to remind the operator of the best vibration time. Finally, slowly withdraw the vibrating rod 7 after the vibration is completed, and complete the vibrating work following the principle of fast insertion and slow extraction.
Claims
1. An insertion type vibrator with evenly arranged insertion points, characterized in that, It includes a device main body (1) and an anti-folding component (6). The outer surface of the device main body (1) is provided with a chute (2), and a shielding component (3) is arranged inside the chute (2). The bottom of the device main body (1) is provided with a connector (4), and a hose (5) is connected to the bottom of the connector (4). The anti-folding component (6) is installed on the outer surface of the hose (5), and one end of the hose (5) far from the connector (4) is connected to a vibrating rod (7). The shielding component (3) includes a slider (301), an elastic clamping block (302), a straight rod (303), a movable shaft (304), a main rod (305), a rotating shaft (306), and a dust-proof cloth (307). Elastic clamping blocks (302) are arranged on both sides of the slider (301). A straight rod (303) is arranged at the center position of the surface of the slider (301), and one end of the straight rod (303) far from the slider (301) is connected to the movable shaft (304). A main rod (305) is arranged outside the movable shaft (304), and a rotating shaft (306) is connected to the bottom of the main rod (305). The dust-proof cloth (307) is arranged on the outer surface of the main rod (305); A heat dissipation component (8) is arranged on the lower surface of the device main body (1). The heat dissipation component (8) includes a heat dissipation housing (801), heat dissipation holes (802), heat dissipation fins (803), a heat dissipation fan (804), and a dust-proof net (805). Heat dissipation holes (802) are formed on the surface of the heat dissipation housing (801), and heat dissipation fins (803) are arranged on the surface of the heat dissipation holes (802). A heat dissipation fan (804) is snap-fitted to the outer surface of the heat dissipation fins (803), and a dust-proof net (805) is arranged on the outer surface of the heat dissipation fan (804); An auxiliary component (10) is arranged on the outer surface of the vibrating rod (7). The auxiliary component (10) includes a matrix frame (1001), a return spring (1002), a floating plate (1003), and a sliding piece (1004). The return spring (1002) is embedded in the lower surface of the matrix frame (1001), and one end of the return spring (1002) far from the matrix frame (1001) is connected to the floating plate (1003). A sliding piece (1004) is arranged below the inner wall of the floating plate (1003); The auxiliary component (10) further includes a top seat (1005), an auxiliary rod (1006), a cavity (1007), a rubber pad (1008), and a magnetic ball (1009). The top seat (1005) is connected to the top of the floating plate (1003). The auxiliary rod (1006) is installed at the edge of the lower surface of the matrix frame (1001), and a cavity (1007) is arranged inside the auxiliary rod (1006). A rubber pad (1008) is connected to the inner wall of the cavity (1007), and a magnetic ball (1009) is placed inside the cavity (1007); The magnetic ball (1009) is movably connected to the cavity (1007), and there are two sets of the magnetic balls (1009), and the magnetic poles of the magnetic balls (1009) are designed with the same structure.
2. The insertion type vibrator with evenly arranged insertion points according to claim 1, wherein The anti-folding component (6) includes a plastic handle (601), an anti-slip pad (602), an elastic straight piece (603) and a soft film (604), and the anti-slip pad (602) is arranged on the surface of the plastic handle (601), the elastic straight piece (603) is arranged below the plastic handle (601), and the soft film (604) is bonded to the lower surface of the elastic straight piece (603).
3. The insertion type vibrator with evenly arranged insertion points according to claim 2, characterized in that, The anti-folding component (6) further includes a fixing frame (605) and a supporting block (606), and the fixing frame (605) is connected to both ends of the plastic handle (601), and the supporting block (606) is arranged on the lower surface of the fixing frame (605).
4. The insertion type vibrator with evenly arranged insertion points according to claim 3, wherein, The supporting block (606) is mutually attached to the hose (5), and the inner wall of the supporting block (606) is of an arc-shaped structure. The outer end of the supporting block (606) is connected with a cushion block (9), and the cushion block (9) is fixedly connected with the supporting block (606).
5. An insertion vibrator with evenly arranged insertion points according to claim 1, characterized in that, A level gauge (11) is arranged on the top of the matrix frame (1001), and a counting lamp (12) is arranged inside the level gauge (11).
6. The vibrating method of an insertion type vibrator with evenly arranged insertion points according to claim 3 or 4, characterized in that, The vibration method includes the following operation steps: S1. Vibration preparation Push the straight rod (303) to make the slider (301) slide downward on the surface of the chute (2). The elastic clamping block (302) contacts with the inside of the chute (2) to realize the clamping and fixing of the slider (301) in real time. While the slider (301) slides downward, the straight rod (303) pushes the main rod (305) to rotate outward around the rotating shaft (306) to expand the main rod (305). The outward-expanded main rod (305) further expands the dust-proof cloth (307) on the outer surface of the main rod (305) to resist the interference of concrete during use and avoid the adhesion of concrete on the surface of the device main body (1) during work. S2. Taking the equipment Lift the equipment with the right hand holding the holding part at the top of the device main body (1), and then hold the plastic handle (601) with the left hand to cooperate with the anti-slip pad (602) to improve the anti-slip measure. The plastic handle (601) is connected to the outer surface of the hose (5) by the fixing frames (605) at both ends. While lifting the plastic handle (601), the hose (5) bends downward. At this time, the elastic straight piece (603) bends together with the hose (5), and the elastic straight piece (603) is used to prevent the excessive bending of the hose (5), so as to realize the control of the bending of the hose (5) and reduce the loss caused by the excessive bending of the hose (5). S3. Vibration Power on the device main body (1) and quickly insert the vibrating rod (7) below the plastic handle (601) held by the left hand into the concrete. By using the vibration of the vibrating rod (7), the solidification and forming time of the concrete can be shortened, and the turnover rate of formwork use can be improved. When the vibrating rod (7) is inserted into the interior of the concrete, the floating plate (1003) adheres to the surface of the concrete. When the floating plate (1003) is stressed, the return spring (1002) and the top seat (1005) can fit with the matrix frame (1001). The matrix frame (1001) is used to limit the depth of the vibrating rod (7) inserted into the interior of the concrete member. At the same time, the matrix frame (1001) is placed vertically to reduce contact with the steel bars, realizing the stability of the vibration compaction process. At the same time, through the conduction of vibration, the vibrating rod (7) is transmitted to the matrix frame (1001) and the auxiliary rod (1006) at its edge through the sliding piece (1004) and the top seat (1005). The vibration of the auxiliary rod (1006) causes the magnetic balls (1009) with the same magnetic poles and mutually repulsive in the cavity (1007) of the auxiliary rod (1006) to collide with each other during the vibration compaction process of the auxiliary rod (1006), realizing uniform array vibration compaction and facilitating use.
Citation Information
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