Cement pouring equipment for municipal works
Technical Field
The utility model relates to the technical field of municipal engineering, in particular to cement pouring equipment for municipal engineering.
Background
Municipal works include road traffic works, river and lake water works, underground pipeline works, overhead pole line works, and street greening works. Municipal works generally belong to the infrastructure of country, refer to various public transportation facilities in the city construction, water supply, drainage, gas, urban flood control, sanitation and infrastructure construction such as illumination, it is the essential material basis of city survival and development, it is the basic condition that improves people's living standard and open to the outside, among the prior art, cement filling equipment in municipal works divide into piston, extrusion formula and vapour-pressure type etc. according to the theory of action, wherein extrusion formula is most common, constantly extrude cement through the screw conveyer pole, provide pressure for the pouring of cement, simultaneously in order to guarantee the continuous feeding of cement, the upper end of cement filling equipment can set up the storage hopper, the convenience is continuous to the cement feeding, but after cement filling equipment uses, the storage hopper inner wall of cement filling equipment often adsorbs more cement, the condition that causes cement filling equipment's ejection of compact to appear not thoroughly easily, cause the waste of material more.
Disclosure of utility model
The utility model aims to overcome the existing defects, and provides cement pouring equipment for municipal engineering, wherein the cement storage hopper adopts an inner-outer double-layer design, and the vibration generated by the reciprocating movement of the inner-layer cement hopper is used for reducing the adsorption of cement, so that the discharging of the cement pouring equipment is more thorough, the material waste during the municipal engineering construction is reduced, and the problems in the background art can be effectively solved.
In order to achieve the aim, the utility model provides the technical scheme that the cement pouring equipment for municipal engineering comprises a cement bucket;
The cement bucket comprises an outer shell and an inner shell, wherein the lower end of the inner wall of the outer shell is provided with a plugboard, the upper end of the outer shell is respectively provided with a guide post, the inner shell is positioned in the outer shell, the lower end of the inner shell is provided with a slot plate, the plugboard and the slot plate are matched and installed, the outer side surface of the inner shell is respectively provided with a guide plate, the guide posts are vertically and slidably connected with guide holes of the guide plates, a filling pipe is arranged at the opening of the lower end of the outer shell, the inside of the filling pipe is rotationally connected with a spiral material conveying rod, the cement storage bucket of cement filling equipment adopts an inner layer and outer layer design, and vibration generated by reciprocating movement of the inner layer cement bucket is used for reducing the absorption of cement, so that the discharge of the cement filling equipment is more thorough, the material waste during municipal engineering construction is reduced, and the inner shell of the cement storage bucket can be disassembled, so that the cement filling equipment is cleaned more conveniently.
Further, the cement bucket further comprises rubber support pads, the rubber support pads are respectively arranged on the inner wall of the outer shell, the rubber support pads are attached to the outer side face of the inner shell, and elastic support is provided for the lower end of the inner shell.
Further, the cement bucket further comprises a lower limiting plate, an upper limiting plate and a fixing plate, wherein the lower limiting plates are respectively arranged on the outer cambered surface of the guide post, the fixing plate is fixedly connected to the upper surface of the outer shell through bolts, and the upper limiting plate is arranged on the lower surface of the fixing plate to limit the moving range of the inner shell.
Further, the cement bucket further comprises a baffle plate, the baffle plate is arranged on the lower surface of the upper limiting plate, the baffle plate is attached to the inner side surface of the inner shell, and cement is prevented from entering between the inner shell and the outer shell.
Further, the cement bucket further comprises springs, the springs are respectively movably sleeved at the upper end and the lower end of the outer cambered surface of the guide post, the springs at the upper side are fixedly connected with the upper limiting plate, the springs at the lower side are fixedly connected with the lower limiting plate, and the guide plate is positioned between the two springs corresponding to the vertical position, so that the movement of the inner shell is more stable.
Further, the outer side face of shell is equipped with the frame, and the front end of frame is equipped with control switch group, and control switch group's input electricity is connected in external power source, controls the start-up and the stop of whole device.
Further, driving motor is arranged at the lower end of the frame, an output shaft of the driving motor is fixedly connected with the left end of the spiral conveying rod, vibration motors are respectively arranged on the outer side faces of the inner shell, and input ends of the vibration motors and the driving motor are electrically connected to the output ends of the control switch group to provide power for the operation of the whole device.
Compared with the prior art, the cement pouring equipment for the municipal engineering has the following advantages:
The cement storage hopper of the cement filling equipment adopts an inner layer and outer layer design, and the vibration generated by the reciprocating movement of the inner layer cement hopper is utilized to reduce the adsorption of cement, so that the discharging of the cement filling equipment is more thorough, the material waste during municipal engineering construction is reduced, the inner shell of the cement storage hopper can be detached, and the cleaning of the cement filling equipment in municipal engineering is more convenient.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the structure of the whole device in front section;
FIG. 3 is an enlarged schematic view of the structure of the present utility model at A;
FIG. 4 is a schematic top view of the overall device of the present utility model;
fig. 5 is an enlarged schematic view of the structure of the present utility model at B.
In the figure, 1 cement bucket, 101 outer shell, 102 inner shell, 103 slot plate, 104 plugboard, 105 rubber support pad, 106 guide plate, 107 guide post, 108 lower limit plate, 109 upper limit plate, 110 fixed plate, 111 baffle, 112 spring, 2 filling pipe, 3 spiral material conveying rod, 4 vibration motor, 5 driving motor, 6 control switch group and 7 frame.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to FIGS. 1-5, the embodiment provides a technical scheme that the cement pouring equipment for municipal works comprises a cement bucket 1;
Cement bucket 1: the cement discharging device comprises an outer shell 101 and an inner shell 102, wherein a plugboard 104 is arranged at the lower end of the inner wall of the outer shell 101, guide posts 107 are respectively arranged at the upper end of the outer shell 101, the inner shell 102 is positioned in the outer shell 101, a slot plate 103 is arranged at the lower end of the inner shell 102, the plugboard 104 is matched with the slot plate 103, guide plates 106 are respectively arranged on the outer side surfaces of the inner shell 102, the guide posts 107 are vertically and slidably connected with guide holes of the guide plates 106, the plugboard 104 vertically and relatively slides with the guide posts 107 through the guide plates 106 and the slot plate 103, guide support is provided for the movement of the inner shell 102, the inner shell 102 reciprocates up and down, cement in the inner shell 102 is driven to vibrate, the adsorption of the cement on the inner side surfaces of the inner shell 102 is reduced, the cement is discharged more thoroughly, the opening part of the lower end of the outer shell 101 is provided with a pouring pipe 2, a spiral material conveying rod 3 is rotationally connected to the inside of the pouring pipe 2, cement for municipal engineering is poured into the inner shell 102, under the action of gravity, the cement enters the pouring pipe 2 through the opening of the lower end of the inner shell 102 and the opening of the lower end of the outer shell 101, the spiral material conveying rod 3 rotates to apply rightward acting force to the cement in the pouring pipe 2, the cement is pushed to be discharged from the right end of the pouring pipe 2, power is provided for pouring the cement, the cement is poured, the cement bucket 1 further comprises a rubber support pad 105, the rubber support pad 105 is respectively arranged on the inner wall of the outer shell 101, the rubber support pad 105 is attached to the outer side surface of the inner shell 102, elastic support is provided for the lower end of the inner shell 102, the cement bucket 1 further comprises a lower limiting plate 108, The upper limit plate 109 and the fixed plate 110, the lower limit plate 108 is respectively arranged on the outer arc surface of the guide post 107, the fixed plate 110 is fixedly connected on the upper surface of the outer shell 101 through bolts, the upper limit plate 109 is arranged on the lower surface of the fixed plate 110 to limit the up-down movement range of the inner shell 102, the cement bucket 1 further comprises a baffle 111, the baffle 111 is arranged on the lower surface of the upper limit plate 109, the baffle 111 is attached to the inner side surface of the inner shell 102 to prevent cement from entering between the inner shell 102 and the outer shell 101, the cement bucket 1 further comprises springs 112, the springs 112 are respectively movably sleeved on the upper end and the lower end of the outer arc surface of the guide post 107, the springs 112 on the upper side are fixedly connected with the upper limit plate 109, the springs 112 on the lower side are fixedly connected with the lower limit plate 108, the deflector 106 is located between two springs 112 that vertical position corresponds, the removal of inner shell 102 needs to overcome the elasticity of spring 112, make the reciprocating motion of inner shell 102 more stable, the lateral surface of shell 101 is equipped with frame 7, the front end of frame 7 is equipped with control switch group 6, control switch group 6's input electricity is connected in external power source, control the start-up and the stop of whole device, frame 7's lower extreme is equipped with driving motor 5, driving motor 5's output shaft and spiral conveying pole 3's left end fixed connection, the lateral surface of inner shell 102 is equipped with vibrating motor 4 respectively, vibrating motor 4 and driving motor 5's input all electricity are connected in control switch group 6's output, provide power for spiral conveying pole 3's rotation and inner shell 102's removal.
The cement pouring equipment for municipal works has the working principle that cement for municipal works is poured into the inner shell 102 in the process of municipal works, under the action of gravity, the cement enters the pouring tube 2 through the opening at the lower end of the inner shell 102 and the opening at the lower end of the outer shell 101, then the driving motor 5 is started through the control switch group 6, the output shaft of the driving motor 5 drives the spiral material conveying rod 3 to rotate, the rightward acting force is applied to the cement in the pouring tube 2, the cement is pushed to be discharged from the right end of the pouring tube 2, power is provided for pouring the cement, the vibration motor 4 is started in the working process, the guide plate 106 and the guide post 107 vertically slide relatively, the guide support is provided for the movement of the inner shell 102, the inner shell 102 is made to reciprocate up and down under the limit of the lower limit plate 108 and the upper limit plate 109, the cement in the inner shell 102 is driven to vibrate up and down by overcoming the elasticity of the spring 112, the adsorption of the cement on the inner side surface of the inner shell 102 is reduced, the cement is made to be discharged more thoroughly, the inner shell 102 is made to be discharged, the inner shell 101 is made to be removed from the lower limit plate 110 through rotation, the lower limit plate is made to be fixed, the lower limit plate 110 is made to be pulled out of the inner shell 101 through rotation, and the inner shell 101 can be cleaned conveniently.
It should be noted that, in the above embodiment, the driving motor 5 and the vibration motor 4 may be freely configured according to the practical application scenario, the driving motor 5 may be a 42BYHJ model stepping speed reduction motor, the vibration motor 4 may be a YZDP-10-2 model vibration motor, and the control switch group 6 is provided with switch buttons corresponding to the driving motor 5 and the vibration motor 4 one by one for controlling the switching operation thereof.
The foregoing is only illustrative of the present utility model and is not to be construed as limiting the scope of the utility model, and all equivalent structures or equivalent flow modifications which may be made by the teachings of the present utility model and the accompanying drawings or which may be directly or indirectly employed in other related art are within the scope of the utility model.