Concrete processing evenly and device
Technical Field
The utility model relates to the technical field of concrete processing, in particular to a concrete processing homogenizing device.
Background
Concrete refers to a generic term for engineering composite materials in which aggregate is consolidated into a whole by a cementitious material. The term concrete is generally used as cementing material, sand and stone as aggregate, and cement concrete, also called ordinary concrete, obtained by mixing with water in a certain proportion and stirring, is widely applied to civil engineering.
When concrete is prepared, concrete raw materials need to be mixed, and when the preparation device in the prior art is used, when mixing the raw materials, the raw materials at the bottom of the preparation device and the raw materials at the top of the preparation device are difficult to mix, and then the raw materials inside the preparation device are unevenly mixed, so that the effect of concrete processing can be influenced, and the use of operators is inconvenient.
Accordingly, based on the above technical problems, it is necessary for those skilled in the art to develop a concrete processing uniformity apparatus.
Disclosure of utility model
The utility model aims to solve the technical problem of providing a concrete processing homogenizing device so as to solve the problems that when raw materials are mixed, the raw materials at the bottom of a preparation device are difficult to mix with the raw materials at the top of the preparation device, so that the raw materials in the preparation device are unevenly mixed, the concrete processing effect is affected, and the use of operators is inconvenient.
In order to solve the technical problems, the technical scheme of the utility model is as follows:
The concrete processing homogenizing device comprises a mixing cylinder, wherein an auxiliary mechanism is arranged in the mixing cylinder and extends out of the mixing cylinder;
The auxiliary mechanism comprises a fixed cylinder, the fixed cylinder is fixedly arranged at the top of the inner cavity of the mixing cylinder, a convex-shaped sliding groove is formed in the fixed cylinder, a transverse plate is fixedly arranged in the fixed cylinder, a motor is fixedly arranged at the bottom of the transverse plate, the motor is fixedly connected with a rotating rod through an output shaft, a circular plate is fixedly arranged at the bottom of the fixed cylinder, the circular plate is fixedly connected with the inner wall of the mixing cylinder, a rotating plate is movably connected inside the circular plate through a bearing, the rotating rod penetrates through the rotating plate and is fixedly connected with the rotating plate, and the bottom of the rotating rod is movably connected with the bottom of the inner cavity of the mixing cylinder through a bearing.
Preferably, the rotating plate is provided with two auxiliary components, and the rack is fixedly arranged in the fixed cylinder.
Preferably, the outside of the rotating rod is fixedly provided with two connecting plates, and one side of each connecting plate is fixedly provided with a connecting frame.
Preferably, the bottom of the connecting frame is fixedly provided with an inclined plate, and the bottom of the inclined plate is contacted with the bottom of the inner cavity of the mixing drum.
Preferably, the auxiliary assembly comprises a vertical rod, the vertical rod is arranged on one side of the motor, and the vertical rod penetrates through the rotating plate and is movably connected with the rotating plate through a bearing.
Preferably, a plurality of mixing plates are fixedly arranged outside the vertical rods, and the mixing plates are arranged on one side of the inclined plate.
Preferably, a gear is fixedly arranged outside the vertical rod, and the gear is arranged on one side of the rack and meshed with the rack.
Preferably, the top of the vertical rod is movably connected with a moving plate through a bearing, the top of the moving plate is fixedly provided with a moving block, and both the moving plate and the moving block extend into the convex-shaped sliding groove.
Preferably, the four corners of the bottom of the mixing drum are fixedly provided with supporting rods, the bottom of the mixing drum is fixedly provided with a discharging pipe, and the outside of the discharging pipe is fixedly provided with an electromagnetic valve.
Preferably, both sides of the mixing drum are fixedly provided with feeding hoppers, and the feeding hoppers are arranged at the bottoms of the circular plates.
By adopting the technical scheme, the method has the following beneficial effects:
According to the utility model, through the design of the auxiliary mechanism, the raw materials at the bottom of the mixing cylinder can be pushed to the top of the sloping plate through the rotation of the sloping plate, and enter the back of the sloping plate through the connecting frame, and then the raw materials in the mixing cylinder can be mixed through the rotation of the mixing plate, so that the raw materials at the top of the mixing cylinder and the raw materials at the bottom of the mixing cylinder can be fully mixed, the raw materials in the mixing cylinder can be more uniformly mixed, the concrete manufacturing effect is ensured, and the use of operators is facilitated.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It will be apparent to those of ordinary skill in the art that the drawings in the following description are exemplary only and that other implementations can be obtained from the extensions of the drawings provided without inventive effort.
The structures, proportions, sizes, etc. shown in the present specification are shown only for the purposes of illustration and description, and are not intended to limit the scope of the utility model, which is defined by the claims, so that any structural modifications, changes in proportions, or adjustments of sizes, which do not affect the efficacy or the achievement of the present utility model, should fall within the ambit of the technical disclosure.
FIG. 1 is a schematic view of the overall structure provided by the present utility model;
FIG. 2 is a cross-sectional view provided by the present utility model;
FIG. 3 is a schematic view of the internal structure of a mixing drum according to the present utility model;
Fig. 4 is a perspective view of the swash plate according to the present utility model;
fig. 5 is a perspective view of a fixing barrel provided by the utility model.
The device comprises a mixing cylinder 1, a fixed cylinder 2, a convex chute 3, a transverse plate 4, a motor 5, a rotary rod 6, a rotary plate 7, a circular plate 8, a rotary plate 9, a rack 10, a connecting plate 11, a connecting frame 12, a sloping plate 13, a vertical rod 14, a mixing plate 15, a gear 16, a moving plate 17, a moving block 18, a supporting rod 19, a discharging pipe 20 and a feeding hopper.
Detailed Description
The following describes the embodiments of the present utility model further with reference to the drawings. The description of these embodiments is provided to assist understanding of the present utility model, but is not intended to limit the present utility model. In addition, the technical features of the embodiments of the present utility model described below may be combined with each other as long as they do not collide with each other.
Referring to fig. 1-5, the concrete processing homogenizing device comprises a mixing drum 1, wherein an auxiliary mechanism is arranged inside the mixing drum 1 and extends out of the mixing drum 1;
The auxiliary mechanism comprises a fixed cylinder 2, the top of the inner cavity of the mixing cylinder 1 is fixedly arranged on the fixed cylinder 2, a convex chute 3 is formed in the fixed cylinder 2, a transverse plate 4 is fixedly arranged in the fixed cylinder 2, a motor 5 is fixedly arranged at the bottom of the transverse plate 4, the motor 5 is fixedly connected with a rotating rod 6 through an output shaft, a circular plate 7 is fixedly arranged at the bottom of the fixed cylinder 2, the circular plate 7 is fixedly connected with the inner wall of the mixing cylinder 1, a rotating plate 8 is movably connected inside the circular plate 7 through a bearing, the rotating rod 6 penetrates through the rotating plate 8 and is fixedly connected with the rotating plate 8, and the bottom of the rotating rod 6 is movably connected with the bottom of the inner cavity of the mixing cylinder 1 through the bearing.
In order to solve the problem that the gear 15 can rotate, two auxiliary components are arranged on the rotating plate 8, and the rack 9 is fixedly arranged inside the fixed cylinder 2.
In order to solve the problem of mixing raw materials, two connecting plates 10 are fixedly arranged outside the rotating rod 6, and a connecting frame 11 is fixedly arranged on one side of each connecting plate 10.
In order to solve the problem of mixing raw materials, an inclined plate 12 is fixedly arranged at the bottom of the connecting frame 11, and the bottom of the inclined plate 12 is contacted with the bottom of the inner cavity of the mixing drum 1.
Wherein, in order to solve montant 13 rotatable problem, auxiliary assembly includes montant 13, montant 13 locates motor 5 one side, montant 13 runs through rotor plate 8 and passes through bearing swing joint with rotor plate 8.
In order to solve the problem of mixing the raw materials, a plurality of mixing plates 14 are fixedly arranged outside the vertical rod 13, and the mixing plates 14 are arranged on one side of the inclined plate 12.
In order to solve the problem that the vertical rod 13 can rotate, a gear 15 is fixedly arranged outside the vertical rod 13, and the gear 15 is arranged on one side of the rack 9 and meshed with the rack 9.
In order to solve the problem of limiting and supporting the rotation of the gear 15, the top of the vertical rod 13 is movably connected with a moving plate 16 through a bearing, a moving block 17 is fixedly arranged on the top of the moving plate 16, and both the moving plate 16 and the moving block 17 extend into the inner part of the convex sliding groove 3.
In order to solve the problem of supporting the mixing drum 1, the four corners of the bottom of the mixing drum 1 are fixedly provided with supporting rods 18, the bottom of the mixing drum 1 is fixedly provided with a discharging pipe 19, and an electromagnetic valve is fixedly arranged outside the discharging pipe 19.
In order to solve the feeding problem, the two sides of the mixing drum 1 are fixedly provided with feeding hoppers 20, and the feeding hoppers 20 are arranged at the bottoms of the circular plates 7.
Working principle: when the utility model is used, firstly, the utility model is connected with an external power supply, when in use, raw materials to be mixed can be put into the mixing drum 1 through the two feed hoppers 20, meanwhile, the motor 5 can be started, the motor 5 works to drive the rotating rod 6 to rotate, the rotating rod 6 rotates to drive the connecting plate 10 to rotate, the connecting plate 10 rotates to drive the connecting frame 11 to rotate, the connecting frame 11 rotates to drive the sloping plate 12 at the bottom of the connecting frame 11 to rotate, through the design of the sloping plate 12, the raw materials at the bottom of the mixing drum 1 can be pushed to the top of the sloping plate 12 and then enter the rear side of the sloping plate 12 through the connecting frame 11, the rotating rod 6 rotates and simultaneously drives the rotating plate 8 to rotate, the rotating plate 8 rotates the vertical rod 13 to rotate around the central shaft of the rotating rod 6, the vertical rod 13 rotates to drive the gears 15 and a plurality of mixing plates 14 outside the vertical rod 13 to rotate around the central shaft of the rotating rod 6, because the gear 15 is meshed with the rack 9, and the fixed cylinder 2 is fixedly connected with the inner wall of the mixing cylinder 1 and the circular plate 7, when the gear 15 rotates around the central shaft of the rotating rod 6, the gear 15 also rotates around the central shaft of the vertical rod 13, the vertical rod 13 rotates to drive a plurality of mixing plates 14 outside the vertical rod 13 to rotate, raw materials inside the mixing cylinder 1 can be mixed through the rotation of the plurality of mixing plates 14, after the raw materials inside the mixing cylinder 1 are mixed, an electromagnetic valve can be opened, concrete inside the mixing cylinder 1 can be discharged through a discharge pipe 19, raw materials at the bottom of the mixing cylinder 1 can be pushed to the top of the inclined plate 12 through the rotation of the inclined plate 12 through the design of an auxiliary mechanism, and the raw materials can enter the back of the inclined plate 12 through the connecting frame 11 and can be mixed through the rotation of the mixing plates 14, thereby can make the raw materials at mixing drum 1 top and the raw materials at mixing drum 1 bottom can abundant mix, and then make the inside raw materials of mixing drum 1 more even that can mix, guaranteed the effect of concrete preparation, make things convenient for operating personnel's use.
The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings, but the present utility model is not limited to the described embodiments. It will be apparent to those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the utility model, and yet fall within the scope of the utility model.