Dry powder mortar agitating unit
Technical Field
The utility model relates to the technical field of dry powder mortar stirring, in particular to a dry powder mortar stirring device.
Background
The dry powder mortar is a building material which is formed by cement, sand, gypsum, mineral fillers, other chemical additives and the like through pre-scientific proportioning, drying and mixing. It has completed uniform mixing of the ingredients during production and is free of moisture, thus having a longer shelf life and higher stability during transportation and storage. When in construction, the mortar suitable for construction can be quickly prepared by adding a proper amount of water according to the requirement. The method can not only improve the quality and consistency of mortar, but also obviously improve the construction efficiency and reduce the dust pollution of a construction site.
In the process of blending, the dry powder mortar needs to be mixed and stirred by using a stirring device. At present, when the existing stirring device is used, due to the lack of an effective multidirectional stirring mechanism, only raw materials such as cement, sand, gypsum, mineral fillers and other chemical additives can be stirred in a single direction, and the uniform mixing among all components can be influenced by the unidirectional stirring mode, so that the proportion of the components such as cement, sand, gypsum and the like is not accurate enough, and the quality and performance of the final mortar are influenced, therefore, the problem of poor stirring effect possibly exists in the existing equipment under certain conditions, and especially in the production environment requiring efficient and uniform mixing, the optimal proportion uniformity can not be achieved.
Based on this, we propose a dry powder mortar stirring device to solve the above mentioned problems.
Disclosure of utility model
This section is intended to outline some aspects of embodiments of the utility model and to briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section as well as in the description of the utility model and in the title of the utility model, which may not be used to limit the scope of the utility model.
Therefore, the utility model aims to provide a dry powder mortar stirring device which can solve the problems that the existing stirring device lacks an effective multidirectional stirring mechanism, so that raw materials such as cement, sand, gypsum and the like are not uniformly proportioned, and the quality and performance of mortar are affected.
The utility model provides a dry powder mortar stirring device which comprises a supporting base, wherein a multidirectional stirring assembly is arranged at the top of the supporting base, feeders are respectively connected to two sides of the top of the multidirectional stirring assembly, the multidirectional stirring assembly comprises a stirring barrel, observation windows are arranged on the outer sides of the periphery of the stirring barrel, clamping grooves are formed in two sides of the top of the stirring barrel, and a feeding hole is formed in one side, close to the clamping grooves, of the stirring barrel in a penetrating mode;
The bottom of agitator is connected with agitator motor, agitator motor's output transmission is connected with the driving disk, the inner chamber bottom at the agitator is installed to the driving disk, the top both sides of driving disk still are connected with the supporting seat respectively.
Optionally, two sets of the top of supporting seat all overlaps and is equipped with the (mixing) shaft, be sliding fit between (mixing) shaft and the supporting seat, be provided with the stirring leaf around the (mixing) shaft, the top of (mixing) shaft is connected with drive gear, circular slider is still installed at drive gear's top.
Optionally, the inside internal gear groove of having seted up in top of agitator, internal gear groove and drive gear structure phase-match, be engaged connection between internal gear groove and the drive gear.
Optionally, an annular chute is formed around one side of the internal gear groove, the annular chute is matched with the circular slide block structure, and the annular chute is in sliding fit with the circular slide block.
Optionally, the material throwing device comprises a metal bucket frame, a measuring bucket body is arranged at the top of the metal bucket frame, and a clamping plate is further arranged on one side of the metal bucket frame.
Optionally, the joint board is matched with the joint groove structure, and the joint cooperation is between joint board and the joint groove.
In summary, the present utility model includes at least one of the following beneficial effects:
1. This scheme is through installing multidirectional stirring subassembly additional at supporting base top, this multidirectional stirring subassembly mainly comprises driving disk, the supporting seat, the (mixing) shaft, the stirring leaf, drive gear and circular slider, when agitator motor starts, the driving disk passes through motor drive synchronous rotation, the driving disk passes through the sliding fit structure of supporting seat with the (mixing) shaft and is connected, can drive two sets of (mixing) shafts and rotate, every (mixing) shaft top is equipped with drive gear and circular slider respectively, sliding fit through annular spout and circular slider, and the meshing of internal tooth wheel groove and drive gear is connected, ensure that two sets of (mixing) shafts not only follow the driving disk and rotate, can also the rotation, this kind of design utilizes multidirectional pivoted advantage, stirring efficiency and homogeneity to raw materials such as cement, sand, gypsum have effectively been promoted, thereby the high efficiency and the uniformity that dry powder mortar mixes have been improved.
2. According to the scheme, the clamping grooves are formed in the two sides of the top of the stirring barrel respectively, the clamping plates are additionally arranged on one side of the metal bucket frame, the clamping plates are matched with the clamping grooves through clamping, the metal bucket frame with the measuring bucket body arranged at the top is ensured to be firmly clamped on the two sides of the stirring barrel, the measuring bucket body can be conveniently detached, connected and maintained according to requirements, and therefore the flexibility and the practicability of the device are improved, and the device has higher adaptability in dry powder mortar stirring technology application.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are needed for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a multi-directional stirring assembly according to the present utility model;
FIG. 3 is a schematic diagram of a driving disk structure according to the present utility model;
fig. 4 is a schematic view of the structure of the feeder of the present utility model.
The device comprises a supporting base, a 2-directional stirring assembly, a 3-feeder, a 4-stirring barrel, a 5-observation window, a 6-clamping groove, a 7-feeding hole, an 8-stirring motor, a 9-driving disc, a 10-supporting seat, a 11-stirring shaft, a 12-stirring blade, a 13-transmission gear, a 14-circular sliding block, a 15-internal gear groove, a 16-annular sliding groove, a 17-metal bucket frame, a 18-measuring bucket body and a 19-clamping plate.
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 fig. 1 to 4, the embodiment of the utility model provides a dry powder mortar stirring device, which comprises a support base 1, wherein a multidirectional stirring assembly 2 is installed at the top of the support base 1, the two sides of the top of the multidirectional stirring assembly 2 are respectively connected with a feeder 3, the multidirectional stirring assembly 2 comprises a stirring barrel 4, observation windows 5 are arranged on the outer sides of the periphery of the stirring barrel 4, clamping grooves 6 are formed in the two sides of the top of the stirring barrel 4, a feeding port 7 is formed in one side, close to the clamping grooves 6, of the stirring barrel 4 in a penetrating way, a stirring motor 8 is connected to the bottom of the stirring barrel 4, a driving disc 9 is connected to the output end transmission of the stirring motor 8, a supporting seat 10 is respectively connected to the two sides of the top of the driving disc 9, when the stirring motor 8 additionally installed at the bottom of the stirring barrel 4 is powered on, the driving disc 9 in synchronous rotation, two groups of stirring shafts 11 can be driven to rotate at the top of the driving disc 9, through the structural design that the inner gear grooves 15 are meshed with a transmission gear 13, the two groups of stirring shafts 11 can be driven to rotate at the same time of cement, and the cement can be mixed in multiple directions by using the advantages of rotation of the two groups of stirring shafts, and the cement stirring shafts can be driven to rotate in multiple directions, and the cement stirring shafts can be mixed to rotate.
The stirring shafts 11 are sleeved at the tops of the two groups of supporting seats 10, the stirring shafts 11 are in sliding fit with the supporting seats 10, stirring blades 12 are arranged around the stirring shafts 11, a transmission gear 13 is connected to the tops of the stirring shafts 11, round sliding blocks 14 are further arranged at the tops of the transmission gears 13, the stirring shafts 11 are sleeved at the tops of the two groups of supporting seats 10 respectively, the stirring shafts 11 are in sliding fit with the supporting seats 10, the two groups of stirring shafts 11 are movably connected to two sides of the top of the driving disc 9, internal gear grooves 15 are formed in the inner side of the top of the stirring barrel 4, the internal gear grooves 15 are matched with the transmission gear 13 in structure, the internal gear grooves 15 are in meshed connection with the transmission gear 13, and the two groups of stirring shafts 11 can rotate while following the rotation of the driving disc 9 through the structural design of meshed connection between the internal gear grooves 15 and the transmission gear 13.
The annular chute 16 is formed around one side of the inner gear groove 15, the annular chute 16 is matched with the circular slide block 14 in structure, the annular chute 16 is in sliding fit with the circular slide block 14, through the sliding fit between the annular chute 16 and the circular slide block 14, the effect of sliding guide can be achieved on one end of the stirring shaft 11 which is rotationally regulated on two sides of the top of the driving disc 9, the feeder 3 comprises a metal bucket frame 17, a measuring bucket body 18 is arranged on the top of the metal bucket frame 17, a clamping plate 19 is further arranged on one side of the metal bucket frame 17, raw materials such as cement, sand and gypsum to be mixed can be measured and temporarily stored through the measuring bucket body 18 arranged on the top of the metal bucket frame 17, the clamping plate 19 is matched with the structure of the clamping groove 6, and through the structural design of the clamping fit between the clamping plate 19 and the clamping groove 6, the metal bucket frame 17 with the measuring bucket body 18 at the top is conveniently clamped and fixed on two sides of the top of the stirring barrel 4.
According to the technical scheme, the multidirectional stirring assembly 2 is additionally arranged at the top of the supporting base 1, the multidirectional stirring assembly 2 mainly comprises a driving disc 9, a supporting seat 10, stirring shafts 11, stirring blades 12, a transmission gear 13 and a round sliding block 14, when a stirring motor 8 additionally arranged at the bottom of the stirring barrel 4 is electrified and operated, the driving disc 9 which is in transmission connection with an output end can be driven to synchronously rotate, the driving disc 9 can also drive two groups of stirring shafts 11 to rotate at the top of the driving disc 9 through the structural design of sliding fit between the stirring shafts 11 and the supporting seat 10, and the rotating two groups of stirring shafts 11 are respectively additionally arranged at the top of the driving disc 9 through a transmission gear 13 and a round sliding block 14, and an inner gear groove 15 is in meshed connection with the transmission gear 13, so that the two groups of stirring shafts 11 can also rotate while rotating along with the driving disc 9, and the two groups of stirring shafts 11 can stir raw materials such as cement, sand, gypsum and the like efficiently, thereby improving the high efficiency and uniformity of dry powder mortar mixing processing.
According to the scheme, the clamping grooves 6 are formed in the two sides of the top of the stirring barrel 4 respectively, and the clamping plates 19 are additionally arranged on one side of the metal bucket frame 17, so that the clamping plates 19 are matched with the clamping grooves 6 in a clamping manner, the metal bucket frame 17 with the measuring bucket body 18 arranged at the top can be clamped and fixed on the two sides of the top of the stirring barrel 4, and the stirring barrel 4 can be used for carrying out dismounting connection and maintenance replacement operation on the measuring bucket body 18 according to the use condition.
It should be noted that the foregoing description is only a preferred embodiment of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it should be understood that modifications, equivalents, improvements and modifications to the technical solution described in the foregoing embodiments may occur to those skilled in the art, and all modifications, equivalents, and improvements are intended to be included within the spirit and principle of the present utility model.