Vertical hand-free dry powder mortar mixing device
Technical Field
The utility model relates to a dry powder mortar mixing arrangement technical field specifically is a vertical promotion dry powder mortar mixing arrangement of exempting from.
Background
The mortar is commonly used as cement mortar, mixed mortar, lime mortar and clay mortar, wherein the mortar is a bonding substance used for building bricks on a building and is formed by adding water into sand and cementing materials according to a certain proportion, and is also called as mortar.
When mortar is mixed, dry powder and other raw materials need to be mixed for use, but the current stirring device has the problems of uneven stirring or excessive adhesion of the inner wall during stirring, and the cost is wasted.
In order to solve the problems, a vertical hands-free dry powder mortar mixing device is provided.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a vertical promotion dry powder mortar mixing arrangement of exempting from sets up first hybrid chamber and second hybrid chamber, and the hourglass material mouth leaks the material in the rotation, falls into first hybrid chamber with the material after the second hybrid chamber carries out basic mixing and mixes once more, hugs closely scraping flitch of first hybrid chamber inner wall simultaneously and can strike off first hybrid chamber material, avoids the cost extravagant, and is convenient for clean to the problem in the above-mentioned background art has been solved.
In order to achieve the above object, the utility model provides a following technical scheme: a vertical hands-free dry powder mortar lifting mixing device comprises a supporting mechanism and a mixing mechanism, wherein the mixing mechanism is mounted at the upper end of the supporting mechanism, the supporting mechanism comprises a support, a feeding assembly, a motor, a belt and a rotating wheel, the feeding assembly is mounted at the upper end of the support, the motor is mounted at the lower end of the support, the belt is mounted at one side of the motor, the rotating wheel is mounted at the other side of the belt, the mixing mechanism is mounted at one side of the rotating wheel, and the mixing mechanism is also mounted at one side of the feeding assembly;
the mixing mechanism comprises a first mixing chamber, a second mixing chamber, a discharge port and a telescopic mechanism, the second mixing chamber is arranged in the first mixing chamber, the discharge port is arranged at the lower end of the first mixing chamber, and the telescopic mechanism is arranged on two sides of the discharge port.
Preferably, the feeding assembly comprises a feeding cylinder, a feeding hopper, a mounting opening and a mounting groove, the feeding hopper is mounted at the upper end of the feeding cylinder, the mounting opening is mounted on one side of the feeding cylinder, and the mounting groove is formed in the upper end of the mounting opening.
Preferably, the second mixing chamber includes the mixing drum, the drain hole, scrapes flitch, rotatory quick-witted case and rabbling mechanism, and a plurality of drain hole has been seted up to the mixing drum upper end, and the mixing drum all installs all around and scrapes the flitch, and rotatory quick-witted case is installed to mixing drum one side, and rabbling mechanism is installed in mixing drum inside to rotatory quick-witted case one side.
Preferably, telescopic machanism includes flexible chamber, expansion plate and spring, and the expansion plate is installed to flexible chamber one side, and a plurality of spring is installed to expansion plate one side, and the spring mounting is inside flexible intracavity.
Preferably, the lower ends of the two side expansion plates are distributed in a V shape and movably arranged at the upper end of the discharge hole.
Preferably, the rotating case is internally provided with a first connecting rod, a first rotating gear, a second rotating gear, a third rotating gear, a fourth rotating gear and a second connecting rod, the first rotating gear is installed on one side of the first connecting rod, the second rotating gear is installed on one side of the first rotating gear in a meshed mode, the third rotating gear is installed on one side of the second rotating gear in a meshed mode, the fourth rotating gear is installed on one side of the third rotating gear in a meshed mode, a second connecting rod is fixedly installed on one side of the fourth rotating gear and connected with the mixing cylinder, and the first connecting rod is movably installed inside the second connecting rod.
Preferably, the stirring mechanism comprises a rotating rod and a stirring rod, and the stirring rod is installed around the rotating rod.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model provides a vertical hands-free dry powder mortar mixing arrangement that rises, when using the mixing mechanism, the raw materials gets into from the feed cylinder, fall into inside the second hybrid chamber from the installing port, the motor drives the swiveling wheel and rotates, the swiveling wheel drives the head rod and rotates, the head rod drives first rotating gear and rotates, first rotating gear drives second rotating gear and rotates, second rotating gear drives third rotating gear and rotates, then fourth rotating gear drives the hybrid chamber and rotates, the mouth leaks when rotatory, it mixes once more to fall into first hybrid chamber after the material mixes in the second hybrid chamber basis, hug closely the flitch of scraping of first hybrid chamber inner wall simultaneously and can strike off first hybrid chamber material, avoid the cost waste, and be convenient for clean.
2. The utility model provides a vertical hands-free dry powder mortar mixing arrangement that rises when the mixing drum rotates to leak the material, the head rod drives the rotary rod and rotates, and the puddler that drives the upper end rotates, and the mixing drum carries out the counter rotation with rabbling mechanism under the drive of rotatory quick-witted case, can stir the mixture with the inside material of mixing drum when mixing, strikes off the mediation to the inside of leaking material mouth, avoids long-term use to leak the material mouth and blocks up, convenient to use.
3. The utility model provides a vertical hands-free dry powder mortar mixing arrangement that rises, when the dry powder mortar that finishes mixing carries out the ejection of compact at the discharge gate, because the weight of dry powder mortar self pushes down, the expansion plate of V-arrangement is opened, leak the material, when scraping the flitch and scraping the material and play one side, the expansion plate closes under the thrust of spring, treat that the next flitch of scraping is opened once more when pushing away the material to the discharge gate upper end and carry out the ejection of compact, can realize the ejection of compact regularly, and keep sealed with mixing mechanism when not using, can not cause inside material to pollute, high durability and convenient use.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic structural view of the feeding assembly of the present invention;
FIG. 3 is a schematic cross-sectional structure diagram of the mixing mechanism of the present invention;
fig. 4 is an enlarged schematic view of the structure at a of the present invention;
fig. 5 is a schematic structural view of a second mixing chamber of the present invention;
fig. 6 is a schematic view of the internal structure of the rotary case of the present invention;
fig. 7 is a schematic structural view of the stirring mechanism of the present invention.
In the figure: 1. a support mechanism; 11. a support; 12. a feed assembly; 121. a feeding cylinder; 122. a feed hopper; 123. an installation port; 124. mounting grooves; 13. a motor; 14. a belt; 15. a rotating wheel; 2. a mixing mechanism; 21. a first mixing chamber; 22. a second mixing chamber; 221. a mixing drum; 222. a material leakage port; 223. a scraping plate; 224. rotating the case; 2241. a first connecting rod; 2242. a first rotating gear; 2243. a second rotating gear; 2244. a third rotating gear; 2245. a fourth rotating gear; 2246. a second connecting rod; 225. a stirring mechanism; 2251. rotating the rod; 2252. a stirring rod; 23. a discharge port; 24. a telescoping mechanism; 241. a telescoping chamber; 242. a retractable plate; 243. a spring.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3 and 5-6, a vertical lifting-free dry powder mortar mixing device comprises a supporting mechanism 1 and a mixing mechanism 2, the mixing mechanism 2 is mounted at the upper end of the supporting mechanism 1, the supporting mechanism 1 comprises a support 11, a feeding assembly 12, a motor 13, a belt 14 and a rotating wheel 15, the feeding assembly 12 is mounted at the upper end of the support 11, the feeding assembly 12 comprises a feeding cylinder 121, a feeding hopper 122, a mounting opening 123 and a mounting groove 124, the feeding hopper 122 is mounted at the upper end of the feeding cylinder 121, the mounting opening 123 is mounted at one side of the feeding cylinder 121, the mounting groove 124 is formed at the upper end of the mounting opening 123, the motor 13 is mounted at the lower end of the support 11, the belt 14 is mounted at one side of the motor 13, the rotating wheel 15 is mounted at the other side of the belt 14, the mixing mechanism 2 is mounted at one side of the rotating wheel 15, the mixing mechanism 2 is also mounted at one side of the feeding assembly 12, and the mixing mechanism 2 comprises a first mixing cavity 21, a second mixing cavity 15, a third mixing cavity and a third mixing cavity, Second mixing chamber 22, discharge port 23 and telescoping mechanism 24, second mixing chamber 22 is installed inside first mixing chamber 21, second mixing chamber 22 includes mixing drum 221, material-leaking port 222, scraping plate 223, rotating case 224 and stirring mechanism 225, a plurality of material-leaking ports 222 are opened at the upper end of mixing drum 221, scraping plate 223 is installed around mixing drum 221, rotating case 224 is installed at one side of mixing drum 221, rotating case 224 includes first connecting rod 2241, first rotating gear 2242, second rotating gear 2243, third rotating gear 2244, fourth rotating gear 2245 and second connecting rod 2246, first rotating gear 2242 is installed at one side of first connecting rod 2241, second rotating gear 2243 is installed at one side of first rotating gear 2242 in an engaged manner, third rotating gear 2244 is installed at one side of second rotating gear 2243 in an engaged manner, fourth rotating gear 2245 is installed at one side of third rotating gear 2244 in an engaged manner, second connecting rod 2246 is fixedly installed at one side of fourth rotating gear 2245, second connecting rod 2246 is connected to mixing cylinder 221, and first connecting rod 2241 is movably installed inside second connecting rod 2246, stirring mechanism 225 is installed on one side of rotary case 224, stirring mechanism 225 is installed inside mixing cylinder 221, discharge port 23 is installed at the lower end of first mixing chamber 21, and telescopic mechanisms 24 are installed on both sides of discharge port 23, when mixing mechanism 2 is used, raw material enters from feeding cylinder 121 and falls into second mixing chamber 22 from installation port 123, motor 13 drives rotary wheel 15 to rotate, rotary wheel 15 drives first connecting rod 2241 to rotate, first connecting rod 2241 drives first rotary gear 2242 to rotate, first rotary gear 2242 drives second rotary gear 2243 to rotate, second rotary gear 2243 drives third rotary gear 2244 to rotate, further fourth rotary gear 2245 drives mixing cylinder 221 to rotate, when it rotates, material leakage is performed through material leakage port 222, the materials fall into the first mixing chamber 21 after being mixed on the basis of the second mixing chamber 22 to be mixed again, and the scraping plate 223 tightly attached to the inner wall of the first mixing chamber 21 can scrape the materials of the first mixing chamber 21, so that the cost waste is avoided, and the cleaning is convenient.
Referring to fig. 5-7, the stirring mechanism 225 includes a rotating rod 2251 and a stirring rod 2252, the stirring rod 2252 is installed around the rotating rod 2251, when the mixing cylinder 221 rotates to leak materials, the first connecting rod 2241 drives the rotating rod 2251 to rotate, the stirring rod 2252 at the upper end is driven to rotate, the mixing cylinder 221 and the stirring mechanism 225 rotate in opposite directions under the driving of the rotating case 224, so as to stir and mix the materials inside the mixing cylinder 221, and scrape and dredge the inside of the material leakage opening 222, thereby avoiding the blockage of the material leakage opening 222 due to long-term use, and facilitating use.
Referring to fig. 3-4, the telescopic mechanism 24 includes a telescopic cavity 241, telescopic plates 242 and springs 243, the telescopic plates 242 are installed on one side of the telescopic cavity 241, the lower ends of the telescopic plates 242 on two sides are distributed in a V-shape and are movably installed on the upper end of the discharge port 23, a plurality of springs 243 are installed on one side of the telescopic plates 242, the springs 243 are installed inside the telescopic cavity 241, when the mixed dry-mixed mortar is discharged from the discharge port 23, the V-shaped telescopic plates 242 are opened to leak the mortar due to the weight of the dry-mixed mortar, when the scraper 223 scrapes the mortar to one side, the telescopic plates 242 are closed under the thrust of the springs 243, when the next scraper 223 pushes the mortar to the upper end of the discharge port 23, the mortar is opened again to discharge the mortar, timing discharge can be achieved, the mixing mechanism 2 is kept sealed when not in use, no pollution to the internal materials is caused, and the use is convenient.
In summary, the following steps: the utility model provides a vertical lifting-free dry powder mortar mixing device, when using the mixing mechanism 2, the raw material enters from the feeding cylinder 121, falls into the interior of the second mixing chamber 22 from the mounting port 123, the motor 13 drives the rotary wheel 15 to rotate, the rotary wheel 15 drives the first connecting rod 2241 to rotate, the first connecting rod 2241 drives the first rotary gear 2242 to rotate, the first rotary gear 2242 drives the second rotary gear 2243 to rotate, the second rotary gear 2243 drives the third rotary gear 2244 to rotate, and the fourth rotary gear 2245 drives the mixing cylinder 221 to rotate, the material leakage port 222 performs material leakage while rotating, the material falls into the first mixing chamber 21 to be mixed again after basic mixing is performed on the material in the second mixing chamber 22, the scraping plate 223 tightly attached to the inner wall of the first mixing chamber 21 can scrape the material in the first mixing chamber 21, thereby avoiding cost waste and being convenient for cleaning, when the mixing cylinder 221 rotates to leak materials, the first connecting rod 2241 drives the rotating rod 2251 to rotate, the stirring rod 2252 at the upper end is driven to rotate, the mixing cylinder 221 and the stirring mechanism 225 rotate in opposite directions under the driving of the rotating case 224, materials in the mixing cylinder 221 can be stirred and mixed, the interior of the material leaking port 222 is scraped and dredged, the blockage of the material leaking port 222 due to long-term use is avoided, the use is convenient, when the mixed dry powder mortar is discharged from the discharge port 23, due to the weight of the dry powder mortar, the V-shaped expansion plate 242 is opened to leak materials, when the material scraping plate 223 scrapes the materials to one side, the expansion plate 242 is closed under the thrust of the spring 243, when the next material scraping plate 223 pushes the materials to the upper end of the discharge port 23, the discharging is opened again to discharge materials, the timed discharging can be realized, and the mixing mechanism 2 is kept sealed when not in use, can not cause the pollution of internal materials and is convenient to use.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.