CN213829690U - Processing compound incubation mixer for exterior sheathing - Google Patents
Processing compound incubation mixer for exterior sheathing Download PDFInfo
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- CN213829690U CN213829690U CN202022735060.1U CN202022735060U CN213829690U CN 213829690 U CN213829690 U CN 213829690U CN 202022735060 U CN202022735060 U CN 202022735060U CN 213829690 U CN213829690 U CN 213829690U
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Abstract
The utility model relates to a processing mixer for compound incubation exterior sheathing belongs to compound incubation exterior sheathing processing equipment technical field, and it includes landing leg and agitator, the feed inlet has been seted up to the agitator upper end, the agitator upper end is equipped with the rabbling mechanism that is located the agitator, agitator one side is equipped with the mounting bracket, the mounting bracket upper end is equipped with the hybrid bucket, the hybrid bucket lower extreme is equipped with the defeated material machine of spiral, the discharge gate of the defeated material machine of spiral is just right with the feed inlet of agitator, the defeated material machine outside intercommunication of spiral has the inlet tube, the inlet tube is equipped with the water intaking valve, be equipped with the mixing mechanism in the hybrid bucket. This application has the effect that improves the mixing stirring efficiency to the mortar raw materials.
Description
Technical Field
The application relates to the technical field of composite heat-insulation outer formwork processing equipment, in particular to a stirrer for processing a composite heat-insulation outer formwork.
Background
The existing composite heat-insulating external template is made of an additive, cement, sand and mucilage which are used as bonding materials; the glass fiber mesh cloth is a reinforcing material; wood fiber and fly ash are used as fillers; the polyethylene foam board is a heat-insulating material. The product is produced in a factory through reasonable material proportion and scientific production process. Can be used for newly building buildings, connecting buildings, reforming old buildings, reforming flat roofs into sloping roofs, villas, factory buildings and rural buildings; the adhesive is commonly called mortar, and a mixer is generally used for mixing the adhesive.
A related chinese patent publication No. CN208020493U discloses a mortar mixer, which includes a mixing tank for holding raw materials for preparing mortar, a cover plate located above the mixing tank and in sealing connection with an upper opening of the mixing tank, a mixer located on the cover plate, and support legs fixedly connected to the bottom of the mixing tank; the cover plate is provided with a circular track, the stirrer is connected with the track in a matching way, and the lower end of the stirrer extends into the stirring barrel.
In view of the above-mentioned related technologies, the inventor thinks that when the above-mentioned mixer is used to mix mortar, the raw materials are respectively added into the mortar barrel, and then water is added to mix the raw materials, and the raw materials are stacked one on another, and are distinct layer by layer, and are not easy to mix evenly, thereby resulting in low efficiency of mixing and stirring the raw materials.
SUMMERY OF THE UTILITY MODEL
In order to improve the stirring mixing efficiency to the raw materials, this application provides a processing compound incubation mixer for exterior sheathing.
The application provides a processing composite heat preservation mixer for exterior sheathing adopts following technical scheme:
the utility model provides a processing compound incubation mixer for exterior sheathing, includes landing leg and agitator, the feed inlet has been seted up to the agitator upper end, the agitator upper end is equipped with the rabbling mechanism that is located the agitator, agitator one side is equipped with the mounting bracket, the mounting bracket upper end is equipped with the blending hopper, the blending hopper lower extreme is equipped with the defeated material machine of spiral, the discharge gate of the defeated material machine of spiral is just right with the feed inlet of agitator, the defeated material machine outside intercommunication of spiral has the inlet tube, the inlet tube is equipped with the water intaking valve, be equipped with the mixing mechanism in the blending hopper.
Through adopting above-mentioned technical scheme, when the mortar needs to be prepared, add the mortar raw materials into the mixing tank according to the proportion earlier, start the mixing mechanism in the mixing tank, the mixing mechanism can carry out comparatively abundant mixture to the mortar raw materials in the mixing tank, the mortar raw materials is after preliminary mixing in the mixing tank, can restart the defeated material machine of spiral, open the water intaking valve simultaneously, the defeated material machine of spiral can discharge the mortar that has mixed water to the mixing tank in, start the rabbling mechanism, the rabbling mechanism can carry out intensive mixing to the mortar raw materials that have mixed water, can premix the mortar raw materials through setting up mixing tank and mixing mechanism, and then when making the mortar raw materials get into the mixing tank, the flash mixed of being convenient for is even, the stirring mixing efficiency of mortar raw materials has been improved.
Optionally, the stirring mechanism is including setting up the support in the agitator upper end, the support is located agitator upper end department and is equipped with vertical agitator motor, agitator motor's output shaft even has driving pulley, the support middle part is rotated and is connected with driven pulley, be equipped with the belt between driving pulley and the driven pulley, the driven pulley lower extreme is equipped with vertical (mixing) shaft, the part that the (mixing) shaft is located the agitator is equipped with the stirring rake.
Through adopting above-mentioned technical scheme, when needing to stir the mortar raw materials in the agitator, can play agitator motor, agitator motor's the rotatory drive driving pulley that drives of output shaft is rotatory, and then driving pulley passes through the belt and drives driven pulley rotatory, and then driven pulley drives the (mixing) shaft rotatory, and then rotates under the drive of the stirring rake re-mixing shaft that links to each other with the (mixing) shaft to the stirring rake can stir the mortar raw materials in the agitator.
Optionally, a second stirring mechanism is arranged outside the stirring mechanism, the second stirring mechanism comprises a rotating ring which is rotatably connected to the upper end of the stirring barrel, a driving mechanism which drives the rotating ring to rotate is arranged outside the rotating ring, a plurality of horizontal connecting rods are arranged on the inner side of the rotating ring, and a vertical stirring rod is arranged at one end, far away from the rotating ring, of each connecting rod.
Through adopting above-mentioned technical scheme, when stirring the mortar raw materials in the agitator, actuating mechanism can start, actuating mechanism can drive the swivel becket and rotate, and then the connecting rod that links to each other with the swivel becket can rotate under the drive of swivel becket, the puddler that links to each other with the connecting rod equally can rotate in the agitator, and then the puddler can stir the mortar raw materials in the agitator, the direction of rotation that makes the puddler is opposite with the direction of rotation of stirring rake, can improve the stirring effect to the mortar raw materials.
Optionally, be equipped with a plurality of mixed flow poles on the puddler, mixed flow pole slope and puddler setting, mixed flow pole passes through the bolt with the puddler and can dismantle the connection.
Through adopting above-mentioned technical scheme, set up mixed flow pole and mixed flow pole slope in the puddler setting on the puddler, the mixed flow pole can further improve the mixed effect to the mortar, and the mixed flow pole passes through the bolt with the puddler and can dismantle the connection, is convenient for pull down the mixed flow pole and changes or maintain the mixed flow pole.
Optionally, the driving mechanism comprises a supporting frame arranged at the upper end of the stirring barrel, a vertical rotating motor is arranged at the upper end of the supporting frame, a driving gear is arranged on an output shaft of the rotating motor, a plurality of driven sawteeth are evenly arranged on the outer side of the rotating ring, and the driving gear is meshed with the driven sawteeth.
Through adopting above-mentioned technical scheme, when needing the drive swivel becket to rotate, can start the rotating electrical machines who is located the support frame upper end, the output shaft rotation of rotating electrical machines can drive the driving gear and rotate, and then can rotate under the drive of driving gear with the driven sawtooth of driving gear meshing to the swivel becket that links to each other with driven sawtooth can rotate.
Optionally, the mixing mechanism is including setting up the driving motor in the blending hopper outside, the part that driving motor's output shaft was worn to establish in the blending hopper is equipped with the horizontally dwang, be equipped with a plurality of poker bars on the dwang.
Through adopting above-mentioned technical scheme, when needing to mix the stirring to the raw materials in the blending barrel, can start driving motor, driving motor's output shaft rotation can drive the dwang and rotate, and then the poker rod that links to each other with the dwang can rotate in the blending barrel under driving motor's drive, and the poker rod rotation can be stirred the mixture to the raw materials in the blending barrel.
Optionally, an upper cover is hinged to the upper end of the mixing barrel, the upper cover is communicated with an air pressure balance pipe, and a filter cloth is arranged at one end, far away from the upper cover, of the air pressure balance pipe.
Through adopting above-mentioned technical scheme, when needing the feeding in to the blending hopper, can open the upper cover, can close the upper cover after the feeding, when the spiral feeder of blending hopper lower extreme carries out the ejection of compact to the raw materials in the blending hopper, atmospheric pressure balance pipe can be balanced the atmospheric pressure in the blending hopper, the reducible problem of scattering the dust from atmospheric pressure balance pipe of filter cloth.
Optionally, a discharge outlet is formed at least at the lower end of the stirring barrel, and a striker plate matched with the discharge outlet is rotatably connected to the lower end of the stirring barrel.
Through adopting above-mentioned technical scheme, when needing to discharge the mortar in the agitator, rotatable striker plate makes the bin outlet expose, and then can realize discharging the mortar, arrange the material and after finishing, rotatable striker plate again, make the striker plate expose the bin outlet can.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the mortar raw materials can be premixed by arranging the mixing barrel and the mixing mechanism, so that when the mortar raw materials enter the mixing barrel, the mortar raw materials are conveniently and uniformly mixed, and the stirring and mixing efficiency of the mortar raw materials is improved;
2. through set up second rabbling mechanism in the agitator, second rabbling mechanism improves the stirring effect to the mortar in the agitator.
Drawings
FIG. 1 is a schematic structural view of a blender for processing a composite heat-insulating external form according to the present application;
FIG. 2 is a schematic view of the embodiment of the present application highlighting the stirring mechanism and the second stirring mechanism;
FIG. 3 is a schematic structural view of a protruded striker plate in the embodiment of the present application;
FIG. 4 is a schematic view showing the structure of the mixing mechanism in the embodiment of the present application.
Description of reference numerals: 1. a support leg; 11. a stirring barrel; 12. a stirring mechanism; 13. a support; 14. a stirring motor; 2. a drive pulley; 21. a driven pulley; 22. a belt; 23. a stirring shaft; 24. a stirring paddle; 3. a second stirring mechanism; 31. a rotating ring; 32. a connecting rod; 33. a stirring rod; 34. a flow mixing rod; 4. a drive mechanism; 41. a support frame; 42. a rotating electric machine; 43. a driving gear; 44. driven saw teeth; 45. a striker plate; 5. a premixing mechanism; 51. a mounting frame; 52. a mixing barrel; 53. a spiral material conveyer; 54. a water inlet pipe; 55. a water inlet valve; 6. a mixing mechanism; 63. a drive motor; 64. rotating the rod; 65. a poke rod; 66. an upper cover; 7. a pressure balance tube; 8. and (4) a filter cloth.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses processing mixer for compound incubation exterior sheathing.
Referring to fig. 1, the mixer for processing the composite heat-insulating external template comprises supporting legs 1, a mixing barrel 11, a mixing mechanism 12, a second mixing mechanism 3 and a premixing mechanism 65. The feed inlet has been seted up to 11 upper ends of agitator, and landing leg 1 sets up at 11 lower extremes of agitator, and landing leg 1 can play the supporting role to 11 of agitator. The stirring mechanism 12 and the second stirring mechanism 3 are both arranged on the stirring barrel 11, and the stirring mechanism 12 and the second stirring mechanism 3 can stir the mortar in the stirring barrel 11. The mixing directions of the mixing mechanism 12 and the second mixing mechanism 3 are opposite, so that the mixing effect of the raw materials in the mixing tank 11 can be improved, the premixing mechanism 65 is arranged on one side of the mixing tank 11, the mortar raw materials can be premixed by the premixing mechanism 65, and the mixing and mixing efficiency of the mortar raw materials is further improved.
Referring to fig. 1 and 2, the stirring mechanism 12 includes a support 13, a stirring motor 14, a driving pulley 22, a driven pulley 21, a belt 22, a stirring shaft 23 and a stirring paddle 24, the support 13 is disposed at the upper end of the stirring barrel 11, the stirring motor 14 is vertically disposed at the upper end of the stirring barrel 11, the driving pulley 22 is connected with an output shaft of the stirring motor 14, the driven pulley 21 is rotatably mounted at the middle of the upper end of the support 13, the belt 22 is disposed between the driving pulley 22 and the driven pulley 21, the stirring shaft 23 is vertically disposed at the lower end of the driven pulley 21, and the stirring paddle 24 is disposed at a position where the stirring shaft 23 is located in the stirring barrel 11. The stirring motor 14 is started, the stirring motor 14 can drive the stirring shaft 23 to rotate, the stirring paddle 24 is driven to rotate, and the stirring paddle 24 can stir the mortar raw materials in the stirring barrel 11 in a rotating mode.
Referring to fig. 1 and 2, the second stirring mechanism 3 includes a rotating ring 31, a connecting rod 32, a stirring rod 33, a mixed flow rod 34 and a driving mechanism 4, the driving mechanism 4 is disposed at the upper end of the stirring barrel 11, the driving mechanism 4 can drive the rotating ring 31 to rotate, the connecting rod 32 is disposed inside the rotating ring 31, the stirring rod 33 is disposed at one end of the connecting rod 32 far away from the rotating ring 31, the stirring rod 33 is disposed in the stirring barrel 11, the mixed flow rod 34 is obliquely disposed on the stirring rod 33, and the stirring rod 33 and the mixed flow rod 34 are detachably connected through bolts. When the driving mechanism 4 drives the rotating ring 31 to rotate, the connecting rod 32, the stirring rod 33 and the mixed flow rod 34 connected with the rotating ring 31 rotate, and the stirring rod 33 and the mixed flow rod 34 can stir and mix mortar in the stirring barrel 11.
Referring to fig. 1 and 2, the driving mechanism 4 includes a supporting frame 41, a rotating electrical machine 42, a driving gear 43 and a plurality of driven saw teeth 44, the supporting frame 41 is disposed at the upper end of the stirring barrel 11, the rotating electrical machine 42 is vertically disposed at the upper end of the supporting plate, an output shaft of the rotating electrical machine 42 is connected with the driving gear 43, the driven saw teeth 44 are uniformly disposed at the outer side of the stirring barrel 11, and the driven saw teeth 44 are meshed with the driving gear 43. When the rotating ring 31 needs to be driven to rotate, the driving motor 63 can be started, and then the driving motor 63 can raise the driving gear 43 and the driven saw-tooth 44 to drive the rotating ring 31 to rotate.
Referring to fig. 2 and 3, two discharge outlets have been seted up to agitator 11 lower extreme, and 11 lower extremes of agitator rotate and are connected with striker plate 45, and striker plate 45 is rotatory to discharge outlet department can block the discharge outlet, when needing to discharge the material in agitator 11, rotatable striker plate 45 exposes the discharge outlet, and then the mortar in accessible discharge outlet is with agitator 11 is discharged.
Referring to fig. 1 and 4, the premixing mechanism 65 includes a mounting frame 51, a mixing barrel 52, a spiral conveyor 53 and a mixing mechanism 6, the mounting frame 51 is disposed on one side of the mixing barrel 11, the mixing barrel 52 is disposed on the upper end of the mounting frame 51, the lower end of the mixing barrel 52 is communicated with the spiral conveyor 53, a discharge port is disposed at one end of the spiral conveyor 53 far away from the mixing barrel 52, the discharge port is opposite to a feed port of the mixing barrel 11, the mixing mechanism 6 is disposed in the mixing barrel 52, the mixing mechanism 6 can stir and premix raw materials in the mixing barrel 52, and after premixing of the raw materials, the spiral conveyor 53 can be started to discharge the raw materials into the mixing barrel 11. The outer side of the spiral delivery mechanism 53 is communicated with a water inlet pipe 54, the water inlet pipe 54 is provided with a water inlet valve 55, when the spiral delivery mechanism 53 is started to feed materials into the stirring barrel 11, the water inlet valve 55 can be opened simultaneously, and then the raw materials and the water can be mixed together.
Referring to fig. 1 and 4, the mixing mechanism 6 includes a driving motor 63, a rotating rod 64 and a plurality of poking rods 65, the driving motor 63 is horizontally disposed outside the mixing barrel 52, the rotating rod 64 is connected to an output shaft of the driving motor 63, and the poking rods 65 are uniformly disposed on the upper end of the rotating rod 64. The driving motor 63 is started, and the output shaft of the driving motor 63 rotates to drive the rotating rod 64 and the poke rod 65 to rotate, so that the raw materials in the mixing barrel 52 can be premixed and stirred.
Referring to fig. 1 and 4, the upper end of the mixing barrel 52 is hinged with an upper cover 66, when raw materials need to be added into the mixing barrel 52, the upper cover 66 can be opened, and after the feeding is finished, the upper cover 66 can be closed. The upper cover 66 is communicated with an air pressure balance pipe 7, the upper end of the air pressure balance pipe 7 is provided with a filter cloth 8, the air pressure balance pipe 7 can balance the air pressure in the mixing barrel 52, and the discharging at the lower end of the mixing barrel 52 is convenient.
The implementation principle of the stirrer for processing the composite heat-insulation external template in the embodiment of the application is as follows: when mortar needs to be prepared, mortar raw materials are added into the mixing barrel 52 according to a ratio, the driving motor 63 is started, the driving motor 63 can drive the rotating rod 64 and the poke rod 65 to rotate, so that the mortar raw materials in the mixing barrel 52 can be sufficiently mixed, after the mortar raw materials are preliminarily mixed in the mixing barrel 52, the spiral material conveyor 53 can be restarted, the water inlet valve 55 is opened, the spiral material conveyor 53 can discharge the mortar mixed with water into the stirring barrel 11, the rotating motor 42 is started, and the stirring shaft 23 and the stirring paddle 24 can be driven by the rotating motor 42 to rotate in the stirring barrel 11 to sufficiently mix the raw materials and the water.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides a processing compound incubation mixer for exterior sheathing, includes landing leg (1) and agitator (11), its characterized in that: the feed inlet has been seted up to agitator (11) upper end, agitator (11) upper end is equipped with rabbling mechanism (12) that are located agitator (11), agitator (11) one side is equipped with mounting bracket (51), mounting bracket (51) upper end is equipped with blending hopper (52), blending hopper (52) lower extreme is equipped with spiral feeder (53), the discharge gate of spiral feeder (53) is just right with the feed inlet of agitator (11), spiral feeder (53) outside intercommunication has inlet tube (54), inlet tube (54) are equipped with water intaking valve (55), be equipped with mixing mechanism (6) in blending hopper (52).
2. The stirring machine for processing the composite heat-insulation external template as claimed in claim 1, wherein: rabbling mechanism (12) are including setting up support (13) in agitator (11) upper end, support (13) are located agitator (11) upper end department and are equipped with vertical agitator motor (14), the output shaft of agitator motor (14) even has driving pulley (2), support (13) middle part is rotated and is connected with driven pulley (21), be equipped with belt (22) between driving pulley (2) and driven pulley (21), driven pulley (21) lower extreme is equipped with vertical (mixing) shaft (23), the part that (mixing) shaft (23) are located agitator (11) is equipped with stirring rake (24).
3. The stirring machine for processing the composite heat-insulation external template as claimed in claim 2, wherein: rabbling mechanism (12) outside is equipped with second rabbling mechanism (3), second rabbling mechanism (3) are including rotating swivel becket (31) of connecting in agitator (11) upper end, swivel becket (31) outside is equipped with drive swivel becket (31) rotatory actuating mechanism (4), swivel becket (31) inboard is equipped with a plurality of horizontally connecting rods (32), the one end that swivel becket (31) was kept away from in connecting rod (32) is equipped with vertical puddler (33).
4. The stirring machine for processing the composite heat-insulation external template as claimed in claim 3, wherein: be equipped with a plurality of mixed flow pole (34) on puddler (33), mixed flow pole (34) slope sets up with puddler (33), mixed flow pole (34) pass through the bolt with puddler (33) and can dismantle the connection.
5. The stirring machine for processing the composite heat-insulation external template as claimed in claim 3, wherein: actuating mechanism (4) are including setting up support frame (41) in agitator (11) upper end, support frame (41) upper end is equipped with vertical rotating electrical machines (42), the output shaft of rotating electrical machines (42) is equipped with driving gear (43), the swivel becket (31) outside evenly is equipped with a plurality of driven sawtooth (44), driving gear (43) and driven sawtooth (44) mesh mutually.
6. The stirring machine for processing the composite heat-insulation external template as claimed in claim 1, wherein: mixing mechanism (6) is including setting up driving motor (63) in mixing bucket (52) outside, the part that the output shaft of driving motor (63) was worn to establish in mixing bucket (52) is equipped with horizontally dwang (64), be equipped with a plurality of poker rods (65) on dwang (64).
7. The stirring machine for processing the composite heat-insulation external template as claimed in claim 1, wherein: the upper end of the mixing barrel (52) is hinged with an upper cover (66), the upper cover (66) is communicated with an air pressure balance pipe (7), and one end, away from the upper cover (66), of the air pressure balance pipe (7) is provided with filter cloth (8).
8. The stirring machine for processing the composite heat-insulation external template as claimed in claim 1, wherein: at least one discharge opening is formed in the lower end of the stirring barrel (11), and a material baffle plate (45) matched with the discharge opening is rotatably connected to the lower end of the stirring barrel (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202022735060.1U CN213829690U (en) | 2020-11-23 | 2020-11-23 | Processing compound incubation mixer for exterior sheathing |
Applications Claiming Priority (1)
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CN202022735060.1U CN213829690U (en) | 2020-11-23 | 2020-11-23 | Processing compound incubation mixer for exterior sheathing |
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CN213829690U true CN213829690U (en) | 2021-07-30 |
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CN202022735060.1U Active CN213829690U (en) | 2020-11-23 | 2020-11-23 | Processing compound incubation mixer for exterior sheathing |
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