Mixing mechanism and horizontal spiral ribbon mixing device
Technical Field
The utility model relates to the technical field of spirulina tablet production, in particular to a mixing mechanism and a horizontal type ribbon mixing device.
Background
The spirulina tablet is a health-care product, and is mainly used for supplementing nutrition and assisting in treating certain symptoms. The spirulina tablet contains spirulina powder as main component, and has effects of invigorating qi, nourishing blood, eliminating phlegm, and lowering turbid pathogen. The spirulina tablet is produced by mixing various raw materials in the production process, and a horizontal ribbon mixer is needed. The horizontal ribbon mixer is a device for mixing powdery materials, and is widely applied to batch mixing of lithium battery materials, dry powder mortar, putty powder and stirring of pasty, sticky or high-specific-gravity materials. The double-layer spiral blades are arranged on the transmission main shaft, the inner spiral conveys materials to the outside, the outer spiral gathers the materials to the inside, and the efficient convection motion of feeding the spirulina powder is reduced, so that the materials are uniformly mixed in a short time.
When the existing horizontal spiral ribbon mixing device is used for mixing materials in the mixing tank, the discharge hole at the bottom of the mixing tank is positioned at the bottom of the mixing tank, so that the raw materials after being mixed are accumulated on two sides of the inside of the mixing tank when the horizontal spiral ribbon mixing device is used for discharging, the raw materials are wasted, and the mixing efficiency is reduced.
Disclosure of utility model
The utility model aims to provide a mixing mechanism and a horizontal ribbon mixing device, which are used for solving the problems that when the existing horizontal ribbon mixing device is used for mixing materials in a mixing tank, a discharge hole at the bottom of the mixing tank is positioned at the bottom of the mixing tank, so that mixed raw materials are accumulated on two sides in the mixing tank when the horizontal ribbon mixing device is used for discharging, waste of raw materials is caused, and the mixing efficiency is reduced.
In order to achieve the purpose, the utility model provides the following technical scheme that the mixing mechanism is arranged in a horizontal spiral ribbon mixing device and comprises a stirring roller:
The stirring roller is arranged in the horizontal spiral ribbon mixing device, one end side surface of the stirring roller is provided with a circle of conical teeth a, the mixing part is arranged outside the stirring roller, the mixing part is provided with a sleeve a which is rotationally nested outside the stirring roller, one end of the sleeve a is provided with a circle of conical teeth b, the surface of the sleeve a is sleeved with a transmission case, the inside of the transmission case is rotationally provided with transmission teeth, the transmission teeth are connected with the conical teeth a in a meshed manner, the transmission teeth are connected with the conical teeth b in a meshed manner, and the stirring roller rotationally drives the transmission teeth to rotate so as to drive the sleeve a to rotate.
Through adopting above-mentioned technical scheme, can drive the transmission tooth rotation through the stirring roller when rotatory for rotatory transmission tooth can drive sleeve pipe a and rotate together, and sleeve pipe a's rotation direction is opposite with the stirring roller.
Preferably, the stirring roller is further provided with a plurality of supporting rods arranged on the side face of the stirring roller, one end, far away from the stirring roller, of each supporting rod is provided with a spiral sheet, two spiral sheets are arranged, and the two spiral sheets are in a central rotation symmetrical structure around the rotation axis of the stirring roller.
Through adopting above-mentioned technical scheme, can drive two spiral slices around the stirring roller rotation through the rotation of stirring roller.
Preferably, the mixing part further has a rotating groove formed in the sleeve a, the stirring roller transversely penetrates through the rotating groove and is rotationally connected with the sleeve a, and the rotation axis of the sleeve a is overlapped with the rotation axis of the stirring roller.
By adopting the technical scheme, the sleeve a can rotate outside the stirring roller along the stirring roller.
Preferably, the mixing part further has two mixing pieces arranged on the side surface of the sleeve a, and the two mixing pieces are in a central rotation symmetrical structure around the rotation axis of the sleeve a.
By adopting the technical scheme, the sleeve a can rotate together with the mixing piece when rotating.
Preferably, the mixing part is also provided with an adhesive tape embedded on the side surface of the mixing piece, and the mixing piece is shaped into a V-shaped structure with radian.
Through adopting above-mentioned technical scheme, can let the mixing piece gather up the material in the bottom of V type structure when rotatory.
Preferably, the mixing part further comprises a sleeve b arranged at one end of the mixing piece far away from the sleeve a, the rotation axes of the sleeve a and the sleeve b coincide, and the stirring roller transversely penetrates through the sleeve b and is rotationally connected with the sleeve b.
By adopting the technical scheme, the sleeve a and the sleeve b can both rotate at the outer side of the stirring roller.
A horizontal ribbon mixing device comprising the mixing mechanism of any one of the above, the horizontal ribbon mixing device further comprising a mixing tank:
the mixing tank is nested and wrapped outside the stirring roller, the mixing tank is provided with a feeding hole arranged at the top of the mixing tank, an observation hole is formed in the top of the mixing tank, a discharging hole is formed in the bottom of the mixing tank, a motor is arranged at one end of the mixing tank, and the output end of the motor is connected with the stirring roller
Through adopting above-mentioned technical scheme, can let the motor drive the stirring roller rotatory to mix the material of jar inside and carry out the mixing operation.
Compared with the prior art, the mixing device has the beneficial effects that the mixing part is arranged, the transmission teeth can be driven to rotate when the stirring roller rotates, so that the rotating transmission teeth can drive the sleeve a to rotate together, the rotating direction of the sleeve a is opposite to that of the stirring roller, the mixing piece can continuously rotate when materials are discharged, the mixing piece can gather materials at the bottom end of the V-shaped structure when the mixing piece rotates, the materials at the bottom of the mixing tank can be continuously piled towards the discharge hole, and waste of raw materials caused by piling mixed raw materials at two sides of the inside of the mixing tank is avoided.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present application;
FIG. 2 is a schematic view of the whole cross-sectional structure of the present application;
FIG. 3 is a schematic view of a cross-sectional structure of a mixing roll and a mixing section according to the present application;
FIG. 4 is a schematic view of a hybrid sheet structure according to the present application;
FIG. 5 is a schematic view of the stirring roller structure of the application.
FIG. 6 is a schematic diagram of the connection structure of the mixing plate and the mixing tank according to the application.
In the figure, 1, a stirring roller, 101, a supporting rod, 102, a spiral sheet, 103, a conical tooth a, 2, a mixing part, 201, a sleeve a, 202, a rotary groove, 203, a conical tooth b, 204, a mixing sheet, 205, an adhesive tape, 206, a sleeve b, 207, a transmission case, 208, a transmission tooth, 3, a mixing tank, 301, a feed inlet, 302, an observation port, 303, a discharge port, 304 and a motor.
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.
Example 1
Referring to fig. 1, 2 and 3, the present embodiment provides a technical solution that a mixing mechanism is disposed in a horizontal ribbon mixing device, and includes a stirring roller 1 and a mixing portion 2:
Stirring roller 1 sets up in horizontal spiral shell belt mixing arrangement, stirring roller 1's one end side is provided with round awl tooth a103, mixing portion 2 sets up in stirring roller 1 outside, outside nested rotation of stirring roller 1 is provided with sleeve pipe a201, sleeve pipe a 201's one end is fixed with round awl tooth b203, sleeve pipe a 201's surface cover is equipped with transmission case 207, and as shown in fig. 3, awl tooth b203 sets up on the inside sleeve pipe a201 of transmission case 207, the inside of transmission case 207 has the rotation to be provided with driving tooth 208, driving tooth 208 and awl tooth a103 meshing are connected, driving tooth 208 and awl tooth b203 meshing are connected, stirring roller 1 is rotatory to drive driving tooth 208 rotatory in order to drive sleeve pipe a201 rotation, can drive driving tooth 208 rotation when rotatory through stirring roller 1, make rotatory driving tooth 208 can drive sleeve pipe a201 and rotate together, and sleeve pipe a 201's direction of rotation is opposite with stirring roller 1.
Example two
Referring to fig. 4, 5 and 6, the present embodiment provides a technical solution that a mixing mechanism and a horizontal ribbon mixing device include a stirring roller 1 and a mixing portion 2:
The stirring roller 1 is provided with a plurality of supporting rods 101 on the side surface, one end of each supporting rod 101 far away from the stirring roller 1 is provided with spiral sheets 102, each spiral sheet 102 is provided with two spiral sheets 102, each spiral sheet 102 is of a central rotation symmetrical structure around the rotation axis of the stirring roller 1, through the rotation of the stirring roller 1, the two spiral sheets 102 can be driven to rotate around the stirring roller 1, a rotating groove 202 is formed in the sleeve a201, the stirring roller 1 transversely penetrates through the rotating groove 202 and the sleeve a201 to be connected in a rotating mode, the rotation axis of the sleeve a201 coincides with the rotation axis of the stirring roller 1, the sleeve a201 can rotate along the stirring roller 1 outside the stirring roller 1, the side surface of the sleeve a201 is provided with mixing sheets 204, each mixing sheet 204 is provided with two mixing sheets 204, each mixing sheet 204 is of a central rotation symmetrical structure around the rotation axis of the sleeve a201, when the sleeve a201 rotates, one end of each mixing sheet 204 far away from the sleeve a201 is provided with a sleeve b206, the sleeve a201 and the rotation axis of the sleeve b206 is coincident with the sleeve a 206, the stirring roller 1 transversely penetrates through the sleeve b206 and is connected with the sleeve b to the sleeve b206, and the sleeve a can rotate outside the sleeve a 201.
Example III
Referring to fig. 1, 2 and 3, the present embodiment further provides a technical solution that the horizontal ribbon mixing device further includes a mixing tank 3:
The outside at stirring roller 1 is wrapped up in the nestification of blending tank 3, and fixed connection can be dismantled through the bolt to blending tank 3 and transmission case 207, blending tank 3 has the pan feeding mouth 301 that sets up at blending tank 3 top, pan feeding mouth 301 department is provided with the solenoid valve and is used for controlling the entering of material, viewing aperture 302 has been seted up at the top of blending tank 3, discharge gate 303 has been seted up to the bottom of blending tank 3, discharge gate 303 department is provided with the solenoid valve and is used for controlling the discharge of material, the one end of blending tank 3 is provided with motor 304, the output and the stirring roller 1 fixed connection of motor 304, can let motor 304 drive stirring roller 1 rotatory, thereby mix the inside material of blending tank 3, inlay in mixing piece 204 side and be equipped with adhesive tape 205, mixing piece 204 is shaped into the V type structure that has the radian, adhesive tape 205 and the inner wall butt of blending tank 3, can make mixing piece 204 gather up the material in the bottom of V type structure when rotatory.
The working principle is that firstly, the device is electrified, then materials are poured into the mixing tank 3 through the feeding hole 301, the stirring roller 1 is driven to rotate through the motor 304, the stirring roller 1 drives the transmission teeth 208 to rotate when rotating, the rotating transmission teeth 208 can drive the sleeve a201 to rotate together, the rotating direction of the sleeve a201 is opposite to that of the stirring roller 1, the rotating spiral piece 102 and the mixing piece 204 can carry out a mixing operation on the materials in the mixing tank 3, the mixed materials can be discharged from the discharging hole 303, the mixing piece 204 can rotate continuously while the materials are discharged, the materials can be gathered at the bottom end of the V-shaped structure when the mixing piece 204 rotates, the materials at the bottom of the mixing tank 3 can be continuously piled up towards the discharging hole 303, and the waste of the raw materials caused by piling up of the mixed materials on two sides in the mixing tank 3 is avoided.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.