Masterbatch suction machine
Technical Field
The application relates to the field of color master batch absorbers, in particular to a color master batch absorber.
Background
The color master batch absorber is equipment used in the plastic processing industry and is mainly used for conveying color master batch (namely plastic particles added with pigment and other additives) into an injection molding machine or an extruder. The color master batch absorber can realize high-efficiency and stable conveying of color master batch, and ensures uniform color and stable quality of plastic products.
When using the masterbatch suction machine, pour the material into equipment feeder hopper, when disposable material that puts into is more, the material can cause certain jam in the hopper bottom to when different masterbatch mixes, more materials in the hopper are inconvenient for adjusting the mixed quantity of mixture, have reduced the whole reinforced mixing efficiency of material, bring certain influence to the whole use of masterbatch suction machine.
In view of the above-mentioned related art, the inventors considered that the hopper of the color master batch absorber had a defect that it was inconvenient to control the amount at the time of discharging, and therefore proposed the color master batch absorber to solve the above-mentioned problems.
Disclosure of utility model
In order to solve the problem that the hopper of the color master batch absorber is inconvenient to control during discharging, the application provides the color master batch absorber.
The color master batch absorber provided by the application adopts the following technical scheme:
The utility model provides a masterbatch inhale material machine, includes masterbatch inhale material equipment, fixed surface installs the feeder hopper on the masterbatch inhale material equipment, feeder hopper inner wall one side middle part welding has the separation frame, the inside fixed inner chamber that has been seted up that is located separation frame below of feeder hopper, feeder hopper top middle part fixed mounting has the fixed plate, movable mounting has the support bull stick in the fixed plate inside extends to the feeder hopper, separation frame inner wall bottom middle part fixed mounting has the discharging pipe, a plurality of unloading holes have been seted up in the link up of discharging pipe inner wall one side, the standing groove has been seted up near unloading hole department to the discharging pipe lateral wall, it has limit baffle to support the inside welding of bull stick bottom to the standing groove, fixed intracavity bottom still is equipped with rabbling mechanism for masterbatch evenly mix.
Preferably, the stirring mechanism comprises a rotating shaft, the rotating shaft is rotatably arranged at the bottoms of two sides of the inner wall of the fixed inner cavity, a plurality of stirring blades are welded on the outer surface of the rotating shaft, and a servo motor is arranged at the position, extending to the outer part of the fixed inner cavity, of one side of the rotating shaft.
Preferably, the color master batch absorbing device upper surface is provided with the interpolation hopper near feeder hopper department, interpolation hopper top extends to the inside rigid coupling of fixed inner chamber and has the conveying pipeline, the conveying pipeline slope sets up at the feeder hopper surface.
Preferably, the fixed guide rail is symmetrically welded at the joint position of the upper surface of the color master batch absorbing device and the feeding hopper, a sliding groove is formed in the bottom of one side of the feeding hopper in a penetrating mode, a movable baffle is movably installed inside the feeding hopper by penetrating through the sliding groove in the fixed guide rail, and the movable baffle and the opening of the bottom end of the feeding hopper are clamped with each other.
Preferably, the cross-sectional area of the limit baffle is larger than that of the opening of the blanking hole, and the blanking hole and the placing groove are mutually embedded with the limit baffle.
In summary, the application has the following beneficial technical effects:
The color master batch is poured into the separation frame along the opening of the feed hopper, the rotating support rotating rod drives the limit baffle to control the blanking hole to open and close, different color master batches are regulated to be poured into the fixed inner cavity, different types of color master batches are added into the fixed inner cavity through the feeding hopper and the conveying pipe, the stirring blade is rotated to stir and mix the color master batches at the bottom in the fixed inner cavity, the movable baffle is pulled to convey the mixed materials to the color master batch absorbing equipment, compared with the prior art, the color master batch absorbing equipment has the effect of being convenient for conveying the material components, the overall conveying effect of the feed hopper on the materials is improved, the problem that more materials are blocked in the feed hopper is solved, and the overall use efficiency of the color master batch absorbing equipment is improved.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the application;
FIG. 2 is a schematic cross-sectional view of a feed hopper in an embodiment of the application;
FIG. 3 is a schematic view of the structure of a feed conveyor pipe according to the embodiment of the present application;
The reference numerals indicate that 1, a color master batch absorbing device, 2, a feeding hopper, 3, a separation frame, 4, a fixed inner cavity, 5, a charging hopper, 6, a conveying pipe, 7, a fixed plate, 8, a supporting rotating rod, 9, a limiting baffle, 10, a discharging pipe, 11, a discharging hole, 12, a placing groove, 13, a rotating shaft, 14, a stirring blade, 15, a servo motor, 16, a fixed guide rail, 17 and a movable baffle.
Detailed Description
The application is described in further detail below with reference to fig. 1-3.
The embodiment of the application discloses a color master batch absorber. Referring to fig. 1-3, the color master batch absorber comprises a color master batch absorber 1, a feeding hopper 2 is fixedly arranged on the upper surface of the color master batch absorber 1, a separation frame 3 is welded at the middle part of one side of the inner wall of the feeding hopper 2, a fixed inner cavity 4 is formed in the inner part of the feeding hopper 2 and positioned below the separation frame 3, a charging hopper 5 is arranged on the upper surface of the color master batch absorber 1 close to the feeding hopper 2, a conveying pipe 6 is fixedly connected to the inner part of the fixed inner cavity 4, the conveying pipe 6 is obliquely arranged on the outer surface of the feeding hopper 2, a fixing plate 7 is fixedly arranged at the middle part of the top end of the feeding hopper 2, a supporting rotary rod 8 is movably arranged in the inner part of the fixing plate 7, a discharging pipe 10 is fixedly arranged at the middle part of the bottom end of the inner wall of the separation frame 3, a plurality of discharging holes 11 are formed in a penetrating manner on one side of the inner wall of the discharging pipe 10, a placing groove 12 is formed in a position close to the side of the discharging hole 11, a limit baffle 9 is welded at the bottom end of the supporting rotary rod 8, the placing groove 9 is welded inside the placing groove 12, the limit baffle 9, the cross section area of the limit baffle 9 is larger than the cross section area of the opening of the discharging hole 11, the discharging hole 11 and the placing groove 12 and the limit baffle 9 are mutually jogged with the limit baffle 9, a stirring mechanism is arranged at the bottom in the fixed inner cavity 4, and the fixed inner cavity 4.
Through pouring more color master batches into the separation frame 3 along the opening of the feed hopper 2 for storage, the rotary supporting rotary rod 8 drives the limit baffle 9 to move along the inside of the placing groove 12, the placing position of the limit baffle 9 in the blanking hole 11 is adjusted, the limit baffle 9 controls the blanking hole 11 to open and close, different color master batches are poured into the fixed inner cavity 4, meanwhile, the blanking speed of the materials in the blanking hole 11 is adjusted, different types of color master batches are poured into the feeding hopper 5, the feeding hopper 5 and the conveying pipe 6 are enabled to add different types of color master batches into the fixed inner cavity 4, and the blanking effect of the feed hopper 2 on different amounts of color master batches is reflected.
Referring to fig. 2 and 3, the stirring mechanism comprises a rotating shaft 13, the rotating shaft 13 is rotatably arranged at the bottoms of two sides of the inner wall of the fixed inner cavity 4, a plurality of stirring blades 14 are welded on the outer surface of the rotating shaft 13, and a servo motor 15 is arranged at the position, extending to the outer part of the fixed inner cavity 4, of one side of the rotating shaft 13.
The servo motor 15 is started to drive the rotating shaft 13 to rotate, so that the rotating shaft 13 drives the stirring blades 14 to rotate, the stirring blades 14 stir and mix color master batches accumulated in the inner bottom of the fixed inner cavity 4, and the mixing effect of materials at the inner bottom of the fixed inner cavity 4 is reflected.
Referring to fig. 2 and 3, a fixed guide rail 16 is symmetrically welded at the joint position of the upper surface of the color master batch suction device 1 and the feeding hopper 2, a sliding groove is formed in the bottom of one side of the feeding hopper 2 in a penetrating manner, a movable baffle 17 is movably mounted in the feeding hopper 2 through the sliding groove in the fixed guide rail 16, and the movable baffle 17 and the opening at the bottom end of the feeding hopper 2 are mutually clamped.
The movable baffle 17 is pulled to move along the inside of the fixed guide rail 16, the opening and closing of the movable baffle 17 to the opening of the inner bottom of the feed hopper 2 are regulated, the mixed materials are conveyed into the color master batch absorbing device 1, and the limiting and resisting effects of the movable baffle 17 on the materials are reflected.
The color master batch suction machine of the embodiment of the application has the implementation principle that more color master batches are poured into the separation frame 3 along the opening of the feed hopper 2 for storage, the rotary support rotary rod 8 drives the limit baffle 9 to move along the inside of the placing groove 12, the placing position of the limit baffle 9 in the blanking hole 11 is regulated, the limit baffle 9 controls the blanking hole 11 to open and close, different amounts of color master batches are regulated to be poured into the fixed inner cavity 4, meanwhile, the blanking speed of materials in the blanking hole 11 is regulated, different types of color master batches are poured into the feed hopper 5, the feed hopper 5 and the feed conveying pipe 6 are enabled to add different types of color master batches into the fixed inner cavity 4, different types of color master batches are piled up at the inner bottom of the fixed inner cavity 4, the servo motor 15 is started to drive the rotary shaft 13 to rotate, the stirring blades 14 are driven to stir and mix the color master batches piled up at the inner bottom of the fixed inner cavity 4, the movable baffle 17 is pulled to move along the inside of the fixed guide rail 16, the opening and closing of the bottom opening of the movable baffle 17 in the feed hopper 2 is regulated, the mixed materials are conveyed to the feed hopper 1, the electrical property of the material is improved, and the electrical property of the power supply is improved compared with the whole suction machine 2, and the electrical property is improved, and the effect of the material is improved when the power supply is electrically connected with the power supply end of the power supply 2 and the power supply 2 is used, and compared with the whole device.
In the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be mechanical or electrical, or may be a direct connection between two elements, where "up," "down," "left," "right," etc. are merely used to indicate relative positional relationships, and when the absolute position of an object to be described changes, the relative positional relationships may change;
in the drawings of the disclosed embodiments, only the structures related to the embodiments of the present disclosure are referred to, and other structures can refer to the common design, so that the same embodiment and different embodiments of the present disclosure can be combined with each other without conflict;
Finally, the foregoing description of the preferred embodiment of the utility model is provided for the purpose of illustration only, and is not intended to limit the utility model to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the utility model.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.