Plastic particle mixing stirrer
By introducing a bidirectional rotating structure and an ion fan into the mixer, the problems of uneven mixing and electrostatic adsorption are solved, achieving efficient mixing of plastic particles and convenient discharge.
Patent Information
- Application Number
- CN202520499761.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-20
AI Technical Summary
The unidirectional rotation of the mixing shaft in traditional mixers leads to uneven mixing of color masterbatch particles and plastic particles, resulting in long mixing time. Furthermore, static electricity causes particles to adhere to the barrel or mixing blades, making discharge inconvenient.
A plastic particle mixing mixer was designed, which adopts a bidirectional rotation structure and an ion fan to eliminate static electricity. It includes a mixing structure driven by two rotating rods and two rotating motors, combined with an ion fan to eliminate static electricity, ensuring uniform mixing and static electricity elimination.
It achieves uniform mixing of color masterbatch particles and plastic particles, shortens mixing time, eliminates electrostatic adsorption problems, makes discharge more convenient, and has a simple and easy-to-use structure.
Smart Images

Figure CN223877275U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of plastic particle mixing technology, and in particular to a plastic particle mixing mixer. Background Technology
[0002] In the field of polymer plastics product manufacturing, plastic particles are often used as raw materials for producing cable protection pipes. Due to customer requirements, various plastic pipes are usually made in a variety of colors. For the convenience of raw material procurement and inventory, as well as for versatility, polymer plastics product manufacturers usually purchase uncolored plastic particles. During production, colored masterbatch particles and uncolored plastic particles are mixed according to the formula, and then used to produce plastic pipes of various colors. For large and medium-sized polymer plastics product manufacturers, the amount of colored masterbatch particles and uncolored plastic particles that need to be mixed every day is relatively large, and the industry often uses a mixing machine to complete the mixing.
[0003] Traditional mixing machines typically have only one mixing shaft rotating in one direction for mixing. This results in uneven mixing of colored masterbatch particles and uncolored plastic particles, and the mixing time is relatively long, which cannot meet production needs. Furthermore, existing particle mixers generate static electricity during particle collisions, which causes plastic particles to easily stick together and adhere to the inner wall of the discharge cylinder or the mixing blades. Therefore, it is essential to design a plastic particle mixing machine to solve this problem. Utility Model Content
[0004] This invention aims to solve the problems of traditional mixing machines in the prior art, which generally have only one mixing shaft rotating in one direction for mixing. This results in uneven mixing of colored masterbatch particles and uncolored plastic particles, and the mixing time is relatively long, which cannot meet production needs. In addition, existing particle mixers generate static electricity during particle collisions, which causes plastic particles to easily adhere together and adhere to the inner wall of the barrel or the mixing blades during discharge. The invention provides a plastic particle mixing mixer.
[0005] To solve the above-mentioned technical problems, the specific technical solution of this utility model is as follows:
[0006] A plastic particle mixing and blending machine, comprising:
[0007] Base;
[0008] A support structure is mounted on the upper surface of the base and is used for support;
[0009] A load-bearing structure is mounted on the upper surface of a support structure and is used to bear loads.
[0010] a cover structure, which is installed on the bearing structure, and which is used for covering;
[0011] an outlet structure, which is installed on the bearing structure, and which is used for outlet;
[0012] a rotating structure, which is installed on the bearing structure, and which is used for rotating;
[0013] a first mixing structure, which is installed on the rotating structure, and which is used for mixing;
[0014] a second mixing structure, which is installed on the rotating structure, and which is used for mixing;
[0015] an electrostatic removing structure, which is installed on the bearing structure, and which is used for removing electrostatic.
[0016] Preferably, the support structure comprises: a pair of H-shaped support frames;
[0017] A pair of the H-shaped support frames are installed on the bottom surface of the base.
[0018] Preferably, the bearing structure comprises: a bearing shell;
[0019] The bearing shell is installed on the upper surface of a pair of the H-shaped support frames.
[0020] Preferably, the cover structure comprises: a cover, a handle, a viewing window, a sealing strip, and a pair of first buckles;
[0021] The upper surface of the bearing shell is provided with a square opening, the cover hinge is installed at the square opening, the handle is installed on the cover, the cover is provided with a first rectangular opening, the viewing window is installed at the first rectangular opening, the sealing strip is installed at the edge of the lower surface of the cover, a pair of the first buckles are installed on the cover, and the cover is connected with the bearing shell through the pair of the first buckles.
[0022] Preferably, the outlet structure comprises: an outlet shell, a sealing ring, and a pair of second buckles;
[0023] The upper surface of the bearing shell is provided with a second rectangular opening, the outlet shell hinge is installed at the second rectangular opening, a pair of the second buckles are installed on the outlet shell, and the outlet shell is connected with the bearing shell through the pair of the second buckles.
[0024] Preferably, the rotating structure comprises a first fixed support frame, a first rotating motor, a first rotating shaft, a first rotating rod, a pair of second fixed support frames, a pair of second rotating motors, a pair of second rotating shafts and a pair of second rotating rods.
[0025] The first fixed support frame is mounted on the side surface of the bearing shell, the first rotating motor is mounted on the first fixed support frame, and the rotating end of the first rotating motor extends into the bearing shell, the first rotating shaft is mounted on the inner side surface of the bearing shell, the first rotating rod is mounted on the rotating end of the first rotating motor, and the first rotating rod is matched with the first rotating shaft, a pair of the second fixed support frames are mounted on the side surface of the bearing shell, each second rotating motor is mounted on the corresponding second fixed support frame, and the rotating end of the second rotating motor extends into the bearing shell, a pair of the second rotating shafts are mounted on the inner side surface of the bearing shell, each second rotating rod is mounted on the rotating end of the second rotating motor, and each second rotating rod is matched with the corresponding second rotating shaft.
[0026] Preferably, the first mixing structure comprises a plurality of first mixing shells.
[0027] The plurality of first mixing shells are mounted on the first rotating rod.
[0028] Preferably, the second mixing structure comprises a plurality of second mixing shells.
[0029] The plurality of second mixing shells are mounted on the pair of second rotating rods.
[0030] Preferably, the static electricity removing structure comprises a pair of third fixed support frames, a pair of ion air fans and a pair of blocking nets.
[0031] The upper surface of the cover is provided with a pair of third rectangular openings, each third fixed support frame is mounted at the corresponding third rectangular opening, each ion air fan is mounted on the corresponding third fixed support frame, and each blocking net is mounted on the corresponding ion air fan, and the pair of blocking nets are located in the cover.
[0032] Preferably, the base is provided with a controller, and the base is provided with a mains interface.
[0033] The utility model has the following beneficial effects:
[0034] The plastic particle mixing and stirring machine can better uniformly mix color master particles and plastic particles of the same color, is very convenient, reduces unnecessary troubles, reduces time consumption, meets production needs, eliminates static electricity through the ion air fan, discharges more conveniently, has a relatively simple structure and is convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0035] The utility model will be further explained in detail below in combination with the drawings and specific embodiments.
[0036] Figure 1 It is the structure diagram of plastic particle mixing stirrer of the utility model;
[0037] Figure 2 It is the side view structure drawing of plastic particle mixing stirrer of the utility model;
[0038] Figure 3 It is the side view of plastic particle mixing stirrer of the utility model;
[0039] Figure 4 It is the main view structure drawing of plastic particle mixing stirrer of the utility model;
[0040] Figure 5 It is the main view of plastic particle mixing stirrer of the utility model.
[0041] The reference signs in the drawing are shown as follows:
[0042] Base 10, support structure 20, bearing structure 30, buckle cover structure 40, discharge structure 50, rotating structure 60, first mixing structure 70, second mixing structure 80, static electricity removal structure 90, controller 100, commercial power interface 110;
[0043] H type support frame 21;
[0044] Bearing shell 31;
[0045] Buckle 41, handle 42, observation window 43, sealing strip 44, first lock 45;
[0046] Discharge shell 51, sealing ring 52, second lock 53;
[0047] First fixed support frame 61, first rotating motor 62, first rotating shaft 63, first rotating rod 64, second fixed support frame 65, second rotating motor 66, second rotating shaft 67, second rotating rod 68;
[0048] First mixing shell 71;
[0049] Second mixing shell 81;
[0050] Third fixed support frame 91, ion fan 92, blocking net 93. Specific embodiments
[0051] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0052] Please refer to Figures 1-5 , the plastic particle mixing stirrer comprises: a base 10, a support structure 20, the support structure 20 is installed on the upper surface of the base 10, and the support structure 20 is used for supporting, a bearing structure 30, the bearing structure 30 is installed on the upper surface of the support structure 20, and the bearing structure 30 is used for bearing, a cover structure 40, the cover structure 40 is installed on the bearing structure 30, and the cover structure 40 is used for covering, a discharge structure 50, the discharge structure 50 is installed on the bearing structure 30, and the discharge structure 50 is used for discharging, a rotating structure 60, the rotating structure 60 is installed on the bearing structure 30, and the rotating structure 60 is used for rotating, a first mixing structure 70, the first mixing structure 70 is installed on the rotating structure 60, and the first mixing structure 70 is used for mixing, a second mixing structure 80, the second mixing structure 80 is installed on the rotating structure 60, and the second mixing structure 80 is used for mixing, and an electrostatic removal structure 90, the electrostatic removal structure 90 is installed on the bearing structure 30, and the electrostatic removal structure 90 is used for removing static electricity.
[0053] The support structure 20 on the upper surface of the base 10 is used for supporting, the bearing structure 30 on the upper surface of the support structure 20 is used for bearing, the cover structure 40 on the bearing structure 30 is used for covering, the discharge structure 50 on the bearing structure 30 is used for discharging, the rotating structure 60 on the bearing structure 30 is used for rotating, the first mixing structure 70 on the rotating structure 60 is used for mixing, the second mixing structure 80 on the rotating structure 60 is used for mixing, and the electrostatic removal structure 90 on the bearing structure 30 is used for removing static electricity.
[0054] The support structure 20 comprises: a pair of H-shaped support frames 21, and the pair of H-shaped support frames 21 are installed on the upper surface of the base 10.
[0055] The H-shaped support frames 21 on the upper surface of the base 10 are used for supporting.
[0056] The bearing structure 30 comprises: a bearing shell 31, and the bearing shell 31 is installed on the upper surface of the pair of H-shaped support frames 21.
[0057] The bearing shell 31 on the upper surface of the H-shaped support frame 21 is used for bearing the color master particles and the plastic particles of the original color.
[0058] The buckle cover structure 40 comprises a buckle cover 41, a handle 42, an observation window 43, a sealing strip 44 and a pair of first buckles 45. The upper surface of the bearing shell 31 is provided with a square opening. The buckle cover 41 is hingedly installed at the square opening. The handle 42 is installed on the buckle cover 41. The buckle cover 41 is provided with a first rectangular opening. The observation window 43 is installed at the first rectangular opening. The sealing strip 44 is installed at the edge of the lower surface of the buckle cover 41. The pair of first buckles 45 are installed on the buckle cover 41. The buckle cover 41 is connected with the bearing shell 31 through the pair of first buckles 45.
[0059] The colored color master particles and the original plastic particles can be fed into the bearing shell 31 by opening the first buckles 45 and unfolding the buckle cover 41. The mixing condition can be observed through the observation window 43.
[0060] The discharge structure 50 comprises a discharge shell 51, a sealing ring 52 and a pair of second buckles 53. The upper surface of the bearing shell 31 is provided with a second rectangular opening. The discharge shell 51 is hingedly installed at the second rectangular opening. The pair of second buckles 53 are installed on the discharge shell 51. The discharge shell 51 is connected with the bearing shell 31 through the pair of second buckles 53.
[0061] After the mixing is completed, the second buckles 53 are opened, the discharge shell 51 is put down, and the mixed plastic particles are fed out of the bearing shell 31.
[0062] The rotating structure 60 comprises a first fixed support frame 61, a first rotating motor 62, a first rotating shaft 63, a first rotating rod 64, a pair of second fixed support frames 65, a pair of second rotating motors 66, a pair of second rotating shafts 67 and a pair of second rotating rods 68. The first fixed support frame 61 is installed on the side surface of the bearing shell 31. The first rotating motor 62 is installed on the first fixed support frame 61. The rotating end of the first rotating motor 62 extends into the bearing shell 31. The first rotating shaft 63 is installed on the inner side surface of the bearing shell 31. The first rotating rod 64 is installed on the rotating end of the first rotating motor 62. The first rotating rod 64 is matched with the first rotating shaft 63. The pair of second fixed support frames 65 are installed on the side surface of the bearing shell 31. Each second rotating motor 66 is installed on the corresponding second fixed support frame 65. The rotating end of the second rotating motor 66 extends into the bearing shell 31. The pair of second rotating shafts 67 are installed on the inner side surface of the bearing shell 31. Each second rotating rod 68 is installed on the rotating end of the second rotating motor 66. Each second rotating rod 68 is matched with the corresponding second rotating shaft 67.
[0063] The first mixing structure 70 comprises a plurality of first mixing shells 71. The plurality of first mixing shells 71 are installed on the first rotating rod 64.
[0064] The second mixing structure 80 comprises a plurality of second mixing casings 81 mounted on the pair of second rotating rods 68.
[0065] The first rotating motor 62 on the first fixed support frame 61 and the second rotating motor 66 on the second fixed support frame 65 are started to drive the first mixing casing 71 on the first rotating rod 64 to mix with the second mixing casing 81 on the first rotating rod 64.
[0066] The static electricity removing structure 90 comprises a pair of third fixed support frames 91, a pair of ion fans 92 and a pair of blocking nets 93. The upper surface of the cover 41 is provided with a pair of third rectangular openings. Each of the third fixed support frames 91 is mounted on the corresponding third rectangular opening. Each of the ion fans 92 is mounted on the corresponding third fixed support frame 91. Each of the blocking nets 93 is mounted on the corresponding ion fan 92. The pair of blocking nets 93 are located in the cover 41.
[0067] The static electricity is removed by the ion fans 92 on the third fixed support frames 91.
[0068] The base 10 is provided with a controller 100 and a power interface 110.
[0069] The controller 100 on the base 10 is controlled and the power source is connected through the power interface 110 on the base 10.
[0070] Firstly, the power source is connected through the power interface 110 on the base 10. The controller 100 on the base 10 is turned on. Then the first lock 45 is opened. The cover 41 is opened through the handle 42 to put the material into the bearing casing 31. Then the cover 41 is closed and the first lock 45 is locked. After that, the first rotating motor 62 on the first fixed support frame 61 and the second rotating motor 66 on the second fixed support frame 65 are started. The first rotating motor 62 on the first fixed support frame 61 drives the first rotating rod 64 to rotate clockwise. The second rotating motor 66 on the second fixed support frame 65 drives the second rotating rod 68 to rotate counterclockwise to drive the first mixing casing 71 and the second mixing casing 81 to mix. The mixing can be observed through the observation window 43. At the same time, the ion fans 92 on the third fixed support frames 91 are started to remove the static electricity. After the mixing is completed, the second lock 53 is opened and the discharging casing 51 is opened to discharge the material, which is very convenient.
[0071] Obviously, the above embodiments are merely example for clearly illustrating but not limitation to the embodiments. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, all the embodiments need not and can not be enumerated. The obvious changes or variations derived from the above description are still within the protection scope of the present application.
Claims
1. A plastic pellet mixing blender characterized by, It includes: a base (10); a support structure (20) mounted on the upper surface of the base (10) and used for supporting; a bearing structure (30) mounted on the upper surface of the support structure (20) and used for bearing; a cover structure (40) mounted on the bearing structure (30) and used for covering; an outlet structure (50) mounted on the bearing structure (30) and used for discharging; a rotating structure (60) mounted on the bearing structure (30) and used for rotating; a first mixing structure (70) mounted on the rotating structure (60) and used for mixing; a second mixing structure (80) mounted on the rotating structure (60) and used for mixing; an electrostatic removal structure (90) mounted on the bearing structure (30) and used for removing static electricity.
2. The plastic pellet mixing blender of claim 1, wherein, The support structure (20) includes a pair of H-shaped support frames (21); The pair of H-shaped support frames (21) are mounted on the upper surface of the base (10).
3. The plastic pellet mixing blender of claim 2, wherein, The bearing structure (30) includes a bearing shell (31); The bearing shell (31) is mounted on the upper surface of the pair of H-shaped support frames (21).
4. The plastic pellet mixing and blending machine of claim 3, wherein, The cover structure (40) includes a cover (41), a handle (42), an observation window (43), a sealing strip (44), and a pair of first buckles (45); The upper surface of the bearing shell (31) is provided with a square opening, the cover (41) is hingedly mounted on the square opening, the handle (42) is mounted on the cover (41), the cover (41) is provided with a first rectangular opening, the observation window (43) is mounted on the first rectangular opening, the sealing strip (44) is mounted on the lower surface edge of the cover (41), and the pair of first buckles (45) are mounted on the cover (41) and connected with the bearing shell (31) through the pair of first buckles (45).
5. The plastic pellet mixing and agitator of claim 3, wherein, The outlet structure (50) includes an outlet shell (51), a sealing ring (52), and a pair of second buckles (53); The upper surface of the bearing shell (31) is provided with a second rectangular opening, the outlet shell (51) is hingedly mounted on the second rectangular opening, the pair of second buckles (53) are mounted on the outlet shell (51), and the outlet shell (51) is connected with the bearing shell (31) through the pair of second buckles (53).
6. The plastic pellet mixing and blending machine of claim 3, wherein, The rotating structure (60) comprises a first fixed support frame (61), a first rotating motor (62), a first rotating shaft (63), a first rotating rod (64), a pair of second fixed support frames (65), a pair of second rotating motors (66), a pair of second rotating shafts (67) and a pair of second rotating rods (68); The first fixed support frame (61) is mounted on the side surface of the bearing shell (31), the first rotating motor (62) is mounted on the first fixed support frame (61), and the rotating end of the first rotating motor (62) extends into the bearing shell (31), the first rotating shaft (63) is mounted on the inner side surface of the bearing shell (31), the first rotating rod (64) is mounted on the rotating end of the first rotating motor (62), and the first rotating rod (64) is matched with the first rotating shaft (63), a pair of second fixed support frames (65) are mounted on the side surface of the bearing shell (31), each second rotating motor (66) is mounted on the corresponding second fixed support frame (65), and the rotating end of the second rotating motor (66) extends into the bearing shell (31), a pair of second rotating shafts (67) are mounted on the inner side surface of the bearing shell (31), and each second rotating rod (68) is mounted on the rotating end of the second rotating motor (66), and each second rotating rod (68) is matched with the corresponding second rotating shaft (67).
7. The plastic pellet mixing blender of claim 6, wherein, The first mixing structure (70) comprises a plurality of first mixing shells (71); A plurality of first mixing shells (71) are mounted on the first rotating rod (64).
8. The plastic pellet hybrid blender of claim 6, wherein, The second mixing structure (80) comprises a plurality of second mixing shells (81); A plurality of second mixing shells (81) are mounted on the pair of second rotating rods (68).
9. The plastic pellet mixing and blending machine of claim 3, wherein, The static electricity removing structure (90) comprises a pair of third fixed support frames (91), a pair of ion fans (92) and a pair of blocking nets (93); The upper surface of the cover (41) is provided with a pair of third rectangular openings, each third fixed support frame (91) is mounted at the corresponding third rectangular opening, each ion fan (92) is mounted on the corresponding third fixed support frame (91), and each blocking net (93) is mounted on the corresponding ion fan (92), and the pair of blocking nets (93) are located in the cover (41).
10. The plastic pellet hybrid blender of claim 1, wherein, The base (10) is provided with a controller (100), and the base (10) is provided with a power supply interface (110).