Material anti-blocking feeding device of color masterbatch processing equipment
By incorporating an inner shell rotation and a stirring rod lifting design, the problem of clogging caused by insufficient material flowability in color masterbatch processing is solved. This achieves improved dynamic material flowability and unblocking, thus avoiding clogging and increasing production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGZHOU HONGMEI PLASTIC MASTERBATCH
- Filing Date
- 2025-05-16
- Publication Date
- 2026-05-15
AI Technical Summary
In the process of color masterbatch processing, the material conveying and feeding links are often blocked due to insufficient flowability. Traditional feeding devices are difficult to simultaneously ensure the smooth flow of materials between upper and lower layers and improve dynamic flowability.
The inner shell rotation enhances material flowability. The inner shell is rotated by a drive motor, which drives the gears and gear ring to rotate. The rotating motor drives the shaft and stirring rod to rotate, and the stirring rod is raised and lowered by an electric telescopic rod. The design of the blocking plate and guide block prevents clogging.
It effectively avoids material blockage, improves material flow, enhances production efficiency, achieves smooth flow from top to bottom, and prevents blockage problems.
Smart Images

Figure CN224240122U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of color masterbatch processing technology, specifically to a material anti-clogging feeding device for color masterbatch processing equipment. Background Technology
[0002] In the process of color masterbatch processing, material conveying and feeding often become clogged due to insufficient flowability, affecting production efficiency. Traditional feeding devices mostly adopt a single stirring or fixed unblocking structure, which makes it difficult to simultaneously ensure the unblocking of materials between upper and lower layers and improve dynamic flowability, resulting in frequent clogging problems. To address this, a material anti-clogging feeding device for color masterbatch processing equipment is proposed. Utility Model Content
[0003] The purpose of this utility model is to address the defects and shortcomings of the existing technology by providing a material anti-clogging feeding device for a color masterbatch processing equipment. The inner shell rotates to enhance material flowability, avoid clogging, and improve practicality; the stirring mechanism lifts and lowers to clear the material from top to bottom.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it includes a shell;
[0005] It also includes:
[0006] Inner shell, wherein the inner shell is movably embedded within the outer shell;
[0007] A rotating ring, which is fixed to the upper end of the inner shell;
[0008] Mounting ring, wherein the mounting ring is sleeved and fixed to the upper end of the outer ring wall of the outer shell;
[0009] The first slide rail is fixed on the mounting ring;
[0010] The number of sliders is several, and each slider is fixed to the bottom of the rotating ring; the sliders are slidably mounted on the slide rail.
[0011] A toothed ring, wherein the toothed ring is sleeved and fixed on the rotating ring;
[0012] The gear is configured to mesh with the left side of the gear ring;
[0013] The drive motor is mounted on the left side of the annular wall of the housing via a bracket and is connected to an external power source; the output shaft of the drive motor is connected to a gear.
[0014] A stirring mechanism is located inside the inner shell.
[0015] Preferably, the stirring mechanism comprises:
[0016] A rotating shaft, wherein the rotating shaft is disposed within the inner shell;
[0017] A rotary motor, wherein the output shaft of the rotary motor is connected to a rotating shaft via a shaft, and the rotary motor is connected to an external power source;
[0018] The stirring rods are numerous and are fixed to the annular wall of the rotating shaft.
[0019] Preferably, the stirring mechanism further comprises:
[0020] The electric telescopic rod is fixed to the right side of the outer casing via a bracket; the electric telescopic rod is connected to an external power source.
[0021] A connecting rod is connected to the movable end of an electric telescopic rod, and the connecting rod has a zigzag structure; the other end of the connecting rod is located above the rotating shaft;
[0022] The second slide rail has a ring structure and is fixed on the rotating shaft;
[0023] The second slider is slidably mounted on the second slide rail, and the bottom of the connecting rod is fixed to the second slider.
[0024] Preferably, the connecting frame is fixed on the connecting rod, and the connecting frame has an inverted "U" shape. Connecting tubes are movably fitted on both the front and rear bottoms of the connecting frame, and the connecting tubes are fixed to the outer shell by the brackets. A spring is fitted on the connecting tube, one end of the spring is fixed to the bracket at the bottom of the connecting tube, and the other end of the spring is fixed to the connecting rod.
[0025] Preferably, the blocking plate is sleeved and fixed at the bottom of the rotating shaft, and the diameters of the outer shell and the inner shell are set from wide to narrow from top to bottom, and the bottoms of the outer shell and the inner shell are set as vertical pipes; the blocking plate is installed at the bottom of the inner shell.
[0026] Preferably, the guide block is sleeved on the rotating shaft, and the annular wall of the guide block is inclined from the inside to the outside from top to bottom, with the guide block positioned above the blocking plate.
[0027] Compared with the prior art, the beneficial effects of this utility model are:
[0028] 1. The inner shell rotates, which enhances material flow, avoids blockage, and improves practicality;
[0029] 2. The rotating motor drives the rotating shaft and the stirring rod to rotate, and the electric telescopic rod is used to raise and lower the stirring rod to clear the material. Attached Figure Description
[0030] Figure 1 This is a schematic diagram of the structure of this utility model.
[0031] Figure 2 yes Figure 1 Enlarged view of part A in the image.
[0032] Figure 3 yes Figure 1 Enlarged view of part B in the image.
[0033] Figure 4 This is an exploded view of the present invention.
[0034] Figure 5 yes Figure 4 Enlarged view of section C in the image.
[0035] Explanation of reference numerals in the attached figures:
[0036] 1. Outer shell; 2. Inner shell; 3. Rotating ring; 4. Mounting ring; 5. No. 1 slide rail; 6. No. 1 slider; 7. Gear ring; 8. Drive motor; 9. Stirring mechanism; 10. Rotating shaft; 10-1. Rotating motor; 10-2. Stirring rod; 10-3. Electric telescopic rod; 10-4. Connecting rod; 10-5. No. 2 slide rail; 10-6. No. 2 slider; 10-7. Connecting frame; 10-8. Connecting pipe; 10-9. Spring; 10-10. Blocking plate; 10-11. Guide block; 10-12. Detailed Implementation
[0037] The technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0038] The specific implementation method adopts the following technical solution:
[0039] Please see Figure 1-5 This embodiment includes a housing 1;
[0040] It also includes:
[0041] Inner shell 2, which is movably embedded in outer shell 1;
[0042] Rotating ring 3, which is fixed to the upper end of the inner shell 2;
[0043] Mounting ring 4, wherein the mounting ring 4 is sleeved and fixed to the upper end of the outer ring wall of the outer shell 1;
[0044] The first slide rail 5 is fixed to the mounting ring 4 by bolts.
[0045] Slider 6, there are several of them, and they are fixed to the bottom of the rotating ring 3 respectively; Slider 6 is slidably mounted on slide rail 5.
[0046] Gear ring 7, wherein the gear ring 7 is sleeved and fixed on the rotating ring 3;
[0047] Gear 8, wherein gear 8 is meshed with the left side of gear ring 7;
[0048] The drive motor 9 is mounted on the left side of the annular wall of the housing 1 via a bracket. The drive motor 9 is connected to an external power source. The specific model of the drive motor 9 is purchased directly from the market and installed and used according to actual usage requirements. The output shaft of the drive motor 9 is connected to the gear 8.
[0049] A stirring mechanism 10 is disposed within the inner shell 2; the stirring mechanism 10 comprises:
[0050] Rotating shaft 10-1, wherein the rotating shaft 10-1 is disposed inside the inner shell 2;
[0051] Rotary motor 10-2, the output shaft of the rotary motor 10-2 is connected to the rotating shaft 10-1 through a shaft, the rotary motor 10-2 is connected to an external power supply, and the specific model of the rotary motor 10-2 is purchased and installed directly from the market according to the actual usage requirements.
[0052] The stirring rod 10-3, there are several stirring rods 10-3, and they are respectively fixed on the annular wall of the rotating shaft 10-1;
[0053] The electric telescopic rod 10-4 is fixed to the right side of the annular wall of the outer casing 1 by a bracket; the electric telescopic rod 10-4 is connected to an external power source, and the specific model of the electric telescopic rod 10-4 is purchased, installed and used directly from the market according to actual usage requirements.
[0054] Connecting rod 10-5, which is connected to the movable end of electric telescopic rod 10-4, has a zigzag structure; the other end of connecting rod 10-5 is located above rotating shaft 10-1;
[0055] The second slide rail 10-6 has a ring structure and is fixed on the rotating shaft 10-1;
[0056] The second slider 10-7 is slidably mounted on the second slide rail 10-6, and the bottom of the connecting rod 10-5 is fixed to the second slider 10-7;
[0057] A connecting frame 10-8 is bolted to a connecting rod 10-5. The connecting frame 10-8 has an inverted "U" shape. Connecting tubes 10-9 are movably fitted on the front and rear bottoms of the connecting frame 10-8. The connecting tubes 10-9 are fixed to the outer shell 1 by brackets. A spring 10-10 is fitted on the connecting tube 10-9. One end of the spring 10-10 is fixed to the bracket at the bottom of the connecting tube 10-9, and the other end of the spring 10-10 is fixed to the connecting rod 10-5.
[0058] The blocking plate 10-11 is sleeved and fixed to the bottom of the rotating shaft 10-1. The diameters of the outer shell 1 and the inner shell 2 are set from wide to narrow from top to bottom, and the bottoms of the outer shell 1 and the inner shell 2 are set as vertical pipes. The blocking plate 10-11 is blocked at the bottom of the inner shell 2.
[0059] Guide block 10-12 is sleeved on the rotating shaft 10-1. The annular wall of guide block 10-12 is inclined from top to bottom and from the inside to the outside. Guide block 10-12 is located above the blocking plate 10-11.
[0060] When using this utility model, the outer shell 1 is installed and connected to the processing equipment; the inner shell 2 is filled with material, the drive motor 9 is started, causing the gear 8 to rotate, which in turn drives the gear ring 7 to rotate, causing the inner shell 2 to rotate, which in turn drives the material inside the inner shell 2 to rotate, increasing the fluidity of the material and preventing blockage; the rotating motor 10-2 is started, causing the rotating shaft 10-1 to rotate, which in turn drives the stirring rod 10-3 to rotate, thus clearing the material; the electric telescopic rod 10-4 is started, causing the rotating shaft 10-1 to rise and fall, which in turn drives the stirring rod 10-3 to rise and fall, allowing the material to flow up and down and preventing blockage; during the up and down process, the blocking plate 10-11 intermittently leaves the bottom of the inner shell 2 empty, promoting the descent of the material; the ring wall of the guide block 10-12 is inclined from top to bottom and from the inside to the outside to facilitate the sliding of the material, thereby preventing material blockage.
[0061] Compared with the prior art, the beneficial effects of this utility model are:
[0062] 1. The drive motor 9 drives the gear 8 and the gear ring 7 to rotate, which in turn drives the inner shell 2 to rotate, thereby enhancing the flowability of materials and preventing blockage.
[0063] 2. The rotating motor 10-2 drives the rotating shaft 10-1 and the stirring rod 10-3 to rotate, and in conjunction with the electric telescopic rod 10-4, the stirring rod 10-3 is raised and lowered to clear the material.
[0064] 3. The blocking plate 10-11 moves up and down with the rotating shaft 10-1, intermittently emptying the bottom of the inner shell 2, promoting the falling of materials;
[0065] 4. The inclined ring wall design of guide block 10-12 facilitates material sliding and further prevents blockage.
[0066] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A material anti-clogging feeding device for a color masterbatch processing equipment, comprising a housing (1); Its features are, It also includes: Inner shell (2), which is movably embedded in outer shell (1); Rotary ring (3), which is fixed to the upper end of the inner shell (2); Mounting ring (4), wherein the mounting ring (4) is sleeved and fixed on the upper end of the outer ring wall of the outer shell (1); The first slide rail (5) is fixed on the mounting ring (4); The number of the first slider (6) is several, and they are fixed at the bottom of the rotating ring (3); the first slider (6) is slidably mounted on the first slide rail (5); Gear ring (7), wherein the gear ring (7) is sleeved and fixed on the rotating ring (3); Gear (8), wherein the gear (8) is meshed with the left side of the gear ring (7); The drive motor (9) is mounted on the left side of the annular wall of the housing (1) by a bracket and is connected to an external power source; the output shaft of the drive motor (9) is connected to a gear (8); The stirring mechanism (10) is located inside the inner shell (2).
2. The material anti-clogging feeding device for a color masterbatch processing equipment according to claim 1, characterized in that: The stirring mechanism (10) includes: A rotating shaft (10-1) is located inside the inner shell (2); A rotating motor (10-2) is provided, wherein the output shaft of the rotating motor (10-2) is connected to the rotating shaft (10-1) via a shaft, and the rotating motor (10-2) is connected to an external power source. The stirring rod (10-3) is a plurality of rods, and each rod is fixed on the annular wall of the rotating shaft (10-1).
3. The material anti-clogging feeding device for a color masterbatch processing equipment according to claim 2, characterized in that: The stirring mechanism (10) further includes: The electric telescopic rod (10-4) is fixed to the right side of the annular wall of the outer shell (1) by a bracket; the electric telescopic rod (10-4) is connected to an external power source. A connecting rod (10-5) is connected to the movable end of an electric telescopic rod (10-4). The connecting rod (10-5) has a zigzag structure. The other end of the connecting rod (10-5) is located above the rotating shaft (10-1). The second slide rail (10-6) has a ring structure and is fixed on the rotating shaft (10-1); The second slider (10-7) is slidably mounted on the second slide rail (10-6), and the bottom of the connecting rod (10-5) is fixed to the second slider (10-7).
4. The material anti-clogging feeding device for a color masterbatch processing equipment according to claim 3, characterized in that: The connecting frame (10-8) is fixed on the connecting rod (10-5). The connecting frame (10-8) has an inverted "U" shape. The front and rear bottoms of the connecting frame (10-8) are movably fitted with connecting tubes (10-9). The connecting tubes (10-9) are fixed on the outer shell (1) by the bracket. A spring (10-10) is fitted on the connecting tube (10-9). One end of the spring (10-10) is fixed to the bracket at the bottom of the connecting tube (10-9), and the other end of the spring (10-10) is fixed to the connecting rod (10-5).
5. The material anti-clogging feeding device for a color masterbatch processing equipment according to claim 4, characterized in that: The blocking plate (10-11) is fitted and fixed at the bottom of the rotating shaft (10-1). The diameters of the outer shell (1) and the inner shell (2) are set from wide to narrow from top to bottom. The bottoms of the outer shell (1) and the inner shell (2) are set as vertical pipes. The blocking plate (10-11) is installed at the bottom of the inner shell (2).
6. The material anti-clogging feeding device for a color masterbatch processing equipment according to claim 1, characterized in that: The guide block (10-12) is sleeved on the rotating shaft (10-1). The ring wall of the guide block (10-12) is inclined from the inside to the outside from top to bottom. The guide block (10-12) is located above the blocking plate (10-11).