A plastic mixing and stirring device

CN224796065UActive Publication Date: 2026-09-25ZHEJIANG ELITE TEXTILE CO LTD
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Patent Information

Application Number
CN202522349539.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-09-25
Estimated Expiration
2035-11-05

AI Technical Summary

Technical Problem

[0003]上述中的现有技术方案存在以下缺陷:现有的纺织纤维加工使用的原材料,缺少方便快捷搅拌的结构,使得原材料无法进行充分混合,影响后续的加工

Benefits of technology

[0015]采用了搅拌桶、转轴、齿轮、搅拌杆、螺旋叶片和电机,通过第一电机带动多组齿轮进行啮合传动,使得搅拌杆进行旋转搅拌,带动内部的物料进行充分混合,使得搅拌的效率更高,同时底部增加螺纹输送的结构,可以带动搅拌后的物料进行输送,提高生产效率,产生方便搅拌和输送的效果。

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Abstract

The utility model discloses a kind of plastic mixing and stirring device, it relates to textile fibre processing equipment technical field, to solve the raw material used in existing textile fibre processing, lack the structure of convenient and fast stirring, so that raw material cannot be fully mixed, affect the processing of subsequent problem, its technical scheme main point is including stirring barrel, the outside fixed connection of stirring barrel has installation shell, the inside installation of stirring barrel has first rotating shaft and second rotating shaft, the one end fixed connection of first rotating shaft outside has driving gear, the one end fixed connection of second rotating shaft outside has driven gear, the other end fixed connection of first rotating shaft outside has first stirring rod, the other end fixed connection of second rotating shaft outside has second stirring rod, the outside fixed connection of installation shell has first motor. Reach the effect of convenient stirring and conveying.
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Description

Technical Field

[0001] This utility model relates to the field of textile fiber processing equipment technology, and in particular to a plastic mixing and stirring device. Background Technology

[0002] The plastic-based materials widely used in the textile industry mainly include the following synthetic fibers. These materials are widely used in the manufacture of various textiles due to their unique physicochemical properties: Polyester fiber (PET), chemically known as polyethylene terephthalate, belongs to the same material category as mineral water bottles. Characteristics: high strength, good wrinkle resistance, commonly used in sportswear, outerwear, and blended fabrics. Environmental advantage: it can be recycled from plastic bottles, reducing resource waste; Polyurethane (PU), mainly used in imitation leather products (such as PU leather clothing and bags), outstanding characteristics: excellent waterproof performance, often used in functional clothing such as raincoats and swimwear; Polypropylene fiber, lightweight and quick-drying, commonly used in outdoor products and disposable medical textiles; Polyvinyl chloride (PVC) fiber, once widely used in building materials and industrial products, some decorative fabrics, and waterproof coating materials.

[0003] The existing technical solutions mentioned above have the following drawbacks: the raw materials used in the current textile fiber processing lack a structure that allows for convenient and quick mixing, which makes it impossible to fully mix the raw materials and affects subsequent processing. Utility Model Content

[0004] The purpose of this invention is to provide a plastic mixing and stirring device.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A plastic mixing device includes a mixing tank, an installation shell fixedly connected to the outside of the mixing tank, a first rotating shaft and a second rotating shaft installed inside the mixing tank, a drive gear fixedly connected to one end of the outside of the first rotating shaft, a driven gear fixedly connected to one end of the outside of the second rotating shaft, a first stirring rod fixedly connected to the other end of the outside of the first rotating shaft, a second stirring rod fixedly connected to the other end of the outside of the second rotating shaft, and a first motor fixedly connected to the outside of the installation shell.

[0007] By adopting the above technical solution, the first motor at the top of the mixing tank can drive the first rotating shaft and the driving gear to rotate, which can drive the driven gear on the outside to drive the transmission, and can make the multiple sets of stirring rods inside rotate. At the same time, the stirring rods are distributed in the upper and lower layers inside the mixing tank, which can improve the internal stirring efficiency.

[0008] Furthermore, a feed hopper is fixedly connected to the upper end of the mixing tank, a discharge hopper and a support are fixedly connected to the bottom of the mixing tank, a mounting base is fixedly connected to the outer side of the support, a connecting shaft is installed inside the mounting base, a spiral blade is fixedly connected to the outer side of the connecting shaft, and a second motor, a feed pipe and a discharge pipe are fixedly connected to the outer side of the mounting base.

[0009] By adopting the above technical solution, a conveying structure with a second motor, connecting shaft, and spiral blades added to the bottom can be used to quickly convey materials after mixing, thereby improving production efficiency.

[0010] Furthermore, both the first and second rotating shafts are rotatably connected to the mixing tank via bearings. The second rotating shaft and the driven gear are each provided with three of them. The driving gear and the driven gear are meshed together. Both the first and second stirring rods are provided with multiple of them. The output end of the first motor is fixedly connected to one end of the first rotating shaft.

[0011] By adopting the above technical solution, the driving gear drives the driven gear for transmission, which can drive multiple sets of stirring rods and improve the stirring effect.

[0012] Furthermore, the discharge hopper is placed inside the feed pipe, and control valves are provided on the outer sides of both the discharge hopper and the discharge pipe. One end of the outer side of the connecting shaft is rotatably connected to the mounting base via a bearing, and the other end of the outer side of the connecting shaft is fixedly connected to the output end of the second motor.

[0013] By adopting the above technical solutions, the efficiency of material conveying can be improved.

[0014] In summary, the beneficial technical effects of this utility model are as follows:

[0015] It adopts a mixing tank, rotating shaft, gears, mixing rod, spiral blades and motor. The first motor drives multiple sets of gears to mesh and transmit power, so that the mixing rod rotates and mixes the internal materials thoroughly, making the mixing efficiency higher. At the same time, the addition of a threaded conveyor structure at the bottom can carry the mixed materials to transport, improve production efficiency and produce a convenient mixing and conveying effect. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a three-dimensional structural diagram of the mixing tank of this utility model;

[0018] Figure 3 This is a three-dimensional structural diagram of the stirring rod of this utility model;

[0019] Figure 4This is a cross-sectional structural diagram of the present invention.

[0020] In the diagram, 1. Mixing tank; 2. Mounting shell; 3. First rotating shaft; 4. Second rotating shaft; 5. Drive gear; 6. Driven gear; 7. First stirring rod; 8. Second stirring rod; 9. First motor; 10. Feed hopper; 11. Discharge hopper; 12. Support; 13. Mounting base; 14. Connecting shaft; 15. Spiral blade; 16. Second motor; 17. Feed pipe; 18. Discharge pipe. Detailed Implementation

[0021] The present invention will be further described in detail below with reference to the accompanying drawings.

[0022] Reference Figure 1-4 A plastic mixing device includes a mixing tank 1, a mounting shell 2 fixedly connected to the outer side of the mixing tank 1, a first rotating shaft 3 and a second rotating shaft 4 installed inside the mixing tank 1, a drive gear 5 fixedly connected to one end of the outer side of the first rotating shaft 3, a driven gear 6 fixedly connected to one end of the outer side of the second rotating shaft 4, a first stirring rod 7 fixedly connected to the other end of the outer side of the first rotating shaft 3, a second stirring rod 8 fixedly connected to the other end of the outer side of the second rotating shaft 4, a first motor 9 fixedly connected to the outer side of the mounting shell 2, a feed hopper 10 fixedly connected to the upper end of the mixing tank 1, a discharge hopper 11 and a support 12 fixedly connected to the bottom of the mixing tank 1, and a mounting base 13 fixedly connected to the outer side of the support 12. The mounting base 13 has a connecting shaft 14 installed inside, and a spiral blade 15 is fixedly connected to the outside of the connecting shaft 14. The second motor 16, the feed pipe 17, and the discharge pipe 18 are fixedly connected to the outside of the mounting base 13. The first motor 9 at the top of the mixing tank 1 can drive the first rotating shaft 3 and the driving gear 5 to rotate, which can drive the driven gear 6 on the outside to drive the transmission, so that the multiple sets of stirring rods inside can rotate. At the same time, the stirring rods are distributed in the upper and lower layers inside the mixing tank 1, which can improve the internal stirring efficiency. The conveying structure with the second motor 16, connecting shaft 14, and spiral blade 15 added at the bottom can quickly convey the material after stirring, improving production efficiency.

[0023] like Figure 1-4 As shown, the first rotating shaft 3 and the second rotating shaft 4 are rotatably connected to the mixing tank 1 via bearings. The second rotating shaft 4 and the driven gear 6 are each provided in threes. The driving gear 5 and the driven gear 6 are meshed together. The first stirring rod 7 and the second stirring rod 8 are each provided in multiples. The output end of the first motor 9 is fixedly connected to one end of the first rotating shaft 3. The discharge hopper 11 is placed inside the feed pipe 17. Control valves are provided on the outside of the discharge hopper 11 and the discharge pipe 18. One end of the outer side of the connecting shaft 14 is rotatably connected to the mounting base 13 via bearings. The other end of the outer side of the connecting shaft 14 is fixedly connected to the output end of the second motor 16.

[0024] The implementation principle of this embodiment is as follows: the raw materials are placed inside the mixing tank 1, and then the first motor 9 drives the first rotating shaft 3 and the driving gear 5 to rotate, which can drive the second rotating shaft 4 and the driven gear 6 to mesh and transmit power, so that the multiple sets of stirring rods inside the mixing tank 1 rotate, driving the materials inside to mix and stir. The upper and lower layers inside the mixing tank 1 can be thoroughly stirred at the same time, improving the stirring effect. At the same time, the materials after stirring are conveyed through the bottom conveying structure. The second motor 16 drives the connecting shaft 14 and the spiral blade 15 to transmit power, which can drive the materials to be conveyed quickly and improve production efficiency.

[0025] The embodiments described herein are preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape, and principle of this utility model should be included within the scope of protection of this utility model.

Claims

1. A plastic mixing and stirring device, comprising a mixing tank (1), characterized in that: The mixing tank (1) is fixedly connected to the outer side of the mounting shell (2). The mixing tank (1) is equipped with a first rotating shaft (3) and a second rotating shaft (4). One end of the outer side of the first rotating shaft (3) is fixedly connected to a drive gear (5). One end of the outer side of the second rotating shaft (4) is fixedly connected to a driven gear (6). The other end of the outer side of the first rotating shaft (3) is fixedly connected to a first stirring rod (7). The other end of the outer side of the second rotating shaft (4) is fixedly connected to a second stirring rod (8). The outer side of the mounting shell (2) is fixedly connected to a first motor (9).

2. The plastic mixing and stirring device according to claim 1, characterized in that: The upper end of the mixing tank (1) is fixedly connected to a feed hopper (10), the bottom of the mixing tank (1) is fixedly connected to a discharge hopper (11) and a support (12), the outer side of the support (12) is fixedly connected to a mounting base (13), the inside of the mounting base (13) is installed with a connecting shaft (14), the outer side of the connecting shaft (14) is fixedly connected with a spiral blade (15), and the outer side of the mounting base (13) is fixedly connected with a second motor (16), a feed pipe (17) and a discharge pipe (18).

3. The plastic mixing and stirring device according to claim 1, characterized in that: The first rotating shaft (3) and the second rotating shaft (4) are rotatably connected to the mixing tank (1) through bearings. The second rotating shaft (4) and the driven gear (6) are each provided in threes. The driving gear (5) and the driven gear (6) are meshed and connected. The first stirring rod (7) and the second stirring rod (8) are each provided in multiples. The output end of the first motor (9) is fixedly connected to one end of the first rotating shaft (3).

4. The plastic mixing and stirring device according to claim 2, characterized in that: The discharge hopper (11) is placed inside the feed pipe (17). Control valves are provided on the outside of both the discharge hopper (11) and the discharge pipe (18). One end of the connecting shaft (14) is rotatably connected to the mounting base (13) through a bearing. The other end of the connecting shaft (14) is fixedly connected to the output end of the second motor (16).