Geomembrane production mixing device

CN224765810UActive Publication Date: 2026-09-18TAIAN WANLIDE NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202522098635.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-09-18
Estimated Expiration
2035-09-29

AI Technical Summary

Technical Problem

[0003]传统的混料设备一般是固定安装在工位上的,然而需要对其进行清理时,需要工人反复拆卸多个螺栓才能将混料设备拆卸下来再进行清理,整个过程费时费力,不利于人们使用,因此,本实用新型提出一种土工膜生产混料装置,用于解决上述问题

Benefits of technology

1、通过开启第一电机带动第一伞齿转动,随后第一伞齿带动第二伞齿和丝杆转动,随后丝杆带动螺纹套、限位套、齿轮、矩形杆和夹持板移动,在齿轮移动时与齿板配合并带动矩形杆和夹持板移动,无需拆卸混合桶,一键对混合桶进行翻转,工人可直接站立操作,清洁时间大幅缩短;

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Abstract

The utility model belongs to geomembrane production technical field especially, and a kind of mixing device for geomembrane production is provided, and the following scheme is presented, it includes base;Mixing bucket, the mixing bucket is set in the top of base;Adjusting mechanism, the adjusting mechanism is located at the both sides of base top, adjusting mechanism is used to facilitate worker to wash mixing bucket;Stirring mechanism, the stirring mechanism is located in the inner chamber of mixing bucket, and stirring mechanism is used to mix raw materials, the stirring mechanism includes: transmission shaft, stirring rod, second motor and rectangle block;The bottom of mixing bucket inner chamber is provided with mounting hole, mounting hole inner chamber is rotatably connected with the surface of transmission shaft, the bottom of transmission shaft is provided with rectangle slot, the surface of transmission shaft is fixedly connected with stirring rod, the number of stirring rod is several, in the utility model: by the cooperation of adjusting mechanism, can not need to disassemble mixing bucket, one key is reversed to mixing bucket, worker can directly stand and operate, and cleaning time is greatly shortened.
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Description

Technical Field

[0001] This utility model relates to the field of geomembrane production technology, and in particular to a geomembrane production mixing device. Background Technology

[0002] Geomembrane is a synthetic material commonly used in civil engineering and water conservancy projects. It is mainly made of materials such as polyethylene (PE), polyvinyl chloride (PVC), and polypropylene (PP). Its characteristics include waterproof, seepage-proof, chemical corrosion-resistant, and aging-resistant properties. Geomembrane is usually in the form of a thin film, which has good flexibility and strength and can effectively prevent water seepage. It is widely used in landfills, soil protection, reservoirs, tunnels, flood control and other fields.

[0003] Traditional mixing equipment is usually fixedly installed at the work station. However, when it needs to be cleaned, workers need to repeatedly remove multiple bolts to disassemble the mixing equipment and then clean it. The whole process is time-consuming and labor-intensive, which is not conducive to people's use. Therefore, this utility model proposes a mixing device for geomembrane production to solve the above problems. Utility Model Content

[0004] The purpose of this utility model is to solve the problem that traditional mixing equipment is generally fixedly installed at the work station. However, when it needs to be cleaned, workers need to repeatedly disassemble multiple bolts to remove the mixing equipment and then clean it. The whole process is time-consuming and labor-intensive, which is not conducive to people's use. Therefore, a mixing device for geomembrane production is proposed.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: A geomembrane production mixing device, comprising: Base; A mixing tank, which is disposed on top of the base; Adjustment mechanisms, all located on both sides of the top of the base, are used to facilitate workers in cleaning the mixing tank; A stirring mechanism is located inside the mixing tank and is used to mix the raw materials.

[0006] As a preferred embodiment of the present invention, the stirring mechanism includes: a drive shaft, a stirring rod, a second motor, and a rectangular block; The bottom of the mixing tank has an installation hole, which is rotatably connected to the surface of the drive shaft. The bottom of the drive shaft has a rectangular groove, and the surface of the drive shaft is fixedly connected to the stirring rod. There are several stirring rods. The second motor is fixedly installed on the top of the base cavity. The output shaft of the second motor passes through the base and is fixedly connected to the rectangular block. The top of the rectangular block passes through the rectangular groove cavity.

[0007] As a preferred embodiment of the present invention, the stirring mechanism includes: a drive shaft, a stirring rod, a second motor, and a rectangular block; The bottom of the mixing tank has an installation hole, which is rotatably connected to the surface of the drive shaft. The bottom of the drive shaft has a rectangular groove, and the surface of the drive shaft is fixedly connected to the stirring rod. There are several stirring rods. The second motor is fixedly installed on the top of the base cavity. The output shaft of the second motor passes through the base and is fixedly connected to the rectangular block. The top of the rectangular block passes through the rectangular groove cavity.

[0008] As a preferred embodiment of this utility model, a first through hole is provided on both sides of the top of the base, and the inner cavity of the first through hole is rotatably connected to the surface of the lead screw through a rotating shaft.

[0009] As a preferred embodiment of this utility model, a second through hole is provided at the bottom of the support frame, and the second through hole is adapted to the lead screw.

[0010] As a preferred embodiment of this utility model, a third through hole is provided on the top of the base between the two first through holes on opposite sides, and the third through hole is adapted to the output shaft of the second motor.

[0011] Beneficial effects: 1. By turning on the first motor, the first bevel gear is driven to rotate. Then the first bevel gear drives the second bevel gear and the lead screw to rotate. Then the lead screw drives the threaded sleeve, the limit sleeve, the gear, the rectangular rod and the clamping plate to move. When the gear moves, it cooperates with the gear plate and drives the rectangular rod and the clamping plate to move. There is no need to disassemble the mixing tank. The mixing tank can be flipped with one click. Workers can stand and operate directly, and the cleaning time is greatly shortened. In this invention, the mixing tank can be flipped over with one click without disassembling it, allowing workers to operate while standing, thus significantly reducing cleaning time. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional view of the mixing tank and base of this utility model; Figure 3 This is a sectional view of the support frame and mounting frame of this utility model; Figure 4 This is a schematic diagram of the second motor and rectangular plate structure of this utility model.

[0013] In the diagram: 1. Base; 2. Mixing tank; 3. Support frame; 4. First motor; 5. First bevel gear; 6. Second bevel gear; 7. Lead screw; 8. Threaded sleeve; 9. Limiting sleeve; 10. Mounting bracket; 11. Electric push rod; 12. Rectangular rod; 13. Clamping plate; 14. Gear; 15. Tooth plate; 16. Drive shaft; 17. Stirring rod; 18. Second motor; 19. Rectangular block. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0015] Example Reference Figures 1-4 A mixing device for producing geomembrane, comprising: Base 1; Mixing tank 2 is located on top of base 1; The adjustment mechanism is located on both sides of the top of the base 1. The adjustment mechanism is used to facilitate workers to clean the mixing tank 2. The stirring mechanism is located inside the mixing tank 2 and is used to mix the raw materials.

[0016] As a preferred embodiment of this utility model, the adjustment mechanism includes: a support frame 3, a first motor 4, a first bevel gear 5, a second bevel gear 6, a lead screw 7, a threaded sleeve 8, a limiting sleeve 9, a mounting bracket 10, an electric push rod 11, a rectangular rod 12, a clamping plate 13, a gear 14, and a toothed plate 15. Both sides of the top of the base 1 are fixedly connected to the support frame 3. The first motor 4 is fixedly installed at the bottom of the inner cavity of the base 1. The output shafts on both sides of the first motor 4 are fixedly connected to the first bevel gear 5. The opposite sides of the two first bevel gears 5 are engaged with the second bevel gear 6. The inner cavity of the second bevel gear 6 is fixedly connected to the surface of the lead screw 7. There are two lead screws 7. The bottom of the lead screw 7 is rotatably connected to the bottom of the inner cavity of the base 1. The top of the lead screw 7 passes through the inner cavity of the support frame 3 and is rotatably connected to the top of the inner cavity of the support frame 3 through a rotating shaft. The surface of the lead screw 7 and located in the inner cavity of the support frame 3 are movably connected to the threaded sleeve 8. There are two threaded sleeves 8. The front side of the threaded sleeve 8 is fixedly connected to the limiting sleeve 9. There are two limiting sleeves 9. The opposite sides of the two limiting sleeves 9 are fixedly connected to the mounting bracket 10. The rear side of the opposite side of the two mounting brackets 10 is fixedly connected to the threaded sleeve 8. The opposite sides of the two mounting brackets 10 are fixedly connected to the electric push rod 11. The output ends of the electric push rods 11 on opposite sides all penetrate into the inner cavity of the limiting sleeve 9 and are rotatably connected to the rectangular rod 12. The opposite sides of the two rectangular rods 12 are fixedly connected to the clamping plate 13. The opposite sides of the two limiting sleeves 9, located on the surface of the rectangular rod 12, are rotatably connected to the gear 14. A rectangular hole is opened on the right side of the gear 14, and the rectangular hole is slidably connected to the surface of the rectangular rod 12. The toothed plate 15 is fixedly installed on the top of the front side of the inner cavity of the support frame 3. There are two toothed plates 15. By turning on the first motor 4, the first bevel tooth 5 is driven to rotate. Then the first bevel tooth 5 drives the second bevel tooth 6 and the lead screw 7 to rotate. Then the lead screw 7 drives the threaded sleeve 8, the limiting sleeve 9, the gear 14, the rectangular rod 12 and the clamping plate 13 to move. When the gear 14 moves, it cooperates with the toothed plate 15 and drives the rectangular rod 12 and the clamping plate 13 to move. There is no need to disassemble the mixing tank 2. The mixing tank 2 can be flipped with one click. The worker can operate directly while standing, and the cleaning time is greatly shortened.

[0017] As a preferred embodiment of this utility model, the stirring mechanism includes: a drive shaft 16, a stirring rod 17, a second motor 18, and a rectangular block 19; The bottom of the inner cavity of the mixing tank 2 is provided with an installation hole, which is rotatably connected to the surface of the drive shaft 16. The bottom of the drive shaft 16 is provided with a rectangular groove, and the surface of the drive shaft 16 is fixedly connected to the stirring rod 17. There are several stirring rods 17. The second motor 18 is fixedly installed on the top of the inner cavity of the base 1. The output shaft of the second motor 18 passes through the base 1 and is fixedly connected to the rectangular block 19. The top of the rectangular block 19 passes through the inner cavity of the rectangular groove. By turning on the second motor 18, the rectangular block 19 is driven to rotate. Then the rectangular block 19 cooperates with the rectangular groove and drives the drive shaft 16 and the stirring rod 17 to rotate, thereby mixing the raw materials.

[0018] As a preferred embodiment of this utility model, the base 1 has first through holes on both sides of its top. The inner cavity of the first through hole is rotatably connected to the surface of the lead screw 7 via a rotating shaft. By opening the first through hole and connecting it to the surface of the lead screw 7 via a rotating shaft, the stability of the lead screw 7 during rotation can be improved.

[0019] As a preferred embodiment of this utility model, a second through hole is provided at the bottom of the support frame 3. The second through hole is adapted to the lead screw 7, and the installation of the lead screw 7 is facilitated by providing the second through hole.

[0020] As a preferred embodiment of this utility model, a third through hole is provided on the top of the base 1 and between the two first through holes on opposite sides. The third through hole is adapted to the output shaft of the second motor 18, and the third through hole facilitates the connection between the output shaft of the second motor 18 and the rectangular block 19.

[0021] With the above structure, the mixing tank 2 can be flipped over with one click without disassembling it, allowing workers to operate while standing, thus significantly reducing cleaning time.

[0022] It should be noted that all electrical equipment used in this application is powered by an external power source. The specific type of motor and electric actuator 11 used can be selected by those skilled in the art. Furthermore, the motor and electric actuator 11 mentioned above are all existing technologies and will not be described in detail in this solution.

[0023] The working principle of this utility model is as follows: When in use, the first motor 4 is turned on to drive the first bevel gear 5 to rotate. Then the first bevel gear 5 drives the second bevel gear 6 and the lead screw 7 to rotate. Then the lead screw 7 drives the threaded sleeve 8, the limiting sleeve 9, the gear 14, the rectangular rod 12 and the clamping plate 13 to move. When the gear 14 moves, it cooperates with the toothed plate 15 and drives the rectangular rod 12 and the clamping plate 13 to move. There is no need to disassemble the mixing tank 2. The mixing tank 2 can be flipped with one click. Workers can operate directly while standing, and the cleaning time is greatly shortened.

[0024] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A mixing device for producing geomembranes, characterized in that, include: Base (1); A mixing tank (2) is disposed on top of a base (1); Adjustment mechanism, all of which are located on both sides of the top of the base (1), the adjustment mechanism is used to facilitate workers to clean the mixing tank (2). A stirring mechanism is located inside the mixing tank (2) and is used to mix the raw materials.

2. The geomembrane production mixing device according to claim 1, characterized in that, The adjustment mechanism includes: a support frame (3), a first motor (4), a first bevel gear (5), a second bevel gear (6), a lead screw (7), a threaded sleeve (8), a limiting sleeve (9), a mounting bracket (10), an electric push rod (11), a rectangular rod (12), a clamping plate (13), a gear (14), and a toothed plate (15). The top two sides of the base (1) are fixedly connected to the support frame (3). The first motor (4) is fixedly installed at the bottom of the inner cavity of the base (1). The output shafts on both sides of the first motor (4) are fixedly connected to the first bevel gear (5). The opposite sides of the two first bevel gears (5) are engaged with the second bevel gear (6). The inner cavity of the second bevel gear (6) is fixedly connected to the surface of the lead screw (7). There are two lead screws (7). The bottom of the lead screw (7) is rotatably connected to the bottom of the inner cavity of the base (1). The top of the lead screw (7) passes through the inner cavity of the support frame (3) and is rotatably connected to the top of the inner cavity of the support frame (3) through a rotating shaft. The surface of the lead screw (7) and located in the inner cavity of the support frame (3) are movably connected to the threaded sleeve (8). There are two threaded sleeves (8). The front side of the threaded sleeve (8) is fixedly connected to the limiting sleeve (9). The number of limiting sleeves (9) There are two limit sleeves (9) with opposite sides fixedly connected to the mounting bracket (10). The rear side of the opposite side of the two mounting brackets (10) is fixedly connected to the threaded sleeve (8). The opposite side of the two mounting brackets (10) is fixedly connected to the electric push rod (11). The output end of the opposite side of the two electric push rods (11) passes through the inner cavity of the limit sleeve (9) and is rotatably connected to the rectangular rod (12). The opposite side of the two rectangular rods (12) is fixedly connected to the clamping plate (13). The opposite side of the two limit sleeves (9) and located on the surface of the rectangular rod (12) is rotatably connected to the gear (14). A rectangular hole is opened on the right side of the gear (14). The rectangular hole is slidably connected to the surface of the rectangular rod (12). The toothed plate (15) is fixedly installed on the top of the front side of the inner cavity of the support frame (3). There are two toothed plates (15).

3. The geomembrane production mixing device according to claim 1, characterized in that, The stirring mechanism includes: a drive shaft (16), a stirring rod (17), a second motor (18), and a rectangular block (19). The bottom of the inner cavity of the mixing tank (2) is provided with an installation hole. The inner cavity of the installation hole is rotatably connected to the surface of the drive shaft (16). The bottom of the drive shaft (16) is provided with a rectangular groove. The surface of the drive shaft (16) is fixedly connected to the stirring rod (17). There are several stirring rods (17). The second motor (18) is fixedly installed on the top of the inner cavity of the base (1). The output shaft of the second motor (18) passes through the base (1) and is fixedly connected to the rectangular block (19). The top of the rectangular block (19) passes through to the inner cavity of the rectangular groove.

4. The geomembrane production mixing device according to claim 2, characterized in that, The base (1) has a first through hole on both sides of the top, and the inner cavity of the first through hole is rotatably connected to the surface of the lead screw (7) through a rotating shaft.

5. A mixing device for producing geomembrane according to claim 2, characterized in that, The bottom of the support frame (3) is provided with a second through hole, which is adapted to the lead screw (7).

6. A mixing device for producing geomembrane according to claim 3, characterized in that, A third through hole is provided on the top of the base (1) and between the two first through holes on opposite sides. The third through hole is adapted to the output shaft of the second motor (18).