Efficient, safe and environment-friendly degreasing and degreasing agent production material mixing equipment

By installing a multi-way feed pipe and a volume-adjustable storage silo on the barrel of the mixing equipment, the problem of multiple manual additions of materials in existing equipment is solved, and the automatic addition and mixing of multiple materials is realized, thereby improving work efficiency.

CN120644116AInactive Publication Date: 2025-09-16GUANGDONG VOCATIONAL & TECHNICAL COLLEGE
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Patent Information

Application Number
CN202511075996.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2025-09-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing mixing equipment can only add one material into the feed hopper at a time, requiring workers to add materials multiple times, which is inconvenient to use.

Method used

A barrel with multiple feed pipes installed is designed, and each feed port has a storage bin with adjustable volume. Combined with a stirring mechanism and a driving mechanism, the automatic addition and mixing of multiple materials can be achieved.

Benefits of technology

It realizes the automatic addition of multiple materials, improves work efficiency, reduces labor intensity, and enhances the convenience of equipment use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses efficient, safe and environment-friendly degreasing agent production material mixing equipment, and belongs to the technical field of mixing equipment.The efficient, safe and environment-friendly degreasing agent production material mixing equipment comprises a barrel body, a stirring mechanism is arranged in the barrel body, a multi-way feeding pipe is arranged on a first feeding opening of the barrel body, and a plurality of storage bins with adjustable volumes are arranged on the multi-way feeding pipe; a discharging door is arranged at the bottom of the right side of the barrel body, a driving mechanism used for driving the discharging door to be opened and closed is arranged on the outer side of the barrel body, and a supporting mechanism is arranged below the barrel body. The multi-way feeding pipe is installed on the first feeding opening of the barrel body, the storage bins with the adjustable volume are installed at the feeding openings in the multi-way feeding pipe, different materials are stored in the different storage bins, the materials can be added according to the installation sequence through the multi-way feeding pipe, repeated manual material adding is avoided, the working efficiency is improved, and the labor intensity of workers is reduced. The labor intensity of workers is reduced; and the volume of the storage bin can be adjusted according to the required material quantity, so that the use is more convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of mixing equipment, and in particular to a highly efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment. Background Art

[0002] Highly effective, safe, and environmentally friendly degreasing and deoiling agents are specifically designed to remove grease and oil stains from various surfaces. They are highly effective, safe, and environmentally friendly. The production process requires a mixing device to evenly mix the various materials. Existing mixing equipment typically consists of a box with a stirring paddle inside to stir the materials. A feed hopper is connected to the top of the box. However, only one material can be added to the hopper at a time, requiring workers to add materials multiple times as needed, which is inconvenient. Summary of the Invention

[0003] The purpose of the present invention is to provide an efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing device to solve the problem that the existing mixing device can only add one material into the feed hopper at a time, requiring the staff to add materials multiple times as needed, which is inconvenient to use.

[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0005] The present invention provides a high-efficiency, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment, comprising a barrel body, a stirring mechanism is provided inside the barrel body, a multi-way feed pipe is provided on the first feed port of the barrel body, a plurality of storage bins with adjustable volumes are provided on the multi-way feed pipe, a discharge door is provided on the right bottom of the barrel body, a driving mechanism for driving the discharge door to open and close is provided on the outside of the barrel body, and a supporting mechanism is provided below the barrel body.

[0006] Furthermore, the stirring mechanism includes a rotating seat arranged inside the barrel body, a rotating drive component 1 for driving the rotating seat to rotate is arranged above the rotating seat, a scraping stirring shovel that rotates together with the rotating seat is arranged on the outside of the rotating seat, a rotatable three-claw stirring shovel is arranged below the rotating seat, and a rotating drive component 2 for driving the three-claw stirring shovel to rotate is arranged inside the rotating seat.

[0007] Furthermore, the rotary drive assembly 1 includes a stirring drive member, which is arranged on the top surface of the upper panel of the barrel body. The output end of the stirring drive member is provided with gear 1, and the top of the rotating seat is provided with gear 2 that meshes with gear 1.

[0008] Furthermore, the rotation drive component 2 includes gear 3, which is arranged inside the rotating base. The outer side of the gear 3 is meshed with gear 4, and the three-claw stirring shovel is provided at the bottom of the central axis of the gear 4.

[0009] Furthermore, the three-claw stirring shovel includes a mounting frame connected to the fourth center axis of the gear, and three stirring claws are provided on the mounting frame.

[0010] Furthermore, the driving mechanism includes an oil cylinder arranged on the outside of the barrel body, a discharge bearing seat is provided on the outer wall of the barrel body, a discharge main shaft is provided in the discharge bearing seat, the bottom of the discharge main shaft is connected to the discharge door, and the top of the discharge main shaft is connected to the working end of the oil cylinder through a discharge swing arm.

[0011] Furthermore, the multi-way feed pipe includes a main body, a first discharge port connected to the first feed port is provided at the bottom of the main body, a third feed port, a second feed port, and a fourth feed port are provided in sequence at the top of the main body, a first baffle plate and a second baffle plate are provided inside the main body and on both sides of the second feed port, and a first discharge drive component for driving the second baffle plate to rotate and a second discharge drive component for driving the first baffle plate to rotate are respectively provided on the front and rear sides of the main body.

[0012] Furthermore, the storage bin includes a fixed bin body, and adjustable bin bodies are provided on the upper and lower sides of the fixed bin body. A mounting seat is provided at one end of the adjusting bin body away from the fixed bin body, and a telescopic sleeve is provided between the mounting seat and the fixed bin body. The outer sides of the upper and lower mounting seats are positioned by multiple sets of screw assemblies, and a feed hopper is provided on the top surface of the upper adjusting bin body, and the mounting seat located at the bottom is connected to the multi-way feed pipe.

[0013] Furthermore, the support mechanism includes a base frame, and the top surface of the base frame is provided with a first telescopic support frame and a second telescopic support frame, the first telescopic support frame and the second telescopic support frame are hinged to the left and right sides of the bottom surface of the barrel body respectively, and the bottom surface of the base frame is provided with universal wheels.

[0014] Furthermore, the first telescopic support frame includes a fixed column arranged on the top surface of the base frame, a movable column is arranged inside the fixed column, a rack is arranged on the side of the movable column, a lifting drive gear meshing with the rack is arranged on the fixed column, an operating member for driving the lifting drive gear to rotate is arranged on the outer side of the lifting drive gear, and a positioning member for positioning the movable column is also arranged on the fixed column.

[0015] Compared with the prior art, the present invention has the following beneficial technical effects:

[0016] A multi-way feed pipe is installed on the first feed port of the barrel body of the present invention, and each feed port on the multi-way feed pipe is installed with a storage bin with adjustable volume. Different materials are stored in different storage bins. The multi-way feed pipe can be used to add materials in the order of installation, avoiding manual repeated addition of materials, improving work efficiency, and reducing the labor intensity of staff; the volume of the storage bin can be adjusted according to the required amount of material, which is more convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The present invention will be further described below with reference to the accompanying drawings.

[0018] Figure 1 This is a front view of the material mixing equipment for producing a highly efficient, safe and environmentally friendly degreasing and deoiling agent according to the present invention;

[0019] Figure 2 It is a front view of the stirring mechanism of the present invention;

[0020] Figure 3 Schematic diagram of the three-dimensional structure of the stirring mechanism of the present invention;

[0021] Figure 4 Schematic diagram of the three-dimensional structure of the rotary drive assembly 2 of the present invention;

[0022] Figure 5 Schematic diagram of the three-dimensional structure of the rotary drive mechanism of the present invention;

[0023] Figure 6 A top view of the multi-way feed pipe of the present invention;

[0024] Figure 7 Schematic diagram of the three-dimensional structure of the multi-channel feeding pipe of the present invention;

[0025] Figure 8 It is a rear view of the multi-way feeding pipe of the present invention;

[0026] Figure 9 This is a front view of the storage bin of the present invention;

[0027] Figure 10 This is a cross-sectional view of the storage bin of the present invention (the feed hopper is omitted).

[0028] Figure 11 This is a top view of the storage bin of the present invention (the feed hopper is omitted)

[0029] Figure 12 It is a front view of the support mechanism of the present invention;

[0030] Figure 13 This is a top view of the support mechanism of the present invention (partial structure omitted)

[0031] Figure 14It is a cross-sectional view of the first telescopic support frame of the present invention.

[0032] Explanation of the accompanying symbols: 1. barrel; 1-1. first feed port; 1-2. upper panel; 2. stirring drive; 3. gear 1; 4. gear 2; 5. rotary support; 6. rotating seat; 7. scraper stirring shovel; 8. gear 3; 9. gear 4; 10. three-claw stirring shovel; 10-1. mounting frame; 10-2. stirring claw; 11. discharge door; 12. oil cylinder; 13. discharge swing arm; 14. discharge main shaft; 15. discharge bearing seat; 16. multi-way feed pipe; 16-1. main body; 16-2. first discharge port; 16-3. second feed port; 16-4. third feed port; 16-5. fourth feed port; 16-6. first discharge drive; 16-7. second discharge drive; 16-8. first baffle plate; 16-9. Second material baffle; 16-10, connecting rod; 17, storage bin; 17-1, fixed bin body; 17-2, adjusting bin body; 17-3, telescopic sleeve; 17-4, mounting seat; 17-5, connecting ear; 17-6, screw assembly; 17-7, feed hopper; 18, supporting mechanism; 18-1, base frame; 18-1-1, main frame; 18-1-2, auxiliary frame; 18-2, first telescopic support frame; 18-2-1, fixed column; 18-2-2, movable column; 18-2-3, lifting drive gear; 18-2-4, rack; 18-2-5, operating part; 18-2-6, positioning part; 18-3, second telescopic support frame; 18-4, connecting beam; 18-5, auxiliary support rod; 18-6, universal wheel. DETAILED DESCRIPTION

[0033] like Figure 1-14 As shown, a high-efficiency, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment includes a barrel body 1, a stirring mechanism is installed inside the barrel body 1, a multi-way feed pipe 16 is detachably installed on the first feed port 1-1 of the barrel body 1 by means of bolts, and each feed port on the multi-way feed pipe 16 is detachably installed with a volume-adjustable storage bin 17 by means of bolts, a discharge door 11 is installed on the right bottom of the barrel body 1, a driving mechanism for driving the discharge door 11 to open and close is installed on the outside of the barrel body 1, and a supporting mechanism 18 is connected to the bottom of the barrel body 1; in this embodiment, the multi-way feed pipe 16 and the storage bin 17 are both inclined, and a bracket can be installed on the barrel body 1 for auxiliary support, or the first feed port 1-1 can be set vertically upward, so that the multi-way feed pipe 16 and the storage bin 17 are vertically upward.

[0034] like Figure 2-4As shown, the stirring mechanism includes a rotating seat 6 rotatably installed inside the barrel body 1 through a rotating support 5, the rotating support 5 can be a bearing, the outer ring of the bearing is connected to the upper panel 1-2, and the inner ring of the bearing is connected to the rotating seat 6, and a rotating drive component 1 for driving the rotating seat 6 to rotate is provided above the rotating seat 6, and the rotating drive component 1 includes a stirring drive member 2, and the stirring drive member 2 is installed on the top surface of the upper panel 1-2 of the barrel body 1, and the stirring drive member 2 adopts a motor, and a gear 1 3 is installed at the output end of the stirring drive member 2, and a gear 2 4 meshing with the gear 1 3 is installed on the top of the rotating seat 6; two wall scraping stirring shovels 7 that rotate together with the rotating seat 6 are connected to the outside of the rotating seat 6, and the two wall scraping stirring shovels 7 are connected to the outside of the rotating seat 6. According to the distribution, two rotatable three-claw stirring shovels 10 are provided under the rotating base 6, and a rotating drive component 2 for driving the three-claw stirring shovel 10 to rotate is provided inside the rotating base 6. The rotating drive component 2 includes a gear 3 8, and the gear 3 8 is installed inside the rotating base 6. The outer side of the gear 3 8 is meshed and connected with a gear 4 9. The number of gears 4 9 is set to two, and the two gears 4 9 are symmetrically arranged. The central axis of the gear 4 9 is rotatably connected to the rotating base 6 through a bearing, and the three-claw stirring shovel 10 is installed at the bottom of the central axis of the gear 4 9; the three-claw stirring shovel 10 includes a mounting frame 10-1 connected to the central axis of the gear 4 9, and three stirring claws 10-2 are detachably mounted on the mounting frame 10-1 by bolts.

[0035] During operation, the stirring drive 2 is started, and the stirring drive 2 drives the gear 1 3 to rotate. The rotation of the gear 1 3 drives the gear 2 4 to rotate. The rotation of the gear 2 4 drives the rotating base 6 to rotate together. When the rotating base 6 rotates, it drives the scraping stirring shovel 7 to rotate. The rotation of the rotating base 6 also drives the gear 3 8 to rotate. The rotation of the gear 3 8 drives the two gears 4 9 to rotate. The rotation of the gear 4 9 drives the three-claw stirring shovel 10 to rotate. Since the two gears 4 9 are meshed with the gear 3 8, the rotation directions of the two gears 4 9 are opposite, that is, the rotation directions of the two three-claw stirring shovels 10 are opposite, which can better mix the materials.

[0036] like Figure 5 As shown, the driving mechanism includes a cylinder 12 installed on the outside of the barrel body 1, a discharge bearing seat 15 is connected to the outer wall of the barrel body 1, a discharge main shaft 14 is installed in the discharge bearing seat 15, the bottom of the discharge main shaft 14 is connected to the discharge gate 11, and the top of the discharge main shaft 14 is connected to the working end of the cylinder 12 through the discharge swing arm 13; the discharge gate 11 is a fan-shaped structure.

[0037] During operation, the piston rod of the oil cylinder 12 drives the discharge swing arm 13 to move, thereby driving the discharge main shaft 14 to rotate. The rotation of the discharge main shaft 14 drives the discharge door 11 to rotate, so that the discharge door 11 blocks the discharge port at the bottom of the barrel body 1.

[0038] like Figure 6-8 As shown, the multi-way feed pipe 16 includes a main body 16-1, a first discharge port 16-2 connected to the first feed port 1-1 is provided at the bottom of the main body 16-1, a third feed port 16-4, a second feed port 16-3, and a fourth feed port 16-5 are provided on the top of the main body 16-1 in sequence, a first baffle plate 16-8 and a second baffle plate 16-9 are connected to the inside of the main body 16-1 and on both sides of the second feed port 16-3 through a rotating shaft, and the front and rear sides of the main body 16-1 are respectively provided with a plurality of baffle plates for driving the feed port 16-1. The first discharging drive member 16-6 for rotating the second baffle plate 16-9 and the second discharging drive member 16-7 for driving the first baffle plate 16-8 to rotate, the first discharging drive member 16-6 is connected to the exposed end of the top rotating shaft of the second baffle plate 16-9 through the connecting rod 16-10, and the second discharging drive member 16-7 is connected to the exposed end of the top rotating shaft of the first baffle plate 16-8 through the connecting rod 16-10; the first discharging drive member 16-6 and the second discharging drive member 16-7 can be hydraulic cylinders, air cylinders, electric push rods or hydraulic push rods, etc.

[0039] When the working rod of the first discharging driving member 16-6 contracts, it drives the second baffle plate 16-9 to rotate to the position as shown in FIG. Figure 7 In the position shown, the second baffle plate 16-9 covers the second feed port 16-3; the working rod of the second discharging drive member 16-7 extends, driving the first baffle plate 16-8 to rotate to the position shown. Figure 7 In the position shown, the first baffle plate 16-8 blocks the third feed port 16-4; at this time, only the fourth feed port 16-5 is open, and the raw materials in the storage bin 17 corresponding to the fourth feed port 16-5 can enter the barrel body 1. Afterwards, the working rod of the first discharging drive member 16-6 extends, driving the second baffle plate 16-9 to rotate toward the fourth feed port 16-5, blocking the fourth feed port 16-5. The second feed port 16-3 is opened, and the raw materials in the storage bin 17 corresponding to the second feed port 16-3 can be added to the barrel body 1. Finally, the working rod of the second discharging drive member 16-7 retracts, driving the first baffle plate 16-8 to rotate toward the second feed port 16-3, blocking the second feed port 16-3. The third feed port 16-4 is opened, and the raw materials in the storage bin 17 corresponding to the third feed port 16-4 can be added to the barrel body 1. The unloading sequence can be controlled by the first unloading drive member 16-6 and the second unloading drive member 16-7.

[0040] like Figure 9-11As shown, the storage bin 17 includes a fixed bin body 17-1, and an adjusting bin body 17-2 is provided on the upper and lower sides of the fixed bin body 17-1. One end of the adjusting bin body 17-2 is inserted into the fixed bin body 17-1, and the other end of the adjusting bin body 17-2 is connected to a mounting seat 17-4. A telescopic sheath 17-3 is connected between the mounting seat 17-4 and the fixed bin body 17-1. The telescopic sheath 17-3 is made of soft material, and the two ends of the telescopic sheath 17-3 are respectively connected to the mounting seat 17-4 and the fixed bin body 17-1. The silo body 17-1 is connected, and the outer sides of the upper and lower mounting seats 17-4 are positioned by four sets of screw assemblies 17-6. A connecting ear 17-5 is welded on the outer side of the mounting seat 17-4, and a through hole is provided on the connecting ear 17-5 for the screw in the screw assembly 17-6 to pass through. The top surface of the adjusting silo body 17-2 located above is connected to the feed hopper 17-7, and the mounting seat 17-4 located below is connected to the second feed port 16-3 or the third feed port 16-4 or the fourth feed port 16-5 by bolts.

[0041] When the volume of the storage bin 17 needs to be expanded, the mounting seat 17-4 is pulled outward to drive the adjusting bin body 17-2 to move away from the fixed bin body 17-1, so that the overlapping part of the adjusting bin body 17-2 and the fixed bin body 17-1 is reduced. Afterwards, the nut of the screw assembly 17-6 locks the position of the screw, thereby fixing the position of the adjusting bin body 17-2.

[0042] like Figure 12-14 As shown, the support mechanism 18 includes a base frame 18-1, and the base frame 18-1 includes a main frame body 18-1-1 and an auxiliary frame body 18-1-2. The top surface of the main frame body 18-1-1 is installed with a first telescopic support frame 18-2 and a second telescopic support frame 18-3. The front and rear sides of the main frame body 18-1-1 and the corresponding positions of the first telescopic support frame 18-2 and the second telescopic support frame 18-3 are connected with auxiliary frames 18-1-2. The first telescopic support frame 18-2 and the second telescopic support frame 18-3 are hinged to the left and right sides of the bottom surface of the barrel body 1 respectively. The bottom surfaces of the main frame body 18-1-1 and the auxiliary frame body 18-1-2 are both installed with universal wheels 18-6; the universal wheels 18-6 can adopt universal wheels with brake devices to facilitate fixing the device, or adjustable feet can be installed on the inner side of the universal wheels 18-6.

[0043] The first telescopic support frame 18-2 and the second telescopic support frame 18-3 have the same structure. Taking the first telescopic support frame 18-2 as an example to introduce its specific structure, the first telescopic support frame 18-2 includes a fixed column 18-2-1 connected to the top surface of the base frame 18-1, and a mobile column 18-2-2 is slidably provided inside the fixed column 18-2-1. A rack 18-2-4 is installed on the side of the mobile column 18-2-2. A protective shell is connected to the side of the fixed column 18-2-1. A rack 18-2-4 is rotatably installed inside the protective shell. The meshing lifting drive gear 18-2-3, the exposed end of the central shaft of the lifting drive gear 18-2-3 is installed with an operating member 18-2-5 for driving the lifting drive gear 18-2-3 to rotate, the operating member 18-2-5 can be a hand wheel, and the fixed column 18-2-1 is also installed with a positioning member 18-2-6 for positioning the movable column 18-2-2, the positioning member 18-2-6 is a positioning bolt or a positioning pin, the positioning bolt passes through the fixed column 18-2-1 and is inserted into the positioning hole of the movable column 18-2-2.

[0044] In order to enhance the structural strength of the support mechanism 18, a connecting crossbeam 18-4 is connected between the two fixed columns 18-2-1, and an inclined auxiliary support rod 18-5 is connected between the fixed columns 18-2-1 and the base frame 18-1.

[0045] During operation, the operating member 18-2-5 drives the lifting drive gear 18-2-3 to rotate, and the rotation of the lifting drive gear 18-2-3 drives the rack 18-2-4 to rise or fall, thereby driving the movable column 18-2-2 to rise or fall, thereby adjusting the overall height of the support mechanism 18. After the mixing work is completed, the height of the first telescopic support frame 18-2 and the second telescopic support frame 18-3 can be adjusted to make the height of the first telescopic support frame 18-2 higher than the height of the second telescopic support frame 18-3, so that the barrel body 1 is tilted toward the discharge door 11, which facilitates the discharge of the material in the barrel body 1.

[0046] The working process of the present invention is as follows:

[0047] First, the raw materials are placed in the corresponding storage bin 17 in the order in which they are added, and the raw materials are added in sequence through the multi-way feed pipe 16. The stirring mechanism stirs and mixes the raw materials to make them evenly mixed; after the mixing is completed, the height of the first telescopic support frame 18-2 and the second telescopic support frame 18-3 are adjusted to tilt the barrel body 1 toward the side of the discharge door 11, and the driving mechanism drives the discharge door 11 to open, and the mixed materials are discharged cleanly.

[0048] The embodiments described above are merely descriptions of preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Without departing from the spirit of the present invention, various modifications and improvements made to the technical solutions of the present invention by ordinary technicians in this field should fall within the scope of protection determined by the claims of the present invention.

Claims

1. An efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment, characterized by: The invention comprises a barrel (1), wherein a stirring mechanism is provided inside the barrel (1), a multi-way feeding pipe (16) is provided on a first feeding port (1-1) of the barrel (1), a plurality of storage bins (17) with adjustable volumes are provided on the multi-way feeding pipe (16), a discharge door (11) is provided at the bottom right side of the barrel (1), a driving mechanism for driving the discharge door (11) to open and close is provided on the outside of the barrel (1), and a supporting mechanism (18) is provided below the barrel (1).

2. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 1 is characterized by: The stirring mechanism comprises a rotating seat (6) arranged inside the barrel (1); a rotating drive component 1 for driving the rotating seat (6) to rotate is arranged above the rotating seat (6); a wall scraping stirring shovel (7) rotating together with the rotating seat (6) is arranged outside the rotating seat (6); a self-rotating three-claw stirring shovel (10) is arranged below the rotating seat (6); and a rotating drive component 2 for driving the three-claw stirring shovel (10) to rotate is arranged inside the rotating seat (6).

3. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 2 is characterized by: The rotary drive assembly 1 includes a stirring drive member (2), the stirring drive member (2) is arranged on the top surface of the upper panel (1-2) of the barrel (1), the output end of the stirring drive member (2) is provided with a gear 1 (3), and the top of the rotating seat (6) is provided with a gear 2 (4) meshing with the gear 1 (3).

4. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 2 is characterized by: The rotary drive assembly 2 includes a gear 3 (8), which is arranged inside the rotating seat (6), and the outer side of the gear 3 (8) is meshedly connected with a gear 4 (9), and the bottom of the central axis of the gear 4 (9) is provided with the three-claw stirring shovel (10).

5. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 4 is characterized by: The three-claw stirring shovel (10) comprises a mounting frame (10-1) connected to the central axis of the gear four (9), and three stirring claws (10-2) are arranged on the mounting frame (10-1).

6. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 1 is characterized by: The driving mechanism comprises an oil cylinder (12) arranged outside the barrel body (1), a discharge bearing seat (15) is arranged on the outer wall of the barrel body (1), a discharge main shaft (14) is arranged in the discharge bearing seat (15), the bottom of the discharge main shaft (14) is connected to the discharge door (11), and the top of the discharge main shaft (14) is connected to the working end of the oil cylinder (12) through a discharge swing arm (13).

7. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 1 is characterized by: The multi-way feed pipe (16) includes a main body (16-1), the bottom of the main body (16-1) is provided with a first discharge port (16-2) connected to the first feed port (1-1), the top of the main body (16-1) is provided with a third feed port (16-4), a second feed port (16-3), and a fourth feed port (16-5) in sequence, the interior of the main body (16-1) and located on both sides of the second feed port (16-3) are provided with a first baffle plate (16-8) and a second baffle plate (16-9), and the front and rear sides of the main body (16-1) are respectively provided with a first discharge drive member (16-6) for driving the second baffle plate (16-9) to rotate and a second discharge drive member (16-7) for driving the first baffle plate (16-8) to rotate.

8. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 1 is characterized by: The storage bin (17) comprises a fixed bin body (17-1), and an adjusting bin body (17-2) is provided on both the upper and lower sides of the fixed bin body (17-1), and a mounting seat (17-4) is provided at one end of the adjusting bin body (17-2) away from the fixed bin body (17-1), and a telescopic sheath (17-3) is provided between the mounting seat (17-4) and the fixed bin body (17-1). The outer sides of the upper and lower mounting seats (17-4) are positioned by multiple groups of screw assemblies (17-6), and a feed hopper (17-7) is provided on the top surface of the adjusting bin body (17-2) located above, and the mounting seat (17-4) located below is connected to the multi-way feed pipe (16).

9. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 1 is characterized by: The support mechanism (18) comprises a base frame (18-1), a top surface of the base frame (18-1) being provided with a first telescopic support frame (18-2) and a second telescopic support frame (18-3), the first telescopic support frame (18-2) and the second telescopic support frame (18-3) being hinged to the left and right sides of the bottom surface of the barrel body (1), respectively, and a universal wheel (18-6) being provided on the bottom surface of the base frame (18-1).

10. The efficient, safe and environmentally friendly degreasing and deoiling agent production material mixing equipment according to claim 9, characterized in that: The first telescopic support frame (18-2) includes a fixed column (18-2-1) arranged on the top surface of the base frame (18-1), a movable column (18-2-2) is arranged inside the fixed column (18-2-1), a rack (18-2-4) is arranged on the side of the movable column (18-2-2), a lifting drive gear (18-2-3) meshing with the rack (18-2-4) is arranged on the fixed column (18-2-1), an operating member (18-2-5) for driving the lifting drive gear (18-2-3) to rotate is arranged on the outer side of the lifting drive gear (18-2-3), and a positioning member (18-2-6) for positioning the movable column (18-2-2) is also arranged on the fixed column (18-2-1).