Chemical additive production feeding device

By using a clamping groove driven by a hydraulic cylinder and controlled by a solenoid valve, the problem of cumbersome operation of adding liquid and powdered additives separately in existing chemical additive production feeding devices has been solved, realizing efficient material addition and control, and improving production efficiency.

CN223969901UActive Publication Date: 2026-03-06YUANPING TONGLI CHEM
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Patent Information

Application Number
CN202520592783.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-06
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing chemical additive production feeding devices require separate addition of liquid and powder additives, which is cumbersome and affects work efficiency.

Method used

A chemical additive production feeding device was designed, which uses a clamping groove driven by a hydraulic cylinder and controlled by a solenoid valve to manage the position and feeding of liquid, solid and powder raw material tanks respectively, and uses solenoid valves and butterfly valves to achieve the separate addition of materials with different properties.

Benefits of technology

It enables simple control and separate addition of materials with different properties, improves the efficiency of the feeding device in the production of chemical auxiliaries, and avoids interference between materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of chemical additive production, in particular to a chemical additive production feeding device, which comprises a fixed seat, a chemical additive production device feed port, a liquid raw material tank and a solid raw material tank, a chemical additive adding driving structure is arranged above the fixed seat, a fixed additive crushing structure is arranged above the solid raw material tank, and the fixed additive crushing structure is arranged above the fixed seat. A movable additive discharging structure is arranged above the feeding hole of the chemical additive production device. According to the chemical additive production feeding device, a power source is connected to start a hydraulic cylinder, the hydraulic cylinder pushes a clamping groove to the left side to transversely move, at the moment, a discharging pipe at the lower end of a powder raw material tank slides under the cooperation effect of a sliding block and a sliding groove, powder raw materials can be added by opening a rightmost solenoid valve, and similarly, the leftmost solenoid valve can be used for controlling adding of liquid raw materials; therefore, the materials with different properties can be separately added, the control is relatively simple, the raw materials do not interfere with one another, and the use efficiency of the chemical additive production feeding device is improved.
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Description

Technical Field

[0001] This utility model relates to the field of chemical auxiliary agent production technology, specifically a chemical auxiliary agent production feeding device. Background Technology

[0002] Chemical auxiliaries are auxiliary chemicals added in industrial production to improve the production process, increase product quality and yield, or to endow products with certain unique application properties. They are also known as additives. When using chemical auxiliaries, the raw materials of the chemical auxiliaries need to be added to the working chamber to react with the materials in the working chamber.

[0003] For example, the authorization announcement number "CN218945017U" is titled "A Chemical Additive Production Feeding Device." When there are clumps of chemical additives, opening the cylinder causes the pressure plate to squeeze downwards, crushing the clumps of chemical additive raw materials, which then fall through a filter screen into a metering box. Existing chemical additive production feeding devices use the same feeding device to add chemical additives into the reaction device. Since chemical additives include not only solid particles but also liquid and powder additives, current chemical additive production feeding devices require different chemical additives to be fed separately to ensure that liquid and powder additives do not mix. However, when feeding separately, operators need to manually add different chemical additives one by one, which is cumbersome and complicated, resulting in low working efficiency of the chemical additive production feeding device. Utility Model Content

[0004] The purpose of this invention is to solve the problems of poor cleaning effect and limited product quality of existing cleaning devices used in intelligent mechanical manufacturing, and to propose a chemical additive production feeding device.

[0005] To achieve the above objectives, this utility model provides the following technical solution:

[0006] Design a chemical auxiliary agent production feeding device, including a fixed base, a chemical auxiliary agent production device inlet, a liquid raw material tank and a solid raw material tank. A chemical auxiliary agent addition driving structure is provided above the fixed base, a fixed auxiliary agent crushing structure is provided above the solid raw material tank, and a movable auxiliary agent feeding structure is provided above the chemical auxiliary agent production device inlet.

[0007] Preferably, the chemical additive addition driving structure includes connecting blocks and hydraulic cylinders. The connecting blocks are fixedly installed above the fixed base. Vertical rods are fixedly installed above the two connecting blocks. Support rings are fixedly installed at the top of the two vertical rods. Hydraulic cylinders are fixedly connected to the inner sides of the two support rings. Clamping grooves are fixedly connected to the front ends of the two hydraulic cylinders.

[0008] Preferably, a powder raw material tank is fixedly connected to the inner right end of the clamping groove, a solid raw material tank is fixedly connected to the inner middle of the clamping groove, and a liquid raw material tank is fixedly connected to the inner left end of the clamping groove.

[0009] Preferably, the movable feeding structure for the auxiliary agent includes a guide rod and a solenoid valve. The guide rod is fixedly installed above the feed inlet of the chemical auxiliary agent production device. Both ends of the guide rod are fixedly connected to the inside of a vertical rod. A sliding groove is fixedly opened on the inner side of the guide rod. Multiple sliders are slidably connected inside the sliding groove. Feeding pipes are fixedly connected to the outer sides of the multiple sliders. Solenoid valves are fixedly installed at the top ends of two feeding pipes. A butterfly valve is fixedly connected to the upper middle part of the feeding pipe.

[0010] Preferably, the two solenoid valves are fixedly connected to the lower ends of the liquid raw material tank and the powder raw material tank, the butterfly valve is fixedly connected to the lower end of the solid raw material tank, and scale lines are fixedly connected to the outer walls of the liquid raw material tank, the solid raw material tank and the powder raw material tank.

[0011] Preferably, the fixed additive pulverizing structure includes a top cover and a transmission rod. The top cover is movably connected above the solid raw material tank. A threaded groove is fixedly opened on the inner side of the top cover. The inner side of the threaded groove is threadedly connected to the top of the solid raw material tank. A motor is fixedly installed on the top of the top cover. A transmission rod is fixedly connected to the lower end of the output shaft of the motor. A pulverizing blade is fixedly installed on the lower end of the transmission rod.

[0012] The chemical additive production feeding device proposed in this utility model has the following advantages: For example, when powder raw materials need to be added, the power supply is connected and the hydraulic cylinder is started. The hydraulic cylinder pushes the clamping groove to the left to move laterally. At this time, the feed pipe at the lower end of the powder raw material tank will slide under the action of the slider and the chute until the feed pipe at the lower end of the powder raw material tank is directly in front of the feed inlet of the chemical additive production device. The rightmost solenoid valve can be opened to add powder raw materials. Similarly, the leftmost solenoid valve can be used to control the addition of liquid raw materials, while solid raw materials need to be crushed and then fed through the lower butterfly valve. This allows materials of different properties to be added separately, making the control simpler and preventing the raw materials from interfering with each other, thus improving the efficiency of the chemical additive production feeding device. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0014] Figure 2 for Figure 1 A frontal sectional view;

[0015] Figure 3 for Figure 1 Top view diagram;

[0016] Figure 4 for Figure 2 Enlarged sectional view of section A in the middle;

[0017] Figure 5 for Figure 2 Enlarged sectional view of section B in the middle;

[0018] Figure 6 for Figure 2 Enlarged sectional view of section C.

[0019] In the diagram: 1. Fixed base; 2. Inlet of chemical auxiliary agent production device; 3. Liquid raw material tank; 4. Solid raw material tank; 5. Powder raw material tank; 6. Chemical auxiliary agent addition drive structure; 61. Connecting block; 62. Vertical rod; 63. Support ring; 64. Hydraulic cylinder; 65. Clamping groove; 7. Movable auxiliary agent feeding structure; 71. Guide rod; 72. Slide groove; 73. Feeding pipe; 74. Slider; 75. Solenoid valve; 76. Butterfly valve; 8. Fixed auxiliary agent crushing structure; 81. Top cover; 82. Motor; 83. Threaded groove; 84. Transmission rod; 85. Crushing blade; 9. Scale line. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings:

[0021] Example 1:

[0022] Please see Figure 1-6 In this embodiment, a chemical additive production feeding device includes a fixed base 1, a chemical additive production device inlet 2, a liquid raw material tank 3, and a solid raw material tank 4. The liquid raw material tank 3, the solid raw material tank 4, and the powder raw material tank 5 are all made of transparent PVC plastic and can hold chemical additives of different properties. A chemical additive adding driving structure 6 is provided above the fixed base 1, a fixed additive crushing structure 8 is provided above the solid raw material tank 4, and a movable additive feeding structure 7 is provided above the chemical additive production device inlet 2.

[0023] The chemical additive addition drive structure 6 includes a connecting block 61 and a hydraulic cylinder 64. The connecting block 61 is fixedly installed above the fixed base 1 and welded to the fixed base 1. The two connecting blocks 61 can support the welding and fixing of the vertical rod 62. The vertical rod 62 is fixedly installed above the two connecting blocks 61. The top of the two vertical rods 62 is fixed with a support ring 63. The two horizontally opposite hydraulic cylinders 64 can be fixed above the vertical rods 62 with bolts. The front end of the two hydraulic cylinders 64 is provided with a clamping groove 65 made of stainless steel.

[0024] The clamping groove 65 has three internal recesses, which can be used to fix the liquid raw material tank 3, solid raw material tank 4 and powder raw material tank 5 respectively with bolts. When the hydraulic cylinder 64 is connected to the power supply, the hydraulic cylinders 64 on both sides can push the clamping groove 65 in the middle to move laterally. The clamping groove 65 can then drive the three liquid raw material tanks 3, solid raw material tanks 4 and powder raw material tanks 5 to move laterally and adjust the position of the raw material tanks to be fed. The hydraulic cylinders 64 are fixedly connected to the inner side of the two support rings 63, and the clamping grooves 65 are fixedly connected to the front end of the two hydraulic cylinders 64.

[0025] A powder raw material tank 5 is fixedly connected to the right inner side of the clamping groove 65, a solid raw material tank 4 is fixedly connected to the middle inner side of the clamping groove 65, and a liquid raw material tank 3 is fixedly connected to the left inner side of the clamping groove 65.

[0026] The movable feed structure 7 for additives includes a guide rod 71 and a solenoid valve 75. The guide rod 71 is fixedly installed above the feed inlet 2 of the chemical additive production device. The guide rod 71 is horizontally welded between two vertical rods 62. The guide rod 71 has a groove 72 cut inside to restrict and guide the left and right sliding of the slider 74. The two ends of the guide rod 71 are fixedly connected to the inside of the vertical rod 62. The inner side of the guide rod 71 is fixedly provided with a groove 72. Multiple sliders 74 are slidably connected inside the groove 72. The sliders 74 can drive the outer feed pipe 73 to move laterally. For example, when it is necessary to add powder raw materials, the power is connected to start the hydraulic cylinder 64. The hydraulic cylinder 64 pushes the clamping groove 65 to the left to move laterally.

[0027] At this time, the feed pipe 73 at the lower end of the powder raw material tank 5 will slide under the combined action of the slider 74 and the chute 72 until the feed pipe 73 at the lower end of the powder raw material tank 5 is directly facing the feed inlet 2 of the chemical auxiliary agent production device. The rightmost solenoid valve 75 can be opened to add powder raw materials. Similarly, the leftmost solenoid valve 75 can be used to control the addition of liquid raw materials. Solid raw materials need to be crushed and then fed through the lower butterfly valve 76. The feed pipe 73 is fixedly connected to the outside of multiple sliders 74. Solenoid valves 75 are fixedly installed at the top of the two feed pipes 73. A butterfly valve 76 is fixedly connected to the upper middle of the feed pipe 73.

[0028] The guide rod 71 is horizontally welded between the two vertical rods 62. The guide rod 71 has a groove 72 cut inside to restrict and guide the left and right sliding of the slider 74. In turn, the slider 74 can drive the outer feed pipe 73 to move horizontally. For example, when it is necessary to add powder raw materials, the power is connected and the hydraulic cylinder 64 is started. The hydraulic cylinder 64 pushes the clamping groove 65 to the left to move horizontally. At this time, the feed pipe 73 at the lower end of the powder raw material tank 5 will slide under the combined action of the slider 74 and the groove 72.

[0029] Once the lower feed pipe 73 of the powder raw material tank 5 is aligned with the feed inlet 2 of the chemical auxiliary agent production device, the rightmost solenoid valve 75 can be opened to add powder raw materials. Similarly, the leftmost solenoid valve 75 can be used to control the addition of liquid raw materials. Solid raw materials need to be crushed and then fed through the lower butterfly valve 76. This allows materials of different properties to be added separately, making control simpler and preventing interference between raw materials, thus improving the efficiency of the chemical auxiliary agent production feeding device.

[0030] Two solenoid valves 75 are fixedly connected to the lower ends of the liquid raw material tank 3 and the powder raw material tank 5, and a butterfly valve 76 is fixedly connected to the lower end of the solid raw material tank 4. Scale lines 9 are fixedly connected to the outer walls of the liquid raw material tank 3, the solid raw material tank 4, and the powder raw material tank 5. The scale lines 9 are set on the outside of the transparent liquid raw material tank 3, the solid raw material tank 4, and the powder raw material tank 5, so that the material feeding situation inside the liquid raw material tank 3, the solid raw material tank 4, and the powder raw material tank 5 can be easily observed.

[0031] Working principle:

[0032] Chemical auxiliary agent production feeding device is used for adding and feeding chemical auxiliary agent raw materials. Chemical auxiliaries, also known as additives or compounding agents, refer to auxiliary chemicals added during the production process to improve the process, enhance product quality, or impart specific properties to the product. They are widely used in many industrial fields, including the chemical industry, plastics industry, rubber industry, paper industry, leather industry, building materials industry, textile industry, printing and dyeing industry, and daily chemical industry.

[0033] The horizontal adjustment position structure of the raw material tank in the chemical auxiliary agent production feeding device:

[0034] The connecting block 61 is welded above the fixed base 1. The two connecting blocks 61 can support the welding and fixing of the vertical rod 62. The two horizontally opposite hydraulic cylinders 64 can be fixed above the vertical rod 62 with bolts. The front end of the two hydraulic cylinders 64 is provided with a clamping groove 65 made of stainless steel. The clamping groove 65 has three grooves inside. The three grooves can be used to fix the liquid raw material tank 3, the solid raw material tank 4 and the powder raw material tank 5 with bolts respectively. Then, when the hydraulic cylinders 64 are connected to the power supply, the two hydraulic cylinders 64 can push the middle clamping groove 65 to move laterally. The clamping groove 65 can drive the three liquid raw material tanks 3, solid raw material tanks 4 and powder raw material tanks 5 to move laterally and adjust the position of the raw material tank to be fed.

[0035] The feeding device for chemical auxiliaries production controls the feeding structure separately:

[0036] The guide rod 71 is horizontally welded between the two vertical rods 62. The guide rod 71 has a groove 72 cut inside to restrict and guide the left and right sliding of the slider 74. In turn, the slider 74 can drive the outer feed pipe 73 to move horizontally. For example, when it is necessary to add powder raw materials, the power is connected and the hydraulic cylinder 64 is started. The hydraulic cylinder 64 pushes the clamping groove 65 to the left to move horizontally. At this time, the feed pipe 73 at the lower end of the powder raw material tank 5 will slide under the action of the slider 74 and the groove 72 until the feed pipe 73 at the lower end of the powder raw material tank 5 is directly facing the feed port 2 of the chemical auxiliary agent production device. The rightmost solenoid valve 75 can be opened to add powder raw materials. Similarly, the leftmost solenoid valve 75 can be used to control the addition of liquid raw materials. Solid raw materials need to be crushed and then fed through the lower butterfly valve 76. This allows materials of different properties to be added separately, making the control simpler and preventing the raw materials from interfering with each other.

[0037] The scale line 9 is set on the outside of the transparent liquid raw material tank 3, solid raw material tank 4 and powder raw material tank 5, so that the material feeding situation inside the liquid raw material tank 3, solid raw material tank 4 and powder raw material tank 5 can be easily observed.

[0038] Example 2:

[0039] Please see Figure 1-6 In this embodiment, a chemical additive production feeding device further includes a fixed additive crushing structure 8, which includes a top cover 81 and a transmission rod 84. The top cover 81 is movably connected above the solid raw material tank 4. A threaded groove 83 is fixedly opened on the inner side of the top cover 81. The top cover 81 can be rotated and screwed above the solid raw material tank 4 using the threaded groove 83. Then, in order to reduce the obstruction of solid raw material feeding, a power supply is connected to start the motor 82.

[0040] The output shaft of motor 82 drives the lower transmission rod 84 to rotate at high speed. The transmission rod 84 uses the crushing blade 85 near the bottom to crush large solid raw materials into small pieces for easy feeding. The inner side of the threaded groove 83 is threadedly connected to the top of the solid raw material tank 4. The top of the top cover 81 is fixedly installed with motor 82. Motor 82 is a servo motor. When selecting a servo motor, you can choose a motor model that meets the requirements. The lower end of the output shaft of motor 82 is fixedly connected to transmission rod 84, and the lower end of transmission rod 84 is fixedly installed with crushing blade 85.

[0041] Working principle:

[0042] The top cover 81 can be rotated and screwed onto the solid raw material tank 4 using the threaded groove 83. Then, in order to reduce the obstruction of solid raw material feeding, the power supply is connected and the motor 82 is started. The output shaft of the motor 82 drives the transmission rod 84 below to rotate at high speed. The transmission rod 84 uses the crushing blade 85 near the bottom to crush large pieces of solid raw material into small pieces for easy feeding.

[0043] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes in form and detail are possible within the scope of the claims.

Claims

1. A chemical additive production feeding device, comprising a fixed seat (1), a chemical additive production device feeding port (2), a liquid raw material tank (3) and a solid raw material tank (4), characterized in that: The upper portion of the fixing base (1) is provided with a chemical additive adding driving structure (6), the upper portion of the solid raw material tank (4) is provided with a fixed additive crushing structure (8), and the upper portion of the chemical additive production device feed inlet (2) is provided with an additive movable discharging structure (7).

2. The chemical adjuvant production charging device according to claim 1, characterized in that: The chemical additive adding driving structure (6) comprises connecting blocks (61) and hydraulic cylinders (64), the connecting blocks (61) are fixedly installed on the upper portion of the fixing base (1), vertical rods (62) are fixedly installed on the upper portions of the two connecting blocks (61), support rings (63) are fixedly connected to the top ends of the two vertical rods (62), the hydraulic cylinders (64) are fixedly connected to the inner sides of the two support rings (63), and clamping grooves (65) are fixedly connected to the front ends of the two hydraulic cylinders (64).

3. The chemical adjuvant production charging device according to claim 2, characterized in that: The inner side right end of the clamping groove (65) is fixedly connected with a powder raw material tank (5), the inner side middle of the clamping groove (65) is fixedly connected with the solid raw material tank (4), and the inner side left end of the clamping groove (65) is fixedly connected with the liquid raw material tank (3).

4. The chemical adjuvant production charging device according to claim 1, characterized by: The additive movable discharging structure (7) comprises guide rods (71) and electromagnetic valves (75), the guide rods (71) are fixedly arranged on the upper portion of the chemical additive production device feed inlet (2), the two ends of the guide rods (71) are fixedly connected to the interiors of the vertical rods (62), the inner side of the guide rod (71) is fixedly provided with a sliding groove (72), a plurality of sliding blocks (74) are slidingly connected to the interior of the sliding groove (72), a plurality of the sliding blocks (74) are fixedly connected with discharging pipes (73), the top ends of the two discharging pipes (73) are fixedly installed with the electromagnetic valves (75), and the middle upper portion of the discharging pipe (73) is fixedly connected with a butterfly valve (76).

5. The chemical adjuvant production charging device according to claim 4, characterized in that: The two electromagnetic valves (75) are fixedly connected to the lower ends of the liquid raw material tank (3) and the powder raw material tank (5), the butterfly valve (76) is fixedly connected to the lower end of the solid raw material tank (4), and the outer walls of the liquid raw material tank (3), the solid raw material tank (4) and the powder raw material tank (5) are all fixedly connected with scale lines (9).

6. The chemical adjuvant production charging device according to claim 1, characterized by: The fixed additive crushing structure (8) comprises a top cover (81) and a transmission rod (84), the top cover (81) is movably connected to the upper portion of the solid raw material tank (4), the inner side of the top cover (81) is fixedly provided with a threaded groove (83), the inner side of the threaded groove (83) is threadedly connected with the top end of the solid raw material tank (4), the top end of the top cover (81) is fixedly installed with a motor (82), the output shaft lower end of the motor (82) is fixedly connected with the transmission rod (84), and the lower end of the transmission rod (84) is fixedly installed with a crushing blade (85).