Packaging equipment for compound emulsifying thickener

By designing packaging equipment with adjustable feeding speed, the problem of dust pollution caused by unstable feeding speed of powder materials was solved, protecting the health of workers and improving the workshop environment.

CN223508538UActive Publication Date: 2025-11-04杭州恒旺食品科技有限公司
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Patent Information

Application Number
CN202423064088.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-04
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing powder packaging equipment cannot adjust the feeding speed, resulting in dust and smoke drifting around, endangering the health of workers and polluting the workshop air.

Method used

A packaging device comprising a material bucket, a support assembly, a bag clamping assembly, and a sealing assembly was designed. The feeding speed is adjusted by a quantity control assembly, the bag clamping assembly secures the packaging bag, and the sealing assembly seals the bag, thereby reducing dust pollution.

Benefits of technology

It achieves adjustable feeding speed, reduces air pollution in the workshop, and protects the health of employees.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses packaging equipment for a compound emulsifying thickening agent, and aims to provide packaging equipment capable of adjusting the blanking speed and reducing the air pollution of a workshop at the same time. The plastic packaging machine comprises a material barrel, a supporting assembly, a bag clamping assembly and a plastic packaging assembly, the supporting assembly is provided with a control table and comprises a first supporting base and a second supporting base, the first supporting base and the second supporting base are distributed in a bilateral symmetry mode with the material barrel as the center, and the bag clamping assembly is located at the lower end of the material barrel. The bag clamping assembly comprises a first clamping piece and a second clamping piece, one end of the first clamping piece is connected with the inner side wall of the first supporting seat, one end of the second clamping piece is connected with the inner side wall of the second supporting seat, the second supporting seat is provided with a quantity control assembly, and one end of the quantity control assembly is connected with the inner side wall of the second supporting seat; the feeding device has the advantages that the feeding speed can be adjusted, and meanwhile pollution to air in a workshop is reduced.
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Description

Technical Field

[0001] This utility model relates to the technical field of thickener packaging, and in particular to a packaging device for compound emulsified thickeners. Background Technology

[0002] Thickeners, also known as gelling agents, are substances that can increase the viscosity of latex and liquids. They can be divided into two main categories: natural and synthetic. When used in food, they are called pastes. Most thickeners are compound types that also have emulsifying effects, so they can emulsify liquids while thickening them.

[0003] Chinese Patent Publication No. CN219313080U, published on July 7, 2023, discloses a dustproof powder packaging machine. It includes a support base and a material bin, with the bin mounted on the upper outer wall of the support base. The material bin has an inlet at the top and a outlet at the bottom. It also includes a conveying pipe, a flow-stopping device, a support device, a cover, a fixing component, multiple sets of guide columns, and multiple sets of springs. The top of the conveying pipe is connected to the outlet of the material bin via the flow-stopping device. The cover slides vertically and horizontally on the outer wall of the conveying pipe, and has a vent at its top. The fixing component is fixedly mounted on the outer wall of the conveying pipe. The multiple sets of guide columns slide vertically and horizontally on the fixing component, each with a limit plate at its top, and their bottoms are connected to the top of the cover. The drawback of this invention is that it cannot effectively regulate the feeding speed of the powder material. When the powder is too fine and the feeding speed is too fast, a large amount of dust and smoke will be emitted from the outlet, potentially causing respiratory harm to nearby workers. Utility Model Content

[0004] This invention aims to overcome the problems of existing technologies, such as the inability to adjust the feeding speed of powdered materials and the lack of a closed space during the packaging process. It provides a packaging device that can adjust the feeding speed while reducing air pollution in the workshop.

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

[0006] A packaging device for compound emulsifying thickeners includes a material tank, a support assembly, a bag clamping assembly, and a sealing assembly. The support assembly is equipped with a control console and includes a first support base and a second support base, which are symmetrically distributed about the material tank. The left and right sides of the material tank are connected to the first and second support bases, respectively. The bag clamping assembly is located at the lower end of the material tank and includes a first clamp and a second clamp. One end of the first clamp is connected to the inner wall of the first support base, and one end of the second clamp is connected to the inner wall of the second support base. The second support base is equipped with a volume control assembly, which is connected to the inner wall of the second support base at one end and to the material tank at the other end. The sealing assembly is located between the bag clamping assembly and the volume control assembly and includes a first sealing element and a second sealing element, which are symmetrically distributed about the material tank. One end of the first sealing element is connected to the inner wall of the first support base, and one end of the second sealing element is connected to the inner wall of the second support base.

[0007] The material hopper serves as a container for the thickener to be packaged and simultaneously feeds the thickener into the packaging bag located in the bag clamping assembly. A support assembly secures the material hopper and the bag clamping assembly, which holds the packaging bag in place. A first clamp and a second clamp work together to open or close the packaging bag, facilitating the feeding of the thickener from the material hopper to the bag. A flow control assembly regulates the feeding speed of the thickener from the material hopper to the packaging bag, preventing excessive dust generation due to rapid feeding. A control console controls the operation of the equipment, and a sealing assembly seals the finished packaging bag. This design provides a packaging device with adjustable feeding speed while reducing air pollution in the workshop.

[0008] Preferably, the first support base has an F-shaped cross-section and includes a vertical plate, a first horizontal plate, and a second horizontal plate. The first horizontal plate is located at the top of the vertical plate and its sidewall is connected to the vertical plate. The second horizontal plate is located at the bottom of the first horizontal plate and its sidewall is connected to the inner sidewall of the vertical plate. A first cylinder is located at the top of the second horizontal plate, and its output end is connected to a material container. The first cylinder is connected to an external power supply via a control console. The first cylinder, connected to the material container, is used to adjust the position of the material container so that when solvent is being delivered into the packaging bag, the material container descends into the bag opening, and when delivery is complete, the material container rises out of the bag opening, without affecting subsequent bag transfer and preventing the dust thickener from being dispersed. This design reduces air pollution in the workshop.

[0009] Preferably, a first connecting seat is provided on the left side of the material bin, which is connected to the side wall of the material bin. A second connecting seat is provided on the right side of the material bin, and a second support seat is connected to the side wall of the material bin via the second connecting seat. The bottom end of the first connecting seat is connected to the output end of the first cylinder. The first and second connecting seats are used to connect the first and second support seats. This design realizes the function of adjusting the vertical position of the material bin.

[0010] Preferably, the material container includes a cylindrical container, a conical container, and a conveying pipe. The bottom end of the cylindrical container is connected to the bottom surface of the conical container. The top end of the cylindrical container is provided with a feed inlet and a first rotary motor, which is connected to the cylindrical container. A stirring rod is provided inside both the cylindrical and conical containers. The top end of the stirring rod is connected to the output end of the first rotary motor, which is connected to an external power supply via a control console. Several stirring blades are installed on the side wall of the stirring rod. The conveying pipe is located at the top of the conical container, with one end connected to the conical container. A circular hole is provided on one side wall of the conveying pipe, and the flow control component is slidably connected to the conveying pipe through the circular hole. The first rotary motor causes the stirring rod to rotate, simultaneously driving the stirring blades to agitate the thickener in the material container, thus continuously conveying the thickener into the conveying pipe. This design solves the problem of difficult thickener feeding from the material container.

[0011] Preferably, the flow control component includes a second rotary motor, a first connecting column, and a baffle. One end of the first connecting column is connected to the output end of the second rotary motor, and the other end is connected to the baffle. The baffle is placed inside the conveying pipe, and its radius is less than or equal to the inner diameter of the conveying pipe. The second rotary motor passes through the first connecting column and through a circular hole, connecting to the baffle inside the conveying pipe. The second rotary motor is connected to an external power supply via a control console. The second rotary motor causes the first connecting column to rotate, allowing adjustment of the angle between the baffle and the cross-section of the conveying pipe according to the size of the packaging bag or the fineness of the thickener, thus achieving adjustable feeding speed. This design realizes the function of adjustable feeding speed.

[0012] Preferably, the first clamping member includes a second connecting post and a first telescopic member. One end of the second connecting post is connected to a first support base, and the other end is connected to the first telescopic member. The second clamping member includes a second cylinder, a third connecting post, and a second telescopic member. One end of the second cylinder is connected to a second support base, and the other end is connected to one end of the third connecting post. The other end of the third connecting post is connected to the second telescopic member. The first and second telescopic members are symmetrically distributed about the material bucket. The first, second, and second telescopic members are all connected to an external power supply via a control console. The second connecting post is used to fix the position of the first telescopic member. The output end of the second cylinder is connected to the third connecting post to adjust the position of the second telescopic member. The first and second telescopic members clamp the packaging bag tightly. This design achieves the fixation of the packaging bag.

[0013] Preferably, the first telescopic component includes a guide post and a telescopic post. The guide post has an internally hollow structure, and a third cylinder is installed inside the guide post. The output end of the third cylinder is connected to the telescopic post, and the third cylinder is connected to an external power supply via a control console. The outer diameter of the telescopic post is less than or equal to the inner diameter of the guide post. A first clamp is installed on the side wall of the guide post facing the second telescopic component, and a second clamp is installed on the side wall of the telescopic post facing the second telescopic component. Elastic pads are installed on the first and second clamps. The third cylinder is used to realize the telescopic function of the telescopic post, thereby changing the position of the second clamp and realizing the opening and closing function of the packaging bag. The elastic pad is used to increase the friction when the first and second clamps hold the packaging bag. This design realizes the functions of fixing the packaging bag and opening and closing the packaging bag.

[0014] Preferably, the guide post is equipped with an opening assembly, which includes an air pump, a fourth connecting post, and a suction cup. The air pump is connected to the inner wall of the guide post, and its output end is connected to one end of the fourth connecting post, which is a hollow structure. The other end of the fourth connecting post is connected to the suction cup. The air pump is connected to an external power supply via a control console. The opening assembly is used to open the clamped packaging bag, facilitating the feeding of material into the bag through the delivery tube. The air pump enables the suction function of the suction cup, allowing the packaging bag to separate from its two sides. This design achieves the function of opening the packaging bag during feeding.

[0015] Preferably, the first sealing component includes a fourth cylinder, a fifth connecting post, and a heating plate. One end of the fourth cylinder is connected to the inner wall of the first support base, and the other end of the fourth cylinder is an output end connected to one end of the fifth connecting post. The other end of the fifth connecting post is connected to the heating plate. Both the fourth cylinder and the heating plate are connected to an external power supply via a control console. The fourth cylinder is used to realize the telescopic function of the first sealing component. After the material is fed, the fourth cylinder drives the heating plate to move towards the packaging bag end to seal the packaged bag. This design achieves the sealing of the packaging bag.

[0016] The beneficial effects of this utility model are: it is a packaging equipment that can adjust the feeding speed and reduce air pollution in the workshop. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 yes Figure 1 Sectional view of A in the middle;

[0019] Figure 3 This is a top view of the control component;

[0020] Figure 4 This is a top view of the first clamping component;

[0021] Figure 5 This is a top view of the second clamp;

[0022] Figure 6 This is the front view of the opening component;

[0023] Figure 7 This is a front view of the first sealing piece.

[0024] In the diagram: 1. Material bucket, 101. First connecting seat, 102. Second connecting seat, 103. Feed inlet, 104. First rotary motor, 105. Stirring rod, 106. Stirring blade, 107. Conveying pipe, 108. Circular hole, 2. Support assembly, 201. First support base, 202. Second support base, 203. Vertical plate, 204. First horizontal plate, 205. Second horizontal plate, 206. First cylinder, 3. Bag clamping assembly, 301. First clamp, 302. Second clamp, 4. Control console, 5. Cylindrical bucket, 6. Conical bucket, 7. Metering assembly, 701. Second rotary motor, 702. First connecting post; 703. Baffle; 8. Second connecting post; 801. First telescopic component; 802. Second cylinder; 803. Third connecting post; 804. Second telescopic component; 805. Guide post; 806. Telescopic post; 807. Third cylinder; 808. First clamp; 809. Second clamp; 810. Elastic pad; 811. Opening assembly; 812. Air pump; 813. Fourth connecting post; 814. Suction cup; 9. Sealing assembly; 901. First sealing component; 902. Second sealing component; 903. Fourth cylinder; 904. Fifth connecting post; 905. Heating plate. Detailed Implementation

[0025] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0026] like Figure 1As shown, a packaging device for compound emulsifying thickeners includes a material tank 1, a support assembly 2, a bag clamping assembly 3, and a sealing assembly 9. The support assembly 2 is equipped with a control console 4 and includes a first support base 201 and a second support base 202. The first support base 201 and the second support base 202 are symmetrically distributed about the material tank 1. The left and right sides of the material tank 1 are connected to the first support base 201 and the second support base 202, respectively. The bag clamping assembly 3 is located at the lower end of the material tank 1 and includes a first clamp 301 and a... The second clamp 302 is connected to the inner wall of the first support base 201 at one end, and the second clamp 302 is also connected to the inner wall of the second support base 202 at one end. The second support base 202 is equipped with a quantity control component 7, which is connected to the inner wall of the second support base 202 at one end and to the material bucket 1 at the other end. The first support base 201 has an F-shaped cross-section and includes a vertical plate 203, a first horizontal plate 204, and a second horizontal plate 205. The first horizontal plate 204 is located at the top of the vertical plate 203. The first horizontal plate 204 has its sidewall connected to the vertical plate 203. The second horizontal plate 205 is located at the lower end of the first horizontal plate 204. One sidewall of the second horizontal plate 205 is connected to the inner sidewall of the vertical plate 203. The top of the second horizontal plate 205 is provided with a first cylinder 206. The output end of the first cylinder 206 is connected to the material bucket 1. The sealing assembly 9 is located between the bag clamping assembly 3 and the quantity control assembly 7. The sealing assembly 9 includes a first sealing element 901 and a second sealing element 902. The first sealing element 901 and the second sealing element 902 are symmetrically distributed on the left and right sides with the material bucket 1 as the center. One end of the first sealing component 901 is connected to the inner wall of the first support base 201, and one end of the second sealing component 902 is connected to the inner wall of the second support base 202. The first cylinder 206 is connected to an external power supply through the control console 4. A first connecting seat 101 is provided on the left side of the material barrel 1, and the first connecting seat 101 is connected to the side wall of the material barrel 1. A second connecting seat 102 is provided on the right side of the material barrel 1, and the second support base 202 is connected to the side wall of the material barrel 1 through the second connecting seat 102. The bottom end of the first connecting seat 101 is connected to the output end of the first cylinder 206.

[0027] like Figure 1 and Figure 2As shown, the material tank 1 includes a cylindrical tank 5, a conical tank 6, and a conveying pipe 107. The bottom end of the cylindrical tank 5 is connected to the bottom surface of the conical tank 6. The top end of the cylindrical tank 5 is provided with a feed inlet 103 and a first rotary motor 104. The first rotary motor 104 is connected to the cylindrical tank 5. A stirring rod 105 is provided inside the cylindrical tank 5 and the conical tank 6. The top end of the stirring rod 105 is connected to the output end of the first rotary motor 104. The first rotary motor 104 is connected to an external power supply through a control console 4. Several stirring blades 106 are installed on the side wall of the stirring rod 105. The conveying pipe 107 is located at the top of the conical tank 6. One end of the conveying pipe 107 is connected to the conical tank 6. A circular hole 108 is provided on one side wall of the conveying pipe 107. The metering component 7 is slidably connected to the conveying pipe 107 through the circular hole 108. The bottom end of the conveying pipe 107 is shaped like an oblique opening.

[0028] like Figure 1 , Figure 3 , Figure 4 , Figure 5 and Figure 6As shown, the control assembly 7 includes a second rotary motor 701, a first connecting post 702, and a baffle 703. One end of the first connecting post 702 is connected to the output end of the second rotary motor 701, and the other end of the first connecting post 702 is connected to the baffle 703. The baffle 703 is placed inside the conveying pipe 107, and the radius of the baffle 703 is less than or equal to the inner diameter of the conveying pipe 107. The second rotary motor 701 passes through the first connecting post 702 through the circular hole 108 and is connected to the baffle 703 inside the conveying pipe 107. The second rotary motor 701 is connected to an external power supply through the control console 4. The first clamp 301 includes... The system includes a second connecting column 8 and a first telescopic member 801. One end of the second connecting column 8 is connected to the first support base 201, and the other end of the second connecting column 8 is connected to the first telescopic member 801. The second clamping member 302 includes a second cylinder 802, a third connecting column 803, and a second telescopic member 804. One end of the second cylinder 802 is connected to the second support base 202, and the other end of the second cylinder 802 is connected to one end of the third connecting column 803. The other end of the third connecting column 803 is connected to the second telescopic member 804. The first telescopic member 801 and the second telescopic member 804 are symmetrically distributed about the material bucket 1. The first telescopic component 801, the second telescopic component 804, and the second cylinder 802 are all connected to an external power supply via the control console 4. The first telescopic component 801 includes a guide post 805 and a telescopic post 806. The guide post 805 has an internally hollow structure, and a third cylinder 807 is installed inside the guide post 805. The output end of the third cylinder 807 is connected to the telescopic post 806. The third cylinder 807 is connected to an external power supply via the control console 4. The outer diameter of the telescopic post 806 is less than or equal to the inner diameter of the guide post 805. A first clamp 808 is installed on the side wall of the guide post 805 facing the second telescopic component 804. A second clamp 809 is installed on the side wall facing the second telescopic member 804. An elastic pad 810 is installed on the first clamp 808 and the second clamp 809. An opening assembly 811 is installed on the guide post 805. The opening assembly 811 includes an air pump 812, a fourth connecting post 813 and a suction cup 814. The air pump 812 is connected to the inner side wall of the guide post 805. The output end of the air pump 812 is connected to one end of the fourth connecting post 813. The fourth connecting post 813 has a hollow structure. The other end of the fourth connecting post 813 is connected to the suction cup 814. The air pump 812 is connected to an external power supply through the control console 4.

[0029] like Figure 1 and Figure 7 As shown, the first sealing component 901 includes a fourth cylinder 903, a fifth connecting post 904, and a heating plate 905. One end of the fourth cylinder 903 is connected to the inner wall of the first support base 201, and the other end of the fourth cylinder 903 is an output end and is connected to one end of the fifth connecting post 904. The other end of the fifth connecting post 904 is connected to the heating plate 905. Both the fourth cylinder 903 and the heating plate 905 are connected to an external power supply through the control console 4.

[0030] In use, the inlet 103 works in conjunction with an external feeder to deliver thickener into the material container 1. Connecting to an external power source, the first rotary motor 104 is started via the control console 4. The stirring rod 105 drives the stirring blades 106 to stir the thickener. The thickener in the cylindrical container 5 and the conical container 6 is fed into the delivery pipe 107. The second cylinder 802, the first cylinder 206, the second rotary motor 701, and the third cylinder 807 are activated. The first clamp 301 and the second clamp 302 clamp the packaging bag. The air pump 812 drives the suction cup 814 through the hollow fourth connecting column 813 to clean the left and right sides of the packaging bag. Adsorption causes the packaging bag to open, and the material tank 1 moves the conveying pipe 107 into the packaging bag. The second rotary motor 701 drives the baffle 703 to adjust to a suitable angle, and the thickener is conveyed into the packaging bag. After the conveying is completed, the second rotary motor 701 drives the baffle 703 to return to its original position, causing the conveying pipe 107 to close. The material tank 1 then moves the conveying pipe 107 out of the packaging bag. The third cylinder 807 drives the telescopic column 806 to move outward, causing the opened packaging bag to close. The fourth cylinder 903 drives the first sealing component 901 and the second sealing component 902 to clamp the packaging bag, and the heating plate 905 seals the packaging bag. The above steps realize the packaging function of the equipment.

Claims

1. A packaging device for compound emulsifying thickeners, characterized in that, The device includes a material bucket (1), a support assembly (2), a bag clamping assembly (3), and a sealing assembly (9). The support assembly (2) is equipped with a control console (4). The support assembly (2) includes a first support base (201) and a second support base (202). The first support base (201) and the second support base (202) are symmetrically distributed around the material bucket (1). The left and right sides of the material bucket (1) are connected to the first support base (201) and the second support base (202) respectively. The bag clamping assembly (3) is located at the lower end of the material bucket (1). The bag clamping assembly (3) includes a first clamp (301) and a second clamp (302). One end of the first clamp (301) is connected to the inner wall of the first support base (201), and the second clamp (302) is connected to the inner wall of the first support base (201). One end is connected to the inner wall of the second support (202), and the second support (202) is equipped with a volume control component (7). One end of the volume control component (7) is connected to the inner wall of the second support (202), and the other end of the volume control component (7) is connected to the material bucket (1). The sealing component (9) is located between the bag clamping component (3) and the volume control component (7). The sealing component (9) includes a first sealing component (901) and a second sealing component (902). The first sealing component (901) and the second sealing component (902) are symmetrically distributed on the left and right sides with the material bucket (1) as the center. One end of the first sealing component (901) is connected to the inner wall of the first support (201), and one end of the second sealing component (902) is connected to the inner wall of the second support (202).

2. The packaging equipment for compound emulsifying thickeners according to claim 1, characterized in that, The first support base (201) has an F-shaped cross-section. The first support base (201) includes a vertical plate (203), a first horizontal plate (204), and a second horizontal plate (205). The first horizontal plate (204) is located at the top of the vertical plate (203). The side wall of the first horizontal plate (204) is connected to the vertical plate (203). The second horizontal plate (205) is located at the bottom of the first horizontal plate (204). One side wall of the second horizontal plate (205) is connected to the inner side wall of the vertical plate (203). The top of the second horizontal plate (205) is provided with a first cylinder (206). The output end of the first cylinder (206) is connected to the material bucket (1). The first cylinder (206) is connected to an external power supply through the control console (4).

3. The packaging equipment for compound emulsifying thickeners according to claim 2, characterized in that, The material barrel (1) is provided with a first connecting seat (101) on the left side, and the first connecting seat (101) is connected to the side wall of the material barrel (1). The material barrel (1) is provided with a second connecting seat (102) on the right side, and the second support seat (202) is connected to the side wall of the material barrel (1) through the second connecting seat (102). The bottom end of the first connecting seat (101) is connected to the output end of the first cylinder (206).

4. The packaging equipment for compound emulsifying thickeners according to claim 1, characterized in that, The material container (1) includes a cylindrical container (5), a conical container (6), and a conveying pipe (107). The bottom end of the cylindrical container (5) is connected to the bottom surface of the conical container (6). The top end of the cylindrical container (5) is provided with a feed inlet (103) and a first rotary motor (104). The first rotary motor (104) is connected to the cylindrical container (5). The cylindrical container (5) and the conical container (6) are provided with a stirring rod (105). The top end of the stirring rod (105) is connected to the first rotary motor (107). 4) Output connection: The first rotary motor (104) is connected to an external power supply through the control console (4). Several stirring blades (106) are installed on the side wall of the stirring rod (105). The conveying pipe (107) is located at the top of the conical barrel (6). One end of the conveying pipe (107) is connected to the conical barrel (6). A round hole (108) is provided on one side wall of the conveying pipe (107). The quantity control component (7) is slidably connected to the conveying pipe (107) through the round hole (108).

5. The packaging equipment for compound emulsifying thickeners according to claim 4, characterized in that, The control component (7) includes a second rotary motor (701), a first connecting post (702), and a baffle (703). One end of the first connecting post (702) is connected to the output end of the second rotary motor (701), and the other end of the first connecting post (702) is connected to the baffle (703). The baffle (703) is placed inside the conveying pipe (107), and the radius of the baffle (703) is less than or equal to the inner diameter of the conveying pipe (107). The second rotary motor (701) passes through the first connecting post (702) through the circular hole (108) and is connected to the baffle (703) inside the conveying pipe (107). The second rotary motor (701) is connected to an external power supply through the control console (4).

6. The packaging equipment for compound emulsifying thickeners according to claim 1, characterized in that, The first clamp (301) includes a second connecting post (8) and a first telescopic member (801). One end of the second connecting post (8) is connected to the first support base (201), and the other end of the second connecting post (8) is connected to the first telescopic member (801). The second clamp (302) includes a second cylinder (802), a third connecting post (803), and a second telescopic member (804). One end of the second cylinder (802) is connected to the second support base (202), and the other end of the second cylinder (802) is connected to one end of the third connecting post (803). The other end of the third connecting post (803) is connected to the second telescopic member (804). The first telescopic member (801) and the second telescopic member (804) are symmetrically distributed on the left and right sides with the material bucket (1) as the center. The first telescopic member (801), the second telescopic member (804), and the second cylinder (802) are all connected to an external power supply through the control console (4).

7. The packaging equipment for compound emulsifying thickeners according to claim 6, characterized in that, The first telescopic component (801) includes a guide post (805) and a telescopic post (806). The guide post (805) has an internal hollow structure. A third cylinder (807) is installed inside the guide post (805). The output end of the third cylinder (807) is connected to the telescopic post (806). The third cylinder (807) is connected to an external power supply through a control console (4). The outer diameter of the telescopic post (806) is less than or equal to the inner diameter of the guide post (805). A first clamp (808) is installed on the side wall of the guide post (805) facing the second telescopic component (804). A second clamp (809) is installed on the side wall of the telescopic post (806) facing the second telescopic component (804). An elastic pad (810) is installed on the first clamp (808) and the second clamp (809).

8. The packaging equipment for compound emulsifying thickeners according to claim 7, characterized in that, An opening assembly (811) is installed on the guide post (805). The opening assembly (811) includes an air pump (812), a fourth connecting post (813), and a suction cup (814). The air pump (812) is connected to the inner wall of the guide post (805). The output end of the air pump (812) is connected to one end of the fourth connecting post (813). The fourth connecting post (813) has a hollow structure. The other end of the fourth connecting post (813) is connected to the suction cup (814). The air pump (812) is connected to an external power supply through the control console (4).

9. The packaging equipment for compound emulsifying thickeners according to claim 1, characterized in that, The first sealing component (901) includes a fourth cylinder (903), a fifth connecting post (904), and a heating plate (905). One end of the fourth cylinder (903) is connected to the inner wall of the first support base (201), and the other end of the fourth cylinder (903) is an output end and is connected to one end of the fifth connecting post (904). The other end of the fifth connecting post (904) is connected to the heating plate (905). Both the fourth cylinder (903) and the heating plate (905) are connected to an external power supply through the control console (4).

Citation Information

Patent Citations

  • Dustproof powder packaging machine

    CN219313080U