Stearyl glycyrrhetinate filling device

The anti-overflow plate and annular groove design of the stearyl glycyrrhetinic acid ester filling device solve the problem of dust rising during the filling process, thereby reducing waste and environmental pollution.

CN223686876UActive Publication Date: 2025-12-19HUAIAN BROTHER BIOLOGICAL TECH
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Patent Information

Application Number
CN202423025855.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-19
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Dust is easily generated during the filling of stearyl glycyrrhetinic acid ester powder, leading to waste and air pollution.

Method used

A stearyl glycyrrhizic acid ester filling device was designed, including a feeding assembly, a transmission assembly, and a material handling device. An overflow prevention plate and annular groove are used to form a closed space to capture and buffer the dust, thereby reducing waste and air pollution.

Benefits of technology

It effectively reduces dust waste, lowers air pollution, and improves filling efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a stearyl glycyrrhetinate filling device, which relates to the technical field of filling equipment, and comprises a rack, a blanking assembly, a transmission assembly and a material taking device, the blanking assembly comprises a blanking hopper, a material conveying pipe and an anti-overflow plate, the blanking hopper is arranged on the rack, one end of the material conveying pipe is arranged at the bottom of the blanking hopper, the other end of the material conveying pipe is connected with the anti-overflow plate, a discharging groove and an annular groove are formed in the anti-overflow plate, the discharging groove is communicated with an inner cavity of the material conveying pipe, and the annular groove is formed in the outer side of the discharging groove; the transmission assembly comprises a material changing disc, a material box and a motor, the material changing disc and the motor are assembled on the machine frame, a plurality of filling openings are formed in the edge of the material changing disc, the material box is placed at the filling openings, and the motor drives the material changing disc set to rotate so that the filling positions can move to the position of the discharging hopper and the position of the material taking device in a reciprocating mode. According to the utility model, through the blanking assembly, the technical problem that dust is easy to raise and waste is caused when materials are filled is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to filling equipment technical field especially a stearic alcohol glycyrrhetinic acid ester filling device. BACKGROUND

[0002] Stearic alcohol glycyrrhetinic acid ester is a kind of chemical substance, its molecular formula is C48H82O4, it is a kind of white or yellowish white crystalline powder, it has wide application in cosmetics, such as skin care lotion, shower gel, cream, mask, sunscreen, etc., mainly play the role of skin conditioning, and filling machine is a kind of equipment that can realize quantitative filling of powder.

[0003] However, in the filling process, powder is easy to produce dust phenomenon between filling nozzle and filling bottle, further cause certain waste, and powder is scattered to the surrounding air and brings adverse effects to air environment, in view of this, it is necessary to improve the existing technology to solve the above problems. INNOVATION CONTENT

[0004] The stearic alcohol glycyrrhetinic acid ester filling device can improve the technical problem of causing dust and waste during filling in the related art.

[0005] The stearic alcohol glycyrrhetinic acid ester filling device provided in the embodiment of the application comprises:

[0006] A rack, a blanking assembly, a transmission assembly and a material taking device;

[0007] The blanking assembly comprises a blanking hopper, a material conveying pipe and an anti-overflow plate, the blanking hopper is arranged on the rack, one end of the material conveying pipe is arranged at the bottom of the blanking hopper, and the other end is connected with the anti-overflow plate, an outlet groove and an annular groove are formed in the anti-overflow plate, the outlet groove is communicated with the inner cavity of the material conveying pipe, and the annular groove is arranged outside the outlet groove;

[0008] The transmission assembly comprises a material changing disc, a material box and a motor, the material changing disc and the motor are arranged on the rack, a plurality of filling ports are arranged at the edge of the material changing disc, the material box is placed in the filling port, and the motor drives the material changing disc to rotate so that the filling position reciprocally moves to the blanking hopper and the material taking device;

[0009] The material taking device is used for taking out the material box filled with material.

[0010] The technical solution described above in the embodiment of the application has at least the following technical effects:

[0011] When powder needs to be filled, the material box is placed at the filling opening, the motor is started, the material box is conveyed by rotating the material changing disc, the material box moves to the material falling hopper, the material at the material falling hopper falls into the material box through the material conveying pipe and the material outlet slot, and the filling is performed.

[0012] In some embodiments, the anti-overflow plate bottom is provided with a sealing ring.

[0013] In some embodiments, the material taking device comprises a first cylinder and a pulling block, the first cylinder is arranged on the rack, the pulling block is installed on the movable end of the cylinder, and the top portion of the material box extends to the outside of the material changing disc.

[0014] In some embodiments, the material taking device further comprises a finished product channel, and the pulling block and the finished product channel are located on the same straight line.

[0015] In some embodiments, the transmission assembly further comprises a limiting strip, the limiting strip is arranged on the rack, is in an arc shape, and is located on the outside of the material changing disc.

[0016] In some embodiments, a scratch-preventing gap is arranged between the material changing disc and the limiting strip.

[0017] In some embodiments, the rack is provided with a positioning assembly, the positioning assembly comprises a limiting strip and a second cylinder, the second cylinder is arranged on the rack, the output end of the second cylinder penetrates through the limiting strip and is connected with the limiting strip, and the limiting strip is in an arc shape.

[0018] In some embodiments, the rack is provided with a feeding channel, and the feeding channel extends to the material changing disc.

[0019] In summary, the utility model has at least one of the following beneficial technical effects:

[0020] 1. When powder causes dust raising during filling, the raised dust can be splashed into the closed space formed by the material box cavity and the annular groove for buffering, and then falls into the material box, thereby reducing waste and hardly affecting the air environment. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, the drawings in the following description only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0022] Figure 1 A perspective structural schematic diagram of a stearyl glycyrrhetinate filling device provided by the present application is shown in the figure.

[0023] Figure 2 A structure diagram after the overflow plate, the material replacement disc and the limiting strip are cut;

[0024] Figure 3 A Figure 2 enlarged view of part A;

[0025] Figure 4 A Figure 2 enlarged view of part B.

[0026] In the figure, various reference signs are as follows:

[0027] 10, rack; 11, feeding channel; 20, material falling assembly; 21, material falling hopper; 22, material conveying pipe; 23, overflow plate; 231, material outlet; 232, annular groove; 24, sealing ring; 30, transmission assembly; 31, material replacement disc; 311, filling opening; 32, material box; 33, motor; 34, limiting strip; 35, anti-scratch gap; 40, material taking device; 41, first cylinder; 42, pull block; 43, finished product material channel; 50, positioning assembly; 51, positioning strip; 52, second cylinder. DETAILED DESCRIPTION

[0028] In order to make the technical problems, technical solutions and beneficial effects of the present application more clearly understood, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.

[0029] Based on this, the technical problem of causing dust raising and waste during filling of materials in the related art can be improved, and the present application provides the following solutions.

[0030] Please refer to Figures 1 to 4 , the present application provides a stearyl glycyrrhetinate filling device, which comprises a rack 10, a material falling assembly 20, a transmission assembly 30 and a material taking device 40.

[0031] The blanking assembly 20 comprises a blanking hopper 21, a material conveying pipe 22 and an anti-overflow plate 23, the blanking hopper 21 is arranged on the frame 10, one end of the material conveying pipe 22 is arranged at the bottom of the blanking hopper 21, the other end is connected with the anti-overflow plate 23, the anti-overflow plate 23 is provided with a discharging groove 231 and an annular groove 232, the discharging groove 231 is communicated with the inner cavity of the material conveying pipe 22, and the annular groove 232 is arranged outside the discharging groove 231.

[0032] The transmission assembly 30 comprises a material changing disc 31, a material box 32 and a motor 33, the material changing disc 31 and the motor 33 are arranged on the frame 10, the edge of the material changing disc 31 is provided with a plurality of filling openings 311, the material box 32 is placed at the filling opening 311, and the motor 33 drives the material changing disc 31 to rotate so that the filling position reciprocally moves to the blanking hopper 21 and the material taking device 40.

[0033] The material taking device 40 is used for taking out the material box 32 filled with materials.

[0034] As can be seen from the above, when the powder needs to be filled, the material box 32 is placed at the filling opening 311, the motor 33 is started, the material changing disc 31 is rotated, the material box 32 is conveyed, the material box 32 moves to the blanking hopper 21, the materials at the blanking hopper 21 pass through the material conveying pipe 22 and the discharging groove 231 and fall into the material box 32 to be filled, at this time, the bottom of the anti-overflow plate 23 is attached to the top wall of the material box 32, when the powder materials are scattered in the blanking process, the scattered dust will splash into the closed space formed by the inner cavity of the material box 32 and the annular groove 232 to be buffered, and finally falls into the material box 32 under the action of gravity, the material changing disc 31 is continuously rotated, the material box 32 filled with materials is conveyed, the material taking device 40 is used to take out the material box 32 filled with materials, and the subsequent material box 32 is filled and conveyed in the same way, therefore, when the filling materials cause dust scattering, the scattered dust will splash into the closed space formed by the inner cavity of the material box 32 and the annular groove 232 to be buffered, and then falls into the material box 32, so that the waste is reduced and the air environment is difficult to be affected.

[0035] Optionally, in some embodiments, referring to Figures 1 to 2 , the frame 10 is provided with a feeding channel 11, and the feeding channel 11 extends to the material changing disc 31.

[0036] In this way, the staff can place the material box 32 in the feeding channel 11 and make the material box 32 enter the filling opening 311 of the material changing disc 31 along the feeding channel 11, so that the operation is simple and convenient.

[0037] Optionally, in some embodiments, referring to Figures 2 to 3 , the bottom of the anti-overflow plate 23 is provided with a sealing ring 24.

[0038] Thus, when the material box 32 moves to the material falling groove 21 under the rotation conveying of the material changing disc 31, the material at the material falling groove 21 falls into the material box 32 through the material conveying pipe 22 and the material outlet groove 231, and the material is loaded, at this time, the sealing ring 24 is attached to the top wall of the material box 32 to form a seal, when the powder material is scattered in the falling process, the scattered dust is splashed into the sealed space formed by the inner cavity of the material box 32 and the annular groove 232 to buffer, further reducing the waste.

[0039] Optionally, in some embodiments, referring to Figures 1 to 4 , the material taking device 40 comprises a first cylinder 41 and a pulling block 42, the first cylinder 41 is arranged on the rack 10, and the pulling block 42 is installed on the movable end of the cylinder, and the top part of the material box 32 extends to the outside of the material changing disc 31.

[0040] Thus, after the material box 32 is loaded with material, it moves to the material taking device 40 under the rotation conveying of the material changing disc 31, the first cylinder 41 is started, the pulling block 42 is moved until it is in contact with the material box 32, and the pushing operation is performed, the material taking operation is completed, and the top part of the material box 32 extends to the outside of the material changing disc 31, so that the pulling block 42 can be in contact with the material box 32 during the movement, and the conveying operation is further performed.

[0041] Optionally, in some embodiments, referring to Figures 1 to 4 , the material taking device 40 further comprises a finished product channel 43, and the pulling block 42 and the finished product channel 43 are located on the same straight line.

[0042] Thus, the material box 32 loaded with material falls into the finished product channel 43 during the pushing process of the pulling block 42, which facilitates subsequent processing operations.

[0043] Optionally, in some embodiments, referring to Figures 1 to 3 , the transmission assembly 30 further comprises a limiting strip 34, the limiting strip 34 is arranged on the rack 10, is arc-shaped, and is located outside the material changing disc 31.

[0044] Thus, during the transmission of the material box 32 at the filling opening 311 of the material changing disc 31, the opening of the filling opening 311 is blocked by the limiting strip 34, so that the material box 32 is difficult to separate from the filling opening 311 under the action of the centrifugal force during the transmission.

[0045] Optionally, in some embodiments, referring to Figures 1 to 3 , a scratch prevention gap 35 is arranged between the material changing disc 31 and the limiting strip 34.

[0046] In this way, the anti-scratch gap 35 is used to reduce the possibility of wear between the refill tray 31 and the material box 32 and the limiting strip 34 during the transmission of the material box 32 at the filling opening 311 of the refill tray 31.

[0047] Optionally, in some embodiments, referring to Figures 1 to 3 The rack 10 is provided with a positioning assembly 50, which includes a limiting strip 51 and a second air cylinder 52. The second air cylinder 52 is arranged on the rack 10, and the output end of the second air cylinder 52 penetrates the limiting strip 34 and is connected with the limiting strip 51. The limiting strip 51 is in an arc shape.

[0048] In this way, since the material box 32 is prone to shaking during the transmission at the filling opening 311 of the refill tray 31, the material box 32 is prone to misalignment with the anti-overflow plate 23 when the material box 32 moves to the material falling hopper 21, which may cause some of the raised dust to overflow during the subsequent material falling process. Therefore, the positioning assembly 50 is arranged, the second air cylinder 52 is started when the material box 32 moves to the material falling hopper 21, and the limiting strip 51 is moved to clamp and fix the material box 32 between the limiting strip 51 and the inner wall of the filling opening 311, thereby limiting the material box 32 and making it difficult for the material box 32 to misalign with the anti-overflow plate 23, so that some of the raised dust is difficult to overflow. The limiting strip 51 is in an arc shape, so that the limiting strip 51 can be in close contact with the side wall of the material box 32 during the positioning process, thereby improving the positioning effect.

[0049] The above only describes the preferred embodiments of the present application and is not used to limit the present application. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A stearyl glycyrrhetinate filling device characterized by: The machine frame (10), the blanking assembly (20), the transmission assembly (30) and the material taking device (40) are included. The blanking assembly (20) includes a blanking hopper (21), a material conveying pipe (22) and an anti-overflow plate (23), the blanking hopper (21) is arranged on the machine frame (10), one end of the material conveying pipe (22) is arranged at the bottom of the blanking hopper (21), the other end is connected with the anti-overflow plate (23), the anti-overflow plate (23) is provided with a discharging groove (231) and an annular groove (232), the discharging groove (231) is communicated with the inner cavity of the material conveying pipe (22), and the annular groove (232) is arranged outside the discharging groove (231). The transmission assembly (30) includes a material changing disc (31), a material box (32) and a motor (33), the material changing disc (31) and the motor (33) are arranged on the machine frame (10), a plurality of filling openings (311) are arranged on the edge of the material changing disc (31), the material box (32) is placed at the filling opening (311), and the motor (33) drives the material changing disc (31) to rotate so that the filling position reciprocally moves to the blanking hopper (21) and the material taking device (40). The material taking device (40) is used for taking out the material box (32) filled with materials.

2. The stearyl glycyrrhetinate filling device of claim 1, wherein: The anti-overflow plate (23) is provided with a sealing ring (24) at the bottom.

3. A stearyl glycyrrhetinate filling device according to claim 2, characterized in that: The material taking device (40) includes a first cylinder (41) and a pulling block (42), the first cylinder (41) is arranged on the machine frame (10), the pulling block (42) is installed at the movable end of the cylinder, and the top part of the material box (32) extends to the outside of the material changing disc (31).

4. The glycyrrhizinic acid esters of stearyl alcohol filling device according to claim 3, characterized in that: The material taking device (40) further includes a finished product channel (43), and the pulling block (42) and the finished product channel (43) are located on the same straight line.

5. The stearyl glycyrrhetinate filling device according to any one of claims 1-4, wherein: The transmission assembly (30) further includes a limiting strip (34), the limiting strip (34) is arranged on the machine frame (10) and is in an arc shape and located outside the material changing disc (31).

6. A stearyl glycyrrhetinate filling device according to claim 5, characterized in that: A scratch-preventing gap (35) is arranged between the material changing disc (31) and the limiting strip (34).

7. A stearyl glycyrrhetinate filling device according to claim 6, characterized in that: The machine frame (10) is provided with a positioning assembly (50), the positioning assembly (50) includes a positioning strip (51) and a second cylinder (52), the second cylinder (52) is arranged on the machine frame (10), the output end of the second cylinder (52) penetrates through the limiting strip (34) and is connected with the positioning strip (51), and the positioning strip (51) is in an arc shape.

8. The stearyl glycyrrhetinate filling device of claim 1, wherein: The machine frame (10) is provided with a feeding channel (11), and the feeding channel (11) extends to the material changing disc (31).