Feeding mechanism of automatic enema boxing feeder

By designing a feeding mechanism that includes a conveyor, baffles, limit plates, inclined plates, correction components, and a feeding pipe, the problems of neat arrangement and upward orientation of the tubes during the cartoning process of enema were solved, achieving automated feeding and upward orientation of the tubes, thus improving cartoning efficiency.

CN223547003UActive Publication Date: 2025-11-14HENAN DAXIN PHARM CO LTD
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Patent Information

Application Number
CN202423174365.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-14
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The existing technology lacks an automated feeding method to ensure neat arrangement and upward orientation of the feeding tube during the packaging process of glycerin suppositories, resulting in the need for a large amount of manpower and resources, which is time-consuming and labor-intensive.

Method used

A feeding mechanism was designed, comprising a conveyor, baffle, limiting plate, inclined plate, correction component, base plate and feeding pipe. The inclined plate and limiting plate of the conveyor achieve neat arrangement of the enema tubes, the correction component ensures that the tubes face downwards, and then the feeding roller and belt realize the individual conveying and tube-oriented boxing.

Benefits of technology

It enables automated and orderly arrangement and individual delivery of glycerin suppositories, ensuring the tubing faces upwards, improving packaging efficiency and reducing manpower and material consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding mechanism of an automatic feeding machine for enema boxing, and relates to the related technical field of enema production. The device comprises a conveyor, a baffle, a base plate, a correction assembly and a feeding pipe, the correction assembly is arranged at one end of the conveyor, and the feeding pipe is arranged at the end, away from the conveyor, of the correction assembly; the conveyor comprises two side plates and two conveying rollers rotationally connected between the two side plates, vertical baffles are fixed to the two side plates, inclined plates inclining towards the center of the conveyor are fixed to the ends, close to the correcting assembly, of the baffles, and limiting plates are fixed to the ends, close to the correcting assembly, of the inclined plates. Through the arrangement of the conveyor, the baffle, the limiting plate, the inclined plate, the correction assembly, the base plate and the feeding pipe, the problem that before glycerine enema is boxed, an automatic feeding machine needs to conduct tidy arrangement and one-by-one conveying type feeding on glycerine enema is solved; and the problem that after glycerine enema is automatically fed, it needs to be guaranteed that a guide pipe faces upwards is solved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of glycerin suppository production, and in particular relates to a feeding mechanism for an automatic feeding machine for glycerin suppository packaging. Background Technology

[0002] There are two common types of glycerin suppositories: one is a glycerin-based formulation, and the other is a mannitol and magnesium sulfate formulation. Although the ingredients differ, their underlying principle is the same: both utilize the high concentration of glycerin or sorbitol, i.e., hyperosmotic effect, to soften stool, stimulate the intestinal wall, and reflexively induce a defecation reflex. In addition, their lubricating effect facilitates bowel movements. Glycerin suppositories are usually packaged in teardrop-shaped plastic bottles. To use, the tube is cut open. However, after filling and sealing, they need to be boxed, requiring an automatic feeding machine. But in practice, the following drawbacks still exist:

[0003] The primary issue in the caching process of glycerin suppositories is how to arrange them neatly and feed them one by one to ensure stable feeding and caching. Currently, there is no good automated method for caching and feeding of glycerin suppositories, which requires a lot of manpower and resources, making it time-consuming and labor-intensive.

[0004] Secondly, it is necessary to ensure that the tube of the enema is facing upwards when packaging. Therefore, this issue is particularly important in automated processing and needs to be properly addressed. Utility Model Content

[0005] The purpose of this utility model is to provide a feeding mechanism for an automatic feeding machine for glycerin suppositories. By setting up a conveyor, baffle, limit plate, inclined plate, correction component, base plate, and feeding pipe, it solves the problem that the automatic feeding machine needs to arrange the suppositories neatly and feed them one by one before packaging; and solves the problem that the feeding pipe needs to be kept facing upward after the automatic feeding of suppositories.

[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0007] This utility model is a feeding mechanism for an automatic feeding machine for opening and filling galangal, including a conveyor, a baffle, a base plate, a correction component and a feeding pipe. A correction component is provided at one end of the conveyor, and a base plate is provided above the correction component. A feeding pipe is provided at the end of the correction component away from the conveyor.

[0008] The conveyor includes two side plates and two conveying rollers rotatably connected between the two side plates. Vertical baffles are fixed on both side plates. An inclined plate that tilts toward the center of the conveyor is fixed at the end of the baffle near the correction component. A limit plate is fixed at the end of the inclined plate near the correction component.

[0009] The correction assembly includes two correction rods 1 and two correction rods 2, with one correction rod 2 below each correction rod 1. The upper part of the outer periphery of the two correction rods 1 is fixed together with a connecting rod 1, and the outer periphery of the correction rod 1 and the correction rod 2 located below it is fixed together with a connecting rod 2.

[0010] Furthermore, the conveyor also includes a conveyor belt sleeved around the two conveyor rollers, and a conveyor motor is fixed to the outside of one of the side plates, and the output shaft of the conveyor motor is fixed to the end of one of the conveyor rollers.

[0011] Furthermore, both the inclined plate and the limiting plate are located above the conveyor belt, and the end of the limiting plate near the correction component extends out of the conveyor belt and docks with the correction component.

[0012] Furthermore, the second connecting rod is located away from the center between the two corrector rods.

[0013] Furthermore, two sets of symmetrical mounting blocks are fixed to the bottom surface of the substrate, and the bottom of the mounting blocks is fixed to the upper outer periphery of the correction rod.

[0014] Furthermore, two feeding rollers are rotatably connected to the bottom of the base plate on both sides of the correction component, and a feeding belt is sleeved on the outer periphery of the two feeding rollers on the same side of the correction component. Two symmetrical feeding motors are also fixed at the upper end of the base plate, and the output shaft of each feeding motor is fixed to the top of the feeding roller located below it.

[0015] Furthermore, the feeding pipe is a downwardly inclined pipe, and the upper end of the feeding pipe contacts the end of the correction assembly away from the conveyor.

[0016] This utility model has the following beneficial effects:

[0017] This invention solves the problem of automatic feeding machines needing to neatly arrange and individually feed enema capsules before packaging them by setting up a conveyor, baffles, limiting plates, inclined plates, correction components, a base plate, and a feeding pipe. A large number of enema capsules are piled on the conveyor and blocked by the baffles, preventing them from falling off. As the conveyor operates, the enema capsules gradually move along the inclined plates towards the limiting plates. When they squeeze between the limiting plates, only a single enema capsule can pass through, automatically forming a straight line arrangement. This allows the enema capsules to be conveyed one by one into the correction component, where the rotating feeding rollers drive the feeding belt to contact the enema capsules in the correction component, guiding them one by one into the feeding pipe until the feeding operation is complete.

[0018] This invention solves the problem of ensuring the conduit of the enema is facing upwards after automatic feeding by setting a correction component. During feeding, when the enema enters the correction component, it is supported by the second correction rod and limited and stabilized by the first correction rod. Under the action of gravity, i.e. the enema's own structure, the conduit of the enema will be set downwards. When it moves into the feeding tube, the storage part of the enema will enter the feeding tube first, so the conduit will automatically face upwards. During subsequent boxing, this ensures that the head of the enema is facing upwards, which is convenient for boxing. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0020] Figure 1 A perspective view of the feeding mechanism of an automatic dispensing machine for glycerin suppositories;

[0021] Figure 2 This is a sectional view of the conveyor.

[0022] Figure 3 A bottom view of the substrate and its associated components;

[0023] Figure 4 To correct the structural diagram of the component;

[0024] Figure 5 A structural diagram showing the combination of a feeding belt and a correction assembly for conveying enemas.

[0025] Figure label:

[0026] 1. Conveyor; 101. Conveyor Roller; 102. Side Plate; 103. Conveyor Belt; 104. Conveyor Motor; 2. Baffle; 201. Inclined Plate; 202. Limiting Plate; 3. Base Plate; 301. Feeding Motor; 302. Mounting Block; 303. Feeding Roller; 304. Feeding Belt; 4. Correction Assembly; 401. Correction Rod 1; 402. Correction Rod 2; 403. Connecting Rod 1; 404. Connecting Rod 2; 5. Feeding Pipe. Detailed Implementation

[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0028] Please see Figure 1-5 As shown, this utility model is a feeding mechanism for an automatic feeding machine for opening and filling galangal, including a conveyor 1, a baffle 2, a base plate 3, a correction component 4 and a feeding pipe 5. The correction component 4 is provided at one end of the conveyor 1, and the base plate 3 is provided above the correction component 4. The feeding pipe 5 is provided at the end of the correction component 4 away from the conveyor 1.

[0029] When the enema is being boxed, it is conveyed by conveyor 1, then enters the calibration assembly 4, and then is sent out through the feeding pipe 5 to complete the boxing process.

[0030] The conveyor 1 includes two side plates 102 and two conveying rollers 101 rotatably connected between the two side plates 102. Vertical baffles 2 are fixed on both side plates 102. An inclined plate 201 inclined towards the center of the conveyor 1 is fixed at one end of the baffle 2 near the correction component 4. A limit plate 202 is fixed at one end of the inclined plate 201 near the correction component 4.

[0031] Both the inclined plate 201 and the limiting plate 202 are located above the conveyor belt 103, and the end of the limiting plate 202 near the correction component 4 extends out of the conveyor belt 103 and comes into contact with the correction component 4.

[0032] When the conveyor 1 is in operation, the conveyor roller 101 is installed on the side plate 102. The conveyor roller 101 rotates, thereby causing the conveyor belt 103 on its outer periphery to be used for conveying. As the conveyor 1 is working, the galactagogue gradually moves along the inclined plate 201 toward the limiting plate 202. When it squeezes into the space between the limiting plates 202, only a single galactagogue can pass through, so it will automatically form a straight line arrangement, allowing the galactagogue to be conveyed one by one.

[0033] The calibration assembly 4 includes two calibration rods 401 and two calibration rods 402, with one calibration rod 402 below each calibration rod 401. A connecting rod 403 is fixed to the upper part of the outer periphery of the two calibration rods 401, and a connecting rod 404 is fixed to the outer periphery of the calibration rods 401 and the calibration rods 402 below them.

[0034] When the enema enters the calibration assembly 4, it is supported by the second calibration rod 402 and limited and stabilized by the first calibration rod 401. Under the action of gravity, i.e. the enema's own structure, the enema's tube will be set downward.

[0035] The conveyor 1 also includes a conveyor belt 103 sleeved around the two conveyor rollers 101. A conveyor motor 104 is fixed to the outside of one of the side plates 102, and the output shaft of the conveyor motor 104 is fixed to the end of one of the conveyor rollers 101. The conveyor motor 104 can drive one of the conveyor rollers 101 to rotate and can move the other conveyor roller 101 and the conveyor belt 103 in conjunction, thereby facilitating the conveying of glycerin suppositories.

[0036] Link 2 404 is away from the center between the two correction links 2 402; it does not affect the passage of the sulphurant through the correction assembly 4.

[0037] Two sets of symmetrical mounting blocks 302 are fixed on the bottom surface of the substrate 3, and the bottom of the mounting blocks 302 is fixed to the upper part of the outer periphery of the correction rod 401; the substrate 3 is fixed to the correction rod 401 by the mounting blocks 302 to maintain stability.

[0038] Two feeding rollers 303 are rotatably connected to the bottom of the base plate 3 on both sides of the correction component 4, and a feeding belt 304 is sleeved on the outer periphery of the two feeding rollers 303 on the same side of the correction component 4. Two symmetrical feeding motors 301 are also fixed at the upper end of the base plate 3, and the output shaft of each feeding motor 301 and the top of the feeding roller 303 located below it are fixed.

[0039] Two feeding rollers 303 are fitted together with a feeding belt 304. The feeding belt 304 contacts the encapsulated sulcus inside the correction component 4. The feeding motor 301 drives the feeding rollers 303 to rotate, which in turn drives the feeding belt 304 to rotate, thereby conveying the encapsulated sulcus inside the correction component 4 toward the feeding pipe 5.

[0040] The feeding pipe 5 is a downwardly inclined pipe, and the upper end of the feeding pipe 5 contacts the correction component 4 at an end away from the conveyor 1.

[0041] The specific working principle of this utility model is as follows: First, a large number of enema suppositories are piled on the conveyor 1. When the conveyor 1 is conveying, the conveyor roller 101 is installed on the side plate 102, and the conveyor motor 104 drives the conveyor roller 101 to rotate, so that the conveyor belt 103 wrapped around its outer periphery is used for conveying. As the conveyor 1 is working, the enema suppositories gradually move along the inclined plate 201 towards the limiting plate 202. When they are squeezed into the space between the limiting plates 202, only a single enema suppository can pass through, so a straight line is automatically formed. The enema is then arranged and enters the calibration assembly 4, where it is supported by the second calibration rod 402 and limited and stabilized by the first calibration rod 401. Under the action of gravity and the enema's own structure, the enema's conduit will be set downwards. At the same time, the feeding motor 301 drives the feeding roller 303 to rotate, which in turn drives the feeding belt 304 to run. The feeding belt 304 contacts the enema in the calibration assembly 4, thereby conveying the enema in the calibration assembly 4 toward the feeding pipe 5, guiding them one by one into the feeding pipe 5 until the feeding operation is completed.

[0042] The above are merely preferred embodiments of the present utility model and do not limit the present utility model. Any modifications, equivalent substitutions, or improvements made to the technical solutions described in the foregoing embodiments, or to some of the technical features, shall fall within the protection scope of the present utility model.

Claims

1. A feeding mechanism for an automatic dispensing machine for opening and filling cartons, comprising a conveyor (1), a baffle (2), a base plate (3), a correction assembly (4), and a feeding pipe (5), characterized in that: A correction component (4) is provided at one end of the conveyor (1), and a base plate (3) is provided above the correction component (4). A feeding pipe (5) is provided at the end of the correction component (4) away from the conveyor (1). The conveyor (1) includes two side plates (102) and two conveying rollers (101) rotatably connected between the two side plates (102). Vertical baffles (2) are fixed on both side plates (102). An inclined plate (201) inclined towards the center of the conveyor (1) is fixed at one end of the baffle (2) near the correction component (4). A limit plate (202) is fixed at one end of the inclined plate (201) near the correction component (4). The correction assembly (4) includes two correction rods (401) and two correction rods (402), and a correction rod (402) is provided below each correction rod (401). A connecting rod (403) is fixed to the upper part of the outer periphery of the two correction rods (401), and a connecting rod (404) is fixed to the outer periphery of the correction rod (401) and the correction rod (402) located below it.

2. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: The conveyor (1) also includes a conveyor belt (103) sleeved on the outside of the two conveyor rollers (101), wherein a conveyor motor (104) is fixed on the outside of one of the side plates (102), and the output shaft of the conveyor motor (104) is fixed to the end of one of the conveyor rollers (101).

3. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: The inclined plate (201) and the limiting plate (202) are both located above the conveyor belt (103), and the end of the limiting plate (202) near the correction component (4) extends out of the conveyor belt (103) and docks with the correction component (4).

4. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: The second connecting rod (404) is located away from the center between the two corrector rods (402).

5. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: Two sets of symmetrical mounting blocks (302) are fixed on the bottom surface of the substrate (3), and the bottom of the mounting blocks (302) is fixed to the upper part of the outer periphery of the correction rod (401).

6. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: The bottom of the base plate (3) on both sides of the correction component (4) is rotatably connected to two feeding rollers (303), and the two feeding rollers (303) on the same side of the correction component (4) are fitted with a feeding belt (304) on their outer periphery. The upper end of the base plate (3) is also fixed with two symmetrical feeding motors (301), and the output shaft of each feeding motor (301) is fixed to the top of the feeding roller (303) below it.

7. The feeding mechanism of the automatic feeding machine for opening and packaging galvanizing products according to claim 1, characterized in that: The feeding pipe (5) is a downwardly inclined pipe, and the upper end of the feeding pipe (5) contacts the correction component (4) at one end away from the conveyor (1).