A glass bottle and jar processing feeding machine
By introducing a drive motor and a screening plate system into the glass bottle and jar feeder, the problem of inconsistent raw material particle size was solved, achieving uniform screening and conveying of raw materials and ensuring the smooth progress of subsequent processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO YUTAI PHARMA PACKAGING TECH CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-05-26
AI Technical Summary
Existing glass bottle and jar feeding machines cannot screen raw materials before feeding, resulting in inconsistent particle sizes and affecting subsequent processing.
A feeder is designed, comprising a drive motor, a screen plate, a screen, a cam, and a positioning seat. The drive motor drives the cam to squeeze the screen plate, causing the screen plate to vibrate to achieve screening of raw materials. The feeder and electric telescopic device achieve uniform conveying.
This ensures uniform particle size and feeding of raw materials for glass bottles and jars, guaranteeing the smooth progress of subsequent processing.
Smart Images

Figure CN224278750U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass bottle and jar processing technology, specifically to a glass bottle and jar processing feeding machine. Background Technology
[0002] Glass bottles and jars are a common type of packaging container used to store liquids, solids, or semi-solids. They possess excellent properties such as corrosion resistance, resistance to deformation, and high transparency, making them widely used in the food, beverage, pharmaceutical, and cosmetic industries. As a common packaging container, glass bottles and jars offer excellent performance and a wide range of applications, providing crucial support for product packaging and protection across various industries. In the production of glass bottles and jars, a feeding machine is required to transport the raw materials.
[0003] Existing glass bottle and jar feeding machines cannot screen the raw materials for glass bottle and jar production before feeding, resulting in inconsistent particle sizes of the conveyed raw materials, which affects the subsequent processing of the raw materials. To address this, we propose a glass bottle and jar processing feeding machine. Utility Model Content
[0004] The purpose of this utility model is to provide a glass bottle and jar processing feeding machine that can screen glass bottle and jar raw materials, so as to solve the problem that existing glass bottle and jar feeding machines cannot screen the glass bottle and jar production raw materials before feeding, resulting in inconsistent particle size of the conveyed glass bottle and jar raw materials, which affects the subsequent processing of glass bottle and jar raw materials.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a glass bottle and jar processing feeding machine, comprising a processing box and a material box, wherein a material box is installed near the bottom of one side of the processing box, and a positioning frame is installed on the top of one side of the material box. A screening plate is installed inside the positioning frame via a slide rod. Springs are installed on the outer surface of the slide rod on both the front and rear outer surfaces of the screening plate. A positioning seat is installed in the middle of the bottom of the screening plate. A drive motor is installed on the side of the positioning frame near the positioning seat, and a cam is installed on the output shaft of the drive motor on the side of the positioning seat.
[0006] Preferably, a support frame is installed in the middle of one side of the positioning frame, and a feeding hopper is installed inside the support frame.
[0007] Preferably, a screen is installed in the middle of the screen plate.
[0008] Preferably, an arc-shaped plate is installed inside the material box near the bottom.
[0009] Preferably, a fixed base is installed on the side of the processing box near the material box, and a fixed frame is installed inside the fixed base through a movable pin. A feeder is installed on one side of the fixed frame, and the bottom of the feeder is set on the upper surface of the arc plate.
[0010] Preferably, a connecting seat A is installed on one side of the top of the processing box, and a connecting seat B is installed on the outer surface of the feeder near the connecting seat A. The connecting seat A and the connecting seat B are connected by an electric telescopic device.
[0011] Preferably, a feeding rod is installed inside the feeder, a feeding motor is provided at the top of the feeding rod, a conveying pipe is installed on the outer surface of the feeder near the top, and a flexible hose is installed at the end of the conveying pipe.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] 1. This utility model achieves the effect of screening raw materials for glass bottles and jars by setting up a drive motor, screening plate, screen, cam and positioning seat. This solves the problem that existing glass bottle and jar feeders cannot screen the raw materials before feeding, resulting in inconsistent particle size of the conveyed raw materials and affecting the subsequent processing of the raw materials. This improves the uniformity of the particle size of the raw materials for glass bottles and jars, thereby ensuring the normal processing of the raw materials for glass bottles and jars.
[0014] 2. This utility model achieves the effect of rotating the feeder by setting up a feeder, an electric telescopic device, a connecting seat A, and a connecting seat B. This solves the problem that existing feeders cannot evenly transport the raw materials for glass bottle and jar processing into the processing box during feeding, thus affecting the processing of the raw materials. It improves the uniformity of feeding the raw materials for glass bottle and jar processing, thereby ensuring the normal processing of the raw materials for glass bottle and jar processing.
[0015] 3. This utility model achieves the effect of convenient conveying of raw materials for glass bottles and jars by setting up a material box, an arc plate and a feeder. This solves the problem that raw materials for glass bottles and jars tend to accumulate inside the existing material box, which makes it impossible for the feeder to pick up the material and affects the normal feeding of glass bottle and jar production. This makes it convenient for the feeder to pick up the material, thereby ensuring the normal feeding of raw materials for glass bottles and jars. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0017] Figure 2 for Figure 1 A magnified structural diagram of A;
[0018] Figure 3 This is a cross-sectional structural diagram of the present invention;
[0019] Figure 4 for Figure 3 A magnified structural diagram of B in the diagram;
[0020] Figure 5 for Figure 3 The enlarged structural diagram of C is shown below.
[0021] Reference numerals: 1. Processing box; 2. Hose; 3. Conveying pipe; 4. Feeder; 5. Drive motor; 6. Feed hopper; 7. Support frame; 8. Screen plate; 9. Positioning frame; 10. Material box; 11. Screen; 12. Slide rod; 13. Spring; 14. Arc plate; 15. Feeding rod; 16. Connecting seat A; 17. Electric telescopic device; 18. Connecting seat B; 19. Fixed frame; 20. Fixed seat; 21. Cam; 22. Positioning seat. Detailed Implementation
[0022] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0023] Example 1
[0024] like Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, to achieve the above objectives, this utility model provides the following technical solution: a glass bottle and jar processing feeding machine, including a processing box 1 and a material box 10. The material box 10 is installed near the bottom on one side of the processing box 1. A positioning frame 9 is installed on the top of one side of the material box 10. A screen plate 8 is installed inside the positioning frame 9 via a slide rod 12. A screen 11 is installed in the middle of the screen plate 8. Springs 13 are installed on the outer surface of the slide rod 12 on both the front and rear outer surfaces of the screen plate 8. A positioning seat 22 is installed in the middle of the bottom of the screen plate 8. A drive motor 5 is installed on the side of the positioning frame 9 near the positioning seat 22. A cam 21 is installed on the output shaft of the drive motor 5 on the side of the positioning seat 22. The cam 21 presses the positioning seat 22, thereby causing the screen plate 8 to vibrate. A support frame 7 is installed in the middle of one side of the positioning frame 9. A feed hopper 6 is installed inside the support frame 7. An arc-shaped plate 14 is installed near the bottom of the material box 10.
[0025] The working principle of a glass bottle and jar processing feeder based on Embodiment 1 is as follows: After the present invention is installed, the raw materials for glass bottle and jar processing are conveyed to the feeding hopper 6, and then conveyed to the top of the sieve plate 8 through the feeding hopper 6. Then, the drive motor 5 is started, and the drive motor 5 drives the cam 21 to rotate. The cam 21 squeezes the positioning seat 22 through the gap, thereby driving the sieve plate 8 to swing. The sieve plate 8 drives the screen 11 to swing, thereby screening the raw materials for glass bottle and jar processing, which facilitates the subsequent processing of glass bottles and jars. At this point, the workflow of the equipment is completed.
[0026] Example 2
[0027] like Figure 3 and Figure 4As shown, the glass bottle and jar processing feeding machine proposed in this utility model, compared with the first embodiment, further includes: a fixed base 20 installed on the side of the processing box 1 near the material box 10, a fixed frame 19 installed inside the fixed base 20 through a movable pin, a feeder 4 installed on one side of the fixed frame 19, the bottom of the feeder 4 is set on the upper surface of the arc plate 14 to facilitate the conveying of materials on the top of the arc plate 14, a connecting seat A16 installed on the top side of the processing box 1, a connecting seat B18 installed on the outer surface of the feeder 4 near the connecting seat A16, the connecting seat A16 and the connecting seat B18 are connected by an electric telescopic device 17, the electric telescopic device 17 drives the feeder 4 to rotate, a feeding rod 15 is installed inside the feeder 4, a feeding motor is provided at the top of the feeding rod 15, a conveying pipe 3 is installed on the outer surface of the feeder 4 near the top, and a flexible hose 2 is installed at the end of the conveying pipe 3.
[0028] In this embodiment, when feeding, the feeding motor is started, which drives the feeding rod 15 to rotate, thereby conveying the material inside the material box 10 to the conveying pipe 3, and then conveying it to the processing box 1 through the conveying pipe 3 and the hose 2. At the same time, the electric telescopic device 17 is started, which drives the connecting seat B18 to flip, thereby adjusting the use angle of the feeder 4, so that the material is evenly conveyed to the processing box 1.
[0029] The above specific embodiments are merely several preferred embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.
Claims
1. A glass bottle and jar processing feeder comprising a processing magazine (1) and a magazine (10) of material, characterized in that: A material box (10) is installed near the bottom on one side of the processing box (1). A positioning frame (9) is installed on the top side of the material box (10). A screen plate (8) is installed inside the positioning frame (9) via a slide rod (12). Springs (13) are installed on the outer surface of the slide rod (12) on both the front and rear outer surfaces of the screen plate (8). A positioning seat (22) is installed in the middle of the bottom of the screen plate (8). A drive motor (5) is installed on the side of the positioning frame (9) near the positioning seat (22). A cam (21) is installed on the output shaft of the drive motor (5) on the side of the positioning seat (22).
2. A glass bottle and jar processing feed machine according to claim 1, characterized in that: A support frame (7) is installed in the middle of one side of the positioning frame (9), and a feed hopper (6) is installed inside the support frame (7).
3. A glass bottle and jar processing feed machine as claimed in claim 1, wherein: A screen (11) is installed in the middle of the inside of the screen plate (8).
4. A glass bottle and jar processing feed machine as claimed in claim 1, wherein: An arc-shaped plate (14) is installed near the bottom inside the material box (10).
5. A glass bottle and jar processing feed machine as claimed in claim 1, wherein: The processing box (1) is equipped with a fixed seat (20) on the side near the material box (10). A fixed frame (19) is installed inside the fixed seat (20) through a movable pin. A feeder (4) is installed on one side of the fixed frame (19). The bottom of the feeder (4) is set on the upper surface of the arc plate (14).
6. A glass bottle and jar processing feeding machine according to claim 5, characterized in that: A connecting seat A (16) is installed on one side of the top of the processing box (1), and a connecting seat B (18) is installed on the outer surface of the feeder (4) near the connecting seat A (16). The connecting seat A (16) and the connecting seat B (18) are connected by an electric telescopic device (17).
7. A glass bottle and jar processing feeding machine according to claim 5, characterized in that: The feeder (4) is equipped with a feed rod (15) inside. The feed rod (15) is equipped with a feed motor at the top. The feeder (4) is equipped with a conveying pipe (3) near the top on its outer surface. The conveying pipe (3) is equipped with a flexible hose (2) at its end.