Material caching transition conveying device
By designing a material buffer transition conveyor device, which combines the buffer conveyor mechanism and the rotary transition mechanism, the problem of speed mismatch between the packaging machine and the cartoning machine is solved, and the smooth transfer and cartoning of materials are achieved.
Patent Information
- Application Number
- CN202520048319.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2035-01-09
AI Technical Summary
The speed mismatch between the packaging machine and the cartoning machine results in the packaging machine operating at too high a speed while the cartoning machine operates at too low a speed, creating a bottleneck in material conveying.
Design a material buffering and transition conveying device, including a buffer conveying mechanism and a rotary transition mechanism. The buffer conveying mechanism is used to buffer materials, and the rotary transition mechanism is used to orderly transfer materials to the cartoning machine conveyor belt.
This achieves speed matching between the packaging machine and the cartoning machine, ensuring that materials are smoothly conveyed to the cartoning machine, avoiding material accumulation and detachment, and improving production efficiency.
Smart Images

Figure CN223591202U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of packaging machinery, specifically to a kind of conveying device that round or bowl material is sent into box filling machine. BACKGROUND
[0002] Some food materials are packaged by disposable bowls, such as bean paste, jelly, etc. After these bowl materials come down from the packaging machine (the food materials are packaged on the packaging machine), they need to be sent to the box filling machine for boxing. Since the packaging machine is for packaging food, the speed cannot be too slow (too slow will affect the food), and only at a faster speed. However, the boxing speed of some box filling machines cannot be increased, which leads to a mismatch between the packaging machine and the box filling machine. SUMMARY
[0003] In view of the deficiencies in the prior art, the utility model innovatively provides a material buffering transition conveying device that can buffer materials.
[0004] This material buffering transition conveying device includes a rack, a buffering conveying mechanism, and a rotating transition mechanism. The buffering conveying mechanism includes a buffering conveying surface and a buffering partition. The buffering partition forms a buffering area above the buffering conveying surface. The buffering conveying surface has an inlet conveying section and an outlet conveying section. The inlet conveying section is used to send materials into the buffering area, and the outlet conveying section is used to send materials in the buffering area out. The rotating transition mechanism is located at the outlet end of the outlet conveying section. The rotating transition mechanism includes a rotating wheel and a rotating power source that drives the rotating wheel to rotate. The outer edge of the rotating wheel is equally divided into multiple discharge notches along the circumference. Between the outlet end of the outlet conveying section and the outlet end of the rotating wheel, there is a supporting plate and an arc-shaped material blocking plate. The supporting plate is located below the rotating wheel and is flush with the conveying surface of the outlet conveying section. The arc-shaped material blocking plate is located above the supporting plate and on the outer side of the rotating wheel.
[0005] The position of the buffering partition close to the outlet conveying section forms a horn mouth shape. The buffering partition extends to both sides of the outlet conveying section.
[0006] The buffering conveying surface is formed by several strip conveying belts arranged side by side. One or more middle conveying belts extend to both sides, forming the inlet conveying section and the outlet conveying section.
[0007] The lower surface of the buffering conveying surface is provided with a supporting plate, and the buffering conveying surface is placed on the supporting plate.
[0008] According to the material buffering transition conveying device provided by the utility model, by setting a buffering area, the packaging machine and the box filling machine can be matched. BRIEF DESCRIPTION OF DRAWINGS
[0009] Figure 1 is a top view of the utility model;
[0010] Figure 2 is a perspective view of the rotating transition mechanism. DETAILED DESCRIPTION
[0011] As Figure 1 shown, the material buffering and transition conveying device comprises a rack 1, a buffering conveying mechanism 2 and a rotating transition mechanism 3. The buffering conveying mechanism 2 is used for buffering the material A coming down from the packaging machine, and the rotating transition mechanism 3 orderly transfers the material A to the conveying belt 4 of the box filling machine.
[0012] As Figure 1 shown, the buffering conveying mechanism 2 comprises a buffering conveying surface 20 and a buffering partition plate 21. The buffering partition plate 21 forms a buffering area 22 above the buffering conveying surface 20 (the buffering partition plate 21 surrounds an area with an inlet and an outlet). The buffering conveying surface 20 has an inlet conveying section 201 and an outlet conveying section 202. The inlet conveying section 201 is used for inputting the material to the buffering area 22, and the outlet conveying section 202 is used for sending out the material in the buffering area 22. In operation, the material coming down from the packaging machine enters the buffering area 22 through the inlet conveying section 201, and the material can be buffered in the buffering area 22. With the conveying of the buffering conveying surface 20, some of the material enters the rotating transition mechanism 3 through the outlet conveying section 202, so that the rotating transition mechanism 3 transitions the material to the conveying belt 4 of the box filling machine.
[0013] As Figure 2 shown, the rotating transition mechanism 3 is located at the outlet end of the outlet conveying section 202. The rotating transition mechanism 3 comprises a rotating wheel 30 and a rotating power source for driving the rotating wheel 30 to rotate. The outer edge of the rotating wheel 30 is circumferentially divided into a plurality of material discharge notches 31. A supporting plate 32 and an arc-shaped material blocking plate 33 are arranged between the outlet end of the outlet conveying section 202 and the outlet end of the rotating wheel 30. The supporting plate 32 is located below the rotating wheel 30 and is flush with the conveying surface of the outlet conveying section 202, so that the supporting plate 32 supports the material from below to smoothly transition the material. The arc-shaped material blocking plate 33 is located above the supporting plate 32 and on the outer side of the rotating wheel 30, preventing the material from moving outward and out of the material discharge notch 31 during rotation. In operation, the material comes from the outlet conveying section 202 (the material forms a row), and enters the material discharge notch 31 of the rotating wheel 30 one by one (one material is placed in one material discharge notch 31). With the rotation of the rotating wheel 30, the material comes from the outlet end of the outlet conveying section 202 to the outlet end of the rotating wheel 30, that is, to the position of the conveying belt 4 of the box filling machine. In this way, the material smoothly comes to the conveying belt 4 of the box filling machine, and then the material is sent to the box filling machine through the conveying belt 4 of the box filling machine for boxing.
[0014] As Figure 1As shown, the buffer partition 21 is shaped like a funnel near the discharge conveyor section 202, so that the material moves forward under the conveying of the buffer conveyor surface 20 and finally enters the discharge conveyor section 202 through the funnel. In addition, the buffer partition 21 extends to both sides of the discharge conveyor section 202, which can not only guide the material to form a row on the discharge conveyor section 202, but also prevent the material on the discharge conveyor section 202 from falling off.
[0015] like Figure 1 As shown, the buffer conveyor surface 20 is formed by several conveyor belts arranged side by side (the conveyor belts are driven by the conveyor motor to rotate the conveyor belt pulleys). One or more of the middle conveyor belts extend to both sides to form the feeding conveyor section 201 and the discharging conveyor section 202. In this way, the material can be conveyed from the feeding conveyor section 201 to the buffer area 22 by the conveyor belts, and then from the buffer area 22 to the discharging conveyor section 202.
[0016] Finally, it is worth mentioning that a support plate (not shown) is provided below the buffer conveyor surface 20, and the buffer conveyor surface 20 rests on the support plate. Since the buffer conveyor surface 20 will buffer a lot of material, the support plate can support these materials.
Claims
1. A material buffer transition conveying device, comprising a rack (1), a buffer conveying mechanism (2) and a rotary transition mechanism (3), characterized in that: The buffer conveying mechanism (2) comprises a buffer conveying surface (20) and a buffer partition (21), the buffer partition (21) forms a buffer area (22) above the buffer conveying surface (20), the buffer conveying surface (20) has an in-feed conveying section (201) and an out-feed conveying section (202), the in-feed conveying section (201) is used for feeding materials into the buffer area (22), and the out-feed conveying section (202) is used for feeding materials in the buffer area (22) out; the rotary transition mechanism (3) is located at an out-feed end of the out-feed conveying section (202), the rotary transition mechanism (3) comprises a rotary wheel (30) and a rotary power source for driving the rotary wheel (30) to rotate, a plurality of out-feed notches (31) are equiangularly arranged on an outer edge of the rotary wheel (30), a supporting plate (32) and an arc-shaped material blocking plate (33) are arranged between the out-feed end of the out-feed conveying section (202) and an out-feed end of the rotary wheel (30), the supporting plate (32) is located below the rotary wheel (30) and is flush with a conveying surface of the out-feed conveying section (202), and the arc-shaped material blocking plate (33) is located above the supporting plate (32) and is located at an outer side of the rotary wheel (30).
2. The material buffer and transition conveyor of claim 1, wherein: The buffer partition (21) is formed in a horn shape near the out-feed conveying section (202).
3. The material buffer and transition conveyor of claim 1, wherein: The buffer conveying surface (20) is formed by a plurality of strip conveying belts arranged side by side, wherein one or more middle strip conveying belts extend to both sides to form the in-feed conveying section (201) and the out-feed conveying section (202).
4. The material buffer and transition conveyor of claim 1, wherein: A supporting plate is arranged below the buffer conveying surface (20), and the buffer conveying surface (20) is arranged on the supporting plate.