Multifunctional combined conveying channel

The glass door is opened and closed by using hinges and magnets for fixation, which solves the maintenance difficulties caused by the short lifespan of gas springs, improves the service life and aesthetics of the equipment, and reduces production costs.

CN223891909UActive Publication Date: 2026-02-10YUNNAN YINKUN INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520508576.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-10
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

The glass doors of existing conveyor equipment have a short lifespan and are inconvenient to replace due to their gas spring design, which makes equipment maintenance and repair difficult.

Method used

The glass door is connected by a hinge assembly, which enables the opening and closing of the glass door, avoiding reliance on gas springs. Magnets are used to fix the open and closed states, combined with a conveyor channel structure assembled from profiles.

Benefits of technology

This technology enables convenient opening and closing of glass doors, reduces the difficulty of maintenance and repair, improves the service life and aesthetics of the equipment, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional combined conveying channel, which belongs to the technical field of logistics conveying equipment and comprises an upper combined mechanism, a connecting rod and a lower combined conveying mechanism. The hinge group is arranged in the cover plate section bar; the glass door is arranged on the front side surface and the rear side surface of the lower part of the cover plate section bar and is connected with the hinge group; the lower combined conveying mechanism comprises a rail profile, a front side plate profile and a rear side plate profile, the front side plate profile and the rear side plate profile are connected through a special-shaped connecting block, and the material receiving box support is arranged on the lowermost portion and connected with the front side plate profile and the rear side plate profile. The five areas including the cable bridge area, the glass door component installation area, the material channel area, the conveying component installation area and the material receiving area are formed from top to bottom, opening and closing of the glass door can be achieved without the help of an air spring, the trouble caused by frequent replacement of the air spring is effectively avoided, and the glass door has the advantages of being easy to machine, low in cost and long in service life.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of logistics conveying equipment, and specifically relates to a multifunctional combined conveying channel. BACKGROUND

[0002] The online cache conveying device is one of the very important equipment in the logistics conveying process, especially in the production process of cigarette rods or filter rod materials, the caching of the materials needs to enter the spiral storage cylinder to adjust the speed of the upstream and downstream machines, and ensure the continuous production of the whole production line. On the existing rod material production line, the conveying equipment basically conveys the materials through a conveying track mechanism. In addition to the conveying track and the conveying chain plate, a single-sided glass door is arranged on one side of the conveying channel, or double-sided glass doors are arranged on both sides of the conveying channel, which plays a role in material guiding and safety protection. However, when the equipment needs to be maintained or overhauled, the glass door needs to be opened. The glass door is usually designed to be opened by a gas spring. The opening and closing of the glass door is controlled by the gas spring. The service life of the gas spring is relatively short, and it needs to be replaced frequently. Since the position where the gas spring is installed is above the groove channel where the cables are placed, the space where the gas spring is installed is narrow, and there is a cable barrier, so it is extremely inconvenient to replace, thereby causing trouble for equipment maintenance or overhaul. SUMMARY

[0003] The utility model solves the technical problem of the prior art and provides a multifunctional combined conveying channel which is easy to process, low in cost, long in service life, and integrated from top to bottom into five areas of a cable bridge area, a glass door component installation area, a material channel area, a conveying component installation area, and a material receiving area. The opening and closing of the glass door are realized by a hinge set without the aid of a gas spring, and the multifunctional combined conveying channel has the advantages of easy processing, low cost, an attractive appearance, and long service life.

[0004] To solve the above technical problems, the utility model provides a multifunctional combined conveying channel, which comprises an upper combined mechanism, a connecting rod, and a lower combined conveying mechanism.

[0005] The upper combined mechanism comprises an upper side profile, and the connecting rod top is connected to the lower side of the upper side profile on both sides. The upper side profile is provided with a cover plate profile at the top and a partition plate at the middle, and the cable bridge area is formed between the partition plate and the cover plate profile. The upper side profile is provided with two groups of left-right running middle sliding grooves, and the two groups of middle sliding grooves are symmetrically arranged. The hinge set is installed in the middle sliding groove. The lower side of the upper side profile on both sides is provided with a glass door, and the glass door is connected to the two groups of hinge sets respectively. The opening and closing of the glass door are realized by the rotation of the hinge part of the hinge set.

[0006] The lower combined conveying mechanism includes a track profile, a front side plate profile and a rear side plate profile connected to the front and rear sides of the track profile by a special-shaped connecting block. The front side plate profile and the rear side plate profile are respectively fixed below two sets of connecting rods. The track profile has a left-right track upper slide groove on the top and a track lower slide groove arranged parallel to the track upper slide groove on the bottom. Both sides of the track upper slide groove and the track lower slide groove are clamped with locking strips. The conveyor chain plate is installed in the lower combined conveying mechanism through the locking strips and can move left and right along the track profile.

[0007] As a further description of the above technical solution, it also includes a receiving mechanism disposed below the lower combined conveying mechanism. The receiving mechanism includes a receiving box and a receiving box bracket. The receiving box bracket includes a left receiving box bracket and a right receiving box bracket. The left receiving box bracket and the right receiving box bracket are symmetrically arranged. Both ends of the left receiving box bracket and the right receiving box bracket are connected to the front side panel profile and the rear side panel profile, respectively. The receiving box is placed between the left receiving box bracket and the right receiving box bracket.

[0008] As a further description of the above technical solution, the hinge assembly includes a left mounting base and a right mounting base. Both the left and right mounting bases are installed in the middle sliding groove. A hinge block is hinged between the left and right mounting bases via a hinge shaft. A non-standard connecting rod is fixed on the hinge block. The non-standard connecting rod is fixedly connected to the glass door. The hinge block rotates around the hinge shaft, which can drive the non-standard connecting rod to rotate, thereby rotating to open or close the glass door.

[0009] As a further description of the above technical solution, the upper side profile is composed of a front side profile and a rear side profile that are symmetrical to each other. The front side profile and the rear side profile are connected as one unit by a connecting groove rod and a connecting block, thereby forming the upper side profile.

[0010] As a further description of the above technical solution, both sides of the upper side profile are provided with an upper sliding groove and a lower sliding groove. The upper sliding groove is located at the upper part of the upper side profile, and the lower sliding groove is located at the bottom of the upper side profile. The middle sliding groove is located between the upper sliding groove and the lower sliding groove. The connecting rod connects the front side profile and the rear side profile through the upper sliding groove. The partition is installed on the top surface of the upper sliding groove, and the connecting block connects the front side profile and the rear side profile through the lower sliding groove.

[0011] As a further description of the above technical solution, the connecting block is provided with a first magnet, a magnet seat is installed in the upper sliding groove, and a second magnet is fixed on the magnet seat. When the glass door is opened, the hinge block of the hinge group rotates downward and is magnetically attracted and fixed with the first magnet, thereby ensuring that the opened glass door will not fall down; when the glass door is closed, the hinge block is magnetically attracted and fixed with the second magnet.

[0012] As a further description of the above technical solution, the front and rear sides of the track profile are respectively provided with a front track groove and a rear track groove, the side of the front side plate profile is provided with a front side plate groove, and the side of the rear side plate profile is provided with a rear side plate groove. The irregular connecting block connects the track profile with the front side plate profile and the rear side plate profile through the front track groove and the front side plate groove, and the rear track groove and the rear side plate groove.

[0013] As a further description of the above technical solution, the front side panel profile is also provided with a front side panel sliding groove, which is located below the sliding groove on the front side panel. The rear side panel profile is provided with a rear side panel sliding groove at the lower part, which is located below the sliding groove on the rear side panel. The left receiving box bracket and the right receiving box bracket are both installed through the front side panel sliding groove and the rear side panel sliding groove.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] This utility model's multifunctional combined conveyor channel utilizes a lower combined conveyor mechanism to provide a conveyor track for the conveyor chain plate. Connecting rods and glass doors are installed between the upper side profile, front side profile, and rear side profile to form a material conveying channel, serving both material guidance and safety protection functions. The glass door is connected to a hinge assembly, rotating to open or close as the hinge block rotates. In the open state, the hinge block is magnetically fixed to the first magnet, ensuring the glass door will not fall. In the closed state, the hinge block is magnetically fixed to the second magnet, eliminating the need for a gas spring and effectively avoiding the inconvenience of frequent gas spring replacements. The upper side profile, track profile, and front and rear side profiles all have left-right oriented grooves. Connecting rods, connecting blocks, hinge assemblies, and irregular connecting blocks are all installed through these grooves, allowing for flexible installation positions and convenient adjustment of gaps between components. The entire conveyor channel is assembled using profiles, which are easy to process and cost-effective. Component installation is convenient and quick, with an attractive appearance and long service life. Attached Figure Description

[0016] The technical solution of this utility model will be described in detail below with reference to the accompanying drawings. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 This utility model is a three-dimensional multi-functional combined conveyor channel. Figure 1 .

[0018] Figure 2 This utility model is a three-dimensional multi-functional combined conveyor channel. Figure 2 .

[0019] Figure 3 yes Figure 2 Enlarged view of part A in the middle.

[0020] Figure 4 This is a cross-sectional view of the glass door in the closed state.

[0021] Figure 5 This is a cross-sectional view of the glass door in the open position.

[0022] Figure 6 This is a 3D view of the upper side profile.

[0023] Figure 7 This is a 3D view of the front panel profile.

[0024] Figure 8 This is a 3D view of the rear panel profile.

[0025] Figure 9 This is a 3D diagram of the track profile.

[0026] Legend:

[0027] 1-Upper assembly mechanism; 11-Upper side profile; 111-Upper slide rail; 112-Middle slide rail; 113-Lower slide rail; 12-Connecting rod; 13-Connecting block; 131-First magnet; 14-Cover plate profile; 15-Partition plate; 16-Hinge assembly; 161-Left mounting base; 162-Right mounting base; 163-Hinge block; 164-Irregular connecting rod; 17-Glass door; 18-Magnet base; 181-Second magnet; 2-Connecting rod; 2a-Upper connecting rod; 2b-Lower connecting rod; 2c-Standing rod 3-Lower combined conveyor mechanism; 31-Rail profile; 311-Rail upper chute; 312-Rail lower chute; 313-Rail front chute; 314-Rail rear chute; 315-Clamping strip; 32-Irregular connecting block; 33-Front side plate profile; 331-Front side upper chute; 332-Front side lower chute; 34-Rear side plate profile; 341-Rear side upper chute; 342-Rear side lower chute; 4-Receiving mechanism; 41-Left receiving box bracket; 42-Receiving box; 43-Right receiving box bracket. Detailed Implementation

[0028] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0029] A multi-functional combined conveyor channel, such as Figure 1 — Figure 9As shown, it includes an upper assembly mechanism 1, a connecting rod 2, a lower assembly conveying mechanism 3, and a receiving mechanism 4. The upper assembly mechanism 1 is connected to the lower assembly conveying mechanism 3 through the connecting rod 2. The receiving mechanism 4 is located below the lower assembly conveying mechanism 3 and is used to receive falling materials.

[0030] The upper assembly 1 includes an upper side profile 11, which is composed of a front side profile and a rear side profile connected together. The front and rear side profiles are symmetrical and generally L-shaped. Both the front and rear side profiles are integrally die-cast from a first vertical section, a first horizontal section, a second vertical section, and a second horizontal section. The first vertical section has an upper sliding groove 111 in the middle, the first horizontal section has a middle sliding groove 112, and the second horizontal section has a lower sliding groove 113 at its end. Figure 6 As shown, the two ends of the connecting rod 12 are respectively connected to the upper sliding groove 111 of the front side profile and the upper sliding groove 111 of the rear side profile. The connecting block 13 is respectively connected to the lower sliding groove 113 of the front side profile and the lower sliding groove 113 of the rear side profile, thereby connecting the front side profile and the rear side profile to form the upper side profile 11. The connecting block 13 is provided with a first magnet 131, and a magnet seat 18 is installed in the upper sliding groove 111. A second magnet 181 is fixed on the magnet seat 18. The first magnet 131 and the second magnet 181 are used to pull the front side profile and the rear side profile tighter and connect them more tightly. The upper side profile 11 is provided with a partition 15, which is located above the upper sliding groove 111 of the front side profile and the upper sliding groove 111 of the rear side profile. The top of the upper side profile 11 is provided with a cover plate profile 14. A cable tray area is formed between the partition 15 and the cover plate profile 14 for laying cables. Hinges assemblies 16 are installed in the central sliding groove 112 of both the front and rear side profiles. Each hinge assembly 16 includes a left mounting seat 161 and a right mounting seat 162, both installed within the central sliding groove 112. A hinge block 163 is hinged between the left and right mounting seats 161 and 162 via a hinge shaft. A non-standard connecting rod 164 is fixed to the hinge block 163. Figure 3 , Figure 4 As shown, the irregular connecting rod 164 is connected to the glass door 17 located on the front and rear sides below the upper profile 11. The hinge block 163 rotates around the hinge axis, which can drive the irregular connecting rod 164 to rotate, thereby opening or closing the glass door 17. When the glass door is closed, the upper end of the hinge block 163 is magnetically attracted and fixed to the second magnet 181, as shown. Figure 4 As shown; when the glass door 17 is opened, the hinge block 163 of the hinge assembly rotates downward and is magnetically attracted and fixed to the first magnet 131, thereby ensuring that the opened glass door 17 will not fall down, as... Figure 5 As shown.

[0031] The connecting rod 2 includes an upper connecting rod 2a and a lower connecting rod 2b. The upper connecting rod 2a and the lower connecting rod 2b are fixedly connected by a connecting upright 2c. The glass door 17 is located between the upper connecting rod 2a and the lower connecting rod 2b. The front and rear sides of the upper side profile 11 are respectively connected to the upper connecting rod 2a on both sides.

[0032] The lower combined conveying mechanism 3 includes a track profile 31. The top surface of the track profile 31 is provided with an upper track groove 311, the bottom surface is provided with a lower track groove 312, the front side is provided with a front track groove 313, and the rear side is provided with a rear track groove 314, as shown below. Figure 7 As shown, both sides of the upper track groove 311 and the lower track groove 312 are secured with locking strips 315. The conveyor chain plate M is mounted on the track profile 31 via the locking strips 315 and can slide left and right along the upper track groove 311 and the lower track groove 312. The front side of the track profile 31 is provided with a front side plate profile 33, which is provided with a front side upper groove 331 and a front side lower groove 332. Figure 8 As shown, one end of the front irregular connecting block 32 is fixed in the front slide groove 313 of the track, and the other end is fixed in the slide groove 331 on the front side plate, thereby connecting the track profile 31 to the front side plate profile; the rear side of the track profile 31 is provided with a rear side plate profile 34, and the rear side plate profile 34 is provided with a rear side plate upper slide groove 341 and a rear side plate lower slide groove 342, as shown. Figure 9 As shown, one end of the rear irregular connecting block 32 is fixed in the rear slide groove 314 of the track, and the other end is fixed in the slide groove 341 on the front and rear side plates, thereby connecting the track profile 31 with the rear side plate profile; the front side plate profile 33 is connected to the front lower connecting rod 2b, and the rear side plate profile 34 is connected to the rear lower connecting rod 2b, thereby forming a material transport channel between the track profile 31 and the upper side profile 11;

[0033] The receiving mechanism 4 includes a receiving box 42 and a receiving box support. The receiving box support includes a left receiving box support 41 and a right receiving box support 43. The left receiving box support 41 and the right receiving box support 43 are symmetrically arranged. The front ends of the left receiving box support 41 and the right receiving box support 43 are connected to the front side plate profile 33 through the front side plate sliding groove 332. The rear ends of the left receiving box support 41 and the right receiving box support 43 are connected to the rear side plate profile 34 through the rear side plate sliding groove 342. The receiving box 42 is placed between the left receiving box support 41 and the right receiving box support 43 to receive materials falling from the conveyor chain plate M.

[0034] It should be noted that all the profiles described in this embodiment are aluminum profiles, which have the advantages of being lightweight, inexpensive, and easy to process.

[0035] The multifunctional combined conveying channel of this utility model is connected to the glass doors 17 on the front and rear sides of the material conveying channel by the hinge group 16. The opening and closing of the glass doors 17 is realized by the hinge group 16. There is no need to use gas springs or frequently replace the control components of the glass doors, which facilitates equipment maintenance and repair. In addition, it is easy to process, low in cost and beautiful in appearance.

[0036] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it; those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the protection scope of this utility model.

Claims

1. A multifunctional combined conveying channel, comprising an upper combined mechanism (1), a connecting rod (2), and a lower combined conveying mechanism (3), wherein the upper combined mechanism (1) is connected to the lower combined conveying mechanism (3) via the connecting rod (2), characterized in that: The upper assembly mechanism (1) includes an upper side profile (11), and the top of the connecting rod (2) is connected to the lower part of the front and rear sides of the upper side profile (11); the upper side profile (11) is provided with a cover plate profile (14) at the top and a partition plate (15) in the middle, and a cable tray area is formed between the partition plate (15) and the cover plate profile (14); the upper side profile (11) is provided with two sets of left and right oriented middle sliding grooves (112), the two sets of middle sliding grooves (112) are symmetrically arranged, and a hinge group (16) is installed in the middle sliding groove (112); glass doors (17) are provided at the lower part of the front and rear sides of the upper side profile (11), and the glass doors (17) are connected to the two sets of hinge groups (16) respectively, and the opening and closing of the glass doors is realized by the rotation of the hinge part of the hinge group (16); The lower combined conveying mechanism (3) includes a track profile (31), a front side plate profile (33) and a rear side plate profile (34) connected to the front and rear sides of the track profile (31) by a special-shaped connecting block (32). The front side plate profile (33) and the rear side plate profile (34) are respectively fixed to the bottom of the connecting rod (2) on the front and rear sides. The track profile (31) is provided with a left-right track upper slide groove (311) above and a track lower slide groove (312) arranged parallel to the track upper slide groove (311) below. Both sides of the track upper slide groove (311) and the track lower slide groove (312) are secured with locking strips (315). The conveying chain plate is installed in the lower combined conveying mechanism (3) through the locking strips (315) and can move left and right along the track profile (31).

2. The multifunctional combined conveying channel according to claim 1, characterized in that: It also includes a receiving mechanism (4) located below the lower combined conveying mechanism (3). The receiving mechanism includes a receiving box (42) and a receiving box bracket. The receiving box bracket includes a left receiving box bracket (41) and a right receiving box bracket (43). The left receiving box bracket (41) and the right receiving box bracket (43) are symmetrically arranged. Both ends of the left receiving box bracket (41) and the right receiving box bracket (43) are connected to the front side panel profile (33) and the rear side panel profile (34). The receiving box (42) is placed between the left receiving box bracket (41) and the right receiving box bracket (43).

3. The multifunctional combined conveying channel according to claim 2, characterized in that: The hinge assembly (16) includes a left mounting base (161) and a right mounting base (162). Both the left mounting base (161) and the right mounting base (162) are installed in the middle sliding groove (112). A hinge block (163) is hinged between the left mounting base (161) and the right mounting base (162) through a hinge shaft. A special-shaped connecting rod (164) is fixed on the hinge block (163). The special-shaped connecting rod (164) is fixedly connected to the glass door (17).

4. The multifunctional combined conveying channel according to claim 3, characterized in that: The upper side profile (11) is composed of a front side profile and a rear side profile that are symmetrical to each other. The front side profile and the rear side profile are connected together by a connecting groove rod (12) and a connecting block (13) to form the upper side profile (11).

5. The multifunctional combined conveying channel according to claim 4, characterized in that: The upper side profile (11) is provided with an upper sliding groove (111) and a lower sliding groove (113) on both the front and rear side plates. The upper sliding groove (111) is located at the upper part of the upper side profile (11), and the lower sliding groove (113) is located at the bottom of the upper side profile (11). The middle sliding groove (112) is located between the upper sliding groove (111) and the lower sliding groove (113). The connecting rod (12) connects the front side profile and the rear side profile through the upper sliding groove (111). The partition (15) is installed on the top surface of the upper sliding groove (111), and the connecting block (13) connects the front side profile and the rear side profile through the lower sliding groove (113).

6. The multifunctional combined conveying channel according to claim 5, characterized in that: The connecting block (13) is provided with a first magnet (131), and a magnet seat (18) is installed in the upper slide groove (111). A second magnet (181) is fixed on the magnet seat (18).

7. The multifunctional combined conveying channel according to claim 3, characterized in that: The front and rear sides of the track profile (31) are respectively provided with a front track groove (313) and a rear track groove (314). The front side plate profile (33) is provided with a front side plate groove (331) on its side and the rear side plate profile (34) is provided with a rear side plate groove (341) on its side. The irregular connecting block (32) connects the track profile (31) with the front side plate profile (33) and the rear side plate profile (34) through the front track groove (313) and the front side plate groove (331), and the rear track groove (314) and the rear side plate groove (341).

8. The multifunctional combined conveying channel according to claim 7, characterized in that: The front side panel profile (33) is also provided with a front side panel sliding groove (332), which is located below the sliding groove on the front side panel. The rear side panel profile (34) is provided with a rear side panel sliding groove (342) at the lower part, which is located below the sliding groove on the rear side panel (341). The left receiving box bracket (41) and the right receiving box bracket (43) are both installed through the front side panel sliding groove (332) and the rear side panel sliding groove (342).