Dual outlet stream conveyor line

CN224740197UActive Publication Date: 2026-09-11SHANGHAI TOBACCO GROUP CO LTD
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Patent Information

Application Number
CN202522254023.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-11
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

但是该烟草成品输送线采用单通道单出口设计,烟草成品只能通过皮带输送线的单一出口输出,无法满足实际生产的需求

Benefits of technology

(1)本输送线的出口通道包括第一出口和第二出口,从而使本物流输送线形成双出口设计,通过入口通道输送至输送线主体的物料,可通过第一出口和第二出口其中的一个输出,实现单出口送料功能,也可通过第一出口和第二出口同时输出,实现双出口送料功能,从而能够根据实际需求,选择单出口送料或双出口送料,满足实际生产需求;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a kind of double-outlet material flow conveying line.It relates to material conveying technical field.The application specifically includes conveying line main body, the entrance channel of conveying line main body first side, and the outlet channel of conveying line main body second side, entrance channel is conveyed to conveying line main body, conveying line main body is conveyed to outlet channel, and outlet channel sends out material;Outlet channel includes side by side arranged first outlet and second outlet, and first outlet and second outlet can be used to send out material.The outlet channel of the utility model includes first outlet and second outlet, so that the present material flow conveying line forms double-outlet design, it can be output through one of first outlet and second outlet, realize single-outlet feeding function, and it can be output through first outlet and second outlet simultaneously, realize double-outlet feeding function, so as to select single-outlet feeding or double-outlet feeding according to actual demand, satisfy actual production demand.
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Description

Technical Field

[0001] This utility model relates to the field of material conveying technology, and in particular to a dual-outlet logistics conveyor line. Background Technology

[0002] In tobacco finished product warehouses, tobacco finished products are typically placed into boxes, which are then carried on pallets. These pallets are then transported via a logistics conveyor line, thus completing the transport of the tobacco finished products. Existing tobacco finished product conveyor lines usually employ a single-channel, single-outlet design, meaning that pallets carrying tobacco finished product boxes exit sequentially from a single outlet of the conveyor line, which cannot meet the needs of actual production.

[0003] Chinese patent CN205312569U, published on 2016-06-15, discloses a tobacco finished product conveyor line, which includes a roller conveyor line and a belt conveyor line installed horizontally at right angles. A rectangular workpiece transfer platform is fixedly installed at the right angle between the roller conveyor line and the belt conveyor line. One end of the inner side of the workpiece transfer platform abuts against the roller conveyor line, and the other end abuts against the belt conveyor line. A cylinder is horizontally placed at one end of the outer side of the workpiece transfer platform, and an infrared sensor is horizontally placed at the other end. This conveyor line breaks up the integral transport line by adding a workpiece transfer platform, which enables segmented control of the production line. The infrared sensor detects the tobacco finished products placed on the workpiece transfer platform by the roller conveyor line, and controls the cylinder to start. When the cylinder rod pushes out, it pushes the tobacco finished products onto the belt conveyor line. Its structure is simple, easy to control, and facilitates segmented control of the production line, avoiding problems such as goods accumulation or missed operations. However, this tobacco finished product conveyor line adopts a single-channel, single-outlet design, and the tobacco finished products can only be output through a single outlet of the belt conveyor line, which cannot meet the actual production needs. Utility Model Content

[0004] The purpose of this utility model is to address the shortcomings of the existing technology by providing a dual-outlet logistics conveyor line. The dual-outlet design enables both single-outlet and dual-outlet feeding functions, thereby meeting the needs of actual production.

[0005] This utility model proposes a dual-outlet logistics conveyor line, including a conveyor line body, an inlet channel located on a first side of the conveyor line body, and an outlet channel located on a second side of the conveyor line body. The inlet channel conveys materials to the conveyor line body, the conveyor line body conveys materials to the outlet channel, and the outlet channel delivers materials out. The outlet channel includes a first outlet and a second outlet arranged side by side, both of which can be used to deliver materials.

[0006] Furthermore, the first side and the second side are two adjacent sides of the main body of the conveyor line, and the inlet channel on the first side and the outlet channel on the second side are arranged perpendicularly.

[0007] Furthermore, the main body of the conveyor line includes a main support frame, a plurality of conveying rollers arranged in parallel at intervals in the main support frame, and a first driving member disposed on the main support frame. The first driving member simultaneously drives the plurality of conveying rollers to rotate, and during the rotation of the plurality of conveying rollers, the material placed on them is conveyed to the outlet channel.

[0008] Furthermore, the inlet channel includes an inlet support, a conveyor belt disposed on the inlet support, and a second drive unit disposed on the inlet support. The second drive unit drives the conveyor belt to run, and during the operation of the conveyor belt, the material placed on it is transported to the main body of the conveyor line.

[0009] Furthermore, the main body of the conveyor line is provided with a first conveying area and a second conveying area arranged side by side. The inlet channel can convey materials to the first conveying area or the second conveying area. The first conveying area conveys materials to the first outlet, and the second conveying area conveys materials to the second outlet.

[0010] Furthermore, one end of the inlet bracket extends on the first side of the conveyor line body, and the other end extends in the conveyor line body. The conveyor belt includes a first belt and a second belt arranged sequentially along the material conveying direction. The first belt extends from the first side of the conveyor line body to the first conveying area, and the second belt extends in the second conveying area.

[0011] Furthermore, the entrance channel also includes a stop member disposed on the entrance bracket. The stop member is located between the first belt and the second belt and can be switched between a vertical state and a horizontal state.

[0012] Furthermore, the stop member includes a stop seat located between the first belt and the second belt, a stop plate rotatably connected to the stop seat in the middle, and a telescopic cylinder with its movable end connected to the bottom end of the stop plate and its fixed end connected to the inlet bracket. Under the drive of the telescopic cylinder, the stop plate rotates around the middle part rotatably connected to the stop seat.

[0013] Furthermore, the outlet channel includes an outlet frame extending on the second side of the conveyor body, and a partition beam disposed in the outlet frame, the partition beam dividing the interior space of the outlet frame into the first outlet and the second outlet.

[0014] Furthermore, both the first outlet and the second outlet are provided with a plurality of main conveying wheels arranged sequentially along the material conveying direction, a plurality of auxiliary conveying wheels arranged sequentially along the material conveying direction, and a third driving member that simultaneously drives the main conveying wheels to rotate. The plurality of main conveying wheels and the plurality of auxiliary conveying wheels are arranged side by side. The third driving member is provided on the outlet frame. The plurality of main conveying wheels are rotatably connected to the outlet frame, and the plurality of auxiliary conveying wheels are rotatably connected to the partition beam.

[0015] The dual-outlet logistics conveyor line proposed in this utility model has the following beneficial effects: (1) The outlet channel of this conveyor line includes a first outlet and a second outlet, thus forming a dual-outlet design for this logistics conveyor line. The material conveyed to the main body of the conveyor line through the inlet channel can be output through either the first outlet or the second outlet to realize the single-outlet feeding function, or it can be output through both the first outlet and the second outlet to realize the dual-outlet feeding function. Thus, it is possible to select single-outlet feeding or dual-outlet feeding according to actual needs to meet actual production needs. (2) The first side and the second side of this conveyor line are two sides adjacent to the main body of the conveyor line, so that the inlet channel located on the first side of the main body of the conveyor line is perpendicular to the outlet channel located on the second side of the main body of the conveyor line, so that the material is transported from the inlet channel to the main body of the conveyor line, the main body of the conveyor line transports the material to the outlet channel, and the outlet channel outputs the material, thereby realizing the reversal of the material and thus meeting the actual production needs. (3) The main body of this conveyor line is equipped with a first conveyor area and a second conveyor area arranged side by side. The inlet channel can transport materials to the first conveyor area or the second conveyor area. The first conveyor area transports materials to the first outlet, and the second conveyor area transports materials to the second outlet. Thus, this conveyor line can realize both single outlet feeding function and double outlet feeding function to meet the needs of actual production. (4) One end of the inlet support of this conveyor line extends laterally on the first side of the main support, and the other end extends laterally in the main support. The conveyor belt is divided into two sections, including a first belt and a second belt. The first belt and the second belt are arranged sequentially along the material conveying direction. The first belt extends from the first side of the main support to the first conveying area, and the second belt extends in the second conveying area of ​​the main support. Thus, the material is conveyed to the first conveying area by the first belt and to the second conveying area by the second belt, so that this conveyor line can realize both single-outlet feeding function and double-outlet feeding function, thereby meeting the actual production needs. (5) The inlet channel of this conveyor line also includes a stop. The stop is located between the first belt and the second belt and can be switched between vertical and horizontal states. When the stop is in the vertical state, the material is blocked, so that the first belt transports the material to the first conveying area. When the stop is in the horizontal state, the second belt transports the material to the second conveying area. Thus, this conveyor line can realize both single-outlet feeding function and double-outlet feeding function to meet the needs of actual production. (6) The stop components of this conveyor line include a stop seat located between the first belt and the second belt, a stop plate rotatably connected to the stop seat in the middle, and a telescopic cylinder whose movable end is connected to the bottom end of the stop plate and whose fixed end is connected to the inlet bracket. Under the drive of the telescopic cylinder, the stop plate rotates around the middle part rotatably connected to the stop seat, thereby realizing the switching of the stop plate between the vertical state and the horizontal state. Attached Figure Description

[0016] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the present invention and, together with the description, serve to explain the principles of the present invention. In these drawings, similar reference numerals are used to denote similar elements.

[0017] Figure 1 This is a schematic diagram of the structure of a dual-outlet logistics conveyor line according to an embodiment of the present utility model; Figure 2 This is a plan view of a dual-outlet logistics conveyor line according to an embodiment of the present utility model; Figure 3 This is a schematic diagram of the main body of a dual-outlet logistics conveyor line according to an embodiment of the present utility model; Figure 4 This is a schematic diagram of the structure of the inlet channel of a dual-outlet logistics conveyor line according to an embodiment of the present invention; Figure 5 for Figure 4 Enlarged view of point A in the middle; Figure 6 This is a schematic diagram of the outlet channel of a dual-outlet logistics conveyor line according to an embodiment of the present invention.

[0018] In the diagram: 1. Main body of the conveyor line; 11. First conveying zone; 12. Second conveying zone; 13. Main support frame; 14. Conveying roller; 15. First driving component; 2. Inlet channel; 21. Inlet support frame; 22. First belt; 23. Second belt; 24. Second driving component; 25. Stop; 251. Stop seat; 252. Stop plate; 253. Telescopic cylinder; 3. Outlet channel; 31. First outlet; 32. Second outlet; 33. Outlet frame; 34. Separating beam; 35. Main conveying wheel; 36. Secondary conveying wheel; 37. Third driving component. Detailed Implementation

[0019] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0020] Please see Figures 1-6 An embodiment of the present invention provides a dual-outlet logistics conveyor line, comprising a conveyor line body 1, an inlet channel 2 disposed on a first side of the conveyor line body 1, and an outlet channel 3 disposed on a second side of the conveyor line body 1. The inlet channel 2 conveys materials to the conveyor line body 1, the conveyor line body 1 conveys materials to the outlet channel 3, and the outlet channel 3 delivers materials out. The outlet channel 3 includes a first outlet 31 and a second outlet 32 ​​arranged side by side, both of which can be used to deliver materials out.

[0021] In this application, the logistics conveyor line includes a conveyor body 1, an inlet channel 2, and an outlet channel 3. The inlet channel 2 is located on the first side of the conveyor body 1, and the outlet channel 3 is located on the second side of the conveyor body 1. Materials are conveyed to the conveyor body 1 through the inlet channel 2, the conveyor body 1 conveys the materials to the outlet channel 3, and the materials are discharged through the outlet channel 3.

[0022] In this application, the outlet channel 3 includes a first outlet 31 and a second outlet 32, which are arranged side by side, thus forming a dual-outlet design for this logistics conveyor line. In actual production, materials conveyed to the main body 1 of the conveyor line via the inlet channel 2 can be output through either the first outlet 31 or the second outlet 32, achieving a single-outlet feeding function, or simultaneously output through both outlets, achieving a dual-outlet feeding function. This allows for selection of single-outlet or dual-outlet feeding according to actual needs, meeting specific production requirements.

[0023] In this embodiment, the first side and the second side are two adjacent sides of the conveyor body 1, so that the inlet channel 2 located on the first side of the conveyor body 1 is perpendicular to the outlet channel 3 located on the second side of the conveyor body 1, so that the material is conveyed from the inlet channel 2 to the conveyor body 1, the conveyor body 1 conveys the material to the outlet channel 3, and the outlet channel 3 outputs the material, thereby realizing the reversal of the material conveying and thus meeting the actual production needs.

[0024] Specifically, taking the example of the inlet channel 2 extending laterally on the first side of the conveyor line body 1 and the outlet channel 3 extending longitudinally on the second side of the conveyor line body 1, the material is conveyed laterally to the conveyor line body 1 through the inlet channel 2, the conveyor line body 1 conveys the material longitudinally to the outlet channel 3, and the outlet channel 3 sends the material out longitudinally, thereby realizing the reversal of material conveying.

[0025] Specifically, in this embodiment, the main body 1 of the conveyor line includes a main support 13, a plurality of conveying rollers 14 arranged in parallel at intervals in the main support 13, and a first driving member 15 disposed on the main support 13. The first driving member 15 simultaneously drives the plurality of conveying rollers 14 to rotate, and during the rotation of the plurality of conveying rollers 14, the material placed on them is conveyed to the outlet channel 3.

[0026] In this application, the main body 1 of the conveyor line includes a main support 13, a plurality of conveying rollers 14, and a first drive member 15. The plurality of conveying rollers 14 extend laterally in the main support 13 and are arranged parallel to each other longitudinally. Both ends of each conveying roller 14 are rotatably connected to the main support 13. The first drive member 15 is disposed on the main support 13. When material is conveyed from the inlet channel 2 to the conveying rollers 14 near the inlet channel 2, the first drive member 15 drives the plurality of conveying rollers 14 to rotate simultaneously, causing the conveying rollers 14 to move the material placed on them longitudinally. Thus, driven by the plurality of conveying rollers 14, the material moves to the outlet channel 3.

[0027] It is foreseeable that in this application, the distance between two adjacent conveying rollers 14 is less than the width of the material, so that the material is in contact with at least two conveying rollers 14, and then conveyed to the outlet channel 3 through the transmission of multiple conveying rollers 14.

[0028] Specifically, the material can be a pallet carrying finished tobacco products. The distance between two adjacent conveyor rollers 14 is less than the width of the pallet, so that at least two conveyor rollers 14 support the pallet. Then, by rotating multiple conveyor rollers 14 at the same time, the pallet carrying finished tobacco products is conveyed to the outlet channel 3 and then sent out through the outlet channel 3, thus realizing the conveying of finished tobacco products.

[0029] Specifically, in actual implementation, two drive gears can be set at one end of each conveyor roller 14, and the first drive component 15 can be a first drive motor. The output shaft of the first drive motor is connected to one of the drive gears at one end of the first conveyor roller 14 via a belt or chain, and the other drive gear at one end of the first conveyor roller 14 is connected to one of the drive gears at one end of the next conveyor roller 14 via a belt or chain, and so on, so that when the first drive motor is running, it drives multiple conveyor rollers 14 to rotate simultaneously.

[0030] Specifically, in this embodiment, the inlet channel 2 includes an inlet support 21, a conveyor belt disposed on the inlet support 21, and a second drive member 24 disposed on the inlet support 21. The second drive member 24 drives the conveyor belt to run, and during the operation of the conveyor belt, the material placed on it is transported to the conveyor line body 1.

[0031] In this application, the inlet channel 2 includes an inlet support 21, a conveyor belt, and a second drive member 24. The conveyor belt extends laterally on the inlet support 21, and the second drive member 24 is disposed on the inlet support 21. When material is placed on the conveyor belt, the second drive member 24 drives the conveyor belt to run, causing the conveyor belt to move laterally along the material until the material moves to the conveyor roller 14 in the main support 13 near the inlet channel 2, thereby realizing the conveying of material from the inlet channel 2 to the main body of the conveyor line 1.

[0032] It is foreseeable that, in this application, when the material is a pallet carrying finished tobacco products, there can be two conveyor belts arranged longitudinally and parallel to each other at the top of the inlet support 21, with the distance between the two conveyor belts being less than the width of the pallet, so that both conveyor belts simultaneously support the pallet. The two conveyor belts are driven by two second drive units 24, causing them to move the pallet laterally simultaneously, thereby improving the stability of the pallet transport.

[0033] Specifically, in actual implementation, a driving gear and a driven gear can be set at both ends of the conveyor belt, and the conveyor belt is simultaneously fitted on the outside of the driving gear and the driven gear. The second driving component 24 can be a second driving motor, and the output shaft of the second driving motor is connected to the driving gear, so that when the second driving motor is running, the conveyor belt is driven to rotate through the driving gear.

[0034] In this embodiment, the main body of the conveyor line 1 is provided with a first conveying area 11 and a second conveying area 12 arranged side by side. The inlet channel 2 can convey materials to the first conveying area 11 or the second conveying area 12. The first conveying area 11 conveys materials to the first outlet 31, and the second conveying area 12 conveys materials to the second outlet 32.

[0035] Specifically, in this application, the area where the main support 13 is located is divided into a first conveying area 11 and a second conveying area 12. The first conveying area 11 and the second conveying area 12 are arranged side by side in the horizontal direction, and the first conveying area 11 corresponds to the first outlet 31, and the second conveying area 12 corresponds to the second outlet 32.

[0036] The inlet channel 2 can transport materials to the first conveying area 11 or the second conveying area 12. The materials transported to the first conveying area 11 are moved to the first outlet 31 by multiple conveying rollers 14. The pallets transported to the second conveying area 12 are moved to the second outlet 32 ​​by multiple conveying rollers 14. Thus, this conveyor line can realize both single-outlet feeding function and double-outlet feeding function to meet the needs of actual production.

[0037] Specifically, the first conveying zone 11 can be located in the area close to the first side of the main support 13, and the second conveying zone 12 can be located in the area away from the first side of the main support 13. When feeding through the first outlet 31, the inlet channel 2 conveys the material to the first conveying zone 11, so that the material moves to the first outlet 31 under the drive of multiple conveying rollers 14; when feeding through the second outlet 32, after the inlet channel 2 conveys the material to the first conveying zone 11, it continues to convey it to the second conveying zone 12, so that the material moves to the second outlet 32 ​​under the drive of multiple conveying rollers 14.

[0038] When the first outlet 31 and the second outlet 32 ​​are fed simultaneously, the inlet channel 2 transports the first material to the second conveying area 12 and the second material to the first conveying area 11, so that the first material is sent out from the second outlet 32 ​​and the second material is sent out from the first outlet 31.

[0039] Furthermore, in this embodiment, one end of the inlet support 21 extends on the first side of the conveyor body 1, and the other end extends in the conveyor body 1. The conveyor belt includes a first belt 22 and a second belt 23 arranged sequentially along the material conveying direction. The first belt 22 extends from the first side of the conveyor body 1 to the first conveying area 11, and the second belt 23 extends in the second conveying area 12.

[0040] In this application, one end of the inlet support 21 extends laterally along the first side of the main support 13, and the other end extends laterally within the main support 13, so that the inlet support 21 covers the first conveying area 11 and the second conveying area 12 of the main support 13. The conveyor belt has a two-section structure, including a first belt 22 and a second belt 23. The first belt 22 and the second belt 23 are arranged sequentially along the material conveying direction, and the first belt 22 extends from the first side of the support body to the first conveying area 11, and the second belt 23 extends in the second conveying area 12 of the main support 13.

[0041] It is foreseeable that the first belt 22 and the second belt 23 are each driven by a second drive motor. The first belt 22 is driven to rotate by the second drive motor, so that the first belt 22 transports the material placed on it to the first conveying area 11. The second belt 23 is driven to rotate by the second drive motor, so that the second belt 23 receives the material transported to the first conveying area 11 and transports the material to the second conveying area 12.

[0042] As mentioned in the above embodiment, there are two conveyor belts located at the top of the inlet support 21, and the two conveyor belts are arranged parallel to each other in the longitudinal direction. It can be foreseen that when the other end of the inlet support 21 extends laterally in the main support 13, some of the conveyor rollers 14 in the main support 13 are located in the area between the two conveyor belts. Thus, after the conveyor belts transport the material to the first conveying area 11 or the second conveying area 12, the first driving member is activated to rotate the part of the conveyor rollers 14 located between the two conveyor belts, thereby moving the material out of the two conveyor belts.

[0043] Furthermore, in this embodiment, the inlet channel 2 also includes a stop 25, which is disposed on the inlet bracket 21 and located between the first belt 22 and the second belt 23. Since the stop 25 can switch between a vertical and a horizontal state in this application, in actual implementation, when the material is conveyed to the first conveying area 11, the stop 25 is placed in a vertical state to separate the first belt 22 and the second belt 23. When the material is conveyed to the end of the first belt 22, the stop 25 blocks the material, preventing it from moving from the end of the first belt 22 to the second belt 23. When materials need to be conveyed to the second conveying zone 12, the stop 25 is in a horizontal state. At this time, the materials conveyed to the end of the first belt 22 can be moved to the second belt 23 through the stop 25, and then conveyed to the second conveying zone 12 through the second belt 23. This enables the conveyor line to achieve both single-outlet feeding and double-outlet feeding functions, meeting the needs of actual production.

[0044] Specifically, in this embodiment, the stop member 25 includes a stop seat 251 located between the first belt 22 and the second belt 23, a stop plate 252 rotatably connected to the stop seat 251 in the middle, and a telescopic cylinder 253 whose movable end is connected to the bottom end of the stop plate 252 and whose fixed end is connected to the inlet bracket 21. Under the drive of the telescopic cylinder 253, the stop plate 252 rotates around the middle part rotatably connected to the stop seat 251.

[0045] In this application, the stop 25 includes a stop seat 251, a stop plate 252, and a telescopic cylinder 253. The stop seat 251 is fixed on the inlet bracket 21 and located between the first belt 22 and the second belt 23. The middle part of the stop plate 252 is rotatably connected to the stop seat 251. The fixed end of the telescopic cylinder 253 is fixed on the inlet bracket 21, and the movable end is connected to the bottom end of the stop plate 252. When the movable end of the telescopic cylinder 253 extends or retracts, it pushes the stop plate 252 to rotate around the middle part that is rotatably connected to the stop seat 251, so that the stop plate 252 switches between a vertical state and a horizontal state.

[0046] Specifically, when the movable end of the telescopic cylinder 253 extends, it pushes the stop plate 252 to rotate around the middle part of its rotatable connection with the stop seat 251 until the stop plate 252 is in a horizontal state, so that the material at the end of the first belt 22 can move to the second belt 23 through the stop plate 252; when the movable end of the telescopic cylinder 253 retracts, it pushes the stop plate 252 to rotate in the opposite direction around the middle part of its rotatable connection with the stop seat 251 until the stop plate 252 is in a vertical state, thereby blocking the material at the end of the first belt 22 through the stop plate 252, so that it cannot move to the second belt 23 through the end of the first belt 22.

[0047] In this embodiment, the outlet channel 3 includes an outlet frame 33 extending on the second side of the conveyor body 1, and a partition beam 34 disposed in the outlet frame 33. The partition beam 34 divides the internal space of the outlet frame 33 into a first outlet 31 and a second outlet 32. In this application, the outlet channel 3 includes an outlet frame 33 and a partition beam 34. One end of the outlet frame 33 is fixedly connected to the main support 13, and the other end extends longitudinally on the second side of the main support 13.

[0048] The separator beam 34 is installed in the outlet frame 33, dividing the internal space of the outlet frame 33 into a first outlet 31 and a second outlet 32. When multiple conveying rollers 14 convey materials to the first outlet 31 and the second outlet 32, the separator beam 34 separates the materials at the first outlet 31 and the second outlet 32, and guides the materials at the first outlet 31 and the second outlet 32, so that the materials at the first outlet 31 and the second outlet 32 ​​are sent out longitudinally. Thus, this conveyor line can realize both single-outlet feeding function and double-outlet feeding function to meet the needs of actual production.

[0049] In this embodiment, the bottom of the first outlet 31 and the second outlet 32 ​​are provided with a plurality of main conveying wheels 35, a plurality of auxiliary conveying wheels 36 and a third driving member 37. The plurality of main conveying wheels 35 are arranged sequentially along the material conveying direction, and the plurality of auxiliary conveying wheels 36 are arranged side by side with the plurality of main conveying wheels 35 in the transverse direction. Each main conveying wheel 35 corresponds to one auxiliary conveying wheel 36. The third driving member 37 is arranged on the outlet frame 33.

[0050] Multiple main conveying wheels 35 are rotatably connected to the outlet frame 33. Multiple auxiliary conveying wheels 36 of the first outlet 31 and the second outlet 32 ​​are respectively arranged on both sides of the partition beam 34 and are rotatably connected to the partition beam 34. The third driving member 37 is connected to the multiple main conveying wheels 35, thereby driving the multiple main conveying wheels 35 to rotate simultaneously through the third driving member 37, causing the material placed on the main conveying wheels 35 and the auxiliary conveying wheels 36 to move longitudinally, thereby realizing the conveying of materials.

[0051] Specifically, in actual implementation, two drive gears can be set at one end of each conveying main wheel 35, and the third drive component 37 can be a third drive motor. The output shaft of the third drive motor is connected to one of the drive gears at one end of the first conveying main wheel 35 via a belt or chain, and the other drive gear at one end of the first conveying main wheel 35 is connected to one of the drive gears at one end of the next conveying main wheel 35 via a belt or chain, and so on, so that when the third drive motor is running, it drives multiple conveying main wheels 35 to rotate simultaneously.

[0052] It is foreseeable that in this application, when the material is a pallet carrying finished tobacco products, the distance between two adjacent main conveyor wheels 35 and two adjacent auxiliary conveyor wheels 36 is less than the width of the pallet, so that at least two main conveyor wheels 35 and at least two auxiliary conveyor wheels 36 support the pallet at the same time, and then the pallet carrying finished tobacco products is sent out by the simultaneous rotation of multiple main conveyor wheels 35.

[0053] Furthermore, in this embodiment, multiple central conveying wheels can be provided at the bottom of the first outlet 31 and the second outlet 32. These central conveying wheels are arranged parallel to each other longitudinally and are all rotatably connected to the outlet frame 33. During the material delivery process from the first outlet 31 or the second outlet 32, multiple main conveying wheels 35 support one end of the material, multiple central conveying wheels support the middle of the material, and multiple auxiliary conveying wheels support the opposite end of the material, thereby improving the stability of the material conveying.

[0054] The above-described contents can be implemented individually or in combination in various ways, and all such variations are within the protection scope of this utility model.

[0055] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes the element.

[0056] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, 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 do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A dual outlet stream conveyor line characterized by: The system includes a conveyor body (1), an inlet channel (2) located on a first side of the conveyor body (1), and an outlet channel (3) located on a second side of the conveyor body (1). The inlet channel (2) conveys materials to the conveyor body (1), the conveyor body (1) conveys materials to the outlet channel (3), and the outlet channel (3) delivers materials out. The outlet channel (3) includes a first outlet (31) and a second outlet (32) arranged side by side. Both the first outlet (31) and the second outlet (32) can be used to deliver materials out.

2. A dual outlet stream delivery line as claimed in claim 1 characterised in that: The first side and the second side are two adjacent sides of the main body of the conveyor line (1), and the inlet channel (2) on the first side and the outlet channel (3) on the second side are arranged perpendicularly.

3. A dual-exit logistics conveyor line as described in claim 1, characterized in that: The main body (1) of the conveyor line includes a main support (13), a plurality of conveying rollers (14) arranged in parallel at intervals in the main support (13), and a first driving member (15) provided on the main support (13). The first driving member (15) simultaneously drives the plurality of conveying rollers (14) to rotate. During the rotation of the plurality of conveying rollers (14), the material placed on them is conveyed to the outlet channel (3).

4. A dual outlet stream delivery line as defined in claim 1, wherein: The inlet channel (2) includes an inlet support (21), a conveyor belt on the inlet support (21), and a second drive unit (24) on the inlet support (21). The second drive unit (24) drives the conveyor belt to run, and during the operation of the conveyor belt, the material placed on it is transported to the main body of the conveyor line (1).

5. A dual outlet stream delivery line as claimed in claim 4, wherein: The main body (1) of the conveyor line is provided with a first conveying area (11) and a second conveying area (12) arranged side by side. The inlet channel (2) can convey materials to the first conveying area (11) or the second conveying area (12). The first conveying area (11) conveys materials to the first outlet (31), and the second conveying area (12) conveys materials to the second outlet (32).

6. A dual outlet stream delivery line as claimed in claim 5, characterised in that: One end of the inlet bracket (21) extends on the first side of the conveyor body (1) and the other end extends in the conveyor body (1). The conveyor belt includes a first belt (22) and a second belt (23) arranged sequentially along the material conveying direction. The first belt (22) extends from the first side of the conveyor body (1) to the first conveying area (11), and the second belt (23) extends in the second conveying area (12).

7. A dual outlet stream delivery line as claimed in claim 6, characterised in that: The entrance channel (2) also includes a stop (25) provided on the entrance bracket (21). The stop (25) is located between the first belt (22) and the second belt (23) and can be switched between a vertical state and a horizontal state.

8. A dual outlet stream delivery line as claimed in claim 7, characterised in that: The stop (25) includes a stop seat (251) located between the first belt (22) and the second belt (23), a stop plate (252) rotatably connected to the stop seat (251) in the middle, and a telescopic cylinder (253) whose movable end is connected to the bottom end of the stop plate (252) and whose fixed end is connected to the inlet bracket (21). Under the drive of the telescopic cylinder (253), the stop plate (252) rotates around the middle part of its rotatable connection with the stop seat (251).

9. A dual exit mass flow delivery line as defined in claim 1 wherein: The outlet channel (3) includes an outlet frame (33) extending on the second side of the conveyor body (1), and a partition beam (34) disposed in the outlet frame (33), the partition beam (34) dividing the interior space of the outlet frame (33) into the first outlet (31) and the second outlet (32).

10. A dual-exit logistics conveyor line as described in claim 9, characterized in that: The bottom of the first outlet (31) and the second outlet (32) is provided with a plurality of main conveying wheels (35) arranged in sequence along the material conveying direction, a plurality of auxiliary conveying wheels (36) arranged in sequence along the material conveying direction, and a third driving member (37) that drives the main conveying wheels (35) to rotate. The plurality of main conveying wheels (35) and the plurality of auxiliary conveying wheels (36) are arranged side by side. The third driving member (37) is provided on the outlet frame (33). The plurality of main conveying wheels (35) are rotatably connected to the outlet frame (33), and the plurality of auxiliary conveying wheels (36) are rotatably connected to the partition beam (34).

Citation Information

Patent Citations

  • Tobacco finished product transfer chain

    CN205312569U