Container conveying device

By setting a cylinder and translation mechanism on the container conveying device, combined with a servo motor-driven lead screw structure, the lateral blocking distance adjustment without disassembly is realized, which solves the problem of production efficiency being affected by disassembly of components in the prior art and improves production efficiency.

CN223779392UActive Publication Date: 2026-01-09FOSHAN HANDIT AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202520466448.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-09
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

The existing container conveying system requires disassembly and reassembly of components when adjusting the spacing of the lateral blocking devices, which affects production efficiency.

Method used

Two sets of lateral interception devices are installed on the longitudinal conveying device via a drive mechanism. Automatic adjustment is achieved using cylinders and translation mechanisms, combined with a servo motor-driven lead screw structure, enabling spacing adjustment without disassembly.

Benefits of technology

It enables automatic adjustment of the lateral barrier spacing when container specifications change, improving production efficiency and avoiding downtime caused by disassembling and assembling components.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223779392U_ABST
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Abstract

A container conveying device comprises a longitudinal conveying device, two sets of transverse intercepting devices are installed on one side of the longitudinal conveying device, and the two sets of transverse intercepting devices are arranged on the front portion and the rear portion of the longitudinal conveying device. The transverse intercepting device comprises a translation mechanism, a cylinder mounting seat, a cylinder and a blocking strip; a through groove transversely penetrating through the two sides is formed in the air cylinder mounting base, and the blocking strip penetrates into the through groove; an outer barrel of the air cylinder is installed on the side, back to the longitudinal conveying device, of the air cylinder installation base, a working rod of the air cylinder is back to the longitudinal conveying device, the end, away from the longitudinal conveying device, of the blocking strip is bent in the direction of the working rod of the air cylinder, and the bent portion of the blocking strip is fixed to the end of the working rod of the air cylinder. According to the container conveying device, the two transverse blocking devices are installed on the longitudinal conveying device through the driving mechanism, so that control driving adjustment is achieved, and assemblies do not need to be disassembled and assembled.
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Description

Technical Field

[0001] This utility model relates to the field of container filling, and in particular to a container conveying device. Background Technology

[0002] Container conveying devices are important equipment on edible oil production lines. They are mainly used to transport empty barrels to the filling position and to transport filled oil barrels to the next process.

[0003] Oil drums are transported to the filling position via a container conveyor. Multiple drums are simultaneously conveyed by a conveyor belt, arranged in a line. Once a group of drums arrives at the filling position, the drum at the front is blocked to prevent it from exceeding the filling area. Then, a group of filling heads simultaneously fills the group of drums. If a drum exceeds the filling area, its position needs to be adjusted. The purpose of the blocking device is to ensure the stopping position of the drum group. If the drum size changes, the distance between the front and rear drums in a group will also change. Therefore, the spacing between the front and rear blocking devices needs to be adjusted to accommodate changes in drum size.

[0004] Current container conveying devices require disassembling and reassembling components to adjust the position when adjusting the spacing of the lateral blocking joints, which affects production efficiency. Utility Model Content

[0005] To address the aforementioned shortcomings, the present invention aims to provide a container conveying device in which two sets of transverse blocking devices are installed on the longitudinal conveying device via a drive mechanism, thereby achieving control and drive adjustment without the need for disassembly and assembly of the components.

[0006] To achieve this objective, the present invention adopts the following technical solution:

[0007] A container conveying device includes a longitudinal conveying device, and two sets of lateral intercepting devices are installed on one side of the longitudinal conveying device, the two sets of lateral intercepting devices being arranged at the front and rear of the longitudinal conveying device.

[0008] The lateral interception device includes a translation mechanism, a cylinder mounting base, a cylinder, and a blocking bar; the cylinder mounting base is provided with through slots extending laterally on both sides, and the blocking bar passes through the through slots;

[0009] The outer cylinder of the cylinder is mounted on the side of the cylinder mounting base facing away from the longitudinal conveying device, the working rod of the cylinder faces away from the longitudinal conveying device, and the end of the blocking bar away from the longitudinal conveying device is bent towards the working rod of the cylinder, with the bent part of the blocking bar fixed to the end of the working rod of the cylinder.

[0010] Preferably, the translation mechanism includes a translation mounting base, a lead screw drive mechanism, and a first guide post;

[0011] The two ends of the lead screw of the lead screw drive mechanism are rotatably mounted on the two translational mounting seats, the two ends of the first guide post are fixedly mounted on the two translational mounting seats, the cylinder mounting seat and the lead screw are threadedly engaged, and the cylinder mounting seat is slidably engaged with the first guide post.

[0012] The servo motor of the lead screw drive mechanism drives the lead screw to rotate, and the rotation of the lead screw drives the cylinder mounting base to slide along the first guide post.

[0013] Preferably, the longitudinal conveying device includes a conveying side plate and a conveyor belt, the conveying side plate and the conveyor belt are fixedly connected to each other, the conveyor belt is installed between two sets of conveying side plates, and the upper conveying surface of the conveyor belt is flush with the top of the conveying side plate.

[0014] It also includes guide side plates and side plate adjustment assemblies. The guide side plates on both sides are respectively installed on both sides of the side plate adjustment assembly. Multiple side plate adjustment assemblies are driven synchronously through a linkage mechanism to adjust the spacing between the guide side plates on both sides.

[0015] Preferably, the side plate adjustment assembly includes a side plate mounting slider, a forward and reverse lead screw transmission mechanism, a second guide post, and a side plate connector;

[0016] The outer sides of the two conveying side plates are laterally fixed with second guide posts. The positive and negative screw drive mechanism is installed between the two conveying side plates. The screws of the positive and negative screw drive mechanism extend to both sides and pass through the two conveying side plates respectively.

[0017] The second guide pillars on both sides are slidably mounted with side plate mounting sliders. The screws on both sides of the positive and negative screw transmission mechanism are threadedly engaged with the corresponding side plate mounting sliders on both sides. Side plate connectors are fixedly mounted on the side plate mounting sliders.

[0018] Preferably, the side plate connector includes a vertical support and a horizontal connecting frame;

[0019] The lower end of the vertical bracket is fixedly installed on the side plate mounting slider, and the upper end of the vertical bracket is fixedly installed with a horizontal connecting frame, one end of which is fixed to the corresponding side plate.

[0020] Preferably, the forward and reverse lead screw transmission mechanisms are synchronously driven by a transmission shaft, which is driven by a servo motor.

[0021] One of the above technical solutions includes the following beneficial effects: the setting of the lateral interception device can form a barrier in the processing area of ​​the conveying device, on the one hand preventing the material from being conveyed out of the processing area, and on the other hand preventing the conveying end from conveying excess material to the processing area; the blocking strip is driven by a cylinder, which facilitates its extension and retraction, and the cylinder mounting seat is provided with through slots that run horizontally on both sides, which support the blocking strip and prevent the blocking strip from lacking support in the retracted state, thus avoiding deformation problems that affect the overall structure. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of one embodiment of the present invention;

[0023] Figure 2 This is a schematic diagram of the structure of a lateral interception device according to an embodiment of the present invention;

[0024] Figure 3 yes Figure 1 A magnified view of a portion of the image.

[0025] The components include: longitudinal conveying device 100, conveying side plate 110, conveying belt 120, guide side plate 130, side plate adjustment assembly 140, side plate mounting slider 141, positive and negative lead screw transmission mechanism 142, second guide post 143, transverse interception device 200, translation mechanism 210, translation mounting seat 211, lead screw drive mechanism 212, first guide post 213, cylinder mounting seat 220, cylinder 230, and blocking bar 240. Detailed Implementation

[0026] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0027] like Figure 1 As shown, a container conveying device includes a longitudinal conveying device 100, and two sets of transverse intercepting devices 200 are installed on one side of the longitudinal conveying device 100. The two sets of transverse intercepting devices 200 are arranged at the front and rear of the longitudinal conveying device 100.

[0028] The lateral interception device 200 includes a translation mechanism 210, a cylinder mounting base 220, a cylinder 230, and a blocking bar 240; the cylinder mounting base 220 is provided with a through groove extending laterally on both sides, and the blocking bar 240 passes through the through groove.

[0029] The outer cylinder of the cylinder 230 is mounted on the cylinder mounting base 220 on the side facing away from the longitudinal conveying device 100. The working rod of the cylinder 230 faces away from the longitudinal conveying device 100. The end of the blocking bar 240 away from the longitudinal conveying device 100 is bent towards the working rod of the cylinder. The bent part of the blocking bar 240 is fixed to the end of the working rod of the cylinder.

[0030] The lateral interceptor 200 can form a barrier in the processing area of ​​the conveying device, preventing the material from being conveyed out of the processing area and preventing the conveying end from conveying excess material into the processing area. The blocking bar 240 is driven by a cylinder, which facilitates its extension and retraction. The cylinder mounting base 220 is provided with through slots on both sides that run horizontally through the blocking bar 240, which supports the blocking bar 240 and prevents the blocking bar 240 from lacking support in the retracted state, thus avoiding deformation problems that affect the overall structure.

[0031] like Figure 2 As shown, the translation mechanism 210 includes a translation mounting base 211, a lead screw drive mechanism 212, and a first guide post 213;

[0032] The two ends of the lead screw of the lead screw drive mechanism 212 are rotatably mounted on the two translation mounting seats 211, and the two ends of the first guide post 213 are fixedly mounted on the two translation mounting seats 211. The cylinder mounting seat 220 and the lead screw are threadedly engaged, and the cylinder mounting seat 220 and the first guide post 213 are slidably engaged.

[0033] The servo motor of the lead screw drive mechanism 212 drives the lead screw to rotate, and the rotation of the lead screw drives the cylinder mounting base 220 to slide along the first guide post 213.

[0034] The cylinder mounting base 220 is connected to the lead screw drive mechanism 212, enabling the cylinder mounting base 220 to move. This allows the interception distance between the two sets of transverse interception devices 200 to be adjusted to accommodate changes in the overall length of the container group. The device is adjusted via a servo motor in conjunction with the lead screw structure, facilitating control and adjustment.

[0035] The longitudinal conveying device 100 includes a conveying side plate 110 and a conveying belt 120. The structural frames of the conveying side plate 110 and the conveying belt 120 are fixedly connected. The conveying belt 120 is installed between two sets of conveying side plates 110. The upper conveying surface of the conveying belt 120 is flush with the top of the conveying side plate 110.

[0036] It also includes guide side plates 130 and side plate adjustment components 140. The guide side plates 130 on both sides are respectively installed on both sides of the side plate adjustment components 140. Multiple side plate adjustment components 140 are driven synchronously through a linkage mechanism to adjust the spacing between the guide side plates 130 on both sides.

[0037] The conveyor belt frame is fixed with conveyor side plates 110 on both sides to increase the installation position and facilitate the installation of the side plate adjustment assembly 140. The side plate adjustment assembly 140 adjusts the spacing between the guide side plates 130 on both sides to form long trough-shaped conveying channels with different spacing, so that the device can be compatible with the processing of different products.

[0038] In addition, the side plate adjustment assembly 140 includes a side plate mounting slider 141, a positive and negative lead screw transmission mechanism 142, a second guide post 143, and a side plate connector;

[0039] The outer sides of the two conveying side plates 110 are laterally fixed with second guide posts 143, and the positive and negative lead screw transmission mechanism 142 is installed between the two conveying side plates 110. The lead screws of the positive and negative lead screw transmission mechanism 142 extend to both sides and pass through the two conveying side plates 110 respectively.

[0040] The second guide posts 143 on both sides are respectively slidably mounted with side plate mounting sliders 141. The screws on both sides of the positive and negative screw transmission mechanism 142 are respectively threadedly engaged with the corresponding side plate mounting sliders 141 on both sides. Side plate connectors are fixedly mounted on the side plate mounting sliders 141.

[0041] The device drives the side plate mounting sliders 141 on both sides to slide along the second guide post 143 through the positive and negative lead screw transmission mechanism 142, so as to realize the spacing between the conveying side plates 110 mounted on the side plate mounting sliders 141; multiple sets of positive and negative lead screw transmission mechanisms 142 are synchronously driven by one drive mechanism to realize the simultaneous adjustment of the two side plates.

[0042] The side plate connector includes a vertical support and a horizontal connecting frame;

[0043] The lower end of the vertical support is fixedly installed on the side plate mounting slider 141, and the upper end of the vertical support is fixedly installed with a horizontal connecting frame, one end of which is fixed to the corresponding side plate.

[0044] The conveyor side plate 110 is installed onto the side plate mounting slider 141 via the side plate connector, making it easy to assemble and disassemble the conveyor side plate 110.

[0045] The forward and reverse lead screw transmission mechanisms 142 are synchronously driven by a transmission shaft, which is driven by a servo motor.

[0046] The technical principles of this utility model have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this utility model and should not be construed as limiting the scope of protection of this utility model in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this utility model without any inventive effort, and these embodiments will all fall within the scope of protection of this utility model.

Claims

1. A container conveying device, characterized in that, It includes a longitudinal conveying device, and two sets of transverse intercepting devices are installed on one side of the longitudinal conveying device, with the two sets of transverse intercepting devices located at the front and rear of the longitudinal conveying device; The lateral interception device includes a translation mechanism, a cylinder mounting base, a cylinder, and a blocking bar; the cylinder mounting base is provided with through slots extending laterally on both sides, and the blocking bar passes through the through slots; The outer cylinder of the cylinder is mounted on the side of the cylinder mounting base facing away from the longitudinal conveying device, the working rod of the cylinder faces away from the longitudinal conveying device, and the end of the blocking bar away from the longitudinal conveying device is bent towards the working rod of the cylinder, with the bent part of the blocking bar fixed to the end of the working rod of the cylinder.

2. The container conveying device according to claim 1, characterized in that, The translation mechanism includes a translation mounting base, a lead screw drive mechanism, and a first guide post; The two ends of the lead screw of the lead screw drive mechanism are rotatably mounted on the two translational mounting seats, the two ends of the first guide post are fixedly mounted on the two translational mounting seats, the cylinder mounting seat and the lead screw are threadedly engaged, and the cylinder mounting seat is slidably engaged with the first guide post. The servo motor of the lead screw drive mechanism drives the lead screw to rotate, and the rotation of the lead screw drives the cylinder mounting base to slide along the first guide post.

3. The container conveying device according to claim 2, characterized in that, The longitudinal conveying device includes a conveying side plate and a conveying belt. The structural frame of the conveying side plate and the conveying belt are fixedly connected. The conveying belt is installed between two sets of conveying side plates. The upper conveying surface of the conveying belt is flush with the top of the conveying side plate. It also includes guide side plates and side plate adjustment assemblies. The guide side plates on both sides are respectively installed on both sides of the side plate adjustment assembly. Multiple side plate adjustment assemblies are driven synchronously through a linkage mechanism to adjust the spacing between the guide side plates on both sides.

4. The container conveying device according to claim 3, characterized in that, The side plate adjustment assembly includes a side plate mounting slider, a positive and negative lead screw transmission mechanism, a second guide post, and a side plate connector. The outer sides of the two conveying side plates are laterally fixed with second guide posts. The positive and negative screw drive mechanism is installed between the two conveying side plates. The screws of the positive and negative screw drive mechanism extend to both sides and pass through the two conveying side plates respectively. The second guide pillars on both sides are slidably mounted with side plate mounting sliders. The screws on both sides of the positive and negative screw transmission mechanism are threadedly engaged with the corresponding side plate mounting sliders on both sides. Side plate connectors are fixedly mounted on the side plate mounting sliders.

5. The container conveying device according to claim 4, characterized in that, The side plate connector includes a vertical support and a horizontal connecting frame; The lower end of the vertical bracket is fixedly installed on the side plate mounting slider, and the upper end of the vertical bracket is fixedly installed with a horizontal connecting frame, one end of which is fixed to the corresponding side plate.

6. The container conveying device according to claim 5, characterized in that, The forward and reverse lead screw transmission mechanisms are synchronously driven by a transmission shaft, which is driven by a servo motor.