Rod-shaped material conveying device

By designing a rod-shaped material conveying device with a storage bin and a pushing mechanism, the problems of insufficient rod material transport capacity and low cutting efficiency are solved, realizing modular feeding and efficient cutting of batch materials, and adapting to the needs of materials of different specifications.

CN223671364UActive Publication Date: 2025-12-16LUZHOU YIQIAO TECH CO LTD
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Patent Information

Application Number
CN202423231577.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-16
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing rod-shaped material transport carriers have limited transport capacity, require multiple manual feedings, and have poor coordination with cutting devices, resulting in low cutting efficiency.

Method used

Design a rod-shaped material conveying device including a storage bin and a pushing mechanism. The storage bin is equipped with multiple partitions to form a storage cavity. The pushing mechanism realizes fixed-length or multi-stage feeding of rod-shaped materials through a linear quantitative propulsion device and a slider pusher plate, and is connected to a central control system to precisely control the movement trajectory.

Benefits of technology

It enables modular feeding and simultaneous cutting of batches of rod-shaped materials, improving conveying and cutting efficiency, adapting to the needs of materials of different specifications, and enhancing processing automation and quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of material conveying, and provides a rod-shaped material conveying device which comprises a working table and a material storage box arranged on the working table in a sliding mode, a plurality of partition plates are arranged in the material storage box, and a storage cavity for containing rod-shaped materials is formed between every two adjacent partition plates. The multiple rod-shaped materials are sequentially stacked in the storage cavity in the longitudinal direction; the workbench is further provided with a pushing mechanism used for pushing the rod-shaped materials in the storage cavity to move in the length direction of the storage cavity, the pushing mechanism can push the rod-shaped materials to the cutting device at the tail end of the storage box, and batch rod-shaped materials can be fed in a one-time or multi-time fixed-length mode according to the feeding mode of the rod-shaped materials. And batched rod-shaped materials are cut at the same time, and the conveying and cutting efficiency is greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to material conveying technical field, specifically, relate to a rod -shaped material conveying device. BACKGROUND

[0002] At present, in the cutting process of rod -shaped material, because the form of rod -shaped material and use demand, make rod -shaped material in the processing, usually adopt ring cutting mode, to control the cutting size and cutting depth of the cutting surface of part, to meet the demand of different length, different ring cutting depth, product or assembly specific shape and size.

[0003] In the cutting between rod -shaped material, need to utilize the transport carrier and transport rod -shaped material to cutting device, and the existing transport carrier is basically the existing ordinary transport belt structure, and its transport capacity is limited, and need workers to put material on the transport belt many times, not only time -consuming and labor -intensive, and the cooperation effect between cutting device is poor, lead to cutting efficiency greatly reduces, therefore, how to optimize the conveying efficiency in the existing rod -shaped material production process, and as far as possible meet more working condition demand to realize modularization feeding, it is worth studying. SUMMARY

[0004] The utility model discloses a kind of rod -shaped material conveying devices, the feeding mode of rod -shaped material can batch rod -shaped material be fed once or by turns fixed length, and batch rod -shaped material is cut simultaneously, greatly improve conveying and cutting efficiency, realize modularization feeding.

[0005] The embodiment of the utility model is realized by the following technical scheme:

[0006] A kind of rod -shaped material conveying device, including workbench and the storage tank slidingly disposed on the workbench, multiple partitions are disposed in the length direction in the storage tank, storage cavity for placing rod -shaped material is formed between adjacent two partitions, multiple rod -shaped material is sequentially stacked in the storage cavity in longitudinal direction;

[0007] The workbench is also provided with the pushing mechanism for pushing the rod -shaped material in storage cavity moves along the length direction of storage cavity, the pushing mechanism can push the rod -shaped material to cutting device at the end of storage tank.

[0008] Further, the pushing mechanism includes the first linear quantitative propulsion device arranged above the storage tank and the push plate connected with the first sliding block bottom of the first linear quantitative propulsion device;The first linear quantitative propulsion device is fixed on the workbench by support frame, the height of the push plate is not less than the height of the partition, and the push plate can push the rod -shaped material in the storage cavity moves along the length direction of storage cavity.

[0009] Further, the top surface of the workbench is transversely provided with a plurality of sliding grooves along the width direction, and the bottom surface of the storage box is transversely provided with a plurality of second sliding blocks along the width direction, one of the second sliding blocks being correspondingly arranged with one of the sliding grooves and being transversely slidable along the sliding groove.

[0010] Further, the bottom surface of the workbench is transversely provided with a plurality of second linear quantitative pushing devices along the width direction, one of the sliding grooves being correspondingly arranged with one of the second linear quantitative pushing devices.

[0011] Further, the top surface of the workbench is provided with a plurality of guide rails along the width direction, and the bottom surface of the storage box is further provided with a plurality of guide sliding blocks, one of the guide sliding blocks being correspondingly arranged with one of the guide rails and being slidable along the guide rail.

[0012] Further, the width of the storage cavity is consistent with the outer diameter of the rod-shaped material.

[0013] Further, the partition plate is detachably connected with the storage box.

[0014] Further, the first linear quantitative pushing device and the second linear quantitative pushing device are both connected with an external central control system.

[0015] The technical scheme of the utility model has at least the following advantages and beneficial effects:

[0016] In use, a plurality of rod-shaped materials are sequentially placed in the plurality of storage cavities, and when placed in the storage cavities, the plurality of rod-shaped materials are sequentially and vertically stacked; then the storage box is adjusted to slide left and right along the workbench so that the storage cavities are opposite to the material channel of the cutting device, and then the rod-shaped material in the storage cavity is moved along the length direction of the storage cavity by the pushing mechanism, so that the rod-shaped material is pushed into the cutting device for subsequent cutting operation; the feeding mode of the utility model can feed the batch rod-shaped materials at one time or in batches, and the batch rod-shaped materials are simultaneously cut, which greatly improves the conveying and cutting efficiency and realizes modular feeding. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiments, and it should be understood that the following drawings only show some embodiments of the utility model, and therefore should not be regarded as a limitation to the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of the drawings.

[0018] Figure 1The side view of the rod-shaped material conveying device is provided for the embodiment of the utility model.

[0019] Figure 2 The top view of the internal structure of the workbench is provided for the embodiment of the utility model.

[0020] Figure 3 The top view of the internal structure of the workbench is provided for the embodiment of the utility model.

[0021] Icon: 1-workbench, 11-slideway, 2-material storage box, 21-baffle, 22-storage cavity, 3-pushing mechanism, 31-first linear quantitative pushing device, 32-pushing plate, 33-first sliding block, 4-second linear quantitative pushing device, 5-second sliding block, 6-guiding sliding block, 7-rail. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model below. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. The components of the embodiments of the utility model described and shown in the drawings here can be arranged and designed in various different configurations.

[0023] Embodiment 1

[0024] A rod-shaped material conveying device, comprising a workbench 1 and a material storage box 2 slidingly arranged on the workbench 1, the material storage box 2 can slide left and right along the workbench 1, and a plurality of baffles 21 are arranged side by side in the length direction in the material storage box 2, a storage cavity 22 for placing rod-shaped materials is formed between adjacent two baffles 21, and a plurality of rod-shaped materials are sequentially and vertically arranged in the storage cavity 22.

[0025] The workbench 1 is further provided with a pushing mechanism 3 for pushing the rod-shaped materials in the storage cavity 22 to move along the length direction of the storage cavity 22, and the pushing mechanism 3 can push the rod-shaped materials to the cutting device at the end of the material storage box 2.

[0026] Working principle: the utility model discloses in using, the batch rod -like material is placed in multiple storage cavities 22 in proper order, when being placed in storage cavity 22, multiple rod -like materials are placed in sequence in longitudinal direction layer by layer;Then adjust the storage tank 2 along the workbench 1 left and right sliding, to make the storage cavity 22 directly opposite the material passageway of cutting device to supply to the cutting of material, then can utilize pushing mechanism 3 and push the rod -like material in this storage cavity 22 along the length direction of storage cavity 22 movement, thereby push the rod -like material to cutting device and carry out subsequent cutting operation;The utility model discloses the feeding mode of rod -like material can batch rod -like material and carry out feeding once, and the batch rod -like material is cut simultaneously, greatly improve the conveying and cutting efficiency.More importantly, according to the use demand, the spacing between baffle 21 or the height of baffle 21 is adjusted, so that the conveying demand of rod -like material of different thicknesses can be met, and by adjusting the height of baffle 21, different height, i.e. different amount of rod -like material can be placed, so that the conveying amount of rod -like material to be conveyed once can be adaptively adjusted, and even large-scale continuous feeding can be realized, just need to set the storage tank 2 into wider width, and adaptively set more baffle 21 to be separated into more storage cavities 22.

[0027] In the embodiment, the pushing mechanism 3 includes a first linear quantitative pushing device 31 arranged above the storage tank 2 and a push plate 32 connected to the bottom of a first sliding block 33 of the first linear quantitative pushing device 31, the push plate 32 is opposite to the material passageway of the cutting device; the first linear quantitative pushing device 31 is fixed on the workbench 1 through a support frame, the height of the push plate 32 is not less than the height of the baffle 21, and the bottom of the push plate 32 abuts on the storage tank 2, so that the push plate 32 can push the rod -like material in the storage cavity 22 once, and the push plate 32 can push the rod -like material in the storage cavity 22 to move along the length direction of the storage cavity 22; in this way, by driving the first linear quantitative pushing device 31 to work, the first sliding block 33 of the first linear quantitative pushing device 31 reciprocates to drive the push plate 32 to reciprocate, and then the rod -like material in the storage cavity 22 is moved to the cutting device, when the tail end of the rod -like material is moved into the cutting device, the first linear quantitative pushing device 31 is driven to retreat, that is, the first sliding block 33 drives the push plate 32 to return along the original path of the storage cavity 22, at this time, the storage tank 2 is driven to slide left or right along the workbench 1, that is, the adjacent storage cavity 22 is moved to the position of the push plate 32, so that the rod -like material in another storage cavity 22 is continuously pushed by the pushing mechanism 3, thereby the rod -like material in the storage tank 2 is conveyed into the cutting device in sequence, the automation and efficiency of the processing process are improved, and the processing efficiency and quality are greatly improved.

[0028] When it is needed to drive the storage box 2 to slide left or right along the workbench 1, the embodiment adopts the following mode: the top surface of the workbench 1 is transversely provided with a plurality of sliding grooves 11 along the width direction, the bottom surface of the storage box 2 is transversely provided with a plurality of second sliding blocks 5 along the width direction, one second sliding block 5 is correspondingly arranged with one sliding groove 11 and can slide along the sliding groove 11, specifically, the bottom of the workbench 1 is transversely provided with a plurality of second linear quantitative advancing devices 4 along the width direction, one sliding groove 11 is correspondingly arranged with one second linear quantitative advancing device 4, and the second sliding block 5 cooperates with the second linear quantitative advancing device 4; the second linear quantitative advancing device 4 drives the second sliding block 5 to move transversely along the width direction of the workbench 1, thereby driving the whole storage box 2 to move transversely along the width direction of the workbench 1, that is, to slide left or right along the workbench 1, and further moving different storage cavities 22 to the push plate 32 in sequence, so that the storage cavity 22 is opposite to the push plate 32; preferably, in order to ensure the controllability and tightness of cooperation in the working process and realize automatic processing, the first linear quantitative advancing device 31 and the second linear quantitative advancing device 4 are connected with an external central control system (electrically connected or signal connected), so that the movement track of the storage box 2 can be more accurately controlled, the storage cavity 22 is aligned with the push plate 32 in sequence, and the push plate 32 is used to push the rod-shaped materials in each storage cavity 22 in sequence, so that the precision control of the conveying process is realized, and the working efficiency and quality are improved.

[0029] In order to ensure the support stability of the transverse movement of the storage box 2, in the embodiment, a sliding support device is further arranged between the workbench and the storage box 2 to ensure the support stability of the transverse movement of the storage box 2; specifically, the sliding support device can adopt the following mode: a plurality of guide rails 7 are arranged on the top surface of the workbench 1 along the width direction, and the bottom of the storage box 2 is correspondingly provided with a plurality of guide sliding blocks 6, one guide sliding block 6 is correspondingly arranged with one guide rail 7 and can slide along the guide rail 7; in this way, during the transverse movement of the storage box 2 driven by the above-mentioned second linear quantitative advancing device 4, the storage box 2 can slide transversely along the guide rails 7 on the top surface of the workbench 1 by using the guide sliding blocks 6 on the bottom of the storage box 2, so as to ensure the support stability of the transverse movement of the storage box 2, and the use is safer and more reliable.

[0030] In addition, the sliding support device can also adopt the following mode to replace the cooperation mode of the guide sliding block 6 and the guide rail 7, such as the conveying mode of the belt and the chain, which is not limited to the cooperation mode of the guide sliding block 6 and the guide rail 7.

[0031] In the embodiment, the width of the storage cavity 22 is consistent with the outer diameter of the rod-shaped material, so that the rod-shaped material can be placed more stably in the storage cavity 22, and excessive shaking of the rod-shaped material is avoided, so as to affect the conveying effect and the subsequent cutting quality.

[0032] In other embodiments, the partition plates 21 and the material storage box 2 can be detachably connected, for example, a plurality of recesses for placing the partition plates 21 can be formed on the bottom surface of the material storage box 2. In this way, the partition plates 21 of different heights or different interval widths can be placed according to the requirements, so that the partition plates 21 of different heights or different numbers can be better adjusted, thereby better meeting the use requirements.

[0033] Finally, in other embodiments, a plurality of push plates 32 can be arranged side by side, that is, a plurality of push plates 32 are used to simultaneously push the rod-shaped materials in the plurality of storage cavities 22. At the same time, a plurality of cutting devices are arranged at the end of the conveying device, so that the rod-shaped materials in the plurality of storage cavities 22 can be respectively pushed into the corresponding cutting devices for cutting.

[0034] The above is only the preferred embodiment of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A rod material conveying device, characterized by The application relates to a workbench and a storage box slidingly arranged on the workbench, wherein a plurality of partitions are arranged side by side in the length direction in the storage box, a storage cavity for placing rod-shaped materials is formed between two adjacent partitions, and a plurality of the rod-shaped materials are sequentially and vertically arranged in the storage cavity. A pushing mechanism is arranged on the workbench and used for pushing the rod-shaped materials in the storage cavity to move along the length direction of the storage cavity, and the pushing mechanism can push the rod-shaped materials to the cutting device at the end of the storage box. The pushing mechanism comprises a first linear quantitative pushing device arranged above the storage box and a pushing plate connected with the bottom of a first sliding block of the first linear quantitative pushing device; the first linear quantitative pushing device is fixed on the workbench through a supporting frame; the height of the pushing plate is not less than the height of the partition; and the pushing plate can push the rod-shaped materials in the storage cavity to move along the length direction of the storage cavity.

2. Stick material conveying device according to claim 1, characterized in that The top surface of the workbench is transversely provided with a plurality of sliding grooves along the width direction; the bottom surface of the storage box is transversely provided with a plurality of second sliding blocks along the width direction; one second sliding block is correspondingly arranged with one sliding groove and can slide along the sliding groove.

3. Stick material conveying device according to claim 2, characterized in that The bottom of the workbench is transversely provided with a plurality of second linear quantitative pushing devices along the width direction; one sliding groove is correspondingly arranged with one second linear quantitative pushing device.

4. Stick material conveying device according to claim 2, characterized in that A sliding supporting device is arranged between the workbench and the storage box to ensure the supporting stability when the storage box moves transversely.

5. The rod material conveying apparatus according to claim 1, wherein The width of the storage cavity is consistent with the outer diameter of the rod-shaped materials.

6. The stick material delivery device according to claim 1, wherein The partition is detachably connected with the storage box.

7. The stick material delivery device according to claim 1, wherein The first linear quantitative pushing device and the second linear quantitative pushing device are connected with an external central control system.