Carton conveyer

文档序号:1093430 发布日期:2020-09-25 浏览:11次 中文

阅读说明:本技术 一种纸盒传送机 (Carton conveyer ) 是由 谭燕红 于 2020-07-23 设计创作,主要内容包括:本发明公开了一种纸盒传送机,其结构包括控制开关、传送带、底座支架、驱动器,控制开关与传送带嵌固连接,驱动器安装于传送带的左侧靠后位置,传送带与底座支架相焊接,通过纸箱对传送带上的伸缩块产生的向下的推力,能够使伸缩块沿着框架向下滑动收缩,从而使未收纸箱挤压的伸缩块能够对纸箱进行位置固定,通过纸箱对末置头上的摆动板产生的推力,能够使摆动板向外摆动,且通过纸箱对摆动板上的受力板产生的持续挤压,能够使受力板向后接板方向进行收缩,从而使回弹环能够对受力板受到到的推力进行推力进行缓冲,有效的避免了纸箱直接从传送带2上掉落至容器内部会出现损坏的情况。(The invention discloses a carton conveyor which structurally comprises a control switch, a conveyor belt, a base bracket and a driver, wherein the control switch is fixedly connected with the conveyor belt in an embedded manner, the driver is arranged at the rear position close to the left side of the conveyor belt, the conveyor belt is welded with the base bracket, the telescopic blocks on the conveying belt can slide downwards along the frame to shrink by the downward thrust generated by the carton to the telescopic blocks, so that the position of the paper box can be fixed by the telescopic block extruded by the non-delivery paper box, the swinging plate can swing outwards by the thrust generated by the paper box to the swinging plate on the tail end head, and the stress plate on the swinging plate can be contracted towards the rear connecting plate by the continuous extrusion of the carton to the stress plate, thereby make the thrust that the ring can receive the atress board of kick-backing carry out thrust and cushion, effectually avoided the carton directly to drop to the inside condition that can appear damaging of container from conveyer belt 2.)

1. The utility model provides a carton conveyer, its structure includes control switch (1), conveyer belt (2), base support (3), driver (4), control switch (1) and conveyer belt (2) are embedded solid to be connected, driver (4) are installed and are leaned on back position, its characterized in that in the left side of conveyer belt (2): the conveyor belt (2) is welded with the base support (3);

conveyer belt (2) are including flexible piece (21), return shell fragment (22), end put head (23), frame (24), flexible piece (21) and frame (24) are embedded and are connected, return shell fragment (22) and install between flexible piece (21) and frame (24), end put head (23) and frame (24) structure as an organic whole.

2. A carton conveyor as in claim 1 wherein: flexible piece (21) include outer slider (a 1), bottoming block (a 2), pull strip (a 3), boosting frame (a 4), outer slider (a 1) and bottoming block (a 2) activity block, it is connected with boosting frame (a 4) to pull strip (a 3), boosting frame (a 4) is installed between two outer sliders (a 1).

3. A carton conveyor as in claim 2 wherein: the outer slider (a 1) comprises an inner shrinking block (a 11), a guide frame (a 12), an elastic strip (a 13) and a plate surface (a 14), the inner shrinking block (a 11) is movably clamped with the guide frame (a 12), the guide frame (a 12) is fixedly connected with the plate surface (a 14), and the elastic strip (a 13) is installed between the inner shrinking block (a 11) and the plate surface (a 14).

4. A carton conveyor as in claim 3 wherein: the retraction block (a 11) comprises an adsorption disc (b 1), a lower sliding rod (b 2), an elastic strip (b 3), a bottom plate (b 4) and a guide rod (b 5), wherein the adsorption disc (b 1) is connected with the lower sliding rod (b 2), the elastic strip (b 3) is installed between the lower sliding rod (b 2) and the bottom plate (b 4), one end of the guide rod (b 5) is movably clamped with the lower sliding rod (b 2), and the other end of the guide rod (b 5) is fixedly embedded with the bottom plate (b 4).

5. A carton conveyor as in claim 1 wherein: the tail head (23) comprises a swinging plate (c 1), an elastic piece (c 2) and a bearing plate (c 3), the swinging plate (c 1) is hinged with the bearing plate (c 3), and the elastic piece (c 2) is installed between the swinging plate (c 1) and the bearing plate (c 3).

6. A carton conveyor as in claim 5 wherein: the swinging plate (c 1) comprises a stress plate (c 11), a rebound ring (c 12) and a rear connecting plate (c 13), and the stress plate (c 11) is connected with the rear connecting plate (c 13) through the rebound ring (c 12).

7. A carton conveyor as in claim 5 wherein: the bearing plate (c 3) comprises a lower sliding plate (d 1), a reset strip (d 2) and a plate body (d 3), the lower sliding plate (d 1) is movably clamped with the plate body (d 3), and the reset strip (d 2) is installed between the lower sliding plate (d 1) and the plate body (d 3).

Technical Field

The invention relates to the field of carton conveying, in particular to a carton conveyor.

Background

The carton conveyer is mainly used for carrying out cross-region conveying on cartons for packaging, the cartons can be conveyed to a specified position by placing the cartons on the conveyer belt and then rotating the conveyer belt at a uniform speed, the working efficiency is greatly improved, and the labor force is saved.

Because the carton conveyer conveys the carton at the uniform speed, the next procedure can have enough time to carry out work such as joint sealing to the carton, if the spherical product is packed in the carton, then when the conveyer belt is downhill, the phenomenon that the spherical product rolls forward in the carton appears easily, thereby the spherical product can appear and promote the carton to move forward from the carton inside, lead to the next procedure can appear too late to carry out the joint sealing to the carton that moves.

Disclosure of Invention

In view of the above problems, the present invention provides a carton conveyor.

In order to achieve the purpose, the invention is realized by the following technical scheme: a carton conveyor structurally comprises a control switch, a conveyor belt, a base support and a driver, wherein the control switch is fixedly connected with the conveyor belt in an embedded mode, the driver is installed at the position, close to the rear, of the left side of the conveyor belt, and the conveyor belt is welded with the base support; the conveyer belt includes flexible piece, the piece that kick-backs, end put head, frame, flexible piece is connected with the frame is embedded admittedly, the piece that kick-backs is installed between flexible piece and frame, end put head and frame structure as an organic whole.

As a further optimization of the invention, the telescopic block comprises outer sliding blocks, a bottoming block, a pulling strip and a boosting frame, the outer sliding blocks are movably clamped with the bottoming block, the pulling strip is connected with the boosting frame, the boosting frame is arranged between the two outer sliding blocks, and the boosting frame is in an X-shaped structure.

As a further optimization of the invention, the outer sliding block comprises an inner shrinking block, a guide frame, three elastic strips and a plate surface, wherein the inner shrinking block is movably clamped with the guide frame, the guide frame is fixedly embedded with the plate surface, the elastic strips are arranged between the inner shrinking block and the plate surface, and the inner shrinking blocks are uniformly distributed on the plate surface in parallel through the matching of the guide frame.

As a further optimization of the invention, the retraction block comprises an adsorption disc, a lower sliding rod, an elastic strip, a bottom plate and a guide rod, the adsorption disc is connected with the lower sliding rod, the elastic strip is installed between the lower sliding rod and the bottom plate, one end of the guide rod is movably clamped with the lower sliding rod, the other end of the guide rod is fixedly embedded with the bottom plate, and the adsorption disc can slide downwards along the guide rod under the coordination of the lower sliding rod through the extrusion of the carton on the adsorption disc.

As a further optimization of the invention, the tail head comprises a swinging plate, five elastic pieces and a bearing plate, wherein the swinging plate is hinged with the bearing plate, the elastic pieces are installed between the swinging plate and the bearing plate, and the swinging plate is uniformly distributed on the outer surface of the bearing plate in a fan shape.

As a further optimization of the invention, the swinging plate comprises a stress plate, a rebound ring and a rear connecting plate, wherein the stress plate is connected with the rear connecting plate through the rebound ring, the rebound ring is made of spring steel, and the whole swinging plate is of an oval structure.

As a further optimization of the invention, the bearing plate comprises a lower sliding plate, a reset strip and a plate body, wherein the lower sliding plate is movably clamped with the plate body, the reset strip is arranged between the lower sliding plate and the plate body, and the lower sliding plate can slide downwards along the plate body by pulling the lower sliding plate through a mechanism.

The invention has the following beneficial effects:

1. the downward thrust generated by the telescopic block on the conveying belt through the carton can enable the telescopic block to slide and contract downwards along the frame, so that the telescopic block extruded by the non-delivery carton can fix the position of the carton, and the condition that the carton moves forwards can be effectively avoided when the carton is in a downhill for avoiding the situation that the carton is internally provided with a spherical product.

2. Thrust that produces to the last swing board of putting through the carton can make swing board outwards swing, and through the continuous extrusion that the cardboard box produced the atress board on to swing board, can make the atress board shrink to the postlaminar direction to make the resilience ring can carry out thrust to the thrust that the atress board received and cushion, the effectual condition of damage can appear dropping to the container inside from the conveyer belt of having avoided the carton directly.

Drawings

Fig. 1 is a schematic structural view of a carton conveyor of the present invention.

FIG. 2 is a schematic side view of a portion of a conveyor belt according to the invention.

FIG. 3 is a schematic structural diagram of a side view section of the telescoping block of the present invention.

FIG. 4 is a side view of the outer slider of the present invention in half cross-section.

FIG. 5 is a schematic side view of the retraction block of the present invention.

FIG. 6 is a schematic structural view of a distal end view of the present invention.

FIG. 7 is a side view of the swing plate of the present invention.

FIG. 8 is a side view of the bearing plate of the present invention.

In the figure: the device comprises a control switch-1, a conveyor belt-2, a base bracket-3, a driver-4, a telescopic block-21, a rebound sheet-22, an end head-23, a frame-24, an outer slide block-a 1, a bottoming block-a 2, a pulling strip-a 3, a boosting frame-a 4, an inner contraction block-a 11, a guide frame-a 12, an elastic strip-a 13, a plate surface-a 14, an adsorption disc-b 1, a lower slide rod-b 2, an elastic strip-b 3, a bottom plate-b 4, a guide rod-b 5, a swing plate-c 1, an elastic sheet-c 2, a bearing plate-c 3, a stress plate-c 11, a rebound ring-c 12, a rear connecting plate-c 13, a lower slide plate-d 1, a reset strip-d 2 and a plate body-d 3.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

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