Unilateral loading attachment of single mesa engraver
Technical Field
The utility model relates to the technical field of feeding devices, in particular to a single-side feeding device of a single-table-board engraving machine.
Background
In the current industry, a single-table engraving machine feeding mode generally uses a forklift to place plates near the table of the engraving machine, and staff carries out manual conveying and feeding, so that the labor intensity is high. In the prior art, there is an automatic feeding device of an engraving machine, a plate is moved onto a roller line through a portal frame, and then the plate is transported onto the engraving machine on one side of the roller line through the roller line, although the device has realized automatic feeding, only plates with one thickness can be fed, and a plurality of furniture needs plates with various thicknesses, for example, the thickness of the plates related to a sofa is about 4.
Disclosure of utility model
In order to solve the technical problems, the utility model provides the unilateral feeding device of the single-table engraving machine, which can realize feeding of plates with various thicknesses.
The utility model adopts the following technical scheme:
The single-side feeding device of the single-table-board engraving machine comprises a base, a lifting mechanism arranged on the base, a transplanting assembly arranged on the lifting mechanism and comprising a material preparation layer positioned on an upper layer and a passing layer positioned on a lower layer, wherein an accommodating space for accommodating a roller conveying device is formed between the material preparation layer and the passing layer, a conveying mechanism is arranged on the material preparation layer, the material preparation can be carried out on the plates through the transplanting assembly, the feeding of the plates with various thicknesses is realized, and the plates with different goods numbers can be continuously transported from the passing layer.
Preferably, the transplanting assembly can move between a first position and a second position, the material preparation layer is higher than the roller conveying device in the first position, and the material preparation layer is lower than or flush with the roller conveying device in the second position, and the required plate can be moved by moving the transplanting assembly between the first position and the second position.
Preferably, the transplanting assembly comprises two rectangular frames and a connecting rod positioned between the two rectangular frames, so that a cuboid frame structure with stable structure is formed, and the lifting mechanism is convenient to connect.
Preferably, the conveying mechanism comprises driving wheels at two ends and a conveying belt arranged on the driving wheels, so that the plate can be conveniently moved onto the engraving machine.
Preferably, a telescopic motor is arranged between the base and the lifting mechanism, so that the transplanting assembly is conveniently controlled to move.
Preferably, the lifting mechanism is provided with a T-shaped connecting piece, the T-shaped connecting piece is provided with a connecting groove, and the driving end of the telescopic motor is hinged to the connecting groove, so that the installation stability of the telescopic motor is improved.
Compared with the prior art, the single-side feeding device of the single-table-board engraving machine has the advantages that the single-side feeding device of the single-table-board engraving machine comprises the base, the lifting mechanism and the transplanting assembly, the single-side feeding device is arranged on one side of the engraving machine, the plates can be prepared through the transplanting assembly, feeding of the plates with various thicknesses is achieved, and the plates with different goods numbers can be transported continuously from the passing layer.
Drawings
Fig. 1 is a schematic structural diagram of a single-side feeding device.
Fig. 2 is a partial enlarged view of a portion a of fig. 1.
Fig. 3 is a schematic structural view of the conveying mechanism.
Fig. 4 is a schematic diagram of a part of the structure of the single-side feeding device.
In the figure, a base 1, a lifting mechanism 2, a transplanting assembly 3, a standby material layer 3-1, a passing layer 3-2, an accommodating space 3-3, a conveying mechanism 3-4, a driving wheel 3-4-1, a conveying belt 3-4-2, a telescopic motor 4, a T-shaped connecting piece 5 and a connecting groove 5-1.
Detailed Description
In order to facilitate understanding of the technical scheme of the present utility model, the following detailed description is made with reference to the accompanying drawings and specific embodiments.
Example 1
As shown in fig. 1, a single-side feeding device of a single-table engraving machine is located at one side of the single-table engraving machine, and includes:
the base 1 is integrally of a cuboid frame structure;
The lifting mechanism 2 is arranged on the base 1;
The transplanting assembly 3 is arranged on the lifting mechanism 2 and comprises a standby material layer 3-1 positioned on the upper layer and a passing layer 3-2 positioned on the lower layer, a containing space 3-3 for containing the roller conveying device is formed between the standby material layer 3-1 and the passing layer 3-2, and a conveying mechanism 3-4 is arranged on the standby material layer 3-1.
The roller conveying device is a common material moving device and is provided with a rack and a roller, and materials can be moved through the roller. In this embodiment, the roller conveyor is disposed through the accommodation space 3-3.
The transplanting assembly 3 can move between a first position and a second position, in the first position, the standby material layer 3-1 is higher than the roller conveying device, the standby material layer 3-1 is used for jacking the plate to prevent the roller conveying device from continuously conveying the plate, and in the second position, the standby material layer 3-1 is lower than or flush with the roller conveying device, and the plate can be continuously conveyed on the roller conveying device.
When the engraving machine is used, the roller conveying device conveys the plates, at the moment, the transplanting assembly 3 is located at the second position, the standby material layer 3-1 is lower than the roller conveying device, when the needed first plate moves to the position above the standby material layer 3-1, the standby material layer 3-1 moves upwards to jack the first plate under the action of the lifting mechanism 2, so that the first plate leaves the roller conveying device, other plates or plates with different goods numbers can continue to move forwards through the roller conveying device, the conveying mechanism 3-4 moves the first plate on the standby material layer 3-1 onto the engraving machine, the standby material layer 3-1 moves downwards to the position above the standby material layer 3-1, the standby material layer 3-1 moves upwards to jack the second plate, and then the second plate on the standby material layer 3-1 moves onto the engraving machine through the conveying mechanism 3-4, so that the engraving machine is repeated until all needed plates are conveyed onto the engraving machine, and the engraving machine is unified.
As shown in fig. 2-3, the transplanting assembly 3 comprises two rectangular frames and a connecting rod positioned between the two rectangular frames, the two rectangular frames and the connecting rod are mutually connected to form a rectangular frame, and a conveying mechanism 3-4 is arranged on the upper surface of the rectangular frame. The conveying mechanism 3-4 comprises driving wheels 3-4-1 at two ends and a conveying belt 3-4-2 arranged on the driving wheels 3-4-1, and the driving wheels 3-4-1 rotate to drive the conveying belt 3-4-2 to rotate so as to move the plate to the engraving machine.
As shown in FIG. 4, a telescopic motor 4 is arranged between the base 1 and the lifting mechanism 2, a T-shaped connecting piece 5 is arranged on the lifting mechanism 2, a connecting groove 5-1 is formed in the T-shaped connecting piece 5, and the driving end of the telescopic motor 4 is hinged to the connecting groove 5-1, so that the telescopic motor 4 is convenient to install.
The foregoing is merely a preferred embodiment of the present utility model, and the scope of the utility model is defined by the claims, and those skilled in the art should also consider the scope of the present utility model without departing from the spirit and scope of the utility model.