CN210853103U - Abnormal material transfer device - Google Patents
Abnormal material transfer device Download PDFInfo
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- CN210853103U CN210853103U CN201921502540.4U CN201921502540U CN210853103U CN 210853103 U CN210853103 U CN 210853103U CN 201921502540 U CN201921502540 U CN 201921502540U CN 210853103 U CN210853103 U CN 210853103U
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Abstract
The utility model discloses an abnormal material transfer device. The multi-direction compound driving device comprises a vertical lifting cylinder and a transverse sliding cylinder, wherein the vertical lifting cylinder and the transverse sliding cylinder are respectively arranged, a piston rod of the lifting cylinder is connected with a lower end connecting plate of two push guide plates, a guide sliding block is fixed on a lifting cylinder body, the guide sliding block is connected with a guide sliding rail in a sliding mode through corresponding concave parts or concave grooves on two corresponding sides of the bottom of the guide sliding block, the guide sliding rail is a triangular guide sliding rail with an angular cross section, the guide sliding rail is fixed on a rack below a material collecting bin, the cylinder body of the transverse sliding cylinder is fixed on the corresponding part of the rack, and a piston rod of the transverse sliding cylinder is connected with the guide sliding block. This abnormal material transfer device simple structure, reasonable can satisfy the dress box of corresponding requirement and carry the feed, its strong adaptability.
Description
Technical Field
The utility model relates to an abnormal material transfer device.
Background
The packing of medicine, food, etc. in boxes is based on the material type, inner packing type and/or relevant packing requirement, packing machine, etc. before being fed into packing boxes, the material is conveyed via corresponding converting process including material compounding, material conveying, stacking, etc. So as to achieve and obtain the boxing package with more reliable operation, rapidness and high efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the not enough of above-mentioned prior art existence, provide an abnormal material transfer device. This abnormal material transfer device simple structure, reasonable can satisfy the dress box of corresponding requirement and carry the feed, its strong adaptability.
The utility model discloses material transfer device's abnormal technical scheme includes multidirectional double entry drive arrangement, multidirectional double entry drive arrangement is including being vertical and the horizontal lift cylinder and the horizontal cylinder that slides that sets up respectively, the piston rod of lift cylinder is connected in two lower extreme connecting plates that push away the baffle, and lift cylinder body is fixed with the direction slider, the direction slider is connected with the direction slide rail through the corresponding depressed part of its bottom corresponding both sides or depressed groove glide, the direction slide rail is the triangle-shaped direction slide rail of transversal personally submitting the angle type, and the direction slide rail is fixed in the below frame of collection feed bin, the cylinder body of horizontal cylinder that slides is fixed in frame relevant part, and the piston rod of horizontal cylinder that slides is connected in the direction slider.
The utility model discloses the abnormal transfer device of material can realize that the disposable form that changes of range upon range of material shifts and carries the dress box, both, it will keep flat or the vertical a pile of material carries out the diversion or warp the attitude and forwards the transmission, if with a range upon range of flat material fixed quantity transform of range upon range of stromatolite shift and shift on the back and pass on the output after standing. And the conveying and feeding operation efficiency is high, and the operation is stable and reliable.
Drawings
Fig. 1 is a schematic perspective view of an embodiment of a material transformation and transfer device of the present invention; FIG. 2 is a schematic view of the conversion hopper material loading of the present invention; FIG. 3 is a schematic view of the material discharge of the conversion hopper of the present invention; fig. 4 is a schematic structural view of an embodiment of the derivation loading device or the multi-directional compound driving device thereof according to the present invention.
Detailed Description
In order to further understand the technical solution of the present invention, the present invention will be further explained by the following embodiments with reference to the attached drawings. As shown in fig. 1-4. The utility model discloses an abnormal material transfer device including set up in 1 output of material input conveyer belt, its discharge gate 5 set up in the collection feed bin 2 of a corresponding lateral wall in bottom, locate collection feed bin 2 lower part one side, with the material dress transform discharge apparatus between 13 inputs of box conveyer belt to and set up in the derivation packing into device etc. of the discharge gate of collection feed bin. The material input conveyer belt and the material boxing conveyer belt are arranged up and down and longitudinally and transversely.
The conversion discharge device comprises a transition trough type conversion hopper 6, a conversion driver connected with the transition trough type conversion hopper, and a corresponding discharge device. The transition hopper is rotatably hinged to the corresponding frame 10 from the bottom corner of the corresponding side thereof by means of a hinge.
Aqueduct mouth of aqueduct type conversion hopper 6 can change (namely side-turning) formula and correspond to the discharge gate of the aggregate bin, the corresponding end notch of aqueduct type conversion hopper can change (namely side-turning) formula and correspond to the corresponding bin grid 14 close to the input end of the boxing conveyer belt, the conversion driver is a conversion cylinder 7 whose piston rod is connected to the outer wall surface of the bottom plate of the aqueduct type conversion hopper, and the cylinder body of the conversion cylinder 7 is arranged and fixed on the corresponding frame in the up-down direction. The discharge device of the transition-trough type conversion hopper comprises a pushing body 12 correspondingly arranged at the notch at the corresponding other end of the transition-trough type conversion hopper, and a discharge cylinder 8 which is connected between the pushing body and the frame and is horizontally or longitudinally arranged.
The derivation and loading device comprises a multidirectional duplex driving device, two guide notches 4 which are arranged on the side walls of the bottom wall of the collecting bin and the opposite sides of the discharge port of the collecting bin and extend along the corresponding parts of the rack outside the collecting bin, and two push guide plates 3 which are positioned on the two guide notches, wherein the heights of the two guide notches on the side walls of the collecting bin correspond to the stacking height of boxed materials (or materials loaded into a transition-slot type conversion hopper). The spacing distance between the two push guide plates is smaller than the specification and the size of the material in the corresponding direction.
The multi-direction compound driving device comprises a lifting cylinder 17 and a transverse sliding cylinder 18 which are respectively arranged vertically and transversely. The piston rod of the lifting cylinder is connected with the lower end connecting plate of the two push guide plates 3, the cylinder body of the lifting cylinder is fixed with a guide slide block 21, and the guide slide block is connected with a guide slide rail 19 in a sliding manner through corresponding concave parts or concave grooves 21 on two corresponding sides of the bottom of the guide slide block. The guide slide rail is a triangular guide slide rail with an angular cross section, and the guide slide rail is fixed on the machine frame below the material collecting bin. The cylinder body of the transverse sliding cylinder 18 is fixed at the corresponding part of the frame, and the piston rod of the transverse sliding cylinder is connected with the guide slide block.
The upper end of the material collecting bin is higher than the material input conveying belt, and a material observation window 16 is arranged on the side wall of one corresponding side of the material collecting bin along the height direction of the material collecting bin. And drivers such as the multidirectional compound driving device, the transformation air cylinder, the discharging air cylinder and the like are in signal connection with the system controller.
During operation, under the synchronous coordination control action of the system controller: the plate-like material 15 to be packaged falls into the material collecting bin under the action of conveying inertia and free falling body and gathers in the material collecting bin, the unloading cylinder and the pushing body thereof are in a contraction state, the pushing guide plate is withdrawn out of the material collecting bin and is in a lifting state, at the moment, the transformation cylinder drives the transition trough type transformation feeding hopper to turn 90 degrees laterally, the transition trough port of the transformation feeding hopper is aligned with the material outlet of the material collecting bin, under the mutual cooperation of the lifting cylinder and the transverse sliding cylinder of the multi-directional compound driving device, the two pushing guide plates support the material at the corresponding upper position while pushing the material at the corresponding side position in the material collecting bin in the sliding process towards the material outlet direction, the corresponding part of the material is loaded into the transition trough type transformation feeding hopper, then, the transition trough type transformation feeding hopper rotates 90 degrees to make the transition trough port of the transition trough aligned with the corresponding one bin grid at the input end of the boxing conveying belt, at the, and a stack of materials in the aqueduct type conversion feeding hopper is converted from a flat position to a side stand through the pushing body and then discharged into the bin lattices of the boxing conveying belt, and the boxing conveying belt moves one step by one step until the next bin lattice moves to the position of the corresponding aqueduct type conversion feeding hopper. During the process, after the aqueduct type conversion feeding hopper rotates, the push guide plate descends and retreats out of the material collecting bin and then ascends to reset, standby is carried out, the material of the material collecting bin integrally descends to the bottom filled with the material, and thus, material conversion conveying is completed. And after the aqueduct type conversion feeding hopper finishes discharging, starting the next charging material conversion conveying operation, repeating the actions, and repeating the steps in a circulating way.
Claims (1)
1. A material metamorphosis transfer device comprises a multidirectional compound driving device and is characterized in that the multidirectional compound driving device comprises a lifting cylinder and a transverse sliding cylinder which are vertically and transversely arranged, a piston rod of the lifting cylinder is connected to a lower end connecting plate of two push guide plates, a guide sliding block is fixed on a body of the lifting cylinder, the guide sliding block is connected with a guide sliding rail in a sliding mode through corresponding concave parts or concave grooves on two corresponding sides of the bottom of the guide sliding block, the guide sliding rail is a triangular guide sliding rail with an angular cross section, the guide sliding rail is fixed on a rack below a material collecting bin, a body of the transverse sliding cylinder is fixed on a corresponding part of the rack, and a piston rod of the transverse sliding cylinder is connected to the guide sliding block.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921502540.4U CN210853103U (en) | 2019-09-10 | 2019-09-10 | Abnormal material transfer device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921502540.4U CN210853103U (en) | 2019-09-10 | 2019-09-10 | Abnormal material transfer device |
Publications (1)
Publication Number | Publication Date |
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CN210853103U true CN210853103U (en) | 2020-06-26 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201921502540.4U Active CN210853103U (en) | 2019-09-10 | 2019-09-10 | Abnormal material transfer device |
Country Status (1)
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CN (1) | CN210853103U (en) |
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2019
- 2019-09-10 CN CN201921502540.4U patent/CN210853103U/en active Active
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