CN216759099U - Sheet stacking device - Google Patents

Sheet stacking device Download PDF

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Publication number
CN216759099U
CN216759099U CN202221100817.2U CN202221100817U CN216759099U CN 216759099 U CN216759099 U CN 216759099U CN 202221100817 U CN202221100817 U CN 202221100817U CN 216759099 U CN216759099 U CN 216759099U
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China
Prior art keywords
stacking
rolling pulley
lifting
components
plate
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CN202221100817.2U
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Chinese (zh)
Inventor
武清绪
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Henan Fengshou New Energy Vehicle Co ltd
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Henan Fengshou New Energy Vehicle Co ltd
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Abstract

The utility model discloses a plate stacking device, which comprises a material roll, a pressing device, an induction probe, a material rack, lifting stacking components, rolling pulley components and plates, wherein the material roll forms the plates after being pressed by the pressing device, the plates are in sliding connection with rollers in the rolling pulley components, the rolling pulley components are uniformly distributed in pairs, the material rack is positioned on the left side of the pressing device, the induction probe is arranged on a frame at the upper end of the material rack, one side of the induction probe corresponds to an external cutting device, the lifting stacking components are arranged in the left end of the material rack, a buffer plate in the lifting stacking components corresponds to the two rolling pulley components at the left end, the induction probe realizes automatic accurate cutting, the rotation of the rolling pulley components realizes the action of automatic blanking stacking, the lifting stacking components and the material racks form a proper blanking height difference, so that the collision and abrasion between the adjacent plates in the stacking process are avoided, improve the stacking efficiency while protecting the sheet material finished product.

Description

Sheet stacking device
Technical Field
The utility model relates to the technical field of plate stacking, in particular to a plate stacking device.
Background
The steel plate raw material is generally coiled material when leaving a factory from a steel plant, and a manufacturer using the steel plate material needs to directly purchase the steel plate coiled material or purchase a cut plate; for manufacturers directly purchasing coiled materials, the coiled materials conveyed into the factory need to be uncoiled on an uncoiler and roughly cut into large plates with certain lengths, rough calibration and fine calibration are carried out on a leveling machine, the large plates are leveled, the large plates are used as steel plate raw materials for standby in the factory, when the device is used, the large plates need to be cut into plates with smaller sizes according to actual conditions, then stamping and blanking are carried out on a stamping machine tool, stamping blanking pieces with required shapes are obtained, two plate discharging modes of front discharging and side discharging are generally adopted in stamping and uncoiling lines to improve blanking working efficiency, wherein the plate materials discharged from a side sliding table are generally stacked manually during side discharging, so that the device has great potential safety hazards in the actual operation process, and the device also has the problem of high labor intensity for operators.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to overcome the existing defects, and provide a plate stacking device which is simple in structure, simple and convenient to operate, provides convenience for people and can effectively solve the problems in the background art.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a sheet material stacking device, including material book, press device, inductive probe, work or material rest, liftable stacking component, rolling loose pulley assembly and sheet material, it forms the sheet material to roll up after material is pressed through press device, the sheet material and the gyro wheel sliding connection among the rolling loose pulley assembly, rolling loose pulley assembly is two bisymmetry and is a set of evenly distributed, two bisymmetry of rolling loose pulley assembly are connected with the work or material rest, the work or material rest is located press device left side, and be equipped with inductive probe on the frame of work or material rest upper end, inductive probe one side is corresponding with outside cutting device, and the inside liftable stacking component that is equipped with of work or material rest left end, and the buffer board among the liftable stacking component is corresponding with two sets of rolling loose pulley assembly of left end.
Further, the rolling pulley assembly comprises a driving shaft, the upper end of the driving shaft is fixedly connected with the material rack through a connecting seat, and the lower end of the driving shaft is rotatably connected with the roller through a connecting rod.
Furthermore, the liftable stacking component comprises a supporting seat, the supporting seat is connected with a lifting twisting frame through two groups of cylinders, the lower end of the lifting twisting frame is connected with the supporting seat, and the upper end of the lifting twisting frame is connected with the fixed plate.
Furthermore, the fixed plate is connected with the buffer plate through a damping spring, and the fixed plate and the buffer plate are consistent in structure.
Compared with the prior art, the utility model has the beneficial effects that: this panel stacking device has following benefit:
1. the induction probe is arranged on the automatic cutting machine, when a sheet material is contacted with the group of rolling pulley assemblies at the leftmost end, the sheet material is conveyed to the position to be cut, and the information of the sheet material conveyed to the cutting position is transmitted to the external cutting device by the induction probe, so that automatic and accurate cutting is realized.
2. According to the automatic blanking and stacking device, the rolling pulley assemblies are arranged, the driving shaft drives the idler wheels to rotate in the horizontal direction through the connecting rods until the idler wheels are separated from the plate, when the plate is not supported by the idler wheels, the plate is automatically blanked and stacked, the defects that manual carrying is time-consuming and labor-consuming and has safety and hidden damage are overcome, and the production efficiency is improved.
3. The lifting stacking assembly is arranged on the stacking device, the plate materials pass through the damping spring between the buffer plate and the fixed plate in the stacking process, the phenomenon that the plate materials are damaged in the blanking process is avoided, meanwhile, the telescopic rods in the air cylinders are shortened layer by layer along with the stacking process of the plate materials, so that the buffer plate and the plate materials form a proper blanking height difference, collision and abrasion between the adjacent plate materials in the stacking process are avoided, the quality of the plate materials is protected, and the stacking efficiency is improved.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a portion of the structure of the present invention.
In the figure: 1 material roll, 2 press device, 3 inductive probe, 4 work or material rest, 5 liftable put things in good order subassembly, 51 supporting seat, 52 cylinders, 53 lift hank framves, 54 fixed plate, 55 buffer board, 6 rolling pulley assembly, 61 drive shafts, 62 connecting rods, 63 gyro wheels, 7 sheet metals.
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.
Referring to fig. 1-2, the present invention provides a technical solution: a sheet stacking device comprises a material roll 1, a material pressing device 2, an induction probe 3, a material rack 4, a lifting stacking component 5, a rolling pulley component 6 and a sheet 7, wherein the material roll 1 presses materials through the material pressing device 2 to form the sheet 7, the material pressing device 2 is the prior art, and is not explained much, the sheet 7 is connected with a roller 63 in the rolling pulley component 6 in a sliding manner, the rolling pulley components 6 are distributed uniformly in a group in a pairwise manner, the rolling pulley components 6 are connected with the material rack 4 in a pairwise manner, the material rack 4 is positioned at the left side of the material pressing device 2, the induction probe 3 is arranged on a frame at the upper end of the material rack 4, one side of the induction probe 3 corresponds to an external cutting device, the induction probe 3 transmits information of the sheet 7 to a cutting position to the external cutting device, so that automatic and accurate cutting is realized, and the lifting stacking component 5 is arranged inside the left end of the material rack 4, the buffer plate 55 in the lifting and stacking assembly 5 corresponds to the two sets of rolling pulley assemblies 6 at the left end, each rolling pulley assembly 6 comprises a driving shaft 61, the upper end of each driving shaft 61 is fixedly connected with the material rack 4 through a connecting seat, the lower end of each driving shaft 61 is rotatably connected with a roller 63 through a connecting rod 62, the cut sheet material 7 is supported through the rollers 63, the driving shafts 61 drive the rollers 63 to rotate in the horizontal direction through the connecting rods 62 until the rollers 63 are separated from the sheet material 7, when the sheet material 7 is not supported by the rollers 63, the sheet material 7 can automatically fall and stack, the defects of time and labor waste in manual transportation and safety and damage are avoided, the production efficiency is improved, the lifting and stacking assembly 5 comprises a supporting seat 51, the supporting seat 51 is connected with a lifting and stacking frame 53 through two sets of air cylinders 52, the two sets of air cylinders 52 can keep lifting and balancing, and the lower end of the lifting and stacking frame 53 is connected with the supporting seat 51, the upper end of the lifting hinge frame 53 is connected with the fixed plate 54, the fixed plate 54 is connected with the buffer plate 55 through the damping spring, the fixed plate 54 and the buffer plate 55 are consistent in structure, the plate 7 is in contact with the buffer plate 55 in the blanking and stacking process, at the moment, the buffer plate 55 is subjected to gravity buffering through the damping spring between the buffer plate 55 and the fixed plate 54 under the action of the plate 7, the phenomenon of collision and damage in the blanking process of the plate 7 is avoided, meanwhile, the telescopic rod in the air cylinder 52 is shortened layer by layer along with the stacking process of the plate 7, so that the buffer plate 55 and the plate 7 form a height difference of proper blanking, collision and abrasion between adjacent plates 7 in the stacking process are avoided, the quality of the plate material is protected, and the stacking efficiency is improved.
When in use: before stacking, the fixed plate 54 and the buffer plate 55 are driven by the air cylinder 52 to be in a lifting state, the material coil 1 is punched and formed into a sheet material 7 by the pressing device 2, the sheet material 7 moves leftwards by the roller 63, when the sheet material 7 moves to a position to be cut, namely the sheet material 7 is in contact with a group of rolling pulley assemblies 6 at the leftmost end, the induction probe 3 transmits cutting information to an external cutting device, so that the cutting of the sheet material 7 is realized, after the cutting is finished, the driving shaft 61 rotates, so that the roller 63 and the connecting rod 62 rotate towards two sides of the material rack 7 by taking the driving shaft 61 as the center, the roller 63 and the sheet material 7 are separated, the sheet material 7 falls onto the buffer plate 55 to realize stacking, at the moment, the buffer plate 55 is subjected to gravity buffering by a damping spring between the buffer plate 55 and the fixed plate 54, the phenomenon of breakage in the sheet material 7 process is avoided, and simultaneously, the telescopic rods in the air cylinders 52 are shortened layer by layer along with the stacking process of the plates 7, so that the buffer plates 55 and the plates 7 form a proper blanking height difference, collision and abrasion between adjacent plates 7 in the stacking process are avoided, and the whole process of automatic cutting and stacking of the plates is realized.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (4)

1. The utility model provides a sheet material stacking device, includes material book (1), press device (2), inductive probe (3), work or material rest (4), liftable stacking component (5), roll loose pulley assembly (6) and sheet material (7), its characterized in that: the material roll (1) forms a sheet material (7) after being pressed by the pressing device (2), the sheet material (7) is in sliding connection with rollers (63) in the rolling pulley assemblies (6), the rolling pulley assemblies (6) are in pairwise symmetry and are distributed uniformly, the rolling pulley assemblies (6) are in pairwise symmetry and are connected with the material rack (4), the material rack (4) is located on the left side of the pressing device (2), an induction probe (3) is arranged on a frame at the upper end of the material rack (4), one side of the induction probe (3) corresponds to an external cutting device, a liftable stacking assembly (5) is arranged inside the left end of the material rack (4), and a buffer plate (55) in the liftable stacking assembly (5) corresponds to two sets of rolling pulley assemblies (6) at the left end.
2. A sheet stacking apparatus according to claim 1, wherein: the rolling pulley assembly (6) comprises a driving shaft (61), the upper end of the driving shaft (61) is fixedly connected with the material rack (4) through a connecting seat, and the lower end of the driving shaft (61) is rotatably connected with a roller (63) through a connecting rod (62).
3. A sheet stacking apparatus according to claim 1, wherein: the lifting stacking assembly (5) comprises a supporting seat (51), the supporting seat (51) is connected with a lifting twisting frame (53) through two groups of cylinders (52), the lower end of the lifting twisting frame (53) is connected with the supporting seat (51), and the upper end of the lifting twisting frame (53) is connected with a fixing plate (54).
4. A sheet stacking apparatus according to claim 3, wherein: the fixing plate (54) is connected with the buffer plate (55) through a damping spring, and the fixing plate (54) and the buffer plate (55) are consistent in structure.
CN202221100817.2U 2022-05-10 2022-05-10 Sheet stacking device Active CN216759099U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221100817.2U CN216759099U (en) 2022-05-10 2022-05-10 Sheet stacking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221100817.2U CN216759099U (en) 2022-05-10 2022-05-10 Sheet stacking device

Publications (1)

Publication Number Publication Date
CN216759099U true CN216759099U (en) 2022-06-17

Family

ID=81960045

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221100817.2U Active CN216759099U (en) 2022-05-10 2022-05-10 Sheet stacking device

Country Status (1)

Country Link
CN (1) CN216759099U (en)

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