CN114348587A - Processing device is carried to emulation flower branch - Google Patents
Processing device is carried to emulation flower branch Download PDFInfo
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- CN114348587A CN114348587A CN202210012557.1A CN202210012557A CN114348587A CN 114348587 A CN114348587 A CN 114348587A CN 202210012557 A CN202210012557 A CN 202210012557A CN 114348587 A CN114348587 A CN 114348587A
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Abstract
The invention discloses a conveying and processing device for branches and trunks of artificial flowers, which comprises a base and a supporting plate, wherein the supporting plate is arranged at the upper end of the base, two groups of fixing frames are symmetrically arranged on one side of the supporting plate, and a material bearing plate is movably arranged between the two groups of fixing frames; the material bearing plate is provided with a material discharging mechanism, and the supporting plate is provided with an adjusting mechanism for driving the material bearing plate to lift; the adjusting mechanism comprises a first pivot rod, a second pivot rod, a first fixed rod, a second fixed rod and a first hydraulic cylinder; the first pivot rod and the second pivot rod are respectively connected with the fixed frame in a rotating mode through pin shafts, the first pivot rod and the second pivot rod are connected through the connecting assembly in a transmission mode, the first hydraulic cylinder is installed on the front side of the supporting plate, and the piston rod of the first hydraulic cylinder is connected with the first pivot rod in a driving mode through the driving assembly.
Description
Technical Field
The invention relates to the technical field of artificial flower processing, in particular to a conveying and processing device for branches and stems of artificial flowers.
Background
The artificial flower refers to a false flower made of silk, crepe paper, polyester, plastic, crystal and other materials, and a dried flower baked from fresh flowers, and is generally called as an artificial flower in the industry. As the name suggests, the artificial flower is made of fresh flower as blue book and is imitated by cloth, yarn, silk, plastics and other raw materials. Today, the more precise the process of artificial flowers is, the more unrealistic the process is. Besides various flower imitations, varieties such as simulated leaves, simulated branches, simulated weeds, simulated trees, simulated plants and the like appear on the market.
The conveying and processing device for the artificial flower stems and the artificial flower stalks solves the problems that the artificial flower stems and the artificial flower bundles need to be processed respectively and then assembled into a whole when the artificial flower is produced, and currently, the artificial flower stems and the artificial flower bundles need to be taken manually when the artificial flower stems and the artificial flower bundles are processed in the prior art, so that the conveying and processing device is complex to operate and low in working efficiency.
Disclosure of Invention
The invention aims to provide a conveying and processing device for artificial flower branches, which aims to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: a conveying and processing device for artificial flower branches comprises a base and a supporting plate, wherein the supporting plate is arranged at the upper end of the base, two groups of fixing frames are symmetrically arranged on one side of the supporting plate, and a material bearing plate is movably arranged between the two groups of fixing frames;
the outer side of the material bearing plate is provided with an upwardly extending frame plate, the material bearing plate is provided with a discharging mechanism, and the supporting plate is provided with an adjusting mechanism for driving the material bearing plate to lift;
the adjusting mechanism comprises a first pivot rod, a second pivot rod, a first fixed rod, a second fixed rod and a first hydraulic cylinder;
the first pivoting rod and the second pivoting rod are respectively connected with the fixed frame in a rotating mode through pin shafts, the first fixed rod is fixedly connected below the material bearing plate, the second fixed rod is hinged below the material bearing plate, the upper end of the first pivoting rod is hinged to the first fixed rod, the upper end of the second pivoting rod is hinged to the second fixed rod, the first pivoting rod and the second pivoting rod are connected through the connecting assembly in a transmission mode, the first hydraulic cylinder is installed on the front side of the supporting plate, and the piston rod of the first hydraulic cylinder is connected with the first pivoting rod through the driving assembly in a driving mode.
As a preferable technical scheme of the invention, the lower end of the base is provided with a movable wheel set.
As a preferred technical solution of the present invention, the driving assembly includes a first driving rod and a first driving sleeve, the first driving rod is connected to the first pivot rod, the first driving sleeve is connected to the first hydraulic cylinder piston rod, and the first driving sleeve is sleeved on the first driving rod.
As a preferable technical solution of the present invention, the connecting assembly includes a second hydraulic cylinder, a second driving rod, and a second driving sleeve, the second hydraulic cylinder is mounted on the first pivot rod, the second driving sleeve is connected to a piston rod of the second hydraulic cylinder, the second driving rod is connected to the second pivot rod, and the second driving sleeve is sleeved on the second driving rod.
As a preferred technical solution of the present invention, the discharging mechanism includes a through groove disposed on the material receiving plate, and a first rotating arm and a second rotating arm rotatably disposed on one side of the frame plate, the first rotating arm is connected to the second rotating arm, one end of the first rotating arm extends to above the through groove and is connected to an upper limit rod, and one end of the second rotating arm extends to below the through groove and is connected to a lower limit rod.
As a preferable technical solution of the present invention, a driving motor is installed at a lower end of the material receiving plate, an output shaft of the driving motor is connected with a cam, and the cam is in contact with the first rotating arm.
Compared with the prior art, the invention has the beneficial effects that: according to the conveying and processing device for the artificial flower branches, a plurality of groups of artificial flower branches are flatly laid along the upper surface of the material bearing plate, the first hydraulic cylinder drives the first pivot rod to rotate through the driving assembly, the first pivot rod drives the second pivot rod to rotate through the connecting assembly, so that the first pivot rod drives the first fixed rod to move, the second pivot rod drives the second fixed rod to move, the material bearing plate is driven to lift and adjust the position, the artificial flower branches are sequentially discharged and processed through the discharging mechanism, manual taking is not needed, the operation is simple and convenient, and the processing and production efficiency of the artificial flowers is effectively improved.
The invention also has the following advantages:
when the height of the material bearing plate is adjusted, the first hydraulic piston rod stretches and retracts to drive the first driving sleeve to move, and the first driving sleeve drives the first pivoting rod to rotate by being sleeved on the first driving rod; when the material bearing plate reaches the required height, the second hydraulic cylinder can be controlled to stretch and drive the second driving sleeve to move, the second driving sleeve drives the second pivot rod to rotate by being sleeved on the second driving cylinder, so that the second pivot rod drives the material bearing plate to rotate, the angle of the material bearing plate is adjusted, the discharging angle of the simulated flower branches is controlled, and different discharging requirements are met;
when the simulated flower trunks are placed on the bearing plate, the first rotating arm drives the upper limiting rod to be inserted into the through groove due to gravity, the upper limiting rod is located on the front side of the most front simulated flower trunk to limit the simulated flower trunks, the second rotating arm drives the lower limiting rod to be located in the through groove due to the action of gravity, when discharging is conducted, the driving motor drives the cam to rotate, the cam enables the first rotating arm and the second rotating arm to jack up, the first rotating arm drives the upper limiting rod to be separated from the through groove, so that the most front simulated flower trunks are rolled out along the bearing plate, the second rotating arm drives the lower limiting rod to penetrate out of the through groove upwards, the lower limiting rod is located on the rear side of the most front simulated flower trunks to limit the simulated flower trunks, and a plurality of groups of simulated flower trunks are sequentially and intermittently conveyed and discharged at intervals, so that the simulated flower trunks can be conveniently processed, and the working efficiency is high;
when the driving motor drives the cam to rotate for a circle, the first rotating arm drives the upper limiting rod to reset, the second rotating arm drives the lower limiting rod to reset, and the simulation flower trunk at the foremost end on the material bearing plate rolls along the material bearing plate to be in contact with the upper limiting rod, so that the next discharging is facilitated;
install the control box in the backup pad, steerable driving motor drives cam pivoted interval at every turn, the different processing demands of adaptation.
Drawings
FIG. 1 is an overall side view of the present invention;
FIG. 2 is an overall cross-sectional view of the present invention;
FIG. 3 is a schematic view of the connection relationship between the adjusting mechanism and the material-bearing plate according to the present invention;
FIG. 4 is a schematic view of the material-holding plate of the present invention;
FIG. 5 is a schematic view of a discharge mechanism according to the present invention;
FIG. 6 is a schematic view showing the distribution of the through grooves on the material bearing plate according to the present invention;
in the figure: 100. a base; 110. a moving wheel set; 200. a support plate; 210. a fixed mount; 220. a control box; 300. a material bearing plate; 310. an adjustment mechanism; 311. a first pivot lever; 312. a second pivot rod; 313. a first fixing lever; 314. a second fixing bar; 315. a first hydraulic cylinder; 320. a drive assembly; 321. a first drive lever; 322. a first drive sleeve; 330. a connecting assembly; 331. a second hydraulic cylinder; 332. a second drive lever; 333. a second drive sleeve; 340. a discharge mechanism; 341. a through groove; 342. a first rotation arm; 3421. an upper limiting rod; 343. a second rotating arm; 3431. a lower limit lever; 345. a drive motor; 3451. a cam; 350. a frame plate.
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.
In the description of the present invention, it should be noted that the terms "vertical", "upper", "lower", "horizontal", and the like indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
Please refer to FIGS. 1-6
Example 1
The invention provides a technical scheme that: a conveying and processing device for artificial flower branches comprises a base 100 and a supporting plate 200, wherein the lower end of the base 100 is provided with a movable wheel set 110, the supporting plate 200 is arranged at the upper end of the base 100, two groups of fixing frames 210 are symmetrically arranged on one side of the supporting plate 200, and a material bearing plate 300 is movably arranged between the two groups of fixing frames 210; a frame plate 350 extending upwards is arranged outside the material bearing plate 300, a material discharging mechanism 340 is arranged on the material bearing plate 300, and an adjusting mechanism 310 for driving the material bearing plate 300 to lift is arranged on the supporting plate 200; the adjusting mechanism 310 includes a first pivot lever 311, a second pivot lever 312, a first fixing lever 313, a second fixing lever 314, and a first hydraulic cylinder 315; the first pivoting rod 311 and the second pivoting rod 312 are respectively rotatably connected with the fixed frame 210 through pin shafts, the first fixing rod 313 is fixedly connected below the material bearing plate 300, the second fixing rod 314 is hinged below the material bearing plate 300, the upper end of the first pivoting rod 311 is hinged with the first fixing rod 313, the upper end of the second pivoting rod 312 is hinged with the second fixing rod 314, the first pivoting rod 311 and the second pivoting rod 312 are in transmission connection through a connecting assembly 330, the first hydraulic cylinder 315 is installed on the front side of the supporting plate 200, and the piston rod of the first hydraulic cylinder 315 is in driving connection with the first pivoting rod 311 through a driving assembly 320.
Specifically, a plurality of groups of artificial flower branches are tiled along the upper surface of the material bearing plate 300 and placed, the first hydraulic cylinder 315 drives the first pivot rod 311 to rotate through the driving assembly 320, the first pivot rod 311 drives the second pivot rod 312 to rotate through the connecting assembly 330, so that the first pivot rod 311 drives the first fixing rod 313 to move, the second pivot rod 312 drives the second fixing rod 314 to move, so as to drive the material bearing plate 300 to lift and adjust the position, and then the artificial flower branches are sequentially discharged and processed through the discharging mechanism 340 without manual taking, so that the operation is simple and convenient, and the production efficiency of the artificial flower is effectively improved.
Example 2
On the basis of embodiment 1, the driving assembly 320 includes a first driving rod 321 and a first driving sleeve 322, the first driving rod 321 is connected with the first pivot rod 311, the first driving sleeve 322 is connected with the piston rod of the first hydraulic cylinder 315, and the first driving sleeve 322 is sleeved on the first driving rod 321; the connecting assembly 330 includes a second hydraulic cylinder 331, a second driving rod 332 and a second driving sleeve 333, the second hydraulic cylinder 331 is mounted on the first pivot rod 311, the second driving sleeve 333 is connected to a piston rod of the second hydraulic cylinder 331, the second driving rod 332 is connected to the second pivot rod 312, and the second driving sleeve 333 is sleeved on the second driving rod 332.
Specifically, when the height of the material bearing plate 300 is adjusted, the first hydraulic piston rod stretches and retracts to drive the first driving sleeve 322 to move, and the first driving sleeve 322 drives the first pivot rod 311 to rotate by being sleeved on the first driving rod 321; when the material bearing plate 300 reaches the required height, the second hydraulic cylinder 331 can be controlled to stretch and retract to drive the second driving sleeve 333 to move, the second driving sleeve 333 is sleeved on the second driving cylinder to drive the second pivot rod 312 to rotate, so that the second pivot rod 312 drives the material bearing plate 300 to rotate, the angle of the material bearing plate 300 is adjusted, the discharging angle of the simulated flower trunk is controlled, and different discharging requirements are met.
Example 3
On the basis of embodiment 1 or embodiment 2, the discharging mechanism 340 includes a through slot 341 disposed on the material-receiving plate 300, a first rotating arm 342 and a second rotating arm 343 rotatably disposed on one side of the frame plate 350, the first rotating arm 342 and the second rotating arm 343 are connected, one end of the first rotating arm 342 extends to above the through slot 341 and is connected with an upper limit rod 3421, one end of the second rotating arm 343 extends to below the through slot 341 and is connected with a lower limit rod 3431; the lower end of the material bearing plate 300 is provided with a driving motor 345, the output shaft of the driving motor 345 is connected with a cam 3451, and the cam 3451 is in contact with the first rotating arm 342.
Specifically, when the artificial flower stems are placed on the material bearing plate 300, the first rotating arm 342 drives the upper limiting rod 3421 to be inserted into the through groove 341 due to gravity, the upper limiting rod 3421 is located at the front side of the foremost artificial flower stem to limit the artificial flower stems, the second rotating arm 343 drives the lower limiting rod 3431 to be located in the through groove 341 due to gravity, when discharging is performed, the driving motor 345 drives the cam 3451 to rotate, the cam 3451 pushes up the first rotating arm 342 and the second rotating arm 343, the first rotating arm 342 drives the upper limiting rod 3421 to be separated from the through groove 341, so that the foremost artificial flower stems roll out along the material bearing plate 300, the second rotating arm 343 drives the lower limiting rod 3431 to upwardly penetrate out of the through groove 341, the lower limiting rod 3431 is located at the rear side of the foremost artificial flower stems to limit the artificial flower stems, so that several groups of artificial flower stems are sequentially and automatically conveyed and discharged along the material bearing plate 300 at intervals, the processing of the branches and the trunks of the simulated flowers is convenient, and the working efficiency is high; when the driving motor 345 drives the cam 3451 to rotate for a circle, the first rotating arm 342 drives the upper limiting rod 3421 to reset, the second rotating arm 343 drives the lower limiting rod 3431 to reset, and the simulation flower trunk at the foremost end of the material bearing plate 300 rolls along the material bearing plate 300 to contact with the upper limiting rod 3421, so as to facilitate the next discharging; and the control box 220 is installed on the supporting plate 200, so that the driving motor 345 can be controlled to drive the cam 3451 to rotate at intervals at each time, and different processing requirements can be met.
The circuit arrangement for controlling the first hydraulic cylinder 315, the second hydraulic cylinder 331, and the driving motor 345 is the prior art means, and details are not repeated.
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 invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. The conveying and processing device for the branches and the trunks of the simulated flowers is characterized by comprising a base and a supporting plate, wherein the supporting plate is arranged at the upper end of the base, two groups of fixing frames are symmetrically arranged on one side of the supporting plate, and a material bearing plate is movably arranged between the two groups of fixing frames;
the outer side of the material bearing plate is provided with an upwardly extending frame plate, the material bearing plate is provided with a discharging mechanism, and the supporting plate is provided with an adjusting mechanism for driving the material bearing plate to lift;
the adjusting mechanism comprises a first pivot rod, a second pivot rod, a first fixed rod, a second fixed rod and a first hydraulic cylinder;
the first pivoting rod and the second pivoting rod are respectively connected with the fixed frame in a rotating mode through pin shafts, the first fixed rod is fixedly connected below the material bearing plate, the second fixed rod is hinged below the material bearing plate, the upper end of the first pivoting rod is hinged to the first fixed rod, the upper end of the second pivoting rod is hinged to the second fixed rod, the first pivoting rod and the second pivoting rod are connected through the connecting assembly in a transmission mode, the first hydraulic cylinder is installed on the front side of the supporting plate, and the piston rod of the first hydraulic cylinder is connected with the first pivoting rod through the driving assembly in a driving mode.
2. The conveying and processing device for the simulated flower branches and trunks according to claim 1, wherein the lower end of the base is provided with a moving wheel set.
3. The conveying and processing device for the simulated flower branches and trunks according to claim 1, wherein the driving assembly comprises a first driving rod and a first driving sleeve, the first driving rod is connected with the first pivot rod, the first driving sleeve is connected with a first hydraulic cylinder piston rod, and the first driving sleeve is sleeved on the first driving rod.
4. The conveying and processing device for the simulated flower stems as claimed in claim 3, wherein the connecting assembly comprises a second hydraulic cylinder, a second driving rod and a second driving sleeve, the second hydraulic cylinder is mounted on the first pivoting rod, the second driving sleeve is connected with a piston rod of the second hydraulic cylinder, the second driving rod is connected with the second pivoting rod, and the second driving sleeve is sleeved on the second driving rod.
5. The conveying and processing device for the simulated flower branches and trunks according to claim 1, wherein the discharging mechanism comprises a through slot disposed on the material bearing plate, a first rotating arm and a second rotating arm rotatably disposed on one side of the frame plate, the first rotating arm and the second rotating arm are connected, one end of the first rotating arm extends to the upper portion of the through slot and is connected with an upper limiting rod, and one end of the second rotating arm extends to the lower portion of the through slot and is connected with a lower limiting rod.
6. The conveying and processing device for the simulated flower branches and trunks according to claim 5, wherein a driving motor is mounted at the lower end of the material bearing plate, a cam is connected to an output shaft of the driving motor, and the cam is in contact with the first rotating arm.
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CN202210012557.1A CN114348587A (en) | 2022-01-06 | 2022-01-06 | Processing device is carried to emulation flower branch |
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CN202210012557.1A CN114348587A (en) | 2022-01-06 | 2022-01-06 | Processing device is carried to emulation flower branch |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115072332A (en) * | 2022-07-07 | 2022-09-20 | 江苏赛美特机械有限公司 | Feeding and conveying device for solid tire production |
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