Prevent grass cloth production with high-efficient mixing arrangement of material
Technical Field
The invention relates to the technical field of grass cloth prevention production equipment, in particular to a high-efficiency material mixing device for grass cloth prevention production.
Background
The grass-proof cloth is also called gardening ground cloth, ground protection film and the like, is a cloth-shaped material woven by polypropylene or polyethylene materials, has the characteristics of strong tension, friction resistance, ageing resistance, ultraviolet resistance, erosion resistance, no toxicity, no odor and the like, can effectively inhibit the growth of weeds and reduce the harm of diseases and pests. As a green prevention and control measure for the diseases, pests and weeds of the novel vegetables, the application area of the grass prevention cloth in a facility vegetable field is increasingly large, the grass prevention cloth is deeply welcomed by vast vegetable producers, the environment-friendly material is used as a main raw material, the high-molecular functional material is added to be made into flat filaments, the novel grass prevention cloth material is woven in a fine and dense mode, and in the production process, the material mixing device is indispensable.
Present material mixing arrangement is in the course of the work, and its inner wall can remain there is more material, need clear up it in the later stage, but present material mixing arrangement is difficult to clear up its inner wall, and consumes time and manpower, secondly, in the course of the work, is difficult to carry out the operation of mixing while feeding to lead to holistic work efficiency slower.
Therefore, the high-efficiency material mixing device for the grass cloth production is provided.
Disclosure of Invention
The invention aims to provide a high-efficiency material mixing device for grass cloth production, which solves the problems that in the background art, in the working process of the conventional material mixing device, more materials are remained on the inner wall of the conventional material mixing device, and the conventional material mixing device needs to be cleaned in the later period, but the conventional material mixing device is difficult to clean the inner wall of the conventional material mixing device, consumes time and manpower, and is difficult to perform the operation of mixing and feeding materials simultaneously in the working process, so that the whole working efficiency is low.
In order to achieve the purpose, the invention provides the following technical scheme: a high-efficiency material mixing device for grass cloth production comprises a main box body, a stirring mechanism arranged in the main box body and a discharge pipe arranged on one side of the main box body, wherein a feeding mechanism is arranged at the upper end of the main box body, a rotating mechanism penetrates through the outer surface of the main box body, and an inner core mechanism is arranged in the main box body;
the feeding mechanism comprises a feeding box arranged at the upper end of the main box body, a temporary storage assembly arranged in the feeding box and a movable hinge arranged on the inner wall of the feeding box, the temporary storage assembly is connected with the inner wall of the feeding box through the movable hinge, the lower end of the feeding box is provided with a docking mechanism, and the feeding box is connected with the main box body through the docking mechanism.
Further, docking mechanism connects the pole including setting up the owner below the feeding case and connects, sets up the riser at owner and connects the pole both ends, cup joints the magnetic sleeve on the owner connects the pole surface to and set up the pressure spring in magnetic sleeve one side, and the one end of pressing the spring is connected with the riser, and the magnetic sleeve is provided with two sets ofly, and two sets of magnetic sleeve all is connected with the riser through pressing the spring, all is provided with the locating pin on two sets of magnetic sleeve outside of tubes surface.
Further, be provided with the perforation on the surface of riser, the inside of main extension rod is provided with well through-hole, and the inside of well through-hole is provided with the magnetic pole, and the magnetic pole is provided with two sets ofly, and two sets of magnetic poles are connected with the corresponding and magnetism of magnetic sleeve, and the upper surface of the main tank body is provided with the butt joint notch, and the feeding case is connected with the butt joint notch through the riser.
Further, the main box body comprises a face slot hole formed in the upper surface of the main box body, a butt joint round hole formed in the inner wall of the butt joint slot opening and a return spring arranged inside the butt joint round hole, an iron plate is arranged at one end of the return spring, a main connecting rod is connected with the butt joint round hole in a clamping mode through a magnetic rod, a square slot hole is further formed in one side of the main box body, and the main box body is connected with the rotating mechanism through the square slot hole.
Further, the subassembly of keeping in sets up the lug in board B one side of keeping in including setting up at the inside board A and the board B of keeping in of feeding case to and set up the recess in board A one side of keeping in, one side of lug is provided with elastic connection spare, keeps in and all is provided with the connecting groove board on board A and the surface of the board B of keeping in, keeps in board B and passes through the lug and be connected with the recess block, keeps in board A and keeps in board B and all through activity hinge and feeding incasement wall swing joint.
Further, the kernel mechanism is including setting up the riser in the internal portion of main tank, setting up the guide rail groove in riser one side to and set up the one-level board in guide rail groove one side, one side of one-level board is provided with the standing groove, the inside of standing groove is provided with the secondary plate, the one end of secondary plate is provided with electric putter, the secondary plate is connected with the standing groove inner wall through electric putter, the riser is provided with two sets ofly, two sets of risers all is connected with the main tank maxilla, the one-level board is provided with two sets ofly, two sets of one-level board opposition sets up.
Further, the inside in guide rail groove is provided with the lifter, the one end and the one-level board of lifter are connected, the one-level board passes through lifter and guide rail groove swing joint, the upper surface of one-level board is provided with the gangbar, the gangbar is provided with two sets ofly, two sets of gangbar is connected with board A and the board B of keeping in respectively, still be provided with the rubber slab on the surface of riser, the plate hole has been seted up on the surface of rubber slab, the plate hole sets up in same vertical plane with the face slot hole, the inside of the main tank body still is provided with the baffle, be provided with the limit hole on the surface of baffle, the baffle sets up the below at the riser.
Further, the stirring mechanism comprises a motor arranged at the upper end of the main box body, a first-stage rotating cylinder arranged at the lower end of the motor, a heating rod arranged at the lower end of the first-stage rotating cylinder, and a second-stage rotating cylinder arranged at the lower end of the heating rod, wherein the lower end of the second-stage rotating cylinder is provided with rotating teeth, and the second-stage rotating cylinder and the side hole are arranged in the same vertical plane.
Further, slewing mechanism is including setting up at inside mounting panel A and the mounting panel B of main tank, setting up the mounting hole on mounting panel A and the mounting panel B surface to and set up the rotatory section of thick bamboo between mounting panel A and mounting panel B, mounting panel A and mounting panel B set up the below at the baffle, and mounting panel A and mounting panel B's one end is provided with external block.
Furthermore, the upper end of the outer connecting block is provided with a plug board, a locking bolt penetrates through the outer surface of the plug board and is connected with the square groove hole, one end of the locking bolt is connected with the outer surface of the main box body, the upper surface of the rotary cylinder is provided with a tooth hole, the outer surface of the rotary cylinder is provided with a mounting ring, the outer surface of the mounting ring is provided with blades, and the rotating teeth are meshed with the tooth hole and connected.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention provides a high-efficiency mixing device for materials for grass cloth production, a main connecting rod is arranged below a feeding box, vertical plates are arranged at two ends of the main connecting rod, magnetic sleeves are arranged on the outer surfaces of the main connecting rod, a pressing spring is arranged on one side of each magnetic sleeve, one end of the pressing spring is connected with the vertical plates, two groups of magnetic sleeves are arranged, the two groups of magnetic sleeves are connected with the vertical plates through the pressing spring, positioning pins are arranged on the outer surfaces of the two groups of magnetic sleeves, through holes are arranged on the outer surfaces of the vertical plates, a middle through hole is arranged inside the main connecting rod, magnetic rods are arranged inside the middle through hole, the two groups of magnetic rods are arranged, the two groups of magnetic rods correspond to the magnetic sleeves and are magnetically connected, a butt-joint notch is arranged on the upper surface of the main box body, the feeding box is connected with the butt-joint notch through the vertical plates, a slotted hole is arranged on the upper surface of the main box body, and a butt-joint round hole is arranged on the inner wall of the butt-joint notch, the inside of butt joint round hole is provided with reset spring, reset spring's one end is provided with the iron sheet board, the main pole that connects passes through the magnetic pole and is connected with butt joint round hole block, through removing the magnetic sleeve, it removes to both ends to drive the magnetic pole, inside the one end of magnetic pole enters into the butt joint round hole, and the one end of magnetic pole can extrude the iron sheet board, until complete fixed, realize the purpose that the feeding case is connected with the main tank body, on the contrary, also can shift out the magnetic pole from the butt joint round hole through removing the magnetic sleeve, realize the separation of the two, whole installation dismantlement process is comparatively simple, the clearance in the later stage of being convenient for, the quality of clearance and the efficiency in later stage are improved.
2. The invention provides a high-efficiency mixing device for materials for grass cloth production, wherein a temporary storage plate A and a temporary storage plate B are arranged inside a feeding box, one side of the temporary storage plate B is provided with a lug, one side of the temporary storage plate A is provided with a groove, one side of the lug is provided with an elastic connecting piece, the outer surfaces of the temporary storage plate A and the temporary storage plate B are respectively provided with a connecting groove plate, the temporary storage plate B is clamped and connected with the groove through the lug, the temporary storage plate A and the temporary storage plate B are both movably connected with the inner wall of the feeding box through movable hinges, a vertical plate is arranged inside a main box body, one side of the vertical plate is provided with a guide rail groove, one side of the guide rail groove is provided with a first-stage plate, one side of the first-stage plate is provided with a placing groove, a second-stage plate is arranged inside the placing groove, one end of the second-stage plate is provided with an electric push rod, the second-stage plate is connected with the inner wall of the placing groove through the electric push rod, the vertical plates are provided with two groups, and the two groups of vertical plates are both connected with the upper jaw of the main box body, the first-stage plate is provided with two groups, the two groups of first-stage plates are oppositely arranged, the lifting rods are arranged inside the guide rail grooves, one ends of the lifting rods are connected with the first-stage plates, the first-stage plates are movably connected with the guide rail grooves through the lifting rods, the linkage rods are arranged on the upper surface of the first-stage plates and are provided with two groups, the two groups of linkage rods are respectively connected with the temporary storage plate A and the temporary storage plate B, the outer surface of each vertical plate is also provided with a rubber plate, plate holes are formed in the outer surface of the rubber plate, the plate holes and the surface groove holes are arranged in the same vertical plane, a partition plate is arranged inside the main box body, side holes are formed in the outer surface of the partition plate, the partition plate is arranged below the vertical plate, materials are mixed and heated by the first-stage rotating cylinder, the heating rods and the second-stage rotating cylinder, originally solid raw materials are large in volume, the lower bottom surface of the first-stage plates is contacted with the tops of the solid materials, when heating to the certain degree, the material becomes the slurry gradually, and the volume diminishes, and the first grade board then can down move to make temporary storage board A and temporary storage board B open, thereby realize continuing the feeding, and the mixing process can not stop, and when the material that gets into reached a certain amount, the solid-like raw materials of adding can raise the first grade board again, thereby make temporary storage board A and temporary storage board B close, further realize the purpose of feeding while mixing, improve work efficiency.
3. The invention provides a high-efficiency mixing device for materials for grass cloth production, wherein a motor is arranged at the upper end of a main box body, a primary rotating cylinder is arranged at the lower end of the motor, a heating rod is arranged at the lower end of the primary rotating cylinder, a secondary rotating cylinder is arranged at the lower end of the heating rod, rotating teeth are arranged at the lower end of the secondary rotating cylinder, the secondary rotating cylinder and side holes are arranged in the same vertical plane, a mounting plate A and a mounting plate B are arranged inside the main box body, mounting holes are formed in the outer surfaces of the mounting plate A and the mounting plate B, a rotating cylinder is arranged between the mounting plate A and the mounting plate B, the mounting plate A and the mounting plate B are arranged below a partition plate, an outer connecting block is arranged at one end of the mounting plate A and the mounting plate B, an inserting plate is arranged at the upper end of the outer connecting block, a locking bolt penetrates through the outer surface of the inserting plate and is connected with a square groove hole, one end of the locking bolt is connected with the outer surface of the main box body, the upper surface of a rotatory section of thick bamboo is provided with the pick hole, is provided with the collar on the surface of a rotatory section of thick bamboo, is provided with the blade on the surface of collar, rotates the tooth and is connected with the pick hole meshing, and the material is when the baffle upper end is heated by the heating rod, along with rotating the continuous rotation of tooth, can drive a rotatory section of thick bamboo rotatory to improve the air current velocity of flow of baffle below, thereby indirectness makes the material heat homogenization of heating above the baffle, improves heating efficiency and quality.
Drawings
FIG. 1 is a schematic view of the overall structure of a high-efficiency material mixing device for grass cloth production of the present invention;
FIG. 2 is a schematic structural diagram of a main box body of the efficient material mixing device for grass cloth production of the present invention;
FIG. 3 is a schematic structural view of a feeding mechanism of the high-efficiency material mixing device for grass cloth production of the present invention;
FIG. 4 is a schematic structural view of a butt-joint mechanism of the high-efficiency material mixing device for grass cloth production of the present invention;
FIG. 5 is a schematic structural view of a rotating mechanism of the efficient material mixing device for grass cloth production of the present invention;
FIG. 6 is a schematic view of the internal structure of the main box body of the high-efficiency material mixing device for grass cloth production of the present invention;
FIG. 7 is a schematic structural view of a stirring mechanism of the high-efficiency material mixing device for grass cloth production of the present invention;
FIG. 8 is a schematic view of a partial structure of a temporary storage assembly of the high-efficiency material mixing device for grass cloth production according to the present invention.
In the figure: 1. a main box body; 11. a notch is butted; 12. a face slot; 13. butting circular holes; 14. a return spring; 15. an iron plate; 16. a square slot hole; 2. a stirring mechanism; 21. a motor; 22. a primary rotating cylinder; 23. a heating rod; 24. a secondary rotary drum; 25. rotating the teeth; 3. a discharge pipe; 4. a feeding mechanism; 41. a feeding box; 42. a temporary storage component; 421. a temporary storage board A; 422. a temporary storage board B; 423. a bump; 424. an elastic connecting member; 425. a groove; 426. connecting the groove plates; 43. a living hinge; 44. a docking mechanism; 441. a main connecting rod; 442. a vertical plate; 443. a magnetic sleeve; 444. positioning pins; 445. a pressing spring; 446. perforating; 447. a middle through hole; 448. a magnetic rod; 5. a rotating mechanism; 51. mounting a plate A; 52. mounting a plate B; 53. mounting holes; 54. a rotary drum; 541. a perforation; 542. a mounting ring; 543. a blade; 55. an external connection block; 56. inserting plates; 57. a locking bolt; 6. a kernel mechanism; 61. a vertical plate; 62. a guide rail groove; 63. a primary plate; 64. a placement groove; 65. a secondary plate; 651. an electric push rod; 66. a lifting rod; 67. a linkage rod; 68. a rubber plate; 681. plate holes; 69. a partition plate; 691. and (4) side holes.
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 order to solve the technical problem of how to simplify the whole mounting and dismounting process, as shown in fig. 1 to 4, the following preferred technical solutions are provided:
the utility model provides a prevent high-efficient mixing arrangement of grass cloth production material, including the main tank body 1, the rabbling mechanism 2 of setting in the main tank body 1 inside, and set up the discharge pipe 3 in main tank body 1 one side, the upper end of the main tank body 1 is provided with feed mechanism 4, run through on the surface of the main tank body 1 and be provided with slewing mechanism 5, the inside of the main tank body 1 is provided with kernel mechanism 6, feed mechanism 4 is including setting up the feeding case 41 in the main tank body 1 upper end, set up the subassembly 42 of keeping in the feeding case 41 inside, and set up the activity hinge 43 on the feeding case 41 inner wall, the subassembly 42 of keeping in is connected with the feeding case 41 inner wall through activity hinge 43, the lower extreme of feeding case 41 is provided with docking mechanism 44, feeding case 41 is connected with the main tank body 1 through docking mechanism 44.
The docking mechanism 44 includes a main connection rod 441 disposed below the feeding box 41, vertical plates 442 disposed at two ends of the main connection rod 441, magnetic sleeves 443 sleeved on the outer surface of the main connection rod 441, and pressing springs 445 disposed on one side of the magnetic sleeves 443, one ends of the pressing springs 445 are connected to the vertical plates 442, two sets of the magnetic sleeves 443 are disposed, the two sets of the magnetic sleeves 443 are connected to the vertical plates 442 through the pressing springs 445, and positioning pins 444 are disposed on the outer surfaces of the two sets of the magnetic sleeves 443.
The outer surface of the vertical plate 442 is provided with a through hole 446, the main connecting rod 441 is internally provided with a middle through hole 447, the middle through hole 447 is internally provided with two groups of magnetic rods 448, the two groups of magnetic rods 448 are arranged in the middle through hole 447, the two groups of magnetic rods 448 correspond to and are magnetically connected with the magnetic sleeve 443, the upper surface of the main box body 1 is provided with a butt joint notch 11, and the feeding box 41 is connected with the butt joint notch 11 through the vertical plate 442.
The main box body 1 comprises a face slot 12 arranged on the upper surface of the main box body 1, a butt joint round hole 13 arranged on the inner wall of the butt joint slot 11, and a return spring 14 arranged inside the butt joint round hole 13, wherein one end of the return spring 14 is provided with an iron plate 15, a main connecting rod 441 is clamped and connected with the butt joint round hole 13 through a magnetic rod 448, one side of the main box body 1 is also provided with a square slot 16, and the main box body 1 is connected with the rotating mechanism 5 through the square slot 16.
Specifically, through removing magnetic sleeve 443, drive magnetic pole 448 and remove to both ends, it is inside to enter into butt joint round hole 13 until the one end of magnetic pole 448, and iron board 15 can be extruded to the one end of magnetic pole 448, until completely fixed, realize the purpose that feeding case 41 is connected with the main tank body 1, on the contrary, also can shift out magnetic pole 448 from butt joint round hole 13 through removing magnetic sleeve 443, realize the separation of the two, whole installation dismantlement process is comparatively simple, the clearance in the later stage of being convenient for, improve the clearance quality and the efficiency in later stage.
In order to solve the technical problem of how to realize the mixing while feeding, as shown in fig. 6 and 8, the following preferred technical solutions are provided:
the temporary storage assembly 42 comprises a temporary storage plate A421 and a temporary storage plate B422 which are arranged inside the feeding box 41, a convex block 423 arranged on one side of the temporary storage plate B422, a concave groove 425 arranged on one side of the temporary storage plate A421, one side of the convex block 423 is provided with an elastic connecting piece 424, the outer surfaces of the temporary storage plate A421 and the temporary storage plate B422 are respectively provided with a connecting groove plate 426, the temporary storage plate B422 is clamped and connected with the concave groove 425 through the convex block 423, and the temporary storage plate A421 and the temporary storage plate B422 are both movably connected with the inner wall of the feeding box 41 through a movable hinge 43.
The core mechanism 6 comprises a vertical plate 61 arranged inside the main box body 1, a guide rail groove 62 arranged on one side of the vertical plate 61, and a first-level plate 63 arranged on one side of the guide rail groove 62, a placing groove 64 is arranged on one side of the first-level plate 63, a second-level plate 65 is arranged inside the placing groove 64, an electric push rod 651 is arranged at one end of the second-level plate 65, the second-level plate 65 is connected with the inner wall of the placing groove 64 through the electric push rod 651, the vertical plate 61 is provided with two groups, the two groups of vertical plates 61 are connected with the upper jaw of the main box body 1, the first-level plate 63 is provided with two groups, and the two groups of first-level plates 63 are oppositely arranged.
The inside of guide rail groove 62 is provided with lifter 66, the one end of lifter 66 is connected with one-level board 63, one-level board 63 is through lifter 66 and guide rail groove 62 swing joint, the upper surface of one-level board 63 is provided with gangbar 67, gangbar 67 is provided with two sets ofly, two sets ofly gangbar 67 is connected with board A421 and the board B422 of keeping in respectively, still be provided with rubber slab 68 on the surface of riser 61, slab hole 681 has been seted up on the surface of rubber slab 68, slab hole 681 sets up in same vertical plane with face slot 12, the inside of main tank 1 still is provided with baffle 69, be provided with limit hole 691 on the surface of baffle 69, baffle 69 sets up the below at riser 61.
Concretely, the material is being rotated a section of thick bamboo 22 by the one-level, when a section of thick bamboo 24 hybrid heating is rotated to heating rod 23 and second grade, solid-like raw materials is originally in the course of working, and is bulky, the lower bottom surface of one-level board 63 contacts with solid-like material top, when heating to the certain degree, the material becomes the slurry gradually, the volume diminishes, one-level board 63 then can down move, thereby make board A421 and the board B422 of keeping in open, thereby realize continuing the feeding, and the mixing process can not stop, when the material that gets into reaches a certain amount, a solid-like raw materials of joining can raise one-level board 63 again, thereby make board A421 and the board B422 of keeping in close, further realize the purpose of mixing on one side of feeding, and improve work efficiency.
In order to solve the technical problem of how to improve the heating efficiency and quality, as shown in fig. 5 and 7, the following preferred technical solutions are provided:
the stirring mechanism 2 comprises a motor 21 arranged at the upper end of the main box body 1, a first-stage rotating cylinder 22 arranged at the lower end of the motor 21, a heating rod 23 arranged at the lower end of the first-stage rotating cylinder 22, and a second-stage rotating cylinder 24 arranged at the lower end of the heating rod 23, wherein the lower end of the second-stage rotating cylinder 24 is provided with a rotating tooth 25, and the second-stage rotating cylinder 24 and the side hole 691 are arranged in the same vertical plane.
The rotating mechanism 5 comprises a mounting plate A51 and a mounting plate B52 which are arranged inside the main box body 1, mounting holes 53 which are arranged on the outer surfaces of the mounting plate A51 and the mounting plate B52, and a rotating cylinder 54 which is arranged between the mounting plate A51 and the mounting plate B52, wherein the mounting plate A51 and the mounting plate B52 are arranged below the partition plate 69, an external connecting block 55 is arranged at one end of each of the mounting plate A51 and the mounting plate B52, an inserting plate 56 is arranged at the upper end of the external connecting block 55, a locking bolt 57 penetrates through the outer surface of the inserting plate 56, the external connecting block 55 is connected with the square groove hole 16, one end of the locking bolt 57 is connected with the outer surface of the main box body 1, a toothed hole 541 is arranged on the upper surface of the rotating cylinder 54, a mounting ring 542 is arranged on the outer surface of the rotating cylinder 54, a blade 543 is arranged on the outer surface of the mounting ring 542, and the rotating teeth 25 are connected with the toothed hole 541 in a meshing manner.
Specifically, when the material is heated by the heating rod 23 at the upper end of the partition 69, the rotating cylinder 54 is driven to rotate along with the continuous rotation of the rotating teeth 25, so that the airflow flowing speed below the partition 69 is increased, the heat of the heated material above the partition 69 is homogenized indirectly, and the heating efficiency and the heating quality are improved.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be able to cover the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.