Anti-falling conveying device for extrusion water permeable brick production
By designing conveyor devices with structures such as legs, reinforcement plates, fixing frames and conveying components, the problem of permeable bricks falling during the production process is solved, and automated and continuous permeable brick transportation is realized, which improves production efficiency and safety.
Patent Information
- Application Number
- CN202421962863.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-13
AI Technical Summary
During the existing extruded permeable brick production process, the conveying device can easily cause the brick to fall when transferring permeable bricks, causing safety hazards, affecting production efficiency and continuous production.
A conveying device including outriggers, reinforcement plates, fixing frames, conveying components, threaded plates and screws is designed. Through the joint movement of the threaded plates and screws, the reverse or opposite movement of the conveying shell is realized, to prevent the water-permeable bricks from falling, and to provide power through a dual-axis motor to achieve automatic transportation.
Effectively prevent permeable bricks from falling during the transportation process, realize the continuous production of permeable bricks, improve production efficiency, reduce the dependence of manual handling, and ensure safety.
Smart Images

Figure CN223060055U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of extrusion permeable brick production, and particularly relates to a conveying device for preventing falling during the production of extrusion permeable bricks. Background Technique
[0002] Extrusion permeable bricks are bricks with water permeability manufactured through an extrusion process. Extrusion permeable bricks are made of specific raw materials and processes, and have a certain pore structure on their surfaces, which can allow water to penetrate through the bricks into the ground, playing the role of drainage and water conservation. Extrusion permeable bricks are commonly used for ground paving such as urban roads, squares, parking lots, and sidewalks, which helps to reduce surface runoff, alleviate urban waterlogging problems, and at the same time increase the water permeability and air permeability of the ground, improving the urban ecological environment. Extrusion permeable bricks usually have the advantages of high strength, good durability, anti-slip, etc., and can be designed in different colors and shapes according to needs to meet different architectural and landscape requirements.
[0003] The problems existing in the prior art are: when producing extrusion permeable bricks, the conveying device used can quickly and orderly transfer the produced permeable bricks from one process to the next process, avoiding pauses and waits during the production process, realizing continuous production, and having higher efficiency compared to the manual handling method. However, during the conveying process, it is necessary to prevent the extrusion permeable bricks from falling off the conveying device, causing some safety hazards. Therefore, we propose a conveying device for preventing falling during the production of extrusion permeable bricks. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a conveying device for preventing falling during the production of extrusion permeable bricks to solve the problems raised in the above background technique.
[0005] The utility model is realized as follows. A conveying device for preventing falling during the production of extrusion permeable bricks includes a bottom plate. Both sides of the upper surface of the bottom plate are fixedly connected with fixed frames. Both ends of one side of the surfaces of the two groups of fixed frames are provided with second through holes, and the middle parts of one side of the surfaces of the two groups of fixed frames are provided with first through holes. The two groups of first through holes and second through holes are all arranged in a rectangular shape. A conveying component is commonly arranged between the two groups of fixed frames. The conveying component is used for conveying permeable bricks. Both sides of the lower surface of the bottom plate are fixedly connected with three groups of legs, and reinforcing plates are commonly fixedly connected between the three groups of legs and the bottom plate.
[0006] Preferably, the conveying component includes fixing plates. The four fixing plates are respectively fixedly connected to both ends of one side of the surfaces of the two groups of fixed frames. Slide plates are fixedly connected to the upper surfaces of the four fixing plates, and a conveying shell is commonly movably connected to the surfaces of the corresponding two slide plates.
[0007] Preferably, on both ends of one side of the surface of one group of the conveying shells, first threaded plates corresponding to one group of second through holes are fixedly connected, on both ends of one side of the surface of the other group of the conveying shells, second threaded plates corresponding to the first through holes are fixedly connected, and on one side of the surface of the other group of the conveying shells, a limiting plate corresponding to the other group of second through holes is fixedly connected.
[0008] Preferably, on the upper end of one side of the surface of one group of the fixing frames, two first movable sleeves are fixedly connected, and between the two first movable sleeves and the two first threaded plates, first lead screws are commonly arranged.
[0009] Preferably, in the middle of one side of the surface of one group of the fixing frames, two third movable sleeves are fixedly connected, and between the two third movable sleeves and the two second threaded plates, second lead screws are commonly arranged. One end of each of the second lead screws and the first lead screw is fixedly connected with a first transmission wheel.
[0010] Preferably, in the middle of one side of the surface of the bottom plate, a mounting plate is fixedly connected. On the upper surface of the mounting plate, a mounting seat is fixedly connected, and a dual-axis motor is fixedly connected in the mounting seat.
[0011] Preferably, on both output ends of the dual-axis motor, rotating rods are fixedly connected. On one end of each of the two rotating rods, a second transmission wheel is fixedly connected. Between the two second transmission wheels and the first transmission wheels, belts are commonly connected in a transmission manner. Between the two rotating rods and the fixing frame, second movable sleeves are commonly arranged.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. Through the design of the support legs, reinforcement plates, bottom plate, fixing frames, conveying components, first through holes and second through holes, in use, the support legs can be used for the standing of the device, and the reinforcement plates are used for reinforcing the support legs. The conveying components can convey the permeable bricks back and forth. The structure design of the conveying shells in the conveying components can prevent the permeable bricks from falling during the conveying process, achieving the effect of facilitating the automatic conveying of the permeable bricks and effectively preventing the permeable bricks from falling.
[0014] 2. The design of the fixing plate, sliding plate, first movable sleeve, first threaded plate, first lead screw, third movable sleeve, second threaded plate, second lead screw and limiting plate in the present utility model enables the two conveying shells to move in opposite or facing directions respectively by driving the rotation of the first lead screw and the second lead screw, which utilizes the first threaded plate and the second threaded plate respectively. This design of the movement of the conveying shell facilitates the continuous conveying of permeable bricks. The first movable sleeve and the third movable sleeve can support and limit the first lead screw and the second lead screw respectively, achieving the effect of facilitating the automatic conveying of permeable bricks and preventing the permeable bricks from falling.
[0015] 3. The design of the first transmission wheel, belt, second transmission wheel, second movable sleeve, rotating rod, double-shaft motor, mounting seat and mounting plate in the present utility model. The mounting plate and the mounting seat are used to install and fix the double-shaft motor. When the double-shaft motor operates, it drives the two rotating rods to rotate. The two rotating rods drive the second transmission wheel to rotate, and the second transmission wheel drives the first transmission wheel, as well as the first lead screw and the second lead screw to rotate through the belt, achieving the effect of facilitating the power supply for the automatic conveying of permeable bricks. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is the overall structural schematic diagram provided by the embodiment of the present utility model;
[0017] Figure 2 is the structural schematic diagram of the conveying assembly provided by the embodiment of the present utility model;
[0018] Figure 3 is the partial structural schematic diagram provided by the embodiment of the present utility model.
[0019] In the figure: 1, leg; 2, reinforcement plate; 3, bottom plate; 4, fixing frame; 5, conveying assembly; 501, fixing plate; 502, sliding plate; 503, first movable sleeve; 504, first threaded plate; 505, first lead screw; 506, first transmission wheel; 507, belt; 508, second transmission wheel; 509, second movable sleeve; 510, rotating rod; 511, conveying shell; 512, double-shaft motor; 513, mounting seat; 514, mounting plate; 515, third movable sleeve; 516, second threaded plate; 517, second lead screw; 518, limiting plate; 6, first through hole; 7, second through hole. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] In order to further understand the content, features and effects of the present utility model, the following embodiments are cited and detailed as follows in conjunction with the accompanying drawings.
[0021] The structure of the present utility model will be described in detail below with reference to the accompanying drawings.
[0022] As Figures 1 to 3As shown in the figure, a conveying device for preventing the dropping of extruded permeable bricks in the production of the utility model includes a bottom plate 3. Both sides of the upper surface of the bottom plate 3 are fixedly connected with fixed frames 4. Two ends of one side of the surfaces of the two groups of fixed frames 4 are both provided with second through holes 7. The middle parts of one side of the surfaces of the two groups of fixed frames 4 are both provided with first through holes 6. The two groups of first through holes 6 and the second through holes 7 are both arranged in a rectangular shape. A conveying component 5 is commonly arranged between the two groups of fixed frames 4. The conveying component 5 is used for conveying the permeable bricks. Both sides of the lower surface of the bottom plate 3 are fixedly connected with three groups of legs 1. A reinforcing plate 2 is commonly fixedly connected between the three groups of legs 1 and the bottom plate 3.
[0023] Adopting the above scheme: Through the design of the legs 1, the reinforcing plate 2, the bottom plate 3, the fixed frames 4, the conveying component 5, the first through holes 6 and the second through holes 7, during use, the legs 1 can be used for the standing of the device, and the reinforcing plate 2 is used for reinforcing the legs 1. And the conveying component 5 can convey the permeable bricks back and forth. And the structural design of the conveying shell 511 in the conveying component 5 can prevent the permeable bricks from dropping during the conveying process, achieving the effect of facilitating the automatic conveying of the permeable bricks and effectively preventing the permeable bricks from dropping.
[0024] Reference Figure 3 and Figure 2 As shown in the figure, the conveying component 5 includes fixing plates 501. The four groups of fixing plates 501 are respectively fixedly connected to two ends of one side of the surfaces of the two groups of fixed frames 4. Slide plates 502 are fixedly connected to the upper surfaces of the four groups of fixing plates 501. A conveying shell 511 is commonly movably connected to the surfaces of the corresponding two groups of slide plates 502. Both ends of one side of the surface of one group of the conveying shells 511 are fixedly connected with first threaded plates 504 corresponding to one group of the second through holes 7. Both ends of one side of the surface of the other group of the conveying shells 511 are fixedly connected with second threaded plates 516 corresponding to the first through holes 6. A limiting plate 518 corresponding to the other group of the second through holes 7 is fixedly connected to one side of the surface of the other group of the conveying shells 511. Two groups of first movable sleeves 503 are fixedly connected to the upper end of one side of the surface of one group of the fixed frames 4. First lead screws 505 are commonly arranged between the two groups of first movable sleeves 503 and the two groups of first threaded plates 504.
[0025] Adopting the above solution: Through the design of the fixed plate 501, the sliding plate 502, the first movable sleeve 503, the first threaded plate 504, the first lead screw 505, the third movable sleeve 515, the second threaded plate 516, the second lead screw 517 and the limiting plate 518, when the first lead screw 505 and the second lead screw 517 are driven to rotate, they will respectively drive the two groups of conveying shells 511 to move in opposite or facing directions by using the first threaded plate 504 and the second threaded plate 516. This design of the movement of the conveying shell 511 facilitates the continuous conveying of permeable bricks. The first movable sleeve 503 and the third movable sleeve 515 can respectively support and limit the first lead screw 505 and the second lead screw 517, achieving the effect of facilitating the automatic conveying of permeable bricks and preventing the permeable bricks from falling.
[0026] Reference Figure 2 , in which two third movable sleeves 515 are fixedly connected to the middle of one side of the surface of one group of fixing frames 4, and a second lead screw 517 is commonly arranged between the two third movable sleeves 515 and the two second threaded plates 516. One ends of the second lead screw 517 and the first lead screw 505 are both fixedly connected with a first transmission wheel 506; a mounting plate 514 is fixedly connected to the middle of one side of the surface of the bottom plate 3, a mounting seat 513 is fixedly connected to the upper surface of the mounting plate 514, and a double-shaft motor 512 is fixedly connected inside the mounting seat 513; both output ends of the double-shaft motor 512 are fixedly connected with a rotating rod 510, one ends of the two rotating rods 510 are both fixedly connected with a second transmission wheel 508, and a belt 507 is commonly connected between the two second transmission wheels 508 and the first transmission wheel 506, and a second movable sleeve 509 is commonly arranged between the two rotating rods 510 and the fixing frame 4.
[0027] Adopting the above solution: Through the design of the first transmission wheel 506, the belt 507, the second transmission wheel 508, the second movable sleeve 509, the rotating rod 510, the double-shaft motor 512, the mounting seat 513 and the mounting plate 514, the mounting plate 514 and the mounting seat 513 are used to install and fix the double-shaft motor 512. And when the double-shaft motor 512 operates, it will drive the two rotating rods 510 to rotate. The two rotating rods 510 will drive the second transmission wheel 508 to rotate, and the second transmission wheel 508 will drive the first transmission wheel 506 and the first lead screw 505 and the second lead screw 517 to rotate by using the belt 507, achieving the effect of facilitating the automatic conveying of permeable bricks to provide power.
[0028] The working principle of the present utility model:
[0029] During use, when the first lead screw 505 and the second lead screw 517 are driven to rotate, the first threaded plate 504 and the second threaded plate 516 are respectively used to drive the two sets of conveying shells 511 to move in opposite or facing directions. This design of the movement of the conveying shells 511 facilitates the continuous conveying of permeable bricks. The first movable sleeve 503 and the third movable sleeve 515 can respectively support and limit the first lead screw 505 and the second lead screw 517, facilitating the automatic conveying of permeable bricks and preventing the permeable bricks from falling. The mounting plate 514 and the mounting seat 513 are used to mount and fix the double-shaft motor 512. When the double-shaft motor 512 operates, it drives the two sets of rotating rods 510 to rotate. The two sets of rotating rods 510 drive the second transmission wheel 508 to rotate. The second transmission wheel 508 drives the first transmission wheel 506, as well as the first lead screw 505 and the second lead screw 517 to rotate through the belt 507, facilitating the provision of power for the automatic conveying of permeable bricks.
[0030] In summary, for the anti-falling conveying device for the production of extruded permeable bricks, through the structures of the conveying assembly 5, the fixing plate 501, the sliding plate 502, the first movable sleeve 503, the first threaded plate 504, the first lead screw 505, the first transmission wheel 506, the belt 507, the second transmission wheel 508, the second movable sleeve 509, the rotating rod 510, the conveying shell 511, the double-shaft motor 512, the mounting seat 513, the mounting plate 514, the third movable sleeve 515, the second threaded plate 516, the second lead screw 517 and the limiting plate 518, it solves the problem that during the production of extruded permeable bricks, the used conveying device can quickly and orderly transfer the produced permeable bricks from one process to the next process, avoiding pauses and waits during the production process and realizing continuous production, which is more efficient than the manual handling method. However, during the conveying process, it is necessary to prevent the extruded permeable bricks from falling off the conveying device, causing some potential safety hazards.
[0031] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0032] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A conveying device for preventing dropping in the production of extrusion permeable bricks, including a bottom plate (3), characterized in that: On both sides of the upper surface of the bottom plate (3), there are fixedly connected fixing frames (4). At both ends of one side of the surfaces of the two groups of fixing frames (4), there are second through holes (7) opened. In the middle of one side of the surfaces of the two groups of fixing frames (4), there are first through holes (6) opened. The two groups of first through holes (6) and second through holes (7) are both arranged in a rectangular shape. Between the two groups of fixing frames (4), there is a conveying assembly (5) arranged in common. The conveying assembly (5) is used for conveying permeable bricks. On both sides of the lower surface of the bottom plate (3), there are three groups of supporting legs (1) fixedly connected. Between the three groups of supporting legs (1) and the bottom plate (3), there are reinforcing plates (2) fixedly connected in common.
2. The anti-falling conveying device for the production of extruded permeable bricks according to claim 1, wherein: The conveying assembly (5) includes fixing plates (501). The four groups of fixing plates (501) are respectively fixedly connected to both ends of one side of the surfaces of the two groups of fixing frames (4). On the upper surfaces of the four groups of fixing plates (501), there are sliding plates (502) fixedly connected. On the surfaces of the corresponding two groups of sliding plates (502), there is a conveying shell (511) movably connected in common.
3. The anti-falling conveying device for the production of extruded permeable bricks according to claim 2, wherein: At both ends of one side of the surface of one group of the conveying shells (511), there are first threaded plates (504) fixedly connected corresponding to one group of the second through holes (7). At both ends of one side of the surface of the other group of the conveying shells (511), there are second threaded plates (516) fixedly connected corresponding to the first through holes (6). On one side of the surface of the other group of the conveying shells (511), there is a limiting plate (518) fixedly connected corresponding to the other group of the second through holes (7).
4. The anti-falling conveying device for the production of extruded permeable bricks according to claim 3, characterized in that: At the upper end of one side of the surface of one group of the fixing frames (4), there are two groups of first movable sleeves (503) fixedly connected. Between the two groups of first movable sleeves (503) and the two groups of first threaded plates (504), there are first lead screws (505) arranged in common.
5. The anti-falling conveying device for the production of extruded permeable bricks according to claim 4, characterized in that: In the middle of one side of the surface of one group of the fixing frames (4), there are two groups of third movable sleeves (515) fixedly connected. Between the two groups of third movable sleeves (515) and the two groups of second threaded plates (516), there are second lead screws (517) arranged in common. At one end of both the second lead screw (517) and the first lead screw (505), there are first transmission wheels (506) fixedly connected.
6. The anti-falling conveying device for the production of extruded permeable bricks according to claim 1, characterized in that: On the middle of one side of the surface of the bottom plate (3), there is a mounting plate (514) fixedly connected. On the upper surface of the mounting plate (514), there is a mounting seat (513) fixedly connected. Inside the mounting seat (513), there is a double-shaft motor (512) fixedly connected.
7. The anti-falling conveying device for the production of extruded permeable bricks according to claim 6, wherein: At both output ends of the double-shaft motor (512), there are rotating rods (510) fixedly connected. At one end of both the two groups of rotating rods (510), there are second transmission wheels (508) fixedly connected. Between the two groups of second transmission wheels (508) and the first transmission wheels (506), there are belts (507) drivingly connected in common. Between the two groups of rotating rods (510) and the fixing frames (4), there are second movable sleeves (509) arranged in common.