CN214559678U - Conveyor for processing inorganic non-metallic materials - Google Patents

Conveyor for processing inorganic non-metallic materials Download PDF

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Publication number
CN214559678U
CN214559678U CN202023002487.7U CN202023002487U CN214559678U CN 214559678 U CN214559678 U CN 214559678U CN 202023002487 U CN202023002487 U CN 202023002487U CN 214559678 U CN214559678 U CN 214559678U
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China
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board
processing
glass
conveyor
buffer
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CN202023002487.7U
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Chinese (zh)
Inventor
卢悦
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Kaifeng Mingxiang Building Material Technology Co ltd
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Kaifeng Mingxiang Building Material Technology Co ltd
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Abstract

The utility model discloses a conveyer is used in processing of inorganic non-metallic material, which comprises a bracket, the leg joint has the bearing roller, the bearing roller cooperation is connected with the conveyer belt, the conveyer belt is kept away from the one end of bearing roller and can be dismantled and be connected with and place the board, and is adjacent place the cooperation setting between the board, the support is close to the one end symmetry of placing the board and is equipped with the emery wheel of grinding, the emery wheel of grinding passes through buffer board and support sliding connection. The utility model discloses a set up an inorganic non-metallic material processing and use conveyer for glass can carry out certain spacing work at the in-process of production transport, avoids glass because the surface too smooth leads to producing the displacement on the conveyer belt, improve equipment's conveying efficiency, increases the security of glass transportation, and the emery wheel of grinding simultaneously can carry out the work of polishing to glass's cutting edge, increases the utilization of resources of equipment, reduces the processing cost of glass production, improves economic benefits.

Description

Conveyor for processing inorganic non-metallic materials
Technical Field
The utility model belongs to the technical field of conveying equipment, especially, relate to a conveyer is used in processing of inorganic non-metallic material.
Background
The inorganic nonmetallic material is a material composed of oxides, carbides, nitrides, halogen compounds, borides of certain elements, silicates, aluminates, phosphates, borates and the like, and is a general term for all materials except organic high molecular materials and metal materials. Glass is one of common inorganic non-metallic materials, and because the glass has physical characteristics of smooth surface, easy fragmentation and the like, the glass still has some defects in the actual production and processing process and needs to be perfected.
In the prior art, when glass is produced and processed, the glass is easy to displace and crack in the conveying process due to the smooth surface and the fragile physical characteristics, so that the resource utilization of equipment is reduced, the rejection rate of glass production is increased, the production cost of the glass is improved, and the economic benefit is reduced.
Therefore, the conveyor for processing the inorganic non-metallic materials is provided to solve the problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the problems, and providing a conveyor for processing inorganic non-metallic materials, which improves the glass conveying safety through limiting.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides a conveyer is used in processing of inorganic non-metallic material, includes the support, the rotate bracket is connected with the bearing roller, the bearing roller cooperation is connected with the conveyer belt, the conveyer belt is kept away from the one end of bearing roller and can be dismantled to be connected with and place the board, and is adjacent place the cooperation setting between the board, the support is close to the one end symmetry of placing the board and is equipped with the emery wheel of grinding, the emery wheel of grinding passes through buffer board and support sliding connection.
Preferably, the placing plate comprises baffle plates and transverse plates, the transverse plates are symmetrically arranged on two sides of the baffle plates, and the transverse plates are arranged adjacently in a matched mode.
Preferably, one end of the transverse plate, which is far away from the conveying belt, is provided with a protection pad.
Preferably, the working surface of the grinding wheel is of an arc structure, and the grinding wheel is detachably connected with the buffer plate through a rotating shaft.
Preferably, the support is provided with a buffer groove, and the buffer plate is slidably connected with the buffer groove through a spring.
Preferably, one end of the buffer plate is in threaded connection with the rotating shaft through the mounting hole, and the other end of the buffer plate is in sliding connection with the buffer groove through the sliding block.
Compared with the prior art, the beneficial effects of the utility model are that:
1. through the grinding wheel that sets up sliding connection to the support symmetry for glass can carry out certain spacing work at the in-process of production transport, avoids glass because the surface too smooth leads to producing the displacement on the conveyer belt, improve equipment's transport efficiency, increases the security of glass transportation, and grinding wheel can carry out the work of polishing to glass's cutting edge simultaneously, increases the utilization of resources of equipment, reduces the processing cost of glass production, improves economic benefits.
2. Can dismantle the board of placing of connection through setting up the conveyer belt, effectively improve glass transportation process's stability, avoid glass to produce damage such as collide with in transportation process, place the board simultaneously and can place the clearance through dismantling the adjustment, and then satisfy the glass of not unidimensional type and carry work, improve equipment's practicality.
Drawings
Fig. 1 is a schematic structural view of a conveyor for processing inorganic non-metallic materials according to the present invention;
FIG. 2 is an enlarged view of the point A in FIG. 1;
FIG. 3 is a schematic top view of the structure of FIG. 1;
fig. 4 is an enlarged schematic view of B in fig. 3.
In the figure: the device comprises a support 1, a buffer groove 11, a carrier roller 2, a conveying belt 3, a placing plate 4, a baffle plate 41, a transverse plate 42, a grinding wheel 5, a rotating shaft 51, a buffer plate 6, a spring 61, a mounting hole 62, a sliding block 63 and a protection pad 7.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-4, a conveyor for processing inorganic non-metallic materials comprises a support 1, wherein the support 1 is rotatably connected with a carrier roller 2, the carrier roller 2 is connected with a conveying belt 3 in a matching manner, and it should be noted that one group of carrier rollers 2 is connected with a driving mechanism to ensure that the conveying belt 3 can be normally used.
Conveyer belt 3 keeps away from the one end of bearing roller 2 and can dismantle to be connected with and place board 4, and adjacent cooperation setting between placing board 4.
Specifically, place board 4 and include baffle 41 and horizontal plate 42, horizontal plate 42 symmetry sets up in baffle 41 both sides, and the cooperation sets up between the adjacent horizontal plate 42, and the one end that the conveyer belt 3 was kept away from to horizontal plate 42 is equipped with protection pad 7.
More specifically, baffle 41 and diaphragm 42 all adopt the rectangle structure, and baffle 41 adopts hard materials such as wooden board, and diaphragm 42 adopts soft materials such as rubber, and diaphragm 42 and baffle 41 all can dismantle the connection through viscose and conveyer belt 3, and the staff of being convenient for controls the adjustment to the clearance of placing board 4, increases conveyer belt 3 and carries glass's size type.
Support 1 is close to the one end symmetry of placing board 4 and is equipped with the emery wheel 5, and it needs to notice that, emery wheel 5's working face adopts the arc structure, and emery wheel 5 rotates with pivot 51 to be connected, and buffer board 6 is equipped with the mounting hole 62 of helicitic texture, and the one end that pivot 51 is close to mounting hole 62 is equipped with the external screw thread, and pivot 51 and 6 threaded connection of buffer board are convenient for the staff to the emery wheel 5 advance to dismantle the change.
Grinding wheel 5 passes through buffer board 6 and 1 sliding connection of support, and it should be noted that, support 1 is equipped with buffer slot 11, 6 fixedly connected with sliders 63 of buffer board, and slider 63 passes through spring 61 and 11 sliding connection of buffer slot for grinding wheel 5 can carry out certain work of polishing to glass's cutting edge through buffer board 6 at the in-process that carries out spacing work to glass, increases the utilization of resources of equipment.
Now, the operation principle of the present invention is described as follows:
the utility model discloses during the use, starting power supply, bearing roller 2 rotates work through actuating mechanism, conveyer belt 3 drives through bearing roller 2 and removes work, the staff places glass and places on placing board 4, keep apart through baffle 41, the protection pad 7 on diaphragm 42 surface is stably placed, it removes under the drive of conveyer belt 3 to place completion back glass, the dull polish wheel 5 of 1 both sides of support removes spacingly to glass this moment, avoid glass because the smooth displacement that produces on surface, carry out certain polishing work to glass's cutting edge at spacing in-process simultaneously, concrete polishing process: glass's cutting edge is polished through the arc limit of grinding wheel 5, and grinding wheel 5 slides through buffer board 6 and support 1 when the burr that meets, and 6 fixed connection's of buffer board slider 63 slides through spring 61 and buffer slot 11 this moment, avoids glass and grinding wheel 5 to produce the rigidity collision, levels through multiunit grinding wheel 5 to glass's cutting edge and polishes, increases the utilization of resources of equipment.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. The utility model provides a conveyer is used in processing of inorganic non-metallic material, includes support (1), its characterized in that, support (1) rotates and is connected with bearing roller (2), bearing roller (2) cooperation is connected with conveyer belt (3), the one end that bearing roller (2) were kept away from in conveyer belt (3) can be dismantled and be connected with and place board (4), and is adjacent place the cooperation setting between board (4), support (1) is close to the one end symmetry of placing board (4) and is equipped with dull polish wheel (5), dull polish wheel (5) are through buffer board (6) and support (1) sliding connection.
2. The conveyor for processing the inorganic nonmetallic material as claimed in claim 1, wherein the placing plate (4) comprises baffle plates (41) and transverse plates (42), the transverse plates (42) are symmetrically arranged on two sides of the baffle plates (41), and the adjacent transverse plates (42) are matched with each other.
3. The conveyor for processing the inorganic nonmetallic material as claimed in claim 2, wherein a protective pad (7) is arranged at one end of the transverse plate (42) far away from the conveying belt (3).
4. The conveyor for processing the inorganic nonmetallic material as claimed in claim 1, wherein the working surface of the grinding wheel (5) is of an arc-shaped structure, and the grinding wheel (5) is detachably connected with the buffer plate (6) through a rotating shaft (51).
5. The conveyor for processing the inorganic nonmetallic material as claimed in claim 4, wherein the bracket (1) is provided with a buffer slot (11), and the buffer plate (6) is slidably connected with the buffer slot (11) through a spring (61).
6. The conveyor for processing the inorganic nonmetallic material as claimed in claim 5, wherein one end of the buffer plate (6) is in threaded connection with the rotating shaft (51) through a mounting hole (62), and the other end of the buffer plate (6) is in sliding connection with the buffer slot (11) through a sliding block (63).
CN202023002487.7U 2020-12-14 2020-12-14 Conveyor for processing inorganic non-metallic materials Active CN214559678U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023002487.7U CN214559678U (en) 2020-12-14 2020-12-14 Conveyor for processing inorganic non-metallic materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023002487.7U CN214559678U (en) 2020-12-14 2020-12-14 Conveyor for processing inorganic non-metallic materials

Publications (1)

Publication Number Publication Date
CN214559678U true CN214559678U (en) 2021-11-02

Family

ID=78364412

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023002487.7U Active CN214559678U (en) 2020-12-14 2020-12-14 Conveyor for processing inorganic non-metallic materials

Country Status (1)

Country Link
CN (1) CN214559678U (en)

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