Conveying device and method for calcining ceramic tile green bricks

By introducing an adjustment mechanism of the intercepting part, pushing part and division part into the tiling brick conveying device, the problem of uneven spacing between the tiling bricks is solved, and the automatic alignment and uniform arrangement of the tiling bricks is realized, ensuring the smooth progress of the calcining process and the consistency of quality.

CN115593901BActive Publication Date: 2025-08-22HEFEI JINGYAOCHENG INFORMATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202211335465.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-28
Publication Date
2025-08-22
Estimated Expiration
2042-10-28

AI Technical Summary

Technical Problem

During the transportation process of traditional ceramic tile tiles conveying devices, the uneven spacing between the ceramic tile tiles leads to the problem of not being able to enter the calciner successfully or the sintering is uneven.

Method used

The adjustment mechanism including an intercepting part, a pushing part and a division part is adopted to align and intercept the tiles and brick blanks through the intercepting part. The pushing part brings the tiles and brick blanks closer together, and the division parts achieves uniform spacing, forming neat arrangements.

Benefits of technology

Automatic adjustment of ceramic tile blanks is realized to ensure uniform entry of the calciner, avoiding conveying difficulties and uneven sintering problems caused by uneven spacing, and improving operating accuracy and efficiency.

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Abstract

The present invention provides a conveying device and method for calcining ceramic tile blanks. The conveying device for calcining ceramic tile blanks comprises: two first conveyors for conveying ceramic tile blanks in a straight line, a second conveyor is provided between the two first conveyors, and one end of the first conveyor is away from the second conveyor and has multiple branch conveying mechanisms. The present invention provides a conveying device for calcining ceramic tile blanks. By providing a second conveying mechanism between the two first conveyors, a complete conveying line for quickly conveying pairs of ceramic tile blanks is formed. The adjustment mechanism on the second conveyor is used to sequentially align the front and rear end positions, bring the middle closer together, and evenly divide the spacing of the multiple ceramic tile blanks passing through. This allows the ceramic tile blanks to be evenly and neatly arranged, realizes the function of automatically adjusting the position of the ceramic tile blanks, and avoids the problem that the ceramic tile blanks cannot smoothly enter the calcining furnace or are unevenly heated due to uneven spacing.
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Description

Technical Field

[0001] The present invention relates to the field of ceramic tile processing, and in particular to a conveying device and a conveying method for calcining ceramic tile blanks. Background Art

[0002] Ceramic tiles are a kind of building decoration material, which are mainly made of refractory metal oxides and semi-metal oxides, which are ground, mixed, pressed, glazed and sintered in sequence. The raw materials are mostly clay, quartz sand, which are mixed after high temperature and compression, and have very high hardness.

[0003] During the batch production of ceramic tiles, a conveying device is required to transport the prepared ceramic tile blanks to the calcining furnace for sintering. During this conveying process, multiple branched conveying mechanisms first transport the ceramic tile blanks on different production lines to the conveying device. After the ceramic tile blanks enter the conveying device, they are adjusted from the original single linear arrangement to multiple side-by-side linear arrangements, and finally transported to the calcining furnace.

[0004] However, the traditional conveying device still has the following shortcomings during actual use: since the branch conveying mechanism directly conveys the ceramic tile blanks linearly, it lacks measures to adjust the position of the ceramic tile blanks, resulting in different spacing between multiple ceramic tile blanks entering the conveying device in the same batch. If the spacing is too large, the ceramic tile blanks cannot enter the calcining furnace smoothly and require manual assistance. If the spacing is too small, the ceramic tile blanks will affect each other during the sintering process, which may easily lead to uneven heating of the ceramic tile blanks and insufficient sintering. Summary of the Invention

[0005] The invention provides a conveying device for calcining ceramic tile green bricks, which solves the problem of different time intervals in conveying ceramic tile green bricks.

[0006] In order to solve the above technical problems, the present invention provides a conveying device for calcining ceramic tile green bricks, comprising: two first conveyors for conveying ceramic tile green bricks in a straight line, a second conveyor is provided between the two first conveyors, one end of one of the first conveyors away from the second conveyor is connected to a plurality of branch conveying mechanisms, and the other end of the first conveyor away from the second conveyor is connected to a calcining furnace, the second conveyor comprises a conveyor body, the top of the conveyor body is provided with an adjustment mechanism for synchronously aligning and adjusting the positions of a plurality of ceramic tile green bricks, the adjustment mechanism comprises an intercepting portion for intercepting a plurality of ceramic tile green bricks, a plurality of pushing portions for pushing the ceramic tile green bricks closer together along the width direction of the conveyor body, and a dividing portion for evenly dividing the spacing between the plurality of ceramic tile green bricks;

[0007] When the conveyor body conveys the ceramic tile blanks, the ceramic tile blanks first pass through the intercepting portion and then pass through the dividing portion; after the intercepting portion intercepts the ceramic tile blanks, the plurality of pushing portions start to push the ceramic tile blanks.

[0008] Preferably, the intercepting part is vertically installed on the top of the conveyor body, and the intercepting part includes a fixed frame arranged in an inverted U shape, the bottom ends of the two vertical sections of the fixed frame are respectively fixedly connected to the two sides of the top of the conveyor body, and a telescopic member is fixedly connected to the middle of the bottom of the horizontal section of the fixed frame, and the telescopic end of the telescopic member is fixedly connected to a movable plate arranged in an inverted U shape and parallel to the horizontal section of the fixed frame, and an intercepting plate is slidably connected between the two vertical sections of the fixed frame, and the top of the intercepting plate is slidably connected to the inner side of the movable plate by two spring rods, and roller members are movably connected to the two vertical sections of the fixed frame.

[0009] Preferably, there are two pushing parts, which are symmetrically distributed along the width direction of the conveyor body. The pushing part includes a U-shaped slide vertically fixedly installed on the outside of the conveyor body, and a pushing member is movably connected to the slide. A support spring is fixedly connected between the pushing member and the side opposite to the conveyor body.

[0010] Preferably, the pushing member is composed of a movable member with a broken line shape and a cross plate. Both sides of the inclined section of the movable member are slidingly connected to both sides of the sliding inner wall through pulleys. The end of the movable member horizontally away from the slide is fixedly connected to one side of the cross plate, and the cross plate is slidably installed on the side of the top of the conveyor body.

[0011] Preferably, the roller member includes a connecting rod and an extrusion roller that are slidably installed on the vertical section of the fixed frame. The end of the connecting rod close to the fixed frame is fixedly connected to one side of the movable plate, and the end of the connecting rod away from the fixed frame is fixedly connected to the extrusion roller. The extrusion roller is located directly above the inclined section of the movable member. When the intercepting plate drops to the lowest position, the lower end of the extrusion roller is in contact with the inclined section of the movable member.

[0012] Preferably, the dividing part is installed on the top of the conveyor body, and the dividing part includes a mounting plate arranged along the width direction of the conveyor body, and the mounting plate is evenly provided with a plurality of dividing components along its length direction, and the dividing component includes a tip portion in contact with the ceramic tile blank, and the top of the tip portion is fixedly connected with a fixing part for connecting with the mounting plate, and a plurality of rotating shafts are rotatably installed on both sides of the tip portion.

[0013] Preferably, the dividing assembly also includes a rotating part rotatably installed inside the fixing part, and both sides of the bottom of the fixing part and both sides of the tip part are slidably connected with rotating rods, and the top ends of the two rotating rods are respectively threadedly connected to the two ends of the rotating part.

[0014] Preferably, the above-mentioned ceramic tile blank conveying method comprises the following steps:

[0015] S1, firstly, each branch conveying mechanism conveys the ceramic tile blanks to the first conveyor;

[0016] S2, after multiple ceramic tile blanks enter the first conveyor, the conveying direction is changed so that they are conveyed side by side synchronously;

[0017] S3, after the tile blanks enter the second conveyor from the first conveyor, the positions and spacings of the multiple adjustment mechanisms are adjusted by the adjustment mechanism;

[0018] S4. After adjustment, the tile blanks are moved from the second conveyor to the next first conveyor, and finally transported to the calcining furnace for calcining.

[0019] Compared with the related art, the conveying device for calcining ceramic tile green bricks provided by the embodiment of the present invention has the following beneficial effects:

[0020] (1) A complete conveying line for quickly conveying pairs of ceramic tile blanks is formed by arranging a second conveying mechanism between the two first conveyors, and the adjustment mechanism on the second conveyor is used to sequentially align the front and rear ends, bring the middle closer together, and divide the spacing evenly for the multiple ceramic tile blanks passing through, so that the ceramic tile blanks can be arranged evenly and neatly, and the function of automatically adjusting the position of the ceramic tile blanks is realized, thereby avoiding the problem that the ceramic tile blanks cannot smoothly enter the calcining furnace or are unevenly heated due to uneven spacing, and better conveying the ceramic tile blanks;

[0021] (2) By setting up an intercepting part and two pushing parts for use together, the multiple ceramic tile blanks passing under the intercepting part are used for blocking, so that the two ends of the multiple ceramic tile blanks can be quickly aligned in a short time, and the moving states of the multiple ceramic tile blanks in the same batch are kept consistent, which is convenient for subsequent identical sintering and unloading operations. After the intercepting part completes the interception, the intercepting part is used as a driving source to drive the two pushing parts to synchronously push the ceramic tile blanks to the middle. On the one hand, the spacing between the multiple ceramic tile blanks is reduced and basically kept consistent, and the gap between the ceramic tile blanks is just aligned with the dividing part, which is convenient for the dividing part to divide the spacing evenly. On the other hand, the intercepting and pushing are carried out in an orderly manner, avoiding the problem of operation delay, further increasing the operation accuracy, and ensuring the effective position adjustment operation of the ceramic tile blanks. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1This is a schematic structural diagram of a conveying device for calcining ceramic tile green bricks provided in an embodiment of the present invention.

[0023] Figure 2 for Figure 1 A top view of a conveying device for calcining ceramic tile green bricks is shown.

[0024] Figure 3 for Figure 2 The cross-sectional view of the AA plane is shown.

[0025] Figure 4 for Figure 1 Schematic diagram of the structure of the second conveyor shown.

[0026] Figure 5 for Figure 4 The schematic diagram of the structure between the intercepting part and the pushing part is shown.

[0027] Figure 6 for Figure 4 The structural diagram of the division part is shown.

[0028] Figure 7 for Figure 6 The structural diagram of the partitioning components is shown.

[0029] Numbers in the figure: 1. First conveyor; 2. Second conveyor; 3. Conveyor body; 4. Adjustment mechanism; 41. Intercepting part; 411. Fixed frame; 412. Telescopic member; 413. Movable plate; 414. Intercepting plate; 415. Spring rod; 416. Roller member; 42. Pushing part; 421. Sliding seat; 422. Pushing member; 423. Support spring; 424. Pulley; 43. Dividing part; 431. Mounting plate; 432. Dividing assembly; 4321. Tip; 4322. Fixing member; 4323. Rotating shaft. DETAILED DESCRIPTION

[0030] The embodiments of the present invention are described below with reference to the accompanying drawings. In the process, to ensure clarity and convenience of the description, we may exaggerate the width of the lines or the size of the components in the drawings.

[0031] In addition, the terms used below are defined based on their functions in the present invention and may vary depending on the operator's intention or custom; therefore, these terms are defined based on the entire content of this specification.

[0032] Please refer to Figure 1 and Figure 2 A conveying device for calcining ceramic tile blanks comprises: two first conveyors 1 for linearly conveying ceramic tile blanks, a second conveyor 2 is arranged between the two first conveyors 1, one end of the first conveyor 1 away from the second conveyor 2 is connected to a plurality of branch conveying mechanisms, Figure 1 It is not shown in the figure, through multiple branch conveying structures, the ceramic tiles on different production lines are collectively conveyed to the first conveyor 1, and another first conveyor 1 is connected to the calcining furnace at one end away from the second conveyor 2. Figure 1 Not shown in the figure, the ceramic tile green bricks can be sequentially conveyed to the calcining furnace for sintering treatment, and the two first conveyors 1 and the second conveyor 2 form a complete linear conveying line.

[0033] Please refer to Figure 3 and Figure 4 The second conveyor 2 includes a conveyor body 3, which is composed of a main frame and a conveyor belt. The top of the conveyor body 3 is provided with an adjustment mechanism 4 for synchronously aligning and adjusting the positions of multiple ceramic tile blanks. The adjustment mechanism 4 includes an interception part 41 for intercepting multiple ceramic tile blanks, multiple pushing parts 42 for pushing the ceramic tile blanks along the width direction of the conveyor body 3 and a dividing part 43 for evenly dividing the spacing between multiple ceramic tile blanks. When the conveyor body 3 conveys the ceramic tile blanks, the ceramic tile blanks are first passed through the interception part 41. By intercepting the ceramic tile blanks, the previous activity is stopped, so that the two ends of the ceramic tile blanks in a row can be automatically aligned. After the interception part 41 intercepts the ceramic tile blanks, the multiple pushing parts 42 start to push the ceramic tile blanks so that the ceramic tile blanks can be closely together. At this time, the ceramic tile blank fitting position is just aligned with the dividing part 43, and then the aligned ceramic tile blanks are separated by equal spacing through the dividing part 43.

[0034] Please refer to Figure 3 、 Figure 4 and Figure 5The intercepting part 41 is vertically mounted on the top of the conveyor body 3. The intercepting part 41 includes a fixed frame 411 arranged in an inverted U shape. The bottom ends of the two vertical sections of the fixed frame 411 are fixedly connected to the two sides of the top of the conveyor body 3 respectively. A telescopic member 412 is fixedly connected to the middle of the bottom of the horizontal section of the fixed frame 411. The telescopic member 412 can be preferably an electric push rod, and can also be a hydraulic cylinder or other components. The telescopic end of the telescopic member 412 is fixedly connected to a movable plate 413 arranged in an inverted U shape parallel to the horizontal section of the fixed frame 411. An intercepting plate 414 is slidably connected between the two vertical sections of the fixed frame 411. The vertical section of 1 is provided with a limiting groove adapted to the end of the intercepting plate 414, so that the intercepting plate 414 can slide vertically stably on the fixing frame 411, and the top of the intercepting plate 414 is slidably connected to the inner side of the movable plate 413 by two spring rods 415. The two spring rods 415 are symmetrically distributed along the length direction of the top of the intercepting plate 414. The spring rod 415 is composed of a fixed rod and a spring sleeved on the outside of the fixed rod. The top of the fixed rod is slidably connected to the top of the movable plate 413, and the spring is located between the inner side wall of the movable plate 413 and the top of the intercepting plate 414. By setting the spring rod 415, the movable plate 413 and the intercepting plate 413 can be connected vertically. The two vertical sections of the fixed frame 411 are movably connected with roller members 416. The roller members 416 include a connecting rod and an extrusion roller that are slidably installed on the vertical section of the fixed frame 411. The end of the connecting rod close to the fixed frame 411 is fixedly connected to one side of the movable plate 413, and the end of the connecting rod away from the fixed frame 411 is fixedly connected to the extrusion roller. The extrusion roller is located just above the inclined section of the movable part. When the intercepting plate 414 is lowered to the lowest position, the lower end of the extrusion roller is in contact with the inclined section of the movable part. When the intercepting part 41 is in use, it is extended downward by the telescopic member 412 to drive The movable plate 413, the intercepting plate 414 and the two roller members 416 move downward synchronously. When the end of the intercepting plate 414 moves down to the lowest position of the limit slot, the intercepting plate 414 no longer moves downward due to the restriction. At this time, the bottom of the intercepting plate 414 is close to the surface of the conveyor belt on the conveyor body 3 but does not contact it, so as to avoid affecting the operation of the conveyor belt. The telescopic member 412 continues to extend downward, which can drive the movable plate 413 and the roller member 416 to continue to move downward, and synchronously compress the two springs, so that the roller member 416 finally contacts the pushing part 42 and begins to squeeze the pushing part 42, so that the pushing part 42 starts to move.

[0035] Please refer to Figure 4 and Figure 5There are two pushing parts 42, which are symmetrically distributed along the width direction of the conveyor body 3. The pushing part 42 includes a U-shaped slide 421 vertically fixedly installed on the outside of the conveyor body 3. A pushing member 422 is movably connected to the slide 421. A support spring 423 is fixedly connected between the pushing member 422 and the side opposite to the conveyor body 3. The pushing member 422 is composed of a movable member with a broken line and a cross plate. Both sides of the inclined section of the movable member are slidably connected to both sides of the inner wall of the slide 421 through pulleys 424, and on the slide 421 The two vertical sections are provided with a movable groove adapted to the pulley 424, which is connected to the movable groove through the pulley 424, which plays a limiting role on the pushing member 422, so that it will not separate from the slide 421, and the pushing member 422 is subjected to less resistance when moving. The end of the movable member horizontally away from the slide 421 is fixedly connected to one side of the cross plate, and the cross plate is slidably mounted on the side of the top of the conveyor body 3; when the roller member 416 moves down to contact with the pushing portion 42, the squeezing roller directly contacts the inclined section of the movable member, and as the roller member 416 continues to move down, The squeezing roller rolls and generates a horizontal thrust on the movable part, causing the movable part to move horizontally on the slide 421 and squeeze the support spring 423 to shrink, while the cross plate moves horizontally toward the middle of the conveyor body 3 and simultaneously pushes the tile blanks to move, eventually making multiple tile blanks close to each other. When multiple tile blanks are close but there is a certain gap, the telescopic member 412 stops extending, causing the cross plate to stop moving. After the positions of the tile blanks are aligned, the telescopic member 412 begins to shrink, and under the elastic force of the spring rod 415, the movable plate 413 The roller part 416 moves up synchronously first, and after the spring rod 415 is reset, the intercepting plate 414 is driven to move up. At this time, the intercepting plate 414 no longer produces resistance to the tile blank, allowing the tile blank to continue to move forward. At the same time, when the extrusion roller moves up, the extrusion force on the movable part is gradually reduced, and under the action of the supporting spring 423, the movable part and the cross plate are reset synchronously. When the size of the tile blank changes, the telescopic amount of the telescopic part 412 can be adjusted to adjust the horizontal movement of the pushing part 422 accordingly, thereby adapting to tile blanks of different sizes.

[0036] Please refer to Figure 4 、 Figure 6 and Figure 7The dividing part 43 is installed on the top of the conveyor body 3. The dividing part 43 includes a mounting plate 431 arranged along the width direction of the conveyor body 3. The mounting plate 431 is evenly provided with two dividing components 432 along its length direction. The dividing component 432 includes a tip portion 4321 that contacts the tile blank. The tip part of the tip portion 4321 is composed of two vertical inclined surfaces, which can push the tile blank to both sides by contacting the gap between the tile blanks. In order to avoid damage to the tile blanks, the end of the tip portion is set to an arc shape. The top of the tip portion 4321 is fixedly connected with a fixing part 4322 for connecting to the mounting plate 431. The fixing part 4322 is connected to the top of the mounting plate 431 by bolts, and threaded holes are evenly provided on the top of the mounting plate 431. By threading the fixing part 4322 with the threaded holes at different positions, the entire The position of the dividing component 432 is adjusted to adapt to the spacing division of ceramic tile blanks of different sizes. Four rotating shafts 4323 are rotatably installed on both sides of the tip 4321. When the ceramic tile blank passes through the tip 4321, it contacts the ceramic tile blank through the rotating shaft 4323, which can reduce the friction between the two and make the ceramic tile blank move more smoothly; when the dividing part 43 is in use, after the adjustment mechanism 4 aligns the positions of multiple ceramic tile blanks, the gaps between the multiple ceramic tile blanks are just aligned with the dividing component 432. As the ceramic tile blank moves, the tip 4321 contacts the gap and exerts a horizontal thrust on the two ceramic tile blanks, so that the spacing between the two ceramic tile blanks gradually increases until the ceramic tile blank moves to the position of the rotating rod 4324. At this time, the ceramic tile blank moves to the maximum spacing position, and the spacing remains unchanged. Finally, it passes through the dividing component 432 and moves to the downward first conveyor 1.

[0037] In addition, the present invention also provides a method for conveying ceramic tile blanks, comprising the following steps:

[0038] S1, firstly, each branch conveying mechanism conveys the ceramic tile blanks to the first conveyor 1;

[0039] S2, after a plurality of ceramic tile blanks enter the first conveyor 1, the conveying direction is changed so that they are conveyed side by side synchronously;

[0040] S3, after the tile blanks enter the second conveyor 2 from the first conveyor 1, the tile blanks are first blocked by the interception part 41, so that the tile blanks stop moving and the front and rear ends are kept aligned;

[0041] At the same time, the pushing part 42 is driven by the roller 416 to move, so that the two pushing parts 42 are synchronously close to the middle of the conveyor body 3, and push the tile blanks close to the pushing parts 42 to move, and finally multiple tile blanks are brought close together to form a smaller gap;

[0042] Afterwards, the intercepting portion 41 is reset upward, which can cause the pushing portion 42 to be reset synchronously. Under the driving action of the conveyor body 3, the tile blanks continue to move, and the dividing portion 43 is used to push and divide the multiple tile blanks into uniform intervals.

[0043] S4. After adjustment, the tile blanks are moved from the second conveyor 2 to the next first conveyor 1, and finally transported to the calcining furnace for calcination.

[0044] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A conveying device for calcining ceramic tile green bricks, comprising: Two first conveyors (1) are used to convey ceramic tile blanks in a straight line, and a second conveyor (2) is provided between the two first conveyors (1), wherein one end of one of the first conveyors (1) away from the second conveyor (2) is connected to a branch conveying mechanism, and the other end of the first conveyor (1) away from the second conveyor (2) is connected to a calcining furnace, characterized in that: the second conveyor (2) includes a conveyor body (3), and an adjustment mechanism (4) is provided on the top of the conveyor body (3) for synchronously aligning and adjusting the positions of multiple ceramic tile blanks, and the adjustment mechanism (4) includes an interception part (41) for intercepting multiple ceramic tile blanks, multiple pushing parts (42) for pushing the ceramic tile blanks closer along the width direction of the conveyor body (3), and a dividing part (43) for evenly dividing the spacing between multiple ceramic tile blanks; When the conveyor body (3) conveys the tile blanks, the tile blanks first pass through the intercepting portion (41) and then pass through the dividing portion (43); after the intercepting portion (41) intercepts the tile blanks, the plurality of pushing portions (42) start to push the tile blanks; The intercepting portion (41) is vertically mounted on the top of the conveyor body (3). The intercepting portion (41) comprises a fixed frame (411) arranged in an inverted U shape. The bottom ends of the two vertical sections of the fixed frame (411) are fixedly connected to the two sides of the top of the conveyor body (3) respectively. A telescopic member (412) is fixedly connected to the middle of the bottom of the horizontal section of the fixed frame (411). The telescopic end of the telescopic member (412) is fixedly connected to a movable plate (413) arranged in an inverted U shape and parallel to the horizontal section of the fixed frame (411). An intercepting plate (414) is slidably connected between the two vertical sections of the fixed frame (411), and the top of the intercepting plate (414) is slidably connected to the inner side of the movable plate (413) through two spring rods (415); roller members (416) are movably connected to the two vertical sections of the fixed frame (411), and the roller member (416) includes a connecting rod and an extrusion roller that are slidably installed on the vertical section of the fixed frame (411), and one end of the connecting rod close to the fixed frame (411) is fixedly connected to one side of the movable plate (413), and the other end of the connecting rod away from the fixed frame (411) is fixedly connected to the extrusion roller; The number of the pushing parts (42) is two, and the two pushing parts (42) are symmetrically distributed along the width direction of the conveyor body (3). The pushing part (42) includes a U-shaped slide (421) vertically fixedly installed on the outside of the conveyor body (3), and a pushing member (422) is movably connected to the slide (421); the pushing member (422) is composed of a movable member with a broken line and a transverse plate, and both sides of the inclined section of the movable member are slidably connected to both sides of the inner side wall of the slide (421) through pulleys (424); the extrusion roller is located directly above the inclined section of the movable member, and when the intercepting plate (414) is lowered to the lowest position, the lower end of the extrusion roller is in contact with the inclined section of the movable member; The telescopic member (412) extends downward, driving the movable plate (413), the intercepting plate (414) and the two roller members (416) to move downward synchronously. When the end of the intercepting plate (414) moves downward to the lowest position of the limiting groove, the intercepting plate (414) no longer moves downward, and the telescopic member (412) continues to drive the movable plate (413) and the roller member (416) to move downward. The extrusion roller directly contacts the inclined section of the movable member. As the roller member (416) continues to move downward, the extrusion roller rolls and generates a horizontal thrust on the movable member. The movable member moves horizontally on the slide seat (421), and the cross plate moves horizontally toward the middle of the conveyor body (3), and simultaneously pushes the tile blanks to move, eventually making multiple tile blanks move closer to each other. The dividing portion (43) is installed on the top of the conveyor body (3), and the dividing portion (43) includes a mounting plate (431) arranged along the width direction of the conveyor body (3), and the mounting plate (431) is evenly provided with a plurality of dividing components (432) along its length direction, and the dividing components (432) include a tip portion (4321) in contact with the tile embryo; After the positions of the plurality of tile blanks are aligned by the adjustment mechanism (4), the gaps between the plurality of tile blanks are aligned with the dividing assembly (432).

2. The conveying device for calcining ceramic tile green bricks according to claim 1, characterized in that: A support spring (423) is fixedly connected between the pushing member (422) and the side opposite to the conveyor body (3).

3. The conveying device for calcining ceramic tile green bricks according to claim 2, characterized in that: One end of the movable part horizontally away from the slide seat (421) is fixedly connected to one side of the transverse plate, and the transverse plate is slidably mounted on the side of the top of the conveyor body (3).

4. The conveying device for calcining ceramic tile green bricks according to claim 1, characterized in that: A fixing member (4322) for connecting to the mounting plate (431) is fixedly connected to the top of the tip portion (4321), and a plurality of rotating shafts (4323) are rotatably mounted on both sides of the tip portion (4321).

5. The conveying device for calcining ceramic tile green bricks according to claim 4, characterized in that: A plurality of threaded holes are evenly arranged on the top of the mounting plate (431), and the top of the fixing member (4322) is threadedly connected to one of the threaded holes via a bolt.

6. The conveying device for calcining ceramic tile green bricks according to claim 1, characterized in that: The above-mentioned ceramic tile green brick calcining conveying device conveys ceramic tile green bricks and comprises the following steps: S1, firstly, each branch conveying mechanism conveys the ceramic tile blanks to the first conveyor (1); S2, after a plurality of ceramic tile blanks enter the first conveyor (1), the conveying direction is changed so that they are conveyed side by side and synchronously; S3, after the tile blanks enter the second conveyor (2) from the first conveyor (1), the positions and spacings of the plurality of tile blanks are adjusted by the adjustment mechanism (4); S4. After the adjustment is completed, the tile blanks are moved from the second conveyor (2) to the next first conveyor (1), and finally transported to the calcining furnace for calcination.

Citation Information

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