Tile pushing-out device of tile making machine

By designing a tile ejection device for the tile-making machine, the problem of low efficiency in manual unloading after tile stamping was solved, achieving automated unloading and improving production efficiency, while reducing equipment maintenance costs.

CN223701202UActive Publication Date: 2025-12-23HANGZHOU WEIXING BUILDING MATERIALS MACHINE
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Patent Information

Application Number
CN202520074343.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-23
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing tile-making machines produce uneven surfaces after the tiles are stamped, making automatic unloading difficult and requiring manual operation, resulting in low efficiency and high strength.

Method used

Design a tile ejection device for a tile making machine, including an ejection component, a lifting component, an edge trimming component, and a conveying mechanism. The device uses a cylinder to drive a movable plate to eject the tile, which is then conveyed to the next process by the conveying mechanism, eliminating the need for manual operation.

Benefits of technology

It has enabled automated unloading of tiles, improved production efficiency, reduced manual labor intensity, and reduced equipment maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The tile pushing-out device of the tile making machine comprises a base, two symmetrically-arranged first vertical plates and two symmetrically-arranged second vertical plates are fixed to the top of the base, and a lower die plate and a fixing plate located above the lower die plate are fixed between the two first vertical plates; an upper die plate, a lifting assembly used for driving the upper die plate to ascend and descend and a trimming assembly used for trimming the tiles punched by the upper die plate and the lower die plate are arranged between the fixing plate and the lower die plate, and a push-out assembly used for pushing the trimmed tiles away from the lower die plate is arranged at the bottom of the lower die plate. A conveying mechanism used for conveying the tiles pushed out by the push-out assembly to other procedures is arranged between the two second vertical plates. The pushing-out assembly can push out the trimmed tiles from the lower mold plate, the tiles are conveyed to the next procedure through the conveying mechanism, the tedious operation that the tiles are manually taken down from the lower mold plate is omitted, and the tile manufacturing efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a tile making device technical field, in particular to a tile making machine tile push out device. BACKGROUND

[0002] The tile making machine is the equipment for producing clay tile, that is, red tile, the tile making machine in the prior art adopts tile blank conveying belt to shift tile blank to punch press machine to complete punch forming, can punch out different demand tile according to the shape of punch die.

[0003] In the Chinese utility model patent with the publication number CN219380973U, a multi-mold tile making machine is disclosed, which comprises a support frame; one side of the support frame is provided with a mounting frame, a first electric push rod is equidistantly and fixedly arranged on one side of the mounting frame, an upper mold plate is fixedly arranged at the output end of the first electric push rod, second electric push rods are fixedly arranged at both ends of one side of the mounting frame in a symmetrical manner, scrapers are fixedly arranged at the output ends of the second electric push rods, a support plate is fixedly arranged inside the support frame, a first placement plate is arranged on the support plate, a lower mold plate is movably arranged on the first placement plate, and the scrapers are closely attached to the outer edges of the upper mold plate and the lower mold plate; during operation, the lower mold plate is placed into the first placement plate, and then a tile blank is placed on the lower mold plate, the first electric push rod pushes the upper mold plate to perform a pressing and forming process on the tile blank, and after the pressing is completed, the second electric push rods drive the scrapers to perform a scraping work on the excess soil embryo material at the edges of the upper mold plate and the lower mold plate.

[0004] According to the related technology in the above, the inventors believe that the following defects exist: after the front tile is punched and the edges are trimmed, the surface of the punched and formed tile is uneven, and it is not easy to use a grabbing tool or a suction tool to unload the tile, usually, a worker needs to take the punched and formed tile off the lower mold plate, and then a new tile blank is placed on the lower mold plate by the feeding mechanism, the unloading action is completed by the worker, the operation efficiency is low, and the working strength is large. UTILITY MODEL CONTENTS

[0005] In order to solve the above problems, the utility model provides a tile making machine tile push out device.

[0006] The above technical purpose of the utility model is realized by the following technical scheme: a tile making machine tile push out device, which comprises a base, the top of the base is fixedly provided with two symmetrically arranged first vertical plates and two symmetrically arranged second vertical plates, a lower mold plate and a fixed plate located above the lower mold plate are fixedly arranged between the two first vertical plates, an upper mold plate, a lifting assembly for driving the upper mold plate to lift and descend, and a trimming assembly for trimming the tile after the upper mold plate and the lower mold plate are punched are arranged between the fixed plate and the lower mold plate, a push out assembly for pushing the trimmed tile away from the lower mold plate is arranged at the bottom of the lower mold plate, and a conveying mechanism for conveying the tile pushed out by the push out assembly to other processes is arranged between the two second vertical plates.

[0007] By adopting the above technical scheme, the tile blank is placed on the lower mold plate, the lifting assembly drives the upper mold plate to descend after working, so that the upper mold plate cooperates with the lower mold plate and the tile blank is pressed and formed, the excess raw material flows out from the edge of the lower mold plate, the trimming assembly can remove the excess raw material at the edge of the tile, after the lifting assembly drives the upper mold plate to reset, the push-out assembly can push the trimmed tile out of the lower mold plate, and the tile is conveyed to the next process by the conveying mechanism, thereby avoiding the cumbersome operation of manually taking the tile out of the lower mold plate, and improving the tile manufacturing efficiency.

[0008] Further, the push-out assembly comprises a cylinder arranged at the bottom of the lower mold plate, a movable plate fixed with the end of the piston rod of the cylinder and located at one side of the lower mold plate, and a push plate fixed with the side of the movable plate close to the lower mold plate, the cross-sectional shape of the push plate is the same as the cross-sectional shape of the top of the lower mold plate and the bottom of the upper mold plate, and the bottom of the push plate is flush with the top of the lower mold plate.

[0009] By adopting the above technical scheme, the cylinder drives the movable plate to move towards the side close to the lower mold plate after working, so that the push plate on the movable plate pushes the trimmed tile out of the lower mold plate, and then the tile is conveyed to the next process by the conveying mechanism.

[0010] Further, the bottom of the lower mold plate is fixed with a mounting block, the side of the movable plate close to the lower mold plate is fixed with a guide rod, and the guide rod penetrates through the mounting block and is slidingly matched.

[0011] By adopting the above technical scheme, the setting of the guide rod ensures the stability of the movable plate during movement driven by the cylinder, reduces the probability of misalignment between the push plate and the lower mold plate due to rotation of the movable plate, and is conducive to the tile unloading work.

[0012] Further, the bottom of the lower mold plate is further fixed with a first material scraping ring sleeved on the piston rod of the cylinder and in gap cooperation, and a second material scraping ring sleeved on the guide rod and in gap cooperation with the guide rod, the side of the first material scraping ring close to the movable plate and the side of the second material scraping ring close to the movable plate are both conical.

[0013] By adopting the above technical scheme, the first material scraping ring can scrape off the falling objects falling on the piston rod of the cylinder after trimming by the trimming assembly, and the second material scraping ring can scrape off the falling objects falling on the guide rod after trimming by the trimming assembly, which is conducive to the action of pushing the tile out of the lower mold plate by the push-out assembly.

[0014] Further, the conveying mechanism comprises a conveying assembly and a driving assembly, the conveying assembly comprises conveying rollers rotatably arranged between the two second vertical plates, the conveying rollers are uniformly arranged, the axial direction of the conveying rollers is perpendicular to the length direction of the cylinder body of the air cylinder, and the height of the top of the conveying rollers is less than or equal to the height of the top of the lower die plate; the driving assembly comprises upper rotating rollers rotatably arranged between the two second vertical plates and lower rotating rollers rotatably arranged between the two second vertical plates, the upper rotating rollers are arranged in two and are distributed in an isosceles triangle shape with the lower rotating rollers, the two upper rotating rollers are respectively arranged at positions close to the two ends of the second vertical plates, the driving assembly further comprises a conveying belt in abutment with the roller surfaces of the upper rotating rollers and the roller surfaces of the lower rotating rollers, the top of the conveying belt is in abutment with the bottoms of the plurality of conveying rollers, and one of the second vertical plates is fixed with a motor for driving the lower rotating rollers to rotate.

[0015] By adopting the above technical scheme, the motor drives the lower rotating rollers to rotate after working, the two upper rotating rollers are rotated under the action of the conveying belt, the plurality of conveying rollers are rotated because the top of the conveying belt is in abutment with the bottoms of the plurality of conveying rollers, and the tiles pushed out by the pushing plate are conveyed forward by the plurality of rotating conveying rollers.

[0016] Further, a rubber sleeve is fixedly arranged on the conveying roller, and the bottom of the rubber sleeve is in abutment with the top of the conveying belt.

[0017] By adopting the above technical scheme, the rubber sleeve is made of soft rubber material and is flexibly connected with the bottom of the tile, so that the probability of friction damage in the conveying process of the tile is reduced.

[0018] Further, a horizontal plate is fixed between the two second vertical plates and located in the inner space of the conveying belt, a pressing plate is arranged in the inner space of the conveying belt, the horizontal plate is provided with a tightening assembly for pushing the pressing plate upward to make the top of the pressing plate in abutment with the inner surface of the top of the conveying belt, the tightening assembly is provided in multiple groups, each group of the tightening assembly comprises a sleeve fixed to the top of the horizontal plate, a sliding plate in sliding fit with the inner wall of the sleeve, a top rod fixed to the top of the sliding plate, and a spring fixed to the bottom of the sliding plate, the top end of the top rod penetrates through the top of the sleeve in clearance fit, the top end of the top rod is fixed to the bottom of the pressing plate, and the lower end of the spring is fixed to the top of the horizontal plate.

[0019] By adopting the above technical scheme, under the action of the spring, the sliding plate pushes the pressing plate upward through the top rod, and the four groups of tightening assemblies work together to make the top of the pressing plate in abutment with the bottoms of the conveying rollers, so that the plurality of conveying rollers can continuously rotate under the action of the conveying belt, and the mode of driving the plurality of conveying rollers to rotate by using a sprocket and a chain in the traditional technology is changed, thereby reducing the use cost and maintenance cost of the sprocket.

[0020] Further, the two ends of the pressing plate are bent downward.

[0021] By adopting the technical scheme, the probability of wear and tear of the conveying belt by the two ends of the pressing plate is reduced.

[0022] Further, the lifting assembly comprises a first electric push rod fixed to the bottom of the fixed plate and a vertical rod fixed to the top of the upper die plate, the upper end of the vertical rod penetrating through the fixed plate and being in sliding fit, and the lower end of the output rod of the first electric push rod being fixed to the top of the upper die plate; the trimming assembly comprises a second electric push rod fixed to the bottom of the fixed plate and a ring-shaped cutter fixed to the lower end of the output rod of the second electric push rod, the second electric push rod being provided with two and being symmetrically arranged, and the inner side of the ring-shaped cutter being flush with the edge of the lower die plate.

[0023] By adopting the technical scheme, the first electric push rod drives the upper die plate to lift after working, so that the upper die plate cooperates with the lower die plate to complete the pressing and molding of the tile blank, and the vertical rod ensures the stability of the upper die plate during lifting. The second electric push rod drives the ring-shaped cutter to lift after working, so that the blade of the ring-shaped cutter cuts off the blank protruding from the edge of the lower die plate.

[0024] To sum up, the utility model has the following beneficial effects:

[0025] 1. In the application, the pushing-out assembly can push the trimmed tile out of the lower die plate, and the tile is conveyed to the next process by the conveying mechanism, thereby avoiding the cumbersome operation of manually taking the tile out of the lower die plate and improving the tile manufacturing efficiency.

[0026] 2. In the application, the arrangement of the guide rod ensures the stability of the movement of the movable plate driven by the air cylinder, reduces the probability of misalignment between the pushing plate and the lower die plate due to the rotation of the movable plate, and is conducive to the tile unloading work.

[0027] 3. In the application, under the action of the spring, the sliding plate is upwardly lifted by the jacking rod, and the four sets of tightening assemblies cooperate to make the top of the pressing plate tightly abut against the conveying belt at the bottom of the conveying roller, thereby ensuring that the plurality of conveying rollers can continuously rotate under the action of the conveying belt, changing the mode of driving the plurality of conveying rollers to rotate by using the sprocket and chain in the traditional technology, and reducing the use cost and maintenance cost of the sprocket. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is the overall structure schematic view of the embodiment of the utility model;

[0029] Figure 2 is Figure 1 is the structure schematic view of another view;

[0030] Figure 3 is the structure schematic view of the utility model embodiment for highlighting the conveying mechanism;

[0031] Figure 4 is Figure 3 an enlarged view of A in FIG.

[0032] Figure 5 is Figure 3 an enlarged view of B in FIG.

[0033] In the figure: 1, base; 101, material receiving box; 2, first vertical plate; 21, fixed plate; 3, second vertical plate; 31, horizontal plate; 4, lower die plate; 41, mounting block; 42, first scraping ring; 43, second scraping ring; 5, upper die plate; 6, lifting assembly; 61, first electric push rod; 62, vertical rod; 7, trimming assembly; 71, second electric push rod; 72, annular cutter; 8, pushing-out assembly; 81, air cylinder; 82, movable plate; 821, guide rod; 83, push plate; 9, conveying mechanism; 91, conveying assembly; 911, conveying roller; 9111, rubber sleeve; 92, driving assembly; 921, upper rotating roller; 922, lower rotating roller; 923, conveyor belt; 10, pressing plate; 11, tensioning assembly; 111, sleeve; 112, sliding plate; 113, jacking rod; 114, spring. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, and not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.

[0035] As Figures 1-5 shown, the present application discloses a tile pushing-out device of a tile making machine, which comprises a base 1, the top of the base 1 is fixed with two symmetrically arranged first vertical plates 2 and two symmetrically arranged second vertical plates 3, a lower die plate 4 (specifically: the lower die plate 4 can be detachably connected with the first vertical plates 2 on both sides through bolts and nuts, so as to replace different lower die plates 4 according to different product requirements) and a fixed plate 21 located above the lower die plate 4 are fixed between the two first vertical plates 2, an upper die plate 5, a lifting assembly 6 for driving the upper die plate 5 to lift and a trimming assembly 7 for trimming the tiles after stamping of the upper die plate 5 and the lower die plate 4 are arranged between the fixed plate 21 and the lower die plate 4, the bottom of the lower die plate 4 is provided with a pushing-out assembly 8 for pushing the trimmed tiles away from the lower die plate 4, and a conveying mechanism 9 for conveying the tiles pushed out by the pushing-out assembly 8 to other processes is arranged between the two second vertical plates 3.

[0036] The green tile is placed on the lower die plate 4, the lifting assembly 6 drives the upper die plate 5 to descend, so that the upper die plate 5 cooperates with the lower die plate 4 and the green tile is pressed and formed, the excess material flows out from the edge of the lower die plate 4, the trimming assembly 7 can remove the excess material on the edge of the tile, after the lifting assembly 6 drives the upper die plate 5 to reset, the push-out assembly 8 can push the trimmed tile out of the lower die plate 4, and the tile is conveyed to the next process (drying and subsequent processes) by the conveying mechanism 9, so that the cumbersome operation of manually taking the tile out of the lower die plate 4 is avoided, and the tile manufacturing efficiency is improved.

[0037] For the convenience of green tile feeding, a feeding device commonly used in the prior art can be used, such as the feeding device for a tile making machine disclosed in CN220077816U, or other green tile feeding tools such as a green tile conveying belt, a mechanical hand, a suction device, etc. The above are all conventional technologies in the prior art, and do not need to be described in detail here.

[0038] The push-out assembly 8 includes a cylinder 81 arranged at the bottom of the lower die plate 4, a movable plate 82 fixed to the end of the piston rod of the cylinder 81 and located on one side of the lower die plate 4, and a push plate 83 fixed to the side of the movable plate 82 close to the lower die plate 4. The cross-sectional shape of the push plate 83 is the same as the cross-sectional shape of the top of the lower die plate 4 and the bottom of the upper die plate 5, and the bottom of the push plate 83 is flush with the top of the lower die plate 4.

[0039] The cylinder 81 drives the movable plate 82 to move towards the side close to the lower die plate 4, so that the push plate 83 on the movable plate 82 pushes the trimmed tile out of the lower die plate 4, and then the tile is conveyed to the next process by the conveying mechanism 9.

[0040] It is worth noting that after the upper die plate 5 and the lower die plate 4 are replaced, the push plate 83 is also replaced synchronously, so that the shape of the push plate 83 is adapted to the upper die plate 5 and the lower die plate 4, so as to ensure that the push plate 83 can push the tile product on the lower die plate 4.

[0041] The bottom of the lower die plate 4 is fixed with a mounting block 41, and the side of the movable plate 82 close to the lower die plate 4 is fixed with a guide rod 821 which penetrates through the mounting block 41 and is in sliding fit. The guide rod 821 ensures the stability of the movement of the movable plate 82 driven by the cylinder 81, reduces the probability of misalignment between the push plate 83 and the lower die plate 4 due to the rotation of the movable plate 82, and is conducive to the tile unloading work.

[0042] The bottom of the lower mold plate 4 is also fixed with a first material scraping ring 42 sleeved on the piston rod of the air cylinder 81 and in clearance fit, and a second material scraping ring 43 sleeved on the guide rod 821 and in clearance fit. The side of the first material scraping ring 42 close to the movable plate 82 and the side of the second material scraping ring 43 close to the movable plate 82 are both conical. The first material scraping ring 42 can scrape the material falling from the trimming assembly 7 and falling on the piston rod of the air cylinder 81, and the second material scraping ring 43 can scrape the material falling from the trimming assembly 7 and falling on the guide rod 821, which is beneficial to the pushing out of the tiles from the lower mold plate 4 by the pushing out assembly 8.

[0043] The conveying mechanism 9 comprises a conveying assembly 91 and a driving assembly 92. The conveying assembly 91 comprises conveying rollers 911 rotatably installed between the two second vertical plates 3. The conveying rollers 911 are uniformly arranged, and the axial direction of the conveying rollers 911 is perpendicular to the length direction of the cylinder body of the air cylinder 81. The height of the top of the conveying rollers 911 is less than or equal to the height of the top of the lower mold plate 4. The driving assembly 92 comprises an upper rotating roller 921 rotatably installed between the two second vertical plates 3 and a lower rotating roller 922 rotatably installed between the two second vertical plates 3. The upper rotating roller 921 is arranged in two and is in isosceles triangle distribution with the lower rotating roller 922. The two upper rotating rollers 921 are respectively located close to the two ends of the second vertical plate 3. The driving assembly 92 further comprises a conveyor belt 923 abutting against the roller surface of the upper rotating roller 921 and the roller surface of the lower rotating roller 922. The top of the conveyor belt 923 abuts against the bottom of the plurality of conveying rollers 911. A motor (not shown in the figure) for driving the lower rotating roller 922 to rotate is fixed on one of the second vertical plates 3.

[0044] The motor drives the lower rotating roller 922 to rotate. Under the action of the conveyor belt 923, the two upper rotating rollers 921 are also rotated. Since the top of the conveyor belt 923 abuts against the bottom of the plurality of conveying rollers 911, the plurality of conveying rollers 911 are also rotated. The tiles pushed out by the pushing plate 83 are conveyed forward by the plurality of rotating conveying rollers 911.

[0045] In order to reduce the probability of wear of the tiles during the conveying process on the top of the conveying rollers 911, a rubber sleeve 9111 is fixedly sleeved on the conveying roller 911. The bottom of the rubber sleeve 9111 abuts against the top of the conveyor belt 923.

[0046] The horizontal plate 31 is fixed between two second vertical plates 3 in the inner space of the conveying belt 923, the inner space of the conveying belt 923 is provided with the pressing plate 10, the horizontal plate 31 is provided with a plurality of groups of tightening assemblies 11 for pushing the pressing plate 10 upwards so that the top of the pressing plate 10 is tightly pressed against the inner surface of the top of the conveying belt 923, each group of the tightening assemblies 11 comprises a sleeve 111 fixed to the top of the horizontal plate 31, a sliding plate 112 in sliding fit with the inner wall of the sleeve 111, a top rod 113 fixed to the top of the sliding plate 112 and a spring 114 fixed to the bottom of the sliding plate 112, the upper end of the top rod 113 penetrates the top of the sleeve 111 in clearance fit, the upper end of the top rod 113 is fixed to the bottom of the pressing plate 10, and the lower end of the spring 114 is fixed to the top of the horizontal plate 31. Under the action of the spring 114, the sliding plate 112 pushes the pressing plate 10 upwards through the top rod 113, and the four groups of the tightening assemblies 11 work together to tightly press the top of the pressing plate 10 against the bottom of the conveying roller 911, thereby ensuring that the plurality of conveying rollers 911 can continuously rotate under the action of the conveying belt 923, and changing the mode of driving the plurality of conveying rollers 911 to rotate by using a chain wheel and a chain in the prior art, thereby reducing the use cost and maintenance cost of the chain wheel.

[0047] To reduce the probability of wear and tear of the conveying belt 923 at both ends of the pressing plate 10, both ends of the pressing plate 10 are curved downward. The lifting assembly 6 comprises a first electric push rod 61 fixed to the bottom of the fixed plate 21 and a vertical rod 62 fixed to the top of the upper die plate 5, the upper end of the vertical rod 62 penetrates the fixed plate 21 in sliding fit, and the lower end of the output rod of the first electric push rod 61 is fixed to the top of the upper die plate 5; the trimming assembly 7 comprises a second electric push rod 71 fixed to the bottom of the fixed plate 21 and an annular cutter 72 fixed to the lower end of the output rod of the second electric push rod 71, the second electric push rod 71 is provided with two and symmetrically arranged, and the inner side of the annular cutter 72 is flush with the edge of the lower die plate 4. The first electric push rod 61 drives the upper die plate 5 to lift after working, so that the upper die plate 5 cooperates with the lower die plate 4 to complete the pressing and forming of the tile blank, and the vertical rod 62 ensures the stability of the upper die plate 5 during lifting. The second electric push rod 71 drives the annular cutter 72 to lift after working, so that the blade of the annular cutter 72 cuts off the blank protruding from the edge of the lower die plate 4.

[0048] To facilitate the receiving of the blank cut from the edge of the lower die plate 4, the top of the base 1 is provided with a receiving box 101 located directly below the lower die plate 4.

[0049] The preferred embodiments of the present application are described above, the protection scope of the present application is not limited to the above-mentioned embodiments, any technical solutions falling within the concept of the present application shall fall within the protection scope of the present application. It should be noted that, for ordinary skilled persons in the technical field, some improvements and decorations without departing from the principles of the present application shall also be considered as the protection scope of the present application.

Claims

1. A tile ejection device for a tile-making machine, characterized in that: The utility model relates to a tile production line, including base (1), the top of base (1) is fixed with two symmetrical first vertical board (2) and two symmetrical second vertical board (3), the fixed lower die plate (4) between two first vertical board (2) and the fixed plate (21) located lower die plate (4) top, be provided with upper die plate (5) between fixed plate (21) and lower die plate (4), the lifting assembly (6) for driving upper die plate (5) to go up and down and the trimming assembly (7) for trimming the tile of upper die plate (5) and lower die plate (4) after stamping, the bottom of lower die plate (4) is provided with the pusher assembly (8) for pushing the tile after trimming away from lower die plate (4), the conveying mechanism (9) for conveying the tile pushed by pusher assembly (8) to other working procedures is provided between two second vertical board (3).

2. A tile pusher device for a tile making machine as claimed in claim 1 wherein: The pusher assembly (8) includes a cylinder (81) disposed at the bottom of the lower die plate (4), a movable plate (82) fixed to the end of the piston rod of the cylinder (81) and located on one side of the lower die plate (4), and a push plate (83) fixed to the side of the movable plate (82) close to the lower die plate (4). The cross-sectional shape of the push plate (83) is the same as the cross-sectional shape of the top of the lower die plate (4) and the bottom of the upper die plate (5), and the bottom of the push plate (83) is flush with the top of the lower die plate (4).

3. A tile pusher device for a tile making machine as claimed in claim 2 wherein: The bottom of the lower die plate (4) is fixed with a mounting block (41), and the side of the movable plate (82) close to the lower die plate (4) is fixed with a guide rod (821) that penetrates through the mounting block (41) and is slidingly fitted.

4. A tile push-out device for a tile making machine as claimed in claim 3 wherein: The bottom of the lower die plate (4) is also fixed with a first scraper ring (42) fitted on the piston rod of the cylinder (81) with a gap and a second scraper ring (43) fitted on the guide rod (821) with a gap. The side of the first scraper ring (42) close to the movable plate (82) and the side of the second scraper ring (43) close to the movable plate (82) are both conical.

5. A tile pusher device for a tile making machine as claimed in claim 3, wherein: The conveying mechanism (9) includes a conveying assembly (91) and a driving assembly (92). The conveying assembly (91) includes conveying rollers (911) rotatably installed between the two second vertical plates (3). The conveying rollers (911) are uniformly provided with a plurality of conveying rollers (911). The axial direction of the conveying rollers (911) is perpendicular to the length direction of the cylinder body of the cylinder (81). The height of the top of the conveying rollers (911) is less than or equal to the height of the top of the lower die plate (4). The driving assembly (92) comprises upper rotating rollers (921) rotatably mounted between two second vertical plates (3) and lower rotating rollers (922) rotatably mounted between the two second vertical plates (3), the upper rotating rollers (921) are arranged in isosceles triangle with the lower rotating rollers (922), and the two upper rotating rollers (921) are respectively located near the two ends of the second vertical plate (3), the driving assembly (92) further comprises a conveying belt (923) abutting against the roller surfaces of the upper rotating rollers (921) and the roller surfaces of the lower rotating rollers (922), the top of the conveying belt (923) abuts against the bottom of the plurality of conveying rollers (911), and one of the second vertical plates (3) is fixed with a motor for driving the lower rotating rollers (922) to rotate.

6. A tile pusher device for a tile making machine as claimed in claim 5 wherein: The conveying roller (911) is fixedly sleeved with a rubber sleeve (9111), and the bottom of the rubber sleeve (9111) abuts against the top of the conveying belt (923).

7. A tile pusher device for a tile making machine as claimed in claim 5 wherein: Two second vertical plates (3) are fixed with a horizontal plate (31) located in the inner space of the conveying belt (923), the inner space of the conveying belt (923) is provided with an abutting plate (10), the horizontal plate (31) is provided with a tensioning assembly (11) for pushing the abutting plate (10) upward so that the top of the abutting plate (10) abuts against the inner surface of the top of the conveying belt (923), the tensioning assembly (11) is provided in multiple groups, each group of the tensioning assembly (11) comprises a sleeve (111) fixed to the top of the horizontal plate (31), a sliding plate (112) in sliding fit with the inner wall of the sleeve (111), a top rod (113) fixed to the top of the sliding plate (112), and a spring (114) fixed to the bottom of the sliding plate (112), the top rod (113) penetrates through the top of the sleeve (111) in clearance fit, the top end of the top rod (113) is fixed to the bottom of the abutting plate (10), and the lower end of the spring (114) is fixed to the top of the horizontal plate (31).

8. A tile pusher device for a tile making machine as claimed in claim 7, wherein: The abutting plate (10) is bent downward at both ends.

9. A tile pusher device for a tile making machine as claimed in claim 7, wherein: The lifting assembly (6) comprises a first electric push rod (61) fixed to the bottom of the fixed plate (21) and a vertical rod (62) fixed to the top of the upper mold plate (5), the upper end of the vertical rod (62) penetrates through the fixed plate (21) in sliding fit, and the lower end of the output rod of the first electric push rod (61) is fixed to the top of the upper mold plate (5); the trimming assembly (7) comprises a second electric push rod (71) fixed to the bottom of the fixed plate (21) and an annular cutter (72) fixed to the lower end of the output rod of the second electric push rod (71), the second electric push rod (71) is provided in two and arranged symmetrically, and the inner side of the annular cutter (72) is flush with the edge of the lower mold plate (4).

Citation Information

Patent Citations

  • Multi-mold tile making machine

    CN219380973U

  • Tile making machine feeding device

    CN220077816U