CN214298283U - Automatic pile up neatly device of non-burning brick of environmental protection - Google Patents

Automatic pile up neatly device of non-burning brick of environmental protection Download PDF

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Publication number
CN214298283U
CN214298283U CN202023119337.4U CN202023119337U CN214298283U CN 214298283 U CN214298283 U CN 214298283U CN 202023119337 U CN202023119337 U CN 202023119337U CN 214298283 U CN214298283 U CN 214298283U
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fixedly connected
push
rod
conveying
pull
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周麦收
周思义
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Abstract

The utility model relates to an automatic pile up neatly device of burning-free brick of environmental protection, including rotatory pile up neatly platform and push-and-pull conveyor, rotatory pile up neatly platform and push-and-pull conveyor are fixed connection side by side, the burning-free brick of environmental protection with press forming transports on the rotatory platform of putting through push-and-pull conveyor, and eliminate the gap between the burning-free brick through brick seam remove device, the rotatory platform of putting of every pile up of the burning-free brick of environmental protection just rotates 90, every pile up the layer and all will work as the burning-free brick gap on layer and eliminate until will burning-free brick pile up and finish, the burning-free brick that can guarantee every layer all puts things in good order like this, wait to tie up the burning-free brick with packing area after the burning-free brick pile up finishes, the environmental protection of being convenient for is prevented the follow-up transportation of burning-free brick, it drops to avoid appearing in the in-process of transport transportation.

Description

Automatic pile up neatly device of non-burning brick of environmental protection
Technical Field
The utility model belongs to the technical field of the environmental protection equipment production, especially, relate to an automatic pile up neatly device of environmental protection baking-free brick.
Background
The baking-free brick is a novel wall material which is manufactured by using fly ash, coal cinder, coal gangue, tailing slag, chemical slag or one or more of natural sand, tidal marsh mud and the like (as raw materials) as main raw materials without high-temperature calcination. The baking-free brick is characterized by that it is made up by using reasonable scientific formula, adding coagulator and trace chemical additive according to a certain proportion, making the grain size, humidity and mixing degree be intensified by reasonable equipment process to obtain optimum plastic state, then making high-pressure press-forming so as to make the brick body be quickly hardened, and its time is longer, effect is better, brick is good in practicability, and when the wall is built, it has no need of soaking, and its appearance is neat. The material has high strength, good durability, standard size, complete appearance and uniform color, has simple and natural appearance, and can be used as a dry wall or any external decoration. Therefore, the brick is a promising updated product for replacing clay bricks. The baking-free bricks need to be stacked neatly after being subjected to compression molding, so that subsequent carrying and transportation are facilitated, the existing stacking device is not ideal in effect when stacking is regular, gaps among the bricks are large, the stacking of the baking-free bricks is not neat, stacking and transportation of the baking-free bricks are affected, and even the baking-free bricks at the edges can fall off in the transportation process.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an automatic pile up neatly device of burning-free brick of environmental protection, it is regular unsatisfactory to solve current pile up neatly, the great problem in gap between brick and the brick.
The technical scheme adopted by the utility model to solve the above problems is to provide an environment-friendly baking-free brick automatic stacking device, which comprises a rotary stacking platform and a push-pull conveying device which are fixedly connected side by side, the rotary stacking device comprises a frame, a fixed rod is fixedly connected with the top of the frame, two rotating rods parallel to the fixed rod are rotatably connected with the top of the frame, the two rotating rods are respectively positioned at two sides of the fixed rod, a lifting driving motor is fixedly connected with the fixed rod, two driving gears arranged at intervals are fixedly connected with a rotating main shaft of the lifting driving motor, a driven gear is fixedly connected with the position of one of the rotating rods corresponding to one of the driving gears, another driven gear is fixedly connected with the position of the other rotating rod corresponding to the other driving gear, and the corresponding driving gears and the driven gears are connected through a lifting driving transmission chain, lifting driving gears are fixedly connected to rotating rods at four corners of the top of the rack, lifting driven gears are rotatably connected to four corners of the bottom of the rack, the four lifting driving gears and the four lifting driven gears correspond to each other one by one, a lifting chain is arranged between each group of corresponding lifting driving gears and each group of corresponding lifting driven gears, a rotary placing platform is arranged below the rack and comprises a frame, a supporting rotating shaft is rotatably connected to the upper side of the frame, a horizontally arranged placing flat plate is fixedly connected to the top of the supporting rotating shaft, a gear ring is fixedly connected to the lower side of the placing flat plate, a rotary driving motor is fixedly connected to the frame, a rotating gear is fixedly connected to a rotating main shaft of the rotary driving motor and meshed with the gear ring, and a plurality of vertical partition plates which are vertically arranged at intervals are fixedly connected to the upper side of the placing flat plate; each lifting chain bypasses the corresponding lifting driving gear and the corresponding lifting driven gear, and the end parts of the two ends of each lifting chain are respectively and fixedly connected with the upper end and the lower end of the frame; the brickwork joint eliminating device is arranged at the upper part of the rack and comprises pushing devices which are oppositely arranged, each pushing device comprises a connecting rod which is horizontally arranged, two ends of each connecting rod are fixedly connected with the rack, the connecting rods are arranged in parallel with the rotating rods, horizontally arranged pushing cylinders are vertically and fixedly connected onto the connecting rods, and piston rod ends of the pushing cylinders are fixedly connected with vertically arranged pushing push plates; the brickwork joint removing device further comprises a movable trolley and a tensioning device which are arranged oppositely, the lower end of the movable trolley is provided with a positioning device, the tensioning device comprises a tensioning cylinder, a piston rod end of the tensioning cylinder is fixedly connected with an L-shaped sliding rod, and a vertical section of the L-shaped sliding rod is fixedly connected with a tensioning push plate which is horizontally arranged.
The push-pull conveying device comprises a fixing frame, wherein two concave tracks with openings arranged horizontally are fixedly connected to the fixing frame, a conveying plate arranged horizontally is arranged above the concave tracks, rotating rollers are fixedly connected to the lower portion of the conveying plate and are in rolling connection with the concave tracks, a passive conveying transmission gear is rotatably connected to the fixing frame below the conveying plate, a conveying driving motor is fixedly connected to the fixing frame below the conveying plate, an active conveying transmission gear is fixedly connected to a power output shaft of the conveying driving motor, two vertical rods are fixedly connected to the lower portion of the conveying plate, a conveying transmission chain is arranged between the two vertical rods, the two end heads of the conveying transmission chain are respectively and fixedly connected with the two vertical rods, and the conveying transmission chain bypasses the passive conveying transmission gear and the active conveying transmission gear; the rack that the top fixedly connected with of mount set up along its axial, the top of mount is provided with the mounting bracket, it has two rotation pivots that set up side by side to rotate on the mounting bracket, the equal fixedly connected with roll gear in both ends of every rotation pivot, roll gear and rack mesh mutually, fixedly connected with push-and-pull driving motor on the mounting bracket, fixedly connected with initiative push-and-pull drive gear on push-and-pull driving motor's the rotatory main shaft, the fixed cover in middle part that one of them rotated the pivot is equipped with passive push-and-pull drive gear, connect through push-and-pull drive chain drive between initiative push-and-pull drive gear and the passive push-and-pull drive gear, fixedly connected with push-and-pull dolly on the mounting bracket, the lower extreme of push-and-pull dolly is provided with push-and-pull transport push pedal.
The movable trolley and the push-pull trolley are identical in structure and comprise two vertically arranged rolling rails, a support frame is arranged between the two rolling rails, rolling idler wheels in rolling connection with the rolling rails are arranged on two sides of the support frame, a fixed plate is fixedly connected to the two rolling rails, a vertically arranged pushing cylinder is fixedly connected to the fixed plate, and the end of a piston rod of the pushing cylinder is fixedly connected with the upper end of the support frame.
Preferably, the pushing plate is fixedly connected with a horizontally arranged guide rod, the guide rod is perpendicular to the connecting rod, the connecting rod is fixedly connected with a rod sleeve, and the guide rod penetrates through the rod sleeve.
Preferably, the rack is fixedly connected with a sliding sleeve which is horizontally arranged, the sliding sleeve is arranged in parallel with the fixed rod, and the horizontal section of the L-shaped sliding rod is connected with the sliding sleeve in a sliding manner.
Preferably, the positioning device comprises a positioning rod, the positioning rod is perpendicular to the rotating rod, a hinge rod is arranged between the positioning rod and the support frame of the movable trolley, one end of the hinge rod is fixedly connected with the positioning rod, and the middle part of the hinge rod is hinged with the support frame.
Preferably, the fixed mount below the rack is fixedly connected with an anti-warping track arranged along the extending direction of the fixed mount, the mounting frame is fixedly connected with an anti-warping roller, and the anti-warping roller is in rolling connection with the anti-warping track.
Preferably, the cross section of the anti-warping track is formed by integrally connecting a rectangular part and a triangular part, and the sharp corner of the triangular part far away from the rectangular part is in a curved arc shape.
The utility model has the advantages that: the utility model discloses a to press formed's environmental protection on burning-free brick transports rotatory putting platform through push-and-pull conveyor, and eliminate the gap between the burning-free brick through brickwork joint remove device, the every stacking of the burning-free brick of environmental protection is put the rotatory putting platform of one deck and is just rotated 90, every stacking of one deck is burnt-free brick all will be eliminated when the burning-free brick gap on layer and will be burnt-free brick and put things in good order until will be burnt-free brick stacking, the burning-free brick that can guarantee every layer all stacks neatly like this, treat that the burning-free brick stacking finishes after will be tied up with packing area with the burning-free brick, the environmental protection of being convenient for is burnt-free the follow-up transportation of brick, the in-process of avoiding the transport transportation appears burning-free brick and drops.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the structure of FIG. 1 along line A-A;
FIG. 3 is a schematic view of the structure of FIG. 1 along the line B-B;
FIG. 4 is a schematic view of the structure of FIG. 1 in the direction of C-C;
FIG. 5 is a schematic view of the structure of FIG. 4 in the direction D-D;
FIG. 6 is a schematic view of the structure of FIG. 2 taken along direction E-E;
FIG. 7 is a schematic view of the F-F structure of FIG. 2;
FIG. 8 is a schematic diagram of the structure of FIG. 1 in the direction of G-G.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention clearer, embodiments of the present invention are described in further detail below with reference to the accompanying drawings.
As shown in fig. 1 and 2, the utility model provides an environment-friendly baking-free brick automatic stacking device, which comprises a rotary stacking platform 1 and a push-pull conveying device 2, wherein the rotary stacking platform 1 and the push-pull conveying device 2 are fixedly connected side by side, the rotary stacking device comprises a frame 3, a fixed rod 4 is fixedly connected with the top of the frame 3, two rotating rods 5 parallel to the fixed rod 4 are rotatably connected with the top of the frame 3, the two rotating rods 5 are respectively positioned at two sides of the fixed rod 4, a lifting driving motor 6 is fixedly connected with the fixed rod 4, two driving gears 7 arranged at intervals are fixedly connected with a rotating main shaft of the lifting driving motor 6, a driven gear 8 is fixedly connected with a position of one rotating rod 5 corresponding to one driving gear 7, and another driven gear 8 is fixedly connected with a position of another rotating rod 5 corresponding to another driving gear 7, the corresponding driving gears 7 and the corresponding driven gears 8 are connected through lifting driving transmission chains 9, the rotating rods 5 at the four corners of the top of the frame 3 are fixedly connected with lifting driving gears 10, the four corners of the bottom of the frame 3 are rotatably connected with lifting driven gears 11, the four lifting driving gears 10 and the four lifting driven gears 11 are in one-to-one correspondence, a lifting chain 12 is arranged between each group of corresponding lifting driving gears 10 and lifting driven gears 11, a rotary placing platform 13 is arranged below the frame 3, the rotary placing platform 13 comprises a frame 1301, a supporting rotating shaft 1302 is rotatably connected above the frame 1301, a horizontally arranged placing plate 1303 is fixedly connected at the top of the supporting rotating shaft 1302, a gear ring 1304 is fixedly connected below the placing plate 1303, a rotary driving motor 1305 is fixedly connected on the frame 1301, and a rotating gear 1306 is fixedly connected on a rotating main shaft of the rotary driving motor 1305, the rotating gear 1306 is meshed with the gear ring 1304, and a plurality of vertical partition plates 1307 which are vertically arranged at intervals are fixedly connected above the placing flat plate 1303; each lifting chain 12 bypasses the corresponding lifting driving gear 10 and the corresponding lifting driven gear 8, and the end parts of the two ends of each lifting chain 12 are fixedly connected with the upper end and the lower end of the frame 1301 respectively; the upper portion of frame 3 is provided with the brickwork joint remove device, and the brickwork joint remove device is including the push-up device 14 that sets up relatively, push-up device 14 is including the connecting rod 1401 of level setting, the both ends and frame 3 fixed connection of connecting rod 1401, and connecting rod 1401 and dwang 5 parallel arrangement, the perpendicular fixed connection has the push-up cylinder 1402 of level setting on the connecting rod 1401, the piston rod end fixedly connected with of pushing up cylinder 1402 pushes up push pedal 1403 of vertical setting, the fixed connection has the guide arm 1404 of level setting on pushing up push pedal 1403, guide arm 1404 sets up with connecting rod 1401 is perpendicular, the fixedly connected with pole cover 1405 on connecting rod 1401, guide arm 1404 passes pole cover 1405, and push-up device 14 makes the environmental protection baking-free brick more steady in the brickwork joint remove in-process. The brick seam eliminating device further comprises a movable trolley 15 and a tensioning device 16 which are arranged oppositely, a positioning device 17 is arranged at the lower end of the movable trolley 15, as shown in fig. 7, the tensioning device 16 comprises a tensioning air cylinder 1601, an L-shaped sliding rod 1602 is fixedly connected to the piston rod end of the tensioning air cylinder 1601, a tensioning push plate 1603 which is horizontally arranged is fixedly connected to the vertical section of the L-shaped sliding rod 1602, a sliding sleeve 1604 which is horizontally arranged is fixedly connected to the rack 3, the sliding sleeve 1604 is arranged in parallel with the fixed rod 4, the horizontal section of the L-shaped sliding rod 1602 is slidably connected with the sliding sleeve 1604, and the tensioning device 16 enables the environment-friendly baking-free brick to be more stable in the brick seam eliminating process.
The push-pull conveying device 2 comprises a fixed frame 201, two concave rails 202 with openings arranged horizontally and oppositely are fixedly connected to the fixed frame 201, a conveying plate 203 arranged horizontally is arranged above the concave rails 202, a rotating roller 204 is fixedly connected to the lower portion of the conveying plate 203, the rotating roller 204 is connected with the concave rails 202 in a rolling manner, a passive conveying transmission gear 205 is rotatably connected to the fixed frame 201 below the conveying plate 203, a conveying driving motor 206 is fixedly connected to the fixed frame 201 below the conveying plate 203, a driving conveying transmission gear 207 is fixedly connected to a power output shaft of the conveying driving motor 206, two upright rods 208 are fixedly connected to the lower portion of the conveying plate 203, a conveying transmission chain 209 is arranged between the two upright rods 208, two end heads of the conveying transmission chain 209 are respectively fixedly connected with the two upright rods 208, and the transmission chain 209 bypasses the passive transmission gear 205 and the active transmission gear 207; a rack 210 arranged along the axial direction of the fixed frame 201 is fixedly connected above the fixed frame 201, an installation frame 211 is arranged above the fixed frame 201, two rotating shafts 212 arranged side by side are rotatably connected on the installation frame 211, two ends of each rotating shaft 212 are fixedly connected with rolling gears 213, the rolling gears 213 are meshed with the rack 210, a push-pull driving motor 214 is fixedly connected on the installation frame 211, a driving push-pull transmission gear 215 is fixedly connected on a rotating main shaft of the push-pull driving motor 214, a driven push-pull transmission gear 216 is fixedly sleeved in the middle of one rotating shaft 212, the driving push-pull transmission gear 215 is in transmission connection with the driven push-pull transmission gear 216 through a push-pull driving chain 217, a push-pull trolley 18 is fixedly connected on the installation frame 211, and a push-pull conveying push plate 218 is arranged at the lower end of the push-pull trolley 18;
as shown in fig. 3 to 5, the moving trolley 15 and the push-pull trolley 18 have the same structure, and each of the moving trolley and the push-pull trolley includes two vertically arranged rolling rails 19, a supporting frame 20 is disposed between the two rolling rails 19, rolling rollers 21 which are in rolling connection with the rolling rails 19 are disposed on two sides of the supporting frame 20, a fixing plate 22 is fixedly connected to the two rolling rails 19, a vertically arranged pushing cylinder 23 is fixedly connected to the fixing plate 22, and a piston rod end of the pushing cylinder 23 is fixedly connected to an upper end of the supporting frame 20.
As shown in fig. 6, the positioning device 17 includes a positioning rod 1701, the positioning rod 1701 is perpendicular to the rotating rod 5, a hinge rod 1702 is arranged between the positioning rod 1701 and the support frame 20 of the mobile trolley 15, one end of the hinge rod 1702 is fixedly connected with the positioning rod 1701, the middle part of the hinge rod 1702 is hinged to the support frame 20, the hinge rod 1702 is hinged to the support frame 20 through a hinge shaft 1703, the positioning device 17 can ensure that the positioning rod 1701 is located at the same position of the environment-friendly brick plane when the environment-friendly brick falls off at each time, so that the environment-friendly brick of each layer has a standard when being stacked, and the regular specification of the stacking of the whole environment-friendly brick is ensured.
As shown in fig. 8, the fixing frame 201 below the rack 210 is fixedly connected with the anti-tilting track 24 arranged along the extending direction thereof, the mounting frame 211 is fixedly connected with the anti-tilting roller 25, the anti-tilting roller 25 is in rolling connection with the anti-tilting track 24, and the anti-tilting roller 25 can effectively ensure that the push-pull trolley 18 stably moves to the rotary stacking platform 1 along the fixing frame 201. The cross section of the anti-warping rail 24 is formed by integrally connecting a rectangular part 24a and a triangular part 24b, and the sharp corner of the triangular part 24b far away from the rectangular part 24a is in a curved arc shape. Meanwhile, the anti-warping roller 25 can prevent the push-pull trolley 18 from being inclined and warped in the process of pushing the environment-friendly baking-free bricks by the push-pull conveying push plate 218, and ensure the smooth transportation and stacking of the environment-friendly baking-free bricks.
When the environment-friendly baking-free brick conveying device is used, firstly, the lifting driving motor 6 is started, the rotary placing platform 13 is driven to move upwards through the effects of the lifting driving gear 10, the lifting driven gear 11 and the lifting chain 12, when the upper plane of the vertical partition plate 1307 of the rotary placing platform 13 is in the same horizontal plane with the upper plane of the conveying plate 203, the lifting driving motor 6 stops working, then the environment-friendly baking-free brick after being pressed and molded is conveyed to the conveying plate 203, the conveying driving motor 206 is started, the environment-friendly baking-free brick on the conveying plate 203 is conveyed to the rotary stacking platform 1 through the transmission effects of the driving conveying transmission gear 207, the driven conveying transmission gear 205 and the conveying transmission chain 209, the pushing cylinder 23 of the push-pull trolley 18 drives the push-pull conveying push plate 218 to move downwards, at the moment, the push-pull driving motor 214 is started, the push-pull trolley 18 moves towards the rotary stacking platform 1 along the fixed frame 201 through the meshing effect of the rolling gear 213 and the rack 210, the push-pull conveying push plate 218 pushes the environment-friendly baking-free bricks on the conveying plate 203 to the vertical partition plate 1307 of the rotary stacking platform 1, at the moment, a brick seam eliminating device starts to work, the pushing cylinder 23 of the moving trolley 15 drives the positioning rod 1701 to move downwards, so that the positioning rod 1701 abuts against one edge of the environment-friendly baking-free bricks placed on the vertical partition plate 1307, the pushing cylinder 1402 drives the pushing push plate 1403, the tensioning cylinder 1601 drives the tensioning push plate 1603 to work simultaneously, the two pushing push plates 1403, one tensioning push plate 1603 and the positioning rod 1701 clamp the environment-friendly baking-free bricks on the vertical partition plate 1307 together, so that gaps among the environment-friendly baking-free bricks on the vertical partition plate 1307 are eliminated, finally, the rotary driving motor 1305 starts to work, the placing plate 1303 rotates 90 degrees through the meshing effect of the rotating gear 1306 and the gear 1304, the lifting driving motor 6 is reversely started, and the driven gear 11 is lifted through the lifting driving gear 10, The effect of the lifting chain 12 drives the rotary placing platform 13 to move downwards, when the upper plane of the environment-friendly baking-free bricks on the uppermost layer of the vertical partition plate 1307 and the upper plane of the conveying plate 203 are at the same horizontal plane, the lifting driving motor 6 stops working, the conveying and stacking actions of the environment-friendly baking-free bricks are repeated until the environment-friendly baking-free brick stacking work on the rotary placing platform 13 is completed, the stacked environment-friendly baking-free bricks are bundled by the strapping tape, the subsequent transportation of the environment-friendly baking-free bricks is facilitated, and the baking-free bricks are prevented from falling off in the transporting process.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, but rather is described in the embodiments and descriptions herein to illustrate the principles of the invention and that various changes and modifications may be made without departing from the spirit and scope of the invention, all of which fall within the scope of the claimed invention. The scope of the invention is defined by the appended claims and equivalents.

Claims (6)

1. The utility model provides an automatic pile up neatly device of baking-free brick of environmental protection which characterized in that: the rotary stacking device comprises a rotary stacking platform and a push-pull conveying device, wherein the rotary stacking platform and the push-pull conveying device are fixedly connected side by side, the rotary stacking device comprises a rack, the top of the rack is fixedly connected with a fixed rod, the top of the rack is rotatably connected with two rotating rods parallel to the fixed rod, the two rotating rods are respectively positioned at two sides of the fixed rod, a lifting driving motor is fixedly connected onto the fixed rod, two driving gears which are arranged at intervals are fixedly connected onto a rotating main shaft of the lifting driving motor, a driven gear is fixedly connected onto a position, corresponding to one of the driving gears, of one rotating rod, another driven gear is fixedly connected onto a position, corresponding to the other driving gear, of the other rotating rod, the corresponding driving gear and the driven gear are connected through a lifting driving transmission chain, the lifting driving gears are fixedly connected onto the rotating rods at four corners of the top of the rack, four corners of the bottom of the rack are rotatably connected with lifting driven gears, the four lifting driving gears and the four lifting driven gears correspond to each other one by one, a lifting chain is arranged between each group of corresponding lifting driving gears and the lifting driven gears, a rotary placing platform is arranged below the rack and comprises a frame, a supporting rotating shaft is rotatably connected above the frame, a placing flat plate horizontally arranged is fixedly connected to the top of the supporting rotating shaft, a gear ring is fixedly connected below the placing flat plate, a rotary driving motor is fixedly connected to the frame, a rotating gear is fixedly connected to a rotating main shaft of the rotary driving motor and meshed with the gear ring, and a plurality of vertical partition plates vertically arranged at intervals are fixedly connected above the placing flat plate; each lifting chain bypasses the corresponding lifting driving gear and the corresponding lifting driven gear, and the end parts of the two ends of each lifting chain are respectively and fixedly connected with the upper end and the lower end of the frame; the brickwork joint eliminating device is arranged at the upper part of the rack and comprises pushing devices which are oppositely arranged, each pushing device comprises a connecting rod which is horizontally arranged, two ends of each connecting rod are fixedly connected with the rack, the connecting rods are arranged in parallel with the rotating rods, horizontally arranged pushing cylinders are vertically and fixedly connected onto the connecting rods, and piston rod ends of the pushing cylinders are fixedly connected with vertically arranged pushing push plates; the brickwork joint eliminating device also comprises a movable trolley and a tensioning device which are oppositely arranged, the lower end of the movable trolley is provided with a positioning device, the tensioning device comprises a tensioning cylinder, a piston rod end of the tensioning cylinder is fixedly connected with an L-shaped sliding rod, and a vertical section of the L-shaped sliding rod is fixedly connected with a horizontally arranged tensioning push plate;
the push-pull conveying device comprises a fixing frame, wherein two concave tracks with openings arranged horizontally are fixedly connected to the fixing frame, a conveying plate arranged horizontally is arranged above the concave tracks, rotating rollers are fixedly connected to the lower portion of the conveying plate and are in rolling connection with the concave tracks, a passive conveying transmission gear is rotatably connected to the fixing frame below the conveying plate, a conveying driving motor is fixedly connected to the fixing frame below the conveying plate, an active conveying transmission gear is fixedly connected to a power output shaft of the conveying driving motor, two vertical rods are fixedly connected to the lower portion of the conveying plate, a conveying transmission chain is arranged between the two vertical rods, the two end heads of the conveying transmission chain are respectively and fixedly connected with the two vertical rods, and the conveying transmission chain bypasses the passive conveying transmission gear and the active conveying transmission gear; the upper part of the fixed frame is fixedly connected with a rack arranged along the axial direction of the fixed frame, the upper part of the fixed frame is provided with an installation frame, the installation frame is rotatably connected with two rotating shafts arranged side by side, two ends of each rotating shaft are fixedly connected with rolling gears, the rolling gears are meshed with the racks, the installation frame is fixedly connected with a push-pull driving motor, a rotating main shaft of the push-pull driving motor is fixedly connected with an active push-pull transmission gear, the middle part of one rotating shaft is fixedly sleeved with a passive push-pull transmission gear, the active push-pull transmission gear is in transmission connection with the passive push-pull transmission gear through a push-pull driving chain, the installation frame is fixedly connected with a push-pull trolley, and the lower end of the push-pull trolley is provided with a push-pull conveying push plate;
the movable trolley and the push-pull trolley are identical in structure and comprise two vertically arranged rolling rails, a support frame is arranged between the two rolling rails, rolling idler wheels in rolling connection with the rolling rails are arranged on two sides of the support frame, a fixed plate is fixedly connected to the two rolling rails, a vertically arranged pushing cylinder is fixedly connected to the fixed plate, and the end of a piston rod of the pushing cylinder is fixedly connected with the upper end of the support frame.
2. The automatic stacking device of environment-friendly baking-free bricks as claimed in claim 1, characterized in that: the pushing push plate is fixedly connected with a guide rod which is horizontally arranged, the guide rod is perpendicular to the connecting rod, the connecting rod is fixedly connected with a rod sleeve, and the guide rod penetrates through the rod sleeve.
3. The automatic stacking device of environment-friendly baking-free bricks as claimed in claim 1, characterized in that: the rack is fixedly connected with a sliding sleeve which is horizontally arranged, the sliding sleeve is arranged in parallel with the fixed rod, and the horizontal section of the L-shaped sliding rod is connected with the sliding sleeve in a sliding manner.
4. The automatic stacking device of environment-friendly baking-free bricks as claimed in claim 1, characterized in that: the positioning device comprises a positioning rod, the positioning rod is perpendicular to the rotating rod, a hinge rod is arranged between the positioning rod and the support frame of the movable trolley, one end of the hinge rod is fixedly connected with the positioning rod, and the middle part of the hinge rod is hinged with the support frame.
5. The automatic stacking device of environment-friendly baking-free bricks as claimed in claim 1, characterized in that: fixedly connected with follows the proof warp track that its extending direction set up on the mount of rack below, fixedly connected with proof warp gyro wheel on the mount, proof warp gyro wheel and proof warp track roll connection.
6. The automatic stacking device of environment-friendly baking-free bricks as claimed in claim 5, wherein: the cross section of the anti-warping track is formed by integrally connecting a rectangular part and a triangular part, and the sharp corner of the triangular part far away from the rectangular part is in a bent arc shape.
CN202023119337.4U 2020-12-18 2020-12-18 Automatic pile up neatly device of non-burning brick of environmental protection Active CN214298283U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023119337.4U CN214298283U (en) 2020-12-18 2020-12-18 Automatic pile up neatly device of non-burning brick of environmental protection

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023119337.4U CN214298283U (en) 2020-12-18 2020-12-18 Automatic pile up neatly device of non-burning brick of environmental protection

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Publication Number Publication Date
CN214298283U true CN214298283U (en) 2021-09-28

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CN202023119337.4U Active CN214298283U (en) 2020-12-18 2020-12-18 Automatic pile up neatly device of non-burning brick of environmental protection

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117698179A (en) * 2023-12-04 2024-03-15 东莞市源热电业有限公司 Synthesis method and device for synthesizing modified meta-aramid composite material film for wires
CN117698179B (en) * 2023-12-04 2024-05-28 东莞市源热电业有限公司 Synthesis method and device for synthesizing modified meta-aramid composite material film for wires

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117698179A (en) * 2023-12-04 2024-03-15 东莞市源热电业有限公司 Synthesis method and device for synthesizing modified meta-aramid composite material film for wires
CN117698179B (en) * 2023-12-04 2024-05-28 东莞市源热电业有限公司 Synthesis method and device for synthesizing modified meta-aramid composite material film for wires

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