CN213036854U - Adobe memory device - Google Patents

Adobe memory device Download PDF

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Publication number
CN213036854U
CN213036854U CN202021402596.5U CN202021402596U CN213036854U CN 213036854 U CN213036854 U CN 213036854U CN 202021402596 U CN202021402596 U CN 202021402596U CN 213036854 U CN213036854 U CN 213036854U
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China
Prior art keywords
driving
transportation roller
chain wheel
adobe
green brick
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CN202021402596.5U
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Chinese (zh)
Inventor
李宇
唐硕度
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Guangxi Xingaosheng Thin Building Ceramics Co ltd
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Guangxi Xingaosheng Thin Building Ceramics Co ltd
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Abstract

The utility model provides a adobe memory device, relates to ceramic adobe production technical field, including transportation roller platform and elevating system, the transportation roller platform has the transportation roller that a plurality of interval set up, elevating system includes the lift seat for transportation roller platform oscilaltion, the lift seat sets up in the top of transportation roller platform, the bottom of lift seat is equipped with the buffer memory frame of the vertical setting of a plurality of, a plurality of buffer memory frame is parallel to each other, each buffer memory frame sets up respectively between two transportation rollers, the buffer memory is erect and is equipped with a plurality of horizontal pole, each horizontal pole parallels with the transportation roller respectively. An object of the utility model is to provide a adobe memory device through carrying out the buffer memory to the adobe, avoids slowing down the efficiency of adobe preparation, does benefit to ceramic factory's high-efficient production.

Description

Adobe memory device
Technical Field
The utility model relates to a ceramic adobe production technical field, especially a adobe memory device.
Background
Since the preparation time of the green brick is different from the firing time in the kiln, there is often a portion of the green brick that cannot be fed into the kiln for firing in a continuous production line. In order to solve the technical problem, the existing ceramic factory can adjust the preparation time of the green bricks, so that one green brick is prepared, and one green brick is fired and discharged from a kiln, thereby achieving a balance. But has the problems of slowing down the efficiency of green brick preparation, having troublesome adjustment and being not beneficial to the high-efficiency production of ceramic factories.
SUMMERY OF THE UTILITY MODEL
To the above defect, the utility model aims to provide a adobe memory device through carrying out the buffer memory to the adobe, avoids slowing down the efficiency of adobe preparation, does benefit to ceramic factory's high-efficient production.
To achieve the purpose, the utility model adopts the following technical proposal: the utility model provides a adobe buffer memory equipment, includes transportation roller platform and elevating system, transportation roller platform has the transportation roller that a plurality of interval set up, elevating system include for the lift seat of transportation roller platform oscilaltion, the lift seat sets up the top of transportation roller platform, the bottom of lift seat is equipped with the buffer memory frame of the vertical setting of a plurality of, a plurality of buffer memory frame is parallel to each other, each buffer memory frame sets up respectively two between the transportation roller, buffer memory frame is equipped with a plurality of horizontal pole, each the horizontal pole respectively with the transportation roller parallels.
Furthermore, each buffer storage frame is provided with two vertical rods which are vertically arranged, the tops of the vertical rods are detachably connected with the bottom of the lifting seat, and the two ends of each transverse rod are detachably connected with the two vertical rods respectively.
Further, the lifting mechanism further comprises a concave sinking platform, and the concave sinking platform is arranged on the ground plane below the conveying roller platform.
Further, the lifting mechanism also comprises a driving part, and the driving part comprises a driving device, a driving chain wheel, a chain and a balancing weight;
the driving chain wheel is connected with a driving shaft of the driving device;
the chain is meshed with the driving chain wheel;
one end of the chain is connected with the balancing weight, and the other end of the chain is connected with the lifting seat.
Further, the driving part also comprises a driven chain wheel and a driven chain;
the driving chain wheel and the driven chain wheel are provided with gear teeth, and the driving chain wheel and the driven chain wheel are meshed with each other through the gear teeth;
the driven chain is meshed with the driven chain wheel;
one end of the driven chain is connected with the other balancing weight, and the other end of the driven chain is connected with the lifting seat.
Further, elevating system still includes the pillar, two the pillar sets up respectively the both sides of transportation roller platform, two be equipped with the connection bridge between the pillar, drive arrangement sets up the connection bridge, the seat goes up and down with pillar sliding fit, the balancing weight with pillar sliding fit.
Furthermore, first pulleys are respectively arranged on two sides of the lifting seat, and the first pulleys are abutted to the supporting columns.
Further, the pillar is equipped with dodges the portion, the balancing weight sets up dodge the portion, the both sides of balancing weight are equipped with the second pulley respectively, the second pulley with dodge the inner wall of portion and offset.
Furthermore, a protective guard is arranged on the outer side of the avoiding part.
Furthermore, a climbing frame is arranged on the outer side of the supporting column.
The utility model discloses in, when needs buffer memory adobe, the transportation roller platform is carried the adobe to a plurality of between the buffer memory frame, then the seat that goes up and down rises, will buffer memory frame mentions, the horizontal pole will stop transport roller bench adobe mentions, makes the adobe leave transport roller platform's transportation face makes next batch adobe can continue to transport extremely transport roller bench is analogized in proper order to realize the large batch adobe of buffer memory. If the green bricks do not need to be cached, the lifting seat does not drive the caching frames to lift, so that the green bricks directly pass through the caching frames and directly enter the kiln for firing.
When the cached green bricks need to be fired, the lifting seat descends, so that the bottom green bricks are placed back to the conveying surface of the conveying roller table, the conveying roller table conveys the green bricks into the kiln, then the lifting seat descends again, the bottom green bricks are placed back to the conveying surface of the conveying roller table again, the conveying roller table conveys the green bricks into the kiln, and the like are repeated, so that the cached green bricks are conveyed into the kiln to be fired.
Drawings
Fig. 1 is a schematic structural view of an embodiment of the present invention;
fig. 2 is a schematic structural diagram of a lifting mechanism according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of a driving portion according to an embodiment of the present invention.
Wherein: the device comprises a conveying roller table 1, a conveying roller 11, a lifting mechanism 2, a lifting seat 21, a first pulley 211, a concave sinking platform 22, a driving part 23, a driving device 231, a driving chain wheel 232, a chain 233, a balancing weight 234, a driven chain wheel 235, a driven chain 236, a second pulley 237, a support column 24, an avoiding part 241, a protective guard 242, a climbing frame 243, a connecting bridge 25, a buffer frame 3, a cross rod 31 and a vertical rod 32.
Detailed Description
The technical solution of the present invention is further explained by the following embodiments with reference to the accompanying drawings.
Referring to fig. 1-3, a adobe buffer memory equipment, including transportation roller platform 1 and elevating system 2, transportation roller platform 1 has the transportation roller 11 that a plurality of interval set up, elevating system 2 includes for the lift seat 21 of 1 oscilaltion of transportation roller platform, lift seat 21 sets up the top of transportation roller platform 1, the bottom of lift seat 21 is equipped with the buffer memory frame 3 of the vertical setting of a plurality of, a plurality of buffer memory frame 3 is parallel to each other, each buffer memory frame 3 sets up respectively two between the transportation roller 11, buffer memory frame 3 is equipped with a plurality of horizontal pole 31, each horizontal pole 31 respectively with transportation roller 11 parallels.
The utility model discloses in, when needs buffer memory adobe, transport roller platform 1 carries the adobe to a plurality of between the buffer memory frame 3, then lift seat 21 rises, will buffer memory frame 3 mentions, horizontal pole 31 will stop transport roller platform 1 on the adobe mentions, makes the adobe leave transport roller platform 1's transportation face makes next batch adobe can continue to transport extremely transport roller platform 1 is last, analogizes in proper order to realize the large batch adobe of buffer memory, do benefit to ceramic factory's high-efficient production. If the brick blanks do not need to be cached, the lifting seat 21 does not drive the cache frame 3 to lift, so that the brick blanks directly pass through the cache frames 3 and directly enter the kiln for firing.
When the cached green bricks need to be fired, the lifting seat 21 descends, so that the bottom green bricks are placed back to the conveying surface of the conveying roller table 1, the conveying roller table 1 conveys the green bricks into the kiln, then the lifting seat 21 descends again, the bottom green bricks are placed back to the conveying surface of the conveying roller table 1 again, the conveying roller table 1 conveys the green bricks into the kiln, and the like, so that the cached green bricks are conveyed into the kiln to be fired.
Further, each cache shelf 3 is provided with two vertical rods 32 which are vertically arranged, the top of each vertical rod 32 is detachably connected with the bottom of the lifting seat 21, and two ends of each cross rod 31 are detachably connected with the two vertical rods 32 respectively. Specifically, the top of the vertical rod 32 is connected with the bottom of the lifting seat 21 through threaded fixing parts such as studs or screws, so that the detachable connection is realized, and the installation number of the cache racks 3 is convenient to adjust. The two ends of each cross rod 31 are respectively connected with the two vertical rods 32 through threaded fixing parts such as studs or screws, so that the detachable connection and the convenient detachment are realized, and the distance between the cross rods 31 is convenient to adjust.
Further, the lifting mechanism 2 further comprises a concave sinking platform 22, and the concave sinking platform 22 is arranged on the ground plane below the transportation roller platform 1. Specifically, as shown in fig. 2, through the horizon setting of transportation roller platform 1 below the sunken platform 22 of recessed form makes the bottom of buffer memory frame 3 can stretch into in the sunken platform 22 of recessed form, do not receive the restriction on ground, do benefit to the increase the length of buffer memory frame 3 to do benefit to the increase the number of piles of horizontal pole 31 improves the utility model discloses a quantity of buffer memory adobe.
Further, the lifting mechanism 2 further comprises a driving part 23, and the driving part 23 comprises a driving device 231, a driving sprocket 232, a chain 233 and a counterweight 234; the driving sprocket 232 is connected with a driving shaft of the driving device 231; the chain 233 is engaged with the driving sprocket 232; one end of the chain 233 is connected to the weight 234, and the other end of the chain 233 is connected to the lifting base 21. Specifically, as shown in fig. 3, in an embodiment of the present invention, when the driving device 231 drives the driving sprocket 232 to rotate clockwise, the chain 233 pulls up the counterweight 234, and the lifting seat 21 descends; when the driving device 231 drives the sprocket to rotate counterclockwise, the chain 233 pulls up the lifting seat 21, and the weight 234 descends. The chain 233 is tensioned by the counterweight 234, so that the situation that the lifting seat 21 cannot lift due to the fact that the chain 233 is loosened is avoided. Through the chain 233 transmission, the transmission vibration is greatly reduced, and the green brick displacement is effectively avoided. The driving device 231 may be a servo motor or a variable frequency motor.
Further, the driving part 23 further includes a driven sprocket 235 and a driven chain 236; the driving sprocket 232 and the driven sprocket 235 are provided with teeth, and the driving sprocket 232 and the driven sprocket 235 are meshed with each other through the teeth; the driven chain 236 is engaged with the driven sprocket 235; one end of the driven chain 236 is connected to another counterweight 234, and the other end of the driven chain 236 is connected to the lifting base 21. Specifically, as shown in fig. 3, one end of the chain 233 is connected to one side of the lifting base 21, and one end of the driven chain 236 is connected to the other side of the lifting base 21. When the driving device 231 drives the driving sprocket 232 to rotate, the driven sprocket 235 is driven to rotate, so that the two sides of the lifting seat 21 are lifted by the chain 233 and the driven chain 236 respectively and simultaneously, and the lifting seat 21 is lifted stably. In this embodiment, the lifting seat 21 can be pulled simultaneously by one driving device 231, so as to reduce the cost.
Further, elevating system 2 still includes pillar 24, two pillar 24 sets up respectively the both sides of transportation roller platform 1, two be equipped with between the pillar 24 and connect the bridge 25, drive arrangement 231 sets up connect the bridge 25, lift seat 21 with pillar 24 sliding fit, balancing weight 234 with pillar 24 sliding fit. Specifically, as shown in fig. 2, the pillars 24 are respectively disposed on two sides of the transportation roller table 1, so that two sides of the lifting seat 21 are respectively in sliding fit with the pillars 24, which is beneficial to improving the stability of the lifting seat 21 during lifting. Through the balancing weight 234 and the pillar 24 sliding fit, the stability of the balancing weight 234 during lifting is improved.
Further, two sides of the lifting seat 21 are respectively provided with a first pulley 211, and the first pulleys 211 are abutted against the pillar 24. Specifically, referring to fig. 2 and 3, the first pulleys 211 are respectively disposed on two sides of the lifting seat 21, so that the first pulleys 211 abut against the supporting pillars 24, the lifting seat 21 is in sliding fit with the supporting pillars 24, the improvement of the stability of the lifting seat 21 during lifting is facilitated, rolling friction is adopted to replace sliding friction, and the friction between the lifting seat 21 and the supporting pillars 24 is effectively reduced.
Further, the pillar 24 is provided with an avoiding portion 241, the weight block 234 is provided in the avoiding portion 241, the two sides of the weight block 234 are respectively provided with a second pulley 237, and the second pulley 237 abuts against the inner wall of the avoiding portion 241. Specifically, as shown in fig. 2 to 3, the avoiding portion 241 is disposed in the middle of the pillar 24, so that the counterweight block 234 can be disposed inside the pillar 24, thereby preventing safety accidents caused by the counterweight block 234 sliding outside the pillar 24, and improving production safety. Through with the second pulley 237 with the inner wall of dodging portion 241 offsets, realize the balancing weight 234 with pillar 24 sliding fit does benefit to the improvement stability when balancing weight 234 goes up and down, and adopts rolling friction to replace sliding friction, effectively reduces the balancing weight 234 with friction between the pillar 24.
Further, a guard rail 242 is provided outside the escape portion 241. Specifically, as shown in fig. 2, the guard rail 242 is disposed outside the avoiding portion 241, so as to prevent others from entering from the outside, avoid a safety accident when the weight block 234 descends, and further improve the production safety.
Further, a climbing frame 243 is provided on the outer side of the column 24. Specifically, as shown in fig. 2, by providing the climbing frame 243 on the outer side of the pillar 24, it is convenient for the worker to climb the connecting bridge 25, thereby facilitating maintenance of the driving device 231.
The technical principle of the present invention is described above with reference to specific embodiments. The description is made for the purpose of illustrating the principles of the invention and should not be construed in any way as limiting the scope of the invention. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present invention without any inventive effort, which would fall within the scope of the present invention.

Claims (10)

1. The utility model provides a adobe buffer memory equipment, includes transportation roller platform and elevating system, the transportation roller platform has the transportation roller that a plurality of interval set up, elevating system include for the lift seat of transportation roller platform oscilaltion, the lift seat sets up the top of transportation roller platform, its characterized in that:
the bottom of the lifting seat is provided with a plurality of vertically arranged buffer storage frames which are parallel to each other, each buffer storage frame is arranged between the two conveying rollers, and each buffer storage frame is provided with a plurality of cross rods which are parallel to the conveying rollers.
2. A green brick caching apparatus according to claim 1, wherein: each buffer storage frame is provided with two vertical rods which are vertically arranged, the tops of the vertical rods are detachably connected with the bottom of the lifting seat, and the two ends of each transverse rod are detachably connected with the two vertical rods respectively.
3. A green brick caching apparatus according to claim 1, wherein: the lifting mechanism further comprises a concave sinking platform, and the concave sinking platform is arranged on the ground plane below the conveying roller platform.
4. A green brick caching apparatus according to claim 1, wherein: the lifting mechanism further comprises a driving part, and the driving part comprises a driving device, a driving chain wheel, a chain and a balancing weight;
the driving chain wheel is connected with a driving shaft of the driving device;
the chain is meshed with the driving chain wheel;
one end of the chain is connected with the balancing weight, and the other end of the chain is connected with the lifting seat.
5. A green brick caching apparatus according to claim 4, wherein: the driving part also comprises a driven chain wheel and a driven chain;
the driving chain wheel and the driven chain wheel are provided with gear teeth, and the driving chain wheel and the driven chain wheel are meshed with each other through the gear teeth;
the driven chain is meshed with the driven chain wheel;
one end of the driven chain is connected with the other balancing weight, and the other end of the driven chain is connected with the lifting seat.
6. A green brick caching apparatus according to claim 5, wherein: the lifting mechanism further comprises pillars which are arranged on two sides of the transportation roller table respectively, a connecting bridge is arranged between the pillars, the driving device is arranged on the connecting bridge, the lifting seat is in sliding fit with the pillars, and the balancing weight is in sliding fit with the pillars.
7. A green brick caching apparatus according to claim 6, wherein: and first pulleys are arranged on two sides of the lifting seat respectively and are abutted to the support.
8. A green brick caching apparatus according to claim 6, wherein: the pillar is equipped with dodges the portion, the balancing weight sets up dodge the portion, the both sides of balancing weight are equipped with the second pulley respectively, the second pulley with dodge the inner wall counterbalance of portion.
9. A green brick caching apparatus according to claim 8, wherein: and a protective guard is arranged on the outer side of the avoiding part.
10. A green brick caching apparatus according to claim 6, wherein: and a climbing frame is arranged on the outer side of the support.
CN202021402596.5U 2020-07-16 2020-07-16 Adobe memory device Active CN213036854U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021402596.5U CN213036854U (en) 2020-07-16 2020-07-16 Adobe memory device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021402596.5U CN213036854U (en) 2020-07-16 2020-07-16 Adobe memory device

Publications (1)

Publication Number Publication Date
CN213036854U true CN213036854U (en) 2021-04-23

Family

ID=75528161

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021402596.5U Active CN213036854U (en) 2020-07-16 2020-07-16 Adobe memory device

Country Status (1)

Country Link
CN (1) CN213036854U (en)

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