CN209755621U - Ceramic rolling forming machine - Google Patents

Ceramic rolling forming machine Download PDF

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Publication number
CN209755621U
CN209755621U CN201920224040.2U CN201920224040U CN209755621U CN 209755621 U CN209755621 U CN 209755621U CN 201920224040 U CN201920224040 U CN 201920224040U CN 209755621 U CN209755621 U CN 209755621U
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rolling
mud
conveying mechanism
roll forming
forming machine
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CN201920224040.2U
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Chinese (zh)
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曲国华
曲云鹏
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BOSHAN JINLI MECHINE PLANT
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BOSHAN JINLI MECHINE PLANT
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Abstract

A ceramic rolling forming machine belongs to the technical field of ceramic forming equipment. Including conveying mechanism, roll forming mechanism (6) and drying device, the last a plurality of moulds (14) that are provided with of conveying mechanism installs rolling head, its characterized in that on roll forming mechanism (6): the power device is connected with the conveying mechanism through a grooved pulley mechanism and drives the conveying mechanism to do intermittent motion, and the power device is connected with the rolling head through a rolling forming mechanism (6) and drives the rolling head to lift, so that the conveying mechanism is linked with the rolling head. The rolling forming mechanism and the conveying mechanism of the ceramic rolling forming machine are driven by a power device, so that the rolling forming mechanism and the conveying mechanism are linked, the precise matching of the rolling forming mechanism and the conveying mechanism is ensured, the frequent stop of equipment is avoided, the equipment is prevented from being damaged due to the mutual interference of the rolling forming mechanism and the conveying mechanism, the fault rate of the equipment is reduced, and the equipment is more stable in operation.

Description

Ceramic rolling forming machine
Technical Field
A ceramic rolling forming machine belongs to the technical field of ceramic forming equipment.
Background
Among ceramic forming machines, roll forming machines are the larger ones, which are mainly semi-automatic roll presses and automatic roll presses. The semi-automatic roller press has simple structure and low manufacturing cost, but the feeding and the taking out of the rolling die and the feeding of the rolled pug are both manually operated during working, the efficiency is low, the labor intensity is high, and the product quality is unstable. On the contrary, when the automatic roller press works, the feeding, taking out and other steps of the rolling die are automatically completed by each mechanism in the roller press, and the working efficiency of the automatic roller press is much higher than that of a semi-automatic roller press. With the development of society, the automatic roller press slowly becomes a medium current grinding column in ceramic production.
When the automatic roller press works, when mud materials in the die are rolled, the die conveying mechanism is required to stop conveying, so that the rolling forming mechanism and the conveying mechanism are guaranteed to be matched with each other, and qualified products are rolled. In order to avoid mutual interference between the rolling forming mechanism and the conveying mechanism, the existing automatic rolling machine is generally provided with a photoelectric sensor for clamping the position of a mold, but when the automatic rolling machine works, dropped mud easily blocks the photoelectric sensor to cause misoperation, so that the automatic rolling machine is started and stopped frequently, or the rolling forming mechanism and the conveying mechanism interfere with each other, and even damage is caused to equipment.
Disclosure of Invention
The to-be-solved technical problem of the utility model is: the ceramic rolling forming machine overcomes the defects of the prior art, realizes linkage between a rolling forming mechanism and a conveying mechanism, and has low failure rate and stable work.
The utility model provides a technical scheme that its technical problem adopted is: this pottery roll forming machine establishes the drying device outside conveying mechanism including conveying mechanism, roll forming mechanism and cover, is provided with a plurality of moulds on the conveying mechanism, installs rolling head, its characterized in that on the roll forming mechanism: the power device is connected with the conveying mechanism through the grooved pulley mechanism and drives the conveying mechanism to do intermittent motion, and the power device is connected with the rolling head through the rolling forming mechanism and drives the rolling head to lift, so that the conveying mechanism is linked with the rolling head.
Preferably, the sheave mechanism comprises a driving plate and a sheave which are matched, the sheave is connected with the conveying mechanism and drives the conveying mechanism to synchronously rotate, and the power device is connected with the driving plate and drives the driving plate to rotate.
Preferably, the rolling forming mechanism comprises a cam mechanism, a rolling main shaft and a mold sleeve seat, the mold sleeve seat is coaxially installed at the upper end of the rolling main shaft and synchronously rotates with the rolling main shaft, a power device is connected with the rolling main shaft through the cam mechanism and drives the rolling main shaft to lift, a rolling head is arranged on the upper side of the mold sleeve seat, and the power device is connected with the rolling head through the cam mechanism and drives the rolling head and the mold sleeve seat to synchronously move in opposite directions.
Preferably, the two sides of the rolling main shaft are symmetrically provided with guide shafts, and the rolling main shaft is connected with the guide shafts through linear bearings.
Preferably, the plurality of die sleeve seats are arranged, the rolling main shafts correspond to the die sleeve seats one to one and are arranged on the lower sides of the corresponding die sleeve seats, and the rolling heads correspond to the die sleeve seats one to one and are arranged on the upper sides of the corresponding die sleeve seats.
Preferably, the drying device comprises a drying box, a fan and a burner, the drying box is covered outside the conveying mechanism, a port of the fan is communicated with a fire spraying port of the burner, and an air outlet of the fan is communicated with the drying box.
Preferably, the fans are arranged at intervals.
Preferably, the device also comprises a mud feeding machine arranged on one side of the conveying mechanism, and the mud feeding machine and the rolling forming mechanism are sequentially arranged along the conveying direction of the conveying mechanism.
Preferably, go up the mud machine include mud chain and push away the mud cylinder, go up the interval and be provided with a plurality of mud strip layer boards on the mud chain, push away the mud cylinder setting on last mud chain one side and with mud strip propelling movement to conveying mechanism in the mud strip layer board, go up the mud chain and be connected with and drive its pivoted and go up the mud motor.
Preferably, go up the mud chain interval and be provided with two, and the interval of two mud chains of going up reduces gradually from bottom to top, pushes away mud cylinder and last mud chain one-to-one.
Compared with the prior art, the utility model discloses the beneficial effect who has is:
1. The rolling forming mechanism and the conveying mechanism of the ceramic rolling forming machine are driven by a power device, so that the rolling forming mechanism and the conveying mechanism are linked, the precise matching of the rolling forming mechanism and the conveying mechanism is ensured, the frequent stop of equipment is avoided, the equipment is prevented from being damaged due to the mutual interference of the rolling forming mechanism and the conveying mechanism, the fault rate of the equipment is reduced, and the equipment is more stable in operation.
2. The power device drives the drive plate to rotate, and the drive plate drives the conveying device to move through the grooved wheel, so that the intermittent movement of the conveying mechanism is realized.
3. The power device drives the rolling head and the die sleeve seat to synchronously move in opposite directions through the cam mechanism, so that the rolling head and the die sleeve seat are matched to realize rolling, and the work is stable.
4. The guide shaft is matched with the linear guide rail to guide the rolling main shaft, so that the rolling main shaft is linearly lifted, and the matching accuracy of the die sleeve seat and the rolling head is ensured.
5. The die sleeve seats are multiple, multiple mud strips can be rolled simultaneously, the rolling speed is high, and the production efficiency is high.
6. The fan is through spouting the stoving incasement with the high temperature air that the combustor produced to dry to the roll forming's on the conveying mechanism product, it is provided with a plurality ofly to dry effectual fan interval, thereby can guarantee that the temperature of stoving incasement is even, and then guaranteed that the product is dried evenly.
7. The mud strip that pushes away on the mud cylinder pushes away the chain to conveying mechanism, has realized the automatic feeding of mud strip, and the mud chain that pushes away has two, has improved the speed of going up mud, and then has improved the production speed of product.
Drawings
Fig. 1 is a schematic top view of a ceramic roll forming machine.
Fig. 2 is a schematic front view of the mud feeding machine.
Fig. 3 is a right-side schematic view of the mud feeding machine.
Fig. 4 is a front view of the roll forming mechanism.
Fig. 5 is a front view schematically showing the cam mechanism.
Fig. 6 is a left side schematic view of the cam mechanism.
Fig. 7 is a front cross-sectional schematic view of the Geneva gear.
Fig. 8 is a schematic front view of the chain tensioning mechanism.
Fig. 9 is a left side sectional view of the chain tensioning mechanism.
Fig. 10 is a front cross-sectional view of the drying box.
FIG. 11 is a schematic top cross-sectional view of a drying box.
In the figure: 1. the device comprises a mould conveying chain 2, a conveying belt 3, a shaping mechanism 4, a fan 5, a mud feeding machine 6, a rolling forming mechanism 7, a mud feeding support 8, mud strips 9, a mud strip supporting plate 10, a mud feeding chain 11, a rolling forming frame 12, a lifting frame 13, a guide shaft 14, a mould 15, a rolling main shaft 16, a rotary joint 17, a rolling cam 18, a shifting fork cam 1801, a shifting fork cam limiting groove 19, a shifting fork 20, a shifting fork cam limiting roller 21, a cam shaft 22, a shifting fork shaft 23, a driving sprocket 24, a transmission box 25, a driving sprocket shaft 26, a worm 27, a worm wheel 28, a driving plate 29, a grooved wheel 30, a driven sprocket 31, a tensioning frame 3101, a dovetail groove 32, a limiting bolt 33, a tensioning cylinder 34, a translation frame 35, a drying box 36, an air inlet gate valve 37, a distribution pipe 38, The device comprises a communicating pipe 39, a communicating pipe gate valve 40, an air injection pipe 41, a recovery main pipe 42, a recovery branch pipe 43, a recovery branch pipe gate valve 44, a recovery main pipe gate valve 45 and an air inlet pipe.
Detailed Description
Fig. 1 ~ 9 shows a preferred embodiment of the present invention, which is further described below with reference to fig. 1 ~ 11.
The utility model provides a pottery roll forming machine, includes conveying mechanism, roll forming mechanism 6 and covers the drying device who establishes outside conveying mechanism, the last a plurality of moulds 14 that is provided with of conveying mechanism, install the rolling head on the roll forming mechanism 6, still include power device, power device links to each other and drives conveying mechanism and make intermittent type nature motion through geneva mechanism with conveying mechanism, power device links to each other and drives the rolling head lift through roll forming mechanism 6, makes conveying mechanism and rolling head realize the linkage. The rolling forming mechanism 6 and the conveying mechanism of the ceramic rolling forming machine are driven by a power device, so that the rolling forming mechanism 6 and the conveying mechanism are linked, the precise matching of the rolling forming mechanism 6 and the conveying mechanism is ensured, the frequent stop of equipment is avoided, the equipment is prevented from being damaged due to the mutual interference of the rolling forming mechanism 6 and the conveying mechanism, the fault rate of the equipment is reduced, and the equipment is more stable in operation.
The present invention is further described with reference to specific embodiments, however, it will be understood by those skilled in the art that the detailed description given herein with respect to the drawings is for better explanation and that the present invention is necessarily to be construed as limited to those embodiments, and equivalents or common means thereof will not be described in detail but will fall within the scope of the present application.
Example 1
As shown in fig. 1: this pottery roll forming machine still sets gradually along conveying mechanism's direction of delivery including repairing shape mechanism 3 and last mud machine 5, and repair shape mechanism 3, last mud machine 5 and roll forming mechanism 6 and set up on conveying mechanism's right side, and drying device sets up on conveying mechanism's left side, and in this embodiment, conveying mechanism is mould conveying chain 1. The power device is a forming motor which is connected with the mould conveying chain 1 through a sheave mechanism and drives the mould conveying chain to intermittently move.
And a conveying belt 2 is arranged on one side of the shape modification mechanism 3, manipulators for transferring products are arranged between the shape modification mechanism 3 and the mold conveying chain 1 and between the shape modification mechanism 3 and the conveying belt 2, and the conveying belt 2 is used for conveying out the modified products.
Drying device includes stoving case 35, fan 4 and combustor, and stoving case 35 covers and establishes in the left end outside of mould conveying chain 1, and stoving case 35 is the cuboid box, and the combustor sets up the downside at stoving case 35, and fan 4 sets up in stoving case 35 one side, and the mouth of fan 4 is linked together with the bocca of combustor, and the air outlet and the stoving case 35 of fan 4 are linked together to dry the product. The fans 4 can be arranged in a plurality of ways as required, and the burners are in one-to-one correspondence with the fans 4.
The shape trimming mechanism 3 comprises a shape trimming disc and a shape trimming wheel, the shape trimming disc is horizontally arranged on one side of the mold conveying chain 1, the shape trimming disc is connected with a shape trimming disc motor which drives the shape trimming disc motor to rotate, a plurality of shape trimming frames are uniformly distributed on the upper side of the shape trimming disc at intervals, the shape trimming frames are spliced into an annular shape coaxial with the shape trimming disc, the shape trimming frames are disc-shaped, and the upper sides of the shape trimming frames are provided with clamping grooves which are concave in the middle, so that products to be trimmed are clamped. The shape modifying wheel is horizontally arranged on the upper side of the shape modifying disc, the shape modifying wheel is sequentially aligned with each planet carrier, the planet wheel is connected with a motor which drives the shape modifying wheel to rotate, the shape modifying disc is supported by foam, and a plurality of shape modifying teeth are arranged on the side portion of the shape modifying disc at intervals. The shape-trimming wheel motor can also be connected with a trimming cylinder for pushing the shape-trimming wheel motor to move horizontally, so that the position of the shape-trimming wheel is adjusted, and the use is convenient.
As shown in fig. 2 ~ 3, the mud feeding machine 5 includes two mud feeding chains 10 and mud pushing cylinders, the mud feeding chains 10 are rotatably mounted on the mud feeding support 7, in this embodiment, the two mud feeding chains 10 are symmetrically disposed, the two mud feeding chains 10 are both inclined, and the distance between the two mud feeding chains 10 is gradually reduced from bottom to top, so as to prevent the mud bars 8 from falling off from the mud feeding chains 10, a plurality of mud bar supporting plates 9 are disposed at intervals on each mud feeding chain 10, the mud bar supporting plates 9 are groove-shaped with openings facing outward, the mud bar supporting plates 9 move synchronously with the corresponding mud feeding chains 10, the mud bars 8 are disposed on the mud bar supporting plates 9, each mud feeding chain 10 is connected with a mud feeding motor for driving the mud feeding chain to rotate, so as to complete the conveying of the mud bars 8, the mud pushing cylinders correspond to the mud feeding chains 10 one by one, the mud feeding chains 10 are disposed between the mold conveying chains 1 and the corresponding mud pushing cylinders, piston rods of the mud pushing cylinders are disposed parallel to the mud pushing cylinders, and the speed of the mud feeding chains 10 is increased sequentially through the two mud feeding chains 10.
As shown in fig. 4: roll forming mechanism 6 includes cam mechanism, roll-in main shaft 15 and mould cover seat, and roll-in main shaft 15 rotates and installs on crane 12, and crane 12 slidable mounting is on roll forming frame 11, and roll forming frame 11's bilateral symmetry is provided with vertical guiding axle 13, and crane 12 passes through linear bearing slidable mounting on guiding axle 13 to guarantee crane 12 straight line and go up and down. In this embodiment, two sides of the lifting frame 12 are symmetrically provided with rolling spindles 15, the two rolling spindles 15 are both connected with rolling motors for driving the rolling spindles to rotate, and the rolling motors are connected with the corresponding rolling spindles 15 through belts. The lower end of each rolling spindle 15 is connected to a vacuum pump via a rotary joint 16. The upper end of each rolling main shaft 15 is provided with a mold sleeve seat, and the mold sleeve seats and the corresponding rolling main shafts 15 synchronously rotate and keep synchronous lifting. The rolling motor is a brake motor, so that the rolling main shaft 15 is quickly stopped, and the purpose of quickly matching the die sleeve seat with the die sleeve seat is further realized.
In this embodiment, a plurality of plaster mold supports are uniformly distributed on the mold conveying chain 1 at intervals, two molds 14 are arranged on each plaster mold support, the distance between the two molds 14 is equal to the distance between the two rolling main shafts 15, and the rolling speed is improved.
As shown in fig. 5 ~ 6, the forming motor is connected to the rolling heads and the crane 12 through cam mechanisms, and the rolling heads are in one-to-one correspondence with the rolling spindles 15 and are disposed at the upper side of the corresponding die nest.
The cam mechanism comprises a rolling cam 17, a shifting fork cam 18, a swing arm and a shifting fork 19 which are coaxially arranged, the rolling cam 17 and the shifting fork cam 18 are coaxially arranged on a cam shaft 21, the rolling cam 17 and the shifting fork cam 18 rotate synchronously with the cam shaft 21, and the rolling cam 17 and the shifting fork cam 18 are arranged at intervals. The shifting fork 19 is installed on the shifting fork shaft 22, the shifting fork shaft 22 and the camshaft 21 are arranged in parallel, a shifting fork guide part which is attached to the shifting fork cam 18 is arranged on the shifting fork 19, a shifting fork cam limiting groove 1801 is further formed in one side of the shifting fork cam 18, a shifting fork cam limiting roller 20 which is matched with the shifting fork cam limiting groove 1801 is arranged on the shifting fork 19, the shifting fork cam limiting roller 20 is rotatably arranged in the shifting fork cam limiting groove 1801, the shifting fork 19 is connected with the lifting frame 12 and drives the lifting frame 12 to lift in a reciprocating mode, and the camshaft 21 and the shifting fork shaft 22 are both rotatably installed on the rolling forming frame 11. The middle part of swing arm rotates and installs on roll forming frame 11 to make the swing arm form lever mechanism, the one end of swing arm links to each other with the rolling head, and the other end and the laminating of roll-in cam 17, the swing arm is connected with and promotes its spring that compresses tightly roll-in cam 17, and the output shaft of shaping motor links to each other with camshaft 21 and drives camshaft 21 and rotate, thereby makes roll-in cam 17 and shift fork cam 18 synchronous rotation, thereby has realized that mould cover seat and rolling head move to opposite direction in step.
As shown in fig. 7: one end of the mould conveying chain 1 is provided with a driving chain wheel 23 meshed with the mould conveying chain, the other end of the mould conveying chain is provided with a driven chain wheel 30 meshed with the mould conveying chain, and the driving chain wheel 23 and the rolling forming mechanism 6 are arranged at the same end. The forming motor is connected with the driving chain wheel 23 through a sheave mechanism, so that the mould conveying chain 1 is driven to move intermittently.
The geneva gear comprises a driving plate 28 and a geneva wheel 29, wherein the driving plate 28 and the geneva wheel 29 are both arranged in a transmission box 24, a driving chain wheel 23 is arranged at the upper side of the transmission box 24, the driving chain wheel 23 is arranged in the transmission box 24 through a coaxially arranged driving chain wheel shaft 25, the driving chain wheel 23 and the driving chain wheel shaft 25 synchronously rotate, the geneva wheel 29 is coaxially arranged on the driving chain wheel shaft 25 and drives the driving chain wheel shaft 25 to synchronously rotate, the driving plate 28 is arranged at one side of the geneva wheel 29, and the driving plate 28 is meshed with the geneva wheel 29 so as to realize intermittent movement of the driving.
A worm and gear mechanism is arranged between the forming motor and the dial 28, the worm and gear mechanism is arranged in the transmission box 24 and comprises a worm wheel 27 and a worm 26, the worm wheel 27 and the dial 28 are coaxially connected and keep synchronous rotation, the worm 26 is arranged on one side of the worm wheel 27, the worm 26 is meshed with the worm wheel 27, and an output shaft of the forming motor is connected with the worm 26 and drives the worm 26 to rotate. The worm gear mechanism has the characteristic of reverse self-locking, so that the dies 14 on the die conveying chain 1 can be aligned with the corresponding die sleeve seats when the die conveying chain 1 is static, and the working stability of the equipment is ensured.
As shown in fig. 8 ~ 9, the driven sprocket 30 is rotatably mounted on a chain tensioning mechanism, the chain tensioning mechanism includes a translating frame 34 and a tensioning cylinder 33, the driven sprocket 30 is rotatably mounted on the translating frame 34 and moves along a direction close to or away from the driving sprocket 23 along with the translating frame 34, the translating frame 34 is slidably mounted on the tensioning frame 31, a dovetail groove 3101 is formed in the upper side of the tensioning frame 31, a trapezoidal guide rail matched with the dovetail groove 3101 is arranged on the lower side of the translating frame 34 to guide the translating frame 34, the tensioning cylinder 33 is mounted on the tensioning frame 31, the tensioning cylinder 33 is arranged on a side of the tensioning frame 31 away from the driving sprocket 23, a piston rod of the tensioning cylinder 33 is arranged towards the driving sprocket 23, a piston rod of the tensioning cylinder 33 is connected with the translating frame 34 to drive the translating frame 34 to translate, when the device operates, the tensioning cylinder 33 pushes the driven sprocket 30 to move in a direction away from the driving sprocket 23, so as to ensure that the mold conveying chain 1 is stable in operation, and when the device stops pushing the tensioning cylinder 33 to move towards the driving sprocket 23, the service life of the mold is not affected by the chain.
The tensioning frame 31 is further provided with a limiting bolt 32, the limiting bolt 32 and the tensioning cylinder 33 are symmetrically arranged on two sides of the translation frame 34, the limiting bolt 32 is arranged on one side, close to the driving chain wheel 23, of the translation frame 34, so that the die conveying chain 1 is limited after the die conveying chain 1 is loosened, the die conveying chain 1 is prevented from being separated from the driven chain wheel 30 and the driving chain wheel 23 due to excessive loosening, the limiting bolt 32 is in threaded connection with the tensioning frame 31, the position of the limiting bolt 32 can be adjusted as required, and the adjustment is convenient.
Example 2
As shown in fig. 10 ~ 11, the difference between embodiment 2 and embodiment 1 is that the drying apparatus includes a drying box 35, a fan 4 and an air injection pipe 40, the drying box 35 is a rectangular box, the drying box 35 is covered outside the mold conveying chain 1, the air injection pipe 40 is parallel to the mold conveying chain 1 and is arranged on the upper side of the mold conveying chain 1, both ends of the air injection pipe 40 are closed, the bottom of the air injection pipe 40 is provided with a plurality of air injection holes at intervals, so that hot air can be uniformly sprayed onto the product on the mold 14, in this embodiment, two rows of the air injection pipe 40 are provided, the two rows of the air injection pipe 40 are correspondingly arranged on both sides of the mold conveying chain 1, each row is provided with a plurality of air injection pipes 40 at intervals, the fan 4 is arranged on the upper side of the drying box 35, the air outlet of the fan 4 is simultaneously communicated with the plurality of air injection pipes 40, the air inlet of the fan 4 is connected with an air inlet pipe 45, the air inlet pipe 45 can be connected with a fire injection port of a burner or a flue of a boiler, so that hot air can be uniformly sprayed onto the.
The drying box 35 is further provided with a distribution pipe 37, the distribution pipe 37 is horizontally arranged, two ends of the distribution pipe 37 are closed, in this embodiment, two distribution pipes 37 are arranged, and the two distribution pipes are respectively arranged above one corresponding side of the mold conveying chain 1. The mould conveying chain 1 is arranged on the upper side of an air injection pipe 40, the air injection pipe 40 is communicated with a distribution pipe 37 through a communicating pipe 38, the communicating pipes 38 are in one-to-one correspondence with the air injection pipe 40, a communicating pipe gate valve 39 is arranged in each communicating pipe 38, the air injection speed of each air injection pipe 40 can be controlled through the communicating pipe gate valve 39, the use is convenient, and an air outlet of the fan 4 is communicated with the middle part of the distribution pipe 37.
Still be provided with hot-blast recovery system between fan 4 and the stoving case 35, hot-blast recovery system is including retrieving branch pipe 42 and retrieving the person in charge 41, retrieve branch pipe 42 and jet-propelled pipe 40 one-to-one, and retrieve the vertical setting of branch pipe 42 under the jet-propelled pipe 40 that corresponds, the uncovered setting in upper end of retrieving branch pipe 42, the lower extreme of retrieving branch pipe 42 is linked together with retrieving the person in charge 41, the one end of retrieving the person in charge 41 is sealed and is set up, the other end is linked together with the air intake of fan 4, it is provided with the recovery person in charge gate valve 44 to retrieve between the air intake of person in charge 41 and fan 4, be provided with air inlet gate valve 36 between the air intake of air-supply line 45 and fan 4, thereby can adjust as required, can send into the stoving case 35 with outside.
Each recovery branch pipe 42 is provided with a recovery branch pipe gate valve 43, and the on-off and the air intake of the recovery branch pipes 42 can be controlled through the recovery branch pipe gate valves 43, so that the adjustment is convenient.
While the invention has been described with reference to a preferred embodiment, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention. However, any simple modification, equivalent change and modification made to the above embodiments according to the technical substance of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims (10)

1. The utility model provides a pottery roll forming machine, includes conveying mechanism, roll forming mechanism (6) and covers the drying device who establishes outside conveying mechanism, is provided with a plurality of moulds (14) on the conveying mechanism, installs rolling head, its characterized in that on roll forming mechanism (6): the power device is connected with the conveying mechanism through a grooved pulley mechanism and drives the conveying mechanism to do intermittent motion, and the power device is connected with the rolling head through a rolling forming mechanism (6) and drives the rolling head to lift, so that the conveying mechanism is linked with the rolling head.
2. The ceramic roll forming machine according to claim 1, wherein: the grooved wheel mechanism comprises a driving plate (28) and a grooved wheel (29) which are matched, the grooved wheel (29) is connected with the conveying mechanism and drives the conveying mechanism to synchronously rotate, and the power device is connected with the driving plate (28) and drives the driving plate (28) to rotate.
3. The ceramic roll forming machine according to claim 1, wherein: the rolling forming mechanism (6) comprises a cam mechanism, a rolling main shaft (15) and a mold sleeve seat, the mold sleeve seat is coaxially arranged at the upper end of the rolling main shaft (15) and synchronously rotates with the rolling main shaft (15), a power device is connected with the rolling main shaft (15) through the cam mechanism and drives the rolling main shaft (15) to ascend and descend, a rolling head is arranged on the upper side of the mold sleeve seat, and the power device is connected with the rolling head through the cam mechanism and drives the rolling head and the mold sleeve seat to synchronously move in opposite directions.
4. The ceramic roll forming machine according to claim 3, wherein: guide shafts (13) are symmetrically arranged on two sides of the rolling main shaft (15), and the rolling main shaft (15) is connected with the guide shafts (13) through linear bearings.
5. The ceramic roll forming machine according to claim 3, wherein: the rolling device is characterized in that the plurality of die sleeve seats are arranged, the rolling main shafts (15) correspond to the die sleeve seats one by one and are arranged on the lower sides of the corresponding die sleeve seats, and the rolling heads correspond to the die sleeve seats one by one and are arranged on the upper sides of the corresponding die sleeve seats.
6. The ceramic roll forming machine according to claim 1, wherein: drying device include stoving case (35), fan (4) and combustor, stoving case (35) cover is established outside conveying mechanism, the mouth and the combustor bocca of fan (4) are linked together, the air outlet and the stoving case (35) of fan (4) are linked together.
7. The ceramic roll forming machine according to claim 6, wherein: the fans (4) are arranged in a plurality at intervals.
8. The ceramic roll forming machine according to claim 1, wherein: the automatic mud feeding machine is characterized by further comprising a mud feeding machine (5) arranged on one side of the conveying mechanism, wherein the mud feeding machine (5) and the rolling forming mechanism (6) are sequentially arranged along the conveying direction of the conveying mechanism.
9. The ceramic roll forming machine according to claim 8, wherein: go up mud machine (5) including last mud chain (10) and push away the mud cylinder, go up mud chain (10) and go up the interval and be provided with a plurality of mud strip layer boards (9), push away the mud cylinder and set up in last mud chain (10) one side and with mud strip propelling movement to conveying mechanism in mud strip layer board (9), go up mud chain (10) and be connected with and drive its pivoted and go up the mud motor.
10. The ceramic roll forming machine according to claim 9, wherein: go up mud chain (10) interval be provided with two, and the interval of two mud chains (10) reduces gradually from bottom to top, mud pushing cylinder and last mud chain (10) one-to-one.
CN201920224040.2U 2019-02-22 2019-02-22 Ceramic rolling forming machine Active CN209755621U (en)

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Application Number Priority Date Filing Date Title
CN201920224040.2U CN209755621U (en) 2019-02-22 2019-02-22 Ceramic rolling forming machine

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Application Number Priority Date Filing Date Title
CN201920224040.2U CN209755621U (en) 2019-02-22 2019-02-22 Ceramic rolling forming machine

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Publication Number Publication Date
CN209755621U true CN209755621U (en) 2019-12-10

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CN201920224040.2U Active CN209755621U (en) 2019-02-22 2019-02-22 Ceramic rolling forming machine

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111376384A (en) * 2020-03-20 2020-07-07 龙泉市建春青瓷厂 Automatic production line for celadon blank
CN112659739A (en) * 2020-12-18 2021-04-16 湖南仁瑞无纺制品有限公司 Equidistance printing and dyeing structure and cloth stamp device for weaving

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111376384A (en) * 2020-03-20 2020-07-07 龙泉市建春青瓷厂 Automatic production line for celadon blank
CN112659739A (en) * 2020-12-18 2021-04-16 湖南仁瑞无纺制品有限公司 Equidistance printing and dyeing structure and cloth stamp device for weaving

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