CN219238229U - Material conveying device for ceramic processing - Google Patents

Material conveying device for ceramic processing Download PDF

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Publication number
CN219238229U
CN219238229U CN202223113073.0U CN202223113073U CN219238229U CN 219238229 U CN219238229 U CN 219238229U CN 202223113073 U CN202223113073 U CN 202223113073U CN 219238229 U CN219238229 U CN 219238229U
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vertical section
magnet
pipe
discharge
guide plate
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范保国
郭艳军
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Henan Hengjin New Material Technology Co ltd
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Henan Hengjin New Material Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/60Production of ceramic materials or ceramic elements, e.g. substitution of clay or shale by alternative raw materials, e.g. ashes

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Abstract

The utility model relates to a feeding device for ceramic processing, which comprises a sealing shell, wherein rollers are rotatably arranged on two inner sides of the sealing shell, a conveying belt is connected between the two rollers in a transmission way, a feeding pipe is communicated with the top of the sealing shell corresponding to the left end of the conveying belt, a discharging pipe is communicated with the bottom of the sealing shell corresponding to the right side of the conveying belt, the feeding pipe consists of a vertical section and an inclined section, a screen is arranged in the upper part of the vertical section, a plurality of feeding guide plates are distributed in the lower part of the vertical section, one end of each feeding guide plate is fixedly connected with the vertical section, the other end of each feeding guide plate is inclined downwards, a plurality of discharging guide plates are distributed in the feeding guide plates, one end of each discharging guide plate is fixedly connected with the corresponding discharging pipe, the other end of each discharging guide plate is inclined downwards, a second magnet is arranged in each discharging guide plate, and a plurality of third magnets are distributed on the conveying belt. The utility model can realize closed belt conveying, can effectively remove conventional impurities and magnetic impurities, and is more practical.

Description

Material conveying device for ceramic processing
Technical Field
The utility model belongs to the technical field of ceramic processing, and particularly relates to a material conveying device for ceramic processing.
Background
The ceramic material is generally divided into glass, glass ceramic and engineering ceramic, wherein the engineering ceramic is also divided into common ceramic and special ceramic, the common ceramic is also called traditional ceramic, the main raw materials of the common ceramic are clay, quartz and feldspar, and the ceramic product can have different electric resistance, heat resistance and mechanical property by adjusting the proportion of the three materials.
At present, in the processing process of ceramic products, belt type, spiral and other conveying equipment are generally adopted to convey raw materials such as clay and the like. The utility model discloses a ceramic processing conveying equipment of screenable impurity in the patent of application number 202121750373.2, this equipment adopts the belt to carry, add the material to the feeding incasement earlier, make the material drop on the conveyer belt through screening net, through being provided with driving motor, through the axis of rotation, the cooperation of conveyer roller and conveyer belt, can carry the material through the conveyer belt, when the axis of rotation rotates, the axis of rotation can drive the cam and rotate, under the cooperation of cam and compression spring, make push pedal and connecting plate move about, the connecting plate can drive the feeding case through the fixed plate and control and rock, can improve the efficiency of screening, when connecting plate and fixed plate move about, in the rack, the external gear, bevel gear's cooperation, can make the axis of rotation rotate, the rotation can drive the puddler and rotate, the puddler can stir the material in the feeding incasement, can prevent piling up and caking of material. However, the equipment can only screen out conventional impurities in the raw materials, cannot remove magnetic impurities in the raw materials, can pass through a screening net, is unfavorable for subsequent processing of ceramic products, is of an open conveying structure, can generate more dust during screening and conveying, has great adverse effect on surrounding environment and needs to be improved.
Disclosure of Invention
In view of the above, it is an object of the present utility model to provide a feeding device for ceramic processing, which can realize closed belt-type conveyance and can effectively remove conventional impurities and magnetic impurities to solve the above-mentioned problems.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows: the utility model provides a feeding device for ceramic processing, includes sealed shell, the inside left and right sides of sealed shell all rotates and is equipped with the cylinder, a cylinder transmission is connected with actuating mechanism, the transmission is connected with the conveyer belt between two cylinders, the conveyer direction of conveyer belt is from left to right and the sealed shell top intercommunication that its left end corresponds has the inlet pipe, the sealed shell bottom intercommunication that the right side corresponds has the discharge tube, the inlet pipe comprises vertical section and intercommunication at vertical section top and the slope section that sets up towards left side upward slope, be equipped with screen cloth in the upper portion of vertical section, be equipped with a plurality of feeding guide plates of interval distribution about in the lower part, the bottom of screen cloth is equipped with the vibrator, one end and the inner wall fixed connection of vertical section of feeding guide plate, the other end downward slope sets up and leaves the clearance between this end and the relative vertical section inner wall, all be equipped with first magnet in every adjacent two feeding guide plates's the slope end opposite, be equipped with a plurality of magnet in the discharge guide plates of interval down, the strip-shaped guide plates of interval is all set up between the corresponding to the inner wall of the other end of the discharge guide plate in the discharge tube; the dust collector is characterized in that an exhaust fan and a dust collector are arranged on the outer top of the sealing shell, two dust collection pipes are connected in parallel to an air inlet of the exhaust fan, an air outlet is communicated with an air inlet of the dust collector, the tail end of one dust collection pipe is located above the pipe orifice of the inclined section and is communicated with a first dust collection cover, and the tail end of the other dust collection pipe is located on one side of the lower portion of the discharge pipe and is communicated with a second dust collection cover towards the discharge pipe.
Preferably, the first magnet and the second magnet are both power-off permanent magnet sucker type electromagnets.
Preferably, the third magnet is the permanent magnet, the level is equipped with first pneumatic cylinder on the sealed shell right side that the conveyer belt corresponds, the piston rod of first pneumatic cylinder stretches into sealed shell and fixedly connected with guide rail, the guide rail sets up and slides on its left side along the fore-and-aft direction and is equipped with electronic slider, be equipped with the scraper on the left side of electronic slider, the scraper can the butt on the third magnet.
Preferably, the horizontal second pneumatic cylinder that is equipped with on the vertical section that the left side of screen cloth corresponds, the piston rod of second pneumatic cylinder stretches into vertical section and fixedly connected with push pedal, the push pedal butt is on the top of screen cloth, the bin outlet that can supply the push pedal to stretch out vertical section has been seted up on the vertical section that the right side of screen cloth corresponds, vertical third pneumatic cylinder that is equipped with on the slope section outer wall of bin outlet outside top, the piston rod of third pneumatic cylinder is down and fixedly connected with shutoff board, shutoff board butt is in bin outlet department.
Preferably, the sealing shell is made of foamed aluminum.
The beneficial effects of the utility model are as follows: the utility model has reasonable design and simple structure, and when in use, the raw materials to be conveyed are firstly fed into the feed pipe from the mouth of the inclined section of the feed pipe. After the raw materials enter the vertical section, the raw materials fall on the screen, can be effectively vibrated and screened under the cooperation of the screen and the vibrator, and can effectively intercept and screen conventional impurities and magnetic impurities with granularity larger than the aperture of the screen in the raw materials. Then, other raw materials can drop to the feeding guide plates below the screen through the screen, under the matching of downward inclination of a plurality of feeding guide plates and opposite inclination ends of two adjacent feeding guide plates, the raw materials after screening can be subjected to multiple diversion feeding, and magnetic impurities in the raw materials flowing through can be preliminarily and effectively adsorbed and removed for multiple times by utilizing the first magnet on each feeding guide plate. Then, the raw material can fall onto a conveyor belt running from left to right, and magnetic impurities in the raw material falling on the conveyor belt can be further adsorbed and removed by a plurality of third magnets on the conveyor belt. Then, the raw materials follow the conveyer belt to advance to the right-hand member and unload for the material can continue to drop on the guide plate of unloading in the discharge tube, under the slope of polylith guide plate of unloading and the opposite setting cooperation of the slope end of two adjacent guide plates of unloading, can realize the many times water conservancy diversion discharge to the raw materials after carrying, can utilize the second magnet on each guide plate of unloading again to carry out many times more effective absorption to the magnetic impurity in the raw materials of flowing through and get rid of. Therefore, through the device, conventional impurities in the raw materials can be effectively screened and removed when the raw materials are conveyed and fed, and the raw materials can be sequentially subjected to multiple times of magnetic separation and impurity removal treatment in the processes of conveying and feeding, conveying and discharging, so that magnetic impurities in the raw materials are effectively removed, and the subsequent production and processing of ceramic products are facilitated;
meanwhile, the inclined section of the feeding pipe can effectively reduce the scattering of dust generated during feeding, the sealing shell can form sealing type conveying, the scattering of dust generated in the conveying process can be effectively blocked, and under the pumping of the exhaust fan, the dust collection pipe corresponding to the first dust collection cover and the dust collection pipe corresponding to the second dust collection cover can be used for effectively collecting and conveying the dust overflowed from the feeding end and the discharging end of the conveying pipe to the dust remover for removal, so that the adverse effect of the dust generated during conveying operation on the external environment can be greatly reduced, the environment is more favorably protected, and the whole device is more practical.
Drawings
FIG. 1 is a schematic diagram of the front view of the present utility model;
FIG. 2 is a schematic front view of the feed tube of the present utility model;
FIG. 3 is a schematic view of the front view of the discharge tube of the present utility model;
fig. 4 is a schematic diagram of the front view of the guide rail and doctor blade of the utility model.
Reference numerals in the drawings: 1 is a sealed shell, 2 is a roller, 3 is a conveying belt, 4 is a feeding pipe, 401 is a vertical section, 402 is an inclined section, 5 is a discharging pipe, 6 is a screen, 7 is a vibrator, 8 is a feeding guide plate, 9 is a first magnet, 10 is a discharging guide plate, 11 is a second magnet, 12 is a third magnet, 13 is an exhaust fan, 14 is a dust remover, 15 is a dust collection pipe, 16 is a first dust collection cover, 17 is a second dust collection cover, 18 is a first hydraulic cylinder, 19 is a guide rail, 20 is an electric sliding block, 21 is a scraper, 22 is a second hydraulic cylinder, 23 is a push plate, 24 is a discharge hole, 25 is a third hydraulic cylinder, and 26 is a blocking plate.
Detailed Description
The utility model is described in further detail below with reference to the attached drawings and detailed description:
as shown in fig. 1 to 4, a feeding device for ceramic processing includes a sealed shell 1, rollers 2 are rotatably disposed on both sides of the interior of the sealed shell 1, a driving mechanism (not shown in the drawing) is connected to one roller 2 in a transmission manner, and a conveyor belt 3 is connected between the two rollers 2 in a transmission manner, so that when in use, the driving mechanism can provide power to drive the corresponding rollers 2 to rotate, and then drive the conveyor belt 3 to operate, thereby realizing the conveying of materials. The driving mechanism is realized by adopting the prior art;
the conveying direction of the conveying belt 3 is from left to right, the top of the sealing shell 1 corresponding to the left end of the conveying belt is communicated with a feeding pipe 4, and the bottom of the sealing shell 1 corresponding to the right side is communicated with a discharging pipe 5. The inlet pipe 4 comprises vertical section 401 and intercommunication at the top of vertical section 401 and the slope section 402 that upwards inclines to the left side and set up, is equipped with screen cloth 6 in the upper portion of vertical section 401, is in the lower part and is upper and lower interval distribution has a plurality of feeding guide plates 8. The bottom of screen cloth 6 is equipped with vibrator 7, and the one end and the inner wall fixed connection of vertical section 401 of feeding guide plate 8, the other end downward sloping setting just leave the clearance between this end and the relative vertical section 401 inner wall, and the slope end of two adjacent feeding guide plates 8 is opposite, all is equipped with first magnet 9 in every feeding guide plate 8. A plurality of discharging guide plates 10 are vertically distributed in the discharging pipe 5 at intervals, one end of each discharging guide plate 10 is fixedly connected with the inner wall of the discharging pipe 5, the other end of each discharging guide plate is obliquely arranged downwards, a gap is reserved between the end of each discharging guide plate and the inner wall of the corresponding discharging pipe 5, the oblique ends of two adjacent discharging guide plates 10 are opposite, and a second magnet 11 is arranged in each discharging guide plate 10. A plurality of strip-shaped third magnets 12 are distributed on the conveyor belt 3 at intervals along the length direction. An exhaust fan 13 and a dust remover 14 are arranged on the outer top of the sealing shell 1, and two dust collection pipes 15 are connected in parallel with an air inlet of the exhaust fan 13, and an air outlet is communicated with an air inlet of the dust remover 14. The tail end of one dust collection pipe 15 is positioned above the pipe orifice of the inclined section 402 and is communicated with a first dust collection cover 16, and the tail end of the other dust collection pipe 15 is positioned at one side of the lower part of the discharge pipe 5 and is communicated with a second dust collection cover 17 towards the discharge pipe 5;
in use, the material to be fed is first fed into the feed tube 4 from the mouth of the inclined section 402 of the feed tube 4. After the raw materials enter the vertical section 401, the raw materials fall on the screen 6, can be effectively vibrated and screened under the cooperation of the screen 6 and the vibrator 7, and can effectively intercept and screen conventional impurities and magnetic impurities with granularity larger than the aperture of the screen 6 in the raw materials. Then, other raw materials can drop onto the feeding guide plates 8 below the screen 6 through the screen 6, and under the matching of downward inclination of the feeding guide plates 8 and the opposite inclination ends of the two adjacent feeding guide plates 8, the raw materials after screening can be guided and fed repeatedly, and magnetic impurities in the raw materials flowing through can be primarily and effectively adsorbed and removed repeatedly by utilizing the first magnets 9 on the feeding guide plates 8. Then, the raw material can fall onto the conveyor belt 3 running from left to right, and the magnetic impurities in the raw material falling on the conveyor belt 3 can be further removed by adsorption by the plurality of third magnets 12 on the conveyor belt 3. After that, the raw materials advance to the right end along with the conveyer belt 3 to be discharged, so that the materials can continuously fall onto the discharge guide plates 10 in the discharge pipe 5, and under the matching of downward inclination of a plurality of discharge guide plates 10 and opposite inclined ends of two adjacent discharge guide plates 10, the repeated diversion discharge of the conveyed raw materials can be realized, and the magnetic impurities in the raw materials flowing through can be further and effectively adsorbed and removed for a plurality of times by utilizing the second magnets 11 on each discharge guide plate 10. Therefore, through the device, conventional impurities in the raw materials can be effectively screened and removed when the raw materials are conveyed and fed, and the raw materials can be sequentially subjected to multiple times of magnetic separation and impurity removal treatment in the processes of conveying and feeding, conveying and discharging, so that magnetic impurities in the raw materials are effectively removed, and the subsequent production and processing of ceramic products are facilitated;
meanwhile, the inclined section 402 of the feeding pipe 4 can effectively reduce the scattering of dust generated during feeding, the sealing shell 1 can form sealing type conveying, the scattering of dust generated in the conveying process can be effectively blocked, and under the pumping of the exhaust fan 13, the dust overflowed from the feeding end and the discharging end of conveying can be effectively collected and conveyed into the dust remover 14 for removal by utilizing the dust collecting pipe 15 corresponding to the first dust collecting cover 16 and the dust collecting pipe 15 corresponding to the second dust collecting cover 17, so that the adverse influence of the dust generated during conveying operation on the external environment can be greatly reduced, the environment is more beneficial to protecting the environment, and the whole device is more practical. The dust remover 14 may be any conventional bag type dust remover or cyclone dust remover, and may be selected according to practical situations, and is not particularly limited herein.
In this embodiment, the first magnet 9 and the second magnet 11 are conventional permanent magnet sucker electromagnets with a power-off type, and the electromagnet of the type is a holding sucker electromagnet, which is suitable for an environment requiring long-term holding of suction force. In the actual transportation operation, both the first magnet 9 and the second magnet 11 are not energized, and are made magnetic to match with the removal of the magnetic impurities in the raw material. When the magnetic impurities adsorbed on the feeding guide plate 8 and the discharging guide plate 10 need to be cleaned after conveying, the first magnet 9 and the second magnet 11 are electrified to lose magnetism, so that the magnetic impurities on the feeding guide plate 8 flow downwards along the feeding guide plate 8 and fall onto the conveying belt 3 and are adsorbed by the third magnet 12 on the conveying belt 3, and the magnetic impurities on the discharging guide plate 10 flow downwards along the discharging guide plate 10 and are directly discharged from the discharging pipe 5, and therefore, the magnetic impurities on the feeding guide plate 8 and the discharging guide plate 10 can be cleaned quickly and automatically without affecting the subsequent use effect of the device.
In this embodiment, the third magnet 12 is a permanent magnet, the right side of the seal housing 1 corresponding to the conveyor belt 3 is horizontally provided with the first hydraulic cylinder 18, a piston rod of the first hydraulic cylinder 18 extends into the seal housing 1 and is fixedly connected with the guide rail 19, the guide rail 19 is arranged along the front-back direction and is provided with the electric sliding block 20 in a sliding manner on the left side, the left side of the electric sliding block 20 is provided with the scraper 21, and the scraper 21 can be abutted against the third magnet 12, so that when the magnetic impurities adsorbed on the conveyor belt 3 need to be cleaned after the conveying is finished, the magnetic impurities on the feed guide plate 8 and the discharge guide plate 10 can be removed firstly in a shutdown state, then the conveyor belt 3 is operated in a state that the second magnet 11 keeps electrified and demagnetized, one third magnet 12 on the guide belt is made to advance to the left side of the scraper 21, and then the first hydraulic cylinder 18 is operated, so that the piston rod of the scraper 21 is elongated, and the scraper 21 can be pushed to move left until the scraper 21 abuts against the corresponding third magnet 12. Then, the electric slider 20 is operated to move back and forth along the guide rail 19 with the scraper 21, so that the magnetic impurities on the corresponding third magnet 12 can be effectively scraped by the scraper 21, and the magnetic impurities on the third magnet 12 are scraped and fall into the discharge pipe 5 to be discharged through the discharge pipe 5. After that, the scraper 21 is retracted, the conveyor belt 3 is operated again, the other third magnet 12 on the conveyor belt is advanced to the left side of the scraper 21, and then the third magnet 12 is cleaned as described above. And the like, until all the third magnets 12 are removed, the magnetic impurities on the conveyer belt 3 are cleaned, so that the subsequent use effect of the conveyer belt 3 is not affected. In addition, in actual use, a transparent observation window (not shown in the figure) may be disposed on the front side wall or the rear side wall of the sealed housing 1 corresponding to the right end of the conveyor belt 3, so as to observe the cleaning condition of the third magnet 12.
In this embodiment, a second hydraulic cylinder 22 is horizontally arranged on a vertical section 401 corresponding to the left side of the screen 6, and a piston rod of the second hydraulic cylinder 22 extends into the vertical section 401 and is fixedly connected with a push plate 23, wherein the push plate 23 abuts against the top of the screen 6. The vertical section 401 corresponding to the right side of the screen 6 is provided with the discharge opening 24, through which the push plate 23 extends out of the vertical section 401, the outer wall of the inclined section 402 above the outer side of the discharge opening 24 is vertically provided with a third hydraulic cylinder 25, a piston rod of the third hydraulic cylinder 25 faces downwards and is fixedly connected with a plugging plate 26, and the plugging plate 26 is abutted to the discharge opening 25, so that when impurities intercepted on the screen 6 need to be cleaned after conveying are finished, the third hydraulic cylinder 25 can be operated firstly, the piston rod of the third hydraulic cylinder is contracted, and the plugging plate 26 can be driven to move upwards, so that the discharge opening 24 is unblocked. Then, the second hydraulic cylinder 22 is operated to extend the piston rod of the second hydraulic cylinder, so that the push plate 23 can be driven to move right, impurities on the screen 6 are pushed out from left to right through the discharge port 24 by the push plate 23, the operation is simple and convenient, and the subsequent use effect of the screen 6 is not affected.
In this embodiment, the seal housing 1 is made of foamed aluminum, and the foamed aluminum is an existing material, and has excellent performances of shock absorption, noise reduction, corrosion resistance, and the like, so that the conveying operation is more stable, the conveying quality is ensured, the influence of noise generated during the conveying operation on the external environment is reduced, the service life of the device is prolonged, and the whole device is more practical.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.

Claims (5)

1. The utility model provides a feeding device for ceramic processing, a serial communication port, including sealed shell, the inside left and right sides of sealed shell all rotates and is equipped with the cylinder, a cylinder transmission is connected with actuating mechanism, the transmission is connected with the conveyer belt between two cylinders, the conveying direction of conveyer belt is from left to right and the sealed shell top intercommunication that its left end corresponds has the inlet pipe, the sealed shell bottom intercommunication that the right side corresponds has the discharge tube, the inlet pipe comprises vertical section and the slope section that communicates at vertical section top and upwards incline towards left side, be equipped with screen cloth in the upper portion of vertical section, be equipped with a plurality of feed guide plates in the lower part about interval distribution, the bottom of screen cloth is equipped with the vibrator, one end and the inner wall fixed connection of vertical section of feed guide plate, the other end downward sloping setting and this end and the relative vertical section inner wall between leave the clearance, all be equipped with first magnet in every adjacent two feed guide plate's the slope, be equipped with a plurality of discharge guide plates in the upper and lower interval distribution in the discharge tube, the one end of discharge guide plate and the inner wall of the opposite direction of the corresponding magnet, the two end of the discharge guide plates are equipped with a plurality of strip-shaped opposite each other end and the opposite to each other and are equipped with a plurality of the discharge guide plates along the opposite direction between the slope; the dust collector is characterized in that an exhaust fan and a dust collector are arranged on the outer top of the sealing shell, two dust collection pipes are connected in parallel to an air inlet of the exhaust fan, an air outlet is communicated with an air inlet of the dust collector, the tail end of one dust collection pipe is located above the pipe orifice of the inclined section and is communicated with a first dust collection cover, and the tail end of the other dust collection pipe is located on one side of the lower portion of the discharge pipe and is communicated with a second dust collection cover towards the discharge pipe.
2. The feeding device for ceramic processing of claim 1, wherein the first magnet and the second magnet are both de-energized permanent magnet sucker type electromagnets.
3. The feeding device for ceramic processing according to claim 1, wherein the third magnet is a permanent magnet, a first hydraulic cylinder is horizontally arranged on the right side of the sealing shell corresponding to the conveyor belt, a piston rod of the first hydraulic cylinder stretches into the sealing shell and is fixedly connected with a guide rail, the guide rail is arranged in the front-back direction, an electric sliding block is slidably arranged on the left side of the guide rail, a scraper is arranged on the left side of the electric sliding block, and the scraper can be abutted to the third magnet.
4. The feeding device for ceramic processing according to claim 1, wherein a second hydraulic cylinder is horizontally arranged on a vertical section corresponding to the left side of the screen, a piston rod of the second hydraulic cylinder extends into the vertical section and is fixedly connected with a push plate, the push plate is abutted to the top of the screen, a discharge opening through which the push plate extends out of the vertical section is formed in a vertical section corresponding to the right side of the screen, a third hydraulic cylinder is vertically arranged on the outer wall of an inclined section above the outer side of the discharge opening, and a piston rod of the third hydraulic cylinder faces downwards and is fixedly connected with a plugging plate which is abutted to the discharge opening.
5. A delivery device for ceramic processing as claimed in claim 1, wherein the sealed housing is made of foamed aluminium.
CN202223113073.0U 2022-11-23 2022-11-23 Material conveying device for ceramic processing Active CN219238229U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223113073.0U CN219238229U (en) 2022-11-23 2022-11-23 Material conveying device for ceramic processing

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Application Number Priority Date Filing Date Title
CN202223113073.0U CN219238229U (en) 2022-11-23 2022-11-23 Material conveying device for ceramic processing

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Publication Number Publication Date
CN219238229U true CN219238229U (en) 2023-06-23

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117138551A (en) * 2023-07-13 2023-12-01 安徽世绿环保科技有限公司 Sewage pumping station deodorization device
CN117206074A (en) * 2023-11-07 2023-12-12 寻甸金林钛矿有限公司 Fine material mineral processing equipment for titanium ore exploitation processing
CN117563767A (en) * 2023-11-07 2024-02-20 涿鹿金隅水泥有限公司 A kind of powder iron remover

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117138551A (en) * 2023-07-13 2023-12-01 安徽世绿环保科技有限公司 Sewage pumping station deodorization device
CN117206074A (en) * 2023-11-07 2023-12-12 寻甸金林钛矿有限公司 Fine material mineral processing equipment for titanium ore exploitation processing
CN117206074B (en) * 2023-11-07 2024-01-05 寻甸金林钛矿有限公司 Fine material mineral processing equipment for titanium ore exploitation processing
CN117563767A (en) * 2023-11-07 2024-02-20 涿鹿金隅水泥有限公司 A kind of powder iron remover

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