CN114392664B - Light brick raw material mixing stirring equipment - Google Patents

Light brick raw material mixing stirring equipment Download PDF

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Publication number
CN114392664B
CN114392664B CN202111413659.6A CN202111413659A CN114392664B CN 114392664 B CN114392664 B CN 114392664B CN 202111413659 A CN202111413659 A CN 202111413659A CN 114392664 B CN114392664 B CN 114392664B
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China
Prior art keywords
stirring
driving
rolling
block
raw material
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CN202111413659.6A
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CN114392664A (en
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章自伟
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Hongjiang Fangyuanyuan New Wall Material Co ltd
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Hongjiang Fangyuanyuan New Wall Material Co ltd
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Abstract

The invention discloses light brick raw material mixing and stirring equipment, which relates to the technical field of light building material manufacturing, and adopts the technical scheme that the light brick raw material mixing and stirring equipment comprises a stirring barrel provided with a stirring cavity, wherein a stirring shaft driven by a driving piece is arranged in the stirring cavity, the stirring shaft is rotatably arranged on a fixed round rod, and the fixed round rod is fixedly arranged in the stirring cavity; the upper end of the stirring cavity is provided with a plurality of feeding devices which are driven by a driving device to slide up and down so as to intermittently feed materials into the stirring cavity, and the driving device is powered by the rotation of the stirring shaft; every feed arrangement position all correspond and be provided with one and slide up and down along with it and provide power, and then roll the rolling machine that blocks up the material, technical effect has the advantage that can accomplish intermittent type nature material loading and roll the bulk material in step when realizing the stirring under the condition that does not increase external power source.

Description

Light brick raw material mixing stirring equipment
Technical Field
The invention relates to the technical field of light building material manufacturing, in particular to light brick raw material mixing and stirring equipment.
Background
The light brick is used as a building material, which can reduce the load of the floor, and the light brick is usually manufactured by mixing a plurality of materials and then forming at high pressure and firing at high temperature.
In the existing mixing process of the light brick raw materials, a stirrer is generally directly used for mixing, and manual feeding or equipment feeding is generally used for mixing.
The stirring equipment can realize the mixing of raw materials, but cannot intermittently feed the raw materials a small amount of times, and can not finish intermittent feeding and synchronously roll the bulk materials while stirring under the condition of not increasing an external power source, so that the stirring effect of the materials is poor, and the improvement of the existing light brick raw material mixing equipment is worth researching.
Disclosure of Invention
The invention aims to provide light brick raw material mixing and stirring equipment which has the advantages of realizing intermittent feeding and synchronous rolling of massive materials while stirring under the condition of not increasing an external power source.
The technical aim of the invention is realized by the following technical scheme:
the light brick raw material mixing and stirring equipment comprises a stirring barrel provided with a stirring cavity, wherein a stirring shaft driven by a driving piece is arranged in the stirring cavity, the stirring shaft is rotatably arranged on a fixed round rod, and the fixed round rod is fixedly arranged in the stirring cavity; the upper end of the stirring cavity is provided with a plurality of feeding devices which are driven by a driving device to slide up and down so as to intermittently feed materials into the stirring cavity, and the driving device is powered by the rotation of the stirring shaft; and each feeding device is correspondingly provided with a rolling device which provides power along with the upward and downward sliding of the feeding device, so as to roll the blocking materials.
By adopting the technical scheme, the driving device provides power by using the stirring shaft and drives the feeding device to be intermittently started and stopped, so that the stirring shaft can realize intermittent blanking while stirring, and further the defect that efficiency is affected by boring accumulation or intermittent stopping of feeding during sequential feeding is avoided; in addition, set up supplementary rolling machine in feed arrangement position, be favorable to carrying out preliminary treatment to the boring of big piece.
Further set up: the stirring cavity upper end be provided with the mounting panel, feed arrangement include run through the feed opening of mounting panel, with the blocking piece of feed opening mutually supporting and connect blocking piece with drive arrangement's connecting rod.
Further set up: the width of the blanking opening gradually decreases from top to bottom, and the minimum position of the blanking opening from the central axis of the stirring shaft is larger than the maximum diameter of the stirring shaft.
Through adopting above-mentioned technical scheme, the minimum position of feed opening distance(s) puddler central axis is greater than the design of the maximum diameter of puddler, avoids boring to be detained on the puddler, influences the operation and the life of puddler.
Further set up: the rolling device comprises a matching block fixedly arranged at the lower end of the blanking opening, a plurality of rolling grooves arranged on the matching block and a plurality of rolling blocks matched with the rolling grooves; the rolling block is connected with the lower end face of the blocking block through an elastic piece.
Further set up: the elastic piece is arranged as an elastic bin, the lower end of the elastic bin is connected with a plurality of air supply grooves, and the air supply grooves are connected with a plurality of telescopic blocks; the telescopic block is arranged on the rolling block and is matched with one surface of the rolling groove.
Through adopting above-mentioned technical scheme, through the design of rolling groove and roll briquetting for it is better to roll the effect, and can further slow down unloading speed, and then avoids a large amount of material cards in the discharge gate position, and the setting of elastic component can reach the effect of rolling, can avoid again to the impact of cooperation piece too big, and the elastic component sets up to the elastic bin and can also provide power for flexible piece is flexible, avoids boring to glue on rolling the rolling surface of rolling groove and rolling the piece.
Further set up: the rolling device comprises a pressing plate arranged on the lower end face of the blocking block and a rolling net matched with the pressing plate, and the rolling net is fixedly arranged at the lowest end position of the blanking opening.
By adopting the technical scheme, the grinding block can be directly matched with the grinding net, so that the material is rolled in advance.
Further set up: the driving device comprises a sliding groove arranged on the mounting plate, a sliding plate slidably arranged in the sliding groove, a cylindrical rod fixedly arranged at the lower end of the sliding plate, an arc block fixedly arranged at the lower end of the cylindrical rod, a driving block fixedly arranged at the inner side of the stirring shaft and a driving inclined plane arranged at the upper end of the driving block; a spring for driving the arc block to always fit with the driving inclined plane is arranged between the sliding plate and the sliding groove; the sliding plate is connected with all the connecting rods.
Through adopting above-mentioned technical scheme, utilize the drive inclined plane that sets up on spring, circular arc slider and the drive piece, can directly give feed arrangement with the power transmission of (mixing) shaft, save power on the one hand, on the other hand is favorable to stirring and intermittent type unloading to go on in step for stirring effect is better.
Further set up: the outer circular surface of the stirring shaft is fixedly provided with a stirring plate which is spirally arranged from top to bottom; a plurality of horizontal stirring devices are rotatably arranged on the stirring shaft, and the horizontal stirring devices are arranged in gaps in the upper space and the lower space of the threaded stirring plate; the horizontal stirring device is driven by a driving guide rail arranged on the fixed round rod.
Further set up: the horizontal stirring device comprises a spiral plate which is rotatably arranged on the stirring shaft through a rotating shaft; one end of the rotating shaft is provided with a driving component which is matched with the driving guide rail so as to drive the spiral plate to rotate; the driving component is movably arranged in an installation cavity formed in the stirring shaft.
Further set up: the driving assembly comprises a first connecting rod, one end of the first connecting rod is fixedly connected with the rotating shaft, a second connecting rod is rotatably arranged at the other end of the first connecting rod, and a ball body matched with the driving guide rail is rotatably arranged at one end, away from the hinge position, of the second connecting rod.
Through adopting above-mentioned technical scheme, utilize (mixing) shaft pivoted power and guide rail, drive assembly's mutually supporting for the (mixing) shaft pivoted can drive horizontal agitating unit's stirring board rotates in the horizontal direction in the time, makes horizontal direction and vertical direction go on in step when stirring, and then makes stirring effect better, and simultaneously, according to the rotation direction of spiral plate to and the rotation direction mutually supporting of (mixing) shaft, the material of steerable stirring is from down upwards moving, avoids the material gathering to be in the lower extreme and makes the effect of material stirring better.
Drawings
Fig. 1 is a block diagram of the apparatus of the present invention.
Fig. 2 is a schematic view in front elevation cut-away of the apparatus of the present invention.
Fig. 3 is an enlarged view of the position a in fig. 2.
Fig. 4 is an enlarged view of the position B in fig. 2.
Fig. 5 is a schematic view of the apparatus of the present invention in cross-section in a rolling mill.
Fig. 6 is a schematic structural view of a second embodiment of the rolling device.
In the figure, a stirring barrel 1, a stirring cavity 11, a driving member 12, a stirring shaft 13, a fixed round rod 14, a mounting plate 15, a spiral plate 16, a driving guide rail 17, a driving device 2, a sliding chute 21, a sliding plate 22, a cylindrical rod 23, an arc block 24, a driving block 25, a driving inclined surface 26, a spring 27, a feeding device 3, a feed opening 31, a blocking block 32, an inclined surface 321, an elastic plate 322, a connecting rod 33, a rolling device 4, a matching block 41, a rolling groove 42, a rolling block 43, an elastic member 44, an elastic bin 441, an air supply groove 442, a telescopic block 443, a pressing plate 45, a rolling net 46, a horizontal stirring device 5, a rotating shaft 51, a stirring plate 52, a mounting cavity 53, a driving assembly 50, a first connecting rod 501, a second connecting rod 502 and a sphere 503.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
The light brick raw material mixing and stirring equipment comprises a stirring barrel 1 provided with a stirring cavity 11, wherein a stirring shaft 13 driven by a driving piece 12 is arranged in the stirring cavity 11, and the driving piece 12 in the device can drive a meshing gear set to rotate by adopting a motor so as to drive the stirring shaft 13; the stirring shaft 13 is rotatably arranged on the fixed round rod 14, and the fixed round rod 14 is fixedly arranged in the stirring cavity 11; the upper end of the stirring cavity 11 is provided with a plurality of feeding devices 3 which are driven by a driving device 2 to slide up and down, and then intermittently feed materials into the stirring cavity 11, the feeding devices 3 are arranged according to the inner diameter of the stirring cavity 11, 3 to 6 can be arranged, and the driving device 2 is powered by the rotation of a stirring shaft 13; each feeding device 3 is correspondingly provided with a rolling device 4 which provides power along with the up-and-down sliding of the feeding device, so as to roll the blocking materials, and the rolling device 4 is arranged at the lower end or the side surface of the feeding device; the outer circular surface of the stirring shaft 13 is fixedly provided with a spiral plate 16 which is spirally arranged from top to bottom; a plurality of horizontal stirring devices 5 are rotatably arranged on the stirring shaft 13, and the horizontal stirring devices 5 are arranged in gaps in the upper space and the lower space of the spiral plate 16; the horizontal stirring device 5 is driven by a driving guide rail 17 arranged on the fixed round rod 14, the rotation direction of a spiral plate 16 in the device is set according to the rotation direction of the stirring shaft 13, so that the spiral plate 16 can drive materials to run from bottom to top, a water injection pipe can be arranged at the upper end of the stirring barrel 1, and a discharge hole can be arranged at the lower end of the stirring barrel.
As shown in fig. 2 and 3, the upper end of the stirring cavity 11 is provided with a mounting plate 15, the mounting plate 15 is fixedly connected with the stirring barrel 1, the feeding device 3 comprises a discharging opening 31 penetrating through the mounting plate 15, a blocking block 32 mutually matched with the discharging opening 31, and a connecting rod 33 connecting the blocking block 32 with the driving device 2, the width of the discharging opening 31 gradually decreases from top to bottom, and the minimum position of the discharging opening 31 away from the central axis of the stirring shaft 13 is larger than the maximum diameter of the stirring shaft 13.
As shown in fig. 3 and 4, the driving device 2 comprises a chute 21 arranged on the mounting plate 15, a sliding plate 22 slidably arranged in the chute 21, a cylindrical rod 23 fixedly arranged at the lower end of the sliding plate 22, an arc block 24 fixedly arranged at the lower end of the cylindrical rod 23, a driving block 25 fixedly arranged at the inner side of the stirring shaft 13, and a driving inclined plane 26 arranged at the upper end of the driving block 25; a spring 27 for driving the arc block 24 to always fit with the driving inclined plane 26 is arranged between the sliding plate 22 and the sliding groove 21; the slide 22 connects all of the links 33.
As shown in fig. 3 and 5, the rolling device 4 includes a pressing plate 45 disposed on the lower end surface of the blocking block 32, and a rolling net 46 cooperating with the pressing plate 45, where the rolling net 46 is fixedly disposed at the lowest end position of the feed opening 31.
As shown in fig. 4, the horizontal stirring device 5 includes a stirring plate 52 rotatably mounted on the stirring shaft 13 via a rotation shaft 51; one end of the rotating shaft 51 is provided with a driving component 50 which is matched with the driving guide rail 17 so as to drive the stirring plate 52 to rotate; the driving assembly 50 is movably arranged in a mounting cavity 53 formed in the stirring shaft 13.
As shown in fig. 4, the driving assembly 50 includes a first link 501 having one end fixedly connected to the rotation shaft 51, a second link 502 rotatably mounted on the other end of the first link 501, and a ball 503 rotatably mounted on the end of the second link 502 away from the hinge position and cooperating with the driving rail 17.
As shown in fig. 6, the rolling device 4 comprises a matching block 41 fixedly arranged at the lower end of the feed opening 31, a plurality of rolling grooves 42 arranged on the matching block 41, and a plurality of rolling blocks 43 mutually matched with the rolling grooves 42; the grinding block 43 is connected to the lower end face of the stopper 32 by an elastic member 44.
As shown in fig. 6, the elastic member 44 is provided as an elastic bin 441, the lower end of the elastic bin 441 is connected with a plurality of air supply grooves 442, and the air supply grooves 442 are connected with a plurality of expansion blocks 443; the expansion block 443 is provided on the rolling block 43 and on one surface thereof which cooperates with the rolling groove 42.
As shown in fig. 6, the upper end of the blocking block 32 is set to be a slope 321 gradually inclined downwards from the middle to two ends, so that the blanking is convenient, the material is prevented from being gathered at the upper end of the blocking block 32, the two ends of the blocking block 32 can be provided with an outer elastic plate 322, the elastic plate 322 is gradually unfolded along with the upward movement of the blocking block 32, the material is fed after a period of time, the material is separated from the end face of the feed opening 31, the blanking amount of one time can be better controlled, the material is prevented from being blocked at the position of the rolling device 4, the elastic plate 322 can be directly set to be a rubber plate or a hinged hard plate, and the flat plate can also be set to slide through the horizontal control of a spring.
Working principle: in the initial state, all devices are in a static state, the ball 503 is matched with the driving guide rail 17, the blocking block 32 is matched with the blanking opening 31, the arc block 24 is positioned at the extreme position of the lowest end of the driving inclined plane 26, the pressing plate 45 is matched with the rolling net 46 (or the rolling groove 42 is matched with the rolling block 43), the elastic bin 441 is in a minimum volume state, and the telescopic block 443 extends out of the side face of the rolling block 43 and is matched with the inclined plane of the rolling groove 42.
When the product is required to be used, the material to be treated is firstly put into the feed opening 31, and then the driving piece 12 is utilized to drive the stirring shaft 13 to rotate, so that the stirring shaft 13 drives the spiral plate 16 to rotate, and when the material enters the stirring cavity 11, the material is stirred and is driven to move upwards.
Meanwhile, the stirring shaft 13 drives the driving block 25 to synchronously run in the rotating process, so that the contact position of the driving inclined surface 26 arranged on the driving block 25 and the arc block 24 is changed, the driving inclined surface is further matched with the spring 27, the driving sliding plate 22 slides back and forth in the sliding groove 21, the sliding plate 22 moves and drives the blocking block 32 to move upwards through the connecting rod 33, at the moment, the materials in the feed opening 31 enter the stirring cavity 11, and after one rotation, the arc block 24 is restored to the initial state position again, so that intermittent feeding is realized; during the downward movement of the blocking block 32, the pressing plate 45 cooperates with the rolling screen 46 to roll the material retained on the rolling screen 46.
If the structure of rolling groove 42 and rolling block 43 is adopted, the rolling groove 42 and rolling block 43 are utilized to roll the material, and when the blocking block 32 moves up and down, the volume of the elastic bin 441 is changed, so that the telescopic block 443 is driven to extend or retract, and the material can be prevented from being detained on the rolling contact surface.
While the stirring shaft 13 rotates, the first connecting rod 501 and the second connecting rod 502 drive the ball 503 to run in the driving guide rail 17, and further drive the stirring plate 52 to stir the materials.
The above-described embodiments are provided for illustration only and not for limitation of the present invention, and modifications may be made to the embodiments without creative contribution by those skilled in the art after reading the present specification, as long as they are protected by patent laws within the scope of claims of the present invention.

Claims (7)

1. The utility model provides a light brick raw materials mixes agitated vessel, including agitator (1) that is equipped with stirring chamber (11), stirring chamber (11) in be equipped with (13) by driving piece (12) driven stirring axle, its characterized in that: the stirring shaft (13) is rotatably arranged on the fixed round rod (14), and the fixed round rod (14) is fixedly arranged in the stirring cavity (11); the upper end of the stirring cavity (11) is provided with a plurality of feeding devices (3) which are driven by a driving device (2) to slide up and down so as to intermittently feed materials into the stirring cavity (11), and the driving device (2) is powered by the rotation of the stirring shaft (13); a rolling device (4) which provides power along with the upward and downward sliding of the feeding devices (3) is correspondingly arranged at each feeding device, so as to roll the blocking materials;
the outer circular surface of the stirring shaft (13) is fixedly provided with a spiral plate (16) which is spirally arranged from top to bottom; a plurality of horizontal stirring devices (5) are also rotatably arranged on the stirring shaft (13), and the horizontal stirring devices (5) are arranged in gaps in the upper space and the lower space of the spiral plate (16); the horizontal stirring device (5) is driven by a driving guide rail (17) arranged on the fixed round rod (14);
the horizontal stirring device (5) comprises a stirring plate (52) rotatably arranged on the stirring shaft (13) through a rotating shaft (51); one end of the rotating shaft (51) is provided with a driving component (50) which is matched with the driving guide rail (17) so as to drive the stirring plate (52) to rotate; the driving component (50) is movably arranged in an installation cavity (53) formed in the stirring shaft (13);
the driving assembly (50) comprises a first connecting rod (501) with one end fixedly connected with the rotating shaft (51), a second connecting rod (502) is rotatably arranged at the other end of the first connecting rod (501), and a sphere (503) matched with the driving guide rail (17) is rotatably arranged at one end, away from the hinging position, of the second connecting rod (502).
2. The light brick raw material mixing and stirring device according to claim 1, wherein: the stirring cavity (11) upper end be provided with mounting panel (15), feed arrangement (3) including run through feed opening (31) of mounting panel (15), with feed opening (31) mutually supporting blocking piece (32) and connect blocking piece (32) with connecting rod (33) of drive arrangement (2).
3. A light brick raw material mixing and stirring device according to claim 2, characterized in that: the width of the blanking opening (31) is gradually reduced from top to bottom, and the minimum position of the blanking opening (31) from the central axis of the stirring shaft (13) is larger than the maximum diameter of the stirring shaft (13).
4. A light brick raw material mixing and stirring device according to claim 2 or 3, characterized in that: the rolling device (4) comprises a matching block (41) fixedly arranged at the lower end of the blanking opening (31), a plurality of rolling grooves (42) arranged on the matching block (41) and a plurality of rolling blocks (43) matched with the rolling grooves (42); the rolling block (43) is connected with the lower end face of the blocking block (32) through an elastic piece (44).
5. The light brick raw material mixing and stirring device according to claim 4, wherein: the elastic piece (44) is arranged into an elastic bin (441), the lower end of the elastic bin (441) is connected with a plurality of air supply grooves (442), and the air supply grooves (442) are connected with a plurality of telescopic blocks (443); the expansion block (443) is arranged on one surface of the rolling block (43) which is matched with the rolling groove (42).
6. A light brick raw material mixing and stirring device according to claim 2 or 3, characterized in that: the rolling device (4) comprises a pressing plate (45) arranged on the lower end face of the blocking block (32) and a rolling net (46) matched with the pressing plate (45), and the rolling net (46) is fixedly arranged at the lowest end of the discharging opening (31).
7. A light brick raw material mixing and stirring device according to claim 2, characterized in that: the driving device (2) comprises a sliding groove (21) arranged on the mounting plate (15), a sliding plate (22) slidably arranged in the sliding groove (21), a cylindrical rod (23) fixedly arranged at the lower end of the sliding plate (22), an arc block (24) fixedly arranged at the lower end of the cylindrical rod (23), a driving block (25) fixedly arranged at the inner side of the stirring shaft (13) and a driving inclined plane (26) arranged at the upper end of the driving block (25); a spring (27) for driving the arc block (24) to always attach to the driving inclined plane (26) is arranged between the sliding plate (22) and the sliding groove (21); the sliding plate (22) is connected with all the connecting rods (33).
CN202111413659.6A 2021-11-25 2021-11-25 Light brick raw material mixing stirring equipment Active CN114392664B (en)

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Application Number Priority Date Filing Date Title
CN202111413659.6A CN114392664B (en) 2021-11-25 2021-11-25 Light brick raw material mixing stirring equipment

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Application Number Priority Date Filing Date Title
CN202111413659.6A CN114392664B (en) 2021-11-25 2021-11-25 Light brick raw material mixing stirring equipment

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CN114392664A CN114392664A (en) 2022-04-26
CN114392664B true CN114392664B (en) 2023-05-02

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Citations (6)

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Publication number Priority date Publication date Assignee Title
JP2001001334A (en) * 1999-06-23 2001-01-09 Nishimatsu Constr Co Ltd Drum mixer for kneading concrete
US6350052B1 (en) * 2000-06-02 2002-02-26 Stephen K. Storz Manual rolling concrete mixing device
CN206526708U (en) * 2016-12-19 2017-09-29 四川盛众节能科技有限公司 A kind of building material, which is crushed, dries agitating device
CN112535972A (en) * 2020-12-14 2021-03-23 河南省予卓信息科技有限公司 Efficient mixing equipment for building materials
CN113083195A (en) * 2021-04-09 2021-07-09 周禄 Intermittent feeding mechanism and plastic production processing device
CN113398822A (en) * 2021-05-20 2021-09-17 可可溢香(江苏)味业有限公司 Crab-flavor powder raw material mixing device

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WO2018119983A1 (en) * 2016-12-30 2018-07-05 深圳市玖创科技有限公司 Integrated apparatus for pulverizing, stirring and drying electrode materials of hydrogen storage cell
CN111282505A (en) * 2020-02-14 2020-06-16 冯秀则 Dye mixing device for spinning
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CN112426956B (en) * 2020-11-26 2022-07-15 淄博齐茂催化剂有限公司 Catalyst compounding rolling machine
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Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001001334A (en) * 1999-06-23 2001-01-09 Nishimatsu Constr Co Ltd Drum mixer for kneading concrete
US6350052B1 (en) * 2000-06-02 2002-02-26 Stephen K. Storz Manual rolling concrete mixing device
CN206526708U (en) * 2016-12-19 2017-09-29 四川盛众节能科技有限公司 A kind of building material, which is crushed, dries agitating device
CN112535972A (en) * 2020-12-14 2021-03-23 河南省予卓信息科技有限公司 Efficient mixing equipment for building materials
CN113083195A (en) * 2021-04-09 2021-07-09 周禄 Intermittent feeding mechanism and plastic production processing device
CN113398822A (en) * 2021-05-20 2021-09-17 可可溢香(江苏)味业有限公司 Crab-flavor powder raw material mixing device

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