CN108328953A - One kind is worked continuously powdered material homogenizing mixing arrangement - Google Patents

One kind is worked continuously powdered material homogenizing mixing arrangement Download PDF

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Publication number
CN108328953A
CN108328953A CN201810091204.9A CN201810091204A CN108328953A CN 108328953 A CN108328953 A CN 108328953A CN 201810091204 A CN201810091204 A CN 201810091204A CN 108328953 A CN108328953 A CN 108328953A
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CN
China
Prior art keywords
cone
shell
back taper
taper device
deflector
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Granted
Application number
CN201810091204.9A
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Chinese (zh)
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CN108328953B (en
Inventor
文有强
蔡文举
葛晓
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Middle Building Materials (hefei) Powder Technology Equipment Co Ltd
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Middle Building Materials (hefei) Powder Technology Equipment Co Ltd
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Priority to CN201810091204.9A priority Critical patent/CN108328953B/en
Publication of CN108328953A publication Critical patent/CN108328953A/en
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Publication of CN108328953B publication Critical patent/CN108328953B/en
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Classifications

    • CCHEMISTRY; METALLURGY
    • C04CEMENTS; CONCRETE; ARTIFICIAL STONE; CERAMICS; REFRACTORIES
    • C04BLIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
    • C04B7/00Hydraulic cements
    • C04B7/36Manufacture of hydraulic cements in general
    • C04B7/48Clinker treatment
    • C04B7/52Grinding ; After-treatment of ground cement
    • C04B7/522After-treatment of ground cement
    • 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
    • Y02P40/10Production of cement, e.g. improving or optimising the production methods; Cement grinding

Abstract

It works continuously powdered material homogenizing mixing arrangement the present invention relates to one kind.Including shell, the top of shell is equipped with feed inlet, the bottom of shell is disposed with multiple open type inflation skewed slots, and the outlet of open type inflation skewed slot is connected to the discharge port of housing bottom, the the first back taper device and the second back taper device of shell being internally provided with for shedding material, the center line that first back taper device is arranged in the center of shell and the first back taper device matches with the center line of feed inlet, and the second back taper device is arranged circumferentially three along the first back taper device.As shown from the above technical solution, material enters device from feed inlet, after the stir-frying of the high frequency of the second back taper device and each lifting blade of the dispersion of fixed first back taper device and rotation, falls on the open type inflation skewed slot of housing bottom, and eventually fall into discharge port;In the process, material, which passes through, the movements such as disperses, impacts, shedding, and the homogenizing mixing of final achievable material, improve material matches specific mass.

Description

One kind is worked continuously powdered material homogenizing mixing arrangement
Technical field
It works continuously powdered material homogenizing mixing arrangement the present invention relates to one kind, and in particular to after a kind of cement separate compiling The continuous homogenization of powder mixes.
Background technology
In cement production process, often produces one ton of cement and need two or more material of grinding, grinding pow consumption The 65%~70% of Zhan Quan factories power consumption.In cement pulverizing course, the proportioning of material because mixture activity is different, cement type not It is same and different.When clinker and mixing material grindability used differ greatly, using being mixed after material by a certain percentage dispensing When grinding process, the component of hardly possible mill is extremely difficult to best fineness, causes certain waste;And the component easily ground is easy to produce Grinding phenomenon was given birth to, mill hourly output is influenced, increases grinding pow consumption.Such as when using slag as mixing material, combined grinding Slag grain size afterwards can be thicker than chamotte powder grain size, when the specific surface area of cement reaches Con trolling index, the specific surface area of slag compared with Low, activity cannot give full play to, if it is desired that the activity of slag gives full play to, excessive grinding can cause the grinding of crossing of clinker to show again As making the performance of cement be deteriorated, yield reduces, and power consumption increases, and is unfavorable for economical production.Therefore, using separate compiling Production technology is the trend of the following cement grinding development.By using different specific surface area Con trolling index to clinker and mixing material Separate compiling is carried out, the rational cement each component of distribution of particles is obtained, is separately stored in different chamotte powder libraries and mixing material powder In library, then by the chamotte powder worn into and mixing material powder by the ratio requirement of different cultivars cement, after accurately being measured with weighing balance, lead to It crosses profession homogenizing mixing arrangement and is sufficiently stirred the cement for being configured to required kind.In the process, it quickly can fully be homogenized Different chamotte powders and mixing material powder are mixed, to being switched fast cement type, produce different purposes and high performance cement products extremely It closes important.
Invention content
It works continuously powdered material homogenizing mixing arrangement the purpose of the present invention is to provide one kind, which can give birth to cement Granular material during production after grinding cuts operating costs, increases economic efficiency according to the fully homogenizing mixing such as proportioning.
To achieve the above object, present invention employs following technical schemes:Including shell, the top of the shell be equipped with into The bottom of material mouth, the shell is disposed with multiple open type inflation skewed slots, and open type inflation skewed slot passes through pipeline and wind turbine phase Even, and the outlet of open type inflation skewed slot is connected to the discharge port of housing bottom, and the shell is internally provided with for shedding material The first back taper device and the second back taper device, the first back taper device is arranged in the center of shell and the first back taper The center line of device matches with the center line of feed inlet, and the second back taper device is along the circumferential uniform of the first back taper device Arrangement three;
The first back taper device is fixed structure, including the first circular cone for being sequentially arranged and being sequentially connected from up to down Body, the second cone, third cone and the 4th cone, first cone, the second cone, third cone and Upward, and the diameter of bottom surface successively decreases successively for the tip of four cones, the bottom surface and open type inflation skewed slot of the 4th cone it Between there are gaps;
The second back taper device is rotational structure, including the 5th circle being sequentially arranged in from up to down in live spindle Cone, the 6th cone and the 7th cone, the lower part of the live spindle through the bottom of shell and be arranged outside shell Electric rotating machine is connected, and upward, and the diameter of bottom surface is successively for the tip of the 5th cone, the 6th cone and the 7th cone Be incremented by, the 5th cone, the 6th cone and the periphery of the 7th cone bottom surface be respectively equipped with annular the first lifting blade, Second lifting blade and third lifting blade, first lifting blade are described between the first cone and the second cone For second lifting blade between the second cone and third cone, the third lifting blade is located at third cone and the 4th Between cone.
First lifting blade is obliquely installed upwards along the bottom surface of the 5th cone, is arranged on first lifting blade There is protrusion.
The deflector of annular is welded on the inner wall of the shell, the outer ring of the deflector is mutually welded with the inner wall of shell It connects, and deflector inwardly encloses from outer ring and formed downward skewed, the deflector includes arranged in the up-down direction first leading Flowing plate and the second deflector, the inner ring of first deflector are located at the lower section of the first lifting blade, and the inner ring of the first deflector Close to the 6th cone, the inner ring of second deflector is located at the lower section of the second lifting blade, and the inner ring of the second deflector connects Nearly 7th cone.
First cone is welded and fixed by the first support being arranged on the conical surface with case top, and described second Cone, third cone and the 4th cone are welded by second support and upper level cone respectively.
The mouth that gathers dust is provided on the side wall of the shell, the opening's edge housing sidewall of gathering dust is evenly arranged three.
Protection axle sleeve is arranged in the live spindle.
The angle of the open type inflation skewed slot and horizontal plane is 6 °~12 °.
As shown from the above technical solution, material of the invention enters device from feed inlet, is filled by fixed first back taper After the high frequency stir-frying of the second back taper device and each lifting blade of the dispersion and rotation set, the open type inflation for falling into housing bottom is oblique On slot, and eventually fall into discharge port;In the process, material, which passes through, the movements such as disperses, impacts, shedding, and material finally can be achieved Homogenizing mixing, improve material match specific mass.
Description of the drawings
Fig. 1 is the vertical view of the present invention;
Fig. 2 is the A-A sectional views of Fig. 1;
Fig. 3 is vertical view of the present invention from the top down of the first cone;
Fig. 4 is vertical view of the present invention from the top down of the second cone;
Fig. 5 is vertical view of the present invention from the top down of third cone;
Fig. 6 is vertical view of the present invention from the top down of the 4th cone;
Fig. 7 is the vertical view of inventive shell bottom.
Specific implementation mode
The present invention will be further described below in conjunction with the accompanying drawings:
As shown in Figure 1, Figure 2, one kind shown in Fig. 7 is worked continuously powdered material homogenizing mixing arrangement, including shell 1, shell 1 Top is equipped with feed inlet 2, and feed inlet 2 is welded on shell 1, and the bottom of shell 1 is disposed with multiple open type inflation skewed slots 3, open type Inflation skewed slot 3 is connected by pipeline with wind turbine, and the outlet of open type inflation skewed slot 3 is connected to the discharge port 4 of 1 bottom of shell, i.e., Wind turbine opposite opened inflates skewed slot 3 and carries out air-blowing, and material inflates skewed slot 3 by the open type after air-blowing can fall into discharge port 4;Shell The the first back taper device and the second back taper device of body 1 being internally provided with for shedding material, the first back taper device are arranged in shell 1 Center and the center line of the first back taper device match with the center line of feed inlet 2, to ensure that material can be from first It is fallen right over the back taper device vertex of a cone, when material is fallen right over the first back taper device vertex of a cone, material can be carried out Disperse for the first time, to improve homogenization efficiency, the second back taper device is arranged circumferentially three along the first back taper device;
First back taper device be fixed structure, including be sequentially arranged from up to down and be sequentially connected the first cone 51, Second cone 52, third cone 53 and the 4th cone 54, the first cone 51, the second cone 52, third cone 53 and the 4th cone 54 tip upward, and the diameter of bottom surface successively decreases successively, and bottom surface and the open type of the 4th cone 54 are inflated There are gaps between skewed slot 3;Specifically, the first cone 51 passes through the first support 55 being arranged on the conical surface and 1 top of shell It is welded and fixed, the second cone 52, third cone 53 and the 4th cone 54 are justified by second support 56 and upper level respectively Cone is welded, and second support 56 can be arranged on the conical surface, can also be arranged along the central axis of each cone as shown in Figure 2, I.e. second support 56 is equivalent to the center bearing bracket for connecting each cone;
As shown in Fig. 3~Fig. 6, the second back taper device is rotational structure, including is sequentially arranged in live spindle 6 from up to down On the 5th cone 61, the 6th cone 62 and the 7th cone 63, the lower part of live spindle 6 through the bottom of shell 1 simultaneously It is connected with the electric rotating machine 64 being arranged outside shell 1, protection axle sleeve, the 5th cone 61, the 6th circular cone is arranged in live spindle 6 Upward, and the diameter of bottom surface is incremented by successively for the tip of body 62 and the 7th cone 63, and each cone is straight in the first back taper device Diameter, which successively decreases to successively decrease with the diameter of each cone in the second back taper device, to be matched, and preferably reasonable distribution can fix back taper and rotation Turn back taper, to reduce the weight of equipment volume and equipment;5th cone 61, the 6th cone 62 and 63 bottom of the 7th cone The periphery in face is respectively equipped with the first lifting blade 65, the second lifting blade 66 and the third lifting blade 67 of annular, the first lifting blade 65 Between the first cone 51 and the second cone 52, the second lifting blade 66 be located at the second cone 52 and third cone 53 it Between, third lifting blade 67 is between third cone 53 and the 4th cone 54.Specifically, the height of the first lifting blade 65 Within the scope of the conical surface of the second cone 52, shed for rotating the material after homogenizing dispersion to the 5th cone 61, Into next cone;Similarly, the height of the second lifting blade 66 is located within the scope of the conical surface of third cone 53, and third is raised The height of flitch 67 is located within the scope of the conical surface of the 4th cone 54;Electric rotating machine 64 drives the 5th cone 61, the 6th circular cone Body 62, the 7th cone 63 and the first lifting blade 65, the second lifting blade 66,67 high speed rotation of third lifting blade.
Further, as shown in Fig. 2, the first lifting blade 65 is obliquely installed upwards along the bottom surface of the 5th cone 61, Exactly the first lifting blade 65 and the lower edge of 61 bottom surface of the 5th cone form certain inclination angle, and the inclination angle is from the 5th cone 61 Bottom edge outward inclined upward be arranged;Protrusion 68 is provided on first lifting blade 65, the protrusion 68 is in the attached of the application It omits and is not drawn into Fig. 3~attached drawing 6.The effect of protrusion 68 is to ensure that the powder on high-speed rotating first lifting blade 65 not The 5th cone 61 of itself rotation can only be impacted, additionally it is possible to spread material to the second cone 52 and the first deflector 71 On.Second lifting blade 66, the structure of third lifting blade 67 and effect are identical as the first lifting blade 65, and details are not described herein.First Lifting blade 65, the second lifting blade 66, the angle of inclination of third lifting blade 67 and raised 68 height above, can be according to different powders Unit weight and the 5th cone 61, the 6th cone 62, the 7th cone 63 rotary speed determine.
Further, be welded with the deflector of annular on the inner wall of shell 1, deflector is special-shaped deflector, shape with The shape of 1 inner wall of shell matches, and the outer ring of deflector is mutually welded with the inner wall of shell 1, and deflector is from the inside cast in outer ring At downward skewed;The inner wall of namely deflector and shell 1 forms certain inclination angle, which inwardly encloses to be formed from outer ring Downward inclined surface, deflector include 71 and second deflector 72 of the first deflector arranged in the up-down direction, the first deflector 71 Inner ring be located at the lower section of the first lifting blade 65, and the inner ring of the first deflector 71 is close to the 6th cone 62, the second deflector 72 inner ring is located at the lower section of the second lifting blade 66, and the inner ring of the second deflector 72 is close to the 7th cone 63.First water conservancy diversion The soldering angle of plate 71, the length of the second deflector 72 and the first deflector 71, the second deflector 72 and 1 inner wall of shell is answered comprehensive It closes and considers powder angle of repose and material drop point, i.e., not only can guarantee that material smoothly falls, and material can be made to fall on corresponding the The conical surface first half of six cones 62 and the 7th cone 63.
Further, it is provided with the mouth 8 that gathers dust on the side wall of shell 1, the mouth 8 that gathers dust is evenly arranged three along 1 side wall of shell.
Further, open type inflation skewed slot 3 and the angle of horizontal plane are 6 °~12 °.
The course of work and operation principle of the present invention is as follows:
One or more granular materials enter device from feed inlet, vertically fall on the vertex of a cone of the first cone, through the first circle The vertex of a cone that the 5th cone of rotation is dropped down onto after cone homogenizing dispersion, dispersion is homogenized by the rotation of the 5th cone, falls on the On one lifting blade, high-speed rotating first lifting blade sheds the powder for falling into thereon, the powder part shed along The cone line of 5th cone is fallen on the first lifting blade again upwards, and a part falls on the first deflector along the inner wall of shell On, into the 6th cone of rotation, some falls on the conical surface of the second cone the homogenizing mixing that fall, finally It falls on the 6th cone of rotation, subsequent material repeats mixed process above again, until mixing falls on open type and fills completely On gas skewed slot, under the strength effect of wind turbine, mixes complete powder and next process is entered by discharge port.
In conclusion the present invention can be filled the one or more granular materials for entering the device by fixed first back taper The the second back taper device and lifting blade set, rotated carries out high frequency stir-frying to it, reaches and is sufficiently mixed homogenizing, under Open type inflation skewed slot after portion's air-blowing continuously draws off the powder after being sufficiently mixed.It is homogenized, can be increased using back taper mode Add the area that material is mixed, significantly improves the homo-effect and homogenization efficiency of powder;Simultaneously because using three-dimensional homogenizing Hybrid mode completes homogenizing by the gravity in material dropping process, can reduce the power consumption in homogenization process.
Embodiment described above is only that the preferred embodiment of the present invention is described, not to the model of the present invention It encloses and is defined, under the premise of not departing from design spirit of the present invention, technical side of the those of ordinary skill in the art to the present invention The various modifications and improvement that case is made should all be fallen into the protection domain of claims of the present invention determination.

Claims (7)

  1. The powdered material homogenizing mixing arrangement 1. one kind is worked continuously, it is characterised in that:Including shell(1), the shell(1)Top Portion is equipped with feed inlet(2), the shell(1)Bottom be disposed with multiple open types inflation skewed slots(3), the open type inflates skewed slot (3)It is connected with wind turbine by pipeline, and open type inflates skewed slot(3)Outlet and shell(1)The discharge port of bottom(4)Connection, institute State shell(1)The the first back taper device and the second back taper device being internally provided with for shedding material, first back taper dress It installs in shell(1)Center and the first back taper device center line and feed inlet(2)Center line match, it is described The second back taper device be arranged circumferentially three along the first back taper device;
    The first back taper device is fixed structure, including the first cone for being sequentially arranged and being sequentially connected from up to down (51), the second cone(52), third cone(53)And the 4th cone(54), first cone(51), second circle Cone(52), third cone(53)And the 4th cone(54)Tip upward, and the diameter of bottom surface successively decreases successively, described Four cones(54)Bottom surface and open type inflate skewed slot(3)Between there are gaps;
    The second back taper device is rotational structure, including is sequentially arranged in live spindle from up to down(6)On the 5th circle Cone(61), the 6th cone(62)And the 7th cone(63), the live spindle(6)Lower part run through shell(1)Bottom Portion and and shell(1)The electric rotating machine of outer setting(64)It is connected, the 5th cone(61), the 6th cone(62)And the 7th Cone(63)Tip upward, and the diameter of bottom surface is incremented by successively, the 5th cone(61), the 6th cone(62)And 7th cone(63)The periphery of bottom surface is respectively equipped with the first lifting blade of annular(65), the second lifting blade(66)And third lifting Plate(67), first lifting blade(65)Positioned at the first cone(51)And second cone(52)Between, described second Lifting blade(66)Positioned at the second cone(52)And third cone(53)Between, the third lifting blade(67)Positioned at third Cone(53)And the 4th cone(54)Between.
  2. 2. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:Described first is raised Flitch(65)Along the 5th cone(61)Bottom surface be obliquely installed upwards, first lifting blade(65)On be provided with protrusion (68).
  3. 3. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:The shell(1) Inner wall on be welded with the deflector of annular, the outer ring of the deflector and shell(1)Inner wall mutually weld, and deflector is from outer Inwardly circle forms downwards skewed to circle, and the deflector includes the first deflector arranged in the up-down direction(71)And second lead Flowing plate(72), first deflector(71)Inner ring be located at the first lifting blade(65)Lower section, and the first deflector(71)'s Inner ring is close to the 6th cone(62), second deflector(72)Inner ring be located at the second lifting blade(66)Lower section, and Two deflectors(72)Inner ring close to the 7th cone(63).
  4. 4. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:First circle Cone(51)Pass through the first support being arranged on the conical surface(55)With shell(1)Top is welded and fixed, second cone (52), third cone(53)And the 4th cone(54)Pass through second support respectively(56)It is welded with upper level cone.
  5. 5. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:The shell(1) Side wall on be provided with the mouth that gathers dust(8), the mouth that gathers dust(8)Along shell(1)Side wall is evenly arranged three.
  6. 6. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:The rotation master Axis(6)On be arranged with protection axle sleeve.
  7. 7. powdered material homogenizing mixing arrangement according to claim 1 of working continuously, it is characterised in that:The open type inflation Skewed slot(3)Angle with horizontal plane is 6 °~12 °.
CN201810091204.9A 2018-01-30 2018-01-30 Continuous operation powdery material homogenizing and mixing device Active CN108328953B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810091204.9A CN108328953B (en) 2018-01-30 2018-01-30 Continuous operation powdery material homogenizing and mixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810091204.9A CN108328953B (en) 2018-01-30 2018-01-30 Continuous operation powdery material homogenizing and mixing device

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CN108328953A true CN108328953A (en) 2018-07-27
CN108328953B CN108328953B (en) 2022-12-09

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Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201610331U (en) * 2009-12-30 2010-10-20 王华业 Rotating cone homogenizer
CN102600745A (en) * 2012-03-30 2012-07-25 河北陶粒砂支撑剂有限公司 Continuous solid material homogenizer
CN203410869U (en) * 2013-08-15 2014-01-29 安徽嘉联生物科技有限公司 Material aggregation prevention bracket of powder unloading barrel
CN104028360A (en) * 2013-11-13 2014-09-10 广西鱼峰水泥股份有限公司 Flow stabilization weighing cabin of roller press
CN203971827U (en) * 2014-08-18 2014-12-03 孝义市鑫腾矿业有限公司 Mixed powder homogenizer
CN204487812U (en) * 2015-02-26 2015-07-22 华智节能(香港)有限公司 Can the mixing arrangement of homogenizing cement
CN105057123A (en) * 2015-07-27 2015-11-18 中建材(合肥)粉体科技装备有限公司 Tower skirt type dry powder material classifier
CN105536590A (en) * 2015-12-28 2016-05-04 江西稀有稀土金属钨业集团有限公司 Unpowered batch mixing device and technology
CN107551900A (en) * 2017-10-24 2018-01-09 宝鸡市永盛泰钛业有限公司 Titanium agitator
CN207958157U (en) * 2018-01-30 2018-10-12 中建材(合肥)粉体科技装备有限公司 One kind is worked continuously powdered material homogenizing mixing arrangement

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201610331U (en) * 2009-12-30 2010-10-20 王华业 Rotating cone homogenizer
CN102600745A (en) * 2012-03-30 2012-07-25 河北陶粒砂支撑剂有限公司 Continuous solid material homogenizer
CN203410869U (en) * 2013-08-15 2014-01-29 安徽嘉联生物科技有限公司 Material aggregation prevention bracket of powder unloading barrel
CN104028360A (en) * 2013-11-13 2014-09-10 广西鱼峰水泥股份有限公司 Flow stabilization weighing cabin of roller press
CN203971827U (en) * 2014-08-18 2014-12-03 孝义市鑫腾矿业有限公司 Mixed powder homogenizer
CN204487812U (en) * 2015-02-26 2015-07-22 华智节能(香港)有限公司 Can the mixing arrangement of homogenizing cement
CN105057123A (en) * 2015-07-27 2015-11-18 中建材(合肥)粉体科技装备有限公司 Tower skirt type dry powder material classifier
CN105536590A (en) * 2015-12-28 2016-05-04 江西稀有稀土金属钨业集团有限公司 Unpowered batch mixing device and technology
CN107551900A (en) * 2017-10-24 2018-01-09 宝鸡市永盛泰钛业有限公司 Titanium agitator
CN207958157U (en) * 2018-01-30 2018-10-12 中建材(合肥)粉体科技装备有限公司 One kind is worked continuously powdered material homogenizing mixing arrangement

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