CN205253016U - Nanometer raw material mixing device - Google Patents

Nanometer raw material mixing device Download PDF

Info

Publication number
CN205253016U
CN205253016U CN201520974696.8U CN201520974696U CN205253016U CN 205253016 U CN205253016 U CN 205253016U CN 201520974696 U CN201520974696 U CN 201520974696U CN 205253016 U CN205253016 U CN 205253016U
Authority
CN
China
Prior art keywords
blower fan
housing
ventilation duct
raw material
blow
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201520974696.8U
Other languages
Chinese (zh)
Inventor
冯峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuhan Donghu University
Original Assignee
Wuhan Donghu University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Wuhan Donghu University filed Critical Wuhan Donghu University
Priority to CN201520974696.8U priority Critical patent/CN205253016U/en
Application granted granted Critical
Publication of CN205253016U publication Critical patent/CN205253016U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Drying Of Solid Materials (AREA)

Abstract

The utility model belongs to the technical field of the nanometer, especially, relate to a nanometer raw material mixing device. The to -be -solved technical problem of the utility model is to provide a nanometer raw material mixing device of simple structure, stirring. In order to solve the technical problem, the utility model provides such nanometer raw material mixing device which comprises there be base, bracing piece, voltage -sharing shell, air intake, fan I, the board of drying, check valve, left sealing door, right sealing door, casing, feed inlet, feed valve, lift cylinder, filter gas outlet, filter core, servo motor, pivot and the stirring rake, the base upper end left and right sides all is equipped with the bracing piece, and the voltage -sharing shell passes through the bracing piece to be fixed on the base, and voltage -sharing bottom portion center is equipped with the air intake. The utility model provides a current nanometer raw material mixing device have the structure complicacy, stirring effect is poor, the utility model discloses the effect of simple structure, stirring has been reached to can promote stirring efficiency effectively.

Description

A kind of nano raw material agitating device
Technical field
The utility model belongs to field of nanometer technology, relates in particular to a kind of nano raw material agitating device.
Background technology
Nanometer raw material series, mainly contains the nano-metal-oxides such as Au, Ag, Pt, Cu powder, colloid, solution and SnO, Tio2, ITO, the ATO of 0.2nm-20nm.
Nanometer technology product line, mainly contains that fabric nano silver is antibacterial, the ten remainder life series of products such as the 30 multinomial fabric functional products such as anti-and nanoscale perfumed soap, facial mask, underwear, bedding; Air clearing product series, mainly contains except series of products such as benzene, ammonia, formaldehyde, organic volatiles.
Nano raw material stirs inhomogeneous, and then can affect the quality of nanometer product, affecting the market competitiveness that nanometer is produced, there is complex structure, the poor shortcoming of mixing effect in existing nano raw material agitating device, therefore needs a kind of simple in structure, nano raw material agitating device of stirring of research and development badly.
Utility model content
(1) technical problem that will solve
There is complex structure, the poor shortcoming of mixing effect in order to overcome existing nano raw material agitating device in the utility model, the technical problems to be solved in the utility model is to provide a kind of simple in structure, nano raw material agitating device of stirring.
Utility model content
(2) technical scheme
In order to solve the problems of the technologies described above, the utility model provides so a kind of nano raw material agitating device, includes base, support bar, all pressure shells, air inlet, blower fan I, blow-down panel, check valve, left hermatic door, right hermatic door, housing, charging aperture, inlet valve, lift cylinder, filter out gas port, filter core, servomotor, rotating shaft and paddle, the left and right sides, base upper end is equipped with support bar, and all pressure shell is fixed on base by support bar, and all pressure shell bottom centre is provided with air inlet, and air inlet is connected with blower fan I, blower fan I is fixed on base upper end, blower fan I is in support bar inner side, all pressure shell upper end is connected with blow-down panel, in blow-down panel, evenly have left skew wind mouth, in blow-down panel, evenly have right skew wind mouth, left skew wind mouth and right skew wind mouth upper end are equipped with check valve, blow-down panel left side is provided with left hermatic door, and blow-down panel right side is provided with right hermatic door, and housing left bottom is connected with left hermatic door upper end, bottom, housing right side is connected with right sealed upper end, case top right side is provided with charging aperture, and charging aperture lower end is provided with inlet valve, and case top center is provided with lift cylinder, case top left side is provided with and filters out gas port, filter out gas port bottom and be provided with filter core, lift cylinder is connected with servomotor, and servomotor lower end is connected with rotating shaft, rotating shaft bottom is connected with paddle, includes left socle, right support, blower fan II, blower fan III, left ventilation duct, right ventilation duct, right baffle-plate and right baffle plate, hull outside left end is provided with left socle, hull outside right-hand member is provided with right support, housing left side is provided with left ventilation duct, left ventilation duct is located at the upper end of left socle, housing right side is provided with right ventilation duct, right ventilation duct is located at the upper end of right support, left ventilation duct bottom is connected with blower fan II, right ventilation duct bottom is connected with blower fan III, and blower fan II is fixed on left socle, and blower fan III is fixed on right support, be connected to housing inner top left side right baffle-plate rotary type, left ventilation duct top faces right baffle-plate, is connected to housing inner top right side right baffle plate rotary type, and right ventilation duct top faces right baffle plate, base upper end left side is provided with controller, controller respectively with blower fan I, blower fan II, blower fan III, lift cylinder is connected with servomotor, evenly has aperture on paddle.
Operation principle: open inlet valve, nano raw material enters housing inner side by charging aperture, open servomotor, servomotor is by rotating shaft and drive paddle rotation, paddle will fall nano raw material and blend, open blower fan I simultaneously, blower fan I is sent wind into equal pressure shell by air inlet, all the pressure in pressure shell increases, wind is blown away to housing inner side uniformly by left skew wind mouth and right skew wind mouth, wind blows check valve open, wind enters in housing nano raw material is blown afloat, paddle better blends nano raw material, after charging finishes, close inlet valve, prevent that nano raw material is blown, open lift cylinder, lift cylinder stretches back and forth and drives the upper and lower uniform stirring of paddle up and down, the mixing effect of nano raw material is better, owing to constantly there being wind to blow in housing, housing internal pressure is strengthened, gas permeation in housing filters out gas port and discharges, on gas with nano raw material will be stopped by filter core, in the time that stirring completes, close blower fan I, all pressure shell internal cause pressure stops drying in housing not, check valve sealing, close lift cylinder and servomotor, open left hermatic door and right hermatic door, the nano raw material being stirred is discharged, whipping process finishes.
Because hull outside left end is provided with left socle, hull outside right-hand member is provided with right support, housing left side is provided with left ventilation duct, left ventilation duct is located at the upper end of left socle, housing right side is provided with right ventilation duct, right ventilation duct is located at the upper end of right support, left ventilation duct bottom is connected with blower fan II, right ventilation duct bottom is connected with blower fan III, blower fan II is fixed on left socle, blower fan III is fixed on right support, be connected to housing inner top left side right baffle-plate rotary type, left ventilation duct top faces right baffle-plate, be connected to housing inner top right side right baffle plate rotary type, right ventilation duct top faces right baffle plate, the wind that blower fan II is blown into evenly spread to surrounding by stopping of right baffle-plate, the wind that blower fan III is blown into evenly spread to surrounding by stopping of right baffle plate, better nano raw material is dispelled, make the more even of stirring.
Because left side, base upper end is provided with controller, controller is connected with servomotor with blower fan I, blower fan II, blower fan III, lift cylinder respectively, so controller can be controlled blower fan I, blower fan II, blower fan III, lift cylinder and servomotor all parts and move successively according to said process, realize the automation of operating process, can effectively reduce workman's labour intensity, increase work efficiency.
Because evenly have aperture on paddle, in whipping process, nano raw material can pass aperture, nano raw material further can be blended again.
(3) beneficial effect
The utility model has solved existing nano raw material agitating device and has existed complex structure, mixing effect poor, effect simple in structure, that stir that the utility model has reached, and can effectively promote stirring efficiency, reduce the cost of enterprise.
Brief description of the drawings
Fig. 1 is main TV structure schematic diagram of the present utility model.
Fig. 2 is main TV structure schematic diagram of the present utility model.
Fig. 3 is main TV structure schematic diagram of the present utility model.
Fig. 4 is main TV structure schematic diagram of the present utility model.
Being labeled as in accompanying drawing: 1-base, 2-support bar, the equal pressure shell of 3-, 4-air inlet, 5-blower fan I, 6-blow-down panel, the left skew wind mouth of 7-, the right skew wind mouth of 8-, 9-check valve, the left hermatic door of 10-, the right hermatic door of 11-, 12-housing, 13-charging aperture, 14-inlet valve, 15-lift cylinder, 16-filters out gas port, 17-filter core, 18-servomotor, 19-rotating shaft, 20-paddle, 21-left socle, 22-right support, 23-blower fan II, 24-blower fan III, the left ventilation duct of 25-, the right ventilation duct of 26-, 27-right baffle-plate, the right baffle plate of 287-, 29-controller, 30-aperture.
Detailed description of the invention
Below in conjunction with drawings and Examples, the utility model is further described.
Embodiment 1
A kind of nano raw material agitating device, as Figure 1-4, includes base 1, support bar 2, all pressure shells 3, air inlet 4, blower fan I 5, blow-down panel 6, check valve 9, left hermatic door 10, right hermatic door 11, housing 12, charging aperture 13, inlet valve 14, lift cylinder 15, filter out gas port 16, filter core 17, servomotor 18, rotating shaft 19 and paddle 20, base 1 left and right sides, upper end is equipped with support bar 2, and all pressure shell 3 is fixed on base 1 by support bar 2, and all pressure shell 3 bottom centre are provided with air inlet 4, and air inlet 4 is connected with blower fan I 5, blower fan I 5 is fixed on base 1 upper end, blower fan I 5 is in support bar 2 inner sides, all pressure shell 3 upper ends are connected with blow-down panel 6, in blow-down panel 6, evenly have left skew wind mouth 7, in blow-down panel 6, evenly have right skew wind mouth 8, left skew wind mouth 7 and right skew wind mouth 8 upper ends are equipped with check valve 9, blow-down panel 6 left sides are provided with left hermatic door 10, blow-down panel 6 right sides are provided with right hermatic door 11, housing 12 left bottom are connected with left hermatic door 10 upper ends, housing 12 bottoms, right side are connected with right sealed upper end, housing 12 top right side are provided with charging aperture 13, charging aperture 13 lower ends are provided with inlet valve 14, housing 12 top center are provided with lift cylinder 15, housing 12 top left side are provided with and filter out gas port 16, filter out gas port 16 bottoms and be provided with filter core 17, lift cylinder 15 is connected with servomotor 18, servomotor 18 lower ends are connected with rotating shaft 19, rotating shaft 19 bottoms are connected with paddle 20, include left socle 21, right support 22, blower fan II 23, blower fan III 24, left ventilation duct 25, right ventilation duct 26, right baffle-plate 27 and right baffle plate 287, housing 12 outside left ends are provided with left socle 21, housing 12 outside right-hand members are provided with right support 22, housing 12 left sides are provided with left ventilation duct 25, left ventilation duct 25 is located at the upper end of left socle 21, housing 12 right sides are provided with right ventilation duct 26, right ventilation duct 26 is located at the upper end of right support 22, left ventilation duct 25 bottoms are connected with blower fan II 23, right ventilation duct 26 bottoms are connected with blower fan III 24, and blower fan II 23 is fixed on left socle 21, and blower fan III 24 is fixed on right support 22, be connected to housing 12 inner top left sides right baffle-plate 27 rotary types, left ventilation duct 25 tops face right baffle-plate 27, are connected to housing 12 inner top right sides right baffle plate 287 rotary types, and right ventilation duct 26 tops face right baffle plate 287, base 1 upper end left side is provided with controller 29, controller 29 respectively with blower fan I 5, blower fan II 23, blower fan III 24, lift cylinder 15 is connected with servomotor 18, evenly has aperture 30 on paddle 20.
Operation principle: open inlet valve 14, nano raw material enters housing 12 inner sides by charging aperture 13, open servomotor 18, servomotor 18 is by rotating shaft 19 and drive paddle 20 to rotate, paddle 20 will fall nano raw material and blend, open blower fan I 5 simultaneously, blower fan I 5 is sent wind into equal pressure shell 3 by air inlet 4, all the pressure in pressure shell 3 increases, wind is blown away to housing 12 inner sides uniformly by left skew wind mouth 7 and right skew wind mouth 8, wind blows check valve 9 open, wind enters that housing 12 is interior blows afloat nano raw material, paddle 20 better blends nano raw material, after charging finishes, close inlet valve 14, prevent that nano raw material is blown, open lift cylinder 15, the lift cylinder 15 flexible paddle uniform stirring Shang Xia 20 that drives back and forth up and down, the mixing effect of nano raw material is better, owing to constantly there being wind to blow in housing 12, housing 12 internal pressures are strengthened, gas permeation in housing 12 filters out gas port 16 and discharges, on gas with nano raw material will be stopped by filter core 17, in the time that stirring completes, close blower fan I 5, all pressure shell 3 internal cause pressure stop not to the interior blowing of housing 12, check valve 9 seals, close lift cylinder 15 and servomotor 18, open left hermatic door 10 and right hermatic door 11, the nano raw material being stirred is discharged, whipping process finishes.
Because housing 12 outside left ends are provided with left socle 21, housing 12 outside right-hand members are provided with right support 22, housing 12 left sides are provided with left ventilation duct 25, left ventilation duct 25 is located at the upper end of left socle 21, housing 12 right sides are provided with right ventilation duct 26, right ventilation duct 26 is located at the upper end of right support 22, left ventilation duct 25 bottoms are connected with blower fan II 23, right ventilation duct 26 bottoms are connected with blower fan III 24, blower fan II 23 is fixed on left socle 21, blower fan III 24 is fixed on right support 22, be connected to housing 12 inner top left sides right baffle-plate 27 rotary types, left ventilation duct 25 tops face right baffle-plate 27, be connected to housing 12 inner top right sides right baffle plate 287 rotary types, right ventilation duct 26 tops face right baffle plate 287, the wind that blower fan II 23 is blown into evenly spread to surrounding by stopping of right baffle-plate 27, the wind that blower fan III 24 is blown into evenly spread to surrounding by stopping of right baffle plate 287, better nano raw material is dispelled, make the more even of stirring.
Because base 1 left side, upper end is provided with controller 29, controller 29 is connected with blower fan I 5, blower fan II 23, blower fan III 24, lift cylinder 15 and servomotor 18 respectively, so controller 29 can be controlled blower fan I 5, blower fan II 23, blower fan III 24, lift cylinder 15 and servomotor 18 all parts and move successively according to said process, realize the automation of operating process, can effectively reduce workman's labour intensity, increase work efficiency.
Because evenly have aperture 30 on paddle 20, in whipping process, nano raw material can pass aperture 30, nano raw material further can be blended again.
The above embodiment has only expressed preferred embodiment of the present utility model, and it describes comparatively concrete and detailed, but can not therefore be interpreted as the restriction to the utility model the scope of the claims. It should be pointed out that for the person of ordinary skill of the art, without departing from the inventive concept of the premise, can also make some distortion, improvement and substitute, these all belong to protection domain of the present utility model. Therefore, the protection domain of the utility model patent should be as the criterion with claims.

Claims (1)

1. a nano raw material agitating device, it is characterized in that, include base (1), support bar (2), all pressure shells (3), air inlet (4), blower fan I (5), blow-down panel (6), check valve (9), left hermatic door (10), right hermatic door (11), housing (12), charging aperture (13), inlet valve (14), lift cylinder (15), filter out gas port (16), filter core (17), servomotor (18), rotating shaft (19) and paddle (20), base (1) left and right sides, upper end is equipped with support bar (2), all pressure shell (3) is fixed on base (1) by support bar (2), all pressure shell (3) bottom centre is provided with air inlet (4), air inlet (4) is connected with blower fan I (5), blower fan I (5) is fixed on base (1) upper end, blower fan I (5) is in support bar (2) inner side, all pressure shell (3) upper end is connected with blow-down panel (6), in blow-down panel (6), evenly have left skew wind mouth (7), in blow-down panel (6), evenly have right skew wind mouth (8), left skew wind mouth (7) and right skew wind mouth (8) upper end are equipped with check valve (9), blow-down panel (6) left side is provided with left hermatic door (10), blow-down panel (6) right side is provided with right hermatic door (11), housing (12) left bottom is connected with left hermatic door (10) upper end, bottom, housing (12) right side is connected with right sealed upper end, housing (12) top right side is provided with charging aperture (13), charging aperture (13) lower end is provided with inlet valve (14), housing (12) top center is provided with lift cylinder (15), housing (12) top left side is provided with and filters out gas port (16), filter out gas port (16) bottom and be provided with filter core (17), lift cylinder (15) is connected with servomotor (18), servomotor (18) lower end is connected with rotating shaft (19), rotating shaft (19) bottom is connected with paddle (20), include left socle (21), right support (22), blower fan II (23), blower fan III (24), left ventilation duct (25), right ventilation duct (26), right baffle-plate (27) and right baffle plate (287), housing (12) outside left end is provided with left socle (21), housing (12) outside right-hand member is provided with right support (22), housing (12) left side is provided with left ventilation duct (25), left ventilation duct (25) is located at the upper end of left socle (21), housing (12) right side is provided with right ventilation duct (26), right ventilation duct (26) is located at the upper end of right support (22), left ventilation duct (25) bottom is connected with blower fan II (23), right ventilation duct (26) bottom is connected with blower fan III (24), blower fan II (23) is fixed on left socle (21), blower fan III (24) is fixed on right support (22), be connected to housing (12) inner top left side right baffle-plate (27) rotary type, left ventilation duct (25) top faces right baffle-plate (27), be connected to housing (12) inner top right side right baffle plate (287) rotary type, right ventilation duct (26) top faces right baffle plate (287), left side, base (1) upper end is provided with controller (29), controller (29) respectively with blower fan I (5), blower fan II (23), blower fan III (24), lift cylinder (15) is connected with servomotor (18), on paddle (20), evenly have aperture (30).
CN201520974696.8U 2015-12-01 2015-12-01 Nanometer raw material mixing device Expired - Fee Related CN205253016U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520974696.8U CN205253016U (en) 2015-12-01 2015-12-01 Nanometer raw material mixing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520974696.8U CN205253016U (en) 2015-12-01 2015-12-01 Nanometer raw material mixing device

Publications (1)

Publication Number Publication Date
CN205253016U true CN205253016U (en) 2016-05-25

Family

ID=55994569

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520974696.8U Expired - Fee Related CN205253016U (en) 2015-12-01 2015-12-01 Nanometer raw material mixing device

Country Status (1)

Country Link
CN (1) CN205253016U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106179077A (en) * 2016-07-19 2016-12-07 柳州首光科技有限公司 A kind of automatization soybean planting uniform mixing device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106179077A (en) * 2016-07-19 2016-12-07 柳州首光科技有限公司 A kind of automatization soybean planting uniform mixing device

Similar Documents

Publication Publication Date Title
CN205199384U (en) Nanometer raw material mixing device
CN205253016U (en) Nanometer raw material mixing device
CN209205494U (en) A kind of air flow crushing device of titanium white powder for preparing
CN204019372U (en) A kind of silicon material sander produces the retracting device of silica flour
CN205269479U (en) Nanometer raw material mixing device
CN207724639U (en) A kind of plastic cleaning and drying integrated device
CN211782472U (en) Drying device is used in plastic granules production
CN210346166U (en) Dehumidification drying equipment is used in plastic stopping production and processing
CN208167297U (en) A kind of overflow dyeing machine facilitating charging
CN209185706U (en) A kind of full-automatic chickens' extract particle sizing molding machine
CN108302918A (en) A kind of mixed feed Additive Production drying system with sterilizing function
CN211147169U (en) A stoving cooling device for compound fertilizer granule
CN205473736U (en) Gaseous stirring formula fermentation cylinder
CN211026578U (en) Energy-conserving high-efficient grit material reducing mechanism
CN205731437U (en) A kind of soluble powder reducing mechanism Han macrolide antibiotics
CN206103822U (en) Preparation carbon nanotube paste's device
CN209985543U (en) Waste gas zero release material crushing device
CN209512570U (en) A kind of cooling turnover device of dregs of beans
CN206683353U (en) Sulfur cream rapid drying device
CN205561458U (en) A drying device for catalyst production
CN212285108U (en) Flour processing raw materials cleaning device
CN211707401U (en) Cyclone screen for modified starch production
CN208475932U (en) A kind of drying unit for fertilizer-responsive kettle
CN213101005U (en) Lincomycin hydrochloride crystal washing and drying device
CN218901415U (en) Industrial waste gas catalytic reaction device

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160525

Termination date: 20161201