CN204525780U - A kind of energy-efficient mortar mixer - Google Patents

A kind of energy-efficient mortar mixer Download PDF

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Publication number
CN204525780U
CN204525780U CN201520221354.9U CN201520221354U CN204525780U CN 204525780 U CN204525780 U CN 204525780U CN 201520221354 U CN201520221354 U CN 201520221354U CN 204525780 U CN204525780 U CN 204525780U
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China
Prior art keywords
hinged joint
mixer
disk
mixer staving
staving
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Expired - Fee Related
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CN201520221354.9U
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Chinese (zh)
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吴华安
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Individual
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Individual
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Abstract

The utility model discloses a kind of energy-efficient mortar mixer, comprise mixer staving, transmission device, stirring main shaft in mixer staving is connected with stirring vane, mixer staving is vertical structure, motor is placed in the top of mixer staving, stirs main shaft and vertically penetrates in mixer staving, be designed with sand material baffle plate between charge door and transmission device, be designed with sand belt above charging aperture, water inlet pipe end is positioned at charging aperture; The below that stirring main shaft stirs vane is connected with stirring chain.The utility model stirs and crushing function combines, and pulping efficiency is high, and mixing drum volume is large, and slurrying capacity is large; In work process, stir vane carry out cutting emulsification to medium, increase gas and liquid contact time, increase reaction, absorb equal time, what promote mix and blend effect to carry out is more thorough, reduces power of agitator simultaneously.

Description

A kind of energy-efficient mortar mixer
Technical field
The utility model relates to Mixing Machine equipment technical field, specifically a kind of energy-efficient mortar mixer.
Background technology
Needed for mining industry grouting filling and grout used for water conservancy facilities seepage control project, slurry is generally medium or low concentration, and the existing mixer used is generally based on concrete mixer.Also have in addition and use stirring pool to carry out stirring, inflate bottom stirring pool, seethed the stirring realizing mortar by gas; The mortar that said method realizes stirs exists following shortcoming: charging, discharging are all intermittent, has had a strong impact on stirring and the discharging efficiency of mortar stirring; The pulverizing to raw material cannot be realized in mortar whipping process, have impact on the quality of discharging.In addition; in whipping process; the straight back side, leaf disc blade face of tradition after high-speed rotation a period of time through often there will be the phenomenon of air pocket; air pocket is attached to the resistance be subject to when straight leaf disc leaf back makes shaft rotate to be increased greatly; reduce the conveying capacity reduction that shaft connects pump; under high gas velocity, whole agitator is wrapped up by air pocket sometimes, and stirring efficiency is very low.
Utility model content
The purpose of this utility model is to provide a kind of energy-efficient mortar mixer, to solve the problem proposed in above-mentioned background technology.
For achieving the above object, the utility model provides following technical scheme:
A kind of energy-efficient mortar mixer, comprise mixer staving, transmission device, described transmission device is fixed on one end of mixer staving, described transmission device comprises motor and belt pulley, motor is driven by belt pulley and stirs main shaft, stirring main shaft penetrates in mixer staving, the circular hole screen cloth of level is designed with in mixer staving, circular hole screen cloth is fixed in mixer staving, the middle part of circular hole screen cloth has through hole, stir main shaft and enter the bottom of mixer staving through through hole, be connected with and revolve helical blade stirring main shaft one end through circular hole screen cloth, stirring main shaft in mixer staving is connected with stirring vane, mixer staving one end is designed with charging aperture, the other end of mixer staving is designed with discharging opening, mixer staving is vertical structure, and motor is placed in the top of mixer staving, stirs main shaft and vertically penetrates in mixer staving, charging aperture is also opened at mixer staving top, be designed with sand material baffle plate between charge door and transmission device, be designed with sand belt above charging aperture, water inlet pipe end is positioned at charging aperture, the below that stirring main shaft stirs vane is connected with stirring chain, and be connected with bottom water inlet pipe and sewage draining valve in the bottom of mixer staving, mixer staving bottom discharge mouth is connected with tuning hopper, tuning hopper has the blowing valve that flow is different, described stirring vane comprises wheel hub, disk and blade, disk is annular plate structure, the inner circle of annular plate structure is fixedly connected with wheel hub, blade is evenly distributed on disk circumferentially, blade comprises lower hinged joint, upper hinged joint, gear leaf and stiffener, upper hinged joint is positioned at disk top and in a certain angle with disk upper surface, lower hinged joint is positioned at disk bottom and in a certain angle with lower disk surface, lower hinged joint and upper hinged joint towards consistent, described gear leaf is connected with the side of upper hinged joint away from disc face, gear leaf is horizontally disposed, gear leaf place plane is parallel with face, disk place, it is vertical with disk top and bottom that upper hinged joint cut surface on upper hinged joint and upper hinged joint carry on the back liquid level, the increase of disc centre distance is arrived along with upper hinged joint cut surface and upper hinged joint carry on the back point on liquid level, this point also increases to the distance of disc face, upper hinged joint cut surface is identical with lower hinged joint cut surface physical dimension, it is identical that upper hinged joint back of the body liquid level and lower hinged joint carry on the back liquid level physical dimension, upper hinged joint length is greater than lower hinged joint, described face, stiffener place is vertical with disc face, and by disk and upper hinged joint, lower hinged joint is fixedly connected with.
As further program of the utility model: described mixer staving is placed on leg column holder, and leg column holder is fixed on ground, leg column holder is tub steel construction, inner fill concrete; Mixer staving is designed with the slurry position display tube of communicating pipe.
As the utility model further scheme: described blade is provided with 5 ~ 8 groups.
As the utility model further scheme: described upper hinged joint and disk upper surface are 15 ° ~ 60 ° angles, lower hinged joint and lower disk surface are 15 ° ~ 60 ° angles.
As the utility model further scheme: described gear blade back liquid level, upper hinged joint back of the body liquid level, the projection of lower hinged joint back of the body liquid level on disk are located along the same line.
Compared with prior art, the beneficial effects of the utility model are: the utility model stirs and crushing function combines, and pulping efficiency is high, and mixing drum volume is large, and slurrying capacity is large; In work process, stir vane carry out cutting emulsification to medium, increase gas and liquid contact time, increase reaction, absorb equal time, what promote mix and blend effect to carry out is more thorough, reduces power of agitator simultaneously.
Accompanying drawing explanation
Fig. 1 is the structural representation of energy-efficient mortar mixer.
Fig. 2 is the structural representation stirring vane in energy-efficient mortar mixer.
Fig. 3 is the structural representation at A place in Fig. 2.
Fig. 4 is the structural representation of lower hinged joint in Fig. 3.
Fig. 5 is the structural representation of upper hinged joint in Fig. 3.
Fig. 6 is the structural representation keeping off leaf in Fig. 3.
In figure: 1-blowing valve, 2-tuning hopper, 3-leg column holder, 4-circular hole screen cloth, 5-helical blade, 6-stirs chain, 7-stirs vane, 8-mixer staving, 9-starches position display tube, 10-stirs main shaft, 11-stirs cover, 12-motor, 13-sand material baffle plate, 14 sand belts, 15-water inlet pipe, 16-sewage draining valve, water inlet pipe bottom 17-, 18-wheel hub, 19-disk, hinged joint under 20-, hinged joint cut surface under 20A-, hinged joint back of the body liquid level under 20B-, the upper hinged joint of 21-, the upper hinged joint cut surface of 21A-, 21B-upper hinged joint back of the body liquid level, 22-keeps off leaf, 22A-keeps off leaf cut surface, 22B-keeps off blade back liquid level, 23-blade, 24-stiffener.
Detailed description of the invention
Below in conjunction with the accompanying drawing in the utility model embodiment, be clearly and completely described the technical scheme in the utility model embodiment, obviously, described embodiment is only the utility model part embodiment, instead of whole embodiments.Based on the embodiment in the utility model, those of ordinary skill in the art are not making the every other embodiment obtained under creative work prerequisite, all belong to the scope of the utility model protection.
Refer to Fig. 1-6, in the utility model embodiment, a kind of energy-efficient mortar mixer, comprise mixer staving 8, transmission device, mixer staving 8 is placed on leg column holder 3, and leg column holder 3 is fixed on ground, leg column holder 3 is tub steel construction, inner fill concrete, transmission device is fixed on one end of mixer staving 8, described transmission device comprises motor 12 and belt pulley, motor 12 is driven by belt pulley and stirs main shaft 10, stirring main shaft 10 penetrates in mixer staving, stirring main shaft 10 in mixer staving is connected with and stirs vane 7, mixer staving one end is designed with charging aperture, the other end of mixer staving is designed with discharging opening, mixer staving 8 is vertical structure, the top that motor 12 is placed in mixer staving 8 is stirred on cover 11, stirring main shaft 10 vertically penetrates in mixer staving 8, charging aperture is also opened at mixer staving top, sand material baffle plate 13 is designed with between charge door and transmission device, sand belt 14 is designed with above charging aperture, water inlet pipe 15 end is positioned at charging aperture, the below that stirring main shaft 10 stirs vane 7 is connected with stirs chain 6, in mixer staving 8, be designed with the circular hole screen cloth 4 of level, circular hole screen cloth 4 is fixed on the below of stirring chain 6 in mixer staving, have through hole at the middle part of mixer staving 8 inner circle screen mesh 4, stir main shaft 10 enters mixer staving bottom through through hole, be connected with in one end that stirring main shaft 10 passes circular hole screen cloth 4 and revolve helical blade 5, be connected with bottom water inlet pipe 17 and sewage draining valve 16 in the bottom of mixer staving 8, mixer staving bottom discharge mouth is connected with tuning hopper 2, tuning hopper 2 has the blowing valve 1 that flow is different, mixer staving 8 is designed with the slurry position display tube 9 of communicating pipe, described stirring vane 7 comprises wheel hub 18, disk 19 and blade 23, disk 19 is annular plate structure, the inner circle of annular plate structure is fixedly connected with wheel hub 18, blade 23 is evenly distributed on disk 19 circumferentially, described blade 23 is provided with 5 ~ 8 groups, blade 23 comprises lower hinged joint 20, upper hinged joint 21, gear leaf 22 and stiffener 24, upper hinged joint 21 is positioned at disk 19 top and in a certain angle with disk 19 upper surface, upper hinged joint 21 is 15 ° ~ 60 ° angles with disk 19 upper surface, lower hinged joint 20 is positioned at disk 19 bottom and in a certain angle with disk 19 lower surface, lower hinged joint 20 is 15 ° ~ 60 ° angles with disk 19 lower surface, lower hinged joint 20 and upper hinged joint 21 towards consistent, described gear leaf 22 is connected with the side of upper hinged joint 21 away from 19, disk, gear leaf 22 is horizontally disposed, gear leaf 22 place plane is parallel with face, disk 19 place, upper hinged joint cut surface 21A on upper hinged joint 21 and upper hinged joint back of the body liquid level 21B is vertical with disk 19 top and bottom, the increase of disk 19 centre distance is arrived along with upper hinged joint cut surface 21A and upper hinged joint carry on the back point on liquid level 21B, this point also increases to the distance of 19, disk, gear leaf cut surface 22A on gear leaf 22, keep off the lower hinged joint cut surface 20A on blade back liquid level 22B and lower hinged joint 20, lower hinged joint back of the body liquid level 20B also follows above rule, upper hinged joint cut surface 21A is identical with lower hinged joint cut surface 20A physical dimension, it is identical that upper hinged joint back of the body liquid level 21B and lower hinged joint carry on the back liquid level 20B physical dimension, upper hinged joint 21 length is greater than lower hinged joint 20, gear blade back liquid level 22B, upper hinged joint back of the body liquid level 21B, the projection of lower hinged joint back of the body liquid level 20B on disk 19 is located along the same line, described face, stiffener 24 place is vertical with disc face, and by disk 19 and upper hinged joint 21, lower hinged joint 20 is fixedly connected with, stirring vane 7 in the utility model, for Gas-Liquid Dispersion and medium emulsion process, cutting emulsification is carried out to medium, increase gas and liquid contact time, increase reaction, absorb equal time, promote that mix and blend effect is carried out more thorough, reduce power of agitator simultaneously, the utility model in use, vertical folding blade face and disk 19 have angle, reduce liquid resistance, reduce power of agitator, simultaneously relatively straight leaf turbine stirrer, air pocket obviously reduces, mixing efficiency improves, and upper hinged joint 21 is longer than lower hinged joint 20, and the floating medium after lower hinged joint 20 can being cut or bubble cut again, extend the bubble floating time simultaneously, increase reaction rate, along with cut surface and the increase of point on back of the body liquid level to disc centre distance, the distance putting disc face also increases, and this kind of setting is also to reduce the projected area of blade along axis, reduces fluid resistance.
To those skilled in the art, obvious the utility model is not limited to the details of above-mentioned one exemplary embodiment, and when not deviating from spirit of the present utility model or essential characteristic, can realize the utility model in other specific forms.Therefore, no matter from which point, all should embodiment be regarded as exemplary, and be nonrestrictive, scope of the present utility model is limited by claims instead of above-mentioned explanation, and all changes be therefore intended in the implication of the equivalency by dropping on claim and scope are included in the utility model.Any Reference numeral in claim should be considered as the claim involved by limiting.
In addition, be to be understood that, although this description is described according to embodiment, but not each embodiment only comprises an independently technical scheme, this narrating mode of description is only for clarity sake, those skilled in the art should by description integrally, and the technical scheme in each embodiment also through appropriately combined, can form other embodiments that it will be appreciated by those skilled in the art that.

Claims (5)

1. an energy-efficient mortar mixer, comprise mixer staving, transmission device, it is characterized in that, described transmission device is fixed on one end of mixer staving, described transmission device comprises motor and belt pulley, motor is driven by belt pulley and stirs main shaft, stirring main shaft penetrates in mixer staving, the circular hole screen cloth of level is designed with in mixer staving, circular hole screen cloth is fixed in mixer staving, the middle part of circular hole screen cloth has through hole, stir main shaft enters mixer staving bottom through through hole, to be connected with through one end of circular hole screen cloth and to revolve helical blade stirring main shaft, stirring main shaft in mixer staving is connected with stirring vane, mixer staving one end is designed with charging aperture, the other end of mixer staving is designed with discharging opening, mixer staving is vertical structure, and motor is placed in the top of mixer staving, stirs main shaft and vertically penetrates in mixer staving, charging aperture is also opened at mixer staving top, be designed with sand material baffle plate between charge door and transmission device, be designed with sand belt above charging aperture, water inlet pipe end is positioned at charging aperture, the below that stirring main shaft stirs vane is connected with stirring chain, and be connected with bottom water inlet pipe and sewage draining valve in the bottom of mixer staving, mixer staving bottom discharge mouth is connected with tuning hopper, tuning hopper has the blowing valve that flow is different, described stirring vane comprises wheel hub, disk and blade, disk is annular plate structure, the inner circle of annular plate structure is fixedly connected with wheel hub, blade is evenly distributed on disk circumferentially, blade comprises lower hinged joint, upper hinged joint, gear leaf and stiffener, upper hinged joint is positioned at disk top and in a certain angle with disk upper surface, lower hinged joint is positioned at disk bottom and in a certain angle with lower disk surface, lower hinged joint and upper hinged joint towards consistent, described gear leaf is connected with the side of upper hinged joint away from disc face, gear leaf is horizontally disposed, gear leaf place plane is parallel with face, disk place, it is vertical with disk top and bottom that upper hinged joint cut surface on upper hinged joint and upper hinged joint carry on the back liquid level, the increase of disc centre distance is arrived along with upper hinged joint cut surface and upper hinged joint carry on the back point on liquid level, this point also increases to the distance of disc face, upper hinged joint cut surface is identical with lower hinged joint cut surface physical dimension, it is identical that upper hinged joint back of the body liquid level and lower hinged joint carry on the back liquid level physical dimension, upper hinged joint length is greater than lower hinged joint, described face, stiffener place is vertical with disc face, and by disk and upper hinged joint, lower hinged joint is fixedly connected with.
2. the energy-efficient mortar mixer of one according to claim 1, is characterized in that, described mixer staving is placed on leg column holder, and leg column holder is fixed on ground, and leg column holder is tub steel construction, inner fill concrete; Mixer staving is designed with the slurry position display tube of communicating pipe.
3. the energy-efficient mortar mixer of one according to claim 1, is characterized in that, described blade is provided with 5 ~ 8 groups.
4. the energy-efficient mortar mixer of one according to claim 1, is characterized in that, described upper hinged joint and disk upper surface are 15 ° ~ 60 ° angles, and lower hinged joint and lower disk surface are 15 ° ~ 60 ° angles.
5. the energy-efficient mortar mixer of one according to claim 1, is characterized in that, described gear blade back liquid level, upper hinged joint back of the body liquid level, the projection of lower hinged joint back of the body liquid level on disk are located along the same line.
CN201520221354.9U 2015-04-14 2015-04-14 A kind of energy-efficient mortar mixer Expired - Fee Related CN204525780U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520221354.9U CN204525780U (en) 2015-04-14 2015-04-14 A kind of energy-efficient mortar mixer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520221354.9U CN204525780U (en) 2015-04-14 2015-04-14 A kind of energy-efficient mortar mixer

Publications (1)

Publication Number Publication Date
CN204525780U true CN204525780U (en) 2015-08-05

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105128146A (en) * 2015-08-13 2015-12-09 王永志 Building concrete mixing device convenient for loading
CN105856422A (en) * 2016-05-25 2016-08-17 山推建友机械股份有限公司 Slurry preparation machine based on CDM stirring boat
CN106166797A (en) * 2016-08-31 2016-11-30 太仓市锦澄混凝土有限公司 A kind of concrete central mix plant of band two-stage agitator

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105128146A (en) * 2015-08-13 2015-12-09 王永志 Building concrete mixing device convenient for loading
CN105856422A (en) * 2016-05-25 2016-08-17 山推建友机械股份有限公司 Slurry preparation machine based on CDM stirring boat
CN106166797A (en) * 2016-08-31 2016-11-30 太仓市锦澄混凝土有限公司 A kind of concrete central mix plant of band two-stage agitator

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

Granted publication date: 20150805

Termination date: 20160414

CF01 Termination of patent right due to non-payment of annual fee