CN106003401B - A kind of strong precast beam step pouring mechanism of non-grade and construction technology - Google Patents
A kind of strong precast beam step pouring mechanism of non-grade and construction technology Download PDFInfo
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- CN106003401B CN106003401B CN201610351786.0A CN201610351786A CN106003401B CN 106003401 B CN106003401 B CN 106003401B CN 201610351786 A CN201610351786 A CN 201610351786A CN 106003401 B CN106003401 B CN 106003401B
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B13/00—Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
- B28B13/02—Feeding the unshaped material to moulds or apparatus for producing shaped articles
- B28B13/0215—Feeding the moulding material in measured quantities from a container or silo
- B28B13/0225—Feeding specific quantities of material at specific locations in the mould
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B13/00—Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
- B28B13/02—Feeding the unshaped material to moulds or apparatus for producing shaped articles
- B28B13/0215—Feeding the moulding material in measured quantities from a container or silo
- B28B13/023—Feeding the moulding material in measured quantities from a container or silo by using a feed box transferring the moulding material from a hopper to the moulding cavities
- B28B13/0235—Feeding the moulding material in measured quantities from a container or silo by using a feed box transferring the moulding material from a hopper to the moulding cavities the feed box being provided with agitating means, e.g. stirring vanes to avoid premature setting of the moulding material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28C—PREPARING CLAY; PRODUCING MIXTURES CONTAINING CLAY OR CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28C5/00—Apparatus or methods for producing mixtures of cement with other substances, e.g. slurries, mortars, porous or fibrous compositions
- B28C5/08—Apparatus or methods for producing mixtures of cement with other substances, e.g. slurries, mortars, porous or fibrous compositions using driven mechanical means affecting the mixing
- B28C5/0875—Mixing in separate stages involving different containers for each stage
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28C—PREPARING CLAY; PRODUCING MIXTURES CONTAINING CLAY OR CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28C5/00—Apparatus or methods for producing mixtures of cement with other substances, e.g. slurries, mortars, porous or fibrous compositions
- B28C5/08—Apparatus or methods for producing mixtures of cement with other substances, e.g. slurries, mortars, porous or fibrous compositions using driven mechanical means affecting the mixing
- B28C5/10—Mixing in containers not actuated to effect the mixing
- B28C5/12—Mixing in containers not actuated to effect the mixing with stirrers sweeping through the materials, e.g. with incorporated feeding or discharging means or with oscillating stirrers
- B28C5/16—Mixing in containers not actuated to effect the mixing with stirrers sweeping through the materials, e.g. with incorporated feeding or discharging means or with oscillating stirrers the stirrers having motion about a vertical or steeply inclined axis
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- C—CHEMISTRY; METALLURGY
- C04—CEMENTS; CONCRETE; ARTIFICIAL STONE; CERAMICS; REFRACTORIES
- C04B—LIME, MAGNESIA; SLAG; CEMENTS; COMPOSITIONS THEREOF, e.g. MORTARS, CONCRETE OR LIKE BUILDING MATERIALS; ARTIFICIAL STONE; CERAMICS; REFRACTORIES; TREATMENT OF NATURAL STONE
- C04B28/00—Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements
- C04B28/02—Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements containing hydraulic cements other than calcium sulfates
- C04B28/04—Portland cements
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Mechanical Engineering (AREA)
- Ceramic Engineering (AREA)
- Structural Engineering (AREA)
- Manufacturing & Machinery (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Inorganic Chemistry (AREA)
- Materials Engineering (AREA)
- Organic Chemistry (AREA)
- Preparation Of Clay, And Manufacture Of Mixtures Containing Clay Or Cement (AREA)
Abstract
The invention discloses a kind of strong precast beam step pouring mechanism of non-grade and construction technology, it is usually uniform strength design to aim to solve the problem that existing precast beam, need whole precast beam being designed as the requirement that meets crest during design, this adds the deficiency of cost to a certain extent.The invention includes mixing drum, mixing drum lower end is connected with sub-material cylinder, at least two vertically arranged feeding channels are provided with sub-material cylinder, feeding channel lower end is respectively connected with feed pipe, feed pipe lower end is corresponding to be provided with assorting cylinder, assorting cylinder includes dispensing portion and mixing part, dispensing portion is arranged on the top of mixing part, dispensing subordinate end is retractable to be connected with stock supporting plate, dispensing portion side wall is provided with transparency window, transparency window is provided with the graduation mark of vertically direction increase and decrease, it is provided with mixing part and mixes component thoroughly, mixing part lower end is all connected with discharge nozzle, prefabricated beam mould is provided with below discharge nozzle, discharge nozzle openend is arranged at intervals along precast beam die length direction.
Description
Technical field
The present invention relates to a kind of precast beam pouring technology, more specifically, it relates to which a kind of advantageously reduce the non-of cost
Etc. strong precast beam step pouring mechanism and construction technology.
Background technology
Precast beam is commonly used in construction process, the load of each position of precast beam during the use of reality
It is different, such as cantilever beam.In the design phase in order to meet the requirement of precast beam crest position, it is necessary to by whole
Precast beam is designed as the requirement for meeting crest, that is to say, that and each position of precast beam is substantially uniform strength design,
This adds cost to a certain extent.
Chinese patent notification number CN202181506U, discloses a kind of precast beam structure, including base and is arranged on bottom
Precast beam on seat, cushion block is provided between precast beam corner and base corner.Due to being lined with cushion block in edge, therefore
Before tensioning, after the completion of concrete casting, cushion block is taken out, space will be now formed between corner, therefore when tensioning
Corner would not mutually collide, and so as to prevent edge from destroying, increase the quality of construction.But this beam slab of paying in advance is equal strength
Design, need during design whole precast beam being designed as the requirement that meets crest, this is added to a certain extent
Cost.
The content of the invention
It is usually uniform strength design instant invention overcomes existing precast beam, needs all to set whole precast beam during design
The requirement for meeting crest is counted into, this adds the deficiency of cost to a certain extent, there is provided a kind of non-strong precast beam of grade
Step pouring mechanism and construction technology, precast beam step pouring, every section of precast beam match material and pour that to outpour non-grade strong as needed
Precast beam, precast beam is met the loading demands of diverse location, it is not necessary to by whole precast beam according to crest requirement come
Design, on the premise of construction requirement is met, reduces cost.
In order to solve the above-mentioned technical problem, the present invention uses following technical scheme:A kind of strong precast beam step pouring of non-grade
Mechanism, including mixing drum, mixing drum is interior to be provided with mixing component, and mixing drum lower end is connected with sub-material cylinder, is provided with least in sub-material cylinder
Two vertically arranged feeding channels, feeding channel lower end are respectively connected with feed pipe, and feed pipe lower end is corresponding to be provided with classification
Cylinder, assorting cylinder include dispensing portion and mixing part, and dispensing portion is arranged on the top of mixing part, and retractable be connected with dispensing subordinate end is held
Flitch, dispensing portion side wall are provided with transparency window, and transparency window is provided with the graduation mark of vertically direction increase and decrease, is provided with and mixes in mixing part
Even component, mixing part lower end are all connected with discharge nozzle, are provided with prefabricated beam mould below discharge nozzle, and discharge nozzle openend is along precast beam
Die length direction is arranged at intervals.
When the non-strong precast beam of grade is poured into a mould, first cement, water, fine sand, rubble, flyash are mixed in mixing drum by a certain percentage
Conjunction stirs to form mixing material, and then mixing material is successively by the feeding channel in sub-material cylinder, feed pipe, is transported to point
Level cylinder dispensing portion, added by a certain percentage in the dispensing portion of different assorting cylinders concrete conglutination agent, concrete intensive or
High-mark cement, so that the mixing material that the mixing part of different assorting cylinders is sent out meets different intensity requirements, difference classification
The mixing material that cylinder is sent out is sent to the different position of prefabricated beam mould and outpours the strong precast beam of non-grade so as to pour.Precast beam segmentation is poured
Note, every section of precast beam matches material and poured as needed outpours the strong precast beam of non-grade, precast beam is met the load of diverse location
It is required that, it is not necessary to whole precast beam is designed according to crest requirement, on the premise of construction requirement is met, reduced into
This.
Preferably, stock supporting plate is provided with two pieces, two pieces of stock supporting plates are respectively hinged at the both sides in dispensing portion, and two stock supporting plates are adjacent
Edge docking is set, the movable support bar being plugged with for supporting stock supporting plate on dispensing portion outer wall.Two stock supporting plates are hinged on dispensing
Portion, folding with convenience.Stock supporting plate is horizontal, and the lower end in closure dispensing portion, support bar is plugged between dispensing portion two side
Good supporting role is served to stock supporting plate;Support bar pulls out, stock supporting plate under gravity, in vertical position,
The lower end in dispensing portion is opened, mixing part is fallen under mixing material.
Preferably, being equipped with reinforcing prop on dispensing portion outer wall with support bar both ends link position, support bar both ends are inserted
It is connected in reinforcing prop.Reinforcing prop adds the bonding strength at support bar both ends and dispensing portion, ensures the gentle support of support bar.
Preferably, refining vibrating head is installed close to bearing material Board position in dispensing portion.Refining vibrating head is in dispensing portion
Mixing material vibrated, be easy to the volume of mixing material in Accurate Determining dispensing portion.
Preferably, be provided with barrel among sub-material cylinder, sub-material cylinder and cross between barrel and be laid with four dividing plates, four
Dividing plate includes two lateral partitions being oppositely arranged and two longitudinal baffles being oppositely arranged, and crosses barrel upper end open end and is arranged on
The lower section at sub-material cylinder upper end open end, longitudinal baffle upper end were less than barrel upper end open end, and lateral partitions upper end is less than longitudinal direction
Dividing plate upper end, crosses barrel and sub-material cylinder is separated into five feeding channels by dividing plate.The sub-material cylinder of this structure setting is easy to mix
The sub-material of material and conveying.
Preferably, mixing component includes agitator arm, agitating shaft, motor, agitating shaft lower end and motor are defeated
V belt translation is connected between shaft, and agitator arm fastening is socketed on agitating shaft, is provided between agitating shaft upper end and mixing drum steady
Gu frame, agitating shaft upper end is rotatably connected on stabilizing bracket.Motor work drives agitator arm to rotate and material is stirred
Mix, simple in construction, mixing effect is good.Stabilizing bracket adds the stationarity of agitating shaft work.
Preferably, mixing component thoroughly includes mixing impeller thoroughly, mixing axle, motor thoroughly, mix axle lower end thoroughly and motor is defeated
V belt translation connects between shaft, mixes impeller fastening thoroughly and is socketed in and mixes thoroughly on axle, mixes thoroughly and peace is connected between axle upper end and mixing part
Shelve, mix axle upper end thoroughly and be rotatably connected on mounting bracket.Motor work drive mixes wheel rotation thoroughly and mixing material is entered
One step stirs, and mounting bracket is easy to mix thoroughly the installation positioning of axle upper end.
A kind of construction technology of the strong precast beam step pouring mechanism of non-grade, the first step:By mass fraction, it is thin to take 1-5mm
Sand 500-800 parts, 20-50mm rubble 800-1200 parts, water 80-120 parts, marked as 42.5 or 42.5R cement 200-500
Part, flyash 100-150 parts, the material taken is mixed evenly in mixing drum;Second step:By the material after mixing
Material is sent in the dispensing portion of five assorting cylinders respectively, and the volume of mixing material is read by graduation mark, is added in first assorting cylinder
Enter concrete conglutination agent, the volume ratio of mixing material and concrete conglutination agent is 100:1-2;Coagulation is added in second assorting cylinder
Native adhesive, concrete intensive, mixing material, concrete conglutination agent, the volume ratio of concrete intensive are 100:1-2:1-
2;Concrete conglutination agent, concrete intensive are added in 3rd assorting cylinder, mixing material, concrete conglutination agent, concrete add
The volume ratio of strong agent is 100:2-3:2-3;Added in 4th assorting cylinder concrete conglutination agent, concrete intensive, marked as
62.5 or 62.5R high-mark cement, mixing material, concrete conglutination agent, concrete intensive, high-mark cement volume ratio are
100:2-3:2-3:5-10;Concrete conglutination agent, concrete intensive are added in 5th assorting cylinder, marked as 62.5 or
62.5R high-mark cement, mixing material, concrete conglutination agent, concrete intensive, high-mark cement volume ratio are 100:3-
4:3-4:10-15;3rd step, the stock supporting plate in five assorting cylinders is opened, material falls on mixing part from dispensing subordinate, in mixing part
It is interior that material is stirred;4th step, the material in the be arranged in order first to the 5th assorting cylinder is sent to from discharge nozzle prefabricated
Poured into a mould in beam mould.
The prefabricated beam strength that this form of construction work processes passes through points five sections to be increased successively, and it is strong to form non-grade
Precast beam, especially suitable for cantilever beam.Precast beam is met the loading demands of diverse location, it is not necessary to by whole precast beam according to
Crest requires, to design, on the premise of construction requirement is met, to reduce cost.
Compared with prior art, the beneficial effects of the invention are as follows:Precast beam step pouring, every section of precast beam are matched somebody with somebody as needed
Poured than material and outpour the strong precast beam of non-grade, precast beam is met the loading demands of diverse location, it is not necessary to by whole precast beam
Designed according to crest requirement, on the premise of construction requirement is met, reduce cost.
Brief description of the drawings
Fig. 1 is a kind of structural representation of the present invention;
Fig. 2 is the top view of the sub-material cylinder of the present invention;
Fig. 3 is the structural representation of the assorting cylinder of the present invention;
Fig. 4 is the top view of the assorting cylinder of the present invention;
In figure:1st, mixing drum, 2, mixing component, 3, sub-material cylinder, 4, feeding channel, 5, feed pipe, 6, assorting cylinder, 7, dispensing
Portion, 8, mixing part, 9, stock supporting plate, 10, transparency window, 11, graduation mark, 12, mix component thoroughly, 13, discharge nozzle, 14, prefabricated beam mould,
15th, support bar, 16, reinforcing prop, 17, refining vibrating head, 18, cross barrel, 19, lateral partitions, 20, longitudinal baffle, 21, paddle
Wheel, 22, agitating shaft, 23, stabilizing bracket, 24, mix impeller thoroughly, 25, mix axle thoroughly, 26, mounting bracket.
Embodiment
Below by specific embodiment, and with reference to accompanying drawing, technical scheme is further described specifically:
Embodiment:A kind of strong precast beam step pouring mechanism of non-grade(Referring to accompanying drawing 1 to 4), including mixing drum 1, mixing drum
Interior to be provided with mixing component 2, mixing component includes agitator arm 21, agitating shaft 22, motor, agitating shaft lower end and motor
V belt translation is connected between output shaft, and agitator arm fastening is socketed on agitating shaft, is provided between agitating shaft upper end and mixing drum
Stabilizing bracket 23, agitating shaft upper end are rotatably connected on stabilizing bracket.Mixing drum lower end is connected with sub-material cylinder 3, is provided with sub-material cylinder
At least two vertically arranged feeding channels 4.Be provided with barrel 18 in the present embodiment among sub-material cylinder, sub-material cylinder and cross barrel it
Between be laid with four dividing plates, four dividing plates include two lateral partitions 19 being oppositely arranged and two longitudinal directions being oppositely arranged every
Plate 20, the lower section that barrel upper end open end is arranged on sub-material cylinder upper end open end is crossed, longitudinal baffle upper end was less than the top of the barrel
Openend, lateral partitions upper end are less than longitudinal baffle upper end, cross barrel and sub-material cylinder is separated into five feeding channels by dividing plate.Point
Funnelform discharge bucket is provided between the top of the barrel and mixing drum lower end.Feeding channel lower end is respectively connected with feed pipe 5, feed pipe
Lower end is corresponding to be provided with assorting cylinder 6, and assorting cylinder includes dispensing portion 7 and mixing part 8, and dispensing portion is square structure, and mixing part is in
Columnar structured, the diameter of mixing part is more than the length of side in dispensing portion, and dispensing portion is arranged on the top of mixing part, and dispensing subordinate end can
Folding is connected with stock supporting plate 9, and stock supporting plate is provided with two pieces and rectangular, and two pieces of stock supporting plates are respectively hinged at the both sides in dispensing portion,
The docking of two stock supporting plate neighboring edges is set, the movable support bar 15 being plugged with for supporting stock supporting plate on dispensing portion outer wall.Dispensing
On portion's outer wall and support bar both ends link position is equipped with reinforcing prop 16, and support bar both ends are plugged in reinforcing prop.Support bar
Two are provided with, support bar one end is provided with spacing head, and a support bar inserts side wall to the right, another support from dispensing portion left side wall
Bar inserts side wall to the left from dispensing portion right side wall.Refining vibrating head 17 is installed close to bearing material Board position in dispensing portion.Dispensing portion side
Wall is provided with transparency window 10, and transparency window is provided with the graduation mark 11 of vertically direction increase and decrease, is provided with mixing part and mixes component 12 thoroughly,
Mixing component thoroughly includes mixing impeller 24 thoroughly, mixing axle 25, motor thoroughly, mixes V belt translation between axle lower end and driving motor output shaft thoroughly
Connection, mix impeller fastening thoroughly and be socketed in and mix thoroughly on axle, mix thoroughly and mounting bracket 26 is connected between axle upper end and mixing part, mix thoroughly on axle
End is rotatably connected on mounting bracket.Mixing part lower end is all connected with discharge nozzle 13, is provided with prefabricated beam mould 14 below discharge nozzle, goes out
Expects pipe openend is arranged at intervals along precast beam die length direction.
When the non-strong precast beam of grade is poured into a mould, first cement, water, fine sand, rubble, flyash are mixed in mixing drum by a certain percentage
Conjunction stirs to form mixing material, and then mixing material is successively by the feeding channel in sub-material cylinder, feed pipe, is transported to point
Level cylinder dispensing portion, added by a certain percentage in the dispensing portion of different assorting cylinders concrete conglutination agent, concrete intensive or
High-mark cement, so that the mixing material that the mixing part of different assorting cylinders is sent out meets different intensity requirements, difference classification
The mixing material that cylinder is sent out is sent to the different position of prefabricated beam mould and outpours the strong precast beam of non-grade so as to pour.Precast beam segmentation is poured
Note, every section of precast beam matches material and poured as needed outpours the strong precast beam of non-grade, precast beam is met the load of diverse location
It is required that, it is not necessary to whole precast beam is designed according to crest requirement, on the premise of construction requirement is met, reduced into
This.
A kind of construction technology of the strong precast beam step pouring mechanism of non-grade, the first step:By mass fraction, it is thin to take 1-5mm
Sand 500-800 parts, 20-50mm rubble 800-1200 parts, water 80-120 parts, marked as 42.5 or 42.5R cement 200-500
Part, flyash 100-150 parts, 600 parts of the present embodiment medium-fine sand, 1000 parts of rubble, 100 parts of water, 350 parts of cement, flyash 120
Part, the material taken is mixed evenly in mixing drum;Second step:Material after mixing is sent to five points respectively
In the dispensing portion of level cylinder, the volume of mixing material is read by graduation mark, concrete conglutination agent is added in first assorting cylinder, mixes
Condensation material and the volume ratio of concrete conglutination agent are 100:1-2,100 in the present embodiment:1.5;Added in second assorting cylinder mixed
Native adhesive, concrete intensive are coagulated, mixing material, concrete conglutination agent, the volume ratio of concrete intensive are 100:1-2:
1-2,100 in the present embodiment:1.5:1.5;Concrete conglutination agent, concrete intensive, mixing material are added in 3rd assorting cylinder
Material, concrete conglutination agent, the volume ratio of concrete intensive are 100:2-3:2-3,100 in the present embodiment:2.5:2.5;4th
Add in individual assorting cylinder concrete conglutination agent, concrete intensive, marked as 62.5 or 62.5R high-mark cement, mixing material
Material, concrete conglutination agent, concrete intensive, high-mark cement volume ratio are 100:2-3:2-3:5-10, in the present embodiment
100:2.5:2.5:8;Concrete conglutination agent, concrete intensive are added in 5th assorting cylinder, marked as 62.5 or 62.5R
High-mark cement, mixing material, concrete conglutination agent, concrete intensive, high-mark cement volume ratio are 100:3-4:3-4:
10-15,100 in the present embodiment:3.5:3.5:13;3rd step, opens the stock supporting plate in five assorting cylinders, and material is from dispensing subordinate
Mixing part is fallen on, material is stirred in mixing part;4th step, by the material in the be arranged in order first to the 5th assorting cylinder
Material is sent in prefabricated beam mould from discharge nozzle to be poured into a mould.
The prefabricated beam strength that this form of construction work processes passes through points five sections to be increased successively, and it is strong to form non-grade
Precast beam, especially suitable for cantilever beam.Precast beam is met the loading demands of diverse location, it is not necessary to by whole precast beam according to
Crest requires, to design, on the premise of construction requirement is met, to reduce cost.
Embodiment described above is a kind of preferable scheme of the present invention, not the present invention is made any formal
Limitation, there are other variants and remodeling on the premise of without departing from the technical scheme described in claim.
Claims (8)
1. a kind of strong precast beam step pouring mechanism of non-grade, it is characterized in that, including mixing drum, mixing drum is interior to be provided with mixing component,
Mixing drum lower end is connected with sub-material cylinder, is provided with least two vertically arranged feeding channels in sub-material cylinder, feeding channel lower end is equal
Feed pipe is connected with, feed pipe lower end is corresponding to be provided with assorting cylinder, and assorting cylinder includes dispensing portion and mixing part, and dispensing portion is set
In the top of mixing part, dispensing subordinate end is retractable to be connected with stock supporting plate, and dispensing portion side wall is provided with transparency window, set on transparency window
There is a graduation mark of vertically direction increase and decrease, provided with mixing component thoroughly in mixing part, mixing part lower end is all connected with discharge nozzle, under discharge nozzle
Side is provided with prefabricated beam mould, and discharge nozzle openend is arranged at intervals along precast beam die length direction.
2. a kind of non-strong precast beam step pouring mechanism of grade according to claim 1, it is characterized in that, stock supporting plate is provided with two
Block, two pieces of stock supporting plates are respectively hinged at the both sides in dispensing portion, and the docking of two stock supporting plate neighboring edges is set, activity on dispensing portion outer wall
It is plugged with the support bar for supporting stock supporting plate.
3. a kind of non-strong precast beam step pouring mechanism of grade according to claim 2, it is characterized in that, on dispensing portion outer wall and
Support bar both ends link position is equipped with reinforcing prop, and support bar both ends are plugged in reinforcing prop.
4. a kind of non-strong precast beam step pouring mechanism of grade according to claim 1, it is characterized in that, it is close in dispensing portion to hold
Flitch position is provided with refining vibrating head.
5. a kind of non-strong precast beam step pouring mechanism of grade according to Claims 1-4 any one, it is characterized in that, point
Barrel was provided among barrel, four dividing plates are laid between sub-material cylinder and excessively barrel, four dividing plates include two and set relatively
The lateral partitions put and two longitudinal baffles being oppositely arranged, cross barrel upper end open end and be arranged on sub-material cylinder upper end open end
Lower section, longitudinal baffle upper end were less than barrel upper end open end, and lateral partitions upper end is less than longitudinal baffle upper end, cross barrel and every
Sub-material cylinder is separated into five feeding channels by plate.
6. a kind of non-strong precast beam step pouring mechanism of grade according to Claims 1-4 any one, it is characterized in that, stir
Mixing component includes agitator arm, agitating shaft, motor, and V belt translation connects between agitating shaft lower end and driving motor output shaft,
Agitator arm fastening is socketed on agitating shaft, stabilizing bracket is provided between agitating shaft upper end and mixing drum, agitating shaft upper end can turn
It is dynamic to be connected on stabilizing bracket.
7. a kind of non-strong precast beam step pouring mechanism of grade according to Claims 1-4 any one, it is characterized in that, mix
Even component includes mixing impeller thoroughly, mixing axle, motor thoroughly, mixes V belt translation between axle lower end and driving motor output shaft thoroughly and connects,
Mix impeller fastening thoroughly to be socketed in and mix thoroughly on axle, mix thoroughly and be connected with mounting bracket between axle upper end and mixing part, mixing axle upper end thoroughly can turn
It is dynamic to be connected on mounting bracket.
8. a kind of construction technology of the strong precast beam step pouring mechanism of non-grade described in claim 1 to 7 any one, its feature
It is the first step:By mass fraction, 1-5mm fine sand 500-800 parts are taken, 20-50mm rubble 800-1200 parts, water 80-120 parts,
Marked as 42.5 or 42.5R cement 200-500 parts, flyash 100-150 part, the material taken is mixed in mixing drum and stirred
Mix uniformly;Second step:Material after mixing is sent to respectively in the dispensing portion of five assorting cylinders, read by graduation mark mixed
The volume of condensation material, first assorting cylinder is interior to add concrete conglutination agent, and mixing material and the volume ratio of concrete conglutination agent are
100:1-2;Concrete conglutination agent, concrete intensive are added in second assorting cylinder, mixing material, concrete conglutination agent, is mixed
The volume ratio for coagulating native intensive is 100:1-2:1-2;Concrete conglutination agent, concrete intensive are added in 3rd assorting cylinder,
Mixing material, concrete conglutination agent, the volume ratio of concrete intensive are 100:2-3:2-3;Added in 4th assorting cylinder mixed
Coagulate native adhesive, concrete intensive, marked as 62.5 or 62.5R high-mark cement, mixing material, concrete conglutination agent,
Concrete intensive, high-mark cement volume ratio are 100:2-3:2-3:5-10;Concrete conglutination is added in 5th assorting cylinder
Agent, concrete intensive, marked as 62.5 or 62.5R high-mark cement, mixing material, concrete conglutination agent, concrete add
Strong agent, high-mark cement volume ratio are 100:3-4:3-4:10-15;3rd step, open the stock supporting plate in five assorting cylinders, material
From dispensing, subordinate falls on mixing part, and material is stirred in mixing part;4th step, by be arranged in order first to the 5th point
Material in level cylinder is sent in prefabricated beam mould from discharge nozzle to be poured into a mould.
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CN201808140U (en) * | 2010-09-15 | 2011-04-27 | 安徽金联地矿科技有限公司 | High-concentration mortar agitating tank |
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CN205088545U (en) * | 2015-10-23 | 2016-03-16 | 福建南方路面机械有限公司 | Fine aggregate is asphalt mixing plant of system of sieving again |
CN105538506A (en) * | 2016-01-12 | 2016-05-04 | 长安大学 | Staged continuous type stirring device and stirring method |
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