CN108127766A - Multi-functional pour of improvement smashes floating vibrational system - Google Patents
Multi-functional pour of improvement smashes floating vibrational system Download PDFInfo
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- CN108127766A CN108127766A CN201711476155.2A CN201711476155A CN108127766A CN 108127766 A CN108127766 A CN 108127766A CN 201711476155 A CN201711476155 A CN 201711476155A CN 108127766 A CN108127766 A CN 108127766A
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- 238000007667 floating Methods 0.000 title claims abstract description 20
- 230000007246 mechanism Effects 0.000 claims abstract description 37
- 239000000463 material Substances 0.000 claims description 70
- 230000005540 biological transmission Effects 0.000 claims description 32
- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 claims description 11
- 241001416181 Axis axis Species 0.000 claims 1
- 238000007599 discharging Methods 0.000 claims 1
- 238000000034 method Methods 0.000 abstract description 2
- 238000010276 construction Methods 0.000 description 5
- 238000010586 diagram Methods 0.000 description 5
- 238000007493 shaping process Methods 0.000 description 5
- 230000000903 blocking effect Effects 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 239000007787 solid Substances 0.000 description 3
- 235000011962 puddings Nutrition 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000005096 rolling process Methods 0.000 description 1
Classifications
-
- 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
- B28B1/00—Producing shaped prefabricated articles from the material
- B28B1/29—Producing shaped prefabricated articles from the material by profiling or strickling the material in open moulds or on moulding surfaces
-
- 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
- B28B1/00—Producing shaped prefabricated articles from the material
- B28B1/04—Producing shaped prefabricated articles from the material by tamping or ramming
- B28B1/045—Producing shaped prefabricated articles from the material by tamping or ramming combined with vibrating or jolting
-
- 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
- B28B1/00—Producing shaped prefabricated articles from the material
- B28B1/08—Producing shaped prefabricated articles from the material by vibrating or jolting
- B28B1/087—Producing shaped prefabricated articles from the material by vibrating or jolting by means acting on the mould ; Fixation thereof to the mould
-
- 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
- B28B1/00—Producing shaped prefabricated articles from the material
- B28B1/14—Producing shaped prefabricated articles from the material by simple casting, the material being neither forcibly fed nor positively compacted
Landscapes
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Chemical & Material Sciences (AREA)
- Ceramic Engineering (AREA)
- Mechanical Engineering (AREA)
- Apparatuses For Generation Of Mechanical Vibrations (AREA)
- On-Site Construction Work That Accompanies The Preparation And Application Of Concrete (AREA)
Abstract
A kind of multi-functional pour the present invention provides improvement smashes floating vibrational system, belongs to field of mechanical technique.It solves the problems, such as that prior art stability is poor.Multi-functional pour of this improvement smashes floating vibrational system, it is multi-functional pour smash smooth out vibrational system include a rack, the bottom of the frame has idler wheel, upper rack has hopper, hopper top is feed inlet, hopper lower part is discharge port and discharge port close at frame front, and the rack rear portion has vibrating mechanism, also has Gan Liao mechanisms between above-mentioned vibrating mechanism and hopper discharge port.Multi-functional pour of this improvement smashes floating stability of vibration system height.
Description
Technical field
The invention belongs to field of mechanical technique, multi-functional pour for being related to a kind of improvement smashes floating vibrational system.
Background technology
Prefabricated pile needs to smooth out the concrete material on shaping mould in the production process, and existing floating operation is typically
Manual operation is implemented, and working efficiency is time-consuming and laborious than relatively low, and labor intensity is big.
Invention content
It is high the purpose of the present invention is in view of the above-mentioned problems existing in the prior art, providing a kind of compact-sized and stability
Multi-functional pour of improvement smashes floating vibrational system.
The purpose of the present invention can be realized by following technical proposal:
A kind of multi-functional pour of improvement smashes floating vibrational system, it is multi-functional pour smash smooth out vibrational system include a rack,
It is characterized in that, the bottom of the frame has idler wheel, and upper rack has hopper, and hopper top is feed inlet, and hopper lower part is
Material mouth and discharge port are close at frame front, and the rack rear portion has vibrating mechanism, and above-mentioned vibrating mechanism discharges with hopper
Also there is Gan Liao mechanisms between mouthful.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, the Gan Liao mechanisms include fixed seat one, fixed
Seat two catches up with material actuator, swing arm and catches up with material axis, and above-mentioned fixed seat one and fixed seat two are connected in rack, above-mentioned that material is caught up with to drive
Moving part is connected in fixed seat one, and above-mentioned swing arm inner end, which is hinged on, catches up on material axis, above-mentioned that material axis is caught up with axially to be connected in swing arm outer end
Place, it is above-mentioned catch up with material actuator and catch up between material axis there is drive mechanism, it is above-mentioned to catch up with material actuator that drive and catch up with by drive mechanism
Material shaft rotation is moved.
Creative being caught up with by fixed seat one of this Gan Liao mechanisms expects that actuator is firmly fixed in rack.Pass through fixation
Seat two is hinged on what swing arm inner end was stablized in rack.
When carrying out catching up with material construction operation, material actuator is caught up with material shaft rotation to be caught up with to move by drive mechanism drive, material axis is caught up in rotation
The concrete material on shaping mould top is smoothed out.
Simultaneously as swing arm inner end is hinged on two row of fixed seat, therefore, material axis is caught up with when carrying out catching up with material operation, energy
Appropriate swing by a small margin, material performance is caught up with so as to further improve it.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, described to catch up with material actuator be motor, and motor is solid
It is connected in fixed seat one.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, the fixed seat two includes pedestal and positioned at pedestal
The tubular connecting portion in top, above-mentioned pedestal are connected in by fastener in rack, and above-mentioned swing arm inner end is hinged on outside connecting portion
Side, the shaft of above-mentioned motor are located at connecting portion.
It can stablize swing arm inner end by connecting portion to be hinged in fixed seat two, fixed seat two can be stablized by pedestal solid
It is connected in rack.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, between the machine shaft and connecting portion have axis
It holds.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the swing arm outer end have tubular positioning
Cylinder, it is above-mentioned that material shaft end is caught up with axially to be connected in positioning tube.
The axial direction that material axis is caught up with to stablize can be connected at swing arm outer end by positioning tube.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, it is described catch up with material shaft end and positioning tube between have
Bearing.
Catch up with material axis can smooth rotation under the action of bearing.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, be fixed with driving wheel in the shaft of the motor,
Described catch up with expects that shaft end is fixed with driven wheel and driving wheel is connected with driven wheel.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the driving wheel be and driven wheel be sprocket wheel,
Driving wheel is connected with driven wheel by transmission chain.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the driving wheel and driven wheel are belt
Wheel, driving wheel are connected with driven wheel by transmission belt.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, above-mentioned fixed seat one, fixed seat two, catch up with material drive
Moving part and swing arm form a driving unit, and the quantity of the driving unit is two, and two driving units are located at respectively catches up with material axis
Both ends at.
Material shaft rotation being caught up with to move by two driving unit drives, there are two act on:
One expects that axis both ends are all connected due to catching up with, and can guarantee the connective stability for catching up with material axis;
Secondly, due to two driving units can drive catch up with material shaft rotation move, catch up with material shaft rotation move during power it is strong
Strength can effectively improve and catch up with material effect.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the vibrating mechanism include vibrating grid, vibrating seat,
Vibratory drive part and transmission shaft, the vibrating grid are in strip, and above-mentioned vibrating seat is uniformly arranged along the length direction of vibrating grid, on
State that transmission shaft is connected with vibratory drive part and vibratory drive part can drive transmission shaft to rotate, the transmission shafts are above-mentioned to being connected in
On vibrating seat, eccentric pendulum is also fixed on above-mentioned transmission shaft.
There is several eccentric pendulums on transmission shaft, eccentric pendulum is uniformly arranged along the axial direction of transmission shaft.
All eccentric pendulums is driven to rotate by same vibratory drive part, since the non-central location of eccentric pendulum connects
It is connected on transmission shaft.Therefore, eccentric pendulum can drive vibrating grid to generate vibration, so as to be realized to the concrete material on shaping mould
Mechanical pudding.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the vibrating grid include bottom frame, crossbeam and support
Bar, above-mentioned bottom frame are in box shape, and above-mentioned crossbeam is located at bottom frame top, and the quantity of above-mentioned supporting rod is the two of several and supporting rod
End is respectively fixedly connected on crossbeam and bottom frame.
Such structure can mitigate entire vibrating grid weight, and can guarantee vibrating grid self-strength.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, the crossbeam and bottom frame are arranged in parallel and crossbeam position
At bottom frame center, supporting rod is respectively provided on the left of above-mentioned crossbeam and at right side.
Structural compactness can not only be improved in this way, and intensity is also higher.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the supporting rod include the body of rod one and the body of rod two,
The both ends of the above-mentioned body of rod one and the body of rod two are connected on crossbeam and bottom frame, and the upper end of the body of rod one and the body of rod two is intersected and two
Angle between person is 60-120 degree.
This structure can guarantee that vibrating grid has sufficient intensity.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, be respectively provided at the left and right sides of crossbeam arranged symmetrically
Supporting rod, above-mentioned two groups of supporting rods form a support unit, and the quantity of the support unit is several and support unit edge
The length direction of crossbeam is uniformly arranged.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the bottom frame end also have the body of rod three, it is above-mentioned
The body of rod three is vertically arranged with bottom frame and three lower end of the body of rod is connected with bottom frame, and three upper end of the body of rod is connected with crossbeam.
The structural compactness of vibrating grid end can be improved in this way.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, the both sides of the body of rod three have the body of rod four and bar
The upper end of body five, the above-mentioned body of rod four and the body of rod five is connected on crossbeam, and the lower end of the body of rod four is connected in bottom frame edge, the body of rod
Five lower end is connected in another edge of bottom frame.
It can guarantee that vibrating grid end has sufficient intensity in this way, and its end construction compactedness can be improved.
It smashes in multi-functional pour of above-mentioned improvement and smoothes out vibrational system, the above-mentioned body of rod four and the body of rod five are base with the body of rod three
Standard is symmetrical arranged.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the bottom frame top is fixed in the rod-shaped body of rod
Six, above-mentioned vibrating seat lower end is connected on the body of rod six.
Vibrating seat can be stablized by the body of rod six and be connected on bottom frame.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, the vibrating seat upper end be sleeved on transmission shaft and
There is bearing between vibrating seat and transmission shaft.
Above-mentioned improvement it is multi-functional pour smash smooth out vibrational system in, it is above-mentioned bias pendulum it is in the form of annular discs, bias pendulum hang down
Edge be connected on transmission shaft.
Compared with prior art, multi-functional pour of this improvement smashes floating vibrational system due to catching up with material axis energy in construction operation
It slightly swings, therefore, material effect is caught up with when can properly increase construction operation.
Simultaneously as two driving units can further improve catch up with material effect so respectively with material axis both ends is caught up with to be connected.
In addition, fixed seat one effectively increases the structural compactness of entire mechanism in this way close to fixed seat two.
Description of the drawings
Fig. 1 is that the multi-functional of book improvement pours the structure diagram smash and smooth out vibrational system.
Fig. 2 is that the multi-functional of this improvement pours the side structure schematic view smash and smooth out vibrational system Zhong Ganliao mechanisms.
Fig. 3 is that the multi-functional of this improvement pours the dimensional structure diagram smash and smooth out vibrational system Zhong Ganliao mechanisms.
Fig. 4, which is that sheet is multi-functional, pours the dimensional structure diagram smash and smooth out vibrating mechanism in the vibrating mechanism in vibrational system.
Fig. 5, which is that sheet is multi-functional, pours the overlooking the structure diagram smash and smooth out vibrating mechanism in the vibrating mechanism in vibrational system.
Fig. 6, which is that sheet is multi-functional, pours the main structure diagram smash and smooth out vibrating mechanism in the vibrating mechanism in vibrational system.
In figure, A1, rack;A2, fixed seat one;A3, fixed seat two;A3a, pedestal;A3b, connecting portion;A4, material is caught up with to drive
Part;A5, swing arm;A5a, positioning tube;A6, material axis is caught up with;A6a, the body of rod;A6b, tablet is caught up with;A7, driving wheel;A8, driven wheel;A9, gear
Barrel;
B1, vibrating grid;B1a, bottom frame;B1b, crossbeam;B1c, the body of rod one;B1d, the body of rod two;B1e, the body of rod three;B1f, the body of rod
Four;B1g, the body of rod five;B1h, the body of rod six;B2, vibrating seat;B3, vibratory drive part;B4, transmission shaft;B5, eccentric pendulum;
C1, idler wheel;C2, hopper.
Specific embodiment
As shown in Figure 1, this improvement it is multi-functional pour smash smooth out vibrational system include a rack, the bottom of the frame have rolling
Wheel, upper rack have a hopper, and hopper top is feed inlet, and hopper lower part is discharge port and discharge port close to frame front
Place, the rack rear portion have vibrating mechanism, also have Gan Liao mechanisms between above-mentioned vibrating mechanism and hopper discharge port.
As shown in Figures 2 and 3, this Gan Liao mechanisms include one A2 of fixed seat, two A3 of fixed seat, catch up with material actuator A4, swing arm
A5 and material axis A6 is caught up with, above-mentioned one A2 of fixed seat and two A3 of fixed seat are connected on rack A1, above-mentioned that material actuator A4 is caught up with to be connected
On one A2 of fixed seat, above-mentioned swing arm A5 inner ends, which are hinged on, catches up on material axis A6, above-mentioned that material axis A6 is caught up with axially to be connected in outside swing arm A5
At end, above-mentioned catch up with expects actuator A4 and catches up with to expect there is drive mechanism between axis A6, above-mentioned that material actuator A4 is caught up with to pass through drive mechanism
It can drive and catch up with the A6 rotations of material axis.It is described to catch up with that material axis A6 is included in body of rod A6a and to catch up with tablet A6b, above-mentioned body of rod A6a be in round bar shape,
Above-mentioned bar tablet A6b twist protrudes from body of rod A6a sides
The material actuator A4 that catches up with is motor, and motor is connected on one A2 of fixed seat.
Two A3 of fixed seat includes pedestal A3a and positioned at the tubular connecting portion A3b in pedestal A3a tops, above-mentioned pedestal
A3a is connected in by fastener on rack A1, and above-mentioned swing arm A5 inner ends are hinged on the outside of connecting portion A3b, the shaft of above-mentioned motor
At connecting portion A3b.
There is bearing between the machine shaft and connecting portion A3b.
The swing arm A5 outer ends have tubular positioning tube A5a, above-mentioned that material axis A6 ends is caught up with axially to be connected in positioning tube
In A5a.
A tubular blocking cylinder A9 is further included, above-mentioned blocking cylinder A9 outer ends are axially connected with positioning tube A5a, blocking cylinder A9
Inner end, which is sleeved on, catches up with material axis A6 ends and the two tight fit connection.
Described catch up with has bearing between material axis A6 ends and positioning tube A5a.
Driving wheel A7 is fixed in the shaft of the motor, described catch up with expects that axis A6 ends are fixed with driven wheel A8 and driving wheel
A7 is connected with driven wheel A8.
The driving wheel is and driven wheel is sprocket wheel, and driving wheel is connected with driven wheel by transmission chain.
The driving wheel and driven wheel is belt pulley, and driving wheel is connected with driven wheel by transmission belt.
Above-mentioned one A2 of fixed seat, two A3 of fixed seat, material actuator A4 and swing arm A5 is caught up with to form a driving unit, the drive
The quantity of moving cell is two, and two driving units are located at respectively at the both ends for catching up with material axis A6.
Creative being caught up with by fixed seat one of this Gan Liao mechanisms expects that actuator is firmly fixed in rack.Pass through fixation
Seat two is hinged on what swing arm inner end was stablized in rack.
When carrying out catching up with material construction operation, material actuator is caught up with material shaft rotation to be caught up with to move by drive mechanism drive, material axis is caught up in rotation
The concrete material on shaping mould top is smoothed out.
Simultaneously as swing arm inner end is hinged on two row of fixed seat, therefore, material axis is caught up with when carrying out catching up with material operation, energy
Appropriate swing by a small margin, material performance is caught up with so as to further improve it.
As shown in Fig. 4 and Fig. 5 and Fig. 6, vibrating mechanism includes vibrating grid B1, vibrating seat B2, vibratory drive part B3 and transmission
Axis B4, the vibrating grid B1 are in strip, and above-mentioned vibrating seat B2 is uniformly arranged along the length direction of vibrating grid B1, above-mentioned transmission shaft
4 are connected and vibratory drive part B3 can drive transmission shaft B4 to rotate with vibratory drive part B3, and the transmission shaft B4 is axially connected in
It states on vibrating seat B2, eccentric pendulum B5 is also fixed on above-mentioned transmission shaft B4.
The vibrating grid B1 includes bottom frame B1a, crossbeam B1b and supporting rod, and above-mentioned bottom frame B1a is in box shape, above-mentioned crossbeam
B1b is located at bottom frame B1a tops, the quantity of above-mentioned supporting rod be respectively fixedly connected for the both ends of several and supporting rod in crossbeam B1b and
On bottom frame B1a.
The crossbeam B1b and bottom frame B1a is arranged in parallel and crossbeam B1b is located at bottom frame B1a centers, and above-mentioned crossbeam B1b is left
Supporting rod is respectively provided at side and right side.
The both ends that the supporting rod includes one B1c of the body of rod and the body of rod two B1d, above-mentioned one B1c of the body of rod and two B1d of the body of rod are solid
It is connected on crossbeam B1b and bottom frame B1a, the upper end of one B1c of the body of rod and two B1d of the body of rod are intersected and angle between the two is
60-120 degree.
Symmetrically arranged supporting rod is respectively provided at the left and right sides of crossbeam B1b, it is single that above-mentioned two groups of supporting rods form a support
Member, the quantity of the support unit are uniformly arranged for several and support unit along the length direction of crossbeam B1b.
The bottom frame B1a ends are also vertically arranged with the body of rod three B1e, above-mentioned three B1e of the body of rod and bottom frame B1a and the body of rod three
B1e lower ends are connected with bottom frame B1a, and three B1e upper ends of the body of rod are connected with crossbeam B1b.
The both sides of three B1e of the body of rod have four B1f of the body of rod and the body of rod five B1g, above-mentioned four B1f of the body of rod and five B1g of the body of rod
Upper end be connected on crossbeam B1b, the lower end of four B1f of the body of rod is connected in bottom frame B1a edges, and the lower end of five B1g of the body of rod is consolidated
It is connected in another edge of bottom frame B1a.
Above-mentioned four B1f of the body of rod and five B1g of the body of rod is symmetrical arranged on the basis of three B1e of the body of rod.
The bottom frame B1a tops are fixed in rod-shaped six B1h of the body of rod, and above-mentioned vibrating seat B2 lower ends are connected in the body of rod six
On B1h.
The vibrating seat B2 upper ends are sleeved on transmission shaft B4 and have bearing between vibrating seat B2 and transmission shaft B4.
Above-mentioned bias pendulum B5 is in the form of annular discs, and the vertical edge of bias pendulum is connected on transmission shaft B4.
There is several eccentric pendulums on transmission shaft, eccentric pendulum is uniformly arranged along the axial direction of transmission shaft.
All eccentric pendulums is driven to rotate by same vibratory drive part, since the non-central location of eccentric pendulum connects
It is connected on transmission shaft.Therefore, eccentric pendulum can drive vibrating grid to generate vibration, so as to be realized to the concrete material on shaping mould
Mechanical pudding.
Claims (10)
1. a kind of multi-functional pour of improvement smashes floating vibrational system, it is multi-functional pour to smash smooth out vibrational system and include a rack, it is special
Sign is that the bottom of the frame has idler wheel, and upper rack has hopper, and hopper top is feed inlet, and hopper lower part is discharging
Mouthful and discharge port close at frame front, the rack rear portion has vibrating mechanism, above-mentioned vibrating mechanism and hopper discharge port
Between also have Gan Liao mechanisms.
2. multi-functional pour of improvement according to claim 1 smashes floating vibrational system, which is characterized in that the Gan Liao mechanisms
Including fixed seat one, fixed seat two, material is caught up with actuator, swing arm and to catch up with material axis, above-mentioned fixed seat one and fixed seat two are connected in
Above-mentioned that material actuator is caught up with to be connected in fixed seat one in rack, above-mentioned swing arm inner end, which is hinged on, catches up on material axis, above-mentioned to catch up with material axis axis
To being connected at swing arm outer end, above-mentioned catch up with expects actuator and catches up with to expect there is drive mechanism between axis, above-mentioned that material actuator is caught up with to pass through
Drive mechanism, which can drive, catches up with material shaft rotation to move.
3. multi-functional pour of improvement according to claim 2 smashes floating vibrational system, which is characterized in that described catches up with material to drive
Moving part is motor, and motor is connected in fixed seat one.
4. multi-functional pour of improvement according to claim 3 smashes floating vibrational system, which is characterized in that the fixed seat two
Including pedestal and positioned at the tubular connecting portion in pedestal top, above-mentioned pedestal is connected in by fastener in rack, above-mentioned swing arm
Inner end is hinged on the outside of connecting portion, and the shaft of above-mentioned motor is located at connecting portion.
5. multi-functional pour of improvement according to claim 4 smashes floating vibrational system, which is characterized in that the swing arm outer end
It is above-mentioned that material shaft end is caught up with axially to be connected in positioning tube with tubular positioning tube.
6. multi-functional pour of improvement according to claim 1 smashes floating vibrational system, which is characterized in that the vibrating mechanism
Including vibrating grid, vibrating seat, vibratory drive part and transmission shaft, the vibrating grid is in strip, and above-mentioned vibrating seat is along vibrating grid
Length direction is uniformly arranged, and above-mentioned transmission shaft is connected with vibratory drive part and vibratory drive part can drive transmission shaft to rotate, described
Transmission shafts are also fixed with eccentric pendulum to being connected on above-mentioned vibrating seat on above-mentioned transmission shaft.
7. multi-functional pour of improvement according to claim 6 smashes floating vibrational system, which is characterized in that the vibrating grid packet
Bottom frame, crossbeam and supporting rod are included, above-mentioned bottom frame is in box shape, and above-mentioned crossbeam is located at bottom frame top, and the quantity of above-mentioned supporting rod is
The both ends of several and supporting rod are respectively fixedly connected on crossbeam and bottom frame.
8. multi-functional pour of improvement according to claim 7 smashes floating vibrational system, which is characterized in that the crossbeam and bottom
Frame is arranged in parallel and crossbeam is located at bottom frame center, and supporting rod is respectively provided on the left of above-mentioned crossbeam and at right side.
9. multi-functional pour of improvement according to claim 8 smashes floating vibrational system, which is characterized in that the supporting rod packet
Include the body of rod one and the body of rod two, the both ends of the above-mentioned body of rod one and the body of rod two are connected on crossbeam and bottom frame, the body of rod one and bar
The upper end of body two is intersected and angle between the two is 60-120 degree.
10. multi-functional pour of improvement according to claim 9 smashes floating vibrational system, which is characterized in that the left and right of crossbeam
Symmetrically arranged supporting rod is respectively provided at both sides, above-mentioned two groups of supporting rods form a support unit, the quantity of the support unit
It is uniformly arranged for several and support unit along the length direction of crossbeam.
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CN201711476155.2A CN108127766B (en) | 2017-12-29 | 2017-12-29 | Improved multifunctional pouring, tamping and trowelling vibration system |
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CN108127766B CN108127766B (en) | 2024-04-26 |
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JPH02194202A (en) * | 1989-01-23 | 1990-07-31 | Nippon Road Co Ltd:The | Road leveller for pavement |
CN101929122A (en) * | 2010-08-19 | 2010-12-29 | 陕西长大实业有限公司 | Zero-clearance mixed material spreader |
CN202441040U (en) * | 2012-02-10 | 2012-09-19 | 张宪峰 | Full-automatic concrete laser flooring machine |
CN204435181U (en) * | 2015-01-19 | 2015-07-01 | 任鸿业 | The dry cement mortar distribution device that a kind of brick paving machine is used |
CN204676398U (en) * | 2015-03-26 | 2015-09-30 | 中交西安筑路机械有限公司 | A kind of asphalt remixer |
CN207656896U (en) * | 2017-12-29 | 2018-07-27 | 嘉兴欣创混凝土制品有限公司 | Multi-functional pour of improvement smashes floating vibrational system |
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