CN208603626U - A kind of assembled architecture concrete prefabricated element truck-loading facilities - Google Patents
A kind of assembled architecture concrete prefabricated element truck-loading facilities Download PDFInfo
- Publication number
- CN208603626U CN208603626U CN201821211721.7U CN201821211721U CN208603626U CN 208603626 U CN208603626 U CN 208603626U CN 201821211721 U CN201821211721 U CN 201821211721U CN 208603626 U CN208603626 U CN 208603626U
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- Prior art keywords
- concrete prefabricated
- bottom plate
- prefabricated element
- bottom end
- assembled architecture
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Abstract
The utility model relates to a kind of assembled architecture concrete prefabricated element truck-loading facilities, including rectangular base plate and two portal frames disposed in parallel, the portal frame is located at the two sides of bottom plate, the bottom end of the portal frame is fixedly connected with the top of the bottom plate, the portal frame is equipped with two parallel mandrils, the both ends of the mandril are fixedly connected with the top of two portal frames respectively, the mandril is equipped with two crane booms disposed in parallel, the crane boom passes through a slide assemblies and is slidably connected on the mandril, and the bottom end of the crane boom connects recombination part.Carry out entrucking mainly for small-sized concrete prefabricated element, can be fast simple sling small-size concrete prefabricated components, it is energy saving.
Description
Technical field
The utility model relates to concrete prefabricated element transporting equipment fields, and in particular to a kind of assembled architecture concrete
Prefabricated components truck-loading facilities.
Background technique
Assembled type concrete prefabricated part refers to that by concrete be the basic material building element made of factory in advance, packet
Beam, plate, column and construction and decoration accessory etc. are included, precast concrete is widely used in the fields such as building, traffic, water conservancy, in state
Play the part of important role in people's economy, can shorten the construction period, reduces building waste, obtain large-scale application at present;But
Be due to concrete prefabricated element be that certain shapes is first made, the transport of concrete prefabricated element is required it is very high,
At present multi-functional large automobile by concrete prefabricated element transport building ground, but by concrete prefabricated element load onto automobile or
During unloading down from automobile, it is be easy to cause the damage of concrete prefabricated element, current useful large-sized gantry formula crane,
By concrete prefabricated element entrucking, the method is applicable in very much for large-scale concrete prefabricated element, but for some small-sized
Concrete prefabricated element, entrucking is carried out to it by large-sized gantry formula crane, wastes too many resource, and small-size concrete
The general storage location of prefabricated components is opposite to lean on edge, is unfavorable for large-sized gantry formula crane and slings to it.
Utility model content
In order to solve the above-mentioned technical problem the utility model provides a kind of assembled architecture concrete prefabricated element entrucking and sets
It is standby, carry out entrucking mainly for small-sized concrete prefabricated element, can be fast simple sling small-size concrete prefabricated components,
It is energy saving.
The technical solution that the utility model solves above-mentioned technical problem is as follows: a kind of assembled architecture concrete prefabricated element
Truck-loading facilities, including the portal frame that horizontally disposed rectangular base plate is parallel with two and is vertically arranged, the portal frame is located at bottom plate
Opposite two sides, the bottom end of the portal frame are fixedly connected with the top of the bottom plate, and it is parallel that the portal frame is equipped with two
Mandril, the both ends of the mandril are fixedly connected with the top of two portal frames respectively, and the mandril is equipped with two and is arranged in parallel
Crane boom, the crane boom passes through a slide assemblies and is slidably connected on the mandril, the bottom end connection of the crane boom
One lifting assemblies.
The beneficial effects of the utility model are: entrucking can be carried out to small-sized concrete prefabricated element, it is fast simple
Small-size concrete prefabricated components are sling, and small-size concrete prefabricated components are moved on lorry, present apparatus stable structure is sling
After small-size concrete prefabricated components, supporting role due to hydraulic lift to device, be not in translate into situation, and this
Device can be good at energy saving.
Based on the above technical solution, the utility model can also do following improvement.
Further, the top of the mandril is equipped with a sliding rail A, and the slide assemblies include fixed frame, pulley A and transmission
Axis, the both ends of the transmission shaft are sequentially connected the side of a pulley A, and the pulley A is slidably disposed in the sliding rail A,
A bearing is arranged on the transmission shaft, the side of the fixed frame is fixedly connected by a connecting rod with the bearing, described
The bottom end of fixed frame is fixedly connected with the top of the crane boom, and the top of the fixed frame is equipped with motor A, on the transmission shaft
Fixing sleeve is equipped with driving wheel, and the output end of the motor A is connect by a transmission belt A with the capstan drive.
Beneficial effect using above-mentioned further scheme is: crane boom can be slided along mandril, by concrete prefabricated structure
Part hangs the different location of bottom plate.
Further, the relative inner of the two parallel crane booms is equipped with a sliding rail B, and the lifting assemblies sliding is located at two
Between the parallel crane boom.
Beneficial effect using above-mentioned further scheme is: lifting assemblies can slide between crane boom, can be by object
Part is moved forward and backward after slinging.
Further, the lifting assemblies include connecting column, rotating bar and pulley B, are equipped with an axis water in the connecting column
The axis hole of flat setting, the both ends of the rotating bar turn through the axis hole, are placed in outside the connecting column and described in transmission connection
The side of pulley B, the pulley B are slidably disposed in the sliding rail B, and a motor B, the motor are fixed on the connecting column
The output end of B is sequentially connected by gear and the rotating bar, and the bottom end of the connecting column is fixedly connected with an electric block, described
The bottom end of electric block connects a wirerope, and weight hook is connected on the wirerope.
Beneficial effect using above-mentioned further scheme is: lifting assemblies can be made by motor control sliding distance
Object must be sling and be moved to suitable position.
Further, the bottom end of the bottom plate is equipped with multiple hydraulic lifts for being used to support the bottom plate.
Beneficial effect using above-mentioned further scheme is: being supported to whole device, avoids slinging device after object
Overturning.
Further, the bottom plate is equipped with a switch-box, the switch-box and the motor A, the motor B and the electricity
Dynamic cucurbit electrical connection, the bottom end of the bottom plate are fixedly connected with a power supply box, and the power supply box is electrically connected with the switch-box.
Beneficial effect using above-mentioned further scheme is: unified to control device, coordinated slings object.
Further, the bottom end of the bottom plate is connected with two axles disposed in parallel, and the both ends of the axle are sequentially connected
One wheel.
Beneficial effect using above-mentioned further scheme is: it is mobile by wheel driving device, object is hung on bottom plate
Afterwards, it can be moved into point of loading.
Further, a side of the bottom plate is fixedly connected with a draw hook.
Beneficial effect using above-mentioned further scheme is: can be mobile by tractor driving device.
Detailed description of the invention
Fig. 1 is the utility model stereoscopic schematic diagram;
Fig. 2 is the utility model lifting assemblies structural schematic diagram;
Fig. 3 is the first transmission shaft structure of the utility model schematic diagram;
Fig. 4 is the utility model second driving shaft structural schematic diagram.
In attached drawing, parts list represented by the reference numerals are as follows:
1, bottom plate, 2, portal frame, 3, mandril, 4, wheel, 5, hydraulic lift, 7, power supply box, 8, fixed frame, 8-1,
One fixed frame, 8-2, the second fixed frame, 9, pulley A, 9-1, first pulley A, 9-2, second pulley A, 10, driven wheel, 10-1,
One driven wheel, 10-2, the second driven wheel, 11, transmission shaft, 11-1, the first transmission shaft, 11-2, second driving shaft, 12, motor A,
13, transmission belt A, 14, driving wheel, 15, sliding rail A, 16, crane boom, 17, pulley B, 18, connecting column, 19, grabhook, 20, steel wire
Rope, 21, switch-box, 22, draw hook, 23, sliding rail B, 24, rotating bar, 25, motor B, 26, axis hole, 27, axle, 28, electronic calabash
Reed, 29, bearing, 29-1, first bearing, 29-2, second bearing, 30, connecting rod, 30-1, first connecting rod, 30-2, second connect
Extension bar.
Specific embodiment
The principles of the present invention and feature are described below in conjunction with attached drawing, example is served only for explaining that this is practical
It is novel, it is not intended to limit the scope of the utility model.
As shown in Figure 1, Figure 2, Figure 3 and Figure 4, a kind of assembled architecture concrete prefabricated element truck-loading facilities, including level
The rectangular base plate 1 of setting is parallel with two and the portal frame 2 that is vertically arranged, portal frame 2 are located at the opposite two sides of bottom plate 1, portal frame 2
Frame body it is parallel with the side of bottom plate 1, the bottom end of portal frame 2 is fixedly connected with the top of bottom plate 1, and the frame body of portal frame 2 is work
Word stainless steel, portal frame 2 are equipped with two parallel mandrils 3, and mandril 3 is vertical with the frame body of portal frame 2, the both ends difference of mandril 3
It is fixedly connected with the top of two portal frames 2, the top of mandril 3 is equipped with a sliding rail A15, length and the mandril 3 of sliding rail A15
Length is identical, and parallel with the length direction of mandril 3, and mandril 3 is equipped with two crane booms 16 disposed in parallel, and crane boom 16 is logical
It crosses a slide assemblies to be slidably connected on two mandrils 3, slide assemblies include fixed frame 8, pulley A9 and transmission shaft 11, transmission shaft
11 both ends are sequentially connected the side of a pulley A9, and transmission shaft 11 is located at the top of mandril 3, and pulley A9 is slidably disposed within sliding rail
In A15, a bearing 29 is arranged on transmission shaft 11, the side of fixed frame 8 is fixedly connected by a connecting rod 30 with bearing 29,
Fixed frame 8 is located at the top of transmission shaft 11, and crane boom 16 is located at the lower section of mandril 3, the bottom end of fixed frame 8 and the top of crane boom 16
End is fixedly connected, and by the movement of the mobile drive crane boom 16 of fixed frame 8, transmission shaft 11 includes the first transmission shaft 11-1 and the
Fixing sleeve is equipped with a driving wheel 14 and the first driven wheel 10-1, second driving shaft on two transmission shaft 11-2, the first transmission shaft 11-1
The upper fixing sleeve of 11-2, which is equipped with the second driven wheel 10-2, the first driven wheel 10-1 and the second driven wheel 10-2 and is driven by belt, to be connected
It connects, so that the first transmission shaft 11-1 and second driving shaft 11-2 is rotated synchronously, fixed frame 8 includes the first fixed frame 8-1 and second
Fixed frame 8-2, the first transmission shaft 11-1 are located at the first lower section fixed frame 8-1, and second driving shaft 11-2 is located at the second fixed frame 8-2
Lower section, bearing 29 include first bearing 29-1 and second bearing 29-2, and connecting rod 30 includes that first connecting rod 30-1 and second connects
Extension bar 30-2, pulley A9 include first pulley A9-1 and second pulley A9-2, and first bearing 29-1 is set in the first transmission shaft 11-
It on 1, and is connect by first connecting rod 30-1 with the first fixed frame 8-1, second bearing 29-2 is set in second driving shaft 11-2
On, and connect by the second connecting rod 30-2 with the second fixed frame 8-2, first pulley A9-1 is connected to the first transmission shaft 11-1's
Two sides, second pulley A9-2 are connected to the two sides of second driving shaft 11-2, a motor A12 are fixed on the first fixed frame 8-1,
The output end of motor A12 is sequentially connected by a transmission belt A13 and driving wheel 14, and transmission belt A13 is belt or chain, passes through electricity
The output end of machine A12 rotates, and drives the first transmission shaft 11-1 rotation, passes through the first driven wheel 10-1 and the second driven wheel 10-2 band
Dynamic second driving shaft 11-2 rotation, band movable pulley A9 are rotated synchronously, and drive fixed frame 8 mobile;
The bottom end of crane boom 16 connects recombination part, and crane boom 16 is the strip column of parallel portal frame 2 setting, plays recombination
Part sliding is located between two parallel crane booms 16, and the relative inner of two parallel crane booms 16 is equipped with a sliding rail B23, plays recombination
Part includes connecting column 18, rotating bar 24 and pulley B17, and rotating bar 24 and pulley B17 are provided with two groups, are arranged in parallel, connecting column
18 set there are two axis hole 26, and the axis horizontal of axis hole 26 is arranged, through the two sides of connecting column 18, the both ends point of two rotating bars 24
Two axis holes 26 are not turned through, are placed in outside connecting column 18 and the side for the pulley B17 that is sequentially connected, pulley B17 are slidably disposed within cunning
In rail B23, a motor B25 is fixed on connecting column 18, the output end of motor B25 is connected by gear and the transmission of rotating bar 24
Connect, by motor B25 drive rotating bar 24 rotate, rotating bar 24 with movable pulley B17 rotate, enable lifting assemblies along rise
Weight frame 16 moves horizontally, and the bottom end of connecting column 18 is fixedly connected with an electric block 28, and electric block 28 is CD1 single speed on the market
20 electric block 28 of wirerope, the bottom end of electric block 28 connect a wirerope 20, connect weight hook 19 on wirerope 20, lead to
The driving of electric block 28 is crossed so that concrete prefabricated element is lifted;
The bottom end of bottom plate 1 is set there are four the hydraulic lift 5 for being used to support bottom plate 1, and hydraulic lift 5 is located at bottom plate
The top of 1 quadrangle, hydraulic lift 5 is fixedly connected with the top of bottom plate 1, hydraulic lift 5 and crane institute on the market
The hydraulic device being supported to car body used is identical, and hydraulic lift 5 forms support force to whole device, so that device
Steadily;
Bottom plate 1 is equipped with a switch-box 21, and switch-box 21 is electrically connected with motor A12, motor B25 and electric block 28,
The bottom end of bottom plate 1 is fixedly connected with a power supply box 7, and power supply box 7 is electrically connected with switch-box 21, by the switch built in switch-box 21,
The open and close of motor A12, motor B25 and electric block 28 are controlled respectively;
The bottom end of bottom plate 1 is connected with two axles 27 disposed in parallel, and the both ends of axle 27 are sequentially connected a wheel 4;Bottom
A side of plate 1 is fixedly connected with a draw hook 22, can be advanced to the present apparatus is drawn by tractor;
In use, the present apparatus to be moved to the place for storing small-size concrete prefabricated components by tractor, liquid is controlled
The hydraulic starting for pressing lifting device 5, withstands ground, by switch control motor A, controls crane boom 16 and moves horizontally, be aligned small
Type concrete prefabricated element starts motor B25, so that lifting assemblies are moved to small-size concrete prefabricated components on crane boom 16
Surface, the small-size concrete prefabricated components that install of set are sling by electric block 28 and grabhook 19, are then moved
Part is recombinated, so that lifting assemblies drive the small-size concrete prefabricated components sling to be moved to 1 top of bottom plate of device, is placed
On bottom plate 1, continues to sling small-size concrete prefabricated components, when placing enough objects on bottom plate 1, be led by tractor
Lorry side is guided to, is sling small-size concrete prefabricated components on the railway carriage for being moved to lorry by lifting assemblies, it is neat to place
On railway carriage, the entrucking to small-size concrete prefabricated components is completed.
The above is only the preferred embodiments of the utility model, are not intended to limit the utility model, all in the utility model
Spirit and principle within, any modification, equivalent replacement, improvement and so on should be included in the protection model of the utility model
Within enclosing.
Claims (8)
1. a kind of assembled architecture concrete prefabricated element truck-loading facilities, which is characterized in that including horizontally disposed rectangular base plate
(1) portal frame (2) that is parallel with two and being vertically arranged, the portal frame (2) are located at the opposite two sides of bottom plate (1), described gantry
The bottom end of frame (2) is fixedly connected with the top of the bottom plate (1), and the portal frame (2) is equipped with two parallel mandrils (3), institute
The both ends for stating mandril (3) are fixedly connected with the top of two portal frames (2) respectively, and the mandril (3) is equipped with two and sets in parallel
The crane boom (16) set, the crane boom (16) is slidably connected on two mandrils (3) by a slide assemblies, described
The bottom end of crane boom (16) connects recombination part.
2. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 1, which is characterized in that described
The top of mandril (3) is equipped with a sliding rail A (15), and the slide assemblies include fixed frame (8), pulley A (9) and transmission shaft
(11), the both ends of the transmission shaft (11) are sequentially connected the side of a pulley A (9), and the pulley A (9) is slidably disposed within
It in the sliding rail A (15), is arranged with bearing (29) on the transmission shaft (11), the side of the fixed frame (8) passes through a connection
Bar (30) is fixedly connected with the bearing (29), the fixed company in the bottom end of the fixed frame (8) and the top of the crane boom (16)
It connects, the top of the fixed frame (8) is equipped with motor A (12), and fixing sleeve is equipped with driving wheel (14) on the transmission shaft (11), described
The output end of motor A (12) is sequentially connected by a transmission belt A (13) and the driving wheel (14).
3. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 2, which is characterized in that two is flat
The relative inner of the row crane boom (16) is equipped with a sliding rail B (23), and the lifting assemblies sliding is located at two and parallel described rises
Between weight frame (16).
4. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 3, which is characterized in that described
Lifting assemblies include connecting column (18), rotating bar (24) and pulley B (17), are equipped with an axis horizontal in the connecting column (18) and set
The both ends of the axis hole (26) set, the rotating bar (24) turn through the axis hole (26), are placed in the connecting column (18) outside simultaneously
Be sequentially connected the side of the pulley B (17), and the pulley B (17) is slidably disposed in the sliding rail B (23), the connecting column
(18) a motor B (25) is fixed on, the output end of the motor B (25) is connected by gear and the rotating bar (24) transmission
It connects, the bottom end of the connecting column (18) is fixedly connected an electric block (28), and the bottom end of the electric block (28) connects a steel
Cord (20) connects weight hook (19) on the wirerope (20).
5. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 4, which is characterized in that described
Bottom plate (1) is equipped with a switch-box (21), the switch-box (21) and the motor A (12), the motor B (25) and the electricity
Dynamic cucurbit (28) electrical connection, the bottom end of the bottom plate (1) are fixedly connected a power supply box (7), the power supply box (7) and the switch
Case (21) electrical connection.
6. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 1, which is characterized in that described
The bottom end of bottom plate (1) is equipped with multiple hydraulic lifts (5) for being used to support the bottom plate (1).
7. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 1-6, feature
It is, the bottom end of the bottom plate (1) is connected with two axles (27) disposed in parallel, and the both ends of the axle (27) are sequentially connected
One wheel (4).
8. a kind of assembled architecture concrete prefabricated element truck-loading facilities according to claim 1-6, feature
It is, a side of the bottom plate (1) is fixedly connected with a draw hook (22).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821211721.7U CN208603626U (en) | 2018-07-27 | 2018-07-27 | A kind of assembled architecture concrete prefabricated element truck-loading facilities |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201821211721.7U CN208603626U (en) | 2018-07-27 | 2018-07-27 | A kind of assembled architecture concrete prefabricated element truck-loading facilities |
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CN208603626U true CN208603626U (en) | 2019-03-15 |
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CN201821211721.7U Expired - Fee Related CN208603626U (en) | 2018-07-27 | 2018-07-27 | A kind of assembled architecture concrete prefabricated element truck-loading facilities |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110439588A (en) * | 2019-07-12 | 2019-11-12 | 苏丹 | A kind of road and bridge construction trolley horizontal mobile device |
-
2018
- 2018-07-27 CN CN201821211721.7U patent/CN208603626U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110439588A (en) * | 2019-07-12 | 2019-11-12 | 苏丹 | A kind of road and bridge construction trolley horizontal mobile device |
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Legal Events
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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: 20190315 |