CN207774181U - A kind of concrete transmission device - Google Patents
A kind of concrete transmission device Download PDFInfo
- Publication number
- CN207774181U CN207774181U CN201721878690.6U CN201721878690U CN207774181U CN 207774181 U CN207774181 U CN 207774181U CN 201721878690 U CN201721878690 U CN 201721878690U CN 207774181 U CN207774181 U CN 207774181U
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- concrete
- conveyer belt
- skeleton
- transmission device
- commutation rollers
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Abstract
The utility model discloses a kind of concrete transmission device, it is provided with telescopic axis and clump weight on walking supporting rack, the upper end of telescopic axis is connected with transmission skeleton, the upper surface of transmission skeleton is provided with upper supporting roller, it transmits and is provided with snub pulley below skeleton, the outer cover of upper supporting roller and snub pulley is equipped with the conveyer belt of annular;The rear commutation rollers rear end of conveyer belt is provided with rear commutation rollers, middle commutation rollers are provided in the middle part of conveyer belt, the preceding commutation rollers front end of conveyer belt is provided with preceding commutation rollers, it is provided with driving electronic box on the transmission skeleton of the right end of conveyer belt, it is connected with the right end of concrete chute below the transmission skeleton of the left end of conveyer belt, concrete chute tilts down from right to left, and concrete baffle is provided in middle commutation rollers, and conveying bucket is provided on the transmission skeleton in front of preceding commutation rollers;It is suitable for complicated construction environment, the conveyings of the small slump concrete of large volume, move, is adjustable, in the construction process, can preferably agree with construction condition.
Description
Technical field
The utility model is related to concrete tranmission techniques fields, and in particular to a kind of concrete transmission device.
Background technology
Currently, concrete structure embodies, overall performance is good, can placing at variously-shaped and size structure, durability
By force, fire resistance is high, while its project cost and maintenance cost are low.Because of its exclusive feature, it is widely applied to each engineering and builds
If field.But also because it is susceptible to the big disadvantage of crack, dead load, in varying environment, Different climate, different technologies requirement
In the case of, the technical parameters such as slump must give better control, and new challenge is just provided with to the machine for being conveyed into mould.
In the concrete construction of the prior art, mostly use that pump truck is pumped into mould or transport vehicle directly comes down in torrents into mould, although
It is more suitable for mass concrete, the case where the small slump, but in the presence of can not use pump truck, while transport vehicle directly comes down in torrents
The problem of concrete construction under specified conditions can only be directed to by entering mould also.
Utility model content
The purpose of this utility model is to provide a kind of concrete transmission devices, to solve the nothing in the presence of the prior art
Method is suitable for complicated construction environment, the transportation problem of the small slump concrete of large volume.
To achieve the above object, the utility model provides a kind of concrete transmission device, including is evenly distributedly arranged
Universal wheel after four to walk below supporting rack is provided with telescopic axis and clump weight on supporting rack of walking, telescopic axis it is upper
End is connected with transmission skeleton, and the upper surface of transmission skeleton is provided with upper supporting roller, transmits and is provided with snub pulley, pop-up below skeleton
The outer cover of roller and snub pulley is equipped with the conveyer belt of annular;The rear commutation rollers rear end of conveyer belt is provided with rear commutation rollers, passes
It send and is provided with middle commutation rollers in the middle part of band, the preceding commutation rollers front end of conveyer belt is provided with preceding commutation rollers, the right side of conveyer belt
Driving electronic box, the right end phase of the left end of conveyer belt transmitted below skeleton with concrete chute are provided on the transmission skeleton at end
Connection, concrete chute tilts down from right to left, is provided with concrete baffle in middle commutation rollers, in front of preceding commutation rollers
It is provided with conveying bucket on transmission skeleton;It transmits and is provided with preceding universal wheel below the right end of skeleton;
Supporting rack of walking includes bottom plate, and respectively there are two lateral supports for connection for the left and right side below bottom plate, adjacent
Bottom support is connected between lateral supports;Universal wheel is connected to the lower end of lateral supports by wheel shaft respectively;
It includes the driver cover for being separately positioned on conveyer belt both sides to drive electronic box, and braking is respectively arranged in driver cover 14
Device is respectively arranged with screw hole on the side wall of driver cover, flexible jacking screw rod is respectively arranged in screw hole;
Telescopic axis includes steel sleeve, and steel bushing axis is provided in the top of steel sleeve, is located at steel bushing on the side wall of steel sleeve
At least two pin shaft holes are provided at below axis, the support axis pin extending into steel sleeve is respectively arranged in pin shaft hole.
Optionally, transmission skeleton is set as the bending structure to raise up at middle commutation rollers.
Optionally, pin shaft hole is circular hole.
Optionally, pin shaft hole is square hole.
Optionally, conveying bucket is funnel-shaped structure.
Optionally, transmission skeleton includes the crossbeam, longeron and cant beam being connected.
Optionally, lateral supports are stringer board.
Optionally, lateral supports and bottom plate are perpendicular.
Optionally, bottom support is transverse slat.
Optionally, bottom support is parallel with bottom plate.
The utility model has the following advantages that:
The concrete transmission device of the utility model can solve can not be applied suitable for complexity in the presence of the prior art
The transportation problem of the small slump concrete of work environment, large volume, it is suitable for complicated construction environment, the small slump coagulations of large volume
The conveying of soil, is applicable not only to the construction of concrete, it can also be used to the transmission of the other materials such as block stone aggregate, move,
It is adjustable, in the construction process, it can preferably agree with construction condition.
Description of the drawings
Fig. 1 is the side view of the concrete transmission device of the utility model.
Fig. 2 is the vertical view of the concrete transmission device of the utility model.
Fig. 3 is the structural schematic diagram of the upper supporting roller and snub pulley of the concrete transmission device of the utility model.
Fig. 4 is the structural schematic diagram of the driving electronic box of the concrete transmission device of the utility model.
Fig. 5 is the structural schematic diagram of the telescopic axis of the concrete transmission device of the utility model.
In figure, 101 be rear commutation rollers, and 102 be middle commutation rollers, and 103 be preceding commutation rollers, and 2 be upper supporting roller, under 3 are
Carrying roller, 4 be conveyer belt, and 501 be rear universal wheel, and 502 be preceding universal wheel, and 6 be telescopic axis, and 7 be driving electronic box, and 8 be concrete
Chute, 9 be concrete baffle, and 10 be clump weight, and 11 be conveying bucket, and 12 be lateral supports, and 13 be bottom support, and 14 be drive
Dynamic device cover, 15 be brake, and 16 be flexible jacking screw rod, and 17 be steel sleeve, and 18 be steel bushing axis, and 19 be support axis pin.
Specific implementation mode
The following examples illustrate the utility model, but is not intended to limit the scope of the present invention.
Embodiment
A kind of concrete transmission device referring to Fig. 1 to Fig. 5, including is evenly distributedly arranged below walking supporting rack
Universal wheel 501 after four is provided with telescopic axis 6 and clump weight 10 on supporting rack of walking, upper end and the transmission bone of telescopic axis 6
Frame is connected, and the upper surface of transmission skeleton is provided with upper supporting roller 2, transmits and is provided with snub pulley 3 below skeleton, upper supporting roller 2 is under
The outer cover of carrying roller 3 is equipped with the conveyer belt 4 of annular;The rear commutation rollers rear end of conveyer belt 4 is provided with rear commutation rollers 101, passes
The middle part of band 4 is sent to be provided with middle commutation rollers 102, the preceding commutation rollers front end of conveyer belt 4 is provided with preceding commutation rollers 103, passes
Send and be provided with driving electronic box 7 on the transmission skeleton of the right end of band 4, below the transmission skeleton of the left end of conveyer belt 4 with concrete
The right end of chute 8 is connected, and concrete chute 8 tilts down from right to left, and concrete baffle is provided in middle commutation rollers 102
9, conveying bucket 11 is provided on the transmission skeleton in the front of preceding commutation rollers 103;It transmits universal before being provided with below the right end of skeleton
Wheel 502;
Supporting rack of walking includes bottom plate, and respectively there are two lateral supports 12 for connection for the left and right side below bottom plate, adjacent
Lateral supports 12 between be connected with bottom support 13;Universal wheel 5 is connected to lateral supports 12 by wheel shaft respectively
Lower end;
Driving electronic box 7 includes the driver cover 14 for being separately positioned on 4 both sides of conveyer belt, is respectively arranged in driver cover 14
Brake 15 is respectively arranged with screw hole on the side wall of driver cover 14, flexible jacking screw rod 16 is respectively arranged in screw hole;
Telescopic axis 6 includes steel sleeve 17, is provided with steel bushing axis 18 in the top of steel sleeve 17, on the side wall of steel sleeve 17
It is provided at least two pin shaft holes at 18 lower section of steel bushing axis, the branch extending into steel sleeve 17 is respectively arranged in pin shaft hole
Support axis pin 19.
As it can be seen that the concrete transmission device of the present embodiment, prepares each portion according to each thin portion structure specific size and model
Part, and assembled, weld it is integral.In welding and assembling process, transmission skeleton and upper supporting roller 2 and snub pulley 3 are completed first
Welding and installation, then complete the welding of entire transmission device skeleton, in the process can using simple rack as support, prevent
Only entire transmission device topples.After the welding for completing transmission skeleton, by rear commutation rollers 101, middle commutation rollers 102, preceding commutation
Installation is complete for idler wheel 103, upper supporting roller 2 and snub pulley 3, conveyer belt 4 etc., and tenses conveyer belt 4 using the jacking screw rod 16 that stretches, most
The welding and assembling of universal wheel 502 and its walking supporting rack of walking before completing afterwards, emphasis is it is noted that the walking supporting rack walked
The making and installation of top telescopic axis 6.Telescopic axis 6 is made of steel bushing axis 18, the steel sleeve 17 of high intensity, wherein in steel
The circle or square hole of steel sleeve 17 are cut on casing 17 at a certain distance, axis pin 19 easy to support passes through.
The concrete transmission device of the utility model is using transmission for the construction being applicable under site environment complicated and changeable
When device, it may be necessary to walk by equipment auxiliary transmission device is pulled, or the installation remote control driving walking on the transmission device
Component.Using rear universal wheel 501, construction operation in the radial direction of transmission device can reach;Utilize rear universal wheel 501 and preceding ten thousand
To wheel 502, construction operation in the front-back direction can reach;Using telescopic axis 6, the construction operation in vertical height direction can reach.
The concrete transmission device of the utility model, in combination with on-site actual situations, is lengthened or shortened whole transmission in processing and fabricating
The length of skeleton, preferably to agree with live practice of construction.
The concrete transmission device of the utility model, to ensure safety, needs to carry out to a certain degree place in construction
It is smooth, and walking supporting rack on be arranged counterweight platform, on counterweight platform place clump weight 10, prevent it from toppling or encountering stormy waves
Significantly shaking when weather.In the construction process, it needs to carry out brushing butter guarantor to " joint " position of entire transmission device
It supports.
For the Reinforced Concrete that borders on the sea, the appearance in crack undoubtedly proposes severe examine to the durability of structure
It tests, seawater washing away year in year out, internal reinforcement corrosion will aggravate, and the durability of entire concrete structure just can not ensure,
Only with the scheme that the distress in concrete cementation of fissures is repaired, cost input increases, and repairing effect is difficult to ensure that there are serious hidden danger.
In order to preferably overcome this problem, the multipair concrete of the prior art to optimize, wherein the slump is one important excellent
Change index, the control in architectural engineering history for crack mostly uses the concrete of the small slump, in the hope of reducing the internal heat of hydration,
The appearance in different form crack is prevented, to provide safeguard to the durability of total, safety.The coagulation of the utility model
Native transmission device is suitable for the restrictive conditions such as special concrete, complicated construction environment, can effectively solve the problem that mass concrete
Long-distance sand transport and pour problem.
The concrete transmission device of the utility model can further include such as lower structure, and transmission skeleton is in middle commutation
The bending structure to raise up is set as at idler wheel 102.Pin shaft hole is circular hole.Pin shaft hole is square hole.Conveying bucket 11 is infundibulate
Structure.It includes the crossbeam, longeron and cant beam being connected to transmit skeleton.Lateral supports 12 are stringer board.Lateral supports 12 and bottom
Plate is perpendicular.Bottom support 13 is transverse slat.Bottom support 13 is parallel with bottom plate.
It should be noted that the concrete transmission device of the utility model, mainly improves above structure, other
The component and knot that can realize corresponding function in the prior art may be used when needed in unmentioned function, component and structure
Structure is implemented.
Although above having made detailed description to the utility model with generality explanation and specific embodiment,
On the basis of the utility model, it can be made some modifications or improvements, this is apparent to those skilled in the art
's.Therefore, these modifications or improvements on the basis of without departing from the spirit of the present invention, belong to the utility model and want
Seek the range of protection.
Claims (10)
1. a kind of concrete transmission device, including universal wheel after being evenly distributedly arranged four below walking supporting rack
(501), which is characterized in that be provided with telescopic axis (6) and clump weight (10), the upper end of telescopic axis (6) on walking supporting rack
It is connected with transmission skeleton, the upper surface of transmission skeleton is provided with upper supporting roller (2), transmits and is provided with snub pulley (3) below skeleton,
The outer cover of upper supporting roller (2) and snub pulley (3) is equipped with the conveyer belt (4) of annular;The rear commutation rollers rear end of conveyer belt (4) is arranged
There are rear commutation rollers (101), middle commutation rollers (102), the preceding commutation rollers of conveyer belt (4) are provided in the middle part of conveyer belt (4)
Front end is provided with preceding commutation rollers (103), and driving electronic box (7), conveyer belt are provided on the transmission skeleton of the right end of conveyer belt (4)
(4) be connected with the right end of concrete chute (8) below the transmission skeleton of left end, concrete chute (8) from right to left to
Lower inclination is provided with concrete baffle (9) on middle commutation rollers (102), is set on the transmission skeleton in front of preceding commutation rollers (103)
It is equipped with conveying bucket (11);It transmits and is provided with preceding universal wheel (502) below the right end of skeleton;
Supporting rack of walking includes bottom plate, and respectively there are two lateral supports (12) for connection for the left and right side below bottom plate, adjacent
Bottom support (13) is connected between lateral supports (12);Universal wheel (5) is connected to lateral supports by wheel shaft respectively
(12) lower end;
Driving electronic box (7) includes the driver cover (14) for being separately positioned on conveyer belt (4) both sides, is set respectively in driver cover (14)
It is equipped with brake (15), screw hole is respectively arranged on the side wall of driver cover (14), flexible jacking spiral shell is respectively arranged in screw hole
Bar (16);
Telescopic axis (6) includes steel sleeve (17), and steel bushing axis (18) is provided in the top of steel sleeve (17), steel sleeve (17)
At least two pin shaft holes are provided at being located on side wall below steel bushing axis (18), is respectively arranged in pin shaft hole and extend into steel sleeve
(17) the support axis pin (19) in.
2. concrete transmission device as described in claim 1, which is characterized in that transmission skeleton is at middle commutation rollers (102)
It is set as the bending structure to raise up.
3. concrete transmission device as described in claim 1, which is characterized in that pin shaft hole is circular hole.
4. concrete transmission device as described in claim 1, which is characterized in that pin shaft hole is square hole.
5. concrete transmission device as described in claim 1, which is characterized in that conveying bucket (11) is funnel-shaped structure.
6. concrete transmission device as described in claim 1, which is characterized in that transmission skeleton includes the crossbeam being connected, indulges
Beam and cant beam.
7. concrete transmission device as described in claim 1, which is characterized in that lateral supports (12) are stringer board.
8. concrete transmission device as described in claim 1, which is characterized in that lateral supports (12) and bottom plate are perpendicular.
9. concrete transmission device as described in claim 1, which is characterized in that bottom support (13) is transverse slat.
10. concrete transmission device as described in claim 1, which is characterized in that bottom support (13) is parallel with bottom plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201721878690.6U CN207774181U (en) | 2017-12-28 | 2017-12-28 | A kind of concrete transmission device |
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CN201721878690.6U CN207774181U (en) | 2017-12-28 | 2017-12-28 | A kind of concrete transmission device |
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CN207774181U true CN207774181U (en) | 2018-08-28 |
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ID=63225701
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CN201721878690.6U Active CN207774181U (en) | 2017-12-28 | 2017-12-28 | A kind of concrete transmission device |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109252524A (en) * | 2018-10-24 | 2019-01-22 | 中国水利水电第四工程局有限公司 | Wind power foundation concrete working device |
CN110303586A (en) * | 2019-04-04 | 2019-10-08 | 中国一冶集团有限公司 | T beam concrete fast pouring device |
CN111776611A (en) * | 2020-07-20 | 2020-10-16 | 芜湖华洁环保设备有限公司 | Double dynamical direction bucket elevator |
CN117184850A (en) * | 2023-11-07 | 2023-12-08 | 广东盈坚实业集团有限公司 | Feeder for concrete production |
-
2017
- 2017-12-28 CN CN201721878690.6U patent/CN207774181U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109252524A (en) * | 2018-10-24 | 2019-01-22 | 中国水利水电第四工程局有限公司 | Wind power foundation concrete working device |
CN110303586A (en) * | 2019-04-04 | 2019-10-08 | 中国一冶集团有限公司 | T beam concrete fast pouring device |
CN111776611A (en) * | 2020-07-20 | 2020-10-16 | 芜湖华洁环保设备有限公司 | Double dynamical direction bucket elevator |
CN117184850A (en) * | 2023-11-07 | 2023-12-08 | 广东盈坚实业集团有限公司 | Feeder for concrete production |
CN117184850B (en) * | 2023-11-07 | 2024-01-16 | 广东盈坚实业集团有限公司 | Feeder for concrete production |
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