CN210713872U - Self-moving discharging platform and moving trolley thereof - Google Patents

Self-moving discharging platform and moving trolley thereof Download PDF

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Publication number
CN210713872U
CN210713872U CN201921233380.8U CN201921233380U CN210713872U CN 210713872 U CN210713872 U CN 210713872U CN 201921233380 U CN201921233380 U CN 201921233380U CN 210713872 U CN210713872 U CN 210713872U
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China
Prior art keywords
support frame
floor
cantilever beam
base
frame cantilever
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CN201921233380.8U
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Chinese (zh)
Inventor
李迥
董春山
严军波
陈旦波
赵强
陈彦红
蒋成杰
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Sunyoung Construction Group Co ltd
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Sunyoung Construction Group Co ltd
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Abstract

The utility model provides a self-propelled unloading platform and a travelling car thereof, wherein the platform comprises a support frame and a travelling car, one end of the support frame is fixed with the existing building floor structure, the other end extends out of the floor structure, and a U-shaped slideway is laid on the support frame along the inner side of the building floor to the outside of the floor structure; the movable trolley comprises a base and a surrounding baffle, wherein the surrounding baffle is detachably arranged above the base, and the bottom of the surrounding baffle is fixed on three peripheries of the base, so that an accommodating space with an open edge is formed by the surrounding baffle and the base and is used for accommodating collected turnover materials; the bottom of the base is provided with a guide wheel, so that the movable trolley moves along any direction or along the direction of a preset track; the periphery of the base is provided with a lifting ring for connecting the lifting device, and the lifting device is lifted to the previous floor by the lower floor. The utility model discloses can alleviate construction worker and collect the turnover material to travelling car's intensity of labour, improve the efficiency that the understructure floor scattered the turnover material of having been under construction and collected.

Description

Self-moving discharging platform and moving trolley thereof
Technical Field
The utility model relates to a building engineering field specifically, relates to a platform of unloading and travelling car of removing by oneself.
Background
The overhanging unloading platform is the most important transfer device for transferring internal rotation materials from a constructed lower floor to an upper floor to be constructed in the field of building construction, the device is mainly installed and fixed at the outer edge of the protruded floor of the lower floor at present, the overhanging unloading platform can not move, an operator carries the corresponding building construction rotation materials from a building to the transferring platform by bare hands, then transfers the rotation materials to the floor to be constructed by a vertical transportation mechanical tower crane, the overhanging unloading platform collects and carries the internal rotation materials from the lower floor to the unloading platform manually in the transfer of the rotation materials, on one hand, the transfer is time-consuming and labor-consuming, the work efficiency is low, and meanwhile, the safety risks of falling objects and falling objects at high places in high-place operation exist, on the other hand, the overhanging steel platform rarely adopts a standard part form, and all the components are connected by welding, the welding process who adopts will encorbelment main outrigger and the secondary beam etc. of unloading the platform and couple together, receive welding process's restriction, the steel platform technology of unloading of encorbelmenting that the processing becomes is loaded down with trivial details, the acceptance rule is imperfect, product quality guarantees the difficulty, and product maintenance does not have specific effective regulation yet, product reuse has certain limitation, the component dismouting of non-standard piece form, it is relatively complicated, management such as component recovery and reuse is also inconvenient, it is not conform to the green construction and the theme of environmental protection and energy saving that current national administrative department advocated.
Through retrieval, chinese patent publication No. CN107082354A discloses a self-discharging transportation cage and a construction method thereof, the self-discharging transportation cage includes: the suspension cage body comprises a bottom plate and side plates arranged around the bottom plate in a surrounding way, wherein an opening is formed in one side of each side plate facing a floor; the second end of the track extends out of the cage body through the opening, and the second end of the track is erected on a floor after the cage body stops at the floor; and the movable bearing platform is used for placing materials, is arranged on the track, can slide along the track and can slide along the track. Although the cage body can slide along the rail along the moving bearing platform, the cage body only slides along the rail in a single direction, the sliding distance is limited, namely the cage body is limited to the range of the rail, and turnover materials at other positions in a floor still need to be collected manually and conveyed into the cage body.
SUMMERY OF THE UTILITY MODEL
To the defect among the prior art, the utility model aims at providing a platform of unloading and travelling car of removing by oneself.
According to a first aspect of the utility model, a mobile trolley is provided for collecting turnover materials in any area of a floor, the mobile trolley comprises a base and a baffle,
the enclosure is detachably arranged above the base, and the bottom of the enclosure is fixed on three peripheries of the base, so that an accommodating space with an open edge is formed by the enclosure and the base and used for accommodating the collected turnover materials;
the bottom of the base is provided with a guide wheel, so that the movable trolley moves along any direction or along a preset track direction;
the periphery of the base is provided with a lifting ring for connecting the lifting device, so that the turnover materials are collected and transferred to the appointed floor from the floor.
Preferably, the base is a supporting platform formed by assembling two longitudinal rods and a plurality of transverse rods, and a base plate is arranged above the supporting platform and used for placing turnover materials; the transverse rods are transversely arranged between the two longitudinal rods at intervals, and two ends of each transverse rod are respectively connected with the two longitudinal rods on two sides.
Preferably, enclose and keep off and assemble by a plurality of pole settings, a plurality of horizon bars and the dense mesh safety net of protection and form, wherein, the bottom of pole setting is vertical fixation respectively in the three edge of base, it is adjacent pass through between the pole setting level the horizon bar transverse connection the U type rail that has two long limits and a minor face is enclosed into to the top of base the outside of U type rail sets up the dense mesh safety net of one deck protection, makes U type rail with the base formation has an opening on one side the accommodation space, the opening does the loading and unloading material mouth of travelling car.
The utility model discloses another aspect provides a platform of unloading of removing by oneself, including above-mentioned travelling car.
Preferably, the building floor structure also comprises a support frame, one end of the support frame is fixed with the existing building floor structure, the other end of the support frame extends out of the floor structure,
paving a U-shaped slideway on the support frame along the inner side of the floor slab structure to the outer part of the floor slab structure;
the movable trolley moves in any area in a floor, so that the turnover materials in any area in the floor are collected; and the guide wheel of the movable trolley can move along the U-shaped slide way, so that the collected turnover materials are conveyed to the outside of the floor slab structure from the inner side of the floor slab structure, and the turnover materials collected by the movable trolley are transferred.
Preferably, the support frame comprises a first support frame cantilever beam, a second support frame cantilever beam, a cross brace and an inclined brace; one end of each of the first support frame cantilever beam and the second support frame cantilever beam is fixed on the inner side of the floor slab structure, and the other end of each of the first support frame cantilever beam and the second support frame cantilever beam extends out of the floor slab structure;
a plurality of cross braces are transversely arranged between the first support frame cantilever beam and the second support frame cantilever beam at intervals along the length direction, two ends of each cross brace are respectively welded on the first support frame cantilever beam and the second support frame cantilever beam, and the first support frame cantilever beam and the second support frame cantilever beam are connected through the cross braces to form an integral stress structure;
the inclined support is arranged below the first support frame cantilever beam and the second support frame cantilever beam, one end of the inclined support is fixed at the bottom of the first support frame cantilever beam and the bottom of the second support frame cantilever beam, and the other end of the inclined support is fixed at the outer side of the lower floor boundary beam and used for supporting an upper structure.
Preferably, the U-shaped slide is arranged at the top of the first support frame outrigger and the second support frame outrigger, and the U-shaped slide is used for moving the moving trolley for collecting materials.
Preferably, the support frame is further provided with a limiting device, the limiting device is located at the end of the support frame outside the floor slab structure and located outside the blocking block, and the limiting device is used for preventing the moving trolley from moving outwards.
Preferably, the limiting device comprises a first limiting vertical rod, a second limiting vertical rod and a limiting cross rod, wherein the bottom of the first limiting vertical rod is fixed on the first support frame cantilever beam, the bottom of the second limiting vertical rod is fixed on the second support frame cantilever beam, the limiting cross rod is transversely arranged between the first limiting vertical rod and the second limiting vertical rod, and two ends of the limiting cross rod are respectively connected with the first limiting vertical rod and the second limiting vertical rod.
Preferably, the support frame is provided with a blocking block, the blocking block is located on the inner side of the limiting device, and the blocking block is transversely arranged on one end of the track outside the floor slab structure and used for preventing the moving trolley from continuously moving outwards.
Compared with the prior art, the utility model discloses at least one kind's beneficial effect as follows has:
the utility model discloses a travelling car is gone can remove in the floor arbitrary region, the travelling car removes and spreads the position to the turnover material, realize the turnover material and load on the spot, can push away to strutting arrangement's U-shaped slide through the manual work after filling with, on the other hand, this travelling car can also be followed and preset the track direction and removed, make the travelling car remove to the building periphery by the inside of building floor structure, furthermore, rings and the overhead hoist through setting up on the travelling car are connected, the convenient turnover material with on the travelling car is hoisted to superstructure, supply superstructure template support system construction to use.
The utility model discloses another aspect provides a self-propelled platform of unloading through set up the U-shaped slide on supporting the support body, makes the travelling car move to the building periphery by the inside of building floor structure, makes things convenient for the tower crane to hoist the turnover material on the travelling car to superstructure, supplies superstructure template support system construction use; furthermore, the travelling car can move inside and outside the floor along the U-shaped slide of the support frame, and can move in the floor after the U-shaped slide is lowered, so that the moving range of the travelling car is enlarged to the whole floor, the travelling car can be moved to the distribution position of the turnover materials, the turnover materials are loaded on site, and the travelling car is pushed to the U-shaped slide of the support device by an installer after being filled with the turnover materials.
By applying the technology through an analysis technology, the floor turnover materials with the same area and structure are collected and transferred, the labor force can be saved by 40%, and the time can be saved by 60%; the turnover material collecting device has the advantages that the labor intensity of building workers for collecting turnover materials to the movable trolley can be reduced, the collection efficiency of the turnover materials scattered on the constructed floor of the lower-layer structure is improved, meanwhile, the turnover materials can be bound well before entering the supporting frame, the vertical transportation machinery such as a tower crane can be conveniently lifted, the economic effect is good, and the turnover material collecting device has great popularization and application values.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of a mobile cart according to a preferred embodiment of the present invention;
fig. 2 is a side elevation view of a self-propelled unloading platform in accordance with a preferred embodiment of the present invention;
fig. 3 is a front elevation view of a self-propelled unloading platform according to a preferred embodiment of the present invention;
fig. 4 is a schematic perspective view of a self-propelled unloading platform according to a preferred embodiment of the present invention;
the scores in the figure are indicated as: the device comprises a first support frame cantilever 1a, a second support frame cantilever 1b, a cross brace 2, an inclined brace 3, a U-shaped slideway 4, a first limit vertical rod 5a, a second limit vertical rod 5b, a limit cross rod 6, a blocking block 7, a horizontal anchoring part 8, a transition plate 9, a movable trolley 10, a base 101, a fence 102, a longitudinal rod 103, a transverse rod 104, a base plate 105, a vertical rod 106, a transverse horizontal rod 107, a longitudinal horizontal rod 108, a guide wheel bracket 109, a guide wheel 110, a hanging ring 111, a protective dense mesh safety net 112 and a support frame 201.
Detailed Description
The present invention will be described in detail with reference to the following embodiments. The following examples will assist those skilled in the art in further understanding the present invention, but are not intended to limit the invention in any way. It should be noted that various changes and modifications can be made by one skilled in the art without departing from the spirit of the invention. These all belong to the protection scope of the present invention.
Hereinafter, "first" and "second" are used merely for convenience of description, and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present embodiment, "a plurality" means two or more unless otherwise specified.
Referring to fig. 1, which is a schematic structural diagram of a mobile cart 10 according to an embodiment of the present invention, the mobile cart 10 may be used to collect turnover materials in any area of a floor. As shown in fig. 1, the mobile cart 10 includes a base 101 and a barrier 102, wherein the barrier 102 is detachably disposed above the base 101, and the bottom of the barrier 102 is fixed on three peripheries of the base 101, so that the barrier 102 and the base 101 form an accommodating space with an open edge for accommodating the collected turnover materials. Four guide wheel brackets 109 are arranged at the bottom of the base 101, and guide wheels 110 are mounted on the guide wheel brackets 109, so that the mobile trolley 10 can move in any direction or along a preset track direction. The periphery of the base 101 is provided with a lifting ring 111 for connecting a lifting device, and the movable trolley 10 and the turnover materials collected by the movable trolley are transferred from the floor to an appointed floor through the lifting device. The lifting device can be realized by vertical transportation machinery such as a tower crane and other prior art.
In a preferred embodiment, at least two hanging rings 111 are disposed on the mobile cart 10, the hanging rings 111 are disposed on two side edges of the base 101, and the two hanging rings 111 are disposed on two opposite sides of the base 101 respectively for connecting with a hoisting device. In this embodiment, four hanging rings 111 are provided to further keep the moving trolley 10 stable during the hoisting process.
As a preferred embodiment, referring to fig. 1, a base 101 of a mobile cart is a supporting platform formed by assembling two longitudinal rods 103 and a plurality of transverse rods 104, wherein the transverse rods 104 are arranged between the two longitudinal rods 103 at intervals in the transverse direction, and two ends of the transverse rods 104 are respectively connected with the two longitudinal rods 103 on two sides. A tie plate 105 is provided above the support platform for resting the turnaround material. In a specific embodiment, the longitudinal rods 103 and the transverse rods 104 are steel tubes, and two ends of the transverse rods 104 are respectively connected with the two longitudinal rods 103 on two sides by fasteners, or other connecting components which can be used for connecting steel tubes in the prior art can be used.
As another preferred embodiment, referring to fig. 1, the enclosure 102 is formed by assembling a plurality of vertical rods 106, a plurality of horizontal rods, and a protective dense mesh safety net 112, wherein the bottom of the vertical rods 106 are respectively vertically fixed on three sides of the base 101, adjacent vertical rods 106 are horizontally connected through the horizontal rods, a U-shaped enclosure with two long sides and one short side is defined above the base 101, and a layer of protective dense mesh safety net 112 is arranged outside the U-shaped enclosure, so that the U-shaped enclosure and the base 101 form an accommodating space with an opening at one side, and the opening is used as a loading and unloading port of the mobile cart 10. The protective dense mesh safety net 112 can prevent the turnover materials from falling off in the moving process of the moving trolley, play a role of containment, and particularly prevent materials with smaller particles such as dust from being thrown outwards. In a specific embodiment, the vertical rods 106 and the horizontal rods are made of steel pipes, wherein the horizontal rods may include steel pipes with different lengths, and may be divided into horizontal rods 107 and longitudinal horizontal rods 108, in a specific implementation, the horizontal rods 107 or the longitudinal horizontal rods 108 are respectively connected according to a distance between adjacent vertical rods 106, multiple layers of horizontal rods 12 are formed in a height direction of the vertical rods 106, and the joints of the rod members are connected by fasteners.
Referring to fig. 2-4, an embodiment of the self-propelled unloading platform including the above-mentioned travelling car is schematically shown in the structural diagram, and the self-propelled unloading platform in the figure includes a support frame 201 and a travelling car 10, one end of the support frame 201 is fixed with the existing building floor structure, and the other end extends out of the floor structure, and a U-shaped slideway 4 is laid on the support frame 201 along the inner side of the floor structure to the outer side of the floor structure. The movable trolley 10 moves in any area of a floor, the movable trolley 10 can be manually matched to collect turnover materials in any area of the floor, and the guide wheels 110 of the movable trolley 10 move along the U-shaped slide ways 4, so that the collected turnover materials are conveyed to the outside of a floor slab structure from the inner side of the floor slab. The hoisting device is connected with a hoisting ring 111 of the movable trolley 10, and the movable trolley 10 and the collected turnover materials are conveyed to the appointed floor.
In an embodiment, referring to fig. 4, the support frame 201 includes a first support frame outrigger 1a, a second support frame outrigger 1b, a cross brace 2, and an inclined brace 3, wherein one end of the first support frame outrigger 1a and one end of the second support frame outrigger 1b are fixed to the inner side of the floor slab structure, and the other end of the first support frame outrigger 1a and the other end of the second support frame outrigger extend out of the floor slab structure. Specifically, one end of the first support frame cantilever beam 1a and one end of the second support frame cantilever beam 1b are fixed with the floor structure by adopting a horizontal anchoring part 8, the horizontal anchoring part 8 can adopt a bolt penetrating through a concrete floor, and gaskets are arranged at two ends of the bolt anchoring floor. A plurality of cross braces 2 are transversely arranged between the first support frame cantilever beam 1a and the second support frame cantilever beam 1b at intervals along the length direction, two ends of each cross brace 2 are respectively welded on the first support frame cantilever beam 1a and the second support frame cantilever beam 1b, and the first support frame cantilever beam 1a and the second support frame cantilever beam 1b are connected through the cross braces 2 to form an integral stress structure.
When the concrete implementation, adjacent stull 2 interval distance is 500mm, makes the support body whole more stable.
As a preferred embodiment, the inclined strut 3 is disposed below one end of the first support bracket outrigger 1a and the second support bracket outrigger 1b located outside the floor structure, one end of the inclined strut 3 is fixed to the bottom of the first support bracket outrigger 1a and the second support bracket outrigger 1b, and the other end is fixed to the outside of the lower floor edge beam for supporting the superstructure. When the concrete implementation, 2 channel-section steels can be adopted for bracing 3, and with the U-shaped opening of channel-section steel to the side during setting up, weld the one end of two channel-section steels respectively in the bottom of first support frame outrigger 1a, the bottom of second support frame outrigger 1b, the other end welds with the pre-buried steel sheet in the floor boundary beam outside down respectively. A stable support frame 201 structure is formed on the existing building floor structure.
The U-shaped slide 4 is arranged at the tops of the first support frame cantilever beam 1a and the second support frame cantilever beam 1b, the bottom of the U-shaped slide 4 is connected with the tops of the first support frame cantilever beam 1a and the second support frame cantilever beam 1b in a welding mode, and the U-shaped slide 4 is formed on the support frame 201 and faces the outside of a floor slab structure along the inner side of a building floor slab.
As another preferred embodiment, referring to fig. 4, the support frame 201 is further provided with a transition plate 9, the transition plate 9 is located at one end of the first support frame outrigger 1a and the second support frame outrigger 1b inside the existing building floor, and the transition plate 9 has a slope. The high end of the transition plate 9 is contacted with the first support frame cantilever beam 1a and the second support frame cantilever beam 1b, and the movable trolley 10 can be moved to the U-shaped slideway 4 from the ground through the transition plate 9. The movable trolley 10 is moved to the U-shaped slide 4 in a manual mode, so that labor is saved, and the use is convenient.
In other preferred embodiments, referring to fig. 4, the support frame 201 is further provided with a blocking block 7, the blocking block 7 is transversely fixed on one end of the U-shaped slideway 4 outside the floor structure, and the blocking block 7 is clamped on a cantilever beam of the support frame 201 and used for preventing the mobile trolley from further moving outwards. The supporting frame 201 is further provided with a limiting device, the limiting device is located at the end portion of the supporting frame 201 outside the floor structure and located on the outer side of the blocking block 7, and the limiting device is used for preventing the moving trolley from moving outwards. The blocking block 7 is positioned at the outer end of the cantilever beam of the support frame 201 and within the limiting device and is used for blocking the buffer of the movable trolley in the outward moving process and preventing the movable trolley 10 from continuously moving outward, so that the brake of the movable trolley 10 is realized.
The limiting device comprises a first limiting vertical rod 5a, a second limiting vertical rod 5b and a limiting cross rod 6, wherein the bottom of the first limiting vertical rod 5a is fixed on a first support cantilever 1a, the bottom of the first limiting vertical rod 5a can be welded on the first support cantilever 1a, the bottom of the second limiting vertical rod 5b is welded on a second support cantilever 1b, the limiting cross rod 6 is transversely arranged between the first limiting vertical rod 5a and the second limiting vertical rod 5b, two ends of the limiting cross rod 6 are respectively connected with the first limiting vertical rod 5a and the second limiting vertical rod 5b through steel pipe fasteners.
In other preferred embodiments, referring to fig. 4, a first rail and a second rail are disposed on the supporting frame 201, and the first limiting vertical rod 5a and the second limiting vertical rod 5b are both formed by two steel rods connected at an included angle to form a long side and a short side. The first limiting vertical rod 5a and the second limiting vertical rod 5b are connected by two steel rods at an included angle to form a long edge and a short edge, one end of the short edge of the first limiting vertical rod 5a is fixed at the bottom, close to the end, of the first support frame cantilever beam 1a, one end of the long edge is fixed at the outer side edge of the first support frame cantilever beam 1a, and a protection structure, namely a first railing, located outside the first support frame cantilever beam 1a is formed. One end of the short side of the second limiting vertical rod 5b is fixed at the bottom, close to the end, of the second support frame cantilever beam 1b, and one end of the long side is fixed at the outer side edge of the second support frame cantilever beam 1b, so that a protection structure, namely a second railing, located at the outer side of the second support frame cantilever beam 1b is formed. The first and second rails are used to prevent the dolly 10 from being punched out of the two sides of the U-shaped chute 4.
Based on the structural characteristics of the self-moving discharging platform, an embodiment of a construction method of the self-moving discharging platform is provided, and the embodiment may include the following steps:
firstly, designing a support frame 201 and a movable trolley 10 according to a design drawing of a building structure to be used, and carrying out safety analysis and calculation on the support frame 201; in order to meet the requirement of collection and transportation of turnover materials in structural construction, the support frame 201 should have sufficient rigidity and strength, and simultaneously meet the requirement of the movable trolley 10 on safety in walking, and the design load value meets the requirement of structural design specifications.
Step two, processing corresponding prefabricated components according to the design of the support frame 201, and assembling each prefabricated component; the support frame 201 is hoisted to a floor site, one ends of a first support frame cantilever beam 1a and a second support frame cantilever beam 1b of the support frame 201 are fixed on a concrete floor, the other ends of the first support frame cantilever beam and the second support frame cantilever beam extend out of a floor structure, one ends of the first support frame cantilever beam 1a and the second support frame cantilever beam 3 extend out of the floor structure through supporting, one ends of the inclined struts 3 are fixed with the bottoms of the first support frame cantilever beam 1a and the second support frame cantilever beam 1b, and the other ends of the inclined struts are fixed outside a boundary beam of a lower floor.
Processing each prefabricated part of the movable trolley 10 according to the design of the movable trolley 10, and assembling each prefabricated part; when the step is specifically implemented, the material preparation and the preliminary processing of the components of the movable trolley 10 can be firstly carried out according to the design of the movable trolley 10, the pre-assembly test of the material table is carried out, then the processing quality of the components of the material table is further adjusted according to the pre-assembly result, and the prefabricated components of the movable trolley 10 are assembled again. After the material table is assembled, the suspension rings 111 of the traveling car 10 are mounted, and preparation work before the material table is integrally lifted is performed.
Step four, the moving trolley 10 is placed in a floor, the guide wheels 110 are arranged at the bottom of the moving trolley 10, so that the moving trolley 10 can move in any area of the floor, operation workers can conveniently transfer turnover materials into the moving trolley 10, after the moving trolley 10 is filled with the turnover materials, the moving trolley 10 is moved to the supporting frame 201 in the floor, and collection of the turnover materials in any area of the floor is achieved.
Step five, after the turnover materials are collected in the step four, the movable trolley 10 is moved into the U-shaped slideway 4 of the supporting frame 201 in the floor, the guide wheel 110 of the movable trolley 10 can move along the direction of the U-shaped slideway 4, then the movable trolley 10 is pushed to continue to move outwards along the U-shaped slideway 4 until the guide wheel 110 at the front part collides with the stopping block 7, the speed is reduced and the movable trolley 10 is stopped, so that the movable trolley 10 is completely moved onto the supporting frame 201 outside the floor slab structure, the collected turnover materials are moved to the periphery of the building from the inside of the building floor slab structure, and the turnover materials are hoisted to the first floor of the structure. In this step, the material platform is hoisted by using the integral hoisting device, the trial hoisting is performed before the hoisting, the formal hoisting can be performed after the movable trolley 10 is ensured to be kept stable, the turnover materials on the charging trolley are hoisted and transported to the superstructure for the construction and use of a superstructure formwork support system, and the transfer of the turnover materials collected by the charging trolley is realized. The integral hoisting device is placed outside the support frame 201 and is positioned inside the first limiting vertical rod 5a, the second limiting vertical rod 5b and the limiting cross rod 6 (the limiting parts are used for buffering the charging trolley 10 in the outward moving process and preventing the charging trolley 10 from continuously moving outward), and then the charging trolley 10 and the collected turnover materials are transported to the appointed floor and position through the hoisting device.
When this embodiment is implemented specifically, for saving construction cost, but support frame 201 cycle use, accomplish the dolly 10 of feeding and the turnover material handling that bears to appointed floor in the back, dismantle support frame 201 again, install the support frame 201 of dismantling at appointed floor, the dolly 10 of feeding is used in the deuterogamy, accomplishes the collection and the transfer of the turnover material of this floor. The supporting frame 201 can be installed on a required floor respectively, the construction process is more convenient and faster by adopting the mode, the disassembling step is omitted, and the defect of high construction cost is overcome.
The utility model discloses above-mentioned platform of unloading of moving by oneself can make the dolly of feeding that bears the removal of turnover material remove to the building periphery by the inside of building floor structure, can realize the turnover material collection of optional position in the floor with the dolly cooperation of feeding.
All the parts used in this document can be standard parts or common technologies, if not detailed, and can be purchased from the market, the specific connection mode of each part can be conventional means such as bolts, rivets and welding, etc., which are mature in the prior art, the machinery, parts and electrical equipment are conventional models in the prior art, and the circuit connection is conventional in the prior art, which is easy to be realized by those skilled in the art, and no specific description is given here.
The foregoing description of the specific embodiments of the invention has been presented. It is to be understood that the present invention is not limited to the specific embodiments described above, and that various changes and modifications may be made by those skilled in the art within the scope of the appended claims without departing from the spirit of the invention.

Claims (10)

1. A movable trolley is used for collecting turnover materials in any area of a floor, and is characterized by comprising a base and a surrounding baffle, wherein,
the enclosure is detachably arranged above the base, and the bottom of the enclosure is fixed on three peripheries of the base, so that an accommodating space with an open edge is formed by the enclosure and the base and used for accommodating collected turnover materials;
the bottom of the base is provided with a guide wheel, so that the movable trolley moves along any direction or along a preset track direction;
the periphery of the base is provided with a lifting ring for connecting the lifting device, so that the collected turnover materials are transferred to the appointed floor from the floor.
2. The mobile trolley according to claim 1, wherein the base is a support platform assembled by two longitudinal rods and a plurality of transverse rods, and a base plate is arranged above the support platform and used for placing turnover materials; the transverse rods are transversely arranged between the two longitudinal rods at intervals, and two ends of each transverse rod are respectively connected with the two longitudinal rods on two sides.
3. The travelling car according to claim 1, wherein the enclosure is formed by assembling a plurality of vertical rods, a plurality of horizontal rods and protective dense mesh safety nets, wherein the bottoms of the vertical rods are respectively and vertically fixed on three edges of the base, the adjacent vertical rods are horizontally connected through the horizontal rods, a U-shaped enclosure with two long edges and one short edge is defined above the base, the protective dense mesh safety nets are arranged on the outer side of the U-shaped enclosure, so that the U-shaped enclosure and the base form the accommodating space with an opening on one side, and the opening is a loading and unloading port of the travelling car.
4. A self-moving discharge platform, characterized in that it comprises a mobile trolley according to any one of claims 1-3.
5. The self-propelled platform of claim 4, further comprising a support frame, one end of the support frame being secured to the existing building floor structure and the other end extending outside the floor structure,
paving a U-shaped slideway on the support frame along the inner side of the floor slab structure to the outer part of the floor slab structure;
the movable trolley moves in any area in a floor, so that the turnover materials in any area in the floor are collected; the guide wheels of the movable trolley can move along the U-shaped slide ways, so that the collected turnover materials are conveyed to the outside of the floor slab structure from the inner side of the floor slab structure; the transfer of the turnover materials collected by the moving trolley is realized.
6. A self-propelled discharge platform according to claim 5,
the support frame comprises a first support frame cantilever beam, a second support frame cantilever beam, a cross brace and an inclined brace; one end of each of the first support frame cantilever beam and the second support frame cantilever beam is fixed on the inner side of the floor slab structure, and the other end of each of the first support frame cantilever beam and the second support frame cantilever beam extends out of the floor slab structure;
a plurality of cross braces are transversely arranged between the first support frame cantilever beam and the second support frame cantilever beam at intervals along the length direction, two ends of each cross brace are respectively welded on the first support frame cantilever beam and the second support frame cantilever beam, and the first support frame cantilever beam and the second support frame cantilever beam are connected through the cross braces to form an integral stress structure;
the inclined support is arranged below the first support frame cantilever beam and the second support frame cantilever beam, one end of the inclined support is fixed at the bottom of the first support frame cantilever beam and the bottom of the second support frame cantilever beam, and the other end of the inclined support is fixed at the outer side of the lower floor boundary beam and used for supporting an upper structure.
7. A self-propelled discharge platform according to claim 6,
the U-shaped slide is arranged at the tops of the first support frame cantilever beam and the second support frame cantilever beam, and the U-shaped slide is used for collecting materials and moving the movable trolley.
8. The self-propelled unloading platform according to claim 6, wherein the support frame is further provided with a limiting device, the limiting device is located at the end of the support frame outside the floor structure, and the limiting device is used for preventing the travelling trolley from moving outwards.
9. The self-propelled platform of claim 8, wherein the position limiting device comprises a first position limiting vertical rod, a second position limiting vertical rod, and a position limiting cross rod, wherein the bottom of the first position limiting vertical rod is fixed to the first support frame outrigger, the bottom of the second position limiting vertical rod is fixed to the second support frame outrigger, the position limiting cross rod is transversely disposed between the first position limiting vertical rod and the second position limiting vertical rod, and two ends of the position limiting cross rod are respectively connected to the first position limiting vertical rod and the second position limiting vertical rod.
10. The self-propelled unloading platform according to claim 9, wherein the support frame is provided with a stop block, the stop block is located inside the limiting device, and the stop block is transversely arranged on one end of the track outside the floor structure and used for stopping the mobile cart from further moving outwards.
CN201921233380.8U 2019-08-01 2019-08-01 Self-moving discharging platform and moving trolley thereof Expired - Fee Related CN210713872U (en)

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Application Number Priority Date Filing Date Title
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110409845A (en) * 2019-08-01 2019-11-05 舜元建设(集团)有限公司 A kind of discharging platform and its construction method of automatic moving
CN115822283A (en) * 2022-12-12 2023-03-21 中建八局第三建设有限公司 Collapsible slip material platform of easy dismouting

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110409845A (en) * 2019-08-01 2019-11-05 舜元建设(集团)有限公司 A kind of discharging platform and its construction method of automatic moving
CN110409845B (en) * 2019-08-01 2024-05-28 舜元建设(集团)有限公司 Self-moving discharging platform and construction method thereof
CN115822283A (en) * 2022-12-12 2023-03-21 中建八局第三建设有限公司 Collapsible slip material platform of easy dismouting

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