CN215717096U - Hanging basket forearm - Google Patents
Hanging basket forearm Download PDFInfo
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- CN215717096U CN215717096U CN202122087387.7U CN202122087387U CN215717096U CN 215717096 U CN215717096 U CN 215717096U CN 202122087387 U CN202122087387 U CN 202122087387U CN 215717096 U CN215717096 U CN 215717096U
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Abstract
The utility model discloses a hanging basket forearm, which comprises a support, a steel wire rope support and a steel wire rope, wherein one end of the steel wire rope support is wound on the support or the steel wire rope support, and the other end of the steel wire rope support is used for connecting a hanging basket; the bracket comprises a counterweight end and a cantilever end, wherein the counterweight end is used for supporting the top of the building body, and the cantilever end is used for suspending outside the outer wall of the building body; the steel wire rope bracket is provided with a first limiting part for limiting the suspension path of the steel wire rope; the steel wire rope support is hinged or connected to the cantilever end in a sliding mode so that the first limiting piece can be close to and far away from the outer wall of the building body. This hanging flower basket forearm utilizes wire rope to pull the hanging flower basket and goes up and down, still combines wire rope support to realize pulling the hanging flower basket and be close to and keep away from the building body outer wall simultaneously to nimble, adjust the relative position relation of hanging flower basket and building body outer wall safely, can ensure that the hanging flower basket crosses the barrier of building body outer wall smoothly, can in time reduce the interval of hanging flower basket and building body outer wall again, make things convenient for operating personnel to carry out the construction operation to the outer wall.
Description
Technical Field
The utility model relates to the field of building construction, in particular to a hanging basket front arm.
Background
The traditional hanging basket equipment mainly comprises a plurality of combined parts such as a suspension mechanism, a balance weight, a safety lock, a lifting machine, a platform and an electrical appliance control system. The balance weight is arranged on the roof of the building body to be constructed, and the support of the suspension mechanism is connected with the balance weight; one end of the hanging mechanism extends out of the outer wall of the building body, and the hanging basket is hung through a steel wire rope.
In the construction operation of the hanging basket, the outer wall of the building body is a working face, so that the hanging mechanism realizes the hanging and positioning of the hanging basket on one side of the working face through the steel wire rope. However, due to the structures such as eave, outer wall decoration and an air conditioner external unit, the hanging basket has a high risk when moving outside the outer wall of the building body, and the hanging basket can also interfere with the construction of an operator on the outer wall when being in a special position of the building body, for example, if the horizontal distance between the hanging basket and the outer wall is too large, the operator needs to stretch the trunk out of the hanging basket, so that the operation risk and the risk of damage to the hanging basket are increased, and the construction effect is low; if the horizontal distance between the hanging basket and the outer wall is small, the problems that the steel wire rope is worn, the hanging basket collides with the outer wall and the like easily occur.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a hanging basket front arm which is beneficial to simply and safely avoiding hanging baskets from structures such as eave, outer wall decoration, air conditioner external units and the like of a building body, simplifying the construction of operators and improving the construction safety and the construction efficiency.
In order to achieve the aim, the utility model provides a hanging basket forearm, which comprises a support, a steel wire rope support and a steel wire rope, wherein one end of the steel wire rope support is wound on the support or the steel wire rope support, and the other end of the steel wire rope support is used for connecting a hanging basket; the bracket comprises a counterweight end and a cantilever end, wherein the counterweight end is used for supporting the top of the building body, and the cantilever end is used for suspending outside the outer wall of the building body; the steel wire rope bracket is provided with a first limiting part used for limiting the suspension path of the steel wire rope; the steel wire rope support is hinged or connected to the cantilever end in a sliding mode so that the first limiting piece can be close to or far away from the building outer wall.
Preferably, a telescopic cylinder is further included; the steel wire rope support is connected with the telescopic rod of the telescopic cylinder.
Preferably, the number of the bracket, the steel wire rope bracket and the telescopic cylinder is two; and one steel wire rope support is connected with one support and one telescopic cylinder.
Preferably, the cylinder body of the telescopic cylinder is fixed to the bracket.
Preferably, the steel wire rope support dead axle is hinged to the cantilever end.
Preferably, the rod body of the steel wire rope support is provided with a bending section for avoiding the eave and the parapet of the building body; the bending section is provided with a second limiting part for limiting the suspended path of the steel wire rope.
Preferably, the second limiting part is a tensioning wheel arranged on the inner side of the bending section; the steel wire rope positioned between the cantilever end and the first limiting piece is wound on the tensioning wheel.
Preferably, the steel wire rope support is an L-shaped rod; the L-shaped rod is connected to the cantilever end at an angle of a bending vertex angle deviating from the building body outer wall; the top end of the longitudinal rod of the L-shaped rod is hinged to the cantilever end; the first limiting part is arranged on the cross rod of the L-shaped rod.
Preferably, the first limiting member comprises two limiting wheels; the two axial ends of any limiting wheel are provided with limiting wheel rims; the central axes of the two limiting wheels are parallel, and the distance between the central axes of the two limiting wheels is equal to the sum of the radiuses of the two limiting wheels; the limiting wheel rims of the two limiting wheels are bound on the radial peripheral side of the steel wire rope.
Preferably, the support further comprises a support rod for supporting the top of the building body; the supporting rod is positioned between the cantilever end and the counterweight end; the support rod is close to the cantilever end.
Compared with the background technology, the hanging basket front arm provided by the utility model comprises a support, a steel wire rope support and a steel wire rope, wherein one end of the steel wire rope support is wound on the support or the steel wire rope support, and the other end of the steel wire rope support is used for connecting a hanging basket; the bracket comprises a counterweight end and a cantilever end, wherein the counterweight end is used for supporting the top of the building body, and the cantilever end is used for suspending outside the outer wall of the building body; the steel wire rope bracket is provided with a first limiting part used for limiting the suspension path of the steel wire rope; the steel wire rope support is hinged or connected to the cantilever end in a sliding mode so that the first limiting piece can be close to or far away from the building outer wall.
The structure is improved on the basis of the structure of the existing hanging basket equipment, and besides the winding connection relation of the steel wire rope on the support is kept, the steel wire rope support is used for positioning the hanging path of the steel wire rope. The steel wire rope is wound relative to the bracket, so that the steel wire rope can pull the hanging basket up and down; the first locating part that the articulated or sliding connection relation of wire rope support and support can realize wire rope support is close to and keeps away from the building external wall, and first locating part then is used for retraining wire rope's dangling route, makes wire rope follow wire rope support synchronous motion, realizes wire rope from this and pulls the displacement that the hanging flower basket produced the horizontal direction, makes the hanging flower basket be close to and keeps away from the building external wall.
Therefore, the hanging basket front arm provided by the utility model can not only adjust the height of the hanging basket, but also adjust the horizontal distance of the hanging basket relative to the building outer wall, is beneficial to the hanging basket to avoid a raised structure of the building outer wall in time, reduces the labor intensity and safety risk, and improves the construction efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a hanging basket forearm provided by an embodiment of the utility model.
The building comprises a building body, a supporting rod, a steel wire rope support, a steel wire rope, a 4-telescopic cylinder, a 5-tensioning wheel and a 6-limiting wheel, wherein the building body comprises 01-the top of the building body, 02-the outer wall of the building body, 03-the eave of the building body, 04-the parapet, 1-the support, 11-the counterweight end, 12-the cantilever end, 13-the supporting rod, 2-the steel wire rope support, 3-the steel wire rope, 4-the telescopic cylinder, 5-the tensioning wheel and 6-the limiting wheel.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In order that those skilled in the art will better understand the disclosure, the utility model will be described in further detail with reference to the accompanying drawings and specific embodiments.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a front arm of a hanging basket according to an embodiment of the present invention.
The utility model provides a hanging basket forearm, which comprises a bracket 1 with a counterweight end 11 and a cantilever end 12, a steel wire rope bracket 2 connected with the cantilever end 12 and a steel wire rope 3 used for connecting a hanging basket.
In the front arm of the hanging basket, one end of a steel wire rope 3 is wound on the support 1 or the steel wire rope support 2, and the other end is connected with the hanging basket. Taking the steel wire rope 3 to wind around the bracket 1 as an example, part of the steel wire rope 3 is wound around the bracket 1, part of the steel wire rope 3 is suspended in the air, if the hanging basket needs to be lifted in the height direction, the originally suspended part of the steel wire rope 3 can be wound around the bracket 1, so that the length of the steel wire rope 3 suspended in the air is shortened, and the hanging basket is pulled upwards; on the contrary, the originally wound part of the steel wire rope 3 is unfolded, so that the length of the steel wire rope 3 suspended in the air is increased, and the hanging basket is hung downwards.
Besides the height of the hanging basket is adjusted by the steel wire rope 3, the hanging basket front arm provided by the utility model can adjust the horizontal distance between the hanging basket and the building outer wall 02 by the support 1 and the steel wire rope support 2.
In the hanging basket front arm, a counterweight end 11 of a support 1 is supported at the top 01 of a building body and is usually arranged on the roof of the building body; the cantilever end 12 of the bracket 1 extends out of the building outer wall 02. The steel wire rope support 2 is provided with a first limiting part, the first limiting part is used for limiting a hanging path of a part of the steel wire rope 3 hanging in the air, and the first limiting part can be specifically set to be a slotted hole-shaped cavity for the steel wire rope 3 to penetrate through or a roller for the steel wire rope 3 to tension and wind. It can be seen that the first limiting part needs to meet the requirements of the retraction and the positioning of the steel wire rope 3 in the height direction and the horizontal direction at the same time.
Wherein, wire rope support 2 can articulate or sliding connection in cantilever end 12 of support 1, makes wire rope support 2 be located the outside of building body outer wall 02 on the one hand, and on the other hand satisfies the relative position control of wire rope 3 and support 1 two. For the steel wire rope support 2 hinged to the cantilever end 12, when the cantilever end 12 is used as the support 1 to rotate the steel wire rope support 2, the first limiting part can be close to and far away from the building outer wall 02. To sliding connection in the wire rope support 2 of cantilever end 12, make wire rope support 2 to slide to being close to cantilever end 12 one side and can realize that first spacing portion is close to building body outer wall 02, make wire rope support 2 to keeping away from cantilever end 12 one side and slide and can realize that first spacing portion keeps away from building body outer wall 02. Because the first limiting part restrains the hanging direction of the steel wire rope 3, the steel wire rope 3 can be pulled to be close to the building external wall 02 when the first limiting part is close to the building external wall 02; on the contrary, when the first limiting part is far away from the building external wall 02, the steel wire rope 3 can be pulled to be far away from the building external wall 02.
As for the specific operation modes for realizing the rotation or sliding of the wire rope support 2 relative to the support 1, the adjustment of the relative positional relationship between the two by human and the automatic adjustment of the relative positional relationship between the two by the power equipment having the push rod or the pull rope are included and not limited. Usually, the front arm of the hanging basket selects power equipment with a push rod to automatically adjust the relative position relationship between the steel wire rope support 2 and the support 1, and the push rod can restrict the movement direction of the steel wire rope support 2 and can also realize the positioning of the steel wire rope support 2 at any position in the self movement track.
In conclusion, compared with a conventional hanging basket front arm structure, the hanging basket front arm can not only utilize the steel wire rope 3 to pull the hanging basket to ascend and descend, but also utilize the steel wire rope 3 to pull the hanging basket to be close to and far away from the building outer wall 02, so that the relative position relation between the hanging basket and the building outer wall 02 can be better adjusted, and constructors in the hanging basket can conveniently construct the building outer wall 02.
The hanging basket front arm provided by the utility model is further explained by combining the attached drawings and the embodiment.
For convenience of operation, in the above structure, the wire rope support 2 may be connected to the telescopic rod of the telescopic cylinder 4 so that the wire rope support 2 is pulled to rotate or slide with respect to the support 1 by extension and retraction of the telescopic rod.
The telescopic cylinder 4 may be an electric hydraulic cylinder. The cylinder body of the electric hydraulic cylinder may be fixed to the bracket 1, or may be fixed to a structure other than the bracket 1, such as a building.
Use this electric hydraulic cylinder's jar body to be fixed in support 1 as an example, be equipped with the building body of building body eave 03 and parapet 04 to the top, the jar body can the slope distribute, and the afterbody of jar body is higher than the head of jar body, meanwhile, then the telescopic link distributes with the head slope downwards and to the outer angular positioning of building body outer wall 02, be favorable to the telescopic link to dodge building body eave 03 and parapet 04, be favorable to this hanging flower basket forearm to the universal relevance of different building bodies. Of course, for building bodies without building body eave 03 and parapet 04, the cylinder body may be installed horizontally or obliquely upward, in addition to being installed obliquely downward in the above-described manner.
For the cradle, one cradle is usually installed by using two or more steel cables 3, and therefore, the cradle forearm provided by the utility model is described by taking two steel cables 3 as an example.
The basket front arm pulls both ends of the basket through two wire ropes 3, for example, the two ends are connected to both ends of the basket in the length direction. In order to more flexibly adjust the relative position relationship between the hanging basket and the building outer wall 02, the hanging basket front arm comprises two supports 1, two steel wire rope supports 2 and two telescopic cylinders 4; wherein, a bracket 1, a wire rope bracket 2 and a telescopic cylinder 4 are assembled into a combined structure according to the connection relationship mentioned above for winding and suspending positioning a wire rope 3, and the front arm of the hanging basket is respectively connected with two wire ropes 3 through the two combined structures.
For the two steel wire ropes 3, the lifting of the steel wire ropes 3 in the height direction and the movement of the steel wire ropes 3 in the horizontal direction can be independently controlled through respective combined structures, which means that the hanging basket can be lifted, lowered, and moved close to the building outer wall 02 and far away from the building outer wall 02 in a translational movement mode when the two steel wire ropes 3 are synchronously adjusted, and the hanging basket can be inclined in the horizontal plane or inclined in the vertical plane when a certain steel wire rope 3 is independently adjusted or the two steel wire ropes 3 are not synchronously moved.
In order to conveniently adjust the relative position relationship between the steel wire rope support 2 and the support 1, in the hanging basket front arm provided by the utility model, the steel wire rope support 2 is preferably connected to the cantilever end 12 of the support 1 in a dead axle hinged mode, so that the friction between the steel wire rope support 2 and the support 1 is reduced, and meanwhile, the stress condition between the steel wire rope support 2 and the cantilever end 12 is improved.
In addition, in order to better use the structural characteristics of the building body, in the hanging basket front arm provided by the utility model, the steel wire rope support 2 is in a rod shape, the rod body of the steel wire rope support is provided with a bending section, the bending section is opposite to the building body eave 03 and the parapet 04, and the inner side of the bending section faces the building body eave 03 and the parapet 04, so that the building body eave 03 and the parapet 04 are avoided. Meanwhile, the bending section is provided with a second limiting part, and the steel wire rope 3 is positioned and installed through the second limiting part, so that the operation of restraining the overhanging path of the steel wire rope 3 is realized.
Wherein, for the bending section bent by an arc track, the inner side refers to a side close to the curvature center of the bending section; for the bending segment bent in the broken line path, the inner side refers to the side with smaller included angle.
The specific structure of the second limiting member can refer to the first limiting member. In addition, the two may also differ in structure.
For example, when the first limiting member is disposed at the bottom of the steel wire rope support 2 and the second limiting member is disposed at the middle of the steel wire rope support 2 in the height direction, the steel wire rope support 2 is provided with a bending section, so that the first limiting member is always closer to the building outer wall 02 than the second limiting member. For this structure, when the steel wire rope 3 is sequentially constrained to the second limiting member and the first limiting member from top to bottom, the steel wire rope 3 constrained by the first limiting member only exerts an acting force on one side of the second limiting member, in other words, the second limiting member may only constrain the stopper on one radial side of the steel wire rope 3. Compared with the prior art, the first limiting part needs to realize the restraint stop at two radial opposite sides of the steel wire rope 3, so that the steel wire rope 3 can be driven to be close to the building external wall 02 and to be far away from the building external wall 02.
Therefore, the second limiting part can be specifically set as a tensioning wheel 5, and the steel wire rope 3 is wound from one side of the tensioning wheel 5 close to the bending section. Meanwhile, the first limiting member may include two limiting wheels 6, the central axes of the two limiting wheels 6 are spaced in parallel, and the distance between the two central axes is equal to the sum of the radii in the two limiting wheels 6. For any one limiting wheel 6, two axial ends of the limiting wheel are provided with limiting flanges, and two axially opposite limiting flanges can form grooves for embedding the steel wire rope 3. In order to apply acting force to two radial opposite sides of the steel wire rope 3, the local limiting wheel rims of the two limiting wheels 6 are bound on the radial peripheral side of the steel wire rope 3 to form a channel through which the steel wire rope 3 can pass, and the channel is used for preventing the steel wire rope 3 and the two limiting wheels 6 from generating relative displacement along the radial direction of the steel wire rope 3. Of course, the limiting wheel rims of the two limiting wheels 6 can not only meet the shuttling movement of the steel wire rope 3 in the height direction, but also reduce the abrasion of the steel wire rope 3 through the rolling contact with the steel wire rope 3, and ensure the service life of the front arm of the whole hanging basket.
In the above-mentioned structure, wire rope support 2 specifically can set up to L type pole, and the vertical pole and the horizontal pole of this L type pole are connected perpendicularly to form a right angle at the middle part, this L type pole deviates from building body outer wall 02's angle connection in cantilever end 12 with the summit of aforementioned right angle. Wherein, the top end of the vertical rod of the L-shaped rod is hinged with the cantilever end 12 of the bracket 1. With this structure, the two limiting wheels 6 of the first limiting member can be mounted on the cross bar, including but not limited to the middle or end of the cross bar; the tension pulley 5 as the second stopper may be attached to a vertical bar located immediately adjacent to the right-angled vertex.
The support 1 of the hanging basket forearm can also comprise a support rod 13 arranged between the counterweight end 11 and the cantilever end 12, wherein the support rod 13 and the cantilever end 12 are used for being supported at the top of a building body, and the support rod 13 is used as a fulcrum between the counterweight end 11 and the cantilever end 12 and is closer to the cantilever end 12, so that the counterweight end 11 can safely and reliably support the cantilever end 12 and a hanging basket connected to the cantilever end 12.
The hanging basket front arm provided by the utility model is described in detail above. The principles and embodiments of the present invention are explained herein using specific examples, which are presented only to assist in understanding the method and its core concepts. It should be noted that, for those skilled in the art, it is possible to make various improvements and modifications to the present invention without departing from the principle of the present invention, and those improvements and modifications also fall within the scope of the claims of the present invention.
Claims (10)
1. A hanging basket forearm is characterized by comprising a support (1), a steel wire rope support (2) and a steel wire rope (3), wherein one end of the steel wire rope (3) is wound on the support (1) or the steel wire rope support (2), and the other end of the steel wire rope (3) is used for connecting a hanging basket; the support (1) comprises a counterweight end (11) which is used for being supported at the top (01) of the building body and a cantilever end (12) which is used for being suspended outside the outer wall (02) of the building body; the steel wire rope bracket (2) is provided with a first limiting part used for limiting the suspension path of the steel wire rope (3); the steel wire rope support (2) is hinged or connected to the cantilever end (12) in a sliding mode so that the first limiting piece can be close to or far away from the building body outer wall (02).
2. A cradle forearm according to claim 1, further comprising a telescopic cylinder (4); the steel wire rope support (2) is connected with the telescopic rod of the telescopic cylinder (4).
3. A basket forearm according to claim 2, characterized in that the number of the supports (1), the wire rope (3), the wire rope supports (2) and the telescopic cylinder (4) is two; one steel wire rope support (2) is connected with one support (1) and one telescopic cylinder (4).
4. A basket forearm according to claim 2, characterized in that the cylinder body of the telescopic cylinder (4) is fixed to the support (1).
5. A gondola forearm according to any one of claims 1 to 4, characterized in that the wire rope support (2) is journalled in the cantilever end (12).
6. A hanging basket forearm according to claim 5, wherein the shaft of the wire rope support (2) has a bend to avoid an eave (03) of a building and a parapet (04); the bending section is provided with a second limiting part for limiting the suspended path of the steel wire rope (3).
7. A cradle forearm according to claim 6, characterized in that the second stop is a tension wheel (5) arranged inside the bend; and the steel wire rope (3) positioned between the cantilever end (12) and the first limiting piece is wound on the tensioning wheel (5).
8. A basket forearm according to claim 6, characterized in that the wire rope support (2) is in particular an L-bar; the L-shaped rod is connected to the cantilever end (12) at an angle with a bending vertex angle deviating from the building body outer wall (02); the top end of the longitudinal rod of the L-shaped rod is hinged to the cantilever end (12); the first limiting part is arranged on the cross rod of the L-shaped rod.
9. A basket forearm according to claim 1, characterized in that the first stop comprises two stop wheels (6); the two axial ends of any one limiting wheel (6) are provided with limiting wheel rims; the central axes of the two limiting wheels (6) are parallel and the distance between the central axes is equal to the sum of the radiuses of the two limiting wheels (6); the limiting wheel rims of the two limiting wheels (6) are bound on the radial peripheral side of the steel wire rope (3).
10. A basket forearm according to claim 1, characterized in that the support (1) further comprises a support bar (13) for supporting on top (01) of the building; the support rod (13) is positioned between the cantilever end (12) and the counterweight end (11); the support rod (13) is close to the cantilever end (12).
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CN202122087387.7U CN215717096U (en) | 2021-08-31 | 2021-08-31 | Hanging basket forearm |
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CN202122087387.7U CN215717096U (en) | 2021-08-31 | 2021-08-31 | Hanging basket forearm |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115853244A (en) * | 2022-12-23 | 2023-03-28 | 中欧国际建工集团有限公司 | A safe suspended structure for high altitude construction is built in room |
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2021
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115853244A (en) * | 2022-12-23 | 2023-03-28 | 中欧国际建工集团有限公司 | A safe suspended structure for high altitude construction is built in room |
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