Cement electric pole convenient to hoist and mount
Technical Field
The utility model relates to the technical field of cement electric poles, in particular to a cement electric pole convenient to hoist.
Background
The cement electric pole, also called reinforced concrete electric pole, is a kind of electric power facility pillar made of cement and steel bar as main materials, and is widely used in the fields of electric power, communication, railway, etc., and because the cement electric pole is mainly based on the characteristics of large weight, large volume, etc., it is usually required to use a hoisting mode to carry.
Most cement electric poles are hung on two sides of the cement electric pole by using a crane and other equipment to hoist and carry, so that the cement electric pole is inclined and falls off and is not stable enough in the hanging process in a steel wire rope sleeving manner, and therefore, the potential safety hazard is large, the practicability of the device is greatly reduced, and the cement electric pole convenient to hang is provided for solving the problem.
Disclosure of utility model
The utility model aims to provide a cement electric pole convenient to hoist and mount, which solves the problem that in the prior art, the hoisting and carrying of the cement electric pole by using a steel wire rope are not stable enough.
The cement electric pole convenient to hoist comprises a cement electric pole body, wherein hoisting mechanisms for hoisting the cement electric pole body are arranged on two sides of the cement electric pole body, adjusting assemblies for adjusting the size of the hoisting mechanisms are arranged on the upper side of each hoisting mechanism, and reinforcing assemblies for reinforcing the installation between the hoisting mechanisms and the cement electric pole body are arranged on two sides, close to the cement electric pole body, of each hoisting mechanism.
As the preference of above-mentioned technical scheme, every group hoist mechanism all includes the bracing piece, every group the link is all installed on the top of bracing piece, every group the movable groove has all been seted up to the bottom of bracing piece, every group the inside both sides in movable groove all have movable sleeve through adjusting part slidable mounting, every group the grip block is all installed to the bottom of movable sleeve.
Through above-mentioned technical scheme, through setting up the link for can cooperate the couple to use, with the couple of hoist and mount usefulness with wire rope connection, hang on the link, equipment such as reuse loop wheel machine can hoist the cement pole body, the cement pole body is more stable at the in-process of hoist and mount like this, and is more convenient, difficult emergence slope drops scheduling problem.
As the preference of above-mentioned technical scheme, every group adjusting part all includes dead lever and bi-directional screw rod, every group the equal fixed mounting of dead lever is in the inside upside of movable groove, every group the equal slip cap of upside of movable sleeve is established in the surface of dead lever, every group bi-directional screw rod is all rotated and is installed in the inside downside of movable groove, every group the equal thread bush of downside of movable sleeve is established in the surface of bi-directional screw rod.
Through above-mentioned technical scheme for can install hoist mechanism at the surface of cement pole body, and can adjust the distance between two sets of grip blocks according to the cement pole body of different thickness sizes, make hoist mechanism be applicable to the cement pole body of more sizes.
As the optimization of the technical scheme, one end of each group of bidirectional screw rods is provided with a handle through a rotating shaft.
Through the technical scheme, the bidirectional screw is driven to rotate more conveniently by operating the rotating handle.
As the preference of above-mentioned technical scheme, every group the draw-in groove has all been seted up to the inner wall of grip block, every group the outer wall both sides of cement pole body all are fixed the cover and are equipped with the holding ring, every group the holding ring all blocks and establishes in the draw-in groove, every group the reinforcing component all sets up the junction at holding ring and grip block.
Through above-mentioned technical scheme for the grip block installation is more stable, is difficult for taking place to slide, and can be more accurate fix hoist mechanism in suitable position moreover, when making hoist and mount, the cement pole body is more balanced.
As the preference of above-mentioned technical scheme, every group the spacing hole has all been run through to the both sides of holding ring, every group the jack has all been run through to the inner wall both sides of draw-in groove, every group reinforcement assembly all includes the bolt, every group the bolt all inserts and establishes in the jack that corresponds with spacing hole, every group the surface one side of bolt all thread bush is equipped with the nut.
Through above-mentioned technical scheme for insert every group bolt to corresponding spacing hole and jack in, then establish the nut cover at the surface of bolt, and screw up, just so can consolidate the connection between grip block and the holding ring, make the hoist and mount mechanism installation more firm, thereby make the hoist and mount more firm.
As the optimization of the technical scheme, rubber pads are glued at the joint of the two sides of the inner wall of each clamping groove and the positioning ring.
Through above-mentioned technical scheme for frictional force between draw-in groove inner wall and the holding ring can be increased, thereby make the more stable of grip block centre gripping.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the hoisting mechanism is matched with the adjusting component, so that the hoisting mechanism can be adjusted according to the cement electric pole bodies with different thickness sizes, the hoisting mechanism is suitable for cement electric pole bodies with more sizes, and can be clamped and fixed on the surface of the cement electric pole body, so that the hanging hook connected with the steel wire rope for hoisting can be hung on the hanging ring, the cement electric pole body can be hoisted by using equipment such as a crane and the like, the cement electric pole body is more stable in the hoisting process, more convenient and difficult to incline and fall off, and the like.
Drawings
Fig. 1 is a schematic diagram of the overall structure of a concrete pole for easy hoisting;
FIG. 2 is a schematic side sectional view of a concrete pole for easy lifting;
FIG. 3 is a schematic top view of a cross-sectional structure of a concrete pole for easy lifting;
Fig. 4 is a schematic diagram of a split structure of a concrete pole for easy lifting.
In the figure, 1, a cement electric pole body; 11, a positioning ring, 12, a limiting hole, 2, a hoisting mechanism, 21, a supporting rod, 22, a hanging ring, 23, a movable groove, 24, a movable sleeve, 25, a clamping block, 26, a clamping groove, 27, a rubber pad, 28, an inserting hole, 3, an adjusting component, 31, a fixed rod, 32, a bidirectional screw, 33, a handle, 4, a reinforcing component, 41, a bolt, 42 and a nut.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
As shown in fig. 1 to 4, the present utility model provides a technical solution: the utility model provides a cement pole convenient to hoist, including cement pole body 1, cement pole body 1's both sides all are provided with the hoist mechanism 2 that is used for hoist and mount cement pole body 1, every hoist mechanism 2's of group upside is provided with the adjusting part 3 that is used for adjusting hoist mechanism 2 size, every hoist mechanism 2 of group all includes bracing piece 21, link 22 is all installed on every bracing piece 21's top, movable groove 23 has all been seted up to every bracing piece 21's bottom, every movable groove 23's inside both sides all have movable sleeve 24 through adjusting part 3 slidable mounting, grip block 25 is all installed to every movable sleeve 24's bottom, every adjusting part 3 of group all includes dead lever 31 and bi-directional screw 32, every dead lever 31 of group all fixed mounting is at the inside upside of movable groove 23, every movable sleeve 24's upside all slip cap is established at the surface of dead lever 31, each group of bidirectional screw rods 32 are rotatably arranged at the lower side of the inside of the movable groove 23, the lower side of each group of movable sleeves 24 is sleeved on the surface of the bidirectional screw rods 32 in a threaded manner, the structure ensures that two groups of clamping blocks 25 of each group of hoisting mechanisms 2 are arranged at two sides of the cement electric pole body 1, the support rods 21 are positioned at the upper side of the cement electric pole body 1, the cement electric pole body 1 is positioned between the two groups of clamping blocks 25, each group of clamping blocks 25 is simultaneously arranged at the position corresponding to the clamping groove 26 and the positioning ring 11, then the bidirectional screw rods 32 can be rotated, the bidirectional screw rods 32 drive the two groups of movable sleeves 24 to slide in the movable groove 23 through threaded rotation, meanwhile, the movable sleeves 24 also slide along the fixed rods 31, so that the movable sleeves 24 can be limited, and the movable sleeves 24 can move transversely more stably, the two sets of movable sleeves 24 drive the two sets of clamping blocks 25 to move towards the direction close to the cement electric pole body 1 until the two sets of clamping blocks 25 are clamped on two sides of the cement electric pole body 1, and the positioning ring 11 is clamped in the clamping groove 26, so that the hoisting mechanism 2 can be installed on the surface of the cement electric pole body 1, then the cement electric pole body 1 is hoisted more conveniently and stably by hanging hooks on the hanging rings 22 through a crane and other equipment, the distance between the two sets of clamping blocks 25 can be adjusted according to the cement electric pole body 1 with different thickness and size, the hoisting mechanism 2 is suitable for cement electric pole bodies 1 with more sizes, and the handles 33 are installed at one ends of each set of bidirectional screws 32 through the rotating shafts, so that the bidirectional screws 32 are driven to rotate more conveniently by operating the rotating handles 33.
As an implementation manner in this embodiment, as shown in fig. 2 and fig. 4, the inner wall of each group of clamping blocks 25 is provided with a clamping groove 26, both sides of the outer wall of each group of cement electric pole body 1 are fixedly sleeved with positioning rings 11, each group of positioning rings 11 are clamped in the clamping groove 26, each group of reinforcing components 4 are arranged at the connection part of the positioning rings 11 and the clamping blocks 25, the structure enables the installation of the clamping blocks 25 to be more stable, the sliding is not easy to occur, and the hoisting mechanism 2 can be more accurately fixed at a proper position, so that the cement electric pole body 1 is more balanced during hoisting.
As an implementation manner in this embodiment, as shown in fig. 3 and fig. 4, two sides of each set of hoisting mechanism 2, close to the cement pole body 1, are respectively provided with a reinforcing component 4 for reinforcing the installation between the hoisting mechanism 2 and the cement pole body 1, two sides of each set of positioning ring 11 are respectively provided with a limiting hole 12 in a penetrating manner, two sides of the inner wall of each set of clamping groove 26 are respectively provided with an inserting hole 28 in a penetrating manner, each set of reinforcing component 4 comprises a bolt 41, each set of bolts 41 is respectively inserted into the inserting hole 28 corresponding to the limiting hole 12, one side of the surface of each set of bolts 41 is respectively provided with a nut 42 in a threaded manner, the structure is used for inserting each set of bolts 41 into the corresponding limiting holes 12 and the inserting holes 28, then the nuts 42 are sleeved on the surfaces of the bolts 41 and screwed up, so that the connection between the clamping blocks 25 and the positioning rings 11 can be reinforced, the installation of the hoisting mechanism 2 is more stable, the installation of the clamping blocks is more stable, the two sides of the inner wall of each set of clamping grooves 26 and the fitting positions of the positioning rings 11 are respectively glued with rubber pads 27, and the friction force between the inner wall of the clamping grooves 26 and the positioning rings 11 can be increased, and the clamping blocks 25 can be more stable.
Working principle: if the cement electric pole body 1 needs to be carried, only two groups of clamping blocks 25 of each group of hoisting mechanisms 2 are sequentially placed on two sides of the cement electric pole body 1, the supporting rods 21 are positioned on the upper side of the cement electric pole body 1, so that the cement electric pole body 1 is positioned between the two groups of clamping blocks 25, each group of clamping blocks 25 is placed at the position corresponding to the clamping groove 26 and the positioning ring 11, then the handle 33 can be rotated to drive the bidirectional screw rod 32 to rotate, the bidirectional screw rod 32 drives the two groups of movable sleeves 24 to slide in the movable groove 23 through threaded rotation, meanwhile, the movable sleeves 24 also slide along the fixed rods 31, thus the movable sleeves 24 can be limited, the movable sleeves 24 can move transversely more stably, the two groups of clamping blocks 25 are driven by the two groups of movable sleeves 24 to move towards the direction close to the cement electric pole body 1 until the two groups of clamping blocks 25 are clamped on two sides of the cement electric pole body 1, and the positioning ring 11 is clamped in the clamping groove 26, so that the hoisting mechanism 2 can be arranged on the surface of the cement electric pole body 1, the distance between the two groups of clamping blocks 25 can be adjusted according to the cement electric pole bodies 1 with different thickness sizes, the hoisting mechanism 2 is suitable for cement electric pole bodies 1 with more sizes, in addition, each group of bolts 41 are inserted into the corresponding limiting holes 12 and the corresponding jacks 28, then the nuts 42 are sleeved on the surfaces of the bolts 41 and screwed down, the connection between the clamping blocks 25 and the positioning ring 11 can be reinforced, the hoisting mechanism 2 is more firmly arranged, finally, the hanging hook connected with a steel wire rope for hoisting can be hung on the hanging ring 22, the cement electric pole body 1 can be hoisted by using a crane and other devices, so that the cement electric pole body 1 is more stable and more convenient in the hoisting process, the problems of incline and falling off and the like are not easy to occur, and the safety and the practicability of the device are greatly improved.
The above embodiments are only for illustrating the technical solution of the present utility model, and are not limiting.