Overturning lifting sling for graphite product
Technical Field
The utility model relates to the technical field of graphite product lifting, in particular to a turnover lifting sling for a graphite product.
Background
In the processing manufacturing process of the graphite product, the graphite product needs to be transferred by using a lifting device, most of the existing lifting is finished by using a steel wire rope and a self-made clamp, but the surface of the graphite product is smooth, the steel wire rope easily shakes in the lifting process, so that the lifting is unstable, the graphite product easily falls off, and potential safety hazards exist.
The utility model patent with the application number of CN202320014839.5 discloses a graphite lifting device, which has the following defects that (1) a clamping block of a clamping mechanism is adopted to clamp a graphite product, the inner side opposite surfaces of the two clamping blocks are in a V shape, when the size of the product is large or the clamping surface of the product is a plane, the V-shaped clamping block cannot clamp the product, the product easily slides down in the lifting process to cause breakage and personnel safety accidents, and (2) the graphite lifting device can control a clamp to move up and down and move left and right, but in the graphite processing process, the graphite is required to be processed in an all-around way, the turnover product is involved, and the up and down movement and the left and right movement cannot meet the processing requirements.
Based on the defects and shortcomings, the prior art needs to be improved, and a turnover lifting appliance for graphite products is designed.
Disclosure of utility model
The utility model mainly solves the technical problem of providing the overturning lifting sling for graphite products, which can conveniently and quickly find the positions of the products for clamping, adapt to the products with different sizes, avoid the products from being damaged by pressure, overturn the products and facilitate the omnibearing processing of the products.
In order to solve the technical problems, the utility model adopts the technical scheme that the overturning lifting sling for the graphite product comprises a cross rod, lifting rings, hanging arms and an electric cabinet, wherein the lifting rings are arranged on the cross rod and used for installing lifting ropes, the hanging arms are arranged at two ends of the lifting cross rod, and the electric cabinet is arranged on the hanging arms.
Preferably, the rotary rack is of a frame structure, a space for containing products is arranged inside the frame, a plurality of groups of clamping cylinders for clamping the products are symmetrically arranged on the front side and the rear side of the rotary rack, clamping components for stretching into the rotary rack to clamp the products are arranged on piston rods of the clamping cylinders, and rotary shafts for being inserted on the hanging arms are arranged at the left end and the right end of the rotary rack.
Preferably, the clamping component comprises a sleeve installed in the revolving frame, a push rod movably inserted in the sleeve and installed on the piston rod, a clamping plate installed on the outer side of the push rod and used for increasing the contact area, and a rubber pad installed on the outer side of the clamping plate and used for clamping and avoiding pressure loss of products.
Preferably, the clamping assembly further comprises a support column, a reference positioning plate and a reference limiting block, wherein a plurality of support columns used for supporting the revolving frame to be placed on the ground or a plane are installed on the upper end face and the lower end face of the revolving frame, the reference positioning plate used for finding the reference plane of a clamping product is vertically installed on one inner side wall of the revolving frame, and the reference limiting blocks which are horizontally inwards and can be adjusted are symmetrically installed at the upper end and the lower end of the other three inner side walls of the revolving frame.
Preferably, two mutually parallel rectangular limiting holes are formed in the horizontal plane of the reference limiting block, the screw rod penetrates through the limiting holes to install the reference limiting block on the upper end face and the lower end face of the rotary frame, and the outer ends of the reference positioning plate and the reference limiting block are respectively provided with a guide surface for guiding the rotary frame to find the product position.
Preferably, the overturning assembly comprises a worm and gear rotary table and a driving motor, the worm and gear rotary table is arranged at the lower part of the one-side hanging arm, a sleeve joint hole for inserting a rotary shaft is formed in the rotary table of the worm and gear rotary table, and the driving motor for driving the worm and gear rotary table to rotate is arranged at the input end of the worm and gear rotary table.
Preferably, a handle for manually assisting in adjusting the position of the suspension arm is arranged at the lower part of the suspension arm.
Compared with the prior art, the utility model has the beneficial effects that:
the position of the product can be conveniently and rapidly found by matching the handle, the reference positioning plate and the reference limiting block;
By arranging the revolving frame, the clamping cylinder and the clamping part, products with different sizes can be clamped, and the products are prevented from being damaged by pressure;
The turnover assembly is arranged and drives the revolving frame to turn over through the revolving shaft, so that the product can be conveniently processed in all directions;
This device can convenient and fast find accurate product position and carry out the centre gripping, and the product of adaptation equidimension just avoids the pressure loss product, overturns the product, makes things convenient for the omnidirectional processing product.
Drawings
Fig. 1 is a schematic structural view of a flip-and-lift spreader for graphite products.
Fig. 2 is a schematic structural view of a clamping assembly for a flip-flop lifting sling for graphite products.
Fig. 3 is a schematic structural view of a turnover assembly for a turnover lifting sling for graphite products.
Fig. 4 is a cross-sectional view of a clamping member of a flip-flop lifting sling for graphite products.
Wherein, 1, hoisting cross rod, 2, hoisting ring, 3, boom, 4, clamping component, 5, turnover component, 6, electric cabinet, 31, handle, 41, revolving frame, 42, support column, 43, datum locating plate, 44, datum limiting block, 45, clamping cylinder, 46, clamping component, 47, revolving shaft, 441, limiting hole, 442, guiding surface, 451, piston rod, 461, sleeve, 462, push rod, 463, clamping plate, 464, rubber pad, 51, worm and gear revolving table, 52, driving motor, 511, sleeving hole, 100 and product.
Detailed Description
The preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings so that the advantages and features of the present utility model can be more easily understood by those skilled in the art, thereby making clear and defining the scope of the present utility model.
Referring to fig. 1 to 4, an embodiment of the present utility model includes:
The utility model provides a upset hoist and mount hoist for graphite product, this kind of upset hoist and mount hoist for graphite product includes hoist and mount horizontal pole 1, rings 2, davit 3, clamping subassembly 4, upset subassembly 5 and electric cabinet 6, install the rings 2 that are used for installing the lifting rope on the hoist and mount horizontal pole 1, hoist and mount horizontal pole 1 both ends are installed and are put up 3, the handle 31 that is used for artifical supplementary regulation davit 3 positions is installed to 3 side lower parts of davit, clamping subassembly 4 has been put up in the activity between two davits 3, install the upset subassembly 5 that is used for driving clamping subassembly 4 to overturn the action between clamping subassembly 4 and the davit 3, install the electric cabinet 6 that is used for electric control clamping subassembly 4 and upset subassembly 5 on one side davit is 3, clamping subassembly 4 removes to the product 100 department of waiting to hoist along with hoist and mount horizontal pole 1, clamping subassembly 4 centre gripping 100, hoist rings 2, can hoist product 100.
The clamping assembly 4 comprises a revolving frame 41, a support column 42, a reference positioning plate 43, a reference limiting block 44, a clamping cylinder 45, a clamping component 46 and a revolving shaft 47, wherein the revolving frame 41 is of a frame structure, a space for containing a product 100 is arranged in the frame, a plurality of support columns 42 for supporting the revolving frame to be placed on the ground or on a plane are arranged on the upper end face and the lower end face of the revolving frame 41, the reference positioning plate 43 for aligning the reference surface of the clamped product is vertically arranged on one inner side wall of the revolving frame 41, the upper end and the lower end of the other three inner side walls of the revolving frame 41 are symmetrically provided with the reference limiting block 44 which is horizontally inwards and can be adjusted, two mutually parallel strip limiting holes 441 are formed in the horizontal plane of the reference limiting block 44, the screw rod penetrates through the limiting holes 441 to be arranged on the upper end face and the lower end face of the revolving frame 41, the reference limiting block 44 can adjust the installation position according to the size of the product 100, the outer ends of the reference positioning plate 43 and the reference limiting block 44 are respectively provided with a guide surface 442 for guiding the revolving frame 41 to find the position of the product 100, a plurality of groups of clamping cylinders 45 for clamping the product 100 are symmetrically arranged on the front side and the rear side of the revolving frame 41, a piston rod 451 of each clamping cylinder 45 is provided with a clamping part 46 for stretching into the revolving frame 41 to clamp the product 100, each clamping part 46 comprises a sleeve 461 arranged in the revolving frame 41, a push rod 462 movably inserted in the sleeve 461 and arranged on the piston rod 451, a clamping plate 463 arranged on the outer side of the push rod 462 and a rubber pad 464 arranged on the outer side of the clamping plate 463 and used for clamping and avoiding pressing the product 100, and the left end and the right end of the revolving frame 41 are provided with a revolving shaft 47 for being inserted on the suspension arm 3.
The overturning assembly 5 comprises a worm and gear revolving platform 51 and a driving motor 52, the worm and gear revolving platform 51 is arranged at the lower part of the one-side suspension arm 3, a sleeve hole 511 for inserting a revolving shaft 47 is formed in the revolving platform of the worm and gear revolving platform 51, the driving motor 52 for driving the worm and gear revolving platform 51 to rotate is arranged at the input end of the worm and gear revolving platform 51, and the worm and gear revolving platform 51 drives the revolving frame 41 to overturn through the revolving shaft 47, so that the product 100 is driven to overturn.
When the turnover lifting tool for graphite products is used for working, a lifting cross rod 1 is lifted by a lifting rope, a revolving frame 41 moves to the position above a product 100 to be lifted along with the lifting cross rod 1, a handle 31 assists the revolving frame 41 to find the position of the product 100, the revolving frame 41 moves downwards, the product 100 enters the inside of the revolving frame 41 under the guiding action of a reference positioning plate 43 and a reference limiting block 44, an electric cabinet 6 controls a clamping cylinder 45 to be opened, a piston rod 451 of the clamping cylinder 45 stretches out, a piston rod 451 drives a push rod 462 to stretch out of the inside of the revolving frame 41, the push rod 462 drives a rubber pad 464 to clamp the product 100, a lifting ring 2 is lifted to lift the product 100, the upper plane of the product 100 is machined, after machining is finished, the product 100 is required to be turned over, the electric cabinet 6 controls a driving motor 52 to drive a worm wheel and worm revolving table 51 to rotate through a revolving shaft 47, so that the product 100 is driven to be turned over, and the product 100 is continuously machined after the turning is finished.
The turnover lifting sling for graphite products can conveniently and quickly find the positions of the products for clamping, adapt to the products with different sizes, avoid the products from being damaged by pressure, turn over the products and facilitate the omnibearing processing of the products.
The foregoing description is only illustrative of the present utility model and is not intended to limit the scope of the utility model, and all equivalent structures or equivalent processes or direct or indirect application in other related technical fields are included in the scope of the present utility model.