Installation auxiliary device of forging hammer
Technical Field
The utility model relates to the technical field of forging equipment, in particular to an installation auxiliary device of a forging hammer.
Background
When the forging hammer is installed, the weight of the forging hammer is large, and the telescopic rod of the forging equipment needs to be moved downwards to one side of the forging hammer during installation, and then the forging hammer is detached and installed. In the process, personnel are required to carry out installation operation at a lower position, and the personnel operation is very inconvenient. To this, the existing method has the advantages that the forging hammer is hung to a higher position, and then the forging hammer is installed in a manner of being close to one side of the telescopic rod of the forging equipment, so that personnel can be effectively prevented from installing at a lower position. However, when the forging hammer is suspended to a high position, it is necessary to use an existing crane, forklift, or the like, and the forging hammer cannot be lifted or lowered by its own means.
Disclosure of utility model
The present utility model has been made to solve the above-mentioned problems occurring in the prior art, and an object of the present utility model is to provide an installation assisting apparatus for a forging hammer.
The utility model is realized by the following technical scheme: the utility model relates to an installation auxiliary device of a forging hammer, which comprises a forging machine and is characterized in that a lifting bracket is arranged in the forging machine, a placing component used for placing the forging hammer is arranged in the bracket, a lifting component used for driving the bracket to lift is also arranged in the forging machine, two guide rails are arranged in the forging machine, side blocks are arranged on two sides of the bracket, and the side blocks are connected with the guide rails in a sliding fit manner.
Further technical scheme, place the subassembly and include the rack, the rack with be provided with slide rail structure between the support, rack one side is provided with rotation axis and slide bar, rotation axis with the rack normal running fit is connected, and slide bar surface gliding is provided with removes the rack, rotation axis passes remove the rack, rotation axis with remove rack screw thread fit is connected, remove rack and slide bar sliding fit connection, be provided with in the support and make rack gliding helicitic texture, rotation axis and slide bar tip are provided with the fixed plate, rotation axis with fixed plate normal running fit is connected, fixed plate and slide bar fixed fit are connected, fixed plate one side is provided with the guide arm, the guide arm with support sliding fit is connected.
Further technical scheme, the slide rail structure including set up in two cooperation guide rails in the support, the rack both sides are provided with the slider, the slider with cooperation guide rail sliding fit is connected.
Further technical scheme, the screw thread structure including pivoted set up in screw thread axle in the support, screw thread axle with rack screw thread fit connects.
According to a further technical scheme, a rotary disc is arranged at the end part of the rotating shaft.
Further technical scheme, lifting unit including set up in the first connecting plate of side piece both sides, be provided with the cooperation wheel in the first connecting plate, still including the pivoted set up in transition wheel in the forging machine, transition wheel both sides are provided with the second connecting plate, the pivoted is provided with the rotation wheel in the second connecting plate, one of them second connecting plate one side is provided with driving motor, should driving motor with the setting is connected to rotation wheel power, rotation wheel, cooperation wheel and transition wheel surface winding are provided with the drive belt, the drive belt will rotation wheel, cooperation wheel and transition wheel power are connected.
According to a further technical scheme, the transition wheel is arranged between the two rotating wheels.
According to a further technical scheme, two ends of the driving belt are fixed on the outer surfaces of the rotating wheels on two sides, and the driving belt bypasses the bottom of the matched wheel and then bypasses the top of the transition wheel.
The beneficial effects of the utility model are as follows:
1. Utilize and placed the subassembly and will forge the tup and place to place the subassembly in can adjust the rack and remove the position between the rack, make forge the hammer and can remove the installation of being connected with the push rod in the forging equipment after the adjustment, it is comparatively convenient.
2. Utilize lifting unit to carry out the lift removal after placing the subassembly with forging hammer, the personnel of being convenient for install forging hammer in the eminence.
Drawings
For ease of illustration, the utility model is described in detail by the following specific examples and figures.
FIG. 1 is a schematic view showing the overall structure of an installation assisting apparatus for a forging hammer according to the present utility model;
FIG. 2 is a schematic diagram of FIG. 1 at A;
FIG. 3 is a schematic view of the apparatus of FIG. 1;
FIG. 4 is a schematic diagram at B in FIG. 3;
FIG. 5 is a schematic view of FIG. 4 at C;
FIG. 6 is a schematic diagram of FIG. 4 at D;
In the figure, forging machine 11, transition wheel 12, belt 13, drive motor 14, rotating wheel 15, second connecting plate 16, guide rail 21, bracket 22, slider 23, mating guide rail 24, threaded shaft 25, rotating shaft 26, placement frame 27, turntable 28, side block 31, guide rod 32, mating wheel 33, first connecting plate 34, fixing plate 35, and moving placement frame 36.
Detailed Description
The present utility model will be described in detail with reference to fig. 1 to 6, and for convenience of description, the following orientations will be defined as follows: the utility model relates to an auxiliary device for installing a forging hammer, which is characterized in that a lifting bracket 22 is arranged in the forging machine 11, a placing component for placing the forging hammer is arranged in the bracket 22, a lifting component for driving the bracket 22 to lift is also arranged in the forging machine 11, two guide rails 21 are arranged in the forging machine 11, side blocks 31 are arranged on two sides of the bracket 22, and the side blocks 31 are connected with the guide rails 21 in a sliding fit manner.
The utility model provides a rack, wherein, place the subassembly and include rack 27, be provided with the slide rail structure between rack 27 and the support 22, rack 27 one side is provided with rotation axis 26 and slide bar, rotation axis 26 and rack 27 normal running fit are connected, the slide bar surface gliding is provided with and removes rack 36, rotation axis 26 passes and removes rack 36, rotation axis 26 and remove rack 36 screw thread fit and be connected, remove rack 36 and slide bar sliding fit are connected, be provided with the helicitic texture that makes rack 27 slip in the support 22, rotation axis 26 and slide bar tip are provided with fixed plate 35, rotation axis 26 and fixed plate 35 normal running fit are connected, fixed plate 35 and slide bar fixed fit are connected, fixed plate 35 one side is provided with guide arm 32, guide arm 32 and support 22 sliding fit are connected.
Advantageously, the sliding rail structure comprises two mating rails 24 arranged in the support 22, and the two sides of the placement frame 27 are provided with sliding blocks 23, and the sliding blocks 23 are connected with the mating rails 24 in a sliding fit.
Advantageously, the screw structure comprises a screw shaft 25 rotatably arranged in the holder 22, the screw shaft 25 being in screw-fit connection with the holder 27.
Advantageously, the rotating shaft 26 is provided with a turntable 28 at the end.
Advantageously, the lifting assembly comprises a first connecting plate 34 arranged at two sides of the side block 31, a matching wheel 33 is arranged in the first connecting plate 34, the lifting assembly further comprises a transition wheel 12 which is rotationally arranged in the forging machine 11, two sides of the transition wheel 12 are provided with second connecting plates 16, a rotating wheel 15 is rotationally arranged in the second connecting plates 16, one side of one second connecting plate 16 is provided with a driving motor 14, the driving motor 14 is in power connection with the rotating wheel 15, the matching wheel 33 and the outer surface of the transition wheel 12 are wound with a driving belt 13, and the driving belt 13 is used for dynamically connecting the rotating wheel 15, the matching wheel 33 and the transition wheel 12.
Advantageously, the transition wheel 12 is arranged between two rotating wheels 15.
Advantageously, wherein the belt 13 is fixed at both ends to the outer surfaces of the rotating wheels 15 on both sides, the belt 13 passes around the bottom of the mating wheel 33 downwards and then around the top of the transition wheel 12.
The device is through going on going up and down the removal with placing the subassembly, makes place the subassembly and can upwards remove after having placed the forging hammer through the drive of lifting unit, and then makes the forging hammer can be close to equipment top, and the personnel of being convenient for forge the installation of hammer.
When the driving motor 14 works, one side of the driving motor drives the rotating wheel 15 to rotate, so that the driving belt 13 surrounds the outer surface of the rotating wheel 15, the length of the driving belt 13 is shortened, and the driving belt 13 lifts the first connecting plate 34, the side block 31 and the bracket 22 upwards under the action of the matching wheel 33.
After rotating the threaded shaft 25, the sliding block 23 slides, and secondly, the fixing plate 35 is connected with the bracket 22 in a sliding fit manner through the guide rod 32, so that the placing frame 27, the rotating shaft 26, the moving placing frame 36, the fixing plate 35 and the guide rod 32 integrally slide, after rotating the rotating shaft 26, the moving placing frame 36 slides on the outer surface of the rotating shaft 26, the moving direction of the moving placing frame 36 faces the placing frame 27, and at the moment, the distance between the moving placing frame 36 and the placing frame 27 can be changed to be convenient to adjust according to the installation position of the forging hammer.
The above is merely a specific embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any changes or substitutions that do not undergo the inventive work should be covered in the scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the protection scope defined by the claims.