Precise forming die of high-pressure hot spinning machine
Technical Field
The utility model relates to the technical field of spinning machines, in particular to a high-pressure hot spinning machine precision forming die.
Background
The spinning machine is a low-cost and high-efficiency part forming process method and is increasingly widely applied to the machining industry.
Most of the existing spinning machines do not have the clamping and discharging functions, after machining is finished, the temperature of the spinning products after machining and forming is high, hands are easy to damage during manual removal, potential safety hazards exist, labor intensity of workers is high, fatigue is easy to occur, and therefore, the precise forming die of the hot spinning machine under high pressure is provided.
Disclosure of utility model
This section is intended to outline some aspects of embodiments of the utility model and to briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section as well as in the description of the utility model and in the title of the utility model, which may not be used to limit the scope of the utility model.
The present utility model has been made in view of the above and/or problems occurring in the prior art spinning machines.
Therefore, the utility model aims to provide a precision forming die of a high-pressure hot spinning machine, which is characterized in that an installation block is pushed to slide forwards by a hydraulic push rod, a second screw rod is driven by a second motor to drive two clamping plates to be close to each other, the clamping plates close to each other clamp a spinning product after being processed and formed, and then the installation block is returned to the original position by the hydraulic push rod, so that the clamping and blanking treatment is carried out on the spinning product after being processed and formed, the manual blanking is replaced, the potential safety hazard is reduced, and the labor is saved.
In order to solve the technical problems, according to one aspect of the present utility model, the following technical solutions are provided:
a hot spinning machine precision forming die under high pressure, comprising:
the middle part of the upper end of the spinning workbench is provided with a chute, and the rear side of the middle part of the upper end of the spinning workbench is fixed with an L-shaped plate;
The clamping assembly comprises a first motor arranged on the side wall of the spinning workbench, a first screw rod fixed at the output end of the first motor, two sliding blocks which are arranged outside the first screw rod in a threaded manner and are symmetrically arranged, a vertical plate fixed at the upper ends of the two sliding blocks, a rotating motor arranged on the inner wall of the vertical plate, a mold core arranged at the output end of one rotating motor and a clamping rod arranged at the output end of the other rotating motor, wherein the outer wall of the sliding block is attached to the inner wall of the chute, and two sections of reverse threads are arranged on the outer wall of the first screw rod;
The clamping and discharging assembly comprises a hydraulic push rod vertically arranged on the L-shaped plate, a mounting block vertically arranged at the output end of the hydraulic push rod and provided with a slot at the front end, a second motor arranged at the upper end of the mounting block, a second screw rod fixed at the output end of the second motor, and two clamping plates which are arranged outside the second screw rod in a threaded manner and are symmetrically arranged, wherein two sections of reverse threads are arranged on the outer wall of the second screw rod;
As a preferable scheme of the high-pressure hot spinning machine precision forming die, a bottom plate is fixed at the lower end of the spinning workbench, and a first bolt is arranged on the bottom plate and penetrates through the bottom plate.
As a preferable scheme of the high-pressure hot spinning machine precision forming die, the bottom of the vertical plate is attached to the top of the spinning workbench.
As a preferable scheme of the high-pressure hot spinning machine precision forming die, the outer wall of the output end of the rotating motor is provided with external threads, the mold core and the clamping rod are provided with threaded holes, and the mold core and the clamping rod are installed on the output end of the rotating motor in a threaded manner.
As a preferable scheme of the high-pressure hot spinning machine precision forming die, an installation plate is fixed at the end part of the hydraulic push rod, a second bolt is arranged on the installation plate, and the second bolt penetrates through the installation plate to the installation block.
As a preferable scheme of the high-pressure hot spinning machine precision forming die, the bottom of the mounting block is attached to the top of the spinning workbench.
Compared with the prior art, the precision forming die of the high-pressure low-heat spinning machine has the advantages that the installation block is pushed to slide forwards through the hydraulic push rod, the second lead screw is driven by the second motor to drive the two clamping plates to be close to each other, the clamping plates close to each other clamp a spinning product after being processed and formed, and then the installation block is returned to the original position through the hydraulic push rod, so that clamping and blanking treatment is carried out on the spinning product after being processed and formed, further, the manual blanking is replaced, potential safety hazards are reduced, and labor is saved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following detailed description of the embodiments of the present utility model will be given with reference to the accompanying drawings, which are to be understood as merely some embodiments of the present utility model, and from which other drawings can be obtained by those skilled in the art without inventive faculty. Wherein:
fig. 1 is a schematic perspective view of a precision molding die of a hot spinning machine under high pressure;
Fig. 2 is a schematic view of a first perspective view of a clamping and discharging assembly of a precision forming mold of a high-pressure hot spinning machine according to the present invention;
fig. 3 is a schematic view of a second perspective view of a clamping and discharging assembly of a precision forming mold of a high-pressure hot spinning machine according to the present invention;
In the drawing, 100 parts of spinning working table, 101 parts of L-shaped plate, 102 parts of bottom plate, 103 parts of first bolt, 200 parts of clamping assembly, 210 parts of first motor, 220 parts of first screw rod, 230 parts of sliding block, 240 parts of vertical plate, 250 parts of rotating motor, 260 parts of mold core, 270 parts of clamping rod, 300 parts of clamping unloading assembly, 310 parts of hydraulic push rod, 311 parts of mounting plate, 312 parts of second bolt, 320 parts of mounting block, 330 parts of second motor, 340 parts of second screw rod, 350 parts of clamping plate.
Detailed Description
In order that the above objects, features and advantages of the utility model will be readily understood, a more particular description of the utility model will be rendered by reference to the appended drawings.
Next, the present utility model will be described in detail with reference to the drawings, wherein the sectional view of the device structure is not partially enlarged to general scale for the convenience of description, and the drawings are only examples, which should not limit the scope of the present utility model. In addition, the three-dimensional dimensions of length, width and depth should be included in actual fabrication.
For the purpose of making the objects, technical solutions and advantages of the present utility model more apparent, embodiments of the present utility model will be described in further detail below with reference to the accompanying drawings.
The utility model provides a precision forming die of a high-pressure hot spinning machine, which is characterized in that an installation block is pushed to slide forwards by a hydraulic push rod, a second screw rod is driven by a second motor to drive two clamping plates to be close to each other, the clamping plates close to each other clamp a spinning product after being processed and formed, and then the installation block is returned to the original position by the hydraulic push rod, so that the clamping and blanking treatment is carried out on the spinning product after being processed and formed, the manual blanking of the spinning product after being processed and formed is replaced, the potential safety hazard is reduced, and the labor is saved.
Fig. 1 to 3 are schematic structural views of an embodiment of a precision forming mold of a high-pressure hot spinning machine according to the present invention, referring to fig. 1 to 3, a main body portion of the precision forming mold of the high-pressure hot spinning machine includes a spinning workbench 100, a clamping assembly 200 and a clamping and discharging assembly 300.
A chute is formed in the middle of the upper end of the spinning workbench 100, and an L-shaped plate 101 is fixed on the rear side of the middle of the upper end of the spinning workbench 100. Preferably, in the present embodiment, the bottom plate 102 is fixed at the lower end of the spinning workbench 100, the bottom plate 102 is provided with the first bolt 103, the first bolt 103 penetrates through the bottom plate 102, and the spinning workbench 100 is fixedly installed at a designated position under the action of the bottom plate 102 and the first bolt 103, so that stable placement of the spinning workbench 100 is ensured.
The clamping assembly 200 comprises a first motor 210 arranged on the side wall of the spinning workbench 100, a first screw rod 220 fixed at the output end of the first motor 210, two sliding blocks 230 which are arranged outside the first screw rod 220 in a threaded manner and are symmetrically arranged, a vertical plate 240 fixed at the upper ends of the two sliding blocks 230, a rotating motor 250 arranged on the inner wall of the vertical plate 240, a mold core 260 arranged at the output end of one rotating motor 250 and a clamping rod 270 arranged at the output end of the other rotating motor 250, wherein the outer wall of the sliding block 230 is attached to the inner wall of a sliding groove, and two sections of reverse threads are arranged on the outer wall of the first screw rod 220. Preferably, in this embodiment, the bottom of the vertical plate 240 is attached to the top of the spinning workbench 100, the sliding block 230 drives the vertical plate 240 to slide synchronously therewith in the sliding process, and when sliding, the bottom of the vertical plate 240 and the top of the spinning workbench 100 generate a certain friction force, so as to ensure the stability of the vertical plate 240 in the sliding process, the outer wall of the output end of the rotating motor 250 is provided with external threads, threaded holes are formed in the mold core 260 and the clamping rod 270, the mold core 260 and the clamping rod 270 are mounted on the output end of the rotating motor 250 in a threaded manner, and the mold core 260 and the clamping rod 270 are mounted on the output end of the rotating motor 250 in a threaded manner, so that an operator can conveniently disassemble, assemble and replace the rotating motor in the later period.
The clamping and discharging assembly 300 comprises a hydraulic push rod 310 vertically arranged on the L-shaped plate 101, a mounting block 320 vertically arranged at the output end of the hydraulic push rod 310 and provided with a slot at the front end, a second motor 330 arranged at the upper end of the mounting block 320, a second lead screw 340 fixed at the output end of the second motor 330, and two clamping plates 350 arranged outside the second lead screw 340 in a symmetrical mode, wherein two sections of reverse threads are arranged on the outer wall of the second lead screw 340. Preferably, in this embodiment, the end portion of the hydraulic pushrod 310 is fixed with a mounting plate 311, the mounting plate 311 is provided with a second bolt 312, the second bolt 312 penetrates through the mounting plate 311 to the mounting block 320, the mounting block 320 is mounted at the output end of the hydraulic pushrod 310 under the action of the mounting plate 311 and the second bolt 312, a later operator can take down the mounting block 320 by taking down the second bolt 312 so as to detach and replace the mounting block 320, the bottom of the mounting block 320 is attached to the top of the spinning workbench 100, and when the mounting block 320 slides back and forth along with the hydraulic pushrod 310, a certain friction force is generated between the bottom of the mounting block 320 and the spinning workbench 100, so that stability of the mounting block 320 in the sliding process is ensured.
Referring to fig. 1-3, the precision forming mold for a high-pressure thermal spinning machine in this embodiment is specifically used by placing an original to be processed on a mold core 260, starting a first motor 210, driving a first lead screw 220 to rotate by the first motor 210, so as to drive the mold core 260 and a clamping rod 270 to approach each other, clamping and fixing the original, driving the clamped and fixed original to rotate by a rotating motor 250, after the original is processed, pushing a mounting block 320 to slide forward by a hydraulic push rod 310, driving a second lead screw 340 by a second motor 330 to drive two clamping plates 350 to approach each other, clamping the processed and formed spinning product by the clamping plates 350 approaching each other, returning the mounting block 320 to the original position by the hydraulic push rod 310, so as to clamp and take off the processed and formed spinning product, further replacing manual blanking of the processed and formed spinning product, reducing potential safety hazards and saving manpower.
Although the utility model has been described hereinabove with reference to embodiments, various modifications thereof may be made and equivalents may be substituted for elements thereof without departing from the scope of the utility model. In particular, the features of the disclosed embodiments may be combined with each other in any manner as long as there is no structural conflict, and the exhaustive description of these combinations is not given in this specification merely for the sake of omitting the descriptions and saving resources. Therefore, it is intended that the utility model not be limited to the particular embodiment disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.