CN216027824U - Special screw press for titanium alloy forging - Google Patents

Special screw press for titanium alloy forging Download PDF

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Publication number
CN216027824U
CN216027824U CN202121514081.9U CN202121514081U CN216027824U CN 216027824 U CN216027824 U CN 216027824U CN 202121514081 U CN202121514081 U CN 202121514081U CN 216027824 U CN216027824 U CN 216027824U
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CN
China
Prior art keywords
titanium alloy
forging
pond
support column
screw press
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Expired - Fee Related
Application number
CN202121514081.9U
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Chinese (zh)
Inventor
喻孜
苏峻
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Nanjing Forestry University
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Nanjing Forestry University
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Priority to CN202121514081.9U priority Critical patent/CN216027824U/en
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Publication of CN216027824U publication Critical patent/CN216027824U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a screw press special for titanium alloy forging, and particularly relates to the field of titanium alloy processing. According to the utility model, through the arrangement of the forging pool, the outer connecting plate and other structures, the titanium alloy is spirally processed on the surface of the supporting plate in the forging pool, after the processing is finished, the motor works to drive the forging pool to integrally rotate 180 degrees for handstand, meanwhile, the electric push rod works to push the striking block to strike the forging pool from the outer side, the processed titanium alloy is poured into the feeding plate, and meanwhile, residues possibly generated in the processing process are knocked off, so that the influence on subsequent processing is avoided, automatic blanking can be realized, and the processing efficiency is improved.

Description

Special screw press for titanium alloy forging
Technical Field
The utility model relates to the technical field of titanium alloy processing, in particular to a screw press special for titanium alloy forging.
Background
The titanium alloy has high strength, good corrosion resistance and high heat resistance, is mainly a high-temperature titanium alloy for developing aeroengines and a structural titanium alloy for machine bodies, has high strength, high heat strength, good corrosion resistance, good low-temperature performance, large chemical activity and small heat conduction elasticity, forging equipment refers to mechanical equipment for forming and separating in forging processing, the forging equipment comprises a forging hammer, a mechanical press, a hydraulic machine, a screw press and a plain forging machine for forming, as well as a forging operation machine, an uncoiler, a straightening machine and auxiliary equipment of a shearing machine, the forging equipment is mainly used for metal forming, the forging equipment is formed by applying pressure to metal, and the large force is the basic characteristic of the forging equipment, so that the forging equipment is heavy equipment.
The titanium alloy is generally processed after being heated and shaped at high temperature in the forging process, the existing screw press needs workers to manually carry out feeding and blanking in the using process, and the blanking of the high-temperature titanium alloy is dangerous and troublesome in operation, so that the utility model of the special screw press for titanium alloy forging is necessary.
SUMMERY OF THE UTILITY MODEL
In order to overcome the above defects in the prior art, embodiments of the present invention provide a screw press dedicated for titanium alloy forging.
In order to achieve the purpose, the utility model provides the following technical scheme: the utility model provides a special screw press is forged to titanium alloy, includes the support column, support column quantity sets up to be equipped with between two and two support columns and forges the pond, it is equipped with the backup pad to forge pond internal fixation, it is equipped with delivery sheet and defeated flitch respectively to forge pond bottom and top rear side, the fixed footstock that is equipped with in support column top, the footstock top is equipped with the mount pad, mount pad front side surface is equipped with the pneumatic cylinder, the pneumatic cylinder sets up in the backup pad top, the pneumatic cylinder bottom is equipped with the installation piece, it is equipped with the motor respectively to forge pond both sides, the motor sets up inside the support column.
In a preferred embodiment, support column front side and rear side surface all are equipped with outer fishplate bar, outer fishplate bar inboard is equipped with hits the piece, hit and evenly be equipped with electric putter between piece and the outer fishplate bar, the inside mounting groove and the motor that are equipped with of support column set up inside the mounting groove, be equipped with the connecting axle between motor and the forging pond, the connecting axle is fixed to be set up in forging pond both sides surface.
In a preferred embodiment, a cooling cavity is arranged around the inner wall of the forging pool, a coolant and a refrigerator are filled in the cooling cavity, the refrigerator is connected to an outside power supply through a transmission cable, a heat conduction plate is arranged at the top of the cooling cavity, and the support plate is fixedly arranged at the top of the heat conduction plate.
In a preferred embodiment, the feeding plate and the material conveying plate are provided with conveying belts inside, one end of the material conveying plate is provided with an adjusting belt, and the adjusting belt is made of an elastic material and is arranged at the top of the forging pool.
In a preferred embodiment, speed changers are arranged on two sides of the mounting seat, a driving seat is arranged at the bottom of the hydraulic cylinder, a driving motor is arranged in the driving seat, the mounting block is in transmission connection with the driving motor, and the speed changers are communicated with the driving motor through transmission cables.
In a preferred embodiment, the bottom surface of the mounting block is provided with a mounting plate in a threaded connection mode, the mounting plate is matched with the supporting plate, and the outer side surface of the mounting block is provided with an infrared sensor.
The utility model has the technical effects and advantages that:
1. according to the utility model, by arranging the structures such as the forging pool and the external connection plate, titanium alloy is transmitted into the forging pool through the material conveying plate, spiral processing is carried out on the surface of the support plate in the forging pool, the refrigerator in the cooling cavity absorbs the heat in the titanium alloy during the processing process to accelerate the integral forming, the motor works after the processing finishes to drive the forging pool to rotate integrally for 180 degrees to stand upside down, meanwhile, the electric push rod works to push the striking block to strike the forging pool from the outer side, the processed titanium alloy is poured into the feeding plate, and meanwhile, residues possibly occurring in the processing process are knocked off, so that the subsequent processing is avoided being influenced, automatic blanking can be carried out, and the processing efficiency is improved;
2. through being equipped with the footstock, pneumatic cylinder and installation piece, select the different mounting panel of installation in installation piece bottom according to the processing demand of difference, during operation driving motor and derailleur work make the seat of drive rotation save energy with higher speed, pneumatic cylinder work drives the drive block downstream simultaneously, when the mounting panel contacts titanium alloy work piece, the seat of drive is forced to slow down to stopping completely, the rotatory kinetic energy of storage changes impact energy into, hit through the mounting panel and hit the titanium alloy work piece and make it warp, the simple quick manufacturing procedure is realized to repetitious work many times.
Drawings
Fig. 1 is a front view of the overall structure of the present invention.
FIG. 2 is a schematic view of the forging pool structure of the present invention.
Figure 3 is a side view of the support post of the present invention.
The reference signs are: the device comprises a support column 1, an external connection plate 11, a striking block 12, an electric push rod 13, a forging pool 2, a cooling cavity 21, a heat conduction plate 22, a support plate 3, a feeding plate 4, a material conveying plate 5, a top seat 6, a mounting seat 61, a speed changer 62, a hydraulic cylinder 7, a driving seat 71, a mounting block 8, a mounting plate 81, an infrared sensor 82, a motor 9 and a connecting shaft 91.
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.
According to the special screw press of titanium alloy forging shown in fig. 1-3, including support column 1, support column 1 quantity sets up to be equipped with forging pond 2 between two and two support columns 1, forge the inside fixed backup pad 3 that is equipped with in pond 2, forge 2 bottom of pond and top rear side and be equipped with delivery sheet 4 respectively and defeated flitch 5, support column 1 top is fixed to be equipped with footstock 6, footstock 6 top is equipped with mount pad 61, the surface is equipped with pneumatic cylinder 7 before the mount pad 61, pneumatic cylinder 7 sets up in 3 tops of backup pad, pneumatic cylinder 7 bottom is equipped with installation piece 8, forge 2 both sides in pond and be equipped with motor 9 respectively, motor 9 sets up inside support column 1.
1 front side of support column and rear side surface all are equipped with outer fishplate bar 11, outer fishplate bar 11 inboard is equipped with hits piece 12, hit evenly to be equipped with electric putter 13 between piece 12 and the outer fishplate bar 11, 1 inside mounting groove and the motor 9 that is equipped with of support column set up inside the mounting groove, be equipped with connecting axle 91 between motor 9 and the forging pond 2, connecting axle 91 is fixed to be set up in forging 2 both sides surfaces in pond, the work of motor 9 drives and forges 2 whole rotatory 180 handstands in pond after the processing is accomplished, electric putter 13 work promotes hits piece 12 and is beaten the forging pond by the outside and beat, titanium alloy after accomplishing the processing is emptyd and is got into delivery sheet 4, the residue that probably appears in the course of working is knocked down simultaneously.
Forge 2 inner wall rings of pond and be equipped with cooling chamber 21, the inside packing of cooling chamber 21 is equipped with coolant and refrigerator, and the refrigerator is connected to the outside power through transmission cable, and cooling chamber 21 top is equipped with heat-conducting plate 22, and backup pad 3 is fixed to be set up in heat-conducting plate 22 top, and the inside heat of titanium alloy is absorbed in the refrigerator work in cooling chamber 21 in the course of working and whole shaping is accelerated.
Conveying plate 4 all is equipped with the transmission band with defeated flitch 5 is inside, and 5 one ends of defeated flitch are equipped with the regulation band, and the regulation band is made by elastic material and sets up in forging 2 tops in the pond, and titanium alloy passes through defeated flitch 5 transmission entering and forges pond 2, and titanium alloy after the processing is accomplished emptys and gets into conveying plate 4, can automatic unloading, improves machining efficiency.
Mount pad 61 both sides all are equipped with derailleur 62, pneumatic cylinder 7 bottom is equipped with drive seat 71, drive seat 71 is inside to be equipped with driving motor and installation piece 8 and is connected with the driving motor transmission, derailleur 62 passes through the transmission cable intercommunication with driving motor, driving motor and the work of derailleur 62 make drive seat 71 rotate the savings energy with higher speed, pneumatic cylinder 7 work simultaneously drives drive piece 71 downstream, when mounting panel 81 contacts the titanium alloy work piece, drive seat 71 is forced to slow down to stopping completely, the rotatory kinetic energy of storage changes into impact energy, hit the titanium alloy work piece through mounting panel 81 and make it warp.
8 bottom surface threaded connection of installation piece is equipped with mounting panel 81, and mounting panel 81 and backup pad 3 phase-match, 8 outside surfaces of installation piece are equipped with infrared sensor 82, and infrared sensor 82 model sets up to RE200B, and infrared sensor 82 detects apart from titanium alloy work piece height, ensures the accuracy of processing.
The working principle of the utility model is as follows:
referring to the description figures 1, 2 and 3: the titanium alloy is transmitted into the forging pool 2 through the material conveying plate 5, the surface of the supporting plate 3 in the forging pool 2 is processed spirally, and a refrigerator in the cooling cavity 21 absorbs the heat in the titanium alloy during the processing process to accelerate the integral forming;
referring to the description of the drawings, figure 1: different mounting plates 81 are selectively mounted at the bottoms of the mounting blocks 8 according to different processing requirements, the driving motor and the transmission 62 work to accelerate the rotation of the driving seat 71 to store energy during work, meanwhile, the hydraulic cylinder 7 works to drive the driving block 71 to move downwards, when the mounting plates 81 contact the titanium alloy workpiece, the driving seat 71 is forced to decelerate to be completely stopped, the stored rotation kinetic energy is converted into impact energy, and the mounting plates 81 are used for striking the titanium alloy workpiece to deform;
referring to the description figures 1 and 2: after the machining is finished, the motor 9 works to drive the forging pool 2 to rotate 180 degrees integrally and stand upside down, meanwhile, the electric push rod 13 works to push the beating block 12 to beat the forging pool from the outer side, the titanium alloy after the machining is finished is poured into the feeding plate 4, and meanwhile, residues possibly occurring in the machining process are knocked off, so that the influence on subsequent machining is avoided.
The points to be finally explained are: first, in the description of the present application, it should be noted that, unless otherwise specified and limited, the terms "mounted," "connected," and "connected" should be understood broadly, and may be a mechanical connection or an electrical connection, or a communication between two elements, and may be a direct connection, and "upper," "lower," "left," and "right" are only used to indicate a relative positional relationship, and when the absolute position of the object to be described is changed, the relative positional relationship may be changed;
secondly, the method comprises the following steps: in the drawings of the disclosed embodiments of the utility model, only the structures related to the disclosed embodiments are referred to, other structures can refer to common designs, and the same embodiment and different embodiments of the utility model can be combined with each other without conflict;
and finally: the above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents, improvements and the like that are within the spirit and principle of the present invention are intended to be included in the scope of the present invention.

Claims (6)

1. The utility model provides a special screw press is forged to titanium alloy, includes support column (1), its characterized in that: support column (1) quantity sets up to be equipped with between two and two support column (1) and forges pond (2), it is equipped with backup pad (3) to forge pond (2) inside fixed, it is equipped with delivery sheet (4) and defeated flitch (5) respectively to forge pond (2) bottom and top rear side, support column (1) top is fixed and is equipped with footstock (6), footstock (6) top is equipped with mount pad (61), mount pad (61) front side surface is equipped with pneumatic cylinder (7), pneumatic cylinder (7) set up in backup pad (3) top, pneumatic cylinder (7) bottom is equipped with installation piece (8), it is equipped with motor (9) respectively to forge pond (2) both sides, motor (9) set up inside support column (1).
2. The special screw press for titanium alloy forging according to claim 1, wherein: support column (1) front side and rear side surface all are equipped with outer fishplate bar (11), outer fishplate bar (11) inboard is equipped with hits and beats piece (12), hit and evenly be equipped with electric putter (13) between beating piece (12) and outer fishplate bar (11), support column (1) inside is equipped with mounting groove and motor (9) and sets up inside the mounting groove, motor (9) and forge and be equipped with connecting axle (91) between pond (2), connecting axle (91) are fixed to be set up in forging pond (2) both sides surface.
3. The special screw press for titanium alloy forging according to claim 1, wherein: forge pond (2) inner wall and encircle and be equipped with cooling chamber (21), cooling chamber (21) inside packing is equipped with cold-storage agent and refrigerator, the refrigerator is connected to outside power through the transmission cable, cooling chamber (21) top is equipped with heat-conducting plate (22), backup pad (3) are fixed to be set up in heat-conducting plate (22) top.
4. The special screw press for titanium alloy forging according to claim 1, wherein: conveying belts are arranged inside the feeding plate (4) and the material conveying plate (5), an adjusting belt is arranged at one end of the material conveying plate (5), and the adjusting belt is made of elastic materials and is arranged at the top of the forging pool (2).
5. The special screw press for titanium alloy forging according to claim 1, wherein: the mounting seat (61) both sides all are equipped with derailleur (62), pneumatic cylinder (7) bottom is equipped with drive seat (71), drive seat (71) inside be equipped with driving motor and installation piece (8) and be connected with the driving motor transmission, derailleur (62) and driving motor pass through the transmission cable intercommunication.
6. The special screw press for titanium alloy forging according to claim 1, wherein: the mounting block (8) bottom surface threaded connection is equipped with mounting panel (81), mounting panel (81) and backup pad (3) phase-match, mounting block (8) outside surface is equipped with infrared sensor (82).
CN202121514081.9U 2021-07-05 2021-07-05 Special screw press for titanium alloy forging Expired - Fee Related CN216027824U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121514081.9U CN216027824U (en) 2021-07-05 2021-07-05 Special screw press for titanium alloy forging

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121514081.9U CN216027824U (en) 2021-07-05 2021-07-05 Special screw press for titanium alloy forging

Publications (1)

Publication Number Publication Date
CN216027824U true CN216027824U (en) 2022-03-15

Family

ID=80554992

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121514081.9U Expired - Fee Related CN216027824U (en) 2021-07-05 2021-07-05 Special screw press for titanium alloy forging

Country Status (1)

Country Link
CN (1) CN216027824U (en)

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Granted publication date: 20220315