Horizontal ring rolling mill for forging

By designing a horizontal ring mill with automatic loading and unloading and oxide scale collection mechanisms, the problems of difficult manual operation and difficult oxide scale removal have been solved, realizing automated processing and efficient resource utilization, and improving work efficiency and safety.

CN223718218UActive Publication Date: 2025-12-26YICHUAN COUNTY HONGCHANG FORGING CO LTD
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Patent Information

Application Number
CN202422388371.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-12-26
Estimated Expiration
2034-09-29

AI Technical Summary

Technical Problem

Existing ring rolling mills require manual operation during processing, which is difficult to operate, inefficient, and can easily cause injury to workers. Furthermore, the oxide scale is difficult to clean effectively and can not be reused.

Method used

A horizontal ring rolling mill including an oxide scale collection mechanism and an automatic loading and unloading mechanism was designed. Through the cooperation of hydraulic cylinders, motors and control switch groups, automatic loading and unloading and oxide scale collection and processing are realized, avoiding manual operation, improving work efficiency and facilitating the secondary processing and utilization of oxide scale.

Benefits of technology

It achieves automatic loading and unloading, avoids worker injuries, improves the efficiency of ring rolling, and realizes automatic collection and secondary processing of oxide scale, thereby improving processing efficiency and resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a horizontal ring rolling mill for forging. The horizontal ring rolling mill comprises a machine body, an oxide skin collecting mechanism and an automatic feeding and discharging mechanism. Sliding rails are arranged at the lower ends of the left side and the right side of the machine body respectively, and a portal frame is slidably connected between the upper ends of the two sliding rails. The oxide skin collecting mechanism is arranged in the machine body; the automatic feeding and discharging mechanism is arranged at the upper end of the portal frame; the device further comprises a ring rolling mechanism, the ring rolling mechanism comprises a supporting box, supporting blocks and auxiliary rolling rollers, the supporting box is slidably connected to the front end of the upper surface of the device body through a sliding way, the rolling rollers are rotationally connected to the middle of the rear side face of the supporting box, and the supporting blocks are rotationally connected to the left end and the right end of the supporting box through rotating shafts correspondingly. According to the horizontal ring rolling mill for forging machining, automatic feeding and discharging are achieved, damage to workers is avoided, the ring rolling work efficiency is improved, meanwhile, oxide skin is automatically collected, and secondary machining and utilization treatment are facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to forging processing technical field, concretely is a horizontal ring rolling mill for forging processing. BACKGROUND

[0002] Ring rolling mill is divided into closed and open ring rolling mill according to process mode.The blank material of closed ring rolling mill is sleeved on the ring rolling column after being heated and punched with small holes, and the blank material is rotated by the inner edge of the rolling roller to realize the thinning of the blank material thickness and the expansion of the diameter.The structure of this process mode is limited, and it is less used.The blank material of open ring rolling mill is sleeved on the ring rolling column after being heated and punched with small holes, and the blank material is rotated by the outer edge of the rolling roller to realize the thinning of the blank material thickness and the expansion of the diameter rolling forming.This process mode is reasonable in feeding and discharging, and the diameter of the ring rolling and the structure of the machine, so it is widely used.

[0003] The existing part of ring rolling mill is sleeved on the ring rolling column after being heated and punched with small holes, and the blank material is rotated by the outer edge of the rolling roller.

[0004] The traditional ring rolling mill has the following problems: manual feeding and discharging are required during processing, the operation difficulty is large, the working efficiency is low, the workers are easily injured, the oxide skin falls into the inside of the ring rolling device, and the cleaning cannot be well realized, therefore, the horizontal ring rolling mill for forging processing is provided. UTILITY MODEL CONTENT

[0005] The utility model solves the technical problem of overcoming the defects of the prior art, and provides a horizontal ring rolling mill for forging processing, which realizes automatic feeding and discharging, avoids injury to workers, improves the ring rolling work efficiency, realizes automatic collection of oxide skin, facilitates secondary processing and utilization, and can effectively solve the problems in the background art.

[0006] To achieve the above object, the utility model provides the following technical scheme: a horizontal ring rolling mill for forging processing, which comprises a machine body, an oxide skin collecting mechanism and an automatic feeding and discharging mechanism.

[0007] The machine body is provided with slide rails at the lower ends of the left and right sides, and a gantry is slidably connected between the upper ends of the two slide rails.

[0008] The oxide skin collecting mechanism is arranged in the inside of the machine body.

[0009] The automatic feeding and discharging mechanism is arranged at the upper end of the gantry.

[0010] Wherein: still including the ring mechanism of rolling, the ring mechanism of rolling includes support box, support block and auxiliary roll, the upper surface front end of the fuselage is connected with support box through slide, the rear side middle part of support box is rotatably connected with roll, the left and right ends of support box are rotably connected with support block through rotating shaft respectively, the rear end of support block is rotatably connected with auxiliary roll respectively, realize automatic feeding and discharging, avoid the harm to the worker, improve the ring working efficiency of rolling, realize automatic collection of oxide skin, facilitate secondary processing and utilization treatment.

[0011] Further, the front end middle part of the fuselage is provided with a control switch group, the output end of the control switch group is electrically connected to the output end of the external power supply, and each electrical appliance is electrically connected.

[0012] Further, the oxide skin collecting mechanism includes a lead screw, a push plate, a guide column and a mesh screen, the mesh screen is arranged in the interior of the fuselage, the right side of the interior of the fuselage is rotatably connected with the lead screw, the left side of the interior of the fuselage is fixedly connected with the guide column, the threaded hole of the right end of the push plate is threadedly connected with the lead screw, the sliding hole of the left end of the push plate is slidably connected with the guide column, and the lower end of the push plate is in contact with the upper surface of the mesh screen, so that the oxide skin is automatically collected.

[0013] Further, the oxide skin collecting mechanism further includes a motor one, the motor one is arranged on the left end of the front side of the fuselage, the output shaft rear end of the motor one is fixedly connected with the left end of the lead screw, the input end of the motor one is electrically connected with the output end of the control switch group, and the oxide skin collecting drive is provided.

[0014] Further, the automatic feeding and discharging mechanism includes a hydraulic cylinder, a sliding bar, a bidirectional lead screw one and a sliding block, the hydraulic cylinder is arranged at the upper end of the gantry respectively, the telescopic ends of the hydraulic cylinder are fixedly connected with the upper surface of the sliding bar, the interior of the sliding bar is rotatably connected with the bidirectional lead screw one, and the left and right ends of the bidirectional lead screw one are threadedly connected with the sliding block, so that lifting is facilitated.

[0015] Further, the automatic feeding and discharging mechanism further includes a gear one, a motor two, a rotating shaft and a gear two, the left end of the bidirectional lead screw one is fixedly connected with the gear one, the motor two is arranged on the upper surface of the sliding bar, the output shaft left end of the motor two is fixedly connected with the rotating shaft, the left end of the rotating shaft is fixedly connected with the gear two, the gear one is meshingly connected with the gear two, the input end of the motor two is electrically connected with the output end of the control switch group, and the clamping drive is provided.

[0016] Further, the automatic feeding and discharging mechanism further includes a support rod, a motor three, a bidirectional lead screw two and a clamping plate, the lower end of the sliding block is provided with the support rod respectively, the interior of the support rod is rotatably connected with the bidirectional lead screw two respectively, the two ends of the two bidirectional lead screws two are threadedly connected with the clamping plate respectively, the motor three is arranged at the rear end of the support rod respectively, the output shaft front ends of the motor three are fixedly connected with the rear ends of the adjacent bidirectional lead screws two respectively, the input ends of the motor three are electrically connected with the output end of the control switch group respectively, and clamping is realized.

[0017] Further, the rolling ring mechanism further comprises a support plate, a rolling ring column, a rolling ring seat, a conical rolling roller and a support frame, the upper end of the support box is rotationally connected with the support plate through a rotating column, the rear end of the support plate is provided with the rolling ring seat, the lower end of the rolling ring seat is provided with the rolling ring column, the middle part of the upper end of the machine body is provided with a placing table, the rear end of the upper surface of the machine body is slidingly connected with the support frame through a sliding groove, the inside of the support frame is slidingly connected with a sliding plate, the front end of the sliding plate is rotationally connected with the conical rolling roller through a rotating shaft, and the rolling ring is realized.

[0018] Further, the rolling ring mechanism further comprises a support plate, a rolling ring column, a rolling ring seat, a conical rolling roller and a support frame, the upper end of the support box is rotationally connected with the support plate through a rotating column, the rear end of the support plate is provided with the rolling ring seat, the lower end of the rolling ring seat is provided with the rolling ring column, the middle part of the upper end of the machine body is provided with a placing table, the rear end of the upper surface of the machine body is slidingly connected with the support frame through a sliding groove, the inside of the support frame is slidingly connected with a sliding plate, the front end of the sliding plate is rotationally connected with the conical rolling roller through a rotating shaft, and the rolling ring is realized.

[0019] Further, the rear end of the machine body is provided with a drain pipe at the water outlet, and the rear end of the machine body is provided with a guide plate at the discharge port, so that the discharge is facilitated.

[0020] Compared with the prior art, the rolling ring machine for forging processing has the following advantages:

[0021] 1、In the process of rolling ring, when the workpiece needs to be fed, the control switch group is controlled, the hydraulic cylinders are operated respectively, two hydraulic cylinders respectively input hydraulic oil through an external hydraulic pump, drive the slide bar to move downward, move to the upper end of the forged workpiece, then the control switch group is controlled, motor two is operated, the output shaft of motor two drives the rotating shaft to rotate, the rotating shaft rotates to drive gear two to rotate, gear two rotates to drive the meshing gear one to rotate, gear one rotates to drive bidirectional screw rod one to rotate, bidirectional screw rod one rotates to drive two sliders to slide towards each other, in turn drive the supporting rods to slide towards each other, then the control switch group is controlled, motor three is operated respectively, the output shaft of motor three drives bidirectional screw rod two to rotate respectively, bidirectional screw rod two rotates to drive the threaded clamping plates to slide towards each other respectively, the workpiece is clamped, after clamping, the hydraulic cylinders are operated respectively, the workpiece is lifted upward, then the gantry slides forward in the slide rail, in turn moves the workpiece to the machining table, the workpiece is sleeved on the rolling ring column, so that the control switch group is controlled, the hydraulic cylinders are operated respectively, two hydraulic cylinders respectively input hydraulic oil through an external hydraulic pump, drive the slide bar to move upward, motor two and motor three are operated in opposite directions respectively, the workpiece is placed on the machining table, automatic feeding and discharging are realized, the harm to workers is avoided, and the rolling ring working efficiency is improved.

[0022] 2、In the process of machining, the cooling of the workpiece produces a large amount of oxide skin, the control switch group is controlled, motor one is operated, the output shaft of motor one drives the screw rod to rotate, in turn drives the threaded push plate to move backward on the guide column, pushes the oxide skin on the upper surface of the mesh screen backward, the oxide skin is discharged through the guide plate for secondary processing and utilization, in the process of machining, the cooling liquid for cooling the workpiece flows into the inner lower end of the machine body, the waste water is discharged from the drain pipe by opening the valve, automatic collection of the oxide skin is realized, and secondary processing and utilization treatment is facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a structure schematic view of the utility model;

[0024] Figure 2 It is a sectional view structure schematic view of the utility model;

[0025] Figure 3 It is a top side sectional view structure schematic view of the utility model;

[0026] Figure 4 It is a rolling ring machine structure schematic view of the utility model;

[0027] Figure 5 It is an enlarged structure schematic view of A of the utility model.

[0028] In the figure: 1 fuselage, 2 control switch group, 3 oxide skin collection mechanism, 31 motor one, 32 lead screw, 33 push plate, 34 guide column, 35 screen, 4 slide rail, 5 gantry, 6 automatic feeding and discharging mechanism, 601 hydraulic cylinder, 602 slide bar, 603 bidirectional lead screw one, 604 sliding block, 605 gear one, 606 motor two, 607 rotating shaft, 608 gear two, 609 support rod, 610 motor three, 611 bidirectional lead screw two, 612 clamping plate, 7 drain pipe, 8 guide plate, 9 rolling ring mechanism, 91 support box, 92 support block, 93 auxiliary rolling roller, 94 support plate, 95 rolling ring column, 96 rolling ring seat, 97 conical rolling roller, 98 support frame, 10 motor four, 11 angle adjusting motor, 12 electric push rod, 13 motor five. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0030] Please refer to Figures 1-5 The embodiment provides a technical scheme: a horizontal rolling ring machine for forging processing, comprising a fuselage 1, an oxide skin collection mechanism 3 and an automatic feeding and discharging mechanism 6.

[0031] The fuselage 1: the lower ends of the left and right sides thereof are respectively provided with slide rails 4, the upper ends of the two slide rails 4 are slidably connected with a gantry 5, the front end of the fuselage 1 is provided with a control switch group 2 in the middle, the output end of the control switch group 2 is electrically connected with the output end of an external power supply, the rear end of the fuselage 1 is provided with a drain pipe 7 at the drain port, and the rear end of the fuselage 1 is provided with a guide plate 8 at the discharge port.

[0032] The oxide skin collecting mechanism 3 is arranged in the interior of the machine body 1, and comprises a lead screw 32, a push plate 33, a guide column 34 and a mesh 35. The mesh 35 is arranged in the interior of the machine body 1, the lead screw 32 is rotatably connected to the right side of the interior of the machine body 1, the guide column 34 is fixedly connected to the left side of the interior of the machine body 1, the threaded hole at the right end of the push plate 33 is threadedly connected with the lead screw 32, the sliding hole at the left end of the push plate 33 is slidably connected with the guide column 34, the lower end of the push plate 33 is in contact with the upper surface of the mesh 35, the oxide skin collecting mechanism 3 further comprises a motor one 31, the motor one 31 is arranged at the left end of the front side of the machine body 1, the rear end of the output shaft of the motor one 31 is fixedly connected with the left end of the lead screw 32, the input end of the motor one 31 is electrically connected with the output end of the control switch group 2, a large amount of oxide skin is generated during the machining process of the cooling of the workpiece, the motor one 31 is operated by the adjustment and control of the control switch group 2, the output shaft of the motor one 31 drives the lead screw 32 to rotate, and then drives the threaded push plate 33 to move backward on the guide column 34, the oxide skin on the upper surface of the mesh 35 is pushed backward, the oxide skin is discharged through the guide plate 8 for secondary machining and utilization, the cooling liquid for cooling the workpiece during the machining process flows into the lower end of the interior of the machine body 1, and is discharged from the drain pipe 7 by opening the valve waste water;

[0033] The automatic feeding and discharging mechanism 6 is arranged at the upper end of the gantry 5, and comprises hydraulic cylinders 601, sliding bars 602, bidirectional screw rods 603 and sliding blocks 604. The hydraulic cylinders 601 are arranged at the upper end of the gantry 5 respectively, and the extension ends of the hydraulic cylinders 601 are fixedly connected with the upper surfaces of the sliding bars 602. The bidirectional screw rods 603 are rotatably connected in the sliding bars 602, and the left and right ends of the bidirectional screw rods 603 are threadedly connected with the sliding blocks 604 respectively. The automatic feeding and discharging mechanism 6 further comprises gear wheels 605, a second motor 606, a rotating shaft 607 and gear wheels 608. The left end of the bidirectional screw rod 603 is fixedly connected with the gear wheel 605. The second motor 606 is arranged on the upper surface of the sliding bar 602. The left end of the output shaft of the second motor 606 is fixedly connected with the rotating shaft 607. The left end of the rotating shaft 607 is fixedly connected with the gear wheel 608. The gear wheel 605 is meshingly connected with the gear wheel 608. The input end of the second motor 606 is electrically connected with the output end of the control switch group 2. The automatic feeding and discharging mechanism 6 further comprises supporting rods 609, third motors 610, bidirectional screw rods 611 and clamping plates 612. The lower ends of the sliding blocks 604 are respectively provided with the supporting rods 609. The inner parts of the supporting rods 609 are rotatably connected with the bidirectional screw rods 611 respectively. The two ends of the bidirectional screw rods 611 are threadedly connected with the clamping plates 612 respectively. The third motors 610 are arranged at the rear ends of the supporting rods 609 respectively. The front ends of the output shafts of the third motors 610 are fixedly connected with the rear ends of the adjacent bidirectional screw rods 611 respectively. The input ends of the third motors 610 are electrically connected with the output end of the control switch group 2. When the workpiece is rolled, and feeding is needed, the control switch group 2 is controlled. The hydraulic cylinders 601 are operated respectively. The two hydraulic cylinders 601 input hydraulic oil through an external hydraulic pump, drive the sliding bars 602 to move downwards, and move to the upper end of the forged workpiece. Then the control switch group 2 is controlled. The second motor 606 is operated. The output shaft of the second motor 606 drives the rotating shaft 607 to rotate. The rotating shaft 607 drives the gear wheel 608 to rotate. The gear wheel 608 drives the meshing gear wheel 605 to rotate. The gear wheel 605 drives the bidirectional screw rod 603 to rotate. The bidirectional screw rod 603 drives the two sliding blocks 604 to slide towards each other. Then the supporting rods 609 slide towards each other. Then the control switch group 2 is controlled. The third motors 610 are operated respectively. The output shafts of the third motors 610 drive the bidirectional screw rods 611 to rotate respectively. The bidirectional screw rods 611 drive the threaded clamping plates 612 to slide towards each other respectively. The workpiece is clamped. After clamping, the hydraulic cylinders 601 are operated respectively. The workpiece is lifted upwards. Then the gantry 5 slides forwards in the sliding rail 4. The workpiece is moved to the machining table. The workpiece is sleeved on the rolling ring column 95. The control switch group 2 is controlled. The hydraulic cylinders 601 are operated respectively. The two hydraulic cylinders 601 input hydraulic oil through an external hydraulic pump. The sliding bars 602 are driven to move upwards. The second motor 606 and the third motor 610 are operated in opposite directions. The workpiece is placed on the machining table.

[0034] The rolling ring mechanism 9 comprises a support box 91, support blocks 92 and auxiliary rolling rollers 93, the upper surface of the machine body 1 is slidably connected with the support box 91 through a sliding channel, the rear side of the support box 91 is rotatably connected with a rolling roller, the left and right ends of the support box 91 are rotatably connected with the support blocks 92 through rotating shafts, the rear ends of the support blocks 92 are rotatably connected with the auxiliary rolling rollers 93, the support box 91 is rotatably connected with a support plate 94 through a rotating column, the rear end of the support plate 94 is provided with a rolling ring seat 96, the lower end of the rolling ring seat 96 is provided with a rolling ring column 95, the upper end of the machine body 1 is provided with a placing table, the rear end of the upper surface of the machine body 1 is slidably connected with a support frame 98 through a sliding groove, the inside of the support frame 98 is slidably connected with a sliding plate, the front end of the sliding plate is rotatably connected with a conical rolling roller 97 through a rotating shaft, the upper end of the machine body 1 is provided with a motor four 10, angle adjusting motors 11, an electric push rod 12 and a motor five 13, the motor four 10 is arranged on the right side of the upper end of the support box 91, the left end of the output shaft of the motor four 10 is fixedly connected with the right end of the rotating column, the angle adjusting motors 11 are arranged on the upper ends of the support plates of the left and right ends of the support box 91, the lower ends of the output shafts of the angle adjusting motors 11 are fixedly connected with the upper ends of the adjacent rotating shafts, the electric push rod 12 is arranged on the upper end of the support frame 98, the telescopic end of the electric push rod 12 is fixedly connected with the upper end of the sliding plate, the motor five 13 is arranged on the rear end of the sliding plate, the front end of the output shaft of the motor five 13 is fixedly connected with the rear end of the rotating shaft, the input ends of the motor four 10, the angle adjusting motors 11, the electric push rod 12 and the motor five 13 are electrically connected with the output end of the control switch group 2, an electric push rod one can be arranged between the inner wall of the machine body 1 and the support box 91, an electric push rod two is arranged between the rear wall of the machine body 1 and the support frame 98, the input ends of the electric push rod one and the electric push rod two are electrically connected with the output end of the control switch group 2, the workpiece is sleeved on the outside of the rolling ring column 95, then the control switch group 2 is adjusted and controlled, the motor four 10 operates, the output shaft of the motor four 10 drives the rotating column to rotate, thereby driving the support plate 94 to rotate, so that the workpiece is placed on the placing table, then the electric push rod one is stretched by adjusting and controlling the control switch group 2, the support box 91 slides backward in the sliding groove, a rolling motor can be arranged in the support box 91, the output shaft of the rolling motor is fixedly connected with the upper end of the rolling roller, the input end of the rolling motor is electrically connected with the output end of the control switch group 2, the angle adjusting motor 11 operates by adjusting and controlling the control switch group 2, the output shaft of the angle adjusting motor 11 drives the support block 92 to swing, thereby realizing that the auxiliary rolling roller 93 contacts the outer arc surface of the workpiece, the outer arc surface of the workpiece is limited when the workpiece is rolled by the side surface of the auxiliary rolling roller 93, the rolling motor operates by adjusting and controlling the control switch group 2, the output shaft of the rolling motor drives the rolling roller to rotate, the rolling roller rotates to contact and rub the outer arc surface of the workpiece, so that the workpiece rotates on the rolling ring column 95, at the same time, the electric push rod two, the electric push rod 12 and the motor five 13 operate under the adjustment and control of the control switch group 2,The electric push rod two drives the support frame 98 to move forward, so that the conical rolling roller 97 is above the workpiece. Then the electric push rod 12 drives the sliding plate and the conical rolling roller 97 to move down, so that the conical rolling roller 97 contacts the upper surface of the workpiece. The output shaft of the motor five 13 drives the rotating column to rotate, and the rotating column drives the conical rolling roller 97 to rotate. Thereafter, the electric push rod one moves forward slowly, and the electric push rod 12 is appropriately stretched as the height of the workpiece decreases during rolling. The conical rolling roller 97 moves down to keep in close contact with the upper surface of the workpiece. Until the workpiece to be forged is rolled to the end, the structures are reset.

[0035] The utility model provides a kind of working principle of horizontal ring rolling machine for forging processing as follows: when ring rolling is carried out to workpiece, when it needs to be fed, two hydraulic cylinders 601 respectively input hydraulic oil by external hydraulic pump by controlling switch group 2, which drives slide bar 602 to move downwards, and moves to the upper end of the forged workpiece. Then, by controlling switch group 2, motor two 606 operates, and the output shaft of motor two 606 drives rotating shaft 607 to rotate, which drives gear two 608 to rotate, gear two 608 drives meshing gear one 605 to rotate, gear one 605 drives bidirectional screw rod one 603 to rotate, bidirectional screw rod one 603 drives two sliders 604 to slide towards each other, and further drives support rod 609 to slide towards each other. Then, by controlling switch group 2, motor three 610 operates, and the output shaft of motor three 610 drives bidirectional screw rod two 611 to rotate, which drives threaded clamping plate 612 to slide towards each other, and clamps the workpiece. After clamping, hydraulic cylinders 601 operate, which lifts the workpiece upwards. Then, by sliding forward in slide rail 4, the workpiece is moved to the processing table. Electric push rod one is arranged between the inner wall of machine body 1 and support box 91, and electric push rod two is arranged between the rear wall of machine body 1 and support frame 98. The input ends of electric push rod one and electric push rod two are electrically connected to the output end of control switch group 2. The workpiece is sleeved on the outside of ring rolling column 95. Then, by controlling switch group 2, motor four 10 operates, and the output shaft of motor four 10 drives rotating column to rotate, which drives support plate 94 to rotate, and places the workpiece on the placement table. Then, by controlling switch group 2, electric push rod one is stretched, and support box 91 slides backwards in the sliding groove. Ring rolling motor is arranged in support box 91, the output shaft of ring rolling motor is fixedly connected to the upper end of ring rolling roller, and the input end of ring rolling motor is electrically connected to the output end of control switch group 2. By controlling switch group 2, angle adjusting motor 11 operates, which drives support block 92 to swing, and realizes that auxiliary ring rolling roller 93 contacts the outer arc surface of the workpiece. By controlling switch group 2, ring rolling motor operates, the output shaft of ring rolling motor drives ring rolling roller to rotate, and the workpiece rotates on ring rolling column 95. At the same time, by controlling switch group 2, electric push rod two, electric push rod 12 and motor five 13 operate. Electric push rod two drives support frame 98 to move forward, and conical ring rolling roller 97 is above the workpiece. Then, electric push rod 12 drives sliding plate and conical ring rolling roller 97 to move downwards, and conical ring rolling roller 97 contacts the upper surface of the workpiece. The output shaft of motor five 13 drives rotating column to rotate, which drives conical ring rolling roller 97 to rotate. After that, electric push rod one moves forward slowly, and electric push rod 12 stretches appropriately, and conical ring rolling roller 97 moves downwards appropriately, so that it always adheres to the upper surface of the workpiece.After the workpiece to be forged is finished, each structure is reset, and a large amount of oxide skin is generated during the processing of the workpiece, the control switch group 2 is controlled, the motor 31 is operated, the output shaft of the motor 31 drives the screw rod 32 to rotate, and then the threaded push plate 33 moves backward on the guide column 34, the oxide skin on the upper surface of the mesh 35 is pushed backward, the oxide skin is discharged through the guide plate 8, and secondary processing is utilized, the cooling liquid for cooling the workpiece flows into the inside lower end of the machine body 1 during the processing, and the waste water is discharged from the drain pipe 7 by opening the valve.

[0036] It is worth noting that the motor 31, the motor 606, the motor 610, the motor 10, the angle adjusting motor 11, the electric push rod 12 and the motor 13 disclosed in the above embodiment, the motor 31 and the motor 606, the motor 10 and the motor 13 can be selected as D180M-O160030B-E, the motor 610 can be selected as V5-040130FC2A, and the control switch group 2 is provided with a switch button corresponding to the motor 31, the motor 606, the motor 610, the motor 10, the angle adjusting motor 11, the electric push rod 12 and the motor 13 for controlling the switch work.

[0037] The above is only an embodiment of the present application, and does not limit the patent range of the present application, and any equivalent structure or equivalent process transformation, or direct or indirect application in other related technical fields, is also included in the patent protection range of the present application.

Claims

1. A horizontal ring rolling machine for forging processing, characterized by: Including fuselage (1), oxide skin collection mechanism (3) and automatic feeding and discharging mechanism (6); Fuselage (1): the lower end of its left and right sides is respectively provided with slide rail (4), and the upper end of the two slide rails (4) is slidably connected with gantry (5); The oxide skin collection mechanism (3) is arranged in the inside of the fuselage (1); The automatic feeding and discharging mechanism (6) is arranged at the upper end of the gantry (5); Wherein: it further includes rolling ring mechanism (9), the rolling ring mechanism (9) includes support box (91), support block (92) and auxiliary rolling roller (93), the upper surface of the fuselage (1) is slidably connected with support box (91) through slide at the front end, the rear side of the support box (91) is rotatably connected with the rolling roller in the middle part, the left and right ends of the support box (91) are rotatably connected with support block (92) through rotating shaft respectively, the rear end of the support block (92) is rotatably connected with auxiliary rolling roller (93) respectively.

2. A horizontal ring rolling machine for forging process according to claim 1, characterized in that: The front end of the fuselage (1) is provided with control switch group (2), and the output end of the control switch group (2) is electrically connected with the output end of the external power supply.

3. A horizontal ring rolling machine for forging processes according to claim 2, characterized in that: The oxide skin collection mechanism (3) includes lead screw (32), push plate (33), guide column (34) and mesh screen (35), the mesh screen (35) is arranged in the inside of the fuselage (1), the inside of the fuselage (1) is rotatably connected with lead screw (32) at the right side, the inside of the fuselage (1) is fixedly connected with guide column (34) at the left side, the threaded hole of the right end of push plate (33) is threadedly connected with lead screw (32), the sliding hole of the left end of push plate (33) is slidably connected with guide column (34), and the lower end of push plate (33) is in contact with the upper surface of mesh screen (35).

4. A horizontal ring rolling machine for forging according to claim 3, characterized in that: The oxide skin collection mechanism (3) further includes motor one (31), the motor one (31) is arranged at the left end of the front side of the fuselage (1), the output shaft rear end of the motor one (31) is fixedly connected with the left end of the lead screw (32), and the input end of the motor one (31) is electrically connected with the output end of the control switch group (2).

5. A horizontal ring rolling machine for forging process according to claim 2, characterized in that: The automatic feeding and discharging mechanism (6) includes hydraulic cylinder (601), slide bar (602), bidirectional lead screw one (603) and sliding block (604), the hydraulic cylinder (601) is arranged at the upper end of the gantry (5) respectively, the telescopic end of the hydraulic cylinder (601) is fixedly connected with the upper surface of the slide bar (602), the inside of the slide bar (602) is rotatably connected with bidirectional lead screw one (603), and the left and right ends of the bidirectional lead screw one (603) are threadedly connected with sliding block (604) respectively.

6. A horizontal ring rolling machine for forging according to claim 5, characterized in that: The automatic feeding and discharging mechanism (6) further includes gear one (605), motor two (606), rotating shaft (607) and gear two (608), the left end of the bidirectional lead screw one (603) is fixedly connected with gear one (605), the motor two (606) is arranged on the upper surface of the slide bar (602), the output shaft left end of the motor two (606) is fixedly connected with rotating shaft (607), the left end of the rotating shaft (607) is fixedly connected with gear two (608), gear one (605) is meshingly connected with gear two (608), and the input end of the motor two (606) is electrically connected with the output end of the control switch group (2).

7. A horizontal ring rolling machine for forging process according to claim 6, characterized in that: The automatic feeding and discharging mechanism (6) further includes supporting rods (609), a motor three (610), bidirectional screw rods two (611) and clamping plates (612), the lower ends of the sliding blocks (604) are respectively provided with the supporting rods (609), the inner parts of the supporting rods (609) are respectively rotationally connected with the bidirectional screw rods two (611), the two ends of the two bidirectional screw rods two (611) are respectively threadedly connected with the clamping plates (612), the motor three (610) is arranged at the rear ends of the supporting rods (609), the front ends of the output shafts of the motor three (610) are all fixedly connected with the rear ends of the adjacent bidirectional screw rods two (611), and the input ends of the motor three (610) are all electrically connected with the output ends of the control switch group (2).

8. A horizontal ring rolling machine for forging process according to claim 2, characterized in that: The rolling ring mechanism (9) further includes a supporting plate (94), a rolling ring column (95), a rolling ring seat (96), a conical rolling roller (97) and a supporting frame (98), the upper end of the supporting box (91) is rotationally connected with the supporting plate (94) through a rotating column, the rear end of the supporting plate (94) is provided with the rolling ring seat (96), the lower end of the rolling ring seat (96) is provided with the rolling ring column (95), the upper end of the machine body (1) is provided with a placing table, the rear end of the upper surface of the machine body (1) is slidably connected with the supporting frame (98) through a sliding groove, the inside of the supporting frame (98) is slidably connected with a sliding plate, and the front end of the sliding plate is rotationally connected with the conical rolling roller (97) through a rotating shaft.

9. A horizontal ring rolling machine for forging according to claim 8, characterized in that: Further includes a motor four (10), an angle adjusting motor (11), an electric push rod (12) and a motor five (13), the motor four (10) is arranged on the right side surface of the supporting box (91) and at the upper end, the left end of the output shaft of the motor four (10) is fixedly connected with the right end of the rotating column, the angle adjusting motor (11) is arranged on the upper ends of the supporting plates at the left and right ends of the supporting box (91), the lower ends of the output shafts of the angle adjusting motor (11) are fixedly connected with the upper ends of the adjacent rotating shafts, the electric push rod (12) is arranged at the upper end of the supporting frame (98), the telescopic end of the electric push rod (12) is fixedly connected with the upper end of the sliding plate, the motor five (13) is arranged at the rear end of the sliding plate, the front end of the output shaft of the motor five (13) is fixedly connected with the rear end of the rotating shaft, and the input ends of the motor four (10), the angle adjusting motor (11), the electric push rod (12) and the motor five (13) are all electrically connected with the output ends of the control switch group (2).

10. The horizontal ring rolling machine for forging process according to claim 1, characterized in that: The rear end of the machine body (1) is provided with a drain pipe (7), and the rear end of the machine body (1) is provided with a guide plate (8).