CN206153291U - Rolling device of developments controlled rolling variable - Google Patents

Rolling device of developments controlled rolling variable Download PDF

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Publication number
CN206153291U
CN206153291U CN201621196766.2U CN201621196766U CN206153291U CN 206153291 U CN206153291 U CN 206153291U CN 201621196766 U CN201621196766 U CN 201621196766U CN 206153291 U CN206153291 U CN 206153291U
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China
Prior art keywords
rolling device
variable
displacement
servomotor
leading screw
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Active
Application number
CN201621196766.2U
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Chinese (zh)
Inventor
李显军
魏雪冬
张光健
秦兴超
姜业平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangzhou Dragon Pipe Technology Co Ltd
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Guangzhou Dragon Pipe Technology Co Ltd
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Filing date
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Priority to CN201621196766.2U priority Critical patent/CN206153291U/en
Application granted granted Critical
Publication of CN206153291U publication Critical patent/CN206153291U/en
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Abstract

The utility model discloses a rolling device of developments controlled rolling variable, rolling device includes that the follow up sets gradually down to be located bottom roll, top tread roller and servo lead screw adjustment mechanism on the same vertical face, rolling device still is equipped with displacement detection mechanism and balancing pole mechanism, and two sets of balancing poles are equipped with the balancing pole that two vertical parallel set up respectively, displacement sensor sets up the upper portion of one of them balancing pole, servo lead screw adjustment mechanism includes servo motor and the lead screw of being connected with servo motor, servo motor sets up on balancing pole mechanism upper portion. The utility model discloses a displacement detection mechanism's displacement sensor detects the bearing frame displacement of top tread roller to directly feed back the testing result to servo lead screw adjustment mechanism, by the bearing frame of servo motor drives lead screw and two top tread rollers of gangbar adjustment, realize dynamic controlled rolling variable, accurate controlled rolling precision.

Description

A kind of dynamic control rolls the rolling device of variable
Technical field
This utility model is related to the technical field of aluminum radiating tube process equipment, and in particular to a kind of dynamic control rolls variable Rolling device.
Background technology
With China's automobile, the fast development of air-conditioning industry, the flat aluminum pipe of ratio-frequency welding, header, intercooler pipes are just increasingly Many is applied in medium-to-high grade air conditioning for automobiles, domestic and Industrial air conditioner equipment, and at present, enterprise's existing equipment is high in production Frequency is welded during flat aluminum pipe, header, intercooler pipes.
During the rolling variable of milling train is adjusted, roll seam is adjusted using manually mechanical mode, Adjustment precision It is low, and real-time adjustment is unable to, so as to affect the automaticity of enterprise.
Utility model content
In order to solve the above problems, a kind of dynamic control rolls the rolling device of variable disclosed in this utility model.
The technical scheme that this utility model is adopted for achieving the above object is:
A kind of dynamic control rolls the rolling device of variable, and the rolling device includes what is set gradually from the bottom up, and Bottom roll, topping roll and servo leading screw governor motion on same vertical plane;
State rolling device and be additionally provided with displacement detecting mechanism and balancing pole mechanism, the displacement detecting mechanism includes displacement sensing Device and magnet ring fixed disk, the balancing pole mechanism includes the Liang Zu gimbal levers, and the Liang Zu gimbal levers are respectively equipped with two and vertically parallel set The gimbal lever put, institute's displacement sensors arrange the top of a wherein gimbal lever, and the magnet ring fixed disk holds and passed in displacement The bottom of sensor;
The servo leading screw governor motion includes servomotor and the screw mandrel being connected with servomotor, the servomotor Balancing pole mechanism top is arranged on, the servo leading screw governor motion electrically connects the displacement detecting mechanism.
Used as further improvement, gimbal lever top described in two groups is respectively equipped with an adapting table, and the adapting table is provided with solid Reservation, the servomotor is fixed therein the side of a fixed seat.
Used as further improvement, the servo leading screw governor motion is additionally provided with manual adjustment wheel, and the manual adjustment wheel sets Put the side of a fixed seat wherein.
Used as further improvement, the servo leading screw governor motion also includes a gangbar, the gangbar connection left and right Manual pulley and servomotor in the fixed seat of both sides.
As further improvement, mobile bearing and once fixed bearing block, institute are respectively equipped with one in every group of gimbal lever State topping roll and connect two mobile bearings, the bottom roll connects two fixed bearing blocks.
The utility model has the advantage of:The displacement transducer of displacement detecting mechanism of the present utility model, detects topping roll Bearing block displacement, and by testing result direct feedback to servo leading screw governor motion, by servomotor drive screw mandrel with And gangbar adjusts the bearing block of two topping rolls, realize that dynamic control rolls variable, precise rolling control precision.
Below in conjunction with the accompanying drawings with specific embodiment, this utility model is further illustrated.
Description of the drawings
Fig. 1 rolls the rolling device overall structure diagram of variable for the dynamic control of the present embodiment;
Fig. 2 rolls the broken section structural representation of the rolling device of variable for the dynamic control of the present embodiment;
Fig. 3 is aminoacyl site mplifying structure schematic diagram in Fig. 2.
In figure:1. bottom roll, 2. topping roll, 3. servo leading screw governor motion, 31. servomotors, 32. screw mandrels, 33. is manual Left regulation wheel, 34. gangbar, 4. displacement detecting mechanism, 41. displacement sensors, 42. magnet ring fixed disks, 5. balancing pole mechanism, 51. is flat Weighing apparatus bar, 52. adapting tables, 53. fixed seats, mobile bearing on 54., 55. times fixed bearing blocks.
Specific embodiment
Embodiment, referring to Fig. 1~3, the dynamic control that the present embodiment is provided rolls the rolling device of variable, the rolling dress Put including setting gradually from the bottom up, and bottom roll 1 on same vertical plane, topping roll 2 and servo leading screw are adjusted Mechanism 3;The rolling device is additionally provided with displacement detecting mechanism 4 and balancing pole mechanism 5, and the displacement detecting mechanism 4 includes displacement Sensor 41 and magnet ring fixed disk 42, the balancing pole mechanism 5 includes the Liang Zu gimbal levers 51, and the Liang Zu gimbal levers 51 are respectively equipped with two The gimbal lever 51 that bar vertically be arranged in parallel, institute's displacement sensors 41 arrange the top of a wherein gimbal lever 51, the magnet ring Fixed disk 42 is held in the bottom of displacement transducer 41;The servo leading screw governor motion 3 include servomotor 31 and with watch The screw mandrel 32 of the connection of motor 31 is taken, the servomotor 31 is arranged on the top of balancing pole mechanism 5, the servo leading screw governor motion The 3 electrical connections displacement detecting mechanism 4.
The top of the gimbal lever 51 described in two groups is respectively equipped with an adapting table 52, and the adapting table 52 is provided with fixed seat 53, institute State the side that servomotor 31 is fixed therein a fixed seat 53.The servo leading screw governor motion 3 is additionally provided with regulation manually Wheel 33, the manual adjustment wheel 33 is disposed therein the side of a fixed seat 53.The servo leading screw governor motion 3 also includes One gangbar 34, the manual pulley and servomotor 31 in the fixed seat 53 of the connection of the gangbar 34 left and right sides.Servo leading screw Governor motion 3 is rotated by the drive screw 32 of servomotor 31, the synchronization action of gangbar 34, drives the screw mandrel 32 of manual pulley side Synchronization action, and then drive mobile bearing 54 on two to move up and down action, adjust the roller position of topping roll 2.
Mobile bearing 54 and once fixed bearing block 55, the topping roll 2 are respectively equipped with one in every group of gimbal lever 51 Connect two mobile bearings, the bottom roll 1 connects two fixed bearing blocks.Upper mobile bearing 54 is existed by two mobile bearings Action is moved up and down in the gimbal lever 51.
The present embodiment provide displacement detecting mechanism 4 displacement transducer 41, detect topping roll 2 bearing block movement away from From, and by testing result direct feedback to servo leading screw governor motion 3, screw mandrel 32 and gangbar 34 are driven by servomotor 31 The bearing block of two topping rolls 2 is adjusted, realizes that dynamic control rolls variable, precise rolling control precision.
This utility model is not limited to above-mentioned embodiment, using identical with this utility model above-described embodiment or approximate dress Put, and other for obtaining are used for the rolling device that dynamic control rolls variable, within protection domain of the present utility model.

Claims (5)

1. a kind of dynamic control rolls the rolling device of variable, it is characterised in that:The rolling device is included from the bottom up successively Arrange, and the bottom roll on same vertical plane, topping roll and servo leading screw governor motion;The rolling device also sets There are displacement detecting mechanism and balancing pole mechanism, the displacement detecting mechanism includes displacement transducer and magnet ring fixed disk, described flat Weighing apparatus linkage includes the Liang Zu gimbal levers, and the Liang Zu gimbal levers are respectively equipped with two gimbal levers vertically be arrangeding in parallel, and the displacement is passed Sensor arranges the top of a wherein gimbal lever, and the magnet ring fixed disk is held in the bottom of displacement transducer;
The servo leading screw governor motion includes servomotor and the screw mandrel being connected with servomotor, and the servomotor is arranged On balancing pole mechanism top, the servo leading screw governor motion electrically connects the displacement detecting mechanism.
2. dynamic control according to claim 1 rolls the rolling device of variable, it is characterised in that:The gimbal lever described in two groups Top is respectively equipped with an adapting table, and the adapting table is provided with fixed seat, and the servomotor is fixed therein a fixed seat Side.
3. dynamic control according to claim 2 rolls the rolling device of variable, it is characterised in that:The servo leading screw is adjusted Section mechanism is additionally provided with manual adjustment wheel, and the manual adjustment wheel is disposed therein the side of a fixed seat.
4. dynamic control according to claim 3 rolls the rolling device of variable, it is characterised in that:The servo leading screw is adjusted Section mechanism also includes a gangbar, the manual pulley and servomotor in the fixed seat of the gangbar connection left and right sides.
5. dynamic control according to claim 1 rolls the rolling device of variable, it is characterised in that:Divide in every group of gimbal lever Mobile bearing and once fixed bearing block are not provided with one, the topping roll connects two mobile bearings, and the bottom roll connects Connect two fixed bearing blocks.
CN201621196766.2U 2016-11-03 2016-11-03 Rolling device of developments controlled rolling variable Active CN206153291U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621196766.2U CN206153291U (en) 2016-11-03 2016-11-03 Rolling device of developments controlled rolling variable

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621196766.2U CN206153291U (en) 2016-11-03 2016-11-03 Rolling device of developments controlled rolling variable

Publications (1)

Publication Number Publication Date
CN206153291U true CN206153291U (en) 2017-05-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201621196766.2U Active CN206153291U (en) 2016-11-03 2016-11-03 Rolling device of developments controlled rolling variable

Country Status (1)

Country Link
CN (1) CN206153291U (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106955895A (en) * 2017-05-11 2017-07-18 江苏大学 Large-scale two-roll cold rolling mill rolls thickness of slab governor motion
CN108906894A (en) * 2018-06-29 2018-11-30 广州凌龙管业科技有限公司 A kind of hourglass pipe roll control system and method
CN114160605A (en) * 2021-10-28 2022-03-11 首都航天机械有限公司 Forming device and method suitable for variable-section pipe

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106955895A (en) * 2017-05-11 2017-07-18 江苏大学 Large-scale two-roll cold rolling mill rolls thickness of slab governor motion
CN108906894A (en) * 2018-06-29 2018-11-30 广州凌龙管业科技有限公司 A kind of hourglass pipe roll control system and method
CN108906894B (en) * 2018-06-29 2020-02-11 广州凌龙管业科技有限公司 Hourglass pipe rolling control system
CN114160605A (en) * 2021-10-28 2022-03-11 首都航天机械有限公司 Forming device and method suitable for variable-section pipe

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