CN203484982U - Workpiece machining and detecting integrated machine tool - Google Patents

Workpiece machining and detecting integrated machine tool Download PDF

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Publication number
CN203484982U
CN203484982U CN201320523317.4U CN201320523317U CN203484982U CN 203484982 U CN203484982 U CN 203484982U CN 201320523317 U CN201320523317 U CN 201320523317U CN 203484982 U CN203484982 U CN 203484982U
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China
Prior art keywords
machine tool
unit head
workpiece
control system
tool body
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Expired - Lifetime
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CN201320523317.4U
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Chinese (zh)
Inventor
秦祖安
舒万强
唐勇
赵纯东
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MIANYANG BRILLIANCE RUIAN AUTO COMPONENTS CO Ltd
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MIANYANG BRILLIANCE RUIAN AUTO COMPONENTS CO Ltd
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Priority to CN201320523317.4U priority Critical patent/CN203484982U/en
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Abstract

The utility model discloses a workpiece machining and detecting integrated machine tool which comprises a machine tool body. A power system is arranged on the machine tool body and comprises at least three power heads. The power heads comprise a machining function power head and a detecting function power head. A moving system for workpiece moving and object conveying is arranged on the machine tool body. A control system used for controlling a machining process of the machine tool is arranged on the machine tool body and connected with the power system and the moving system. The plurality of power heads are adopted, functions of the power heads include the machining function, the detecting function and various other functions, machining quality is high, quality detection can be conducted while machining is conducted, and machining devices and time are saved. Meanwhile, an automatic workpiece problem alarming device and an automatic stopping device are provided, defect workpieces can be found timely, and continuous machining of the defect workpieces is avoided.

Description

Workpiece processing detects integrated machine tool
Technical field
The utility model relates to a kind of workpiece processing and checkout gear, is specifically related to a kind of workpiece processing and detects integrated machine tool.
Background technology
Unit head is to realize main motion and feed motion, and has the power part of automatic workpiece circulation.Also claim dynamic tool apron, refer to be arranged on power cutter tower, can be by the tool rest of driven by servomotor.This tool rest is generally applied on complex milling machine, also has minority to can be applicable on the machining center of drive cutter tower.
Be accompanied by the raising of day by day complicated, accuracy class and the working (machining) efficiency of workpiece, multiaxis becomes the condition of toolroom machine indispensability to, high rotating speed, except processing center machine moves towards function Composite, many new processing forms are developed by early stage horizontal lathe in lathe aspect, for example double knife towers, vertical lathe, handstand lathe and complex milling machine kind, to comply with the demand of New Times processing mode.Wherein turnning and milling new ideas compounding machine is undoubtedly the toolroom machine masterpiece of a new technology combination, maximum advantage is on same board, to do easily the processing of complex parts, can carry out turning, boring, tapping, end face grooving, side grooving, side milling, angular hole-boring, curve milling simultaneously ... etc..By a toolroom machine, can complete all work flows of a part, greatly reduce loading and unloading and change planes time of platform processing, and the chance that reduces artificial tolerance, reach the processing concept of " Do In One ".In new complex milling machine from generation to generation, no matter be the C shaft head of tool calibration, secondary main shaft, Y-axis etc., therefore the power cutter tower of all must arranging in pairs or groups just can possess the compound function of turnning and milling, and a functional good, C axle power cutter tower that precision is high, will make new generation complex milling machine more attain perfect.Machining tool of the prior art, the problems such as the leakage brill occurring repeatedly in processing as the radial direction oil hole process of camshaft workpiece, radial direction oil hole and axial oilhole do not connect, life causes product in engine, because axle journal place is unlubricated, to occur the quality problems such as journal wear, locking.
Utility model content
The utility model has overcome the deficiencies in the prior art, provides a kind of workpiece processing to detect integrated machine tool, poor to machining tool crudy in prior art to be solved, functional single, causes cost to increase, the problems such as inefficiency.
For solving above-mentioned technical problem, the utility model by the following technical solutions:
Workpiece processing detects an integrated machine tool, comprises machine tool body; On described machine tool body, be provided with dynamical system; Described dynamical system comprises at least three unit heads; Described unit head comprises machining functions unit head and measuring ability unit head; On described machine tool body, be provided with for workpiece and walk and the kinematic system of transmission object; On described machine tool body, be provided with for controlling the control system of lathe process; Described control system is connected with described dynamical system; Described control system is connected with described kinematic system.
Further technical scheme is that dynamical system comprises three unit heads, and described three unit heads are respectively that the first pneumatic high rotating speed unit head, the second pneumatic high rotating speed unit head and the 3rd detect unit head; Described the first pneumatic high rotating speed unit head is connected with described control system; Described the second high rotating speed unit head is connected with described control system; The described the 3rd detects unit head is connected with described control system.
Further technical scheme is that the first pneumatic high rotating speed unit head, the second pneumatic high rotating speed unit head, the 3rd detect unit head and be arranged in successively on described machine tool body according to the workpiece direction that walks.
Further technical scheme is that dynamical system also comprises that the motor for keyway processing drives unit head, and described motor drives unit head to be arranged on described machine tool body.
Further technical scheme is the Work-sheet pressing system that is also provided with on machine tool body.
Further technical scheme is on machine tool body, to be also provided with work piece positioning clamping system.
Further technical scheme is that control system comprises kinetic control system, and described kinetic control system is connected with described kinematic system.
Further technical scheme is that control system comprises problem workpiece warning system, and described problem workpiece warning system and the described the 3rd detects unit head and is connected.
Further technical scheme is that control system comprises automatic shutdown system, and described automatic shutdown system and the described the 3rd detects unit head and is connected.
Further technical scheme is that unit head is can adjust at random the detachable of position to be connected with described machine tool body.
Compared with prior art; the beneficial effects of the utility model are: the utility model is by adopting a plurality of unit heads; and unit head function comprises processing and detects several functions; crudy is high; can carry out quality testing in processing simultaneously simultaneously; save processing unit (plant) and time, the utility model is provided with automatic workpiece problem warning and automatic stop arrangement simultaneously, and it is processed that the workpiece of can pinpointing the problems in time avoids problem workpiece to continue simultaneously.
Accompanying drawing explanation
Fig. 1 is the structural representation of an embodiment of the utility model.
The specific embodiment
Below in conjunction with accompanying drawing, the utility model is further elaborated.
As shown in Figure 1, Fig. 1 shows the structural representation of an embodiment of the utility model.The processing of the present embodiment workpiece detects integrated machine tool, comprises machine tool body; On machine tool body, be provided with dynamical system; As preferred embodiment, the present embodiment medium power system comprises a plurality of unit heads, and unit head comprises machining functions unit head and measuring ability unit head; In processing dynamics head processing work, measuring ability unit head can detect in real time to the workpiece of having processed.Workpiece in the present embodiment can be as similar workpiece such as camshafts.On machine tool body, be provided with for workpiece and walk and the kinematic system 2 of transmission object; Kinematic system is mainly workpiece and walks and required line slideway and the ball-screw of transmission.On machine tool body, be provided with for controlling the control system 1 of lathe process; Control system is connected with dynamical system; Control system 1 is connected with kinematic system 2 simultaneously.Control system is controlled whole process.As preferred embodiment, the present embodiment medium power system comprises four unit heads, and four unit heads are respectively that motor drives unit head 5, the first pneumatic high rotating speed unit head 7 of pneumatic high rotating speed unit head 6, second and the 3rd to detect unit head 8; Motor drives unit head 5 to be connected with control system; The first pneumatic high rotating speed unit head 6 is connected with control system; The second high rotating speed unit head 7 is connected with control system; The 3rd detects unit head 8 is connected with control system.The present embodiment medium power system is corresponding with position symmetry or the position of workpiece motion s system, so that kinematic system and dynamical system coordinate the processing of workpiece and detection.On the first pneumatic high rotating speed unit head 6, be also provided with servo controller, by the special first pneumatic high rotating speed unit head 6 of controlling of servo controller, realize accurate chamfering and journal hole.As preferred embodiment, in this enforcement, on machine tool body, be still provided with the Work-sheet pressing system 4 for workpiece pressing 9 simultaneously, during work, by 4 pairs of workpiece 9 of Work-sheet pressing system, be fixed.On machine tool body, be also provided with for locating the work piece positioning clamping system 3 with clamping work pieces 9.Locating clip clamping system comprises Rotation Controllers, and Rotation Controllers is arranged on workpiece bottom, rotates to control the rotation of workpiece by Rotation Controllers, realizes the axle journal chamfering of workpiece and the processing of journal hole.As preferred embodiment, the present embodiment medium power head is detachable connection with machine tool body, has realized the random adjustment position of unit head and machine tool body, can need to adjust at any time the position of each unit head and position relationship each other according to processing.
The process of the present embodiment lathe is: by Work-sheet pressing system and work piece positioning clamping system, install workpiece, lathe clamps workpiece pneumatic, kinematic system is started working, carry out the operations such as workpiece walks, motor drives unit head 5 mounting disc milling cutter to be processed by workpiece end face keyway, ream the first axle journal chamfering; Then motor drives unit head 5 ream the second axle journal chamferings, the first pneumatic high rotating speed unit head 6 to bore the first journal hole; Meanwhile, whether motor drives unit head 5 reams the 3rd axle journal chamfering, second pneumatic high rotating speed unit head 7 brill the second journal holes, the 3rd to detect unit head 8 detection the first journal holes and connect; Motor drives unit head 5 reams the 4th axle journal chamfering, the first pneumatic high rotating speed unit head 6 to bore the 3rd journal holes, simultaneously, and whether the 3rd detects unit head 8 detects the second journal holes and connects.By that analogy, until processing, detect complete product and return to initial point, carry out next circulation.The process of lifting in the present embodiment, not the utility model process is exhaustive; In process, can be as required, increase at random or reduce the unit head that needs work, as can be only used the first pneumatic high rotating speed unit head, the second pneumatic high rotating speed unit head and the 3rd to detect that unit head is processed and the completing of testing.
According to another embodiment of the present utility model, the present embodiment is to implement on the basis of above embodiment, and in the present embodiment, control system comprises kinetic control system, and kinetic control system can carry out operation control to kinematic system.As preferred embodiment, in the present embodiment, control system also comprises problem workpiece warning system simultaneously, and problem workpiece warning system and the 3rd detects unit head 8 and is connected.When the 3rd detection unit head detects workpiece, have problem, detection signal can be transferred to problem workpiece warning system, problem workpiece warning system is reported to the police.Meanwhile, control system also comprises automatic shutdown system, and automatic shutdown system and the 3rd detects unit head 8 and is connected.The 3rd detects unit head detects problem workpiece, and detection signal is transferred to automatic shutdown system, and automatic shutdown system is controlled the continuation of lathe shut-down operation operation.Be convenient to find in time and test problems workpiece.The workpiece crudy improving has improved operating efficiency simultaneously.
" embodiment " that spoken of in this manual, " another embodiment ", " embodiment ", etc., refer to specific features, structure or the feature in conjunction with this embodiment, described and be included at least one embodiment that the application's generality describes.In description, a plurality of local appearance statement of the same race is not necessarily to refer to same embodiment.Furthermore, while describing a specific features, structure or feature in conjunction with any embodiment, what advocate is in conjunction with other embodiment, to realize this feature, structure or feature also to drop in scope of the present utility model.
Although a plurality of explanatory embodiment with reference to utility model is described the utility model here, but, should be appreciated that, those skilled in the art can design a lot of other modification and embodiments, and these are revised and within embodiment will drop on the disclosed principle scope and spirit of the application.More particularly, in the scope of, accompanying drawing open in the application and claim, can carry out multiple modification and improvement to the building block of subject combination layout and/or layout.Except modification that building block and/or layout are carried out with improving, to those skilled in the art, other purposes will be also obvious.

Claims (10)

1. workpiece processing detects an integrated machine tool, comprises machine tool body; It is characterized in that: on described machine tool body, be provided with dynamical system; Described dynamical system comprises at least three unit heads; Described unit head comprises machining functions unit head and measuring ability unit head; On described machine tool body, be provided with for workpiece and walk and the kinematic system of transmission object; On described machine tool body, be provided with for controlling the control system of lathe process; Described control system is connected with described dynamical system; Described control system is connected with described kinematic system.
2. workpiece processing according to claim 1 detects integrated machine tool, it is characterized in that described dynamical system comprises three unit heads, and described three unit heads respectively the first pneumatic high rotating speed unit head, the second pneumatic high rotating speed unit head and the 3rd detect unit head; Described the first pneumatic high rotating speed unit head is connected with described control system; Described the second high rotating speed unit head is connected with described control system; The described the 3rd detects unit head is connected with described control system.
3. workpiece according to claim 2 processing detects integrated machine tool, it is characterized in that the first described pneumatic high rotating speed unit head, the second pneumatic high rotating speed unit head, the 3rd detect unit head and be arranged in successively on described machine tool body according to the workpiece direction that walks.
4. workpiece processing according to claim 3 detects integrated machine tool, it is characterized in that described dynamical system also comprises that the motor for keyway processing drives unit head, and described motor drives unit head to be arranged on described machine tool body.
5. workpiece processing according to claim 1 detects integrated machine tool, it is characterized in that being also provided with Work-sheet pressing system on described machine tool body.
6. workpiece processing according to claim 1 detects integrated machine tool, it is characterized in that being also provided with work piece positioning clamping system on described machine tool body.
7. workpiece processing according to claim 1 detects integrated machine tool, it is characterized in that described control system comprises kinetic control system, and described kinetic control system is connected with described kinematic system.
8. workpiece processing according to claim 2 detects integrated machine tool, it is characterized in that described control system comprises problem workpiece warning system, and described problem workpiece warning system and the described the 3rd detects unit head and is connected.
9. workpiece processing according to claim 6 detects integrated machine tool, it is characterized in that described control system comprises automatic shutdown system, and described automatic shutdown system and the described the 3rd detects unit head and is connected.
10. workpiece processing according to claim 1 detects integrated machine tool, it is characterized in that described unit head is can adjust at random the detachable of position to be connected with described machine tool body.
CN201320523317.4U 2013-08-26 2013-08-26 Workpiece machining and detecting integrated machine tool Expired - Lifetime CN203484982U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320523317.4U CN203484982U (en) 2013-08-26 2013-08-26 Workpiece machining and detecting integrated machine tool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320523317.4U CN203484982U (en) 2013-08-26 2013-08-26 Workpiece machining and detecting integrated machine tool

Publications (1)

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CN203484982U true CN203484982U (en) 2014-03-19

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105108585A (en) * 2015-08-31 2015-12-02 咸宁市洪盛模具科技有限公司 Online detecting system and method of numerically-controlled machine tool
CN113547387A (en) * 2021-07-22 2021-10-26 刘荣 Automatic shaft coupling production and processing equipment based on intelligent manufacturing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105108585A (en) * 2015-08-31 2015-12-02 咸宁市洪盛模具科技有限公司 Online detecting system and method of numerically-controlled machine tool
CN113547387A (en) * 2021-07-22 2021-10-26 刘荣 Automatic shaft coupling production and processing equipment based on intelligent manufacturing

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Granted publication date: 20140319