CN103264307B - Valve body Special Purpose Machine for Processing - Google Patents

Valve body Special Purpose Machine for Processing Download PDF

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Publication number
CN103264307B
CN103264307B CN201310151620.0A CN201310151620A CN103264307B CN 103264307 B CN103264307 B CN 103264307B CN 201310151620 A CN201310151620 A CN 201310151620A CN 103264307 B CN103264307 B CN 103264307B
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rotating disk
cylinder
hydro
special purpose
valve body
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CN103264307A (en
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林贤聪
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Taizhou Shijie Import & Export Co Ltd
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Taizhou Shijie Import & Export Co Ltd
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Abstract

The present invention provides valve body Special Purpose Machine for Processing, belongs to field of mechanical technique. It solve existing valve lathe for machining complex structure and other problems. This valve body Special Purpose Machine for Processing, the rotating disk comprising base and be arranged on base, rotating disk is provided with can the clamping mechanism of holding workpiece, base is also provided with the driving mechanism one that rotating disk can be driven to forward set angle to, the sidepiece of rotating disk be provided with can the cutter assembly of processing work, be provided with the driving mechanism two that cutter assembly can be driven along the axial direction due alternating translational of rotating disk between cutter assembly and base. After this valve body Special Purpose Machine for Processing once clamps, it is possible to realizing the processing of many roads workpiece, its working accuracy is higher; In addition, this machine tool structure is comparatively simple.

Description

Valve body Special Purpose Machine for Processing
Technical field
The invention belongs to technical field of lathe equipment, it relates to a kind of machining tool, particularly a kind of valve body Special Purpose Machine for Processing.
Background technology
Valve is the essential easy consumption product of modern industry, agricultural, the energy, chemical industry, metallurgy, heating power and daily life, is mainly used in the cut-out of process pipe medium (such as material, water, steam, air and oil product etc.), throttling, pressure regulation and change flow direction etc. Current domestic quite a lot of enterprise adopts general-purpose machine processing valve, various types of valve body is all processed on these general-purpose machine, due to the applied range of general-purpose machine, will inevitably occurring processing not smart problem, thus the precision of product, stability can not well be ensured. Simultaneously, general-purpose machine processing valve is used the state of the art of operator to be required high, and a valve body is generally not capable of on a machine tool to process, multiple stage lathe is needed jointly to complete, such as special drilling hole machine tool, special reaming lathe and special tapping lathe etc., therefore there is turnover in component, cause production efficiency low, and the fast development along with China's economy, will be increasing to the demand of valve, it is clear that this kind of inefficient production has no longer adapted to current society to the demand of valve body scale quantity.
Such as a kind of multi-work-station drilling and tapping lathe [application number: 200920270786.3 that Chinese patent literature data openly proposes; Authorization Notice No.: CN201632679U], comprise worktable, hydraulic separate scale, fixture, many group drilling and tapping devices and housing, the rotating installation of hydraulic separate scale is on the table, each group drilling and tapping device is all located at above hydraulic separate scale, hydraulic separate scale upper surface is also provided with organizes fixture more, along with the calibration of hydraulic separate scale rotates, each group drilling and tapping device can process the workpiece on the fixture being placed in the correspondence on the downside of it. But owing to many groups fixture of this multi-work-station drilling and tapping lathe is arranged on the upper surface of indexing plate, and drilling and tapping device can only process the upper surface being placed in the workpiece on the downside of it, and not can the lower surface of processing work, therefore the work range of this multi-work-station drilling and tapping lathe is less.
For this kind of situation, people have recognized this kind of deficiency, and carry out improvement, such as one four station valve body automatic processing machine tool [application number: the 201220082686.X that Chinese patent literature data openly proposes; Authorization Notice No.: CN202461969U], comprise rotary disk, rotary disk connects gear by clutch coupling; Under the effect of hydro-cylinder, moving about tooth bar, drive the gear being engaged with to rotate, gear drives rotary disk to rotate by clutch coupling, it is achieved the conversion of station; Rotary disk be circumferentially evenly equipped with four stations, the first station is positioned at the surface of rotary disk, and the 2nd station is positioned at the front-left of rotary disk, and the 3rd station is positioned at the underface of rotary disk, and the 4th station is positioned at the front-right of rotary disk; Workpiece to be processed is mounted location on the first station, carries out bore hole, carries out tapping on the 3rd station, take off on the 4th station, complete material loading, bore hole, tapping, blanking four operations on the 2nd station. But owing to this automatic processing machine tool drives rotary disk to rotate the rotation realizing station by hydro-cylinder and rack-and-pinion, therefore comparatively complexity and manufacturing cost are higher for structure.
Summary of the invention
It is an object of the invention to there are the problems referred to above for existing technology, it is proposed that the valve body Special Purpose Machine for Processing that a kind of structure is comparatively simple and manufacturing cost is lower.
The object of the present invention realizes by following technical proposal: a kind of valve body Special Purpose Machine for Processing, the rotating disk comprising base and be arranged on described base, described rotating disk is provided with can the clamping mechanism of holding workpiece, described base is also provided with the driving mechanism one that described rotating disk can be driven to forward set angle to, the sidepiece of described rotating disk is provided with can the cutter assembly of processing work, it is characterized in that, the driving mechanism two that described cutter assembly can be driven along the axial direction due alternating translational of described rotating disk it is provided with between described cutter assembly and described base.
Operationally, by trade union college in clamping mechanism, dial rotation set angle is driven to make the processing position of workpiece relative with cutter assembly by driving mechanism one, now driving mechanism two drives cutter assembly feeding and workpiece is processed by cutter assembly, after processing, driving mechanism two drives cutter assembly to reset, then driving mechanism one drives rotating disk to forward the station of discharging to, now clamp mechanism to unclamp, workpiece is dropped from clamping mechanism, and rear drive mechanism one drives rotating disk to forward starting position to, thus realize the Continuous maching of workpiece, reduce the labour intensity of workman, there is the advantage that working (machining) efficiency is higher simultaneously. after this specialized working machine tool of machine once clamps, it is possible to realize the processing of many roads workpiece, avoid the error that multiple clamping produces, thus improve working accuracy.
In above-mentioned valve body Special Purpose Machine for Processing, the motor that described cutter assembly comprises cutter seat and is arranged on described cutter seat, the main shaft of described motor is connected with unit head, and described unit head is fixed with can the cutter of processing work. As required, cutter can adopt drill bit.
In above-mentioned valve body Special Purpose Machine for Processing, described cutter assembly comprises motor, tool bar and screw tap, the end cap of described motor is fixed with sleeve, the main shaft of described motor passes described sleeve and described sleeve and described motor coaxle and arranges, the main shaft of described motor and one end circumference of described tool bar are connected, between described tool bar and described sleeve, screw thread is connected, and the other end of described tool bar is connected mutually with screw tap. Operationally, being rotated by driven by motor tool bar, the outer end of the main shaft of motor is equipped with some grooves arranged along main shaft axis direction, and tool bar is provided with the convex body mated mutually with groove near the end of one end of main shaft. Owing to one end of tool bar is connected with bush whorl, therefore tool bar drives tool bar along its axial feeding while rotating, and workpiece is attacked screw thread process, after processing, driven by motor tool bar rotates backward, and makes tool bar drive screw tap to reset, and has the comparatively simple advantage of structure.
In above-mentioned valve body Special Purpose Machine for Processing, described tool bar being fixed with block, described base is provided with travel switch and described block can lean with described travel switch. Travel switch, motor are all connected with controller, during many workpiece screw thread process, and driven by motor tool bar and screw tap feeding, when block is against travel switch, travel switch sends a signal to controller, and controller sends instruction control motor again and rotates backward, it is achieved the reset of screw tap.
In above-mentioned valve body Special Purpose Machine for Processing, described driving mechanism one is that the axis of oil motor and described oil motor and the axis coaxle of described rotating disk are arranged, and the rotating shaft that the housing of described oil motor is connected in oil motor on described base and described is connected mutually with described rotating disk. Controlled the rotation of rotating disk by oil motor, there is the advantage of the slow speed of revolution, high pulling torque, and easily control the advantage of the rotation angle of rotating disk.
In above-mentioned valve body Special Purpose Machine for Processing, described driving mechanism one is that the axis of the main shaft of servomotor and described servomotor and the axis coaxle of described rotating disk are arranged, and the rotating shaft that the housing of described servomotor is fixed on servomotor on described base and described is connected mutually with described rotating disk. Drive dial rotation by servomotor, there is the advantage being convenient to control and rotation precision is higher, make processing have higher precision.
Alternatively, described driving mechanism one is servomotor, cam dispenser, described servomotor and described cam dispenser are all connected on described base, the main shaft of described servomotor is connected with the input shaft of cam dispenser, and the output shaft of described cam dispenser is connected mutually with rotating disk. Driving dial rotation to set angle by servomotor and cam dispenser, its reliable transmission, makes dial rotation have higher precision. Cam dispenser can adopt a kind of cam dispenser [application number: 200920119596.1 as Chinese patent literature data openly proposes; Authorization Notice No.: CN201455741U], or replace with other mechanisms that rotating disk calibration can be made to rotate.
In above-mentioned valve body Special Purpose Machine for Processing, the axis being parallel that described base is provided with guide rail one and described guide rail one and described rotating disk is arranged, the slide block one that described cutter seat is provided with described guide rail one phase is mated. Between base and cutter seat, establish guide rail one and slide block one, make the alternating translational of cutter seat have good guide effect, decrease the abrasion of cutter seat simultaneously, it is to increase work-ing life.
In above-mentioned valve body Special Purpose Machine for Processing, the axis being parallel of axis and described rotating disk that described driving mechanism two comprises the hydro-cylinder two being connected on base and described hydro-cylinder two is arranged, and the end of the piston rod of described hydro-cylinder two is connected mutually with described cutter seat. Make alternating translational by hydro-cylinder two band cutter seat, there is transmission advantage comparatively stably.
In above-mentioned valve body Special Purpose Machine for Processing, described driving mechanism two comprises the motor being connected on described base, the main shaft of one end and described motor of being axially fixed with screw mandrel and described screw mandrel on described base is connected mutually, described cutter seat is fixed with the silk mother mated mutually with described screw mandrel and described screw mandrel is connected with described silk box thread. Motor does horizontal reciprocating feeding by the band cutter seat that passes to of screw mandrel silk mother, has the advantage being convenient to control and reliable transmission.
In above-mentioned valve body Special Purpose Machine for Processing, described clamping mechanism comprises dynamic model, cover half and hydro-cylinder one, described dynamic model and described cover half form the die cavity being used for holding workpiece, one end of piston rod and described dynamic model that the cylinder body of described hydro-cylinder one is fixed on hydro-cylinder one on described rotating disk and described is connected mutually, one end of described cover half is connected on described rotating disk, and the cover half that described hydro-cylinder one can drive described dynamic model relatively described moves back and forth. When clamping work pieces, hydro-cylinder one drives dynamic model translation that the cavity of dynamic model and cover half is opened, and when being placed between dynamic model and cover half by workpiece, drives dynamic model translation to make Workpiece fixing between dynamic model and cover half by hydro-cylinder one, when discharging, dynamic model is driven to depart from cover half by hydro-cylinder one. By changing dynamic model and cover half, it is possible to realize the clamping to different workpieces, make this valve body Special Purpose Machine for Processing scope of application wider. Alternatively, clamping mechanism comprise dynamic model, cover half and cylinder, by cylinder drive dynamic model moving relative to cover half, realize clamp mechanism clamping with unclamp.
In above-mentioned valve body Special Purpose Machine for Processing, described rotating disk is square, the cylinder body of described hydro-cylinder one is connected in the axis being parallel of hydro-cylinder one on the sidewall of described rotating disk and described in the edge of described rotating disk, and described cover half is connected on the sidewall of the correspondence of described rotating disk. Rotating disk adopts square, is convenient to the installation of hydro-cylinder one with cover half, the alternating translational of dynamic model is had certain guide effect simultaneously. Alternatively, in order to realize the multiple working procedure making this valve body Special Purpose Machine for Processing, rotating disk can be designed to regular polygon, makes in the process of dial rotation, it is possible to realize the processing of multiple workpiece.
In above-mentioned valve body Special Purpose Machine for Processing, the center of described rotating disk is provided with separating valve, described separating valve comprises tubular body, described body and rotating disk are coaxially arranged and described body and described rotating disk are connected mutually, the spool mated mutually and in column it is provided with described chamber body in described body, the outer end of described spool is positioned at described outer body and described spool is connected mutually with described base, described body is provided with some groups of oil supply holes and outlet-port, often organize described oil supply hole to be all connected with corresponding hydro-cylinder one with described outlet-port, described spool is provided with some groups of oil inlet passages and oil discharge passage, and when dial rotation to often organize during the angle of setting described oil inlet passage and described oil discharge passage can with corresponding described in oil supply hole be connected with described outlet-port. often organize oil inlet passage to be all connected with oil inlet pipe and magnetic valve, control the fuel feeding of corresponding oil inlet passage respectively, employing hydro-cylinder one all oil supply hole with corresponding separating valve be connected with outlet-port, the layout making hydraulicefficiency pipeline neat in order. alternatively, owing to hydro-cylinder one corresponding on feeding station and discharge station is for often to open, therefore corresponding two oil inlet passages on separating valve can be connected, corresponding two oil discharge passages are connected, the structure of spool is simplified.
Compared with prior art, this valve body Special Purpose Machine for Processing has the following advantages:
1, after this valve body Special Purpose Machine for Processing once clamps, it is possible to realize the processing of many roads workpiece, avoid the error that multiple clamping produces, thus improve working accuracy, reduce labour intensity simultaneously, it is to increase working (machining) efficiency;
2, make alternating translational by hydro-cylinder band cutter seat, make the feeding of cutter have advantage comparatively stably, also there is feeding power relatively big simultaneously, be convenient to the advantage of processing;
3, by multiple hydro-cylinder, all oil supply hole with corresponding separating valve is connected with outlet-port, controls clamp the clamping of mechanism and unclamp, enables the layout that hydraulicefficiency pipeline is neat;
4, drive dial rotation by servomotor, there is the advantage being convenient to control and rotation precision is higher, make processing have higher precision;
5, this valve body Special Purpose Machine for Processing is by changing dynamic model and cover half, it is possible to realize the clamping to different workpieces, makes this valve body Special Purpose Machine for Processing scope of application wider.
Accompanying drawing explanation
Fig. 1 is the perspective view of this valve body Special Purpose Machine for Processing.
Fig. 2 is the plan structure schematic diagram of this valve body Special Purpose Machine for Processing.
Fig. 3 is the perspective view of the separating valve of this specialized working machine tool of machine.
Fig. 4 is the plan structure schematic diagram of the separating valve of this specialized working machine tool of machine.
The A-A that Fig. 5 is the separating valve of this specialized working machine tool of machine rotates sectional view.
In figure, 1, base; 2, rotating disk; 3, mechanism is clamped; 3a, dynamic model; 3b, cover half; 3c, hydro-cylinder one; 4, oil motor; 5, cutter assembly; 5a, cutter seat; 5b, motor; 5c, unit head; 5d, tool bar; 5e, screw tap; 5f, sleeve; 6, hydro-cylinder two; 7, block; 8, travel switch; 9, separating valve; 9a, body; 9a1, oil supply hole; 9a2, outlet-port; 9b, spool; 9b1, oil inlet passage; 9b2, oil discharge passage.
Embodiment
The following is specific embodiments of the invention and by reference to the accompanying drawings, the technical scheme of the present invention is further described, but the present invention is not limited to these embodiments.
As shown in Fig. 1 to 5, a kind of valve body Special Purpose Machine for Processing, the rotating disk 2 comprising base 1 and be arranged on base 1 and be square, being equipped with on four sidewalls of rotating disk 2 can the clamping mechanism 3 of holding workpiece, clamping mechanism 3 comprises dynamic model 3a, cover half 3b and hydro-cylinder one 3c, the cylinder body of hydro-cylinder one 3c is connected on the sidewall of rotating disk 2, the piston rod of hydro-cylinder one 3c is connected mutually with one end of dynamic model 3a, the axis being parallel of hydro-cylinder one 3c is in the edge of rotating disk 2, cover half 3b is connected on the sidewall of the correspondence of rotating disk 2, dynamic model 3a and described cover half 3b forms the die cavity being used for holding workpiece, the cover half 3b that hydro-cylinder one 3c can drive dynamic model 3a relatively described moves back and forth, realize the clamping to workpiece and unclamp.
Also being provided with the driving mechanism one that rotating disk 2 can be driven to forward set angle on base 1, driving mechanism one is oil motor 4, and axis and the rotating disk 2 of oil motor 4 are coaxially arranged, and the housing of oil motor 4 is connected on base 1. Alternatively, driving mechanism one is servomotor, and the axis of the main shaft of servomotor and the axis coaxle of rotating disk 2 are arranged, and the housing of servomotor is fixed on base 1, and the rotating shaft of servomotor is connected mutually with the rotating shaft of rotating disk 2. Drive rotating disk 2 to rotate by servomotor, there is the advantage being convenient to control and rotation precision is higher, make processing have higher precision.
Base 1 is provided with four stations, comprises feeding station, station of holing, attacks screw thread station and discharge station, and four clamping mechanisms 3 all can be positioned on four stations simultaneously. Boring station is provided with cutter assembly 5, and the quantity of this cutter assembly 5 is two and is symmetricly set on the both sides of rotating disk 2. The motor 5b that this cutter assembly 5 comprises cutter seat 5a and is arranged on cutter seat 5a, the main shaft of motor 5b is connected with unit head 5c, and unit head 5c is fixed with can the drill bit of processing work. The driving mechanism two that cutter assembly 5 can be driven along the axial direction due alternating translational of rotating disk 2 it is provided with between cutter seat 5a and base 1. Driving mechanism two comprises the hydro-cylinder 26 being connected on base 1, the axis of hydro-cylinder 26 and the axis being parallel of rotating disk 2 are arranged, the end of the piston rod of hydro-cylinder 26 is connected with cutter seat 5a phase, makes alternating translational by hydro-cylinder 26 band cutter seat 5a, has transmission advantage comparatively stably. Base 1 is provided with guide rail one, and guide rail one is arranged with the axis being parallel of rotating disk 2, the slide block one that cutter seat 5a is provided with guide rail one phase is mated. Alternatively, driving mechanism two comprises the motor 5b being connected on base 1, and base 1 is axially fixed with screw mandrel, and one end of screw mandrel is connected mutually with the main shaft of motor 5b, cutter seat 5a is fixed with the silk mated mutually with screw mandrel female, and screw mandrel is connected with silk box thread. Motor 5b does horizontal reciprocating feeding by the band cutter seat 5a that passes to of screw mandrel silk mother, has the advantage being convenient to control and reliable transmission.
Attack screw thread station and it is provided with another cutter assembly 5, it comprises motor 5b, tool bar 5d, screw tap 5e, the end cap of motor 5b is fixed with sleeve 5f, the main shaft of motor 5b is through sleeve 5f, sleeve 5f and motor 5b is coaxially arranged, one end circumference of main shaft and tool bar 5d is connected, and between tool bar 5d with sleeve 5f, screw thread is connected, and the other end of tool bar 5d is connected with screw tap 5e phase. Being fixed with block 7 on tool bar 5d, base 1 is provided with travel switch 8, and block 7 can lean with travel switch 8.
The center of rotating disk 2 is provided with separating valve 9, separating valve 9 comprises tubular body 9a, body 9a and rotating disk 2 are coaxially arranged, body 9a is connected with rotating disk 2 phase, the spool 9b mated mutually and in column it is provided with body 9a inner chamber in body 9a, the outer end of spool 9b is positioned at outside body 9a, spool 9b is connected with base 1 phase, body 9a is provided with 4 groups of oil supply hole 9a1 and outlet-port 9a2, often organize oil supply hole 9a1 to be all connected with corresponding hydro-cylinder one with outlet-port 9a2, spool 9b is provided with 4 groups of oil inlet passage 9b1 and oil discharge passage 9b2, and often organize oil inlet passage 9b1 and oil discharge passage 9b2 when rotating disk 2 turns to the angle of setting and can be connected with outlet-port 9a2 with oil supply hole 9a1. often organize oil inlet passage 9b1 to be all connected with oil inlet pipe and magnetic valve, control the fuel feeding of corresponding oil inlet passage 9b1, employing hydro-cylinder one all oil supply hole 9a1 with corresponding separating valve 9 be connected with outlet-port 9a2, the layout making hydraulicefficiency pipeline neat in order.
Operationally, being positioned at hydro-cylinder one 3c on feeding station drives dynamic model 3a to move, dynamic model 3a is separated with cover half 3b, when workpiece being put between dynamic model 3a and cover half 3b, this hydro-cylinder one 3c drives dynamic model 3a to move, and by Workpiece clamping between dynamic model 3a and cover half 3b, oil motor 4 drives rotating disk 2 to rotate 90 degree, making the processing position of workpiece relative with cutter assembly 5, now hydro-cylinder one 3c drives cutter assembly 5 feeding and workpiece is processed by cutter assembly 5. After processing, hydro-cylinder one 3c drives cutter assembly 5 to reset, then oil motor 4 drives rotating disk 2 to rotate 90 degree to attacking screw thread station again, tool bar 5d is driven to rotate by motor 5b, owing to one end of tool bar 5d is connected with sleeve 5f screw thread, therefore tool bar 5d drives tool bar 5d along its axial feeding while rotating, and workpiece is attacked screw thread process. Travel switch 8, motor 5b are all connected with controller, and when block 7 is against travel switch 8, travel switch 8 sends a signal to controller, and controller rotates backward sending instruction control motor 5b, it is achieved the reset of screw tap 5e. Oil motor 4 drives rotating disk 2 to rotate 90 degree to discharging station again, now, hydro-cylinder one 3c drives dynamic model 3a to move, and workpiece is dropped from clamping mechanism 3, the downside being positioned at discharging station is provided with the chute being inclined to set, and makes the workpiece fallen down be convenient to export.
Drive rotating disk 2 to make clamping mechanism 3 forward corresponding station to by oil motor 4, thus realize the Continuous maching of workpiece, reduce the labour intensity of workman, there is the advantage that working (machining) efficiency is higher simultaneously. After this specialized working machine tool of machine once clamps, it is possible to realize the processing of many roads workpiece, avoid the error that multiple clamping produces, thus improve working accuracy. Controlled the rotation of rotating disk 2 by oil motor 4, there is the advantage of the slow speed of revolution, high pulling torque, and easily control the advantage of the rotation angle of rotating disk 2.
Alternatively, driving mechanism one is that servomotor, cam dispenser, servomotor and cam dispenser are all connected on base 1, and the main shaft of servomotor is connected with the input shaft of cam dispenser, and the output shaft of cam dispenser is connected with rotating disk 2 phase. Drive rotating disk 2 to turn to set angle, its reliable transmission by servomotor and cam dispenser, rotating disk 2 is rotated there is higher precision. Cam dispenser can adopt a kind of cam dispenser [application number: 200920119596.1 as Chinese patent literature data openly proposes; Authorization Notice No.: CN201455741U], or replace with other mechanisms that rotating disk 2 calibration can be made to rotate.
In order to realize the multiple working procedure making this valve body Special Purpose Machine for Processing, rotating disk 2 can be designed to regular polygon, and arrange corresponding cutter assembly 5 in the side of rotating disk 2 or both sides, makes in the process that rotating disk 2 rotates, it is possible to realize the processing of multiple workpiece.
Specific embodiment described herein is only to the present invention's spirit explanation for example. Described specific embodiment can be made various amendment or supplements or adopt similar mode to substitute by those skilled in the art, but can't deviate the spirit of the present invention or surmount the scope that appended claims defines.
Although more employing the terms such as base 1, rotating disk 2, clamping mechanism 3, dynamic model 3a, cover half 3b, hydro-cylinder one 3c, oil motor 4, cutter assembly 5, cutter seat 5a, motor 5b, unit head 5c, tool bar 5d, screw tap 5e, sleeve 5f, hydro-cylinder 26, block 7, travel switch 8, separating valve 9, body 9a, oil supply hole 9a1, outlet-port 9a2, spool 9b, oil inlet passage 9b1, oil discharge passage 9b2 herein, but not getting rid of the possibility using other term. These terms are used to be only used to describe more easily and explain the essence of the present invention; They are construed to any a kind of additional restriction all disagree with the present invention's spirit.

Claims (9)

1. a valve body Special Purpose Machine for Processing, the rotating disk (2) comprising base (1) and be arranged on described base (1), described rotating disk (2) is provided with can the clamping mechanism (3) of holding workpiece, described base (1) is also provided with the driving mechanism one that described rotating disk (2) can be driven to forward set angle to, the sidepiece of described rotating disk (2) is provided with can the cutter assembly (5) of processing work, it is characterized in that, the driving mechanism two that described cutter assembly (5) can be driven along the axial direction due alternating translational of described rotating disk (2) it is provided with between described cutter assembly (5) and described base (1), described clamping mechanism (3) comprises hydro-cylinder one (3c), and the cylinder body of described hydro-cylinder one (3c) is fixed on described rotating disk (2), the center of described rotating disk (2) is provided with separating valve (9), described separating valve (9) comprises tubular body (9a), described body (9a) is connected with described rotating disk (2) mutually with the coaxial setting of rotating disk (2) and described body (9a), the spool (9b) mated mutually and in column it is provided with described body (9a) inner chamber in described body (9a), the outer end of described spool (9b) is positioned at described body (9a) outside and described spool (9b) is connected mutually with described base (1), described body (9a) is provided with some groups of oil supply holes (9a1) and outlet-port (9a2), often organize described oil supply hole (9a1) to be all connected with corresponding hydro-cylinder one (3c) with described outlet-port (9a2), described spool (9b) is provided with some groups of oil inlet passages (9b1) and oil discharge passage (9b2), and often organize described oil inlet passage (9b1) when rotating disk (2) turns to the angle of setting and described oil discharge passage (9b2) can be connected with described outlet-port (9a2) with corresponding described oil supply hole (9a1).
2. valve body Special Purpose Machine for Processing according to claim 1, it is characterized in that, the motor (5b) that described cutter assembly (5) comprises cutter seat (5a) and is arranged on described cutter seat (5a), the main shaft of described motor (5b) is connected with unit head (5c), and described unit head (5c) is fixed with can the cutter of processing work.
3. valve body Special Purpose Machine for Processing according to claim 1, it is characterized in that, described cutter assembly (5) comprises motor (5b), tool bar (5d) and screw tap (5e), the end cap of described motor (5b) is fixed with sleeve (5f), the main shaft of described motor (5b) is coaxially arranged through described sleeve (5f) and described sleeve (5f) with described motor (5b), the main shaft of described motor (5b) and one end circumference of described tool bar (5d) are connected, between described tool bar (5d) and described sleeve (5f), screw thread is connected, the other end of described tool bar (5d) is connected mutually with screw tap (5e).
4. valve body Special Purpose Machine for Processing according to claim 1 or 2 or 3, it is characterized in that, described driving mechanism one is that the axis of oil motor (4) and described oil motor (4) and the axis coaxle of described rotating disk (2) are arranged, and the rotating shaft that the housing of described oil motor (4) is connected in the upper and described oil motor (4) of described base (1) is connected mutually with described rotating disk (2).
5. valve body Special Purpose Machine for Processing according to claim 1 or 2 or 3, it is characterized in that, described driving mechanism one is that the axis of the main shaft of servomotor and described servomotor and the axis coaxle of described rotating disk (2) are arranged, and the rotating shaft that the housing of described servomotor is fixed on the upper and described servomotor of described base (1) is connected mutually with described rotating disk (2).
6. valve body Special Purpose Machine for Processing according to claim 2, it is characterized in that, the axis being parallel that described base (1) is provided with guide rail one and described guide rail one and described rotating disk (2) is arranged, the described slide block one that cutter seat (5a) is provided with described guide rail one phase is mated.
7. valve body Special Purpose Machine for Processing according to claim 2, it is characterized in that, the axis being parallel of axis and described rotating disk (2) that described driving mechanism two comprises the hydro-cylinder two (6) being connected on base (1) and described hydro-cylinder two (6) is arranged, and the end of the piston rod of described hydro-cylinder two (6) is connected mutually with described cutter seat (5a).
8. valve body Special Purpose Machine for Processing according to claim 1 or 2 or 3, it is characterized in that, described clamping mechanism (3) also comprises dynamic model (3a), cover half (3b), the die cavity being used for holding workpiece is formed between described dynamic model (3a) and described cover half (3b), the piston rod of described hydro-cylinder one (3c) is connected mutually with one end of described dynamic model (3a), one end of described cover half (3b) is connected on described rotating disk (2), the cover half (3b) that described hydro-cylinder one (3c) can drive described dynamic model (3a) relatively described moves back and forth.
9. valve body Special Purpose Machine for Processing according to claim 8, it is characterized in that, described rotating disk (2) is for square, the cylinder body of described hydro-cylinder one (3c) is connected in the axis being parallel of hydro-cylinder one (3c) on the sidewall of described rotating disk (2) and described in the edge of described rotating disk (2), and described cover half (3b) is connected on the sidewall of the correspondence of described rotating disk (2).
CN201310151620.0A 2013-04-26 2013-04-26 Valve body Special Purpose Machine for Processing Active CN103264307B (en)

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CN103264307B true CN103264307B (en) 2016-06-08

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