CN202825517U - Cavity surface treatment transduction machining device - Google Patents
Cavity surface treatment transduction machining device Download PDFInfo
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- CN202825517U CN202825517U CN201220462377.5U CN201220462377U CN202825517U CN 202825517 U CN202825517 U CN 202825517U CN 201220462377 U CN201220462377 U CN 201220462377U CN 202825517 U CN202825517 U CN 202825517U
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Abstract
The utility model relates to a cavity surface treatment transduction machining device in the machining technical field of grinding, polishing and deburring of the surface of a workpiece cavity or a complex workpiece. The cavity surface treatment transduction machining device comprises an energy supply system, a passage structure, a transduction device, an auxiliary device and a workpiece movement platform, wherein the inner end of the passage structure is connected with the energy supply system, the outer end of the passage structure is two free ends, the two free ends are respectively connected with the transduction device and the auxiliary device, and the workpiece movement platform is arranged between the transduction device and the auxiliary device. The transduction device comprises a connection part and a work part which are interactive, wherein the connection part is used for transmitting the energy generated by a functional system and acts on the work part, and the work part is used for treating the cavity surface of a to-be-machined workpiece. The cavity surface treatment transduction machining device is a workpiece surface machining device capable of machining a regular surface and an irregular surface. Various transduction devices can be used conveniently according to the need of machining performance, and the surface treatment and machining of a workpiece surface or a cavity surface are achieved.
Description
Technical field
The utility model relates to workpiece cavity or complex part surface grinding, polishing and removal burr processing technique field, and specifically a kind of mold cavity surface is processed the transducing processing unit (plant).
Background technology
Traditional polishing and lapping mode are to grind or polishing medium adding between pressure head and the workpiece, and by extruding and relative translation between the relative abrasive disk of realization pressure head drive workpiece, and reach the purpose that makes the further polishing of surface of the work.As 2006 issued patents on May 10, (ZL:200520055339) relate to a kind of lapping device, comprise support, reductor, abrasive sheet and workpiece, reductor and abrasive sheet are fixedly arranged on the support, also be provided with directive wheel on the described abrasive sheet, be provided with guide plate in the directive wheel, guide plate is connected with the directive wheel suit, is provided with the circle of place work piece in the guide plate, and workpiece places within the guide plate circle and reaches on the abrasive sheet.In this process, owing to driving between workpiece and the abrasive disk, pressure head can only produce along the tangential translation of contact-making surface, therefore, this mode often can only realize polishing processing to the flat work pieces surface, and for housing surface or have and protrude or when recessed arc shape or special-shaped workpiece, this processing mode is with inapplicable, mold cavity surface often can't visit and or the surface of the work finish that processes inhomogeneous, or working (machining) efficiency is lower, and grinding head or abrasive disk also need frequent polishing to repair.
The utility model content
The utility model provides a kind of mold cavity surface to process the transducing processing unit (plant) for above shortcomings in the prior art.
The utility model is achieved through the following technical solutions.
A kind of mold cavity surface is processed the transducing processing unit (plant), comprise energy supplying system, channel design, transducing head, servicing unit and workpiece motion s platform, the inner of described channel design is connected with energy supplying system, its outer end is two free ends, and be connected with servicing unit with transducing head respectively, described workpiece motion s platform is arranged between transducing head and the servicing unit;
Described transducing head comprises interactional connecting portion and operate portions, wherein,
-connecting portion, the energy that the propagation function system produces, and act on operate portions;
-operate portions is carried out the chamber face to workpiece to be machined and is processed.
Described energy supplying system is the hydraulic pump body system, and described channel design is the liquid communication pipeline, and described transducing head is switching valve body, and its connecting portion is nozzle, and described servicing unit is the liquid backflow retracting device, wherein:
-energy supplying system provides pressure fluid by channel design to transducing head;
-transducing head, by nozzle ejection liquid, and mineralization pressure liquid working section;
-servicing unit reclaims the liquid of transducing head ejection.
Described nozzle is the array type nozzle; Be provided with adjustable distance between described nozzle and the position to be processed.
Described energy supplying system is high voltage power supply, and described channel design is circuit structure, and described transducing head is contactor, and its connecting portion is positive electrode, and described servicing unit is negative electrode plate, wherein:
-energy supplying system provides high voltage by channel design to transducing head;
-servicing unit is by negative electrode plate and workpiece to be machined conducting;
-transducing head by producing high voltage electric field between positive electrode and the workpiece to be machined, and forms electron ion or polarized gas operate portions.
Described electrode is the array type electrode.
Described transducing head is the magnetic rheological liquid transducing head, also comprise the upper solenoid that is arranged on coupled channel design outer end, embedding is installed in the driving mechanism of this center, channel design outer end, described connecting portion and this driving mechanism are connected, described operate portions is soft changable shape operate portions, and contacts with connecting portion, wherein, described servicing unit is lower solenoid, and described lower solenoid is arranged on workpiece to be machined below or workpiece motion s platform below; The yoke flux path of described channel design for being consisted of by ferromagnetic material.
Described driving mechanism is motor; Described connecting portion is rotating disk, and described rotating disk is connected on the output revolving shaft of motor.
Described driving mechanism is magnetic telescopic driver, piezoelectric actuator or electromagnetic driver; Described connecting portion is the luffing structure, and described luffing structure and driver are connected, and produces amplitude according to the flexible reciprocating motion of driver.
Described operate portions is several, and realizes workpiece processing by the processing magnetic field of transducing head and servicing unit generation and to the alternating force that workpiece applies.
Described operate portions is magnetic rheological liquid, the latticed flexible body of hole, by the magnetic flow liquid utricule of overcoat sealed envelope or by the magnetic flow liquid deformable body of bellows parcel; Described magnetorheological materials particle is one or more in ferromagnetic material particle, permanent-magnet material particle, magnetic flow liquid and the abrasive material mixing material.
Be provided with gain media between described workpiece motion s platform and the transducing head; Described gain media is abrasive grains or polishing material.
Described mold cavity surface is processed the transducing processing unit (plant), also comprises several reinforcement solenoids, and described reinforcement solenoid is arranged on around the workpiece to be machined.
Also be provided with electric rotating machine or oscillation drive between described workpiece to be machined and the workpiece motion s platform, an end of described electric rotating machine or oscillation drive links to each other with the workpiece motion s platform, and its other end links to each other with workpiece to be machined.
Described upper solenoid and/or lower solenoid are the micro array structure solenoid.
During work,
Workpiece is connected on the workpiece motion s platform, and the workpiece motion s platform is arranged between transducing head and the servicing unit, and the operate portions placed adjacent of workpiece machined surface and transducing head is added with gain media simultaneously between workpiece and operate portions.Workpiece on the workpiece motion s platform at this moment, applies energy to energy supplying system in the position of Z-direction, and the energy of energy supplying system is delivered on the transducing head by channel design, and energy is acted on the operate portions by connecting portion.Operate portions has and produces distortion or the back and forth variation of distortion or displacement (vibration) or power or heat after the received energy, and the mode of this variation by power or energy acts on gain media and workpiece chamber shape face or directly act on the shape face of workpiece chamber.Owing to can producing distortion after the operate portions received energy and keeping in touch and relative compressional movement with workpiece chamber shape face, thereby can produce all the time normal direction and tangential the making a concerted effort that is applied to along workpiece machining surface, act on workpiece chamber shape face.When this made a concerted effort enough greatly, the surface of the work material may be because of contact friction force, and the vibration of gain media, impulsive force or heat etching etc. are former thereby be removed.Because, the operate portions of transducing head of the present utility model and the relative contact of workpiece to be machined can be a kind of deformable " soft " contact-making surfaces, the outside shape of operate portions has adaptivity, can fit like a glove with workpiece to be machined face type, produce the extruding relative motion of applying workpiece machining surface, and produce scraping, ground effect to the workpiece machined surface.So the utility model can be realized the surfacing precise high-efficiency trace of workpiece complex profile is removed processing based on above mechanism and repetitive operation process, and then realizes the polishing processing of the processed profile of workpiece.So far, a kind of mold cavity surface that proposes of the utility model is processed the transducing processing unit (plant) and can be realized surface treatment to workpiece shape face.
The utility model is by adding a transducing head between operate portions and surface of the work, drive and excitation and control transducing head by the multiple degrees of freedom platform, the transducing head operate portions is visited reached and act on workpiece shape face, while is for the shearing force of contact-making surface shape, pressure, relative motion, contact friction force, and the abrasive media (abrasive particle) that may exist between workpiece and the transducing head operate portions acts on the angle of surface of the work and frequency can be optimized and in real time control.Like this, can realize chamber shape face, the highly-efficient processing of shaped face etc.In addition, if processed shape face quality or rough degree are detected sensing in real time, the quality of opposite processing can also realize reaching by the closed-loop control to transducing head the adaptive machining of workpiece surface quality so.This device is suitable for processing various complex profiles to be processed, and workpiece face type keeps, and working (machining) efficiency is high.
The utility model has been realized the workpiece face type processing unit (plant) that not only can process regular shape face but also can process irregular shape face.According to the processing characteristics needs, can conveniently adopt multiple transducing head, realize the surface treatment processing of workpiece shape face or cavity surface.
Description of drawings
Fig. 1 is the utility model basic composition structural representation;
Fig. 2 (a) and (b), (c) embodiment 3 structural representations;
Fig. 3 (a) and (b), (c), (d), (e), (f) are configuration and the excitation distortion schematic diagram of embodiment 3 operate portions;
Fig. 4 is embodiment 4 activation configuration transducing head structural representations;
Fig. 5 is embodiment 5 luffing structure transducing head structural representations;
Fig. 6 is embodiment 6 structural representations;
Fig. 7 is embodiment 1 array type nozzle arrangements form schematic diagram;
Fig. 8 is embodiment 1 structural representation;
Fig. 9 is embodiment 2 structural representations;
Among the figure, 1 is function system, and 2 is channel design, 3 is gain media, and 4 is transducing head, and 5 is operate portions, 6 is the workpiece motion s platform, and 7 is servicing unit, and 8 is upper solenoid, 9 is motor, and 10 is lower solenoid, and 11 for strengthening solenoid, 12 is driver, 13 is the luffing structure, and 14 is the hydraulic pump body system, and 15 is the liquid communication pipeline, 16 is switching valve body, 17 is nozzle, and 18 is the liquid backflow retracting device, and 19 is high voltage power supply, 20 is circuit structure, 21 is contactor, and 22 is positive electrode, and 23 is negative electrode plate.
The specific embodiment
The below elaborates to embodiment of the present utility model: the present embodiment is implemented under take technical solutions of the utility model as prerequisite; provided detailed embodiment and concrete operating process, but protection domain of the present utility model is not limited to following embodiment.
The present embodiment comprises: energy supplying system 1, channel design 2, transducing head 4, servicing unit 7 and workpiece motion s platform 6, the inner of channel design 2 is connected with energy supplying system 1, its outer end is two free ends, and be connected with servicing unit 7 with transducing head 4 respectively, the workpiece motion s platform arranges 6 between transducing head 4 and servicing unit 7;
Transducing head 4 comprises interactional connecting portion and operate portions 5, wherein,
-connecting portion, the energy that the propagation function system produces, and act on operate portions 5;
-operate portions 5 is carried out the chamber face to workpiece to be machined and is processed.
As shown in Figure 8, in the present embodiment, energy supplying system 1 is hydraulic pump body system 14, and channel design 2 is liquid communication pipeline 15, and transducing head 4 is switching valve body 16, and its connecting portion is nozzle 17, and servicing unit 7 is liquid backflow retracting device 18, wherein:
-energy supplying system 1 provides pressure fluid by channel design 2 to transducing head 4;
-transducing head 4, by nozzle 17 atomizing of liquids, and mineralization pressure liquid working section;
-servicing unit 7 reclaims the liquid of transducing head 4 ejections.
As shown in Figure 7, nozzle 17 is the array type nozzle; Be provided with adjustable distance between nozzle 17 and the position to be processed.
Be specially, energy supplying system 1 is hydraulic pump body system 14, and channel design 2 is liquid communication pipeline 15, and the transducing head 4 of the end face of channel design 2 is switching valve body 16, connecting portion is that nozzle 17 and servicing unit 7 are liquid backflow retracting device 18, and liquid itself is as operate portions 5.Simultaneously, fluid injector 17 can be the array type nozzle, and the surface distance of the relative processing cavity shape of each jet hole can be according to the geometry adjustment of workpiece chamber shape.During work, hydraulic pump body system 14 provides suitable pressure fluid operate portions by liquid communication pipeline 15 to nozzle 17, the pressure size is also regulated by the opening of switching valve body 16 simultaneously, liquid working section will have suitable spary masterpiece to be used on the surface of the work material like this, when pressure enough, this liquid working section will or bump and degrade shape surface, workpiece chamber and reach that surfacing is removed and polishing is processed purpose.In addition, the array type nozzle is conducive to process simultaneously shape surface, large tracts of land chamber.
As shown in Figure 9, in the present embodiment, energy supplying system 1 is high voltage power supply 19, and channel design 2 is circuit structure 20, and transducing head 4 is contactor 21, and its connecting portion is positive electrode 22, and servicing unit 7 is negative electrode plate 23, wherein:
-energy supplying system 1 provides high voltage by channel design 2 to transducing head 4;
-servicing unit 7 is by negative electrode plate 23 and workpiece to be machined conducting;
-transducing head 4 by producing high voltage electric field between positive electrode 22 and the workpiece to be machined, and forms electron ion or polarized gas operate portions.
Electrode is the array type electrode.
Be specially, energy supplying system 1 is high voltage power supply 19, and channel design 2 is circuit structure 20, and the transducing head 4 of the end face of channel design 2 is contactor 21, and connecting portion is that positive electrode 22 and servicing unit 7 are negative electrode plate 23.Electron ion or polarized gas are as operate portions 5.Simultaneously, electrode 22 can be the array type electrode, and the surface distance of the relative processing cavity shape of each electrode can be according to the geometry adjustment of workpiece chamber shape, as shown in Figure 9.During work, high-voltage system 19 provides high voltage by circuit structure 20 to electrode 22 and 23, workpiece and negative electrode 23 conductings, between workpiece and positive electrode 22, produce high voltage electric field like this, when this voltage is enough, can between electrode and workpiece, produce electrion, and the ablation surface of the work, and reach the purpose that teaching and administrative staff's surface of the work material is removed.In addition, array type electrode 22 is conducive to process simultaneously shape surface, large tracts of land chamber.
The present embodiment comprises energy supplying system 1, channel design 2, transducing head 4, servicing unit 7 and workpiece motion s platform 6, the inner of channel design 2 is connected with energy supplying system 1, its outer end is two free ends, and be connected with servicing unit 7 with transducing head 4 respectively, workpiece motion s platform 6 is arranged between transducing head 4 and the servicing unit 7;
-connecting portion, the energy that the propagation function system produces, and act on operate portions 5;
-operate portions 5 is carried out the chamber face to workpiece to be machined and is processed.
As shown in Figures 1 to 3, in the present embodiment, transducing head 4 is the magnetic rheological liquid transducing head, also comprises the upper solenoid 8 that is arranged on coupled channel design outer end, embeds the driving mechanism that is installed in this center, channel design outer end, connecting portion and this driving mechanism are connected, operate portions 5 is soft changable shape operate portions, and contacts with connecting portion, wherein, servicing unit 7 is lower solenoid 10, and lower solenoid 10 is arranged on workpiece to be machined below or workpiece motion s platform 6 belows; The yoke flux path of channel design 2 for being consisted of by ferromagnetic material.
Preferably, upper electromagnetic coil and/or lower solenoid can be micro array structure, and according to workpiece face type processing needs, the coil that can only make up UNICOM's corresponding position produces magnetic field and carries out partial operation, improves the face type adaptability of workpiece processing.
Driving mechanism is motor 9; Connecting portion is rotating disk, and rotating disk is connected on the output revolving shaft of motor 9.
Soft changable shape operate portions is magnetic rheological liquid, the latticed flexible body of hole, by the magnetic flow liquid utricule of overcoat sealed envelope or by the magnetic flow liquid deformable body of bellows parcel.
The magnetorheological materials particle is one or more in ferromagnetic material particle, permanent-magnet material particle, magnetic flow liquid and the abrasive material mixing material.
Preferably, be provided with gain media 3 between workpiece motion s platform 6 and the transducing head 4.
Workpiece motion s platform 6 can be realized the rotation of X, Y and three direction translationals of Z and α, β and three directions of θ.
Working motion platform 6 can be conveyer belt, and transducing head 4 is several, and is arranged on the workpiece motion s direction.
During work, at first adjust the relative position of workpiece machined surface normal direction and connecting portion on the workpiece motion s platform, as shown in Figure 1.Afterwards, the fixation workpiece motion platform is that workpiece is in the position of Z-direction.Upper solenoid and lower solenoid are applied electric current generation magnetic field, this magnetic field is delivered to connecting portion by channel design and then is delivered to the magnetic rheological liquid that contacts with connecting portion, or the latticed flexible body of hole, or by the magnetic flow liquid utricule of overcoat sealed envelope, or on the operate portions 5 made of the magnetic flow liquid deformable body of bellows parcel.Be subjected to arrange along the polarization of magnetic field excitation direction after the magnetic field excitation based on magnetic rheological liquid; and become the solid coupling of stream or solid-state according to exciting field intensity; and along the Z-direction elongation strain; and extruding is fitted in the workpiece to be machined surface, to surface of the work with and on the gain media of being made by abrasive grains or polishing material on apply extruding force.And this extruding force can be controlled by electromagnetic signal fully with the alternation extruding force (generation vibrational excitation) that applies controllable frequency.Because platform can artificially be applied to the motion of X, Y-direction again, shown in Fig. 2 (b), also can produce the tangential force when moving along workpiece machining surface, this power forms force action in surface of the work with operate portions 5 in the extruding force to surface of the work that the workpiece with form surface normal direction produces this moment.When this made a concerted effort enough greatly, the surface of the work material will be because of contact friction force, and the friction of gain media or vibratory impulse power or heat etching etc. are former thereby divested.
Simultaneously, the magnetic rheological liquid operate portions 5 of the magnetic rheological liquid transducing head of the device that proposes and the relative contact of workpiece to be machined are that the face of deformable applying contacts, its face shape and workpiece to be machined face type can coincide, as shown in Figure 3, like this, the magnetic rheological liquid transducing head applies the excitation of electromagnetism alternation, realizes change impacts and friction scraping to chamber shape face, and then realize the efficient trace removal of workpiece with form surface surfacing processing, the polishing that obtains on processed profile surface is processed.
In addition, magnetic rheological liquid transducing head for the present embodiment, can embed mounted motor in the channel design outer end, motor rotarily drives connecting portion and rotates with the contacted magnetorheological operate portions 5 of connecting portion, shown in Fig. 2 (c), this rotation also will produce the shear force that turns that acts on the workpiece cavity surface, be used for accelerating to remove the surface of the work excess stock.
Preferably, according to workpiece to be machined chamber shape complexity, can around workpiece, increase and strengthen solenoid 11 more than one, as shown in Figure 2, to strengthen applying and the extruding degree on operate portions 5 and shape surface, complicated chamber, to increase processing effect.
In addition, the upper solenoid of this processing mode, lower solenoid and reinforcement electromagnetic coil can be the microarray type coil, are used for adding and improve field intensity and the position resolution that processing magnetic field applies man-hour, are beneficial to the polishing processing effect that improves shape surface, workpiece chamber.
Preferably, in the lower end, namely can also be provided with electric rotating machine or oscillation drive between workpiece to be machined and the workpiece motion s platform 6, an end of this electric rotating machine or oscillation drive links to each other with the workpiece motion s platform, and its other end links to each other with workpiece to be machined.In the motion of workpiece motion s platform, workpiece to be machined can also vibrate with the electric rotating machine rotation or with oscillation drive like this, thereby increases the working (machining) efficiency on workpiece to be machined surface.
So far, based on magnetic rheological liquid mold cavity surface that transducing head proposes process the transducing processing unit (plant) realization the polishing processing of workpiece chamber shape face.
As shown in Figure 4, in the present embodiment, driving mechanism is that a relative workpiece direction can produce flexible reciprocating driver 12, and its course of work and mechanism are with embodiment 1, and this flexible reciprocating driver 12 can adopt magnetic telescopic driver, piezoelectric actuator or electromagnetic driver.The outer end of this driver 12 links to each other with magnetorheological operate portions 5 by connecting portion again.During work, give power-on and power-off magnetic coil 8 and 10 energisings of lower solenoid, the alternating electromagnetic field H that produces acts on operate portions 5, and the shape of operate portions 5 can be linearity, hexahedron, spheroid or irregular obform body according to processed chamber shape; Its inner magnet rheo-material particle can be in ferromagnetic material particle, permanent-magnet material particle, magnetic flow liquid and the abrasive material mixing material one or more, when operate portions is the magnetic flow liquid utricule, the abrasive material mixing material can add and can not add, and operate portions 5 will produce elongation or recovery and stream, solid-stately alternately change based on magnetorheological principle this moment.At this moment, drive again flexible reciprocating driver 12, as adopting magnetic telescopic driver, the superpositing vibration that it will drive connecting portion and then drive one of magnetorheological operate portions 5 generation and operate portions 5 original magnetorheological vibrations.Based on load signal control, can provide simultaneously location and the vibration of relative surface of the work in direction of feed by flexible 12 pairs of operate portions 5 of reciprocating driver.
As shown in Figure 5, in the present embodiment, connecting portion is luffing structure 13, luffing structure 13 is connected with driver 12, and produce amplitude according to the flexible reciprocating motion of driver 12, and its course of work and mechanism are with embodiment 2, and this luffing structure 13 applies vibration by flexible reciprocating driver 12, luffing structure 13 can produce respective amplitudes according to the frequency change that flexible reciprocating driver 12 applies vibration, and acts on the operate portions 5.Simultaneously, because the electromagnetic attraction effect of upper solenoid 8 and lower solenoid 10, make the distortion of luffing structure 13 for ferrimagnet or composite permanet magnet material and can be controlled by the current strength that electromagnetic attraction namely is applied in the solenoid.Like this, the electromagnetic attraction acting in conjunction that applies vibration and upper solenoid 8 and lower solenoid 10 by flexible reciprocating driver 12 is in luffing structure 13, and then acts on operate portions 5, makes shapes surface, operate portions 5 highly-efficient processing chamber.
As shown in Figure 6, in the present embodiment, operate portions 5 is several, and realizes workpiece processing by the processing magnetic field of transducing head and servicing unit generation and to the alternating force that workpiece applies, and its course of work and mechanism are with embodiment 1.For multi-cavity pass workpiece, when initial it is immersed in the operate portions 5, or the utricule operate portions 5 that meets chamber shape is passed the hole in the workpiece.Then the solenoid around the operate portions 5 is applied alternating electromagnetic field, this alternating electromagnetic field will force the inner reciprocating of operate portions 5 and chamber, hole shape and polishing chamber shape face.In above-mentioned work, apply again an alternating force F (t) for workpiece, make workpiece produce simultaneously vibration, strengthen processing effect.
Claims (14)
1. a mold cavity surface is processed the transducing processing unit (plant), it is characterized in that, comprise energy supplying system, channel design, transducing head, servicing unit and workpiece motion s platform, the inner of described channel design is connected with energy supplying system, its outer end is two free ends, and is connected with servicing unit with transducing head respectively, and described workpiece motion s platform is arranged between transducing head and the servicing unit;
Described transducing head comprises interactional connecting portion and operate portions, wherein,
-connecting portion, the energy that the propagation function system produces, and act on operate portions;
-operate portions is carried out the chamber face to workpiece to be machined and is processed.
2. mold cavity surface according to claim 1 is processed the transducing processing unit (plant), it is characterized in that, described energy supplying system is the hydraulic pump body system, described channel design is the liquid communication pipeline, described transducing head is switching valve body, its connecting portion is nozzle, and described servicing unit is the liquid backflow retracting device, wherein:
-energy supplying system provides pressure fluid by channel design to transducing head;
-transducing head, by nozzle ejection liquid, and mineralization pressure liquid working section;
-servicing unit reclaims the liquid of transducing head ejection.
3. mold cavity surface according to claim 2 is processed the transducing processing unit (plant), it is characterized in that, described nozzle is the array type nozzle; Be provided with adjustable distance between described nozzle and the position to be processed.
4. mold cavity surface according to claim 1 is processed the transducing processing unit (plant), it is characterized in that, described energy supplying system is high voltage power supply, described channel design is circuit structure, and described transducing head is contactor, and its connecting portion is positive electrode, described servicing unit is negative electrode plate, wherein:
-energy supplying system provides high voltage by channel design to transducing head;
-servicing unit is by negative electrode plate and workpiece to be machined conducting;
-transducing head by producing high voltage electric field between positive electrode and the workpiece to be machined, and forms electron ion or polarized gas operate portions.
5. mold cavity surface according to claim 4 is processed the transducing processing unit (plant), it is characterized in that, described electrode is the array type electrode.
6. mold cavity surface according to claim 1 is processed the transducing processing unit (plant), it is characterized in that, described transducing head is the magnetic rheological liquid transducing head, also comprise the upper solenoid that is arranged on coupled channel design outer end, embedding is installed in the driving mechanism of this center, channel design outer end, described connecting portion and this driving mechanism are connected, described operate portions is soft changable shape operate portions, and contact with connecting portion, wherein, described servicing unit is lower solenoid, and described lower solenoid is arranged on workpiece to be machined below or workpiece motion s platform below; The yoke flux path of described channel design for being consisted of by ferromagnetic material.
7. mold cavity surface according to claim 6 is processed the transducing processing unit (plant), it is characterized in that, described driving mechanism is motor; Described connecting portion is rotating disk, and described rotating disk is connected on the output revolving shaft of motor.
8. mold cavity surface according to claim 6 is processed the transducing processing unit (plant), it is characterized in that, described driving mechanism is magnetic telescopic driver, piezoelectric actuator or electromagnetic driver; Described connecting portion is the luffing structure, and described luffing structure and driver are connected, and produces amplitude according to the flexible reciprocating motion of driver.
9. mold cavity surface according to claim 6 is processed the transducing processing unit (plant), it is characterized in that, described operate portions is several, and realizes workpiece processing by the processing magnetic field of transducing head and servicing unit generation and to the alternating force that workpiece applies.
According to claim 6 in 9 each described mold cavity surface process transducing processing unit (plant), it is characterized in that, described operate portions is magnetic rheological liquid, the latticed flexible body of hole, by the magnetic flow liquid utricule of overcoat sealed envelope or by the magnetic flow liquid deformable body of bellows parcel; Described magnetorheological materials particle is one or more in ferromagnetic material particle, permanent-magnet material particle, magnetic flow liquid and the abrasive material mixing material.
11. each described mold cavity surface is processed transducing processing unit (plant) in 9 according to claim 6, it is characterized in that, is provided with gain media between described workpiece motion s platform and the transducing head; Described gain media is abrasive grains or polishing material.
12. each described mold cavity surface is processed transducing processing unit (plant) in 9 according to claim 6, it is characterized in that, comprises that also several strengthen solenoid, described reinforcement solenoid is arranged on around the workpiece to be machined.
13. each described mold cavity surface is processed transducing processing unit (plant) in 9 according to claim 6, it is characterized in that, also be provided with electric rotating machine or oscillation drive between described workpiece to be machined and the workpiece motion s platform, one end of described electric rotating machine or oscillation drive links to each other with the workpiece motion s platform, and its other end links to each other with workpiece to be machined.
14. each described mold cavity surface is processed transducing processing unit (plant) in 9 according to claim 6, it is characterized in that, described upper solenoid and/or lower solenoid are the micro array structure solenoid.
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CN201220462377.5U CN202825517U (en) | 2012-09-11 | 2012-09-11 | Cavity surface treatment transduction machining device |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102873591A (en) * | 2012-09-11 | 2013-01-16 | 上海交通大学 | Cavity surface treatment machining device based on energy conversion device |
CN115302393A (en) * | 2022-10-12 | 2022-11-08 | 沛县祥龙矿山机械配件有限公司 | Inner wall polisher for production of mining mechanical equipment |
CN115401530A (en) * | 2022-08-30 | 2022-11-29 | 大连理工大学 | Shape-controlled flexible polishing method for microarray mold |
-
2012
- 2012-09-11 CN CN201220462377.5U patent/CN202825517U/en not_active Expired - Lifetime
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102873591A (en) * | 2012-09-11 | 2013-01-16 | 上海交通大学 | Cavity surface treatment machining device based on energy conversion device |
CN115401530A (en) * | 2022-08-30 | 2022-11-29 | 大连理工大学 | Shape-controlled flexible polishing method for microarray mold |
CN115302393A (en) * | 2022-10-12 | 2022-11-08 | 沛县祥龙矿山机械配件有限公司 | Inner wall polisher for production of mining mechanical equipment |
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