CN110394464A - A kind of ultrasonic main shaft and the ultrasonic wave lathe including it - Google Patents

A kind of ultrasonic main shaft and the ultrasonic wave lathe including it Download PDF

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Publication number
CN110394464A
CN110394464A CN201910825512.4A CN201910825512A CN110394464A CN 110394464 A CN110394464 A CN 110394464A CN 201910825512 A CN201910825512 A CN 201910825512A CN 110394464 A CN110394464 A CN 110394464A
Authority
CN
China
Prior art keywords
main shaft
rod
conduct piece
electric conductor
ultrasonic
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201910825512.4A
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Chinese (zh)
Inventor
颜炳姜
李伟秋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Smartguy Intelligent Equipment Co Ltd Guangzhou Branch
Original Assignee
Conprofe Technology Group Co Ltd
Conprofe Green Tools Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Conprofe Technology Group Co Ltd, Conprofe Green Tools Co Ltd filed Critical Conprofe Technology Group Co Ltd
Priority to CN201910825512.4A priority Critical patent/CN110394464A/en
Publication of CN110394464A publication Critical patent/CN110394464A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B06GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS IN GENERAL
    • B06BMETHODS OR APPARATUS FOR GENERATING OR TRANSMITTING MECHANICAL VIBRATIONS OF INFRASONIC, SONIC, OR ULTRASONIC FREQUENCY, e.g. FOR PERFORMING MECHANICAL WORK IN GENERAL
    • B06B1/00Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency
    • B06B1/02Methods or apparatus for generating mechanical vibrations of infrasonic, sonic, or ultrasonic frequency making use of electrical energy
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/70Stationary or movable members for carrying working-spindles for attachment of tools or work

Abstract

The present invention relates to ultrasonic wave processing technical fields, disclose a kind of ultrasonic main shaft, on the one hand, the ultrasonic main shaft passes through setting wireless transmission component and wireless receiving component, contactless electrically conduct is formd between rotary shaft and cylinder base, it can avoid conductive structure and generate abrasion, extend the service life of main shaft, promote the cutting operation effect of high-frequency vibration;On the other hand, since conduct piece is focused on the body of rod, to which dual contraposition is converted into single contraposition, It greatly reduces contraposition difficulty, thus, during the socket of ultrasonic wave knife handle and rotary shaft, only the body of rod need to be docked with pull rod, can be formed between conduct piece and electric conductor it is effective be electrically connected, in turn, stable the case where electrically conducting, not having poor contact generation can be formed between ultrasonic wave knife handle and rotary shaft.In addition, equally having many advantages, such as the stabilization that electrically conducts the present invention also provides a kind of ultrasonic wave lathe, processing effect is good.

Description

A kind of ultrasonic main shaft and the ultrasonic wave lathe including it
Technical field
The present invention relates to ultrasonic wave processing technical field more particularly to a kind of ultrasonic main shaft and including its ultrasonic drilling machine Bed.
Background technique
The vibration machining mechanism of high frequency is imported during processing operation, the surface that can not only improve machining face is thick Rugosity and raising machining accuracy, can more reduce cutting resistance, increase the service life of cutter, thus gradually be widely used.
Existing ultrasonic main shaft is usually to be made of pedestal, rotary shaft and ultrasonic wave knife handle, and rotary shaft is set up in seat In vivo, and in lower end sets of holes are equipped with, power connection are equipped in sets of holes, which passes through the bearing between rotary shaft and pedestal Or carbon brush is electrically connected with external power supply formation.The power connection is equipped with the first conducting element in extra heavy pipe shape, and first leads at this Electric device interior insulation is equipped with the second conducting element in thin tube-like.Ultrasonic wave knife handle is provided at an outer portion in coniform plant Portion, it is internal then be equipped with oscillator with sleeve in the sets of holes of the rotary shaft, and be equipped in upper end and pierce circuit is electrically connected Attaching plug, which is equipped with the first electrode of corresponding first conducting element, and is equipped with and corresponds in the first electrode The second electrode of second conducting element.When in the sets of holes of ultrasonic wave knife handle insertion rotary shaft, the first of attaching plug was electric before this Pole is socketed on the outer ring surface of the first conducting element of the power connection, then is that second electrode is plugged in the second conducting element, such as This, power connection is electrically connected with attaching plug;External power supply export electric current, and via power lead group, power connection with And attaching plug is conducted to the oscillator of ultrasonic wave knife handle, to drive ultrasonic wave knife handle to make high-frequency vibration.
The shortcomings that above structure, is:
1, there is assembly clearance, therefore, when inner ring and steel ball are with rotary shaft high speed between the inside and outside circle and steel ball of bearing When rotation, the bounce that the centrifugal force or when machining generated generates easily disengages inner ring with steel ball, and then generation The case where momentary breaks, influences the cutting operation effect of high-frequency vibration so that cutter can not steadily make high-frequency vibration.
2, for carbon brush structure, since the technological means of existing elastic carbon brush part provides elastic force pushing and pressing respectively with elastic component The carbon brush part is mobile to the major axes orientation, if the elastic force of pushing and pressing opposite can also improve when the decrement of the elastic component is excessive, The abrasion in turn resulting in the carbon brush part is more serious;Conversely, if when the decrement of the elastic component is too small, because of the elastic force of pushing and pressing Deficiency, and then cause the carbon brush part that can not contact conducting ring, or even there is a situation where open circuits.
3, when the not yet complete sleeve of the inserting part of ultrasonic wave knife handle is positioned in the sets of holes of rotary shaft, due to the ultrasonic wave Knife handle and rotary shaft still have the deviation on position, opposite, the first and second electrode and electricity of the attaching plug of the ultrasonic wave knife handle First and second conducting element of source connector also not yet accurately aligns, therefore, when the first and second electrode and the power supply of attaching plug connect When the leading grafting of the first and second conducting element of head, attaching plug or power connection is be easy to cause to damage.
4, again due to all comparable point of shape of the second electrode of the second conducting element and attaching plug of the power connection Carefully, therefore, during the grafting of the second electrode of attaching plug and the second conducting element of power connection, the two must be more smart Quasi- contraposition, if position slightly deviation, second electrode or the second conducting element are easily damaged because wearing away or bending.
In conclusion not only service life is low for the conductive structure of existing ultrasonic main shaft, more make power supply can not be steadily Electric energy is transmitted to the oscillator of hilt, cutting operation effect is poor.
Summary of the invention
The object of the present invention is to provide a kind of long service life, and electrically conduct stabilization, can meet high speed demand, safety Height, the good ultrasonic main shaft of processing effect and the ultrasonic wave lathe including it.
To achieve the goals above, the present invention provides a kind of ultrasonic main shafts comprising:
Cylinder base, the cylinder base is interior to be equipped with wireless transmission component;
Rotary shaft, the rotary shaft are arranged in the cylinder base and are connected by bearing with the cylinder base, the rotation Axis is equipped with wireless receiving component, and the wireless receiving component and the wireless transmission inter-module be every being oppositely arranged, the rotation The inside of shaft is equipped with cavity, and the front end of the rotary shaft is equipped with the sets of holes being connected with the cavity;
Pull rod, the pull rod are set in the cavity and can slide along the cavity, and the front end of the pull rod is equipped with pawl seat, The front end of the pull rod be equipped with the first electric conductor and the second electric conductor insulated from each other, first electric conductor by a conducting wire with The coil of the wireless receiving component is electrically connected, and second electric conductor passes through the coil of a conducting wire and the wireless receiving component Electrical connection;
Clamping jaw, the clamping jaw are connected by the pawl seat with the pull rod, and can be slided with the pull rod;
Ultrasonic wave knife handle, the ultrasonic wave knife handle include knife handle ontology, blind rivet, amplitude transformer, oscillator and conductive component, institute Stating knife handle ontology can be socketed by the sets of holes and the rotary shaft, and the rear end of the knife handle ontology is equipped with mounting groove, the drawing Nail is fixedly connected by the mounting groove with the knife handle ontology, and the blind rivet connect or disengages with the clamping jaw, the knife handle The front end of ontology is equipped with link slot, and the amplitude transformer is fixedly connected by the link slot with the knife handle ontology, the oscillator It is fixed in the amplitude transformer, the conductive component includes the body of rod and on the body of rod and insulated from each other first conductive Part and the second conduct piece, the body of rod are set to the rear end of the blind rivet, and first conduct piece passes through a conducting wire and the oscillator First electrode electrical connection, second conduct piece is electrically connected by a conducting wire with the second electrode of the oscillator.
Preferably, the front end of the pull rod is equipped with groove, and first electric conductor and second electric conductor are set In in the groove.
Preferably, the rear end of the body of rod is protruded into the groove, and makes first conduct piece and described the The electrical connection of one electric conductor and second conduct piece are electrically connected with second electric conductor.
Preferably, dead ring is equipped in the groove, first electric conductor and second electric conductor are set to In the dead ring, the rear end of the body of rod is inserted into the collar extension of the dead ring.
Preferably, the forwardly convex front end face in the dead ring in the front end of the pull rod.
Preferably, sealing ring is equipped between the body of rod and the dead ring.
Preferably, first electric conductor is equipped with the first resilient contact, is used for and first conductive body contact Electrical connection is formed afterwards;
Second electric conductor is equipped with the second resilient contact, for being electrically connected with being formed after second conductive body contact.
Preferably, the pull rod is equipped with the first duct of perforation, connects first electric conductor and described wireless The conducting wire of the coil of the conducting wire of the coil of receiving unit and connection second electric conductor and the wireless receiving component is from institute It states and is passed through in the first duct.
Preferably, the both ends of the pull rod are run through in first duct.
Preferably, the blind rivet is equipped with the second duct of perforation, connects first conduct piece and the oscillator First electrode conducting wire and connection second conduct piece and the oscillator second electrode conducting wire from second hole It is passed through in road.
Preferably, the both ends of the blind rivet are run through in second duct.
Preferably, withdrawing chamber is equipped between the cavity and the sets of holes.
Preferably, the oscillator is fixed on the rear end of the amplitude transformer, and the knife handle ontology is equipped with described in connection The cable-through hole of link slot and the mounting groove, connect the first electrode of first conduct piece and the oscillator conducting wire and It connects second conduct piece and the conducting wire of the second electrode of the oscillator is passed through from the cable-through hole.
Preferably, first conduct piece is embedded at the inside of the body of rod, one end of first conduct piece Expose to the front end of the body of rod and be connected with the conducting wire for the first electrode for connecting the oscillator, first conduct piece it is another One end exposes to the lateral wall of the body of rod, for being electrically connected with being formed after first conductive body contact;And/or
Second conduct piece is embedded at the inside of the body of rod, and one end of second conduct piece exposes to the body of rod Front end and be connected with the conducting wire for the second electrode for connecting the oscillator, the other end of second conduct piece exposes to described The lateral wall of the body of rod, for being electrically connected with being formed after second conductive body contact.
Preferably, first conduct piece is conductive round tube, and second conduct piece is conductive round tube.
Preferably, the conductive component further includes lantern ring, and lateral surface of the body of rod close to its front end is equipped with Flange, the set are located on the outside of the body of rod and compress the flange, and the rear end of the blind rivet is equipped with deep gouge, the lantern ring It is fixed in the deep gouge.
Preferably, the lateral surface of the lantern ring is equipped with screw thread, and the lantern ring passes through the screw thread and the blind rivet It is fixedly connected;Or
The lantern ring and the blind rivet weld.
Preferably, sealing ring is equipped between the body of rod and the lantern ring.
Preferably, the body of rod is equipped with the through hole through its both ends.
Another object of the present invention is to provide a kind of ultrasonic wave lathes comprising ultrasonic power and above-mentioned ultrasound Wave main shaft, the ultrasonic power are electrically connected with the coil of the wireless transmission component.
The embodiment of the present invention provides a kind of ultrasonic main shaft, compared with prior art, the beneficial effect is that:
On the one hand, ultrasonic main shaft provided by the invention is by the setting wireless transmission component on cylinder base, and is rotating Wireless receiving component is set on axis, can make to be formed between rotary shaft and cylinder base it is contactless electrically conduct, this not only can avoid Conductive structure generates abrasion, extends the service life of main shaft, promotes the cutting operation effect of high-frequency vibration, also can avoid rotary shaft Beat movement and the case where generate momentary breaks, promote the stability to electrically conduct, it is ensured that oscillator can steadily obtain work Make electric current, also, the revolving speed of rotary shaft can be also significantly increased in contactless electrically conducting, it is made to meet high-revolving need It asks.
On the other hand, ultrasonic main shaft provided by the invention on ultrasonic wave knife handle by being arranged conductive component, and general First electric conductor and the second electric conductor concentrate on the front end of pull rod, can make position at contact electrical connection of the ultrasonic wave knife handle with rotary shaft In in ultrasonic wave knife handle or rotary shaft, rather than the exposed gap location in ultrasonic wave knife handle and rotary shaft, therefore can avoid electric leakage Phenomenon eliminates safe hidden trouble;At the same time, since two conduct pieces are focused on the same body of rod, thus by two conductions Dual contraposition between part and two electric conductors is converted into the single contraposition between the body of rod and pull rod, and It greatly reduces right Position difficulty only need to dock the body of rod with pull rod, the first conduct piece as a result, during the socket of ultrasonic wave knife handle and rotary shaft Can be formed between the first electric conductor and between the second conduct piece and the second electric conductor it is effective be electrically connected, in turn, ultrasound Stable the case where electrically conducting, not having poor contact generation can be formed between wave knife handle and rotary shaft.
In addition, the present invention also provides a kind of ultrasonic wave lathe, it is same since which employs above-mentioned ultrasonic main shafts Sample has many advantages, such as the stabilization that electrically conducts, and processing effect is good.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the ultrasonic main shaft of the embodiment of the present invention one;
Fig. 2 is the partial schematic diagram in the region I in Fig. 1;
Fig. 3 is the structural schematic diagram of the ultrasonic main shaft for not installing ultrasonic wave processing component of the embodiment of the present invention one;
Fig. 4 is the structural schematic diagram of the ultrasonic wave processing component of the embodiment of the present invention one;
Fig. 5 is the structural schematic diagram of the ultrasonic wave lathe of the embodiment of the present invention two.
In figure: 100, ultrasonic main shaft;1, cylinder base;2, rotary shaft;201, cavity;202, sets of holes;203, withdrawing chamber;3, it draws Bar;301, pawl seat;302, the first duct;303, groove;4, clamping jaw;401, pawl arm;5, bearing;6, wireless transmission component;7, nothing Line receiving unit;8, the first electric conductor;9, the second electric conductor;10, cutter;11, knife handle ontology;1101, mounting groove;1102, even Access slot;1103, cable-through hole;12, blind rivet;1202, the second duct;1203, deep gouge;13, amplitude transformer;1301, connecting hole;14, it shakes Son;15, collet chuck;16, sealing nut;17, conductive component;1701, the body of rod;1702, the first conduct piece;1703, the second conduct piece; 1704, lantern ring;1705, the second sealing ring;1706, through hole;18, dead ring;19, the first sealing ring;200, ultrasonic power.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts all other Embodiment shall fall within the protection scope of the present invention.
It should be pointed out that in the description of the present invention, the instruction such as term " on ", "lower", "left", "right", "top", "bottom" Orientation or positional relationship be based on the orientation or positional relationship shown in the drawings, be merely for convenience of description the present invention and simplification retouch It states, rather than the device or element of indication or suggestion meaning must have a particular orientation, be constructed and operated in a specific orientation, Therefore it is not considered as limiting the invention.
Likewise, it should be understood that describe various information in the present invention using term " first ", " second " etc., but These information should not necessarily be limited by these terms, these terms are only used to for same type of information being distinguished from each other out.For example, not taking off In the case where from the scope of the invention, " first " information can also be referred to as " second " information, and similar, " second " information can also be with Referred to as " first " information.
In addition, it should also be noted that, in the description of the present invention, " in rotary shaft 2 ", " in amplitude transformer 13 ", " body of rod On 1701 " etc. "upper" in sentences include " inside ", " outside ", " top ", lower part " etc. meanings.Term " front end " and " rear end " Refer to that cutting tool 10 is " front end " close to one end of workpieces processing, away from one end of workpieces processing in use process For " rear end ".
Embodiment one
As shown in Figure 1, the embodiment of the present invention provides a kind of ultrasonic main shaft 100, mainly include cylinder base 1, rotary shaft 2, Pull rod 3, clamping jaw 4 and ultrasonic wave processing component.
Specifically, as shown in Figure 1 to Figure 3, cylinder base 1 is not moving part, rotary shaft 2 be arranged in cylinder base 1 and by bearing 5 with Cylinder base 1 is connected, and rotary shaft 2 can be rotated relative to cylinder base 1 as a result,.The inside of rotary shaft 2 is equipped with cavity 201, and pull rod 3 is set to It can slide up and down in cavity 201 and along cavity 201.The front end of pull rod 3 is equipped with pawl seat 301, and clamping jaw 4 passes through pawl seat 301 and pull rod 3 It is connected, and can be slided up and down with pull rod 3.The front end of rotary shaft 2 is equipped with the sets of holes 202 being connected with cavity 201, sets of holes Withdrawing chamber 203 is equipped between 202 and cavity 201.When pull rod 3 is along 201 slide downward of cavity, clamping jaw 4 is entered by cavity 201 to be moved back Knife chamber 203, to open pawl arm 401;When pull rod 3 is along 201 upward sliding of cavity, clamping jaw 4 enters cavity 201 by withdrawing chamber 203, To collapse pawl arm 401.
Further, wireless transmission component 6 is equipped in cylinder base 1, rotary shaft 2 is equipped with wireless receiving component 7, wireless receiving Component 7 is oppositely arranged with the interval of wireless transmission component 6;The front end of pull rod 3 is equipped with the first electric conductor 8 and second insulated from each other and leads Electric body 9, the first electric conductor 8 are electrically connected by the first conducting wire with the coil of wireless receiving component 7, and the second electric conductor 9 passes through second Conducting wire is electrically connected with the coil of wireless receiving component 7.Based on this, by being electrically connected to a power source, the coil of wireless transmission component 6 can Stable induced magnetic field is generated, as rotary shaft 2 makes rotating motion relative to wireless transmission component 6, the line of wireless receiving component 7 Circle can generate induced current by cutting magnetic induction line, in this way, being formed between rotary shaft 2 and cylinder base 1 using electromagnetic induction principle Therefore contactless electrically conducting, the first electric conductor 8 and second electric conductor 9 also charge.
Specifically, as shown in Figure 1, Figure 2 and shown in Fig. 4, ultrasonic wave processing component includes ultrasonic wave knife handle and cutter 10, In, ultrasonic wave knife handle includes knife handle ontology 11, blind rivet 12, amplitude transformer 13 and oscillator 14 again.Knife handle ontology 11 can pass through sets of holes 202 are socketed with rotary shaft 2, are rotated with realizing with the rotation of rotary shaft 2;The rear end of knife handle ontology 11 is equipped with mounting groove 1101, blind rivet 12 is fixedly connected by mounting groove 1101 with knife handle ontology 11, and connection type here can be grafting, can also be with It is to be spirally connected;The front end of knife handle ontology 11 is equipped with link slot 1102, and amplitude transformer 13 is fixed by link slot 1102 and knife handle ontology 11 Connection, likewise, connection type here can be grafting, is also possible to be spirally connected;Oscillator 14 is fixed on the rear end of amplitude transformer 13; The front end of amplitude transformer 13 is equipped with the connecting hole 1301 of taper, and cutter 10 is inserted by the collet chuck 15 and connecting hole 1301 being arranged outside it It connects or is spirally connected;In order to promote the connective stability between cutter 10 and ultrasonic wave knife handle, the latter further includes sealing nut 16, sealing The front end of nut 16 and amplitude transformer 13 is spirally connected and compresses collet chuck 15.It should be pointed out that cutter 10 can also directly pass through connection Hole 1301 is connected with amplitude transformer 13, or is, the front end of amplitude transformer 13 is not provided with connecting hole 1301 and tapered, cutter 10 It is equipped with pilot hole, cutter 10 is connected to the front end of amplitude transformer 13 by the pilot hole, and certainly, above-mentioned connection type can be slotting It connects, is also possible to be spirally connected.
Further, ultrasonic wave knife handle further includes conductive component 17, and conductive component 17 is including the body of rod 1701 and is set to bar On body 1701 and the first conduct piece 1702 and the second conduct piece 1703 insulated from each other, after the body of rod 1701 is set to blind rivet 12 End, the first conduct piece 1702 are electrically connected by privates with the first electrode of oscillator 14, and the second conduct piece 1703 passes through the 4th Conducting wire is electrically connected with the second electrode of oscillator 14.
Based on above structure, when knife handle ontology 11 and the socket of rotary shaft 2, the rear end of blind rivet 12 is protruded into cavity 201, with This simultaneously, the first conduct piece 1702 contacts with the first electric conductor 8 and is formed electrical connection, the second conduct piece 1703 and the second electric conductor 9 contact and form electrical connection, electrically conduct in this way, also forming between ultrasonic wave knife handle and rotary shaft 2, wireless receiving component 7 The electric current that is generated by cutting magnetic induction line of coil can be transmitted to oscillator 14, so that its is generated high-frequency vibration, to promote cutter 10 Cutting operation effect.
Compared with prior art, on the one hand, contactless electrically conduct formed between rotary shaft 2 and cylinder base 1 not only may be used It avoids conductive structure from generating abrasion, extends the service life of main shaft, promote the cutting operation effect of high-frequency vibration, also can avoid rotation The case where beat of shaft 2 acts and generates momentary breaks, promotes the stability to electrically conduct, it is ensured that oscillator 14 can be steadily Operating current is obtained, also, the revolving speed of rotary shaft 2 can be also significantly increased in contactless electrically conducting, it is made to meet high turn The demand of speed.
On the other hand, ultrasonic main shaft 100 provided in an embodiment of the present invention on ultrasonic wave knife handle by being arranged conductive group Part 17, and the first electric conductor 8 and the second electric conductor 9 are concentrated on to the front end of pull rod 3, ultrasonic wave knife handle and rotary shaft 2 can be made Contact electrical connection at be located in ultrasonic wave knife handle or rotary shaft 2, rather than the exposed gap in ultrasonic wave knife handle and rotary shaft 2 Place, therefore can avoid leaky, it eliminates safe hidden trouble;At the same time, since two conduct pieces are focused on the same body of rod On 1701, so that the dual contraposition between two conduct pieces and two electric conductors is converted between the body of rod 1701 and pull rod 3 Single contraposition, It greatly reduces contraposition difficulty, as a result, during the socket of ultrasonic wave knife handle and rotary shaft 2, only need The body of rod 1701 is docked with pull rod 3, between the first conduct piece 1702 and the first electric conductor 8 and the second conduct piece 1703 and Effective electrical connection can be formed between two electric conductors 9, in turn, stable electricity can be formed between ultrasonic wave knife handle and rotary shaft 2 Property conducting, the case where not having poor contact generation.
Further, when knife handle ontology 11 and rotary shaft 2 are socketed, there are two states between clamping jaw 4 and blind rivet 12, That is: connection status, as shown in Figure 1, clamping jaw 4 is located in cavity 201, the pawl arm 401 of clamping jaw 4 collapses and clamps blind rivet 12, with true Protecting knife handle ontology 11 will not be detached from rotation with rotary shaft 2;Disengaged condition, clamping jaw 4 are located in withdrawing chamber 203, the pawl of clamping jaw 4 Arm 401 is opened and is disengaged with blind rivet 12, to realize that withdrawing operates.
As shown in Fig. 2, in order to promote the stability that is electrically connected between conduct piece and electric conductor, the first electric conductor 8 is equipped with the One resilient contact, the second electric conductor 9 are equipped with the second resilient contact, and the first conduct piece 1702 is in contact with the first resilient contact, with Electrical connection is formed, the second conduct piece 1703 is in contact with the second resilient contact, to form electrical connection.
As shown in Fig. 2, in order to form good conductive environment, the front end of pull rod 3 is equipped with groove 303, is equipped in groove 303 Dead ring 18, the first electric conductor 8 and the second electric conductor 9 are set in dead ring 18, when knife handle ontology 11 and the socket of rotary shaft 2, In the collar extension of the rear end insertion dead ring 18 of the body of rod 1701.Preferably, the front end of pull rod 3 is forwardly convex before dead ring 18 End face will receive shock to protect dead ring 18 not and damage.In addition, it is close to be additionally provided with first between the body of rod 1701 and dead ring 18 Seal 19, when the rear end of the body of rod 1701 is protruded into the collar extension of dead ring 18, the first sealing ring 19 can be to the water on the body of rod 1701 Or sundries is cleared up, to improve the reliability being electrically connected between electric conductor and conduct piece.
Further, as shown in figures 1 and 3, pull rod 3 is equipped with the first duct 302 of perforation, also, the first duct 302 with Groove 303 is connected, and the first conducting wire and the second conducting wire are passed through from the first duct 302.It is led to optimize the first conducting wire and second The both ends of pull rod 3 are run through in the arrangement of line, the first duct 302.
Similar, as shown in Figure 1 and Figure 4, blind rivet 12 is equipped with the second duct 1202 of perforation, privates and privates It is passed through from the second duct 1202.In order to optimize the arrangement of privates and privates, blind rivet 12 is run through in the second duct 1202 Both ends.In addition, knife handle ontology 11 be additionally provided with connection link slot 1102 and mounting groove 1101 cable-through hole 1103, privates with Privates are passed through from cable-through hole 1103.
As shown in Fig. 2, the first conduct piece 1702 and the second conduct piece 1703 in the present embodiment are leading for metal material Electric round tube, the body of rod 1701 is isolation material, by the first conduct piece 1702 and the second conduct piece by way of injection molding 1703 are embedded in inside, also, one end of the first conduct piece 1702 exposes to the front end of the body of rod 1701 and is connected with privates It connects, the other end of the first conduct piece 1702 exposes to the lateral wall of the body of rod 1701, for forming electricity after contacting with the first electric conductor 8 Connection, likewise, one end of the second conduct piece 1703 exposes to the front end of the body of rod 1701 and is connected with privates, second is led The other end of electric part 1703 exposes to the lateral wall of the body of rod 1701, for forming electrical connection after contacting with the second electric conductor 9.It is based on This, the contraposition between conduct piece and electric conductor require it is lower, during the body of rod 1701 protrudes into groove 303, the first conduct piece 1702 and second conduct piece 1703 be not easy to be worn or bend, and then can effectively extend the service life of ultrasonic main shaft 100, Guarantee the stability of electrical conductivity.
Further, as shown in Fig. 2, the conductive component 17 in the present embodiment further includes lantern ring 1704, the body of rod 1701 is close The lateral surface of its front end is equipped with flange, and lantern ring 1704 is placed on the outside of the body of rod 1701 and supported flange, and the rear end of blind rivet 12 is set There is deep gouge 1203, lantern ring 1704 is fixed in deep gouge 1203.The impurity such as water, vapour destroy the first conduct piece 1702 and the in order to prevent Two conduct pieces 1703, while the phenomenon that leak electricity in order to prevent, the second sealing ring is equipped between the body of rod 1701 and lantern ring 1704 1705, in the present embodiment, the second sealing ring 1705 is set as two, and two the second sealing rings 1705 are respectively arranged on the two of flange Side.
Illustratively, there are many connection types between lantern ring 1704 and blind rivet 12, for example, the lateral surface of lantern ring 1704 is set There is screw thread, lantern ring 1704 is fixedly connected by screw thread with blind rivet 12, or is, lantern ring 1704 is directly welded with blind rivet 12.
Optionally, as shown in Figure 1 to Figure 2, the body of rod 1701 be equipped with through its both ends through hole 1706, through hole 1706 with Second duct 1202 of blind rivet 12 is connected, also, when knife handle ontology 11 and rotary shaft 2 are socketed, through hole 1706 is also the same It is connected with the first duct 302 of pull rod 3.Based on this, the mountable cooling device of ultrasonic main shaft 100, in cutting operation mistake Cheng Zhong, cooling device is by injecting cooling be situated between into the first duct 302 of connection, through hole 1706 and the second duct 1202 Matter can reduce the heat of oscillator 14 and cutter 10, improve its operating condition, promote processing quality.
Embodiment two
As shown in figure 5, the embodiment of the present invention provides a kind of ultrasonic wave lathe, it mainly include ultrasonic power 200 and reality Apply the ultrasonic main shaft 100 of the offer of example one, wherein 200 electricity of wireless transmission component 6 and ultrasonic power of ultrasonic main shaft 100 Connection, the ultrasonic power 200 can be the external power supply independently of ultrasonic wave lathe, also can integrate in ultrasonic wave lathe On.
To sum up, the embodiment of the invention provides a kind of ultrasonic main shaft 100 and including its ultrasonic wave lathe, with existing skill Art is compared, which has long service life, and electrically conduct stabilization, can meet high speed demand, highly-safe, The advantages that processing effect is good, the ultrasonic wave lathe are same to have electrical lead due to using above-mentioned ultrasonic main shaft 100 The advantages that logical stabilization, processing effect is good.
The above is only a preferred embodiment of the present invention, it is noted that for the ordinary skill people of the art For member, without departing from the technical principles of the invention, several improvement and replacement can also be made, these are improved and replacement Also it should be regarded as protection scope of the present invention.

Claims (20)

1. a kind of ultrasonic main shaft characterized by comprising
Cylinder base, the cylinder base is interior to be equipped with wireless transmission component;
Rotary shaft, the rotary shaft is arranged in the cylinder base and is connected by bearing with the cylinder base, in the rotary shaft Equipped with wireless receiving component, and the wireless receiving component and the wireless transmission inter-module be every being oppositely arranged, the rotary shaft Inside be equipped with cavity, the front end of the rotary shaft is equipped with the sets of holes being connected with the cavity;
Pull rod, the pull rod are set in the cavity and can slide along the cavity, and the front end of the pull rod is equipped with pawl seat, described The front end of pull rod be equipped with the first electric conductor and the second electric conductor insulated from each other, first electric conductor by a conducting wire with it is described The coil of wireless receiving component is electrically connected, and second electric conductor is electrically connected by the coil of a conducting wire and the wireless receiving component It connects;
Clamping jaw, the clamping jaw are connected by the pawl seat with the pull rod, and can be slided with the pull rod;
Ultrasonic wave knife handle, the ultrasonic wave knife handle include knife handle ontology, blind rivet, amplitude transformer, oscillator and conductive component, the knife Handle ontology can be socketed by the sets of holes and the rotary shaft, and the rear end of the knife handle ontology is equipped with mounting groove, and the blind rivet is logical It crosses the mounting groove to be fixedly connected with the knife handle ontology, the blind rivet connect or disengages with the clamping jaw, the knife handle ontology Front end be equipped with link slot, the amplitude transformer is fixedly connected by the link slot with the knife handle ontology, and the oscillator is fixed In in the amplitude transformer, the conductive component include the body of rod and on the body of rod and the first conduct piece insulated from each other and Second conduct piece, the body of rod are set to the rear end of the blind rivet, first conduct piece pass through a conducting wire and the oscillator the The electrical connection of one electrode, second conduct piece are electrically connected by a conducting wire with the second electrode of the oscillator.
2. ultrasonic main shaft according to claim 1, which is characterized in that the front end of the pull rod is equipped with groove, and described the One electric conductor and second electric conductor are set in the groove.
3. ultrasonic main shaft according to claim 2, which is characterized in that the rear end of the body of rod is protruded into the groove, And it is electrically connected first conduct piece with first electric conductor and second conduct piece and second electric conductor electricity Connection.
4. ultrasonic main shaft according to claim 3, which is characterized in that it is equipped with dead ring in the groove, described first Electric conductor and second electric conductor are set in the dead ring, and the rear end of the body of rod is inserted into the collar extension of the dead ring.
5. ultrasonic main shaft according to claim 4, which is characterized in that the front end of the pull rod is forwardly convex in described exhausted The front end face of edge ring.
6. ultrasonic main shaft according to claim 4, which is characterized in that be equipped between the body of rod and the dead ring close Seal.
7. ultrasonic main shaft according to claim 1, which is characterized in that first electric conductor is equipped with the first elasticity touching Point, for being electrically connected with being formed after first conductive body contact;
Second electric conductor is equipped with the second resilient contact, for being electrically connected with being formed after second conductive body contact.
8. ultrasonic main shaft according to claim 1, which is characterized in that the pull rod is equipped with the first duct of perforation, even It connects first electric conductor and the conducting wire of the coil of the wireless receiving component and connect second electric conductor and the nothing The conducting wire of the coil of line receiving unit is passed through from first duct.
9. ultrasonic main shaft according to claim 8, which is characterized in that the two of the pull rod are run through in first duct End.
10. ultrasonic main shaft according to claim 1, which is characterized in that the blind rivet is equipped with the second duct of perforation, even It connects first conduct piece and the conducting wire of the first electrode of the oscillator and connect second conduct piece and the oscillator The conducting wire of second electrode is passed through from second duct.
11. ultrasonic main shaft according to claim 10, which is characterized in that the two of the blind rivet are run through in second duct End.
12. ultrasonic main shaft according to claim 1, which is characterized in that be equipped with and move back between the cavity and the sets of holes Knife chamber.
13. ultrasonic main shaft according to claim 1, which is characterized in that after the oscillator is fixed on the amplitude transformer End, the knife handle ontology are equipped with the cable-through hole for being connected to the link slot and the mounting groove, connect first conduct piece and institute The conducting wire of the first electrode of oscillator and the conducting wire of connection second conduct piece and the second electrode of the oscillator are stated from described It is passed through in cable-through hole.
14. ultrasonic main shaft according to claim 1, which is characterized in that first conduct piece is embedded at the body of rod Inside, one end of first conduct piece exposes to the front end of the body of rod and leads with the first electrode that connect the oscillator Line is connected, and the other end of first conduct piece exposes to the lateral wall of the body of rod, for connecing with first electric conductor Electrical connection is formed after touch;And/or
Second conduct piece is embedded at the inside of the body of rod, before one end of second conduct piece exposes to the body of rod It holds and is connected with the conducting wire for the second electrode for connecting the oscillator, the other end of second conduct piece exposes to the body of rod Lateral wall, for being electrically connected with being formed after second conductive body contact.
15. ultrasonic main shaft according to claim 1, which is characterized in that first conduct piece is conductive round tube, described Second conduct piece is conductive round tube.
16. ultrasonic main shaft according to claim 1, which is characterized in that the conductive component further includes lantern ring, the bar Lateral surface of the body close to its front end is equipped with flange, and the set is located on the outside of the body of rod and compresses the flange, described The rear end of blind rivet is equipped with deep gouge, and the lantern ring is fixed in the deep gouge.
17. ultrasonic main shaft according to claim 16, which is characterized in that the lateral surface of the lantern ring is equipped with screw thread, institute It states lantern ring and is fixedly connected by the screw thread with the blind rivet;Or
The lantern ring and the blind rivet weld.
18. ultrasonic main shaft according to claim 16, which is characterized in that be equipped between the body of rod and the lantern ring close Seal.
19. ultrasonic main shaft according to claim 1, which is characterized in that the body of rod is equipped with the perforation through its both ends Hole.
20. a kind of ultrasonic wave lathe, which is characterized in that including ultrasonic power and as claim 1-19 is described in any item Ultrasonic main shaft, the ultrasonic power are electrically connected with the coil of the wireless transmission component.
CN201910825512.4A 2019-08-29 2019-08-29 A kind of ultrasonic main shaft and the ultrasonic wave lathe including it Pending CN110394464A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20210213576A1 (en) * 2020-01-10 2021-07-15 Anderson Industrial Corp. Spindle device

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010207972A (en) * 2009-03-11 2010-09-24 Masahiko Jin Spindle device
KR20130005614U (en) * 2012-03-16 2013-09-25 쉐 홍 인더스트리알 코., 엘티디 Ultrasonic non-contact Electric Power Transmission processing devices
TWM557165U (en) * 2017-11-24 2018-03-21 Spintech Precision Machinery Co Ltd Electrical joint structure of machining spindle
TWM558670U (en) * 2017-11-24 2018-04-21 Spintech Precision Machinery Co Ltd Electrical conduction device of machining spindle
CN207508293U (en) * 2017-11-29 2018-06-19 旭泰精密机械股份有限公司 The device that electrically conducts of machining spindle
CN207857875U (en) * 2018-02-07 2018-09-14 西安帕沃辐电气工程有限公司 Rotary cutting machine ultrasonic chief axis
CN210435380U (en) * 2019-08-29 2020-05-01 汇专科技集团股份有限公司 Ultrasonic main shaft and ultrasonic machine tool comprising same

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010207972A (en) * 2009-03-11 2010-09-24 Masahiko Jin Spindle device
KR20130005614U (en) * 2012-03-16 2013-09-25 쉐 홍 인더스트리알 코., 엘티디 Ultrasonic non-contact Electric Power Transmission processing devices
TWM557165U (en) * 2017-11-24 2018-03-21 Spintech Precision Machinery Co Ltd Electrical joint structure of machining spindle
TWM558670U (en) * 2017-11-24 2018-04-21 Spintech Precision Machinery Co Ltd Electrical conduction device of machining spindle
CN207508293U (en) * 2017-11-29 2018-06-19 旭泰精密机械股份有限公司 The device that electrically conducts of machining spindle
CN207857875U (en) * 2018-02-07 2018-09-14 西安帕沃辐电气工程有限公司 Rotary cutting machine ultrasonic chief axis
CN210435380U (en) * 2019-08-29 2020-05-01 汇专科技集团股份有限公司 Ultrasonic main shaft and ultrasonic machine tool comprising same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20210213576A1 (en) * 2020-01-10 2021-07-15 Anderson Industrial Corp. Spindle device
US11618114B2 (en) * 2020-01-10 2023-04-04 Anderson Industrial Corp. Spindle device

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