CN210255072U - Processing mechanism with rotary saw cutting device - Google Patents

Processing mechanism with rotary saw cutting device Download PDF

Info

Publication number
CN210255072U
CN210255072U CN201921196722.3U CN201921196722U CN210255072U CN 210255072 U CN210255072 U CN 210255072U CN 201921196722 U CN201921196722 U CN 201921196722U CN 210255072 U CN210255072 U CN 210255072U
Authority
CN
China
Prior art keywords
motor
saw
saw bit
rotary
electrical machines
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.)
Active
Application number
CN201921196722.3U
Other languages
Chinese (zh)
Inventor
李爱军
洪强
吴永祯
刘文杰
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.)
Jiangsu Prudy Cnc Technology Co Ltd
Original Assignee
Jiangsu Prudy Cnc Technology 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 Jiangsu Prudy Cnc Technology Co Ltd filed Critical Jiangsu Prudy Cnc Technology Co Ltd
Priority to CN201921196722.3U priority Critical patent/CN210255072U/en
Application granted granted Critical
Publication of CN210255072U publication Critical patent/CN210255072U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Sawing (AREA)

Abstract

The utility model relates to a rotatory processingequipment who saw cuts device in area, include the stand and install the brill mill mechanism at the stand front side, bore mill mechanism and include the aircraft nose, saw cut mechanism is installed to one side of aircraft nose, saw cut mechanism includes the cylinder, the rotating electrical machines, saw bit motor and saw bit, the saw bit is installed on the output shaft of saw bit motor, the rotating electrical machines links to each other with the saw bit motor and can drive saw bit motor and saw bit synchronous rotation, the cylinder links to each other with the rotating electrical machines and can drive the rotating electrical machines, saw bit motor and saw bit synchronous lift. The utility model discloses can realize drilling, milling, attack tooth, saw cutting etc. multiple processing to the work piece at same platform equipment, realize the multi-functional operation of equipment, reduce the clamping number of times of work piece processing, improve machining efficiency.

Description

Processing mechanism with rotary saw cutting device
Technical Field
The utility model belongs to the technical field of the processing, concretely relates to rotatory processing agency who saw cuts device in area.
Background
The traditional machining center mechanism only can realize the machining steps of drilling, milling, tapping and the like of a workpiece, when the workpiece is sawed, the workpiece needs to be taken down from the machining mechanism after the steps are finished, and then the workpiece is placed into other sawing equipment again for sawing operation, so that the one-time machining operation of the workpiece cannot be realized on the machining mechanism, the complexity of workpiece machining is directly increased, and the machining efficiency is influenced.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a take rotatory processing agency who saw cuts device to solve the unable problem of saw cutting the operation that saw cuts of processing agency.
The utility model discloses a take rotatory device of saw cutting's processing agency is realized like this:
the utility model provides a take rotatory processing agency who saw cuts device, includes the stand and installs the brill of stand front side mills the mechanism, it includes the aircraft nose to bore mills the mechanism, saw cutting mechanism is installed to one side of aircraft nose, saw cutting mechanism includes cylinder, rotating electrical machines, saw bit motor and saw bit, the saw bit is installed on the output shaft of saw bit motor, rotating electrical machines with the saw bit motor links to each other and can drive saw bit motor and saw bit synchronous rotation, the cylinder with the rotating electrical machines links to each other and can drive rotating electrical machines, saw bit motor and saw bit synchronous lift.
Further, saw cutting mechanism still including installing the support of aircraft nose one side, the cylinder is installed the top of support, the rotating electrical machines passes through the slip subassembly and installs the front side of support.
Furthermore, the sliding assembly comprises a sliding block support arranged on the front side of the support and a sliding plate arranged opposite to the sliding block support, a sliding block is arranged on the sliding block support, a guide rail matched with the sliding block is arranged on the side face, facing the sliding block support, of the sliding plate, and a piston rod of the air cylinder is connected to the top of the sliding plate.
Furthermore, an air pressure buffer is installed on one side of the support, and a collision block located at the top of the air pressure buffer is installed on one side of the sliding plate.
Furthermore, the output end of the rotating motor is connected with the saw blade motor through a rotating seat, and a saw blade cover covering the upper part of the saw blade is installed on one side of the rotating seat facing the saw blade.
Further, the drilling and milling mechanism further comprises a tool magazine arranged on the front side of the machine head through a tool magazine fixing frame, and a machining spindle arranged on the machine head, wherein a spindle motor is arranged at the top of the machining spindle.
Furthermore, the top of the tool magazine is installed on a tool magazine fixing frame through a rotating shaft, a guide plate is arranged on one side of the machining main shaft, and the tool magazine can rotate around the rotating shaft and is attached to the front side edge of the guide plate towards or away from the machining main shaft.
Further, screw rod I is installed to the front side of stand, the top of screw rod I is connected with Z axle motor, the aircraft nose is installed on screw rod I.
Furthermore, the stand is installed on a screw rod II, and the rear end of the screw rod II is connected with a Y-axis motor.
Furthermore, an X-axis motor is arranged on one side of the upright post mounting sawing mechanism.
After the technical scheme is adopted, the utility model discloses the beneficial effect who has does:
(1) the utility model can not only realize the operations of drilling, milling and tapping of the workpiece through the drilling and milling mechanism, but also can utilize the sawing and cutting mechanism to saw and cut the workpiece, thereby realizing the multifunctional operation of the workpiece in the processing mechanism, reducing the clamping times of workpiece processing and improving the processing efficiency;
(2) the utility model provides a saw cutting mechanism is owing to be provided with cylinder and rotating electrical machines to can drive the saw bit and realize the adjustment of height and angle, thereby realize and bore the accurate cooperation of milling the mechanism, and can adapt to the needs that multiple specification work piece saw cut, enlarge its application scope.
Drawings
The present invention will be further explained with reference to the drawings and examples.
FIG. 1 is a block diagram of a processing mechanism with a rotary sawing device according to a preferred embodiment of the present invention;
FIG. 2 is a block diagram of a processing mechanism with a rotary sawing device according to a preferred embodiment of the present invention;
FIG. 3 is a block diagram of a processing mechanism with a rotary sawing device according to a preferred embodiment of the present invention;
FIG. 4 is a block diagram of the processing mechanism with a rotary sawing device according to the preferred embodiment of the present invention without a protective cover;
FIG. 5 is a block diagram of a saw mechanism of a processing mechanism with a rotary sawing device according to a preferred embodiment of the present invention;
FIG. 6 is a block diagram of the saw mechanism of the processing mechanism with a rotary sawing device according to the preferred embodiment of the present invention;
in the figure: the device comprises an upright post 1, a screw I11, a Z-axis motor 12, a screw II 13, a Y-axis motor 14, an X-axis sliding plate 15, an X-axis motor 16, a gear 17, an X-axis sliding block 18, a protective cover 19, a sawing mechanism 2, an air cylinder 21, a rotating motor 22, a saw blade motor 23, a saw blade 24, a support 25, a sliding block support 26, a sliding plate 27, a sliding block 28, a guide rail 29, an air pressure buffer 210, a collision block 211, a rotating seat 212, a saw blade cover 213, a drilling and milling mechanism 3, a tool magazine fixing frame 31, a tool magazine 32, a machining spindle 33, a spindle motor 34, a rotating shaft 35, a guide plate 36 and a.
Detailed Description
To make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the drawings of the embodiments of the present invention are combined to clearly and completely describe the technical solutions of the embodiments of the present invention, and obviously, the described embodiments are some embodiments of the present invention, not all embodiments.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1-6, a processing mechanism with a rotary sawing device comprises an upright post 1 and a drilling and milling mechanism 3 installed on the front side of the upright post 1, wherein the drilling and milling mechanism 3 comprises a machine head 37, a machine head 37 sawing mechanism 2 is installed on one side of the machine head 37, the sawing mechanism 2 comprises a cylinder 21, a rotary motor 22, a saw blade motor 23 and a saw blade 24, the saw blade 22 is installed on an output shaft of the saw blade motor 23, the rotary motor 22 is connected with the saw blade motor 23 and can drive the saw blade motor 23 and the saw blade 24 to synchronously rotate, and the cylinder 21 is connected with the rotary motor 22 and can drive the rotary motor 22, the saw blade motor 23 and the saw blade 24 to synchronously lift.
The cylinder 21 is arranged to adjust the height of the saw blade 24, the rotating motor 22 is arranged to adjust the angle of the saw blade 24 according to the requirement of the workpiece to be cut, and the saw blade motor 23 is used to drive the saw blade 24 to rotate to cut the workpiece.
In order to facilitate the installation of the saw mechanism 2 on the machine head 37, the saw mechanism 2 further comprises a bracket 25 installed on one side of the machine head 37, the air cylinder 21 is installed above the bracket 25, and the rotating motor 22 is installed on the front side of the bracket 25 through a sliding assembly.
Specifically, the cylinder 21, the rotating motor 22 and the saw blade motor 23 are sequentially arranged from top to bottom, and the arrangement of the sliding assembly can ensure the stability of the rotating motor 22, the saw blade motor 23 and the saw blade 24 during up-down movement.
The sliding assembly comprises a sliding block support 26 arranged on the front side of the bracket 25 and a sliding plate 27 arranged opposite to the sliding block support 26, a sliding block 28 is arranged on the sliding block support 26, a guide rail 29 matched with the sliding block 28 is arranged on the side surface of the sliding plate 27 facing the sliding block support 26, and a piston rod of the air cylinder 21 is connected to the top of the sliding plate 27.
When the cylinder 21 drives the rotating motor 22 to ascend and descend, the guide rail 29 can move up and down in the slider 28, so that the ascending and descending stability of the rotating motor 22 is ensured.
An air buffer 210 is installed at one side of the bracket 25, and a striking block 211 located at the top of the air buffer 210 is installed at one side of the sliding plate 27. In the process of moving down the rotating motor 22, the saw blade motor 23 and the saw blade 24, due to the gravity of the rotating motor, the saw blade motor 23 and the saw blade 24, the rotating motor 22, the saw blade motor 23 and the saw blade 24 can move down quickly, and at the moment, the collision block 211 can collide with the air pressure buffer 210 to play a role in buffering, so that the rotating motor 22, the saw blade motor 23 and the saw blade 24 are slowed down to a certain extent.
The output end of the rotating motor 22 is connected with the blade motor 23 through a rotating base 212, and a blade cover 213 covering the upper side of the saw blade 24 is installed at one side of the rotating base 212 facing the saw blade 24.
The rotating motor 22 is connected with the blade motor 23 through the reducer and the rotating base 212, the rotating base 212 can ensure the stability of the connection between the rotating base and the blade motor, and the blade cover 213 can prevent the random splashing of the debris generated in the cutting process of the blade 24.
In order to realize the machining of drilling, milling, tapping and the like on the workpiece, the drilling and milling mechanism 3 further comprises a tool magazine 32 mounted on the front side of the machine head 37 by using a tool magazine fixing frame 31, and a machining spindle 33 arranged on the machine head 37, and a spindle motor 34 is mounted on the top of the machining spindle 33.
The tool magazine 32 can be arranged to automatically change tools according to the requirement of required processing, the spindle motor 34 can drive the processing spindle 33 to rotate, and the lower end of the processing spindle 33 is used for installing tools to achieve drilling and milling processing.
Preferably, the tool magazine 32 may be a flying saucer type tool magazine, which can realize automatic replacement of the tool.
Because the processing mode and the requirement of the main shaft to be processed are different, the tool needs to be replaced at any time, and in order to facilitate the replacement of the tool, the top of the tool magazine 32 is mounted on the tool magazine fixing frame 31 through a rotating shaft 35, and a guide plate 36 is arranged on one side of the processing main shaft 33, and the tool magazine 32 can rotate around the rotating shaft 35 and is attached to the front side edge of the guide plate 36 towards or away from the processing main shaft 33.
When the tool is changed, the machining spindle 33 moves up under the driving of the machine head 37, in the process of moving up, the tool magazine 32 rotates through the rotating shaft 35 and attached to the side edge of the guide plate 36, firstly rotates in the direction away from the machining spindle 33, then rotates in the direction towards the machining spindle 33, after the lower end of the machining spindle 33 is coaxial with the tool magazine 32, the tool magazine 32 performs tool changing operation, after the tool changing is completed, the machining spindle 33 can move down under the driving of the machine head 2, and the tool magazine 32 is attached to the guide plate 36 and reset.
In order to drive the machine head 37 to move in the Z-axis direction and then realize the replacement of a tool changing or machining mode, a screw I11 is installed on the front side of the upright post 1, a Z-axis motor 12 is connected to the top of the screw I11, and the machine head 37 is installed on the screw I11.
The screw I11 is driven to rotate by the rotation of the Z-axis motor 12, so that the machine head 37 moves up and down, and the action of tool changing is realized. And when in sawing, the saw blade 24 can be separated from the workpiece by lifting the machine head 37, so that the sawing is convenient.
In order to realize the Y-axis movement of the upright column, the upright column 1 is arranged on a screw II 13, and the rear end of the screw II 13 is connected with a Y-axis motor 14.
Specifically, the screw II 13 and the Y-axis motor 14 are installed on the X-axis sliding plate 15, the Y-axis motor 14 is installed at the rear end of the screw II 13, and the rotation of the screw II 13 is driven through the rotation of the Y-axis motor 14, so that the vertical column 1 and a structure installed on the vertical column 1 move in the Y-axis direction.
In order to realize the movement of the whole processing mechanism in the X-axis direction, an X-axis motor 16 is arranged on one side of the upright post 1.
The output end of the X-axis motor 16 is downward connected with a gear 17 which can be meshed with a rack in the X-axis direction on the lathe bed of the machining center, so that the X-axis direction movement of the whole machining mechanism is realized.
In addition, in order to ensure the smoothness and stability of the movement of the processing mechanism in the X axial direction, an X axial sliding block 18 matched with an X axial guide rail on the machine body is arranged at the bottom of the X axial sliding plate.
Preferably, the X-axis motor 16 and the Y-axis motor 14 are also provided with a protective cover 19, respectively, for protecting the movement.
When a workpiece is machined, the workpiece is placed on a workbench on the front side of the machine head 37, for example, the workpiece is first drilled and milled, the machine head 37 is driven by the Z-axis motor 12 to move downwards to enable the cutter to contact the workpiece, at this time, the height of the saw blade 24 needs to be adjusted through retraction of the piston rod of the air cylinder 21 to enable the saw blade to be separated from the workpiece, and then the spindle motor 34 rotates to drive the cutter to rotate to perform operations such as drilling, milling or tapping. When the tool needs to be changed, the spindle motor 34 is stopped, the Z-axis motor 12 is used for driving the machine head 37 to move upwards, the lower end of the machining spindle 33 is coaxial with the tool magazine 32, the tool is further changed, and then the machining spindle 33 moves downwards and resets to continue machining operation.
After drilling and milling are completed, the Z-axis motor 12 drives the screw I11 to rotate so as to realize the lifting of the cutter, so that the cutter is separated from a workpiece, then the extension of a piston rod of the air cylinder 21 is utilized to drive the saw blade 24 to move downwards so as to be contacted with the workpiece, the angle of the saw blade is adjusted by utilizing the rotating motor 22 according to needs, and finally the saw blade motor 23 is started so as to saw the workpiece, so that the workpiece can be processed in a processing center, and the processing efficiency of the workpiece is improved.
In addition, when some tools are large, the saw blade 24 can be rotated away from the tool magazine 32 by the rotating motor 22 during replacement, so as to prevent the tool replacement from being affected.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (10)

1. The utility model provides a take processing agency of rotatory saw cutting device, its characterized in that includes stand (1) and installs brill milling mechanism (3) of stand (1) front side, brill milling mechanism (3) include aircraft nose (37), saw cutting mechanism (2) are installed to one side of aircraft nose (37), saw cutting mechanism (2) are including cylinder (21), rotating electrical machines (22), saw bit motor (23) and saw bit (24), saw bit (24) are installed on the output shaft of saw bit motor (23), rotating electrical machines (22) with saw bit motor (23) link to each other and can drive saw bit motor (23) and saw bit (24) synchronous rotation, cylinder (21) with rotating electrical machines (22) link to each other and can drive rotating electrical machines (22), saw bit motor (23) and saw bit (24) synchronous lift.
2. The processing mechanism with the rotary sawing device according to claim 1, characterized in that the sawing mechanism (2) further comprises a bracket (25) mounted on one side of the head (37), the cylinder (21) is mounted on top of the bracket (25), and the rotary motor (22) is mounted on the front side of the bracket (25) through a sliding assembly.
3. The processing mechanism with the rotary sawing device according to claim 2, characterized in that the sliding assembly comprises a slider support (26) mounted on the front side of the support (25) and a sliding plate (27) arranged opposite to the slider support (26), a slider (28) is mounted on the slider support (26), a guide rail (29) matched with the slider (28) is arranged on the side of the sliding plate (27) facing the slider support (26), and the piston rod of the air cylinder (21) is connected to the top of the sliding plate (27).
4. The processing mechanism with the rotary sawing device according to claim 3, characterized in that a pneumatic buffer (210) is mounted on one side of the support (25) and a striking block (211) is mounted on one side of the sliding plate (27) on top of the pneumatic buffer (210).
5. The processing mechanism with the rotary sawing device according to claim 1, characterized in that the output of the rotary motor (22) is connected to a saw blade motor (23) through a rotary base (212), and a saw blade cover (213) covering the saw blade (24) is mounted on the side of the rotary base (212) facing the saw blade (24).
6. The machining mechanism with the rotary sawing device according to claim 1, characterized in that the drilling and milling mechanism (3) further comprises a tool magazine (32) mounted on the front side of the machine head (37) by means of a tool magazine holder (31), and a machining spindle (33) arranged on the machine head (37), and a spindle motor (34) is mounted on top of the machining spindle (33).
7. The machining mechanism with the rotary sawing device according to claim 6, characterized in that the top of the tool magazine (32) is mounted on a tool magazine holder (31) through a rotating shaft (35), and a guide plate (36) is arranged on one side of the machining spindle (33), and the tool magazine (32) can rotate around the rotating shaft (35) and abuts against the front side edge of the guide plate (36) towards or away from the machining spindle (33).
8. The processing mechanism with the rotary sawing device according to claim 1, characterized in that a screw I (11) is installed on the front side of the upright post (1), a Z-axis motor (12) is connected to the top of the screw I (11), and the machine head 2 is installed on the screw I (11).
9. The processing mechanism with the rotary sawing device according to claim 1, characterized in that the upright (1) is mounted on a screw II (13), and the rear end of the screw II (13) is connected with a Y-axis motor (14).
10. The processing mechanism with the rotary sawing device according to claim 1, characterized in that the side of the column (1) where the sawing mechanism (2) is mounted is provided with an X-axis motor (16).
CN201921196722.3U 2019-07-26 2019-07-26 Processing mechanism with rotary saw cutting device Active CN210255072U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921196722.3U CN210255072U (en) 2019-07-26 2019-07-26 Processing mechanism with rotary saw cutting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921196722.3U CN210255072U (en) 2019-07-26 2019-07-26 Processing mechanism with rotary saw cutting device

Publications (1)

Publication Number Publication Date
CN210255072U true CN210255072U (en) 2020-04-07

Family

ID=70014642

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921196722.3U Active CN210255072U (en) 2019-07-26 2019-07-26 Processing mechanism with rotary saw cutting device

Country Status (1)

Country Link
CN (1) CN210255072U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114102762A (en) * 2021-01-12 2022-03-01 威海艺木包装有限公司 Grooving and cutting integrated numerical control engraving machine and working method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114102762A (en) * 2021-01-12 2022-03-01 威海艺木包装有限公司 Grooving and cutting integrated numerical control engraving machine and working method thereof

Similar Documents

Publication Publication Date Title
CN101961836B (en) Numerically-controlled gantry type vertical and horizontal combined machine tool
CN103350343B (en) The numerical control gantry vertical that a kind of tool magazine and main shaft are compounded in saddle crouches Compositions of metal-working machines
CN211072629U (en) Double-end drilling and milling machine tool
CN210255073U (en) Machining center with rotary saw cutting device
CN110293434B (en) Multi-axis milling numerical control machine tool
CN202877870U (en) Integrated machine tool with lathing, milling and drilling functions
CN106925798A (en) A machining center with a buffer function spindle and its machining method
CN210255072U (en) Processing mechanism with rotary saw cutting device
CN220113508U (en) Horizontal wood working center
CN202106430U (en) Timber milling processing center
CN104842223A (en) Gantry type digital controlled lathe
CN211464875U (en) Novel end face boring and milling machine
CN219153186U (en) Triaxial machining device for integrally forming fingerboard of musical instrument
CN219151589U (en) A tool holder structure of ultra-precision center-type CNC machine tool
CN218254068U (en) Column type exchange platform machining center machine
CN206732151U (en) A kind of machining center with buffer function spindle
CN111001859A (en) Controllable sliding structure of planer type milling machine
CN112296675A (en) Machining center with rotary saw cutting device
CN215967391U (en) Drilling and tapping numerical control machine tool
CN215470071U (en) Integrated deburring and edging equipment
CN113211656B (en) Automatic grooving machine for wall surface
CN214291889U (en) Triplex milling integrated processing structure
CN113348743B (en) Numerical control machine tool for machining discontinuous bosses on inner profile of cabin
CN216266856U (en) Multifunctional processing module for numerical control engraving machine
CN115582564A (en) Double-column vertical lathe

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant