CN213136116U - Numerical control workpiece burr device - Google Patents

Numerical control workpiece burr device Download PDF

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Publication number
CN213136116U
CN213136116U CN202020967160.4U CN202020967160U CN213136116U CN 213136116 U CN213136116 U CN 213136116U CN 202020967160 U CN202020967160 U CN 202020967160U CN 213136116 U CN213136116 U CN 213136116U
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CN
China
Prior art keywords
column
rotating
connecting column
plate
loading board
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Expired - Fee Related
Application number
CN202020967160.4U
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Chinese (zh)
Inventor
刘德果
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Shanghai Yipeng Industrial Co ltd
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Shanghai Yipeng Industrial Co ltd
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Priority to CN202020967160.4U priority Critical patent/CN213136116U/en
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Publication of CN213136116U publication Critical patent/CN213136116U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Grinding And Polishing Of Tertiary Curved Surfaces And Surfaces With Complex Shapes (AREA)

Abstract

The utility model provides a numerical control work piece burr device, including adjustment mechanism, burring mechanism, deburring mechanism is installed to the lower extreme on adjustment mechanism's the middle part, and adjustment mechanism is fixed to be located the setting on the workstation, and adjustment mechanism includes: go up the loading board, spliced pole, No. two spliced poles, No. three spliced poles and loading board down and collect the frame, go up the downside at loading board both ends and all fix and be provided with a spliced pole, the lower extreme of a spliced pole rotates and cup joints and set up first No. two spliced poles simultaneously, the lower extreme of No. two spliced poles rotates and cup joints and be provided with No. three spliced poles, the utility model discloses in solve current burring device and only carried out the single altitude mixture control of roller of polishing, the effect of polishing that makes it reach is not good to it is not convenient enough when polishing to some small numerical control work pieces of fragmentary, and the burr of polishing out flies the technical problem of hardly clearing up everywhere.

Description

Numerical control workpiece burr device
Technical Field
The utility model relates to a numerical control work piece technical field, more specifically say, relate to a numerical control work piece burr device.
Background
The numerical control machine tool is a digital control machine tool for short, and is an automatic machine tool provided with a program control system, and the machine tool can act and machine parts according to a programmed program.
Based on the above description, a utility model patent with application number of CN201920765328.0 is searched, which relates to a workpiece deburring device used on a numerically controlled lathe, comprising a mounting plate, wherein a moving block is arranged above the mounting plate, a limiting hole is arranged at the right part of the moving block, and a limiting rod is nested inside the limiting hole. Through retrieval, the grinding roller is driven by a movable block, a threaded hole, a threaded rod, a telescopic outer rod, a telescopic inner rod, an adjusting bolt and a motor to remove burrs of a workpiece, so that the vertical height of the grinding roller can be adjusted, the transverse extension length of the grinding roller can be adjusted quickly and conveniently, the labor intensity of workers is reduced, the processing time is shortened, and the workpiece processing efficiency is improved;
after retrieval and analysis, the numerical control lathe in the prior art only carries out the single altitude mixture control of roller of polishing to the mechanism of work piece processing, makes the polishing effect that it reached not good to it is not convenient enough when polishing to some small-size numerical control work pieces of fragmentary, and the burr of polishing out flies hardly to clear up the scheduling problem everywhere, consequently, needs to provide a numerical control work piece burr device again.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a numerical control work piece burr device to only having carried out the single altitude mixture control of roller of polishing in solving above-mentioned patent, the effect of polishing that makes it reach is not good, and it is not convenient enough when polishing to some small numerical control work pieces of fragmentary, and the burr of polishing out flies the technical problem of hardly clearing up everywhere.
The utility model relates to a purpose of numerical control work piece burr device is reached by following specific technological means:
the utility model provides a numerical control work piece burr device, includes adjustment mechanism, burring mechanism is installed to the lower extreme on adjustment mechanism's the middle part, adjustment mechanism fixes to be located the setting on the workstation.
Preferably, the adjusting mechanism includes: go up loading board, spliced pole, No. two spliced poles, No. three spliced poles and lower loading board and collect the frame, the downside of going up the loading board both ends is all fixed and is provided with the spliced pole No. one, and the lower extreme of spliced pole rotates simultaneously and cup joints and sets up first No. two spliced poles, and the lower extreme of No. two spliced poles rotates and cup joints and is provided with the spliced pole No. three, and the lower extreme of No. three spliced poles is all fixed and is provided with down the loading board, and the fixed collection frame that is provided with in middle part of.
Preferably, the diameters of the upper bearing plate and the lower bearing plate are all consistent, the inner walls of the first connecting column and the third connecting column are provided with threads, the outer wall of the second connecting column is provided with threads corresponding to the inner walls of the first connecting column and the third connecting column, the diameters of the first connecting column and the third connecting column are consistent, and the diameter of the second connecting column is smaller than the diameters of the first connecting column and the third connecting column.
Preferably, the deburring mechanism includes: the steel wire brush bearing plate comprises a first rotating column, a rotating plate, a friction plate, a second rotating column, a moving rod, a rolling bead, a sleeve column and a steel wire brush, wherein the first rotating column penetrates through the middle of the lower end of the upper bearing plate, the sleeve column is sleeved at the lower end of the first rotating column, the rotating plate is fixedly arranged at the lower end of the sleeve column, the friction plate is fixedly arranged at the lower end of the rotating plate, and the steel wire brush is uniformly and fixedly arranged at the lower end of the friction plate.
Preferably, No. two rotating columns penetrate through the middle of the upper end of the lower bearing plate, a deburring mechanism consistent with one rotating column is arranged at the top of each rotating column, moving rods are fixedly arranged at the two ends of the lower side of the rotating plate on each rotating column, and rolling balls are arranged at the lower ends of the moving rods in a rolling mode.
Preferably, the other end that a rotation post and No. two rotation posts all is connected with the output of motor, motor and outside electric connection simultaneously, and the outer wall that a dwang and No. two dwangs are close to the one end of cover post all is provided with the screw thread, and its cover post inner wall that corresponds all is provided with the screw thread rather than corresponding.
Preferably, the friction plates at the upper end and the lower end are all arranged in a hollow-out shape, the rotating plates corresponding to the upper ends of the second rotating columns are arranged in a hollow-out through shape and correspond to the hollow-out shape of the friction plates, the rolling balls at the lower ends of the moving rods are located at the two ends of the lower end of the collecting frame and correspond to the collecting frame in a sliding mode, and the second rotating columns are located in the middle of the collecting frame and penetrate through the middle of the lower bearing plate.
Has the advantages that:
1. this practicality makes it rotate under the screw thread that a spliced pole and No. three spliced poles correspond through clockwise rotation spliced pole No. two to in the upper and lower end that reaches No. two spliced poles enters into spliced pole and No. three spliced poles gradually, just reach shortening of distance between a loading board and No. two loading boards and be close to, play the effect of adjusting the distance between the deburring mechanism of upper and lower extreme.
2. And the numerical control workpiece is arranged between the steel wire brushes at the upper end and the lower end, and the friction plates and the steel wire brushes of the rotating plates which correspond to each other are driven under the action of the rotating first rotating column and the rotating second rotating column, so that the numerical control workpiece is subjected to friction deburring.
3. And secondly, removing burrs on the numerical control workpiece, entering a hollow through part of the rotating plate from a hollow part of the friction plate on the second rotating column, and finally entering a collecting frame to achieve the effect of collecting the removed burrs.
Drawings
Fig. 1 is a schematic view of the whole internal structure of the present invention.
Fig. 2 is a schematic structural view of the rotating column and the rotating plate of the present invention.
Fig. 3 is a schematic view of the structure of the first, second and third connecting columns of the present invention.
Fig. 4 is a schematic structural view of the friction plate and the wire brush of the present invention.
In fig. 1 to 4, the correspondence between the component names and the reference numbers is: the device comprises an adjusting mechanism-1, an upper bearing plate-101, a first connecting column-102, a second connecting column-103, a third connecting column-104, a lower bearing plate-105, a collecting frame-106, a deburring mechanism-2, a first rotating column-201, a rotating plate-202, a friction plate-203, a second rotating column-204, a moving rod-205, a rolling ball-206, a sleeve column-207 and a steel wire brush-208.
Detailed Description
Example (b):
as shown in figures 1 to 4: the utility model provides a numerical control work piece burr device, includes adjustment mechanism 1, burring mechanism 2, and deburring mechanism 2 is installed to the lower extreme in the middle part of adjustment mechanism 1, and adjustment mechanism 1 is fixed to be located the setting on the workstation.
Wherein, adjustment mechanism 1 includes: go up loading board 101, a spliced pole 102, No. two spliced poles 103, No. three spliced poles 104 and lower loading board 105 and collection frame 106, the downside of going up loading board 101 both ends is all fixed and is provided with spliced pole 102 No. one, the lower extreme of spliced pole 102 rotates to cup joint and sets up first No. two spliced poles 103 simultaneously, the lower extreme of No. two spliced poles 103 rotates to cup joint and is provided with No. three spliced poles 104, and the lower extreme of No. three spliced poles 104 is all fixed and is provided with lower loading board 105, the fixed collection frame 106 that is provided with in middle part of its loading board 105 down, more convenient stability when adjusting mechanism 1's setting is convenient for it to install on the workstation, make its whole more stable when carrying out work at adjusting.
Wherein, go up loading board 101 and the diameter of loading board 105 all unanimous, the inner wall of a spliced pole 102 and No. three spliced pole 104 all is provided with the screw thread simultaneously, and the outer wall of No. two spliced poles 103 all is provided with the screw thread that corresponds with the inner wall of a spliced pole 102 and No. three spliced pole 104, the diameter of a spliced pole 102 and No. three spliced pole 104 is unanimous, and the diameter of No. two spliced poles 103 is less than the diameter of a spliced pole 101 and No. three spliced pole 104, it can adjust No. two spliced poles 103 under the screw thread effect that it corresponds when making its not equidirectional rotation No. two spliced poles 103 makes the distance adjustment effect between loading board 101 and the loading board 105 down.
Wherein, burring mechanism 2 includes: the first rotating column 201, the rotating plate 202, the friction plate 203, the second rotating column 204, the moving rod 205, the rolling ball 206, the sleeve column 207 and the steel wire brush 208, the first rotating column 201 penetrates through the middle part of the lower end of the upper bearing plate 101, the sleeve column 207 is sleeved at the lower end of the first rotating column 201, the rotating plate 202 is fixedly arranged at the lower end of the sleeve column 207, the friction plate 203 is fixedly arranged at the lower end of the rotating plate 202, the steel wire brush 208 is uniformly and fixedly arranged at the lower end of the friction plate 203, and therefore the digital control workpiece can be better deburred under the action of the friction plate 203 and the steel wire brush 208, and the digital control workpiece can be more conveniently and cleanly removed.
The middle part of the upper end of the lower bearing plate 105 penetrates through the second rotating column 204, meanwhile, the top of the second rotating column 204 is provided with the deburring mechanism 2 consistent with the first rotating column 201, the two ends of the lower side of the rotating plate 202 on the second rotating column 204 are respectively fixedly provided with the moving rod 205, the lower end of the moving rod 205 is respectively provided with the rolling ball 206 in a rolling manner, and the friction plate 203 and the steel wire brush at the upper end and the lower end of the moving rod are enabled to be close to the numerical control workpiece needing deburring together, so that the deburring is more clean and effective.
Wherein, the other end of a rotation column 201 and a second rotation column 204 all is connected with the output of motor, motor and outside electric connection simultaneously, and the outer wall that a rotation column 201 and a second rotation column 204 are close to the one end of cover post 207 all is provided with the screw thread, its cover post 207 inner wall that corresponds all is provided with the screw thread rather than corresponding, make its a rotation column 201 and a second rotation column 204 drive it together to rotate under the effect of motor, alright drive the rotor plate 202 and the friction plate 203 that the lower extreme corresponds together to rotate under a rotation column 201 and a second rotation column 204 pivoted effect, make its convenience more effective when getting rid of the burr on the numerical control work piece.
Wherein, the friction plate 203 at upper and lower both ends all sets up to the fretwork form, the rotor plate 202 that No. two rotation columns 204 upper ends correspond sets up to hollow through form and its friction plate 203's fretwork form and corresponds simultaneously, and the rolling pearl 206 of carriage release lever 205 lower extreme is located lower extreme both ends and collects frame 106 and slides and correspond, its No. two rotation columns 204 are located and collect frame 106 middle part and lower loading board 105 middle part and run through the setting, make the burr on the work piece that its rotation was got rid of enter into the hollow through form on the rotor plate 202 until entering into the collection frame 106 that the lower extreme corresponds from the fretwork form on the friction plate 203 on No. two rotation columns 204, thereby reach the burr collection effect of getting rid of.
The working principle is as follows: firstly, the adjusting mechanism 1 is stably installed on a workbench, a numerical control workpiece needing to remove burrs is placed in the middle of the steel wire brush 208 between the friction plates 203, then the distance between the friction plates 203 can be properly adjusted according to the distance between the upper and lower friction plates 203, at the moment, the second connecting column 103 can be rotated clockwise to enable the upper end and the lower end of the second connecting column 103 to gradually enter the first connecting column 102 and the third connecting column 104 under corresponding threads, so that the distance between the upper bearing plate 101 and the lower bearing plate 105 is reduced, then the second connecting column 103 can be rotated counterclockwise to enable the first connecting column 102 and the third connecting column 104 to gradually separate from the second connecting column 103 under the action of the threads, the effect of adjusting the distance between the upper bearing plate 101 and the lower bearing plate 105 is improved, and the workpiece is more convenient and effective when the burrs are removed, after the distance between the two rotating columns is adjusted, the power can be switched on to start the motors of the rotating columns, the corresponding first rotating column 201 and the corresponding second rotating column 204 can drive the rotating plate 202, the friction plate 203 and the steel wire brush 208 which correspond to each other to rotate, so that burrs on the workpiece can be quickly ground and fall off, the fallen burrs can enter the hollow through position on the rotating plate 202 from the hollow position on the friction plate 203 on the second rotating column 204 until the burrs enter the collecting frame 106 at the lower end, the removed burr collecting effect is achieved, however, the rotating plate 202 at the upper end of the second rotating column 204 can drive the moving rods 205 at the two sides of the lower end to rotate in the collecting frame 106 under the action of the rolling balls 206 while rotating, the rotating plate 202 and the friction plate 203 are enabled to integrally rotate more stably, and no deviation is generated.

Claims (6)

1. The utility model provides a numerical control work piece burr device, includes adjustment mechanism (1), burring mechanism (2), its characterized in that: deburring mechanism (2) are installed to the lower extreme on the middle part of adjustment mechanism (1), adjustment mechanism (1) is fixed to be located the setting on the workstation, adjustment mechanism (1) includes: go up loading board (101), spliced pole (102), No. two spliced poles (103), No. three spliced pole (104) and lower loading board (105) and collect frame (106), the downside of going up loading board (101) both ends all is fixed and is provided with spliced pole (102) No. one, and the lower extreme of spliced pole (102) rotates simultaneously and cup joints and sets up first No. two spliced poles (103), and the lower extreme of No. two spliced poles (103) rotates and cup joints and is provided with No. three spliced pole (104), and the lower extreme of No. three spliced pole (104) all fixes and is provided with down loading board (105), and its middle part of loading board (105) is fixed and is provided with collects frame (106) down.
2. The numerically controlled workpiece deburring apparatus of claim 1, wherein: the diameter of the upper bearing plate (101) is consistent with that of the lower bearing plate (105), the inner walls of the first connecting column (102) and the third connecting column (104) are provided with threads, the outer wall of the second connecting column (103) is provided with threads corresponding to the inner walls of the first connecting column (102) and the third connecting column (104), the diameters of the first connecting column (102) and the third connecting column (104) are consistent, and the diameter of the second connecting column (103) is smaller than those of the first connecting column (102) and the third connecting column (104).
3. The numerically controlled workpiece deburring apparatus of claim 1, wherein: the deburring mechanism (2) comprises: the steel wire brush bearing plate comprises a first rotating column (201), a rotating plate (202), a friction plate (203), a second rotating column (204), a moving rod (205), a rolling bead (206), a sleeve column (207) and a steel wire brush (208), wherein the first rotating column (201) penetrates through the middle of the lower end of an upper bearing plate (101), the sleeve column (207) is sleeved at the lower end of the first rotating column (201), the rotating plate (202) is fixedly arranged at the lower end of the sleeve column (207), the friction plate (203) is fixedly arranged at the lower end of the rotating plate (202), and the steel wire brush (208) is uniformly and fixedly arranged at the lower end of the friction plate (203).
4. The numerically controlled workpiece deburring apparatus of claim 1, wherein: a second rotating column (204) penetrates through the middle of the upper end of the lower bearing plate (105), a deburring mechanism (2) consistent with the first rotating column (201) is arranged at the top of the second rotating column (204), moving rods (205) are fixedly arranged at two ends of the lower side of a rotating plate (202) on the second rotating column (204), and rolling balls (206) are arranged at the lower ends of the moving rods (205) in a rolling mode.
5. The numerical control workpiece deburring device of any one of claims 3 or 4, wherein: the other end of a rotating column (201) and a second rotating column (204) is connected with the output end of the motor, the motor is electrically connected with the outside, the outer wall of one end, close to the sleeve column (207), of the first rotating column (201) and the second rotating column (204) is provided with threads, and the inner wall of the sleeve column (207) corresponding to the outer wall is provided with threads corresponding to the threads.
6. The numerically controlled workpiece deburring apparatus of claim 3, wherein: the friction plates (203) at the upper end and the lower end are all arranged in a hollow-out mode, the rotating plates (202) corresponding to the upper ends of the second rotating columns (204) are arranged in a hollow through mode and correspond to the friction plates (203), the rolling balls (206) at the lower ends of the moving rods (205) are located in the collecting frames (106) at the two ends of the lower end and correspond to the sliding balls in the collecting frames, and the second rotating columns (204) are located in the middle of the collecting frames (106) and penetrate through the middle of the lower bearing plate (105).
CN202020967160.4U 2020-06-01 2020-06-01 Numerical control workpiece burr device Expired - Fee Related CN213136116U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020967160.4U CN213136116U (en) 2020-06-01 2020-06-01 Numerical control workpiece burr device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020967160.4U CN213136116U (en) 2020-06-01 2020-06-01 Numerical control workpiece burr device

Publications (1)

Publication Number Publication Date
CN213136116U true CN213136116U (en) 2021-05-07

Family

ID=75724157

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020967160.4U Expired - Fee Related CN213136116U (en) 2020-06-01 2020-06-01 Numerical control workpiece burr device

Country Status (1)

Country Link
CN (1) CN213136116U (en)

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Granted publication date: 20210507