CN212885298U - Milling device with cleaning mechanism - Google Patents

Milling device with cleaning mechanism Download PDF

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Publication number
CN212885298U
CN212885298U CN202021746698.9U CN202021746698U CN212885298U CN 212885298 U CN212885298 U CN 212885298U CN 202021746698 U CN202021746698 U CN 202021746698U CN 212885298 U CN212885298 U CN 212885298U
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mount
driving
sliding
base
sliding block
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CN202021746698.9U
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Chinese (zh)
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董龙芸
王艳
王天佑
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Zhangqiu Junlong Industry And Trade Co ltd
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Zhangqiu Junlong Industry And Trade Co ltd
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Priority to CN202021746698.9U priority Critical patent/CN212885298U/en
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Abstract

The utility model relates to a take milling device of clearance mechanism, the on-line screen storage device comprises a base, it is provided with the mount table to slide on the base, be provided with fixture on the mount table, be close to the both sides of base length direction one end all are provided with the milling equipment, all be provided with guiding mechanism in the fixture both sides on the mount table width direction, guiding mechanism includes deflector and drive assembly, the deflector rotates and sets up on the mount table, drive assembly sets up on the mount table, and drive assembly drives the deflector and rotates. This application has the direction iron fillings and leaves the organism, makes things convenient for the effect of cleaing away of iron fillings.

Description

Milling device with cleaning mechanism
Technical Field
The application relates to the field of rack processing, in particular to a milling device with a cleaning mechanism.
Background
The rack is a special gear with teeth distributed on a strip-shaped body, and the processing of the rack is to install strip-shaped steel on a milling machine and carry out milling machine processing through gear milling equipment; the steel that processes the rack is usually bought in advance and is deposited in the warehouse, and through the easy rust of long-time steel surface of depositing, rusty steel directly processes and leads to machining error easily, makes the rack precision of consolidating out not up to standard and leads to scrapping of rack to cause the waste of resource.
The existing steel rust removal usually adopts a milling machine to mill the surface of steel, and scrap iron on the surface of steel is removed by milling, and the surface of steel is smooth and convenient for subsequent processing.
In view of the above-mentioned related technologies, the inventor believes that a large amount of scraps are left after milling steel, and the scraps are not easy to be removed from the machine body.
SUMMERY OF THE UTILITY MODEL
In order to facilitate the removal of the sweeps, the application provides a milling device with a cleaning mechanism.
The application provides a take milling device of clearance mechanism adopts following technical scheme:
the utility model provides a take milling device of clearance mechanism, includes the base, it is provided with the mount table to slide on the base, be provided with fixture on the mount table, be close to the both sides of base length direction one end all are provided with the milling equipment, all be provided with guiding mechanism in the fixture both sides on the mount table width direction, guiding mechanism includes deflector and drive assembly, the deflector rotates and sets up on the mount table, drive assembly sets up on the mount table, and drive assembly drive deflector rotates.
By adopting the technical scheme, the guide plate is driven by the driving assembly, and the side, away from the clamping mechanism, of the guide plate is rotated to be higher than the side, close to the clamping mechanism, of the guide plate during milling, so that iron chips are prevented from falling to influence the working environment during milling; after milling, the guide plate is driven by the driving assembly to rotate, one side, away from the clamping mechanism, of the guide plate is rotated to be lower than one side, close to the clamping mechanism, of the guide plate, and the guide iron chips leave the machine body, so that the iron chips are conveniently removed.
Preferably, the driving assembly comprises a driving electric cylinder and a sliding block, the driving electric cylinder is installed on the installation platform, the sliding block is arranged on one side of the guide plate facing the installation platform in a sliding mode, the sliding block slides along the width direction of the guide plate, and a piston rod of the driving electric cylinder is arranged on the sliding block in a rotating mode.
Through adopting above-mentioned technical scheme, realize the drive of deflector through the driving electric jar, the setting of slider can reduce the deflector and rotate the dead probability of driving electric jar and deflector card.
Preferably, the two sides of the mounting table in the width direction are fixedly provided with obliquely arranged blocking pieces, and the blocking pieces are arranged above the guide plate and are inclined towards the guide plate.
Through adopting above-mentioned technical scheme, the setting of separation blade can prevent that iron fillings from directly dropping to the rotation department of deflector and mount table, reduces the dead probability of deflector card.
Preferably, the two sides of the base, which are far away from the end provided with the milling equipment, are provided with material collecting boxes.
Through adopting above-mentioned technical scheme, the setting of collecting box can concentrate the collection with iron fillings and handle to prevent iron fillings scattering everywhere and influence operational environment.
Preferably, be provided with the subassembly that slides between base and the mount table, the subassembly that slides is including sliding groove, sliding block and driving piece, the groove of sliding is seted up on the base along base length direction, the sliding block sets firmly on the mount table, and the sliding block slides and sets up in the inslot that slides, the driving piece is installed in the inslot that slides, and driving piece drive sliding block slides at the inslot that slides.
Through adopting above-mentioned technical scheme, the setting up of subassembly that slides makes the mount table slide more smoothly on the base.
Preferably, the driving part comprises a driving lead screw and a driving motor, the driving lead screw is rotatably arranged in the sliding groove, the driving lead screw is in threaded connection with the sliding block, the driving motor is arranged on the base, and an output shaft of the driving motor is mutually fixed with the driving lead screw.
Through adopting above-mentioned technical scheme, the mechanized of mount table has been realized to drive lead screw cooperation driving motor, makes the slip of mount table more accurate and more high-efficient.
Preferably, fixture is including placing platform, mount, mounting bracket and holder, it sets firmly on the mount table to place the platform, the mount has two, and two mounts set firmly respectively in mount table length direction's both ends, the mounting bracket sets up directly over placing the platform, and the mounting bracket both ends set firmly respectively in two mounts and keep away from mount table one side, the holder has a plurality of settings of all sliding on the mounting bracket, and the holder moves towards being close to or keeping away from to place the platform and slides.
Through adopting above-mentioned technical scheme, place the platform and be used for placing steel, mount and mounting bracket are used for installing the holder, through the holder with steel butt on placing the platform to steel appears the displacement or beats in milling and lead to the unable normal milling in steel part surface.
Preferably, the holder includes slide bar and stop nut, the slide bar runs through the setting on the mounting bracket, sets up threadedly on the slide bar, stop nut places platform one side threaded connection on the slide bar in the mounting bracket orientation.
Through adopting above-mentioned technical scheme, the pole that slides is on steel through self weight butt to slide through the pole that now slides of stop nut, realize the fixed to steel.
Preferably, threaded connection has the anticreep nut on the pole that slides, the anticreep nut deviates from in the mounting bracket and places platform one side threaded connection on the pole that slides.
Through adopting above-mentioned technical scheme, the anticreep nut can prevent that the pole that slides breaks away from the mounting bracket to prevent losing of pole that slides.
In summary, the present application includes at least one of the following beneficial technical effects:
the guide plate is driven by the driving assembly, and the side, far away from the clamping mechanism, of the guide plate is rotated to be higher than the side, close to the clamping mechanism, of the guide plate during milling, so that iron chips are prevented from falling to influence the working environment during milling; after milling is finished, the driving assembly drives the guide plate to rotate, so that one side, away from the clamping mechanism, of the guide plate rotates to be lower than one side, close to the clamping mechanism, of the guide plate, the guide scrap iron leaves the machine body, and scrap iron is convenient to clean;
due to the arrangement of the blocking piece, scrap iron can be prevented from directly falling to the rotating positions of the guide plate and the mounting table, and the probability of blocking of the guide plate is reduced;
the scrap iron can be collected and processed in a centralized manner by the arrangement of the collecting box, so that the scrap iron is prevented from scattering around to influence the working environment;
the placing table is used for placing steel, the fixing frame and the mounting frame are used for installing the clamping piece, the steel is abutted to the placing table through the clamping piece, and therefore the steel cannot be normally milled on the surface of the steel part due to displacement or jumping in milling.
Drawings
Fig. 1 is a schematic view of the overall structure of the present embodiment.
Fig. 2 is an enlarged view of a portion a in fig. 1.
Fig. 3 is an enlarged view of a portion B in fig. 1.
Description of reference numerals: 1. a base; 2. an installation table; 3. a clamping mechanism; 31. a placing table; 32. a fixed mount; 33. a mounting frame; 34. a clamping member; 341. a slide bar; 342. a limit nut; 4. milling equipment; 5. a guide mechanism; 51. a guide plate; 52. a drive assembly; 521. driving an electric cylinder; 522. a slider; 6. a baffle plate; 7. a material receiving box; 8. a slipping component; 81. a sliding groove; 82. a sliding block; 83. a drive member; 831. driving a lead screw; 832. a drive motor; 9. a thread; 10. anti-drop nut.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a milling device with a cleaning mechanism, and the milling device with the cleaning mechanism refers to fig. 1, and comprises a base 1, wherein a mounting table 2 is arranged on the base 1 in a sliding manner, a clamping mechanism 3 is arranged on the mounting table 2, milling equipment 4 is arranged on two sides close to one end of the base 1 in the length direction, the milling equipment 4 adopts a horizontal milling machine, guide mechanisms 5 are arranged on two sides of the clamping mechanism 3 in the width direction of the mounting table 2, each guide mechanism 5 comprises a guide plate 51 and a driving assembly 52, the guide plates 51 are rotatably arranged on the mounting table 2, the driving assemblies 52 are arranged on the mounting table 2, the driving assemblies 52 drive the guide plates 51 to rotate, the guide plates 51 are driven by the driving assemblies 52, one sides of the guide plates 51 far away from the clamping mechanism 3 are rotated to be higher than the sides close to the clamping mechanism 3 during milling, so as to; after milling, the driving assembly 52 drives the guide plate 51 to rotate, so that one side of the guide plate 51, which is far away from the clamping mechanism 3, rotates to be lower than one side of the guide plate, which is close to the clamping mechanism 3, and the guide iron chips leave the machine body, thereby facilitating the removal of the iron chips.
Referring to fig. 1-2, the driving assembly 52 includes a driving electric cylinder 521 mounted on the mounting table 2 and a sliding block 522 slidably disposed on one side of the guide plate 51 facing the mounting table 2, the sliding block 522 slides along the width direction of the guide plate 51, a piston rod of the driving electric cylinder 521 is rotatably disposed on the sliding block 522, the guide plate 51 is driven by the driving electric cylinder 521, and the sliding block 522 is disposed to reduce the probability of the locking of the driving electric cylinder 521 and the guide plate 51 when the guide plate 51 rotates; a T-shaped sliding groove is formed in the guide plate 51, the sliding block 522 is a block body which is integrally T-shaped, and the T-shaped sliding groove is matched with the sliding block 522 to prevent the sliding block 522 from being separated from the sliding groove; the blocking pieces 6 which are obliquely arranged are fixedly arranged on two sides of the mounting table 2 in the width direction, the blocking pieces 6 are arranged above the guide plate 51 and are inclined towards the guide plate 51, and the blocking pieces 6 can prevent iron chips from directly falling to the guide plate 51 and the rotating part of the mounting table 2, so that the probability of blocking of the guide plate 51 is reduced; the base 1 is kept away from the both sides that set up the one end of milling equipment 4 and is provided with material collecting box 7, and material collecting box 7's setting can be concentrated the collection with iron fillings and handle to prevent that iron fillings from scattering everywhere and influencing operational environment.
Referring to fig. 1, be provided with between base 1 and the mount table 2 and slide subassembly 8, slide subassembly 8 includes along base 1 length direction sets up the groove 81 that slides on base 1, sets firmly the sliding block 82 on mount table 2 and installs the driving piece 83 in the groove 81 that slides, sliding block 82 slides and sets up in the groove 81 that slides, driving piece 83 drive sliding block 82 slides in the groove 81 that slides, sliding subassembly 8 sets up and makes the slip of mount table 2 on base 1 more smooth.
Referring to fig. 1, the driving member 83 includes a driving screw 831 rotatably disposed in the sliding groove 81 and a driving motor 832 installed on the base 1, the driving screw 831 is connected to the sliding block 82 through a thread 9, the driving screw 831 rotates the driving sliding block 82 to slide in the sliding groove 81, an output shaft of the driving motor 832 is fixed to the driving screw 831, the driving screw 831 cooperates with the driving motor 832 to realize the mechanized sliding of the mounting table 2, so that the sliding of the mounting table 2 is more accurate and more efficient.
Referring to fig. 1, fixture 3 includes and sets firmly place the platform 31 on mount table 2, two mount 32 that set firmly respectively in 2 length direction's of mount table both ends, set up and all slide the setting and drive holder 34 on mount frame 33 to place mounting bracket 33 directly over platform 31, the mount frame 33 both ends set firmly respectively two mount 32 keep away from mount table 2 one side, holder 34 has a plurality of settings of all sliding on mount frame 33, holder 34 slides towards being close to or keeping away from placing platform 31, the platform is used for placing steel, mount 32 and mounting bracket 33 are used for installing holder 34, hold the steel butt on placing platform 31 through holder 34, prevent that steel appears the displacement or beats at the milling and lead to the unable normal milling in steel part surface.
Referring to fig. 1 and 3, the clamping member 34 includes a sliding rod 341 penetrating through the mounting frame 33 and a limit nut 342 disposed on the sliding rod 341, the sliding rod 341 is provided with a thread 9, the limit nut 342 is connected to the sliding rod 341 by the thread 9 on one side of the mounting frame 33 facing the placing table 31, the sliding rod 341 abuts against the steel material by its own weight, and the steel material is fixed by the limit nut 342 sliding on the sliding rod 341; the screw thread 9 is connected with anticreep nut 10 on the pole 341 slides, and anticreep nut 10 deviates from in mounting bracket 33 and places platform 31 one side screw thread 9 and connect on the pole 341 slides, and anticreep nut 10 can prevent that pole 341 slides and break away from mounting bracket 33 to prevent losing of pole 341 slides.
The implementation principle of the embodiment of the application is as follows: place steel on placing the platform 31, and make the pole 341 that slides pass through the gravity butt on steel, and rotate limit nut 342 and make the pole 341 that slides support tightly on steel, later start drive assembly 52, make deflector 51 keep away from fixture 3 one side and rotate to being higher than being close to fixture 3 one side, then start milling equipment 4, make mount table 2 drive steel slide and mill and cut towards milling equipment 4, the iron fillings that steel milled down are piled up in deflector 51, after milling is accomplished, the mount table 2 that slides makes mount table 2 slide to connect silo department, later make drive assembly 52 drive deflector 51 rotate, make deflector 51 keep away from fixture 3 one side and rotate to being less than near fixture 3 one side, the direction iron fillings leave the organism and get into and connect the silo.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a take milling device of clearance mechanism, includes base (1), it is provided with mount table (2) to slide on base (1), be provided with fixture (3) on mount table (2), be close to the both sides of base (1) length direction one end all are provided with milling equipment (4), its characterized in that: installing table (2) width direction all is provided with guiding mechanism (5) in fixture (3) both sides, guiding mechanism (5) include deflector (51) and drive assembly (52), deflector (51) rotate and set up on installing table (2), drive assembly (52) set up on installing table (2), and drive assembly (52) drive deflector (51) rotate.
2. A milling apparatus with a cleaning mechanism as claimed in claim 1, wherein: the driving assembly (52) comprises a driving electric cylinder (521) and a sliding block (522), the driving electric cylinder (521) is installed on the installation table (2), the sliding block (522) is arranged on one side, facing the installation table (2), of the guide plate (51) in a sliding mode, the sliding block (522) slides in the width direction of the guide plate (51), and a piston rod of the driving electric cylinder (521) is arranged on the sliding block (522) in a rotating mode.
3. A milling apparatus with a cleaning mechanism as claimed in claim 2, wherein: the mounting table is characterized in that blocking pieces (6) which are obliquely arranged are fixedly arranged on two sides of the mounting table (2) in the width direction, and the blocking pieces (6) are arranged above the guide plate (51) and are inclined towards the guide plate (51).
4. A milling apparatus with a cleaning mechanism as claimed in claim 3, wherein: and material receiving boxes (7) are arranged on two sides of one end, far away from the milling equipment (4), of the base (1).
5. A milling apparatus with a cleaning mechanism as claimed in claim 1, wherein: be provided with between base (1) and mount table (2) subassembly (8) that slides, subassembly (8) that slides is including sliding groove (81), sliding block (82) and driving piece (83), groove (81) that slides is seted up on base (1) along base (1) length direction, sliding block (82) sets firmly on mount table (2), and sliding block (82) slide and set up in sliding groove (81), install in sliding groove (81) driving piece (83), and driving piece (83) drive sliding block (82) slide in sliding groove (81).
6. A milling device with a cleaning mechanism according to claim 5, characterized in that: the driving piece (83) comprises a driving lead screw (831) and a driving motor (832), the driving lead screw (831) is rotatably arranged in the sliding groove (81), the driving lead screw (831) is connected with a sliding block (82) through a thread (9), the driving motor (832) is installed on the base (1), and an output shaft of the driving motor (832) is mutually fixed with the driving lead screw (831).
7. A milling apparatus with a cleaning mechanism as claimed in claim 1, wherein: fixture (3) are including placing platform (31), mount (32), mounting bracket (33) and holder (34), place platform (31) and set firmly on mount table (2), mount bracket (32) have two, and two mount brackets (32) set firmly respectively in mount table (2) length direction's both ends, mount bracket (33) set up directly over placing platform (31), and mount bracket (33) both ends set firmly respectively and keep away from mount table (2) one side in two mount brackets (32), holder (34) have a plurality of settings of all sliding on mount bracket (33), and holder (34) are close to or keep away from to place platform (31) and slide towards.
8. A milling device with a cleaning mechanism according to claim 7, wherein: the clamping piece (34) comprises a sliding rod (341) and a limiting nut (342), the sliding rod (341) penetrates through the mounting frame (33), the sliding rod (341) is provided with a thread (9), and the limiting nut (342) is connected to the sliding rod (341) in the direction of the mounting frame (33) towards the thread (9) on one side of the placing table (31).
9. A milling apparatus with a cleaning mechanism as claimed in claim 8, wherein: the anti-dropping screw cap is characterized in that the thread (9) on the sliding rod (341) is connected with an anti-dropping screw cap (10), and the anti-dropping screw cap (10) deviates from the thread (9) on one side of the placing table (31) in the mounting frame (33) and is connected to the sliding rod (341).
CN202021746698.9U 2020-08-19 2020-08-19 Milling device with cleaning mechanism Active CN212885298U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021746698.9U CN212885298U (en) 2020-08-19 2020-08-19 Milling device with cleaning mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021746698.9U CN212885298U (en) 2020-08-19 2020-08-19 Milling device with cleaning mechanism

Publications (1)

Publication Number Publication Date
CN212885298U true CN212885298U (en) 2021-04-06

Family

ID=75246523

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021746698.9U Active CN212885298U (en) 2020-08-19 2020-08-19 Milling device with cleaning mechanism

Country Status (1)

Country Link
CN (1) CN212885298U (en)

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