CN203371098U - Device for milling surface crack of titanium alloy rod-like material - Google Patents

Device for milling surface crack of titanium alloy rod-like material Download PDF

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Publication number
CN203371098U
CN203371098U CN201320406805.7U CN201320406805U CN203371098U CN 203371098 U CN203371098 U CN 203371098U CN 201320406805 U CN201320406805 U CN 201320406805U CN 203371098 U CN203371098 U CN 203371098U
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CN
China
Prior art keywords
workbench
milling
guide rail
spindle case
milling spindle
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Expired - Fee Related
Application number
CN201320406805.7U
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Chinese (zh)
Inventor
王晓江
罗宝成
曹瑜强
徐前
焦斌
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Shaanxi Polytechnic Institute
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Shaanxi Polytechnic Institute
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Priority to CN201320406805.7U priority Critical patent/CN203371098U/en
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Publication of CN203371098U publication Critical patent/CN203371098U/en
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Abstract

The utility model discloses a device for milling a surface crack of a titanium alloy rod-like material. The device is characterized by comprising a complete machine base (1), two guide rail frames (5), a lifting motor (7), a vertical screw (8), a milling spindle box (2), a screw nut (17), a spindle motor (4), a workbench base (16), a workbench (14) and a workbench driving motor (24), wherein the two guide rail frames (5) are vertically arranged on the complete machine base (1); the top ends of the two guide rail frames (5) are connected through a transverse beam (6); the lifting motor (7) is arranged on the transverse beam (6); the vertical screw (8) is connected with a spindle of the lifting motor (7); the milling spindle box (2) is slidably arranged on the guide rail frames (5); the screw nut (17) is arranged inside the milling spindle box (2) and is matched with the vertical screw (8); the spindle motor (4) is connected with an input shaft on the left side surface of the milling spindle box (2); a milling cutter (11) is connected to an output shaft on the right side surface of the milling spindle box (2); the workbench base (16) is positioned on the right side of the complete machine base (1) and is provided with a horizontal guide rail; the workbench (14) is arranged on the guide rail of the workbench base (16); the workbench driving motor (24) is arranged at the bottom of the workbench (14).

Description

The bar-shaped material surface crackle of a kind of titanium alloy milling attachment
Technical field
The utility model belongs to titanium alloy process equipment field, is specifically related to the bar-shaped material surface crackle of a kind of titanium alloy milling attachment.
Background technology
In the bar-shaped material pressure process of titanium alloy, the bar-shaped material surface of titanium alloy is easy to occur crackle, if process not in time these crackles, crackle can be expanded gradually or deepen to cause bar to break, and reduces Performance and quality.Generally, once crackle occur in the pressure processing process, need artificial hand-held emery wheel or angle grinding machine to remove the crackle part, processing method like this to the bar-shaped material surface crackle of titanium alloy will be wasted a large amount of manpowers and time, delay manufacturing schedule, the milling attachment that therefore just need a kind of flexible practicality, saves manpower and time.
The utility model content
The above deficiency existed for prior art, the purpose of this utility model is to provide the bar-shaped material surface crackle of a kind of energy titanium alloy that flexible practicality saves manpower and time milling attachment.
For reaching above purpose, the utility model provides following technical scheme to be achieved.
The bar-shaped material surface crackle of a kind of titanium alloy milling attachment, it is characterized in that, comprise the complete machine base, vertically be arranged on the guide rail bracket that two tops on the complete machine base connect with crossbeam, be arranged on the lifting motor on crossbeam, the down-feed screw be connected with the lifting motor main shaft, be slidably mounted on the milling spindle case on guide rail bracket, be arranged at the feed screw nut that the milling spindle case is inner and coordinate with down-feed screw, spindle motor with the power shaft of milling spindle case left surface is connected, be connected with milling cutter on the output shaft of the right flank of milling spindle case; And the table base with horizontal guide rail that is positioned at complete machine base right side, be arranged on the workbench on the table base guide rail, be arranged on the table drive motor of workbench bottom.
The characteristics of technique scheme and further improvement:
Be provided with worm gear, worm screw in described milling spindle case, worm gear and worm engaging, the input of worm screw is provided with the vertical feed handwheel; The centre bore of described worm gear is a tight fit in feed screw nut's periphery.
The output shaft of described milling spindle case is horizontally disposed splined shaft, and described splined shaft left end is set with splined sleeve, and splined sleeve is fixed with sleeve gear outward, is provided with the first reductor between the power shaft of described milling spindle case and sleeve gear; Described splined shaft right-hand member cover has the rack sleeve be slidably matched with described milling spindle box body, and the rack sleeve outer wall is provided with horizontal rack; Be provided with the axis feeding gear meshed with described horizontal rack on the casing of described milling spindle case, the input of described axis feeding gear is provided with the horizontal feed handwheel.
Described workbench bottom is provided with tooth bar along the guide rail direction, is provided with the second reductor in table base, and the second reductor output is provided with the workbench driven wheel with the tooth bar engagement; The input of described the second reductor is connected with table drive motor.
Be provided with workbench on described table base and drive handwheel, workbench drives the handwheel output to be provided with the manual drives gear, described manual drives gear and the engagement of workbench driven wheel.
The beneficial effects of the utility model are to regulate milling spindle case vertical feed and the bar-shaped material surface crackle of output shaft horizontal feed cutting titanium alloy by vertical feed handwheel and horizontal feed handwheel.Adopt the bar-shaped material surface crackle of titanium alloy of the present utility model milling attachment, utilize the quick cutting way of milling cutter to replace artificial reconditioning mode, saved a large amount of manpowers and time.
The accompanying drawing explanation
Below in conjunction with the drawings and specific embodiments, the utility model is further described.
The overall structure schematic diagram that Fig. 1 is the bar-shaped material surface crackle of the utility model titanium alloy milling attachment;
The side structure schematic diagram that Fig. 2 is Fig. 1;
The hand-operated lifting drive mechanism schematic diagram that Fig. 3 is milling spindle case in Fig. 1;
The main shaft reducing transmission structure schematic diagram that Fig. 4 is milling spindle case in Fig. 1;
The axis feeding drive mechanism schematic diagram that Fig. 5 is milling spindle case in Fig. 1;
The drive mechanism schematic diagram that Fig. 6 is the electronic movement of workbench in Fig. 1;
Fig. 7 is the drive mechanism schematic diagram that in Fig. 1, workbench manually moves;
In figure: 1, complete machine base; 2, milling spindle case; 3, main spindle box gear change hand lever; 4, spindle motor; 5, guide rail bracket; 6, crossbeam; 7, lifting motor; 8, down-feed screw; 9, vertical feed handwheel; 10, rack sleeve; 11, milling cutter; 12, horizontal feed handwheel; 13, workbench drives handwheel; 14, workbench; 15, tooth bar; 16, table base; 17, feed screw nut; 18, worm gear; 19, worm screw; 20, splined shaft; 21, splined sleeve; 22, sleeve gear; 23, axis feeding gear; 24, table drive motor; 25, workbench driven wheel; 26, manual drives gear; 27, the first reductor; 28, the second reductor.
The specific embodiment
See figures.1.and.2, for the bar-shaped material surface crackle of a kind of titanium alloy of the present utility model milling attachment, it mainly comprises, complete machine base (1), vertically be arranged on the guide rail bracket (5) that two crossbeams for top (6) on complete machine base (1) connect, be arranged on the lifting motor (7) on crossbeam (6), the down-feed screw (8) be connected with lifting motor (7) main shaft, be slidably mounted on the milling spindle case (2) on guide rail bracket (5), be arranged at the feed screw nut (17) that milling spindle case (2) is inner and coordinate with down-feed screw (8), the spindle motor (4) be connected with the power shaft of milling spindle case (2) left surface, be connected with milling cutter (11) on the output shaft of the right flank of milling spindle case (2), and the table base with horizontal guide rail (16) that is positioned at complete machine base (1) right side, be arranged on the workbench (14) on table base (16) guide rail, be arranged on the table drive motor (24) of workbench (14) bottom.
The present embodiment is provided with the hand-operated lifting drive mechanism in milling spindle case (2).As shown in Figure 3, wherein, milling spindle case (2) inside is provided with feed screw nut (17), and feed screw nut (17) matches with down-feed screw (8); The outer worm gear (18) that is equipped with of feed screw nut (17), feed screw nut (17) can rotate along with worm gear (18), worm gear (18) and worm screw (19) engagement, the input of worm screw (19) is provided with horizontal feed handwheel (12).Down-feed screw (8) position is fixed, and feed screw nut (17) is because the self-locking of worm gear (18) worm screw (19) can not be rotated.When lifting motor (7) main shaft drives down-feed screw (8) left-right rotation, feed screw nut (17) drive milling spindle case (2) is done straight line along down-feed screw (8) and is moved up and down; Rotate vertical feed handwheel (9) and can drive worm screw (19) to rotarily drive worm gear (18) and feed screw nut (17) rotation, milling spindle case (2) is moved up and down along down-feed screw (8).
With reference to Fig. 4, it is the main shaft reducing transmission structure schematic diagram in milling spindle case (2) in Fig. 1.With reference to Fig. 5, it is the axis feeding drive mechanism schematic diagram of milling spindle case (2) in Fig. 1.Wherein, the power shaft of milling spindle case (2) connects spindle motor (4), the output shaft of milling spindle case (2) is horizontally disposed splined shaft (20), splined shaft (20) left end is set with splined sleeve (21), splined sleeve (21) is outer is fixed with sleeve gear (22), between the power shaft of milling spindle case (2) and sleeve gear (22), is the first reductor (27); Splined shaft (20) right-hand member cover has the rack sleeve (10) coordinated with described milling spindle case (2) box body-sliding, and rack sleeve (10) outer wall is provided with horizontal rack; Be provided with the axis feeding gear (23) meshed with horizontal rack on the casing of milling spindle case (2), the input of axis feeding gear (23) is provided with horizontal feed handwheel (12).Inner the first reductor of milling spindle case (2) (27) is some to gears to engage and disengage mechanism, by changing main spindle box gear change hand lever (3) position, can select several gears to engage and disengage mechanism state, can make output shaft output different rotating speeds.
With reference to Fig. 6, it is the drive mechanism schematic diagram of the electronic movement of workbench in Fig. 1; Fig. 7 is the drive mechanism schematic diagram that in Fig. 1, workbench manually moves.Wherein, workbench (14) bottom is provided with tooth bar (15) along the guide rail direction, being provided with input in table base (16) is second reductor (28) of table drive motor (24) main shaft, and the output of the second reductor (28) is the workbench driven wheel (25) meshed with tooth bar (15); Workbench driven wheel (25) also drives coaxial manual drives gear (26) engagement of handwheel (13) with workbench.By controlling table drive motor (24), turn to, or the manual rotation workbench drives handwheel (13) can control workbench (14) to move around.
When crackle appears in the bar-shaped material surface of the titanium alloy forged, fixture on workbench for club-shaped material (14) is fixed, can regulate milling depth by rotating vertical feed handwheel (9), by rotary work-table, drive handwheel (13) to regulate milling length, by rotating horizontal feed handwheel (12), regulate the milling width.
Obviously, those skilled in the art can carry out various changes and modification and not break away from spirit and scope of the present utility model the utility model.Like this, if within of the present utility model these are revised and modification belongs to the scope of the utility model claim and equivalent technologies thereof, the utility model also comprises these changes and modification interior.

Claims (5)

1. the bar-shaped material surface crackle of a titanium alloy milling attachment, it is characterized in that, comprise complete machine base (1), vertically be arranged on the guide rail bracket (5) that two crossbeams for top (6) on complete machine base (1) connect, be arranged on the lifting motor (7) on crossbeam (6), the down-feed screw (8) be connected with lifting motor (7) main shaft, be slidably mounted on the milling spindle case (2) on guide rail bracket (5), be arranged at the feed screw nut (17) that milling spindle case (2) is inner and coordinate with down-feed screw (8), the spindle motor (4) be connected with the power shaft of milling spindle case (2) left surface, be connected with milling cutter (11) on the output shaft of the right flank of milling spindle case (2), and the table base with horizontal guide rail (16) that is positioned at complete machine base (1) right side, be arranged on the workbench (14) on table base (16) guide rail, be arranged on the table drive motor (24) of workbench (14) bottom.
2. the bar-shaped material surface crackle of a kind of titanium alloy according to claim 1 milling attachment, it is characterized in that, be provided with worm gear (18), worm screw (19) in described milling spindle case (2), worm gear (18) and worm screw (19) engagement, the input of worm screw (19) is provided with vertical feed handwheel (9); The centre bore of described worm gear (18) is a tight fit in feed screw nut (17) periphery.
3. the bar-shaped material surface crackle of a kind of titanium alloy according to claim 1 milling attachment, it is characterized in that, the output shaft of described milling spindle case (2) is horizontally disposed splined shaft (20), described splined shaft (20) left end is set with splined sleeve (21), splined sleeve (21) is outer is fixed with sleeve gear (22), between the power shaft of described milling spindle case (2) and sleeve gear (22), is provided with the first reductor (27); Described splined shaft (21) right-hand member cover has the rack sleeve (10) coordinated with described milling spindle case (2) box body-sliding, and rack sleeve (10) outer wall is provided with horizontal rack; Be provided with the feed gear wheel (23) meshed with described horizontal rack on the casing of described milling spindle case (2), the input of described feed gear wheel (23) is provided with horizontal feed handwheel (12).
4. the bar-shaped material surface crackle of a kind of titanium alloy according to claim 1 milling attachment, it is characterized in that, described workbench (14) bottom is provided with tooth bar (15) along the guide rail direction, be provided with the second reductor (28) in table base (16), the second reductor (28) output is provided with the workbench driven wheel (25) with tooth bar (15) engagement; The input of described the second reductor (28) is connected with table drive motor (24).
5. the bar-shaped material surface crackle of a kind of titanium alloy according to claim 4 milling attachment, it is characterized in that, be provided with workbench on described table base (16) and drive handwheel (13), workbench drives handwheel (13) output to be provided with manual drives gear (26), described manual drives gear (26) and workbench driven wheel (25) engagement.
CN201320406805.7U 2013-07-09 2013-07-09 Device for milling surface crack of titanium alloy rod-like material Expired - Fee Related CN203371098U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320406805.7U CN203371098U (en) 2013-07-09 2013-07-09 Device for milling surface crack of titanium alloy rod-like material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320406805.7U CN203371098U (en) 2013-07-09 2013-07-09 Device for milling surface crack of titanium alloy rod-like material

Publications (1)

Publication Number Publication Date
CN203371098U true CN203371098U (en) 2014-01-01

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104043862A (en) * 2014-06-27 2014-09-17 烟台美尔森石墨有限公司 Machining device of graphite heater
CN105855039A (en) * 2016-05-19 2016-08-17 昆明理工大学 Periodic permanent magnet centrifugal high-gradient magnetic separator
CN110202429A (en) * 2019-05-23 2019-09-06 佛山市尊聚自动化设备有限公司 Automatic sander
CN110303183A (en) * 2019-07-19 2019-10-08 广州增立钢管结构股份有限公司 A kind of H profile steel equipment for milling end surfaces

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104043862A (en) * 2014-06-27 2014-09-17 烟台美尔森石墨有限公司 Machining device of graphite heater
CN105855039A (en) * 2016-05-19 2016-08-17 昆明理工大学 Periodic permanent magnet centrifugal high-gradient magnetic separator
CN110202429A (en) * 2019-05-23 2019-09-06 佛山市尊聚自动化设备有限公司 Automatic sander
CN110303183A (en) * 2019-07-19 2019-10-08 广州增立钢管结构股份有限公司 A kind of H profile steel equipment for milling end surfaces

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140101

Termination date: 20150709

EXPY Termination of patent right or utility model