CN214559312U - Rotating mechanism for machining motor flange end cover - Google Patents
Rotating mechanism for machining motor flange end cover Download PDFInfo
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- CN214559312U CN214559312U CN202120967684.8U CN202120967684U CN214559312U CN 214559312 U CN214559312 U CN 214559312U CN 202120967684 U CN202120967684 U CN 202120967684U CN 214559312 U CN214559312 U CN 214559312U
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- end cover
- rotating
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- machining
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Abstract
The utility model discloses a rotating mechanism for processing a motor flange end cover, which comprises a machine tool platen and two oppositely arranged installation seats arranged on the machine tool platen, wherein a servo turntable and a rotating tailstock are respectively arranged on the two installation seats, the servo turntable and the rotating tailstock are connected with the rotating platen, the center of the rotating platen is provided with a positioning groove for positioning an end cover workpiece, a positioning fixture block component is arranged on the surface of the rotating platen around the positioning groove, two hydraulic clamps are also symmetrically arranged between the opposite inner sides of the servo turntable and the rotating tailstock, the two hydraulic clamps are distributed at the two ends of the positioning groove and are used for clamping the middle part of the side walls at the two ends of the end cover workpiece, the utility model does not need to manually turn over the end cover workpiece and repeatedly clamp and position the end cover workpiece in the whole process of processing the end cover workpiece, the machining efficiency of the end cover machining piece is improved.
Description
Technical Field
The utility model relates to an end cover processingequipment technical field, concretely relates to rotary mechanism is used in processing of motor flange end cover.
Background
Carry out two sides processing to the motor end cover and adopt artifical mode to overturn the end cover to different machined surfaces usually among the prior art, press from both sides tightly and adjust the end cover to suitable processing position through adjusting clamping device afterwards. The defects existing in the method are as follows: need carry out artifical upset centre gripping location to the motor end cover, reduced the machining efficiency of motor end cover.
SUMMERY OF THE UTILITY MODEL
Therefore, the utility model provides a rotary mechanism is used in processing of motor flange end cover to solve the above-mentioned defect among the prior art.
The rotating mechanism comprises a machine tool platen and two oppositely arranged installation seats arranged on the machine tool platen, wherein a servo rotary table and a rotating tailstock are respectively arranged on the two installation seats, the servo rotary table and the rotating tailstock are connected with the rotating platen, a positioning groove for positioning an end cover machined part is arranged in the center of the rotating platen, a positioning fixture block assembly is arranged on the surface of the rotating platen around the positioning groove, two hydraulic clamps are symmetrically arranged between the servo rotary table and the opposite inner sides of the rotating tailstock, and the two hydraulic clamps are distributed at two ends of the positioning groove and used for clamping the side walls at two ends of the end cover machined part in the middle.
Preferably, the relative inner sides of the servo turntable and the rotating tailstock are both connected with a first positioning mounting plate and a second positioning mounting plate, and two ends of the rotating bedplate are respectively and fixedly mounted between the first positioning mounting plate and the second positioning mounting plate on the corresponding sides.
Preferably, the inner side wall of the first positioning mounting plate is provided with a guide groove, and the hydraulic clamp can be telescopically arranged in the guide groove.
Preferably, the positioning fixture block assembly comprises a sliding block which is supported at the inner side below the convex eaves of the end cover workpiece and provided with an inclined supporting surface, and the sliding block is driven by a power mechanism to slide along the surface of the rotating bedplate.
Preferably, the power mechanism is an oil hydraulic cylinder.
The utility model has the advantages of as follows:
the utility model discloses install end cover machined part location centre gripping on servo revolving stage and the rotation platen between the rotation tailstock, at the in-process of whole end cover machined part processing, need not the manual work and overturn and many times's centre gripping location to the end cover machined part, improved the machining efficiency of end cover machined part.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic structural view of the end cover machined part of the present invention after being turned over;
FIG. 3 is a schematic view of a partial structure of the present invention;
fig. 4 is an enlarged schematic structural diagram of a in fig. 3 according to the present invention.
In the figure:
1-machine platen; 2-mounting a base; 3-a servo turntable; 4-rotating the tailstock; 5-rotating the bedplate; 6-positioning a groove; 7-hydraulic clamp; 8-a first positioning mounting plate; 9-a second positioning mounting plate; 10-end cap machining; 11-a guide groove; 12-a slide block; 13-inclined support surface.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1 to 4, the utility model provides a rotary mechanism is used in processing of motor flange end cover, its machining efficiency that can improve the motor end cover. Specifically, the method comprises the following steps:
the rotating table for machining the motor end cover comprises a machine tool table plate 1 and two oppositely arranged installation bases 2 installed on the machine tool table plate 1, wherein a servo rotating table 3 and a rotating tailstock 4 are installed on the installation bases 2 respectively, and the servo rotating table 3 and the rotating tailstock 4 are connected with a rotating table plate 5. When the servo turntable 3 rotates, the servo turntable 3 drives the rotating tailstock 4 to synchronously rotate through the rotating platen 5 connected with the servo turntable.
As a preferred embodiment: the servo turntable 3 and the rotating tailstock 4 are connected with a first positioning mounting plate 8 and a second positioning mounting plate 9 on the inner sides relative to each other, and two ends of the rotating bedplate 5 are fixedly mounted between the first positioning mounting plate 8 and the second positioning mounting plate 9 on the corresponding sides respectively. The first positioning mounting plate 8 and the second positioning mounting plate 9 can improve the stability of the installation of the rotating platen 5 between the servo turntable 3 and the rotating tailstock 4.
A positioning groove 6 for positioning the end cover machining piece 10 is formed in the center of the rotating bedplate 5, and positioning fixture block assemblies are arranged on the surface of the rotating bedplate 5 around the positioning groove 6. The positioning fixture block assembly comprises a slide block 12 which is supported on the inner side below the convex brim of the end cover machining piece 10 and is provided with an inclined supporting surface 13, and the slide block 12 is driven by a power mechanism (not shown in the figure) to slide along the surface of the rotating bedplate 5.
The power mechanism is preferably a hydraulic cylinder.
Two hydraulic clamps 7 are symmetrically arranged between the opposite inner sides of the servo rotary table 3 and the rotary tailstock 4, and the two hydraulic clamps 7 are distributed at two ends of the positioning groove 6 and used for clamping side walls at two ends of the end cover machining piece 10 in the middle. Specifically, the method comprises the following steps:
the inside wall of first location mounting panel 8 is provided with guide way 11, the installation that hydraulic tong 7 can stretch out and draw back the inside of guide way 11. The guide groove 11 provides guidance for the extension and retraction of the hydraulic clamp 7, and improves the stability of clamping the middle end cover workpiece 10.
The utility model discloses the theory of operation of device is:
the end cover workpiece 10 is roughly positioned and placed in the positioning groove 6 of the rotating platen 5, and positioning of the end cover workpiece 10 in the horizontal direction is completed. The lower part of the convex cornice around the end cover machining piece 10 is lapped above the sliding block 12 of the positioning fixture block component.
The power mechanism is then activated to drive the slide 12 along the surface of the rotating platen 5 toward the center of the end cap workpiece 10. Because the side of the slide block 12 facing the end cap workpiece 10 has the inclined support surface 13, when the slide block 12 presses the middle end cap workpiece 10, the end cap workpiece 10 is lifted along the inclined support surface 13 to a height suitable for machining, and positioning of the end cap workpiece 10 in the height direction is completed.
Then, the two hydraulic clamps 7 are driven to clamp the side walls of the two ends of the end cover workpiece 10 in the middle, so as to clamp the end cover workpiece 10 in the middle, and the upper end surface of the end cover workpiece 10 is processed.
When the back of the end cover workpiece 10 needs to be machined, the servo rotary table 3 is driven, the rotary table plate 5 clamped between the servo rotary table 3 and the rotary tailstock 4 and the end cover workpiece 10 clamped on the rotary table plate rotate 180 degrees, and the machining of the back of the end cover workpiece 10 is completed.
The utility model discloses at the in-process of whole end cover machined part 10 processing, need not artifical centre gripping location of overturning and a lot of to end cover machined part 10, improved the machining efficiency of end cover machined part 10.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.
Claims (5)
1. The utility model provides a motor flange end cover processing is with rotary mechanism which characterized in that: the automatic end cover machining device comprises a machine tool platen (1) and two oppositely arranged installation seats (2) arranged on the machine tool platen (1), wherein a servo rotary table (3) and a rotating tailstock (4) are respectively arranged on the two installation seats (2), the servo rotary table (3) and the rotating tailstock (4) are connected with the rotating platen (5), a positioning groove (6) used for positioning an end cover machining piece (10) is formed in the center of the rotating platen (5), a positioning clamping block assembly is arranged on the surface of the rotating platen (5) on the periphery of the positioning groove (6), two hydraulic clamps (7) are symmetrically arranged between the opposite inner sides of the servo rotary table (3) and the rotating tailstock (4), and the two hydraulic clamps (7) are distributed at two ends of the positioning groove (6) and used for clamping the side walls at two ends of the middle end cover machining piece (10).
2. The rotating mechanism for machining the flange end cover of the motor as claimed in claim 1, wherein: the servo turntable is characterized in that the relative inner sides of the servo turntable (3) and the rotating tailstock (4) are respectively connected with a first positioning mounting plate (8) and a second positioning mounting plate (9), and two ends of the rotating bedplate (5) are respectively and fixedly mounted between the first positioning mounting plate (8) and the second positioning mounting plate (9) on the corresponding sides.
3. The rotating mechanism for machining the flange end cover of the motor as claimed in claim 2, wherein: the inside wall of first location mounting panel (8) is provided with guide way (11), install that hydraulic clamp (7) can stretch out and draw back the inside of guide way (11).
4. The rotating mechanism for machining the flange end cover of the motor as claimed in claim 1, wherein: the positioning clamping block assembly comprises a sliding block (12) which is supported on the inner side below a convex cornice of the end cover machining piece (10) and is provided with an inclined supporting surface (13), and the sliding block (12) is driven by a power mechanism to slide along the surface of the rotating bedplate (5).
5. The rotating mechanism for machining the flange end cover of the motor as claimed in claim 4, wherein: the power mechanism is an oil hydraulic cylinder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120967684.8U CN214559312U (en) | 2021-05-08 | 2021-05-08 | Rotating mechanism for machining motor flange end cover |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202120967684.8U CN214559312U (en) | 2021-05-08 | 2021-05-08 | Rotating mechanism for machining motor flange end cover |
Publications (1)
Publication Number | Publication Date |
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CN214559312U true CN214559312U (en) | 2021-11-02 |
Family
ID=78329108
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202120967684.8U Active CN214559312U (en) | 2021-05-08 | 2021-05-08 | Rotating mechanism for machining motor flange end cover |
Country Status (1)
Country | Link |
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CN (1) | CN214559312U (en) |
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2021
- 2021-05-08 CN CN202120967684.8U patent/CN214559312U/en active Active
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