CN212794475U - Automatic mirror polishing device for beryllium-copper alloy material - Google Patents
Automatic mirror polishing device for beryllium-copper alloy material Download PDFInfo
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- CN212794475U CN212794475U CN202021510611.8U CN202021510611U CN212794475U CN 212794475 U CN212794475 U CN 212794475U CN 202021510611 U CN202021510611 U CN 202021510611U CN 212794475 U CN212794475 U CN 212794475U
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Abstract
The utility model discloses an automatic burnishing device of beryllium copper alloy material mirror surface, including putting the thing platform, the inner wall of putting the thing platform is connected with the fixed block, and the outer wall of fixed block is provided with the blotter, the outer wall connection of fixed block has the push rod, the outer wall welding of putting the thing platform has the base, and the top of base is connected with the connecting rod, the slide rail has been seted up at the inner wall border of connecting rod, and the inner wall connection of slide rail has the pulley, the outer wall connection of pulley has the connecting block, and the outer wall connection of connecting block has the bracing piece, first motor is installed at the top of bracing piece, and the output of first motor is connected with electronic pole, the bottom of electronic pole is connected with the carrier block, and the second. According to the automatic polishing device for the beryllium copper alloy material mirror surface, the beryllium copper alloy material mirror surface can reduce vibration generated by a lens in a polishing process through the arrangement of the buffer spring, so that the uneven polishing of the surface of the lens is avoided, and the polishing efficiency is improved.
Description
Technical Field
The utility model relates to a beryllium copper alloy material processing correlation technique field specifically is an automatic burnishing device of beryllium copper alloy material mirror surface.
Background
Beryllium copper is also called beryllium bronze, is the king of elasticity in copper alloy, can obtain products with high strength and high conductivity after solution aging heat treatment, and can polish and grind places with rough surfaces when a beryllium copper alloy material mirror surface is used.
However, most of the mirror polishing devices used at present adopt manual hand-held polishing machines to polish, which wastes time and labor, and has high labor intensity and low efficiency.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic burnishing device of beryllium copper alloy material mirror surface to the mirror surface burnishing device who provides at present uses in solving above-mentioned background art adopts artifical handheld burnishing machine to polish mostly, wastes time and energy, and staff intensity of labour is big, the problem of inefficiency.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an automatic burnishing device of beryllium copper alloy material mirror surface, is including putting the thing platform, the inner wall of putting the thing platform is connected with the fixed block, and the outer wall of fixed block is provided with the blotter, the outer wall connection of fixed block has the push rod, the outer wall welding of putting the thing platform has the base, and the top of base is connected with the connecting rod, the slide rail has been seted up at the inner wall border of connecting rod, and the inner wall connection of slide rail has the pulley, the outer wall connection of pulley has the connecting block, and the outer wall connection of connecting block has the bracing piece, first motor is installed at the top of bracing piece, and the output of first motor is connected with electronic pole, the bottom of electronic pole is connected with the carrier block, and the inner wall of carrier block installs the second motor, the output.
Preferably, put the thing platform and include slide, slider, drawer, backup pad, small opening, buffer spring and objective plate, put the inner wall border of thing platform and seted up the slide, and the inner wall connection of slide has the slider, the outer wall connection of slider has the drawer, the inner wall of putting the thing platform is provided with the backup pad, and the inner wall of backup pad has seted up the small opening, the surface of backup pad is provided with buffer spring, and buffer spring's top is connected with the objective plate.
Preferably, the drawer is in sliding connection with the object placing table through a sliding block, and the length of the drawer is smaller than that of the object placing table.
Preferably, buffer spring is equidistant setting in the backup pad, and the size of support plate is greater than carries the thing board.
Preferably, the connecting block is in sliding connection with the connecting rod through a pulley, and the surface of the connecting rod is in slotted arrangement.
Preferably, the bearing block and the connecting rod form a telescopic structure through the electric rod, and the bearing block and the electric rod are vertically distributed.
Preferably, the polishing wheels are symmetrically arranged on the central axis of the bearing block, and the bearing blocks are arranged on the support rod at equal intervals.
Compared with the prior art, the beneficial effects of the utility model are that:
1. according to the automatic polishing device for the beryllium copper alloy material mirror surface, through the arrangement of the buffer spring, the vibration generated by the mirror can be reduced in the polishing process of the beryllium copper alloy material mirror surface, the uneven polishing of the surface of the mirror is avoided, and the polishing efficiency is improved;
2. according to the automatic mirror polishing device for the beryllium copper alloy material, the polishing machine can move back and forth on the connecting rod through the arrangement of the supporting rod, so that the manual polishing by holding the polishing machine by hand is reduced, the working time is reduced, and the working efficiency is improved;
3. the beryllium copper alloy material mirror surface automatic polishing device can polish the beryllium copper alloy material mirror surface with different thickness through the arrangement of the electric rod, thereby greatly improving the use efficiency of the device.
Drawings
Fig. 1 is a schematic top view of the present invention;
FIG. 2 is a schematic front view of the present invention;
FIG. 3 is a schematic view of the structure of the object placing table of the present invention;
fig. 4 is an enlarged schematic view of a portion a in fig. 2 according to the present invention.
In the figure: 1. placing the object platform; 101. a slideway; 102. a slider; 103. a drawer; 104. a support plate; 105. A leak hole; 106. a buffer spring; 107. a loading plate; 2. a fixed block; 3. a cushion pad; 4. a push rod; 5. a base; 6. a connecting rod; 7. a slide rail; 8. a pulley; 9. connecting blocks; 10. a support bar; 11. a first motor; 12. an electric rod; 13. a bearing block; 14. a second motor; 15. a rotating shaft; 16. and (7) a polishing wheel.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. 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.
Referring to fig. 1-4, the present invention provides a technical solution: an automatic mirror polishing device for beryllium-copper alloy materials comprises an object placing table 1, a fixed block 2 connected with the inner wall of the object placing table 1, a cushion pad 3 is arranged on the outer wall of the fixed block 2, a push rod 4 is connected on the outer wall of the fixed block 2, a base 5 is welded on the outer wall of the object placing table 1, the top of the base 5 is connected with a connecting rod 6, the edge of the inner wall of the connecting rod 6 is provided with a slide rail 7, and the inner wall of the sliding rail 7 is connected with a pulley 8, the outer wall of the pulley 8 is connected with a connecting block 9, the outer wall of the connecting block 9 is connected with a supporting rod 10, the top of the supporting rod 10 is provided with a first motor 11, and the output end of the first motor 11 is connected with an electric rod 12, the bottom of the electric rod 12 is connected with a bearing block 13, and the inner wall of bearing block 13 is installed with second motor 14, and the output of second motor 14 is connected with pivot 15, and the bottom of pivot 15 is provided with throwing aureola 16.
The drawer 103 is connected with the object placing table 1 in a sliding mode through the sliding block 102, and the length of the drawer 103 is smaller than that of the object placing table 1, so that people can collect and process dirt conveniently.
Connecting block 9 is sliding connection through pulley 8 and connecting rod 6, and the surface of connecting rod 6 is the fluting setting, drives bracing piece 10 and moves about on connecting rod 6, reduces artifical handheld burnishing machine and polishes.
The bearing block 13 and the connecting rod 6 form a telescopic structure through the electric rod 12, and the bearing block 13 and the electric rod 12 are vertically distributed, so that the mirror surface of beryllium-copper alloy materials with different thicknesses can be polished.
The polishing wheels 16 are symmetrically arranged along the central axis of the bearing block 13, the bearing blocks 13 are arranged on the support rod 10 at equal intervals, and the polishing rate can be improved through the multiple groups of polishing wheels 16.
The working principle is as follows: for the beryllium copper alloy material mirror surface automatic polishing device, firstly, an external power supply is switched on, the beryllium copper alloy material mirror surface is taken out and placed on the object carrying plate 107, the push rod 4 is pushed, the buffer pads 3 on the fixed block 2 contact with the two sides of the mirror surface, the pushing is stopped, fixing the beryllium copper alloy material mirror surface, turning on the first motor 11, moving the electric rod 12 downwards, contacting the polishing wheel 16 with the outer wall of the beryllium copper alloy material mirror surface, turning off the first motor 11, the beryllium copper alloy material mirror surface with different thickness can be polished, the second motor 14 is started, the polishing wheel 16 polishes the beryllium copper alloy material mirror surface, the operating worker starts to push the support rod 10 back and forth, the manual polishing by holding the polishing machine is reduced, the working time is reduced, the working efficiency is improved, through the polishing wheels 16 arranged in multiple groups, the polishing rate and dirt falling in the polishing process can be improved. And the beryllium-copper alloy material falls onto the supporting plate 104 and falls into the drawer 103 through the leak holes 105, so that the whole using process of the beryllium-copper alloy material mirror automatic polishing device is completed, wherein the model of the first motor 11 is YE2-132S-4, and the model of the second motor 14 is WL-37RS 528.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The utility model provides an automatic burnishing device of beryllium copper alloy material mirror surface, is including putting thing platform (1), its characterized in that: the inner wall of the article placing table (1) is connected with a fixed block (2), the outer wall of the fixed block (2) is provided with a cushion pad (3), the outer wall of the fixed block (2) is connected with a push rod (4), the outer wall of the article placing table (1) is welded with a base (5), the top of the base (5) is connected with a connecting rod (6), the inner wall edge of the connecting rod (6) is provided with a slide rail (7), the inner wall of the slide rail (7) is connected with a pulley (8), the outer wall of the pulley (8) is connected with a connecting block (9), the outer wall of the connecting block (9) is connected with a support rod (10), the top of the support rod (10) is provided with a first motor (11), the output end of the first motor (11) is connected with an electric rod (12), the bottom of the electric rod (12) is connected with a bearing block (, the output end of the second motor (14) is connected with a rotating shaft (15), and a polishing wheel (16) is arranged at the bottom end of the rotating shaft (15).
2. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 1, wherein: put thing platform (1) and include slide (101), slider (102), drawer (103), backup pad (104), small opening (105), buffer spring (106) and objective plate (107), put the inner wall border of thing platform (1) and seted up slide (101), and the inner wall of slide (101) is connected with slider (102), the outer wall connection of slider (102) has drawer (103), the inner wall of putting thing platform (1) is provided with backup pad (104), and the inner wall of backup pad (104) has seted up small opening (105), the surface of backup pad (104) is provided with buffer spring (106), and the top of buffer spring (106) is connected with objective plate (107).
3. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 2, wherein: the drawer (103) is in sliding connection with the object placing table (1) through the sliding block (102), and the length of the drawer (103) is smaller than that of the object placing table (1).
4. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 2, wherein: the buffer springs (106) are arranged on the support plate (104) at equal intervals, and the size of the support plate (104) is larger than that of the carrying plate (107).
5. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 1, wherein: connecting block (9) are sliding connection through pulley (8) and connecting rod (6), and the surface of connecting rod (6) is the fluting setting.
6. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 1, wherein: the bearing blocks (13) and the connecting rods (6) form a telescopic structure through the electric rods (12), and the bearing blocks (13) and the electric rods (12) are vertically distributed.
7. The automatic mirror polishing device for the beryllium-copper alloy material as set forth in claim 1, wherein: the polishing wheels (16) are symmetrically arranged by using the central axis of the bearing block (13), and the bearing blocks (13) are arranged on the support rod (10) at equal intervals.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021510611.8U CN212794475U (en) | 2020-07-28 | 2020-07-28 | Automatic mirror polishing device for beryllium-copper alloy material |
Applications Claiming Priority (1)
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CN202021510611.8U CN212794475U (en) | 2020-07-28 | 2020-07-28 | Automatic mirror polishing device for beryllium-copper alloy material |
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CN212794475U true CN212794475U (en) | 2021-03-26 |
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CN202021510611.8U Active CN212794475U (en) | 2020-07-28 | 2020-07-28 | Automatic mirror polishing device for beryllium-copper alloy material |
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2020
- 2020-07-28 CN CN202021510611.8U patent/CN212794475U/en active Active
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