CN212311705U - To advancing to going out burnishing machine - Google Patents
To advancing to going out burnishing machine Download PDFInfo
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- CN212311705U CN212311705U CN202020553111.6U CN202020553111U CN212311705U CN 212311705 U CN212311705 U CN 212311705U CN 202020553111 U CN202020553111 U CN 202020553111U CN 212311705 U CN212311705 U CN 212311705U
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Abstract
The utility model discloses a to advancing to going out burnishing machine, relate to polishing equipment, which comprises a base, establish the blowing workstation on the chassis, establish the work piece revolving stage on the blowing workstation, there is the work piece clamp platform on the work piece revolving stage, still be equipped with polishing equipment on the chassis, polishing equipment includes biax aircraft nose control cabinet, through aircraft nose driving and reversing control part cooperation aircraft nose lift control part in the biax aircraft nose control cabinet, control polishing wheel, servo motor control work piece revolving stage realizes the work piece and shifts, cooperation work piece clamp platform is rotatory at polishing process to the work piece, make work piece polishing process efficiency higher, need not manual control, degree of automation is high, the action is accurate, high efficiency, the polishing cost has been practiced thrift.
Description
Technical Field
The utility model relates to a burnishing machine equipment, in particular to advancing to going out burnishing machine.
Background
A large number of metal structure workpieces are used in the existing manufacturing industry, the metal structure workpieces need to be subjected to surface flatness treatment, the surfaces of metal structural members need to be polished and ground, and the requirements on the surface quality of the metal structure workpieces are higher and higher. The polishing machine is a mechanical processing device for carrying out surface mechanical treatment on a workpiece made of a metal material to obtain the required surface finish, and generally, the polishing machine drives a polishing wheel arranged on the polishing machine to rotate at a high speed by using a motor, and the polishing wheel rubs the surface of the workpiece to be polished to reduce the surface roughness of the workpiece to obtain a smooth surface or mirror surface gloss so as to ensure that the workpiece obtains a bright and flat surface and carry out modification processing on the surface of the workpiece.
The conventional polishing machine is only provided with a polishing wheel for manually controlling the polishing strength, the feeding amount is manually controlled, the polishing wheel is used for polishing workpieces, the working strength is high, time and labor are wasted, the polishing cost is high, the pertinence is poor, and the intelligent degree is low.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a to advancing to going out burnishing machine, degree of automation is high, can realize efficient polishing process automatically, and the action is accurate, and the pertinence is good, has practiced thrift the polishing cost, need not manual control.
The utility model discloses specific technical scheme as follows:
a pair of to-in and to-out polishing machines comprises a chassis, wherein a material placing workbench is arranged on one side of the chassis, a workpiece rotating table is arranged on the chassis and close to the material placing workbench, a workpiece clamping table is arranged on the workpiece rotating table, and polishing equipment is arranged on the chassis and close to the workpiece rotating table;
the workpiece clamping table comprises a first mounting frame, a plurality of rotating shafts are arranged at the front and rear parts of the first mounting frame, gears are arranged on the rotating shafts, the gears on the adjacent rotating shafts are meshed with each other, the output ends of the rotating shafts extend out of the first mounting frame, rotating clamps are arranged at the output ends of the rotating shafts, a servo motor is arranged on one side of the first mounting frame corresponding to the positions of the rotating shafts, and the servo motor is connected with the gears on the rotating shafts;
the feeding workbench comprises a workbench bottom frame, a feeding frame is arranged on the workbench bottom frame and corresponds to the position of the rotary clamp, and the feeding frame is connected with the workbench bottom frame in a sliding manner;
the workpiece rotating table comprises a rotating fixed seat, a rotating power source is arranged on the rotating fixed seat, the output end of the rotating power source is connected with a rotating driving wheel, a rotating table rotating shaft is arranged on the workpiece rotating table, a rotating driven wheel is connected to the lower portion of the rotating table rotating shaft, the rotating driving wheel is in transmission connection with the rotating driven wheel, the upper end of the rotating table rotating shaft is connected with a rotating fixed table, a rotating fixed arm is arranged on the rotating fixed table, and the;
the polishing equipment comprises a double-shaft machine head control platform, one end of the double-shaft machine head control platform is connected with a polishing wheel, the position of the polishing wheel is matched with a workpiece clamping platform, a polishing rotating motor is arranged on the double-shaft machine head control platform and connected with the polishing wheel, and the double-shaft machine head control platform comprises a machine head advancing and retreating control component and a machine head lifting control component.
Furthermore, the machine head advancing and retreating control parts are arranged above the machine head lifting control part, the number of the machine head advancing and retreating control parts is two, the two machine head advancing and retreating control parts are stacked up and down, one end, close to the workpiece clamping table, of each machine head advancing and retreating control part is provided with a polishing wheel, one side of each polishing wheel is provided with a wax spraying gun, and the gun head of each wax spraying gun points to the surface of the polishing wheel;
a flat wheel device is further arranged on one side of the polishing wheel and comprises a wheel trimming frame, a wheel trimming nail is arranged in front of the wheel trimming frame, a wheel trimming driving device is arranged behind the wheel trimming frame and connected with the wheel trimming nail, and a dust cover is arranged between the wheel trimming driving device and the wheel trimming nail; the number of flat wheel devices matches the number of polishing wheels.
Further, the machine head advancing and retreating control part comprises an advancing and retreating sliding table, an advancing and retreating mounting plate is arranged on the advancing and retreating sliding table, an advancing and retreating motor supporting plate is arranged on one side of the advancing and retreating sliding table, an advancing and retreating guide rod is arranged between the advancing and retreating motor supporting plate and the advancing and retreating sliding table, one end of the advancing and retreating guide rod is connected with the advancing and retreating motor supporting plate, the advancing and retreating guide rod is in sliding connection with the advancing and retreating sliding table, the other end of the advancing and retreating guide rod is connected with an advancing and retreating swinging supporting plate, an advancing and retreating motor is arranged on the advancing.
Furthermore, a first advance and retreat limiting plate is arranged on one side, close to the advance and retreat sliding table, of the advance and retreat swing supporting plate, a reinforcing rib is arranged on one side, close to the advance and retreat sliding table, of the advance and retreat motor supporting plate, the reinforcing rib is arranged on the upper portion and the lower portion of the advance and retreat motor supporting plate, a second advance and retreat limiting plate is further arranged on one side, close to the advance and retreat sliding table, of the advance and retreat motor supporting plate, a third advance and retreat limiting plate is arranged on the side, corresponding to the advance and retreat connecting sleeve, of the advance and retreat;
a sliding pipe is arranged between the advancing and retreating guide rod and the advancing and retreating sliding table, two sides of the advancing and retreating sliding table are provided with a gland corresponding to the outside of the sliding pipe, the gland is arranged on the advancing and retreating sliding table, two ends of the advancing and retreating guide rod are provided with threads, and a fixed ring matched with the advancing and retreating guide rod is arranged on the advancing and retreating motor support plate.
Furthermore, a rotating positioning plate is fixed below the rotating fixing table, a sensing piece is arranged on one side of the rotating positioning plate, a sensing switch is further arranged below the connecting plate, the sensing piece is in signal connection with the sensing switch, the rotating positioning plate and the sensing piece are respectively provided with two numbers and are respectively arranged at two ends below the rotating fixing table, and the sensing piece is arranged at the outer side of the rotating positioning plate.
The utility model discloses an effect that reaches as follows: the polishing wheel is controlled by the aid of the machine head advancing and retreating control component matched with the machine head lifting control component, the workpiece rotating table is controlled by the servo motor to realize workpiece transfer, and the workpiece clamping table is matched to rotate the workpiece in the polishing process, so that the workpiece polishing process is higher in efficiency, manual control is not needed, the automation degree is high, the action is accurate, the efficiency is high, and the polishing cost is saved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of the material placing table of the present invention;
FIG. 3 is a schematic structural view of portion A of FIG. 1;
FIG. 4 is an exploded view of the rotary platform of the present invention;
FIG. 5 is a schematic structural view of a nose advance and retreat control member of the present invention;
fig. 6 is a schematic structural view of the flat wheel device of the present invention.
The labels in the figure are:
a chassis 11, a discharging workbench 12, a workpiece rotating table 13, a workpiece clamping table 14, a polishing device 15, a first mounting rack 16, a rotating shaft 17, a gear 18, a rotating clamp 19, a workbench chassis 21, a discharging rack 22, a rotating fixing seat 23, a rotating power source 24, a rotating driving wheel 25, a rotating table rotating shaft 26, a rotating driven wheel 27, a rotating fixing table 28, a rotating fixing arm 29, a polishing wheel 30, a polishing rotating motor 31, a double-shaft handpiece control table 32, a handpiece advance and retreat control part 33, a handpiece lift control part 34, a wax spraying gun 35, a flat wheel device 36, a handpiece frame 37, a handpiece nail 38, a handpiece driving device 39, a dust cover 40, an advance and retreat sliding table 41, an advance and retreat mounting plate 42, an advance and retreat motor support plate 43, an advance and retreat motor advance and retreat support plate 44, an advance and retreat swing guide rod support plate 45, an advance and retreat guide rod motor 46, the device comprises a second advancing and retreating limiting plate 51, a third advancing and retreating limiting plate 52, a gland 54, a fixing ring 55, a rotary positioning plate 56, a sensing piece 57 and a sensing switch 58.
Detailed Description
The following detailed description will be made with reference to the accompanying drawings and examples, so that how to implement the technical means of the present invention to solve the technical problems and achieve the technical effects can be fully understood and implemented.
Referring to the attached drawings, the utility model relates to a pair of in-out polishing machine, which comprises a chassis 11, a material placing workbench 12 is arranged on one side of the chassis 11, a workpiece rotating platform 13 is arranged on one side of the chassis 11 close to the material placing workbench 12, a workpiece clamping platform 14 is arranged on the workpiece rotating platform 13, and a polishing device 15 is arranged on the chassis 11 close to the workpiece rotating platform 13;
the workpiece clamping table 14 comprises a first mounting frame 16, a plurality of rotating shafts 17 are arranged at the front and rear parts of the first mounting frame 16, gears 18 are arranged on the rotating shafts 17, the gears 18 on the adjacent rotating shafts 17 are meshed with each other, the output ends of the rotating shafts 17 extend out of the first mounting frame 16, rotating clamps 19 are arranged at the output ends of the rotating shafts 17, a servo motor is arranged on one side, corresponding to the positions of the rotating shafts 17, of the first mounting frame 16, and the servo motor is connected with the gears 18 on the rotating.
The workpiece rotating table 13 comprises a rotating fixed seat 23, a rotating power source 24 is arranged on the rotating fixed seat 23, the output end of the rotating power source 24 is connected with a rotating driving wheel 25, a rotating table rotating shaft 26 is arranged on the workpiece rotating table 13, a rotating driven wheel 27 is connected to the lower portion of the rotating table rotating shaft 26, the rotating driving wheel 25 is in transmission connection with the rotating driven wheel 27, the upper end of the rotating table rotating shaft 26 is connected with a rotating fixed table 28, a rotating fixed arm 29 is arranged on the rotating fixed table 28, and the rotating fixed arm.
The polishing equipment 15 comprises a double-shaft machine head control platform 32, one end of the double-shaft machine head control platform 32 is connected with a polishing wheel 30, the position of the polishing wheel 30 is matched with a workpiece clamping platform (14), a polishing rotating motor 31 is arranged on the double-shaft machine head control platform 32, the polishing rotating motor 31 is connected with the polishing wheel 30, and the double-shaft machine head control platform 32 comprises a machine head advancing and retreating control component 33 and a machine head lifting control component 34.
In this embodiment, the head advancing and retreating control member 33 is installed above the head lifting and lowering control member 34, two head advancing and retreating control members 33 are provided, the two head advancing and retreating control members 33 are stacked up and down, the polishing wheel 30 is provided at one end of each head advancing and retreating control member 33 close to the workpiece chuck 14, the wax spray gun 35 is provided at one side of the polishing wheel 30, and the tip of the wax spray gun 35 is directed to the surface of the polishing wheel 30.
A flat wheel device 36 is further arranged on one side of the polishing wheel 30, the flat wheel device 36 comprises a wheel trimming frame 37, a wheel trimming nail 38 is arranged in front of the wheel trimming frame 37, a wheel trimming driving device 39 is arranged behind the wheel trimming frame 37, the wheel trimming driving device 39 is connected with the wheel trimming nail 38, and a dust cover 40 is arranged between the wheel trimming driving device 39 and the wheel trimming nail 38; the number of flat wheel assemblies 36 matches the number of polishing wheels 30.
In this embodiment, the nose advance and retreat control member 33 includes an advance and retreat slider 41, an advance and retreat mounting plate 42 is provided on the advance and retreat slider 41, an advance and retreat motor support plate 43 is provided on one side of the advance and retreat slider 41, an advance and retreat guide rod 44 is provided between the advance and retreat motor support plate 43 and the advance and retreat slider 41, one end of the advance and retreat guide rod 44 is connected to the advance and retreat motor support plate 43, the advance and retreat guide rod 44 is slidably connected to the advance and retreat slider 41, an advance and retreat swing support plate 45 is connected to the other end of the advance and retreat guide rod 44, an advance and retreat motor 46 is provided on the advance and retreat motor support plate 43, an advance and retreat coupling sleeve 48 is provided on the advance and retreat slider 41, an advance and retreat coupling sleeve 48.
In this embodiment, a first advance/retreat limiting plate 49 is provided on the advance/retreat swing support plate 45 on the side close to the advance/retreat slide 41, a reinforcing rib 50 is provided on the advance/retreat motor support plate 43 on the side close to the advance/retreat slide 41, a second advance/retreat limiting plate 51 is provided on the advance/retreat motor support plate 43 on the side close to the advance/retreat slide 41, a third advance/retreat limiting plate 52 is provided on the advance/retreat slide 41 on the side corresponding to the advance/retreat coupling sleeve 48, two advance/retreat guide rods 44 are provided on the respective ends of the advance/retreat slide 41, and the two advance/retreat guide rods 44 are arranged in parallel.
A slide pipe is arranged between the advance and retreat guide rod 44 and the advance and retreat sliding table 41, the two sides of the advance and retreat sliding table 41 are provided with press covers 54 corresponding to the slide pipes, the press covers 54 are arranged on the advance and retreat sliding table 41, the two ends of the advance and retreat guide rod 44 are provided with threads, and the advance and retreat motor support plate 43 and the advance and retreat swing support plate 45 are provided with fixing rings 55 matched with the advance and retreat guide rod 44.
In this embodiment, a rotation positioning plate 56 is fixed below the rotation fixing table 28, a sensing plate 57 is disposed on one side of the rotation positioning plate 56, a sensing switch 58 is further disposed below the connecting plate, the sensing plate 57 is in signal connection with the sensing switch 58, two rotation positioning plates 56 and two sensing plates 57 are respectively disposed at two ends below the rotation fixing table 28, and the sensing plates 57 are disposed at the outer side of the rotation positioning plate 56.
Specifically, in the using process, a workpiece is conveyed or placed on the placing workbench 12, the workpiece clamping table 14 on the workpiece rotating table 13 clamps the workpiece by using the rotating clamp 19, the clamping can be realized by adopting an electromagnetic control clamping mode or a mode of controlling and meshing two arms of the rotating clamp 19 by using a motor, the selection is carried out according to the actual workpiece condition, then the rotating power source 24 of the workpiece rotating table 13 is started to rotate the workpiece to be close to the polishing wheel 30, the polishing wheel 30 is controlled by the machine head advancing and retreating control component 33 and the machine head lifting control component 34 to move, so that the polishing wheel 30 is contacted with the workpiece, the polishing rotating motor 31 is started to drive the polishing wheel 30 to rotate, meanwhile, the servo motor of the workpiece clamping table 14 is started to drive the rotating shaft 17 to rotate, so as to drive the workpiece to rotate, after the polishing process is finished, the workpiece and the polishing wheel 30 stop rotating, the machine head advancing and, subsequently, the rotation power source 24 of the workpiece rotation table 13 is started again, and the polished workpiece discharge table 12 is put into a subsequent process, and a new workpiece is gripped and prepared for a next operation. The whole polishing process is high in automation degree, can automatically realize a high-efficiency polishing process, is accurate in action and good in pertinence, saves the polishing cost and does not need manual control.
In the description of the present specification, the terms "connect", "mount", "fix", "set" and "have" are used in a broad sense, and for example, "connect" may be a fixed connection or an indirect connection through intermediate components without affecting the relationship and technical effects of the components, and may also be an integral connection or a partial connection, and as such, for a person skilled in the art, the specific meaning of the above terms in the present invention or the invention can be understood according to specific situations.
The foregoing description of the embodiments is provided to enable one of ordinary skill in the art to understand and apply the techniques herein, and it is to be understood that various modifications may be readily made to the embodiments, and that the general principles defined herein may be applied to other embodiments without the use of inventive faculty. Therefore, the present disclosure is not limited to the above embodiments, and modifications to the following cases should be included within the scope of the present disclosure: firstly, a new technical scheme is implemented on the basis of the technical scheme of the utility model and by combining the prior common general knowledge, and the technical effect generated by the new technical scheme does not exceed the technical effect of the utility model; secondly, equivalent replacement of part of the characteristics of the technical scheme of the utility model by adopting the known technology produces the same technical effect as the utility model; the technical scheme of the utility model is used as a basis for expansion, and the essential content of the expanded technical scheme does not exceed the technical scheme of the utility model; and fourthly, the equivalent transformation made by the contents of the specification and the attached drawings of the utility model is directly or indirectly applied to other related technical fields.
Claims (5)
1. The opposite-in opposite-out polishing machine is characterized by comprising a chassis (11), wherein a material placing workbench (12) is arranged on one side of the chassis (11), a workpiece rotating table (13) is arranged on one side, close to the material placing workbench (12), of the chassis (11), a workpiece clamping table (14) is arranged on the workpiece rotating table (13), and polishing equipment (15) is arranged on the chassis (11), close to the workpiece rotating table (13);
the workpiece clamping table (14) comprises a first mounting frame (16), a plurality of rotating shafts (17) are arranged at the front and the rear of the first mounting frame (16), gears (18) are arranged on the rotating shafts (17), the gears (18) on the adjacent rotating shafts (17) are meshed with each other, the output ends of the rotating shafts (17) extend out of the first mounting frame (16), rotating clamps (19) are arranged at the output ends of the rotating shafts (17), a servo motor is arranged on one side, corresponding to the positions of the rotating shafts (17), of the first mounting frame (16), and the servo motor is connected with the gears (18) on the rotating shafts (17);
the feeding workbench (12) comprises a workbench bottom frame (21), a feeding frame (22) is arranged on the workbench bottom frame (21), the feeding frame (22) corresponds to the position of the rotating clamp (19), and the feeding frame (22) is in sliding connection with the workbench bottom frame (21);
the workpiece rotating table (13) comprises a rotating fixed seat (23), a rotating power source (24) is arranged on the rotating fixed seat (23), the output end of the rotating power source (24) is connected with a rotating driving wheel (25), a rotating table rotating shaft (26) is arranged on the workpiece rotating table (13), a rotating driven wheel (27) is connected to the lower portion of the rotating table rotating shaft (26), the rotating driving wheel (25) is in transmission connection with the rotating driven wheel (27), a rotating fixed table (28) is connected to the upper end of the rotating table rotating shaft (26), a rotating fixed arm (29) is arranged on the rotating fixed table (28), and the rotating fixed arm (29);
the polishing equipment (15) comprises a double-shaft machine head control table (32), one end of the double-shaft machine head control table (32) is connected with a polishing wheel (30), the position of the polishing wheel (30) is matched with a workpiece clamping table (14), a polishing rotating motor (31) is arranged on the double-shaft machine head control table (32), the polishing rotating motor (31) is connected with the polishing wheel (30), and the double-shaft machine head control table (32) comprises a machine head advancing and retreating control part (33) and a machine head lifting control part (34).
2. The machine head in-out polishing machine according to claim 1, wherein the machine head advancing and retreating control part (33) is arranged above the machine head lifting control part (34), the number of the machine head advancing and retreating control parts (33) is two, the two machine head advancing and retreating control parts (33) are stacked up and down, one end of each machine head advancing and retreating control part (33) close to the workpiece clamping table (14) is provided with the polishing wheel (30), one side of the polishing wheel (30) is provided with the wax spraying gun (35), and the head of the wax spraying gun (35) points to the surface of the polishing wheel (30);
a flat wheel device (36) is further arranged on one side of the polishing wheel (30), the flat wheel device (36) comprises a wheel trimming frame (37), a wheel trimming nail (38) is arranged in front of the wheel trimming frame (37), a wheel trimming driving device (39) is arranged behind the wheel trimming frame (37), the wheel trimming driving device (39) is connected with the wheel trimming nail (38), and a dust cover (40) is arranged between the wheel trimming driving device (39) and the wheel trimming nail (38); the number of flat wheel assemblies (36) matches the number of polishing wheels (30).
3. The pair of in-out polishing machine according to claim 2, wherein the handpiece forward and backward movement control part (33) comprises an advancing and backward sliding table (41), an advancing and backward mounting plate (42) is arranged on the advancing and backward sliding table (41), an advancing and backward motor support plate (43) is arranged on one side of the advancing and backward sliding table (41), an advancing and backward guide rod (44) is arranged between the advancing and backward motor support plate (43) and the advancing and backward sliding table (41), one end of the advancing and backward guide rod (44) is connected with the advancing and backward motor support plate (43), the advancing and backward guide rod (44) is slidably connected with the advancing and backward sliding table (41), the other end of the advancing and backward guide rod (44) is connected with an advancing and backward swinging support plate (45), an advancing and backward motor (46) is arranged on the advancing and backward motor support plate (43), the advancing and backward motor (46) is connected, the polishing wheel (30) is arranged on one side of the advancing and retreating swinging support plate (45) far away from the advancing and retreating sliding table (41), and the flat wheel device (36) is arranged on the advancing and retreating mounting plate (42).
4. The pair of in-out polishing machine as claimed in claim 3, wherein the advancing and retreating swing support plate (45) is provided with an advancing and retreating first limit plate (49) at one side close to the advancing and retreating slide table (41), the advancing and retreating motor support plate (43) is provided with a reinforcing rib (50) at one side close to the advancing and retreating slide table (41), the reinforcing rib (50) is arranged at the upper and lower part of the advancing and retreating motor support plate (43), a second advancing and retreating limit plate (51) is further arranged at one side close to the advancing and retreating slide table (41), the advancing and retreating third limit plate (52) is arranged at the side corresponding to the advancing and retreating connecting sleeve (48) on the advancing and retreating slide table (41), the number of the advancing and retreating guide rods (44) is two, and the;
a sliding tube is arranged between the advance and retreat guide rod (44) and the advance and retreat sliding table (41), two sides of the advance and retreat sliding table (41) are provided with a gland (54) corresponding to the outside of the sliding tube, the gland (54) is arranged on the advance and retreat sliding table (41), two ends of the advance and retreat guide rod (44) are provided with threads, and a fixed ring (55) matched with the advance and retreat guide rod (44) is arranged on the advance and retreat motor support plate (43) and the advance and retreat swing support plate (.
5. The in-out opposite-in polishing machine according to claim 1, characterized in that a rotary positioning plate (56) is fixed below the rotary fixing table (28), an induction sheet (57) is arranged on one side of the rotary positioning plate (56), an induction switch (58) is further arranged below the connecting plate, the induction sheet (57) is in signal connection with the induction switch (58), two rotary positioning plates (56) and two induction sheets (57) are respectively arranged at two ends below the rotary fixing table (28), and the induction sheets (57) are arranged at the outer side of the rotary positioning plate (56).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020553111.6U CN212311705U (en) | 2020-04-15 | 2020-04-15 | To advancing to going out burnishing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020553111.6U CN212311705U (en) | 2020-04-15 | 2020-04-15 | To advancing to going out burnishing machine |
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Publication Number | Publication Date |
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CN212311705U true CN212311705U (en) | 2021-01-08 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202020553111.6U Active CN212311705U (en) | 2020-04-15 | 2020-04-15 | To advancing to going out burnishing machine |
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CN (1) | CN212311705U (en) |
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2020
- 2020-04-15 CN CN202020553111.6U patent/CN212311705U/en active Active
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