CN210253470U - Feeding device of disinfection cleaning machine for precision bearing - Google Patents

Feeding device of disinfection cleaning machine for precision bearing Download PDF

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Publication number
CN210253470U
CN210253470U CN201921105187.6U CN201921105187U CN210253470U CN 210253470 U CN210253470 U CN 210253470U CN 201921105187 U CN201921105187 U CN 201921105187U CN 210253470 U CN210253470 U CN 210253470U
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China
Prior art keywords
baffle
conveying
material pushing
precision bearing
fixedly connected
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Active
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CN201921105187.6U
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Chinese (zh)
Inventor
曹金明
周建水
夏敏
曹新伟
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Zhejiang Anbei Industrial Co., Ltd
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Zhejiang Mingrun Precision Bearing Co ltd
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Abstract

The utility model relates to a loading attachment of disinfection cleaning machine for precision bearing, including disinfection cleaning machine body and many and disinfection cleaning machine body intercommunication and be used for carrying precision bearing to get into its inside delivery track, its characterized in that: the precise bearing adjusting device comprises a conveying assembly, a plurality of pushing modules and a feeding assembly, wherein the conveying assembly is used for conveying precise bearings and is positioned at the input end of each conveying track; the utility model has the advantages that: the automatic cleaning device has the functions of pre-cleaning and automatic adjustment, and improves conveying efficiency and cleaning effect.

Description

Feeding device of disinfection cleaning machine for precision bearing
Technical Field
The utility model relates to a feeding equipment technical field of precision bearing, in particular to feeding device of disinfection cleaning machine for precision bearing.
Background
The Bearing (Bearing) is an important part in the modern mechanical equipment. Its main function is to support mechanical rotator, reduces the friction coefficient (friction coefficient) in its motion process to guarantee its gyration precision (accuracy), it is big to have the size parameter in the bearing, also has the size parameter little, and the size parameter is little also is called the precision bearing, and the use of precision bearing is very extensive, for example: the precision bearing can be used in a transmission mechanism of a heat sink inside a computer host, and the precision bearing has extremely strict requirements on the precision bearing during processing due to small size, for example: before or after the precision bearings are machined, the precision bearings need to be disinfected and cleaned, and a disinfection cleaning machine is an existing instrument for cleaning and disinfecting the precision bearings at present, however, at present, a mode of sending the precision bearings into the disinfection cleaning machine mainly pours a large number of precision bearings onto a platform to be conveyed, and adjusts the vertical precision bearings manually (namely, the vertical precision bearings are overturned), and the mode has low efficiency of adjusting the precision bearings and high labor cost; secondly, in the process of conveying the precision bearing, impurities on the conveying equipment are easily adhered to the body of the precision bearing on the contact surface of the compact bearing and the conveying equipment, and the cleaning effect is easily influenced.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a loading attachment of disinfection cleaning machine for precision bearing aims at solving the problem that appears in the above-mentioned background art.
The technical scheme of the utility model is realized like this: the utility model provides a loading attachment of disinfection cleaning machine for precision bearing, includes disinfection cleaning machine body and many and disinfection cleaning machine body intercommunication and be used for carrying precision bearing to get into its inside delivery track, its characterized in that: the precise bearing adjusting device comprises a conveying assembly, a plurality of pushing modules and a feeding assembly, wherein the conveying assembly is used for conveying precise bearings and is positioned at the input end of each conveying track; wherein, conveying element includes frame, a plurality of locate in the frame and through motor drive's delivery wheel and lay in on the delivery wheel and through delivery wheel driven conveyer belt, fixedly connected with is located the conveyer belt both sides in the frame and rather than the first baffle and the second baffle of edge contact, fixedly connected with third baffle between the top of first baffle and second baffle, and the fourth baffle that fixedly connected with and conveyer belt clearance set up between the end of first baffle and second baffle, one side that the conveyer belt was kept away from to first baffle contacts with the delivery track, and is equipped with a plurality of feed inlets with each delivery track one-to-one on first baffle.
Preferably: the material pushing module comprises a plurality of supporting frames fixedly connected to one side of the second baffle, far away from the conveying track, and arranged at intervals with the second baffle, a first material pushing cylinder installed on the supporting frames, a material pushing shaft fixedly connected with the output end of the first material pushing cylinder, and a material pushing block fixedly connected to the free end of the material pushing shaft, wherein one end of the material pushing shaft penetrates through the second baffle and is positioned above the conveying belt.
Preferably: and one side of the material pushing block, which is far away from the material pushing shaft, is provided with a positioning groove with an isosceles trapezoid cross section.
Preferably: the feeding assembly comprises a receiving frame, a feeding opening, a material pushing part and an adjusting part, wherein the receiving frame is arranged on the rack, is positioned on any side of the conveying belt and is in contact with the first baffle or the second baffle, the feeding opening is arranged on the first baffle or the second baffle and corresponds to the receiving frame, the material pushing part is arranged on the rack and is used for pushing a precision bearing on the receiving frame to the feeding opening, and the adjusting part is arranged on the rack, is in clearance with the receiving frame and is used for adjusting the precision bearing; the material receiving frame comprises a first material receiving plate block which is contacted with the first baffle or the second baffle and horizontally extends outwards, and a second material receiving plate block which is obliquely and fixedly connected with the free end of the first material receiving plate block, wherein the other end of the second material receiving plate block is obliquely and upwards arranged, and a material pushing opening for moving a material pushing part is formed in the joint of the second material receiving plate block and the first material receiving plate block; the material pushing part comprises a material pushing plate which is matched with the material pushing port and is driven by a second material pushing cylinder; the adjusting part comprises a material separating plate arranged on the rack and in clearance with the first material receiving plate, a transmission cavity arranged on the material separating plate and penetrating through two ends of the material separating plate, and a transmission shaft arranged in the transmission cavity and driven by a motor, wherein a plurality of first bevel gears are fixedly connected to the transmission shaft at intervals in an axial direction, a plurality of driven shafts corresponding to the first bevel gears are rotatably connected to the second material receiving plate at intervals in an equidistant manner, the driven shafts extend towards the first bevel gears and are fixedly connected with second bevel gears meshed with the first bevel gears at extending ends, and at least one knocking part is arranged on the outer side wall of each driven shaft at intervals in the axial direction.
Preferably: the knocking part comprises a cylindrical block fixedly connected with the driven shaft and an impact part fixedly connected to the free end of the cylindrical block and bent and extended in the direction opposite to the rotation direction of the driven shaft.
Preferably: the pre-cleaning assembly is arranged below the conveying assembly and used for spraying water to the conveying belt; the pre-cleaning assembly comprises a water storage tank arranged below the conveying belt, a water pumping pipe which is communicated with the water storage tank and pumped by a water pump, and a water spraying pipe which is communicated with the output end of the water pump and extends between the conveying belts; wherein, the water spraying end of the water spraying pipe is communicated with a nozzle spraying water upwards.
Preferably: dense micropores are distributed on the conveying belt.
By adopting the technical scheme: the feeding assembly is arranged at the input end of the conveying belt, the feeding assembly can be used for storing a certain amount of precision bearings and adjusting the precision bearings (namely, turning over the standing precision bearings), the precision bearings are pushed onto the conveying belt, the precision bearings are finally pushed into the conveying tracks through the conveying belt and the pushing module arranged on one side of the conveying belt, and then the precision bearings are conveyed into the disinfection cleaning machine to be cleaned and disinfected, in the process, the precision bearings on the conveying belt can be pre-cleaned through the pre-cleaning assembly, the probability of impurities carried by the precision bearings is reduced, and the follow-up cleaning effect on the precision bearings is guaranteed.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
FIG. 1 is a schematic structural view of an embodiment of the present invention;
FIG. 2 is a cross-sectional view A-A of FIG. 1;
FIG. 3 is a cross-sectional view taken along line B-B of FIG. 1;
fig. 4 is a cross-sectional view taken along line C-C of fig. 3.
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 efforts belong to the protection scope of the present invention.
As shown in fig. 1-4, the utility model discloses a feeding device of a disinfection cleaning machine for precision bearings, which comprises a disinfection cleaning machine body 1 and a plurality of conveying rails 11 which are communicated with the disinfection cleaning machine body 1 and used for conveying precision bearings 10 into the disinfection cleaning machine body, in the embodiment of the utility model, the feeding device comprises a conveying component 2 which is used for conveying precision bearings 10 and is positioned at the input end of each conveying rail 11, a plurality of pushing modules 3 which are arranged at one side of the conveying component 2 and are in one-to-one correspondence with each conveying rail 11 and used for pushing the precision bearings 10 on the conveying component 2 into each conveying rail 11, and a feeding component 4 which is arranged at the input end of the conveying component 2 and is used for adjusting the precision bearings 10; wherein, conveying assembly 2 includes frame 20, a plurality of locating on frame 20 and through motor 21 driven delivery wheel 22 and lay in on the delivery wheel 21 and through delivery wheel 21 driven conveyer belt 23, fixedly connected with is located conveyer belt 23 both sides and rather than edge contact's first baffle 24 and second baffle 25 on the frame 20, fixedly connected with third baffle 26 between the top of first baffle 24 and second baffle 25, and the fourth baffle 27 that fixedly connected with and conveyer belt 23 clearance set up between the end of first baffle 24 and second baffle 25, one side and the delivery track 11 contact of conveyer belt 23 are kept away from to first baffle 24, and are equipped with a plurality of feed inlets 240 with each delivery track 11 one-to-one on first baffle 24.
The utility model discloses in the embodiment, push away material module 3 includes that a plurality of fixed connection keep away from delivery track 11 one side and with the support frame 30 that second baffle 25 interval set up in second baffle 25, install the first cylinder 31 that pushes away on support frame 30, with first cylinder 31 output fixed connection that pushes away material and one end from second baffle 25 pass and be located the material pushing shaft 32 and the material pushing block 33 of fixed connection in the material pushing shaft 32 free end of conveyer belt 23.
In the embodiment of the present invention, one side of the material pushing block 33 away from the material pushing shaft 32 is provided with a positioning groove 330 having a cross section of an "isosceles trapezoid".
In the embodiment of the present invention, the feeding assembly 4 includes a material receiving frame 41 installed on the frame 20 and located on the right side of the conveying belt 23 and contacting the second baffle 25, a material inlet 42 corresponding to the material receiving frame 41 and located on the second baffle 25, a material pushing portion 43 installed on the frame 20 and used for pushing the precision bearing 10 on the material receiving frame 41 to the material inlet 42, and an adjusting portion 44 installed on the frame 20 and arranged in a gap with the material receiving frame 41 and used for adjusting the precision bearing 10; the receiving frame 41 includes a first receiving plate 411 contacting with the second baffle 25 and extending horizontally outward, and a second receiving plate 412 fixedly connected to the free end of the first receiving plate 411 in an inclined manner, wherein the other end of the second receiving plate 412 is arranged in an inclined manner, and a material pushing opening 4120 for moving the material pushing part 43 is arranged at the joint of the second receiving plate 412 and the first receiving plate 411; the material pushing part 43 comprises a material pushing plate 432 which is matched with the material pushing opening 4120 and is driven by a second material pushing cylinder 431; the adjusting portion 44 includes a material separating plate 440 mounted on the frame 20 and disposed in a gap with the first material receiving plate 411, a transmission cavity 441 disposed on the material separating plate 440 and penetrating through two ends of the material separating plate 440, and a transmission shaft 443 disposed in the transmission cavity 441 and driven by a motor 442, wherein a plurality of first bevel gears 444 are fixedly connected to the transmission shaft 443 at equal intervals in the axial direction, a plurality of driven shafts 445 corresponding to the first bevel gears 444 are rotatably connected to the second material receiving plate 412 at equal intervals in the axial direction, each driven shaft 445 extends toward each first bevel gear 444 and is fixedly connected to a second bevel gear 446 engaged with the first bevel gear 444 at an extending end thereof, and a knocking portion 447 is disposed at an outer sidewall of the driven shaft 445 at an axial interval.
In the embodiment of the present invention, the knocking portion 447 includes a cylindrical block 447a fixedly connected to the driven shaft 445 and an impact portion 447b fixedly connected to the free end of the cylindrical block 447a and extending in a direction opposite to the rotation direction of the driven shaft 445.
In the embodiment of the present invention, the device further comprises a pre-cleaning assembly 4 disposed below the conveying assembly 2 and used for spraying water to the conveying belt 23; the pre-cleaning assembly 5 comprises a water storage tank 50 arranged below the conveying belt 23, a water pumping pipe 52 communicated with the water storage tank 50 and pumped by a water pump 51, and a water spraying pipe 53 communicated with the output end of the water pump 51 and extending between the conveying belts 23; wherein, the water spraying end of the water spraying pipe 53 is communicated with a nozzle 54 which sprays water upwards.
In the embodiment of the present invention, the conveyer belt 23 is distributed with dense micropores 23 a.
By adopting the technical scheme: the input end of the conveying belt is provided with the feeding assembly, the feeding assembly can be used for storing a certain amount of precision bearings and adjusting the precision bearings (namely, turning over the standing precision bearings), the precision bearings are pushed onto the conveying belt, the precision bearings are finally pushed into each conveying track through the conveying belt and the pushing module arranged on one side of the conveying belt, and then the precision bearings are conveyed into the disinfection cleaning machine for cleaning and disinfection, and in the process, the precision bearings on the conveying belt can be pre-cleaned through the pre-cleaning assembly, so that the probability of carrying impurities by the precision bearings is reduced, and the subsequent cleaning effect on the precision bearings is ensured;
in more detail:
1. referring to fig. 1 and 3, the precision bearings to be cleaned and disinfected can be poured onto the second material receiving plate uniformly, and due to the inclined arrangement of the second material receiving plate, the precision bearings on the second material receiving plate can slide towards the direction of the first material receiving plate, wherein the gap between the material separating plate and the first material receiving plate can be slightly larger than the circumferential height of the precision bearings and smaller than the radial diameter of the precision bearings, so that the horizontal precision bearings (i.e. the overturned precision bearings) can pass through the gap between the material separating plate and the first material receiving plate, and the precision bearings can be pushed up from the first material receiving plate (through the material inlet) onto the conveyor belt by the second material pushing cylinder;
2. referring to fig. 3 to 4, if there is a vertical precision bearing, the transmission shaft can be driven to rotate by a motor, the second bevel gear is driven to rotate by a first bevel gear fixedly connected to the transmission shaft, and then the driven shaft is driven to rotate, the vertical precision bearing can be knocked by a knocking part arranged on the driven shaft, so that the vertical precision bearing is overturned (namely, the vertical precision bearing is changed into a horizontal precision bearing) while the horizontal precision bearing can be pushed onto the conveyor belt by a material pushing plate for conveying, the bearing can be adjusted by itself (namely, the vertical precision bearing is changed into the horizontal precision bearing) by an adjusting part arranged above the first material receiving plate, and the precision bearings do not need to be adjusted one by manpower, so that the adjusting efficiency and the conveying efficiency of the precision bearings can be improved;
3. referring to fig. 1-2, the precision bearing pushed by the pusher plate onto the conveyor belt can be conveyed by the conveyor belt (the conveyor belt can be driven by the conveyor wheel, the conveyor wheel can be driven by the motor), the movement of the conveyor belt can drive the precision bearing on the surface of the conveyor belt to move, the pusher block can be driven by the first pusher cylinder to push the precision bearing on the conveyor belt into the conveyor track in the moving process of the precision bearing (when the precision bearing is pushed, the motor can be controlled to stop driving, so that the conveyor belt stops conveying), and the positioning groove arranged on the pusher block can improve the positioning effect on the precision bearing (i.e., the outer side wall of the precision bearing is in contact with the groove wall of the positioning groove, the precision bearing can be placed to move left and right in pushing) when the precision bearing is pushed, so that the precision shaft can be, in order to prevent the precision bearing from being separated from the conveying belt by conveying through the conveying belt, the first baffle, the second baffle and the fourth baffle are specially arranged on two sides of the conveying belt and at the output end of the conveying belt, and the first baffle, the second baffle and the fourth baffle can effectively place the precision bearing to be separated from the conveying belt;
4. referring to fig. 1 to 2, in order to prevent impurities from adhering to the contact end of the precision bearing and the conveyor belt, water in the water storage tank can be partially extracted by a water pump and is sprayed out by a spray pipe and a nozzle, and the water sprayed out by the nozzle contacts with the precision bearing through the gap of the conveyor belt and distributed micropores, so that the precision bearing can be cleaned in a certain amount; secondly, in order to avoid that the precision bearing is impacted out of the conveying belt due to overlarge impact force of the nozzle, a third baffle is arranged above the conveying belt, so that water which participates in cleaning and can partially flow back through the micropores, and partially can be conveyed to the free end through the conveying belt and uniformly falls into a water storage tank (water in the water storage tank can be periodically replaced), and the water flowing back through the micropores can fall on the conveying belt at the lower layer and can be cleaned again, so that the cleanness of the surface of the conveying belt is ensured (it is required to be explained that the cleaning aims at pretreating the precision bearing and the final cleaning is completed in the disinfection cleaning machine, and the purpose is that impurities on the conveying belt can be effectively reduced from being substituted into the disinfection cleaning machine by the precision bearing);
it should be noted that:
referring to fig. 4, the free end of the cylindrical block is provided with a curved striking portion for the purpose of: when colliding with the precision bearing, the bent impact part can improve the capacity of enabling the precision bearing to topple over to a certain extent, and then the efficiency of adjustment is guaranteed.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides a loading attachment of disinfection cleaning machine for precision bearing, includes disinfection cleaning machine body and many and disinfection cleaning machine body intercommunication and be used for carrying precision bearing to get into its inside delivery track, its characterized in that: the precise bearing adjusting device comprises a conveying assembly, a plurality of pushing modules and a feeding assembly, wherein the conveying assembly is used for conveying precise bearings and is positioned at the input end of each conveying track; wherein, conveying element includes frame, a plurality of locate in the frame and through motor drive's delivery wheel and lay in on the delivery wheel and through delivery wheel driven conveyer belt, fixedly connected with is located the conveyer belt both sides in the frame and rather than the first baffle and the second baffle of edge contact, fixedly connected with third baffle between the top of first baffle and second baffle, and the fourth baffle that fixedly connected with and conveyer belt clearance set up between the end of first baffle and second baffle, one side that the conveyer belt was kept away from to first baffle contacts with the delivery track, and is equipped with a plurality of feed inlets with each delivery track one-to-one on first baffle.
2. The feeding device of the precision bearing sterilizing and cleaning machine according to claim 1, characterized in that: the material pushing module comprises a plurality of supporting frames fixedly connected to one side of the second baffle, far away from the conveying track, and arranged at intervals with the second baffle, a first material pushing cylinder installed on the supporting frames, a material pushing shaft fixedly connected with the output end of the first material pushing cylinder, and a material pushing block fixedly connected to the free end of the material pushing shaft, wherein one end of the material pushing shaft penetrates through the second baffle and is positioned above the conveying belt.
3. The feeding device of the precision bearing sterilizing and cleaning machine according to claim 2, characterized in that: and one side of the material pushing block, which is far away from the material pushing shaft, is provided with a positioning groove with an isosceles trapezoid cross section.
4. The feeding device of the precision bearing sterilizing and cleaning machine according to any one of claims 1 to 3, characterized in that: the feeding assembly comprises a receiving frame, a feeding opening, a material pushing part and an adjusting part, wherein the receiving frame is arranged on the rack, is positioned on any side of the conveying belt and is in contact with the first baffle or the second baffle, the feeding opening is arranged on the first baffle or the second baffle and corresponds to the receiving frame, the material pushing part is arranged on the rack and is used for pushing a precision bearing on the receiving frame to the feeding opening, and the adjusting part is arranged on the rack, is in clearance with the receiving frame and is used for adjusting the precision bearing; the material receiving frame comprises a first material receiving plate block which is contacted with the first baffle or the second baffle and horizontally extends outwards, and a second material receiving plate block which is obliquely and fixedly connected with the free end of the first material receiving plate block, wherein the other end of the second material receiving plate block is obliquely and upwards arranged, and a material pushing opening for moving a material pushing part is formed in the joint of the second material receiving plate block and the first material receiving plate block; the material pushing part comprises a material pushing plate which is matched with the material pushing port and is driven by a second material pushing cylinder; the adjusting part comprises a material separating plate arranged on the rack and in clearance with the first material receiving plate, a transmission cavity arranged on the material separating plate and penetrating through two ends of the material separating plate, and a transmission shaft arranged in the transmission cavity and driven by a motor, wherein a plurality of first bevel gears are fixedly connected to the transmission shaft at intervals in an axial direction, a plurality of driven shafts corresponding to the first bevel gears are rotatably connected to the second material receiving plate at intervals in an equidistant manner, the driven shafts extend towards the first bevel gears and are fixedly connected with second bevel gears meshed with the first bevel gears at extending ends, and at least one knocking part is arranged on the outer side wall of each driven shaft at intervals in the axial direction.
5. The feeding device of the precision bearing sterilizing and cleaning machine according to claim 4, characterized in that: the knocking part comprises a cylindrical block fixedly connected with the driven shaft and an impact part fixedly connected to the free end of the cylindrical block and bent and extended in the direction opposite to the rotation direction of the driven shaft.
6. The feeding device of the precision bearing sterilizing and cleaning machine according to any one of claims 1 to 3, characterized in that: the pre-cleaning assembly is arranged below the conveying assembly and used for spraying water to the conveying belt; the pre-cleaning assembly comprises a water storage tank arranged below the conveying belt, a water pumping pipe which is communicated with the water storage tank and pumped by a water pump, and a water spraying pipe which is communicated with the output end of the water pump and extends between the conveying belts; wherein, the water spraying end of the water spraying pipe is communicated with a nozzle spraying water upwards.
7. The feeding device of the precision bearing sterilizing and cleaning machine according to claim 6, characterized in that: dense micropores are distributed on the conveying belt.
CN201921105187.6U 2019-07-15 2019-07-15 Feeding device of disinfection cleaning machine for precision bearing Active CN210253470U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921105187.6U CN210253470U (en) 2019-07-15 2019-07-15 Feeding device of disinfection cleaning machine for precision bearing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921105187.6U CN210253470U (en) 2019-07-15 2019-07-15 Feeding device of disinfection cleaning machine for precision bearing

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CN210253470U true CN210253470U (en) 2020-04-07

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114713584A (en) * 2022-06-07 2022-07-08 山东平安工程质量检测有限公司 Automatic feeding device of loader gearbox box cleaning machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114713584A (en) * 2022-06-07 2022-07-08 山东平安工程质量检测有限公司 Automatic feeding device of loader gearbox box cleaning machine
CN114713584B (en) * 2022-06-07 2022-09-02 山东平安工程质量检测有限公司 Automatic feeding device of loader gearbox body cleaning machine

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20201028

Address after: 321000 No.2 Hushan South Road, Sidu Town, Jiangshan City, Quzhou City, Zhejiang Province

Patentee after: Zhejiang Anbei Industrial Co., Ltd

Address before: 324100 Second and Third Floors of Building No. 7, Hexin Road, Lianhuashan Industrial Park, Jiangshan Economic Development Zone, Jiangshan City, Quzhou City, Zhejiang Province

Patentee before: Zhejiang Mingrun Precision Bearing Co.,Ltd.

TR01 Transfer of patent right