CN216186510U - Rotary exchange material receiving mechanism - Google Patents

Rotary exchange material receiving mechanism Download PDF

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Publication number
CN216186510U
CN216186510U CN202122696829.8U CN202122696829U CN216186510U CN 216186510 U CN216186510 U CN 216186510U CN 202122696829 U CN202122696829 U CN 202122696829U CN 216186510 U CN216186510 U CN 216186510U
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mounting
material supporting
mounting plate
supporting rod
receiving mechanism
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CN202122696829.8U
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Chinese (zh)
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唐瑞见
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Guangdong Jianzheng Electromechanical And Electroplating Equipment Co ltd
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Individual
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Abstract

The utility model discloses a rotary exchange receiving mechanism, which comprises: the device comprises a driving assembly, a mounting plate and a material receiving assembly; an output shaft of the driving assembly is connected with the bottom side surface of the mounting plate, and the material receiving assembly is arranged on the top side of the mounting plate; the receiving assembly comprises a plurality of material supporting rods, each material supporting rod is provided with a plurality of mounting holes and a plurality of fixing holes, the mounting holes are formed in one side surface of the corresponding material supporting rod, and the fixing holes are formed in the other side surface of the corresponding material supporting rod; each material supporting rod is connected with the mounting plate through a corresponding mounting hole; each material supporting rod is provided with a first mounting groove and a plurality of fixing holes, one side surface faces the direction far away from the mounting plate, and the plurality of material supporting rods are fixedly connected with the material storage container through the corresponding fixing holes. The rotary exchange receiving mechanism drives the mounting plate to rotate through the driving assembly, so that the plurality of material supporting rods are driven to rotate, and the material storage containers fixed on the top sides of the plurality of material supporting rods can continue to alternately receive materials.

Description

Rotary exchange material receiving mechanism
Technical Field
The utility model relates to the technical field of material receiving equipment, in particular to a rotary exchange material receiving mechanism.
Background
In the electroplating processing production, an operator needs to receive materials for workpieces after the electroplating processing is finished, and in a production line with low equipment automation degree, the material receiving work of the workpieces is mostly finished through manual operation and manual monitoring.
However, in the existing work piece receiving work, the receiving efficiency of the work piece is greatly influenced by manual operation and manual monitoring receiving, so that the production efficiency of an enterprise is reduced, and the production cost of the enterprise is increased.
SUMMERY OF THE UTILITY MODEL
Therefore, it is necessary to provide a rotary exchange material receiving mechanism for solving the problems of low material receiving efficiency and high cost of the existing workpiece.
A rotary exchange receiving mechanism comprises a driving assembly, a mounting plate and a receiving assembly; the driving assembly is arranged on the surface of one side of the mounting plate, and the receiving assembly is arranged on the surface of one side of the mounting plate, which is far away from the driving assembly; an output shaft of the driving assembly is connected with the bottom side surface of the mounting plate, and the material receiving assembly is arranged on the top side of the mounting plate;
the material receiving assembly comprises a plurality of material supporting rods, the material supporting rods are respectively arranged on the top side surface of the mounting plate, and the material supporting rods are arranged in parallel with each other;
each material supporting rod is provided with a plurality of mounting holes, a first mounting groove and a plurality of fixing holes, the mounting holes are arranged on one side surface of the corresponding material supporting rod, and the first mounting groove and the fixing holes are arranged on the other side surface of the corresponding material supporting rod; each material supporting rod is provided with a plurality of mounting holes, one side surface of each material supporting rod is correspondingly connected with the top side surface of the mounting plate, and each material supporting rod is connected with the mounting plate through the corresponding mounting hole; each material supporting rod is provided with a first mounting groove and a plurality of fixing holes, one side surface faces the direction far away from the mounting plate, and the plurality of material supporting rods are fixedly connected with the material storage container through the corresponding fixing holes.
In one embodiment, the mounting plate has a plurality of slide rails and a plurality of slide blocks; the sliding rails and the sliding blocks are respectively and correspondingly arranged on the top side surface of the mounting plate, the sliding rails are correspondingly arranged on the edges of the two sides of the top side surface of the mounting plate, and the sliding blocks are correspondingly arranged on the sliding rails.
In one embodiment, the material supporting rods correspondingly span the top sides of the sliding rails on the two side edges of the mounting plate, and each material supporting rod is mounted on the surfaces of the sliding blocks on the corresponding sliding rail through the corresponding mounting holes, so that each material supporting rod can perform translational motion along the corresponding sliding rails through the corresponding sliding blocks.
In one embodiment, the rotary exchange receiving mechanism includes a plurality of infrared sensors, and the plurality of infrared sensors are correspondingly disposed in the plurality of first mounting grooves.
In one embodiment, the mounting plate further has a plurality of second mounting grooves and a plurality of stoppers; a plurality of second mounting grooves correspond respectively to set up between the slide rail of mounting panel both sides, and a plurality of dogs correspond respectively to set up inside a plurality of second mounting grooves.
In one embodiment, the driving assembly includes a servo motor, a speed reducer, a first mounting block, and a second mounting block; the output shaft of servo motor connects the input of speed reducer, and a side surface that a plurality of material poles were kept away from to the mounting panel is connected to the output of speed reducer, and the mounting panel was kept away from to the speed reducer side surface is connected with first installation piece, and second installation piece piles up to be connected in a side surface that the speed reducer was kept away from to first installation piece.
In one embodiment, the first mounting block is provided with a first mounting notch.
In one embodiment, the second mounting block is provided with a second mounting notch corresponding to the first mounting notch, and the first mounting notch and the second mounting notch cooperate to form a third mounting groove.
In one embodiment, the servo motor is disposed in the third mounting groove, and one end of the output shaft of the servo motor abuts against the outer wall surface of the speed reducer, and the output shaft of the servo motor is in driving connection with the power input end of the speed reducer.
In one embodiment, a photoelectric sensor is disposed on a side surface of the first mounting block, and the photoelectric sensor is fixedly mounted on the side surface of the first mounting block through a corner aluminum.
In summary, the rotary exchange receiving mechanism disclosed by the utility model drives the mounting plate to rotate through the driving assembly, so that the receiving assembly mounted on the top side of the mounting plate performs rotary exchange receiving. After the material receiving of the partial material storage containers fixed on the surfaces of the plurality of material supporting rods of the material receiving assembly is finished, the driving assembly drives the mounting plate to rotate, so that the plurality of material supporting rods arranged on the other side of the mounting plate are driven to rotate, and the other partial material storage containers fixed on the top sides of the plurality of material supporting rods can continue to receive materials alternately, so that the material receiving efficiency in the production process of an enterprise can be greatly improved.
Drawings
Fig. 1 is a schematic structural diagram of a rotary exchange receiving mechanism in one embodiment;
FIG. 2 is a schematic structural diagram of a rotary exchange receiving mechanism in one embodiment;
fig. 3 is an exploded view of the rotary exchange receiving mechanism in one embodiment;
fig. 4 is an exploded view of the rotary exchange receiving mechanism in one embodiment.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in detail below. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein.
In the description of the present invention, it is to be understood that the terms "central," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in the orientations and positional relationships indicated in the drawings for convenience in describing the utility model and to simplify the description, and are not intended to indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and are not to be considered limiting of the utility model.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In the description of the present invention, "a plurality" means at least two, e.g., two, three, etc., unless specifically limited otherwise.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can, for example, be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
In the present invention, unless otherwise expressly stated or limited, the first feature "on" or "under" the second feature may be directly contacting the first and second features or indirectly contacting the first and second features through an intermediate. Also, a first feature "on," "over," and "above" a second feature may be directly or diagonally above the second feature, or may simply indicate that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature may be directly under or obliquely under the first feature, or may simply mean that the first feature is at a lesser elevation than the second feature.
It will be understood that when an element is referred to as being "secured to" or "disposed on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and the like as used herein are for illustrative purposes only and do not denote a unique embodiment.
Referring to fig. 1, the present invention discloses a rotary material receiving mechanism for exchange, which includes a driving assembly 1, a mounting plate 2 and a material receiving assembly 3. The driving assembly 1 is arranged on one side surface of the mounting plate 2, and the receiving assembly 3 is arranged on one side surface of the mounting plate 2 far away from the driving assembly 1. Specifically, the output shaft of the driving assembly 1 is connected to the bottom side surface of the mounting plate 2, and the material receiving assembly 3 is arranged on the top side of the mounting plate 2, so that the material receiving assembly is used for receiving a plurality of workpieces. In the embodiment, the rotary exchange receiving mechanism can carry out rotary exchange receiving on workpieces, the storage container is installed on the top side of the receiving component 3, in practical application, after a part of the storage container installed on the receiving component 3 finishes receiving, the driving component 1 drives the installation plate 2 to rotate, so as to drive the receiving component 3 installed on the other side of the installation plate 2 to rotate, and further, the other part of the storage container installed on the receiving component 3 can continue to alternately receive materials, so that the receiving efficiency in the production process of enterprises can be greatly improved.
Referring to fig. 1 and 3, in order to improve the receiving stability of the rotary exchange receiving mechanism, the receiving assembly 3 includes a plurality of supporting rods 31, the supporting rods 31 are respectively disposed on the top surface of the mounting plate 2, and the supporting rods 31 are disposed in parallel with each other. Specifically, each material supporting rod 31 has a plurality of mounting holes 311, a first mounting groove 312 and a plurality of fixing holes 313, the mounting holes 311 are disposed on a side surface of the corresponding material supporting rod 31, and the first mounting groove 312 and the fixing holes 313 are disposed on another side surface of the corresponding material supporting rod 31. In this embodiment, a side surface of the material supporting rods 31 having the mounting holes 311 corresponds to a top surface of the mounting plate 2, and each material supporting rod 31 is connected to the mounting plate 2 through the corresponding mounting hole 311; the side surface of the material supporting rods 31 with the first mounting grooves 312 and the fixing holes 313 faces the direction far away from the mounting plate 2, wherein the fixing holes 313 are used for fixing the storage container in the production process, so that the material supporting rods 31 can receive materials more stably. When practical application, a plurality of containers for the storage are fixed in a plurality of top side surfaces that correspond and hold in the palm material pole 31, and when drive assembly 1 rotated through drive mounting panel 2 and drove a plurality of support material poles 31 and rotate and connect the material in turn, a plurality of support material poles 31 can be through a plurality of mounting holes 311 and a plurality of fixed orificess 313 of correspondence with container for the storage stable connection in mounting panel 2, and then effectively promote the stability of rotatory exchange receiving mechanism function.
Referring to fig. 1 and fig. 3, in order to further improve the applicability of the rotary exchange receiving mechanism to various working conditions, the mounting plate 2 has a plurality of slide rails 21 and a plurality of slide blocks 22. Wherein, a plurality of slide rails 21 and a plurality of slider 22 correspond respectively and set up in the top side surface of mounting panel 2, and a plurality of slide rails 21 correspond and set up in the both sides edge on mounting panel 2 top side surface, and a plurality of slider 22 correspond and set up in a plurality of slide rails 21. In the present embodiment, the plurality of sliders 22 can slide relative to the corresponding slide rail 21. Specifically, a plurality of material supporting rods 31 correspondingly span the top sides of a plurality of slide rails 21 arranged on the two side edges of the mounting plate 2, and each material supporting rod 31 is mounted on the surfaces of a plurality of slide blocks 22 arranged on the corresponding slide rail 21 through a plurality of corresponding mounting holes 311, so that each material supporting rod 31 can perform translational motion along the corresponding slide rails 21 through a plurality of corresponding slide blocks 22. In practical application, the plurality of material supporting rods 31 can be adjusted in a translation mode through the corresponding sliding rails 21 and the corresponding sliding blocks 22 according to practical use working conditions, so that the rotary exchange material receiving mechanism can adapt to various material receiving conditions, and further, installation sites of the rotary exchange material receiving mechanism do not need to be adjusted frequently in the production process, so that the production efficiency of enterprises is effectively improved, and meanwhile labor cost is reduced.
Referring to fig. 3, in the present embodiment, the rotary exchange receiving mechanism further includes a plurality of infrared sensors 32, and the plurality of infrared sensors 32 are correspondingly disposed in the plurality of second mounting grooves 23. In practical application, a plurality of infrared sensor 32 can carry out infrared detection to the bearing in the work piece that corresponds on holding in the palm material pole 31 to make operating personnel can judge a plurality of connecing the material condition of holding in the palm material pole 31. When the infrared sensors 32 detect that the corresponding material supporting rods 31 complete material receiving work, the driving assembly 1 drives the mounting plate 2 to rotate, so that material receiving is exchanged.
Referring to fig. 1 and 3, in order to further improve the shock-proof performance of the mounting plate 2 and the material supporting rods 31, the mounting plate 2 further has a plurality of second mounting grooves 23 and a plurality of stoppers 24. Wherein, a plurality of second mounting grooves 23 correspond respectively to set up between the slide rail 21 of mounting panel 2 both sides, and a plurality of dogs 24 correspond respectively to set up inside a plurality of second mounting grooves 23. In practical application, a plurality of material poles 31 of holding in the palm are connecing the material during operation, and the work piece falls into to correspond to hold in the palm when the material container for the storage that material pole 31 supported can construct into the impact to the material machine, and in this embodiment, mounting panel 2 corresponds in a plurality of second mounting grooves 23 and sets up a plurality of dogs 24 to make the shock resistance of mounting panel 2 effectively improve, and then avoid rotatory exchange receiving mechanism to damage drive assembly 1 because the vibration that the work piece impact produced when actual operation.
Referring to fig. 1, fig. 2 and fig. 4, further, in the present embodiment, the driving assembly 1 includes a servo motor 11, a speed reducer 12, a first mounting block 13 and a second mounting block 14. Wherein, the output shaft of servo motor 11 connects the input of speed reducer 12, and the output of speed reducer 12 is connected mounting panel 2 and is kept away from a plurality of side surfaces of holding in the palm material pole 31, and the side surface that mounting panel 2 was kept away from to speed reducer 12 is connected with first installation piece 13, and second installation piece 14 piles up to be connected in the side surface that speed reducer 12 was kept away from to first installation piece 13. Specifically, the first mounting block 13 is provided with a first mounting notch 131, the second mounting block 14 is provided with a second mounting notch 141 corresponding to the first mounting notch 131, the first mounting notch 131 and the second mounting notch 141 are matched to form a third mounting groove 1311, and the servo motor 11 is arranged in the third mounting groove 1311; one end of the servo motor 11, which is provided with an output shaft, is abutted against the outer wall surface of the speed reducer 12, and the output shaft of the servo motor 11 is in driving connection with the power input end of the speed reducer 12; the output end of the speed reducer 12 is connected with the mounting plate 2 in a driving mode, so that the servo motor 11 can drive the mounting plate 2 and the material supporting rods 31 to rotate at a constant speed under the working conditions of low rotating speed and large torque through the speed reducer 12, and rotary exchange of a plurality of workpieces is completed.
Referring to fig. 4, further, in the present embodiment, a photoelectric sensor 15 is disposed on a side surface of the first mounting block 13. Specifically, the photosensor 15 is fixedly mounted to the side surface of the first mounting block 13 through a corner aluminum. In practical application, the servo motor 11 cooperates with the speed reducer 12 to drive the mounting plate 2 to rotate, so as to drive the material supporting rods 31 to perform rotary exchange material receiving work. At this moment, the photoelectric sensor 15 can monitor the change of the illumination intensity at the bottom side of the mounting plate 2 in real time, so that an operator can judge the rotation condition of the mounting plate 2 according to the change condition of the illumination intensity monitored by the photoelectric sensor 15. When the rotary exchange receiving mechanism breaks down and the mounting plate 2 rotates irregularly, the illumination intensity change monitored by the photoelectric sensor 15 is abnormal, and an operator can find the fault condition of the rotary exchange receiving mechanism in time through the abnormal illumination intensity change, so that the processing efficiency of the rotary exchange receiving mechanism after the fault occurs is improved.
In summary, the rotary exchange receiving mechanism disclosed by the utility model drives the mounting plate to rotate through the driving assembly, so that the receiving assembly mounted on the top side of the mounting plate performs rotary exchange receiving. After the material receiving of the partial material storage containers fixed on the surfaces of the plurality of material supporting rods of the material receiving assembly is finished, the driving assembly drives the mounting plate to rotate, so that the plurality of material supporting rods arranged on the other side of the mounting plate are driven to rotate, and the other partial material storage containers fixed on the top sides of the plurality of material supporting rods can continue to receive materials alternately, so that the material receiving efficiency in the production process of an enterprise can be greatly improved.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the utility model. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. The utility model provides a rotatory exchange receiving mechanism which characterized in that includes: the device comprises a driving assembly, a mounting plate and a material receiving assembly; the driving assembly is arranged on one side surface of the mounting plate, and the receiving assembly is arranged on one side surface of the mounting plate far away from the driving assembly; the output shaft of the driving assembly is connected with the bottom side surface of the mounting plate, and the material receiving assembly is arranged on the top side of the mounting plate;
the receiving assembly comprises a plurality of material supporting rods, the material supporting rods are respectively arranged on the top side surface of the mounting plate, and the material supporting rods are arranged in parallel with each other;
each material supporting rod is provided with a plurality of mounting holes, a first mounting groove and a plurality of fixing holes, the mounting holes are arranged on the surface of one side corresponding to the material supporting rod, and the first mounting groove and the fixing holes are arranged on the surface of the other side corresponding to the material supporting rod; each material supporting rod is provided with a plurality of mounting holes, one side surface of each material supporting rod is correspondingly connected with the top side surface of the mounting plate, and each material supporting rod is connected with the mounting plate through the corresponding mounting hole; each the material supporting rod is provided with the first mounting groove and a plurality of one side surface of the fixing hole faces away from the direction of the mounting plate, and the material supporting rod is a plurality of through corresponding fixing hole fixed connection storage containers.
2. The rotary exchange receiving mechanism according to claim 1, wherein the mounting plate has a plurality of slide rails and a plurality of slide blocks; a plurality of slide rail and a plurality of the slider correspond respectively set up in the top side surface of mounting panel, a plurality of the slide rail correspond set up in the both sides edge of mounting panel top side surface, a plurality of the slider corresponds set up in a plurality of the slide rail.
3. The rotary exchange receiving mechanism according to claim 2, wherein a plurality of the material supporting rods correspondingly span the top sides of a plurality of the slide rails on the two side edges of the mounting plate, and each material supporting rod is mounted on the surfaces of a plurality of the slide blocks on the corresponding slide rail through a corresponding plurality of the mounting holes, so that each material supporting rod can perform translational motion along the corresponding plurality of the slide rails through the corresponding plurality of the slide blocks.
4. The rotary exchange receiving mechanism according to claim 1, comprising a plurality of infrared sensors, wherein the plurality of infrared sensors are correspondingly disposed in the plurality of first mounting grooves.
5. The rotary exchange receiving mechanism according to claim 2, wherein the mounting plate further has a plurality of second mounting grooves and a plurality of stoppers; the plurality of second mounting grooves are respectively and correspondingly arranged on two sides of the mounting plate between the slide rails, and the plurality of stop blocks are respectively and correspondingly arranged in the plurality of second mounting grooves.
6. The rotary exchange receiving mechanism according to claim 1, wherein the driving assembly comprises a servo motor, a speed reducer, a first mounting block and a second mounting block; the output shaft of the servo motor is connected with the input end of the speed reducer, the output end of the speed reducer is connected with the mounting plate, the mounting plate is far away from a plurality of side surfaces of the material supporting rods, the speed reducer is far away from one side surface of the mounting plate, the first mounting block is connected with the second mounting block, and the second mounting block is stacked and connected with the first mounting block and is far away from one side surface of the speed reducer.
7. The rotary exchange receiving mechanism according to claim 6, wherein the first mounting block is provided with a first mounting notch.
8. The rotary exchange receiving mechanism according to claim 7, wherein the second mounting notch is provided on the second mounting block corresponding to the first mounting notch, and the first mounting notch and the second mounting notch cooperate to form a third mounting groove.
9. The rotary exchange receiving mechanism according to claim 8, wherein the servo motor is disposed in the third mounting groove, and one end of the servo motor having an output shaft abuts against an outer wall surface of the speed reducer, and the output shaft is drivingly connected to a power input end of the speed reducer.
10. The rotary exchange receiving mechanism according to claim 6, wherein a photoelectric sensor is arranged on one side surface of the first mounting block, and the photoelectric sensor is fixedly mounted on the side surface of the first mounting block through an angle aluminum.
CN202122696829.8U 2021-11-05 2021-11-05 Rotary exchange material receiving mechanism Active CN216186510U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122696829.8U CN216186510U (en) 2021-11-05 2021-11-05 Rotary exchange material receiving mechanism

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Application Number Priority Date Filing Date Title
CN202122696829.8U CN216186510U (en) 2021-11-05 2021-11-05 Rotary exchange material receiving mechanism

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CN216186510U true CN216186510U (en) 2022-04-05

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117381582A (en) * 2023-12-11 2024-01-12 河北震翰铸造有限公司 Well lid grinding device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117381582A (en) * 2023-12-11 2024-01-12 河北震翰铸造有限公司 Well lid grinding device
CN117381582B (en) * 2023-12-11 2024-02-13 河北震翰铸造有限公司 Well lid grinding device

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Effective date of registration: 20220824

Address after: Liuwu Management District, Xianan, Yuanzhou Town, Boluo County, Huizhou City, Guangdong Province, 516000

Patentee after: GUANGDONG JIANZHENG ELECTROMECHANICAL AND ELECTROPLATING EQUIPMENT Co.,Ltd.

Address before: 638500 No. 10, group 4, Lishi village, Qianfeng Town, Guang'an District, Guang'an City, Sichuan Province

Patentee before: Tang Ruijian