CN217097216U - Turnover mechanism - Google Patents

Turnover mechanism Download PDF

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Publication number
CN217097216U
CN217097216U CN202220131545.6U CN202220131545U CN217097216U CN 217097216 U CN217097216 U CN 217097216U CN 202220131545 U CN202220131545 U CN 202220131545U CN 217097216 U CN217097216 U CN 217097216U
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China
Prior art keywords
driving
assembly
cylinder
product
drive assembly
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CN202220131545.6U
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Chinese (zh)
Inventor
赵强
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Suzhou Kelunte Power Supply Technology Co ltd
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Suzhou Kelunte Power Supply Technology Co ltd
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Priority to CN202220131545.6U priority Critical patent/CN217097216U/en
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Abstract

The utility model discloses a turnover mechanism relates to the technical field of polishing, including the mechanism support, be provided with at least one first mount on the mechanism support, each two fixed disks about being provided with on the first mount, one side of fixed disk is provided with and is used for driving the drive assembly that two fixed disks stagger relatively or overlap, one side of drive assembly is provided with and is used for driving the rotatory rotating assembly of drive assembly. The utility model discloses one side of product is polished and is driven the product upset after accomplishing to the another side and polish, and the cylinder that has adopted revolving cylinder and two levels to set up realizes, has replaced artifical upset to save the manpower, has improved the degree of accuracy and work efficiency, compares and uses the upset of robot reduce the cost.

Description

Turnover mechanism
Technical Field
The utility model relates to a technical field, in particular to tilting mechanism polishes.
Background
In the various industries we produce, there are many examples of production processes; the production process of the welding process, the surface mounting process, the film pasting process, the dispensing process, the grinding process, the polishing process and the like also comprises a plurality of surface treatment processes, most of workpieces in the production industry need to be subjected to front and back surface treatment, and when the workpieces are produced, if no proper tool is available, the workpieces are generally turned over manually or by a mechanical arm with high cost.
The production work piece is turned over by adopting a manual mode in the work piece production, then the work piece is placed into a fixed station of the work piece for processing, if the work piece is too much, the number of the personnel invested is also large, the cost of manual expenditure is correspondingly high, and the production efficiency and the accuracy rate are very low by completely depending on the manual mode.
If I adopt robotic arm's mode to control the work piece and overturn the positive and negative and replace artifically in production, robotic arm input can control artifical input and promote the rate of accuracy, but robotic arm input cost in the early stage is also very high.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem provide a can overturn work piece, reduce cost, improve work efficiency's tilting mechanism in a flexible way.
The utility model provides a technical scheme that its technical problem adopted is: tilting mechanism, including the mechanism support, be provided with at least one first mount on the mechanism support, each be provided with two upper and lower fixed disks on the first mount, one side of fixed disk is provided with and is used for driving the relative drive assembly who staggers or overlap of two fixed disks, one side of drive assembly is provided with and is used for driving the rotatory rotating assembly of drive assembly.
Further, the method comprises the following steps: and a positioning groove for positioning the product is arranged in the fixed disc.
Further, the method comprises the following steps: the driving assembly comprises two first air cylinders fixedly connected to a first fixing frame, and a fixing disc is connected to a driving shaft of each first air cylinder.
Further, the method comprises the following steps: the first cylinder is a mechanical rodless guide rail gas.
Further, the method comprises the following steps: the rotating assembly is a rotating cylinder, and the driving end of the rotating cylinder is fixedly connected with the first fixing frame.
Further, the method comprises the following steps: the mechanism support is provided with a first jacking assembly below the fixed disc, and the fixed disc is supported by the first jacking assembly when the mechanism support is polished.
The utility model has the advantages that: the utility model discloses one side of product is polished and is driven the product upset to the another side after accomplishing and polish, and the cylinder that has adopted revolving cylinder and two levels to set up realizes, has replaced artifical upset to save the manpower, has improved the degree of accuracy and work efficiency, compares and uses the upset of robot reduce the cost.
Drawings
FIG. 1 is a schematic view of the overall structure of the turnover mechanism;
labeled as: 201. a mechanism support; 202. a first fixing frame; 203. fixing the disc; 204. a drive assembly; 205. a rotating assembly; 206. the first jacking assembly.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1, an embodiment of the present application provides a turnover mechanism, which includes a mechanism support 201, the mechanism support 201 is provided with at least one first fixing frame 202, each first fixing frame 202 is provided with an upper fixing disc 203 and a lower fixing disc 203, the upper fixing disc 203 and the lower fixing disc 203 which correspond to each other fix a product when being overlapped, so as to prevent the product from dropping in the turnover process, the first fixing frame 202 corresponds to a set of fixing discs 203, the number of sets of fixing discs 203 is selected according to the situation, several sets of fixing discs 203 are set by turning several products at a time, and in this embodiment, 4 products need to be turned at a time, so that in this embodiment, four sets of fixing discs 203 are provided.
One side of fixed disk 203 is provided with and is used for driving two fixed disks 203 relative stagger or the drive assembly 204 that overlaps, one side of drive assembly 204 is provided with and is used for driving the rotatory rotating assembly 205 of drive assembly 204, drive assembly 204 is used for driving two fixed disks 203 relative stagger or overlap, two fixed disks 203 are relative stagger when the product needs to be polished, lower fixed disk 203 is in the state of stretching out and holds the product, fixed disk 203 retraction on, for outside mill space, supply outside mill to polish for the product, thereby rotating assembly 205 is used for driving the actuating mechanism upset to the product turn-over.
When the product needs to be polished, the first cylinder below is in the state of stretching out, drive fixed disk 203 and stretch out, thereby hold the product, the first cylinder of higher authority is in the withdrawal state, drive the withdrawal of above-mentioned fixed disk 203, give outside polisher empty space, be convenient for polish, the one side of product is polished and is accomplished the back, the first cylinder of higher authority drives fixed disk 203 and stretches out, two fixed disk 203 overlap and fix the product, then rotating assembly 205 drives drive assembly 204 and rotates 180 degrees, thereby carries out the turn-over to the product, the fixed disk 203 withdrawal above the first cylinder drive of higher authority this moment, outside polisher polishes the another side of product.
The turnover mechanism 2 has two turnover modes: the first is to overturn one by one, namely to overturn in sequence, and then to overturn after one side of the product is polished. The second is synchronous flipping, i.e., all stations flip consistently. The two overturning modes are different according to the workpieces to be used, and different workpiece overturning requirements are different, so that the mechanism has controllability.
In the embodiment, a mode of turning over one by one is selected, after a first workpiece is polished, the polisher moves to a next station to polish a second workpiece, and a product at the first station in front is turned over and prepared to the next surface in advance to wait for polishing. The design is to avoid excessive waiting or stopping of the production cycle and improve the production efficiency.
On the basis, be provided with the constant head tank that is used for fixing a position the product in the fixed disk 203, outside polisher places the product in the constant head tank before polishing, the constant head tank is used for fixing a position the product, prevents that the product from rocking at the in-process of polishing.
On the basis, the driving assembly 204 comprises two first air cylinders fixedly connected to the first fixing frame 202, each first air cylinder is connected to a fixing disc 203 in a driving shaft, the first air cylinders are used for driving the fixing discs 203 to extend out or retract, when a product needs to be turned over, the two first air cylinders simultaneously extend out, the two fixing discs 203 fix the product, the product is prevented from dropping in the turning process, when the product is polished, the lower first air cylinder is in an extending state, the lower fixing disc 203 supports the product, and the upper first air cylinder is in a retracting state at the moment, so that the upper fixing disc 203 is driven to retract.
On the basis, the first cylinder is a mechanical rodless guide rail cylinder, a guide rail is matched on the cylinder, and the cylinder is high in practicability and precision.
On the basis, the rotating assembly 205 is a rotating cylinder, a driving end of the rotating cylinder is fixedly connected with the first fixing frame 202, and the rotating cylinder is used for driving the driving assembly 204 to rotate 180 degrees.
On the basis, the lower part of the fixed disk 203 on the mechanism support is provided with a first jacking component 206, the fixed disk 203 is supported by the first jacking component 206 when the fixed disk is polished, the first jacking component 206 carries out jacking action after the rotating component drives the product to overturn, and jacks the lower part of the fixed disk 203, so that the supporting force of the fixed disk 203 is increased, and the stability is improved.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (6)

1. Tilting mechanism, including mechanism's support (201), its characterized in that: be provided with at least one first mount (202) on mechanism support (201), each be provided with two upper and lower fixed disks (203) on first mount (202), one side of fixed disk (203) is provided with drive assembly (204) that are used for driving two fixed disks (203) and stagger relatively or overlap, one side of drive assembly (204) is provided with and is used for driving rotatory rotating assembly (205) of drive assembly (204).
2. The canting mechanism of claim 1 wherein: and a positioning groove for positioning a product is arranged in the fixed disc (203).
3. The canting mechanism of claim 1 wherein: the driving assembly (204) comprises two first air cylinders fixedly connected to a first fixing frame (202), and a fixing disc (203) is connected to a driving shaft of each first air cylinder.
4. A turnover mechanism as set forth in claim 3 in which: the first cylinder is a mechanical rodless guide rail cylinder.
5. A turnover mechanism as set forth in claim 1 in which: the rotating assembly (205) is a rotating cylinder, and the driving end of the rotating cylinder is fixedly connected with the first fixing frame (202).
6. The canting mechanism of claim 1 wherein: a first jacking assembly (206) is arranged below the fixed disc (203) on the mechanism support (201), and the fixed disc (203) is supported by the first jacking assembly (206) during grinding.
CN202220131545.6U 2022-01-18 2022-01-18 Turnover mechanism Active CN217097216U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220131545.6U CN217097216U (en) 2022-01-18 2022-01-18 Turnover mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220131545.6U CN217097216U (en) 2022-01-18 2022-01-18 Turnover mechanism

Publications (1)

Publication Number Publication Date
CN217097216U true CN217097216U (en) 2022-08-02

Family

ID=82595967

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220131545.6U Active CN217097216U (en) 2022-01-18 2022-01-18 Turnover mechanism

Country Status (1)

Country Link
CN (1) CN217097216U (en)

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