CN217867105U - Automatic lifting multilayer material sheet bearing platform - Google Patents

Automatic lifting multilayer material sheet bearing platform Download PDF

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Publication number
CN217867105U
CN217867105U CN202221611092.3U CN202221611092U CN217867105U CN 217867105 U CN217867105 U CN 217867105U CN 202221611092 U CN202221611092 U CN 202221611092U CN 217867105 U CN217867105 U CN 217867105U
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CN
China
Prior art keywords
material sheet
lifting
lifting device
main board
bearing platform
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Active
Application number
CN202221611092.3U
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Chinese (zh)
Inventor
武高伟
徐庆章
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Iser Semiconductor Technology Jiangsu Co ltd
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Iser Semiconductor Technology Jiangsu Co ltd
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Priority to CN202221611092.3U priority Critical patent/CN217867105U/en
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Abstract

The utility model provides an automatic lift multilayer tablet load-bearing platform, includes cylinder transmission device and tablet elevating gear, and a plurality of transmission cylinders of cylinder transmission device are the straight line and distribute according to fixed distance between every transmission cylinder. The material sheet lifting device comprises a carrier plate and a main plate; a plurality of material sheet supporting columns distributed in an array are fixedly arranged on the support plate, a lifting device is fixedly arranged on the main board, the support plate is connected with the lifting end of the lifting device, and the lifting device drives the support plate to do lifting motion relative to the main board; the material sheet lifting device is arranged beside the roller transmission device, the material sheet supporting columns are distributed among the plurality of transmission rollers in a staggered mode, and the main board is provided with an inductor for detecting the position of the carrier plate. The device realizes caching of the conveyed material pieces of the curing oven, realizes large-batch caching of the material pieces by matching with the roller conveying device, realizes multi-layer caching in the vertical direction through lifting, reduces the occupied space and improves the conveying efficiency.

Description

Automatic lifting multilayer material sheet bearing platform
Technical Field
The utility model relates to a transmission device field especially relates to an automatic multilayer tablet load-bearing platform goes up and down.
Background
The camera module is transmitted out after passing through the curing oven and is processed next step, and the roller transmission device is connected to the transmission outlet of the curing oven, but when the next step of working unit breaks down, the material sheet that leads to output is too much, and processing unit on next step can't hold so many material sheets and handle this, so need a bearing platform that can buffer memory too many material sheets this moment, and can be according to actual conditions to the material sheet after buffering transmits.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model adopts the following technical scheme:
the utility model provides an automatic multilayer tablet load-bearing platform goes up and down, includes cylinder transmission device, and a plurality of transmission cylinders of cylinder transmission device are the straight line and distribute, and distribute according to fixed distance between every transmission cylinder, and the one end of every transmission cylinder is connected with the synchronizing wheel, and cylinder transmission device's driving motor is connected with the drive wheel, is connected through synchronous belt drive between each synchronizing wheel and the drive wheel.
Besides, in order to buffer the material sheets on the roller conveying device, a material sheet lifting device is further arranged. The material sheet lifting device comprises a carrier plate and a main plate; a plurality of material sheet supporting columns which are distributed in an array manner are fixedly arranged on the carrier plate, a lifting device is fixedly arranged on the main board, the carrier plate is connected with the lifting end of the lifting device, and the lifting device drives the carrier plate to do lifting motion relative to the main board; the material sheet lifting device is arranged beside the roller transmission device, the material sheet supporting columns are distributed among the plurality of transmission rollers in a staggered mode, and the main board is provided with an inductor for detecting the position of the carrier plate.
Specifically, the lifting device is a screw rod lifter, the screw rod lifter is fixedly mounted on a main board, the support plate is connected with a lifting end of the screw rod lifter, a guide rail is fixedly mounted on the main board, a sliding table is arranged on the guide rail, and the support plate is fixedly connected with the sliding table.
Specifically, set up the heavy groove that subtracts of a plurality of fretworks on the support plate, subtract heavy groove evenly distributed on the support plate.
Specifically, the inductor is a groove-shaped inductor, an induction groove of the groove-shaped inductor is fixedly mounted on the fixing plate, an induction sheet of the groove-shaped inductor is fixedly mounted on the carrier plate, and the induction groove corresponds to the induction sheet in position.
Specifically, a plurality of in-place optical fiber sensors are fixedly mounted on the fixing plate.
In conclusion, the device has the following advantages: the device realizes caching of the conveyed material pieces of the curing oven, realizes large-batch caching of the material pieces by matching with the roller conveying device, realizes multi-layer caching in the vertical direction through lifting, reduces the occupied space and improves the conveying efficiency.
Drawings
FIG. 1 is a schematic structural diagram of an automatic lifting multilayer material sheet bearing platform;
FIG. 2 is a top view of an automatically elevating multiple web load-bearing platform;
FIG. 3 is a schematic diagram of a carrier plate in an automatic lifting multilayer material sheet carrying platform;
fig. 4 is a schematic structural diagram of an automatic lifting multilayer material sheet carrying platform after a material sheet supporting column is removed from a carrier plate;
reference numerals: 1 a transport drum; 2, in-place optical fiber sensor; 3, synchronizing wheels; 4 driving the wheels; 5 driving the motor; 6 material sheet supporting columns; 7 a screw elevator; an 8-slot type inductor; 9 guide rails.
Detailed Description
The present invention will be further described with reference to fig. 1 to 4.
An automatic lifting multilayer material sheet bearing platform:
including cylinder transmission device, cylinder transmission device's a plurality of transmission cylinders 1 are the straight line and distribute, and distribute according to fixed distance between every transmission cylinder 1, and every transmission cylinder 1's one end is connected with synchronizing wheel 3, and cylinder transmission device's driving motor 5 is connected with drive wheel 4, is connected through synchronous belt drive between each synchronizing wheel 3 and the drive wheel 4.
The device also comprises a material sheet lifting device; the tablet elevating gear includes support plate, mainboard. A plurality of material sheet supporting columns 6 distributed in an array are fixedly arranged on the carrier plate, the material sheet lifting device is arranged beside the roller conveying device, the material sheet supporting columns 6 are distributed among the plurality of conveying rollers 1 in a staggered mode, and each row of material sheet supporting columns 6 are arranged between the two rollers. In order to realize the caching of the multilayer tablets, the screw rod lifter 7 is fixedly arranged on the main board, the carrier plate is connected with the lifting end of the screw rod lifter 7, the guide rail 9 is fixedly arranged on the main board, the sliding table is arranged on the guide rail 9, and the carrier plate is fixedly connected with the sliding table, so that the screw rod lifter 7 drives the carrier plate to do lifting motion relative to the main board, and the tablets can be cached on the multilayer tablet supporting columns 6. In order to bring the web support columns 6 into position with the rollers, the web transported on the roller transport is transferred to the web support columns 6 and subsequently signals are transmitted to the screw elevator 7 to cause the screw elevator 7 to be raised and lowered. Therefore, the groove-shaped inductor 8 is further arranged, the induction groove of the groove-shaped inductor 8 is fixedly arranged on the fixing plate, the induction sheet of the groove-shaped inductor 8 is fixedly arranged on the carrier plate, and the induction groove corresponds to the induction sheet. The groove-shaped sensor 8 and the screw rod lifter 7 are respectively electrically connected with the controller, the groove-shaped sensor 8 senses the position of the carrier plate and transmits a signal to the controller, and the controller controls the screw rod lifter 7 to lift and lower to a proper position.
In addition, in order to lighten the weight of the carrier plate, a plurality of hollowed-out weight reduction grooves are formed in the carrier plate, and the weight reduction grooves are uniformly distributed in the carrier plate. In order to detect the position of a material sheet on the roller transmission device and stop the transmission of the roller transmission device, the material sheet is further buffered by lifting of the material sheet lifting device, a plurality of in-place optical fiber sensors 2 are fixedly mounted on the fixing plate, the in-place optical fiber sensors 2 detect the position of the material sheet on the roller transmission device, the in-place optical fiber sensors 2 are electrically connected with the controller respectively, the position where the material sheet is transmitted can be determined through the in-place optical fiber sensors 2, then a signal is transmitted to the controller, and the controller further controls the lifting device to lift so as to buffer the material sheet.
The working process of the device is as follows: when the tablets in the curing furnace need to be cached, the roller transmission device transmits the tablets until the in-place optical fiber sensor 2 detects the position of the tablets on the roller transmission device, then the roller transmission device stops transmission, the in-place optical fiber sensor 2 transmits signals to the controller, the controller controls the tablet lifting device to lift the tablets upwards until all tablets are borne on one layer of tablet supporting columns 6, then the controller controls the tablet lifting device to lift the tablets upwards until the next layer of empty tablet supporting columns 6 are located right below the transmission roller, and when the next batch of tablets are transmitted from the roller transmission device, the operations are repeated until all caching on the tablets is completed. When the material sheets cached on the slide glass need to be discharged, the roller transmission device stops operating, the material sheet lifting device moves the slide glass downwards, so that the material sheet support columns 6 which are filled with a layer of material sheets are aligned with the transmission roller, and then the roller transmission device starts operating, so that the cached material sheets are transmitted.
In conclusion, the device has the following advantages: the device realizes caching of the conveyed material pieces of the curing oven, realizes large-batch caching of the material pieces by matching with the roller conveying device, realizes multi-layer caching in the vertical direction through lifting, reduces occupied space and improves conveying efficiency.
It should be understood that the above detailed description of the present invention is only for illustrative purposes and is not limited to the technical solutions described in the embodiments of the present invention. It will be understood by those skilled in the art that the present invention may be modified and equivalents substituted for elements thereof to achieve the same technical result; as long as the use requirement is satisfied, the utility model is within the protection scope.

Claims (5)

1. An automatic lifting multilayer material sheet bearing platform comprises a roller transmission device, a plurality of transmission rollers of the roller transmission device are linearly distributed and distributed according to a fixed distance, and the automatic lifting multilayer material sheet bearing platform is characterized in that,
the device also comprises a material sheet lifting device; the material sheet lifting device comprises a carrier plate and a main plate; the support plate is fixedly provided with a plurality of material sheet support columns distributed in an array manner, the main board is fixedly provided with a lifting device, the support plate is connected with the lifting end of the lifting device, and the lifting device drives the support plate to do lifting motion relative to the main board; the material sheet lifting device is arranged beside the roller transmission device, the material sheet supporting columns are distributed among the plurality of transmission rollers in a staggered mode, and the main board is provided with an inductor for detecting the position of the carrier plate.
2. The automatic lifting multilayer material sheet bearing platform is characterized in that the lifting device is a lead screw lifter, the lead screw lifter is fixedly mounted on the main board, the support board is connected with the lifting end of the lead screw lifter, a guide rail is fixedly mounted on the main board, a sliding table is arranged on the guide rail, and the support board is fixedly connected with the sliding table.
3. The automatic lifting multilayer material sheet bearing platform according to claim 1, wherein the carrier plate is provided with a plurality of hollow-out lightening grooves, and the lightening grooves are uniformly distributed on the carrier plate.
4. The automatic lifting multilayer material sheet carrying platform as claimed in claim 1, wherein the sensor is a groove-shaped sensor, the sensing groove of the groove-shaped sensor is fixedly installed on the fixing plate, the sensing piece of the groove-shaped sensor is fixedly installed on the carrier plate, and the sensing groove corresponds to the sensing piece.
5. The automatic lifting multilayer material sheet bearing platform as claimed in claim 4, wherein a plurality of in-position optical fiber sensors are fixedly mounted on the fixing plate.
CN202221611092.3U 2022-06-24 2022-06-24 Automatic lifting multilayer material sheet bearing platform Active CN217867105U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221611092.3U CN217867105U (en) 2022-06-24 2022-06-24 Automatic lifting multilayer material sheet bearing platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221611092.3U CN217867105U (en) 2022-06-24 2022-06-24 Automatic lifting multilayer material sheet bearing platform

Publications (1)

Publication Number Publication Date
CN217867105U true CN217867105U (en) 2022-11-22

Family

ID=84096742

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221611092.3U Active CN217867105U (en) 2022-06-24 2022-06-24 Automatic lifting multilayer material sheet bearing platform

Country Status (1)

Country Link
CN (1) CN217867105U (en)

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