CN221232252U - High efficiency square silicon rod measuring assembly for processingequipment - Google Patents

High efficiency square silicon rod measuring assembly for processingequipment Download PDF

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Publication number
CN221232252U
CN221232252U CN202322870611.9U CN202322870611U CN221232252U CN 221232252 U CN221232252 U CN 221232252U CN 202322870611 U CN202322870611 U CN 202322870611U CN 221232252 U CN221232252 U CN 221232252U
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CN
China
Prior art keywords
measuring
cylinder
silicon rod
square silicon
high efficiency
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CN202322870611.9U
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Chinese (zh)
Inventor
杨焱
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Nanjing Sanxin Semiconductor Equipment Manufacturing Co ltd
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Nanjing Sanxin Semiconductor Equipment Manufacturing Co ltd
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Abstract

The utility model provides a square silicon rod processingequipment of high efficiency is with measuring subassembly, includes frame (1), characterized by: the machine frame is characterized in that the machine frame (1) is provided with a cylinder box (2), a telescopic cylinder (3) is arranged in the cylinder box (2), a cylinder shaft of the telescopic cylinder (3) is connected with two measuring heads (4) through a connecting rod, the measuring heads (4) are covered with a pneumatic waterproof door (5) capable of moving up and down, the pneumatic waterproof door (5) is provided with a measuring hole (6) for the measuring heads (4) to stretch out, and a corresponding through hole is also formed in a machine frame housing. The utility model has simple structure, accurate measurement and good waterproof performance.

Description

High efficiency square silicon rod measuring assembly for processingequipment
Technical Field
The utility model relates to a machining technology, in particular to a processing device of a cuboid silicon rod of a solar cell panel raw material, and specifically relates to a measuring component for a high-efficiency square silicon rod processing device.
Background
Silicon rods are an indispensable raw material for solar panels. According to the manufacturing process of the solar cell panel, the cuboid-shaped silicon rod needs to be subjected to surface grinding of four surfaces and edge cutting and rounding of four edges before slicing and forming. The traditional horizontal grinding machine is in a serial grinding mode, three stations cannot work simultaneously, when the silicon rod is fed, the rough grinding and the fine grinding are on standby when the silicon rod works, and other stations are on standby when the silicon rod works, so that the processing efficiency is low. If a chamfering/rounding device is added, at least two/three devices are needed to meet the requirement of slicing processing, and the increase of the number of the devices must result in the increase of the purchase cost, the installation site of the devices and the labor cost of operation. Therefore, the applicant applies for a method and a device for improving the processing efficiency of square silicon rods, and the application number is as follows: 2023101502023, which relates to the measurement of machining surface parameters to determine whether the grinding accuracy meets the set requirements, the roughness of the bar surface needs to be measured in real time when the bar is subjected to rough grinding and fine grinding, but the existing measuring device cannot meet the measurement requirements and needs to be improved.
Disclosure of utility model
The utility model aims at solving the problem that the conventional rectangular silicon rod processing device is difficult to measure the grinding roughness, and the measurement component for the high-efficiency square silicon rod processing device, which has the advantages of high automation degree, reliable work and good waterproof performance, is urgently needed to be designed.
The technical scheme of the utility model is as follows:
The utility model provides a square silicon rod processingequipment of high efficiency is with measuring subassembly, includes frame 1, characterized by: the machine frame 1 on install cylinder box 2, install flexible cylinder 3 in the cylinder box 2, the cylinder axle of flexible cylinder 3 passes through the connecting rod and links to each other with two measuring heads 4, the cover is equipped with pneumatic waterproof door 5 that can reciprocate on the measuring head 4, is equipped with the measuring aperture 6 that supplies measuring head 4 to stretch out on the pneumatic waterproof door 5, also is equipped with corresponding through-hole on the frame housing (not shown in the figure).
The upper part of the telescopic cylinder 3 in the cylinder box 2 is provided with a sensing switch 7 for sensing whether the measuring head extends out.
A projecting amount induction switch 8 is arranged near the measuring head 4.
The beneficial effects of the utility model are as follows:
The utility model has simple structure, accurate measurement and good waterproof performance.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Detailed Description
The utility model is further illustrated below with reference to examples.
As shown in fig. 1.
The utility model provides a square silicon rod processingequipment of high efficiency is with measuring subassembly, includes frame 1, frame 1 on install cylinder case 2, install flexible cylinder 3 in the cylinder case 2, the cylinder axle of flexible cylinder 3 passes the side of cylinder case through the connecting rod and links to each other with two measuring heads 4, the cover is equipped with pneumatic water proof door 5 that can reciprocate on the measuring head 4, be equipped with the measuring aperture 6 that supplies measuring head 4 to stretch out on the pneumatic water proof door 5, also be equipped with corresponding through-hole on the frame housing (not shown in the figure). In the concrete implementation, a sensing switch 7 for sensing whether the measuring head extends out or not is arranged in the cylinder box 2 and at the upper part of the telescopic cylinder 3, and an extension sensing switch 8 is also arranged near the measuring head 4.
According to the utility model, 2 measuring sensors are arranged in total, during measurement, the pneumatic waterproof door 5 is moved downwards by the air cylinder, the measuring hole on the pneumatic waterproof door 5 is opposite to the measuring head 4, the air cylinder 3 is telescopic, the air cylinder shaft stretches out, and simultaneously, the two measuring heads stretch out of the measuring hole 6 and the through hole on the frame housing to measure a workpiece, and the measuring heads stretch out and touch the surface of the workpiece to read data.
The utility model is not related in part to the same as or can be practiced with the prior art.

Claims (3)

1. The utility model provides a square silicon rod processingequipment of high efficiency is with measuring subassembly, includes frame (1), characterized by: the machine frame is characterized in that the machine frame (1) is provided with a cylinder box (2), a telescopic cylinder (3) is arranged in the cylinder box (2), a cylinder shaft of the telescopic cylinder (3) is connected with two measuring heads (4) through a connecting rod, the measuring heads (4) are covered with a pneumatic waterproof door (5) capable of moving up and down, the pneumatic waterproof door (5) is provided with a measuring hole (6) for the measuring heads (4) to stretch out, and a corresponding through hole is also formed in a machine frame housing.
2. The measurement assembly for a high efficiency square silicon rod processing apparatus according to claim 1, wherein: and an inductive switch (7) for sensing whether the measuring head stretches out or not is arranged in the cylinder box (2) and at the upper part of the telescopic cylinder (3).
3. The measuring module for a high-efficiency square silicon rod processing apparatus according to claim 2, wherein: and an extension inductive switch (8) is arranged near the measuring head (4).
CN202322870611.9U 2023-10-25 High efficiency square silicon rod measuring assembly for processingequipment Active CN221232252U (en)

Publications (1)

Publication Number Publication Date
CN221232252U true CN221232252U (en) 2024-06-28

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