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Crystalline silicon vertical squarer and using method thereof

A technology of prescribing machine and crystalline silicon, which is applied in manufacturing tools, stone processing equipment, work accessories, etc., can solve the problems of increasing the speed and low efficiency of crystalline silicon, and achieve the effect of improving prescribing efficiency and wide application range.

Pending Publication Date: 2020-05-29
QINGDAO GAOCE TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Crystalline silicon is the main raw material of solar panels. Crystalline silicon needs to be truncated and sliced ​​before it can be made into crystalline silicon sheets. The previous equipment can only perform edge cutting operation on a silicon rod after detecting the silicon crystal line, which has low efficiency and seriously affects the speed improvement of the entire processing process of crystal silicon. Therefore, it is possible to realize simultaneous detection of multiple crystal silicon lines Hekaifang's automated assembly line operation is of great significance to the processing of crystalline silicon

Method used

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  • Crystalline silicon vertical squarer and using method thereof
  • Crystalline silicon vertical squarer and using method thereof
  • Crystalline silicon vertical squarer and using method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] refer to figure 1, a vertical squaring machine for crystalline silicon, comprising a fuselage base 1, a loading and unloading unit and a cutting unit are arranged on the fuselage base 1 along the conveying direction of the crystalline silicon, and the loading and unloading unit includes a rotary table 2 and crystal silicon detection devices 3 located on both sides of the rotary table 2, the cutting unit includes a cutting assembly 4, a winding assembly 10 and a lifting device 9, the cutting assembly 4 is arranged above the rotary table 2, and It is connected with the lifting device 9 to cut the crystalline silicon on the rotary table 2. At the same time, the winding assembly 10 is arranged on both sides of the lifting device 9, and the crystalline silicon on the rotary table 2 is transported to In the cutting area, the square extraction operation is performed through the cutting assembly 4 .

[0051] refer to figure 1 , figure 2 , image 3 , the rotary table 2 is p...

Embodiment 2

[0054] refer to figure 1 , Figure 4 The crystal wire detection device 3 is symmetrically arranged on both sides of the rotary table 2, and the crystal wire detection device 3 includes a detection base 301, a detection bracket 302, a gripper 303 and a gripper cylinder. The detection base 301 is slidably connected to the fuselage base 1 through a longitudinal feed screw, and the longitudinal feed screw is arranged along the conveying direction of the crystal silicon; meanwhile, the detection bracket 302 is arranged above the detection base 301, which passes through The horizontal feed screw is slidably connected to the detection base 301 , and the horizontal feed screw is arranged along a direction perpendicular to the transport direction of the crystal silicon. The detection bracket 302 is provided with a gripper 303 and a gripper cylinder, two of the grippers 303 and the gripper cylinder are arranged symmetrically, and the gripper cylinder and the grippers 303 are all arrang...

Embodiment 3

[0056] refer to Figure 5 , Figure 6 , Figure 7 , Figure 8 , a cutting assembly 4 is arranged above the cutting area, and the cutting assembly 4 is slidably connected with the lifting device 9, and the lifting device 9 is vertically arranged. At the same time, on both sides of the lifting device 9, there are The winding assembly 10 cooperates with the cutting assembly 4 .

[0057] refer to Figure 5 , Figure 6 , the cutting assembly 4 includes a wire mesh frame 401 and a warp wheel set 5 and a weft wheel set 6 that are vertically staggered on the wire mesh frame 401, and the warp wheel set 5 and the weft wheel set 6 are all parallel to The wire mesh frame 401 is set, the number of the warp wheel set 5 and the weft wheel set 6 are the same, and the two are not located in the same plane, and at the same time, a guide wheel set 7 is arranged below the wire mesh frame 401, The warp wheel set 5 and the latitudinal wheel set 6 are respectively driven by a wire web driving ...

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Abstract

The invention relates to a crystalline silicon vertical squarer and a using method thereof, and belongs to the technical field of crystalline silicon machining equipment. The crystalline silicon vertical squarer comprises a machine body base, wherein a feeding and discharging unit and a cutting unit are arranged on the machine body base in the conveying direction of crystalline silicon, the feeding and discharging unit involves a rotary table and crystalline silicon line detection devices located at two sides of the rotary table, the cutting unit involves a cutting assembly, a winding assemblyand a lifting device, the cutting assembly is arranged above the rotary table and connected with the lifting device to cut crystalline silicon located on the rotary table, and the winding assembly isarranged on the two sides of the lifting device. According to the squarer and the using method, the crystalline silicon is in a vertical state through a crystalline silicon fixing assembly on the rotary table, squaring operation is conducted on the multiple sets of crystalline silicon through the multiple sets of number sign-shaped cutting wire frames simultaneously, squaring operation on the crystalline silicon is completed at a time in the vertical direction, the working efficiency is greatly improved, and the development prospect is wide.

Description

technical field [0001] The invention belongs to the technical field of crystal silicon processing equipment, and in particular relates to a crystal silicon vertical square cutting machine and a use method thereof. Background technique [0002] Crystalline silicon is the main raw material of solar panels. Crystalline silicon needs to be truncated and sliced ​​before it can be made into crystalline silicon sheets. The previous equipment can only perform edge cutting operation on a silicon rod after detecting the silicon crystal line, which has low efficiency and seriously affects the speed improvement of the entire processing process of crystal silicon. Therefore, it is possible to realize simultaneous detection of multiple crystal silicon lines He Kaifang's automated assembly line operation is of great significance to the processing of crystalline silicon. Contents of the invention [0003] Aiming at various deficiencies in the prior art, in order to solve the above proble...

Claims

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Application Information

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IPC IPC(8): B28D5/04B28D7/00
CPCB28D5/042B28D5/045B28D7/00
Inventor 王新辉杨德飞刘绪军薛俊兵
Owner QINGDAO GAOCE TECH CO LTD