Device for measuring long crystal bar of ingot furnace

A measuring device and ingot furnace technology, applied in the directions of crystal growth, single crystal growth, single crystal growth, etc., can solve the problems of large error, fracture of long crystal rods, and long artificial reading time, so as to solve the problem of large error and reduce lateral The probability of breaking, the effect of reducing the time spent in the silicon solution

Inactive Publication Date: 2013-11-27
TIANWEI NEW ENERGY HLDG
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  • Description
  • Claims
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AI Technical Summary

Problems solved by technology

[0006] The purpose of the present invention is to provide a measuring device for growing crystal ingots in ingot furnaces, which solves the problems that in the cur

Method used

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  • Device for measuring long crystal bar of ingot furnace
  • Device for measuring long crystal bar of ingot furnace

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Embodiment

[0024] Such as figure 1 As shown, a measuring device for growing crystal rods in an ingot furnace of the present invention includes two chutes 2 installed outside the long crystal hole on the top of the ingot furnace 1, the chutes 2 are placed vertically, and the two chutes 2 are placed There are concave grooves, the concave grooves of the two chute 2 are opposite and placed in parallel, a sliding frame 3 is installed in the chute 2, and a roller 6 is installed at the end of the sliding frame 3, and the roller 6 is limited to In the chute 2, the sliding frame 3 can be pushed to move up and down freely along the chute 2 in the vertical direction. A clamp 4 is arranged on the sliding frame 3. The clamp 4 is located directly above the long crystal hole, and the long crystal hole is clamped by the clamp 4. The crystal rod 5 and the sliding frame 3 move up and down in the chute 2 to promote the insertion and extraction of the long crystal rod, and the locking ring 7 is installed on...

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Abstract

The invention discloses a device for measuring a long crystal bar of an ingot furnace. The device comprises two slide grooves which are vertically formed in the top of the ingot furnace, and a measuring system for the height of the long crystal bar, wherein openings of the slide grooves are opposite; the two slide grooves are internally provided with a slide frame which can move freely up and down; a clamp for clamping the long crystal bar is arranged in the middle of the slide frame. The device disclosed by the invention is provided with the measuring system for the height of the long crystal bar, so that the height of the long crystal bar can be rapidly read and recorded and the problem in the prior art that an error is great due to a read angle is solved; meanwhile, as the measurement can be carried out in time, measurement time is shortened, staying time of the long crystal bar in silicon liquid is shortened and the use risk of the long crystal bar is reduced; the long crystal bar is prevented from being stuck in a silicon ingot for growing a crystal and the finished-product rate of the silicon ingot is improved.

Description

technical field [0001] The invention relates to a device for growing crystals in an ingot furnace and a melting test device in the field of photovoltaics, in particular to a measuring device for growing crystal rods in an ingot furnace. Background technique [0002] Ingot casting furnace is a special equipment specially designed for solar energy industry, and it is a necessary equipment for polysilicon ingot casting. This type of equipment can complete the ingot casting process automatically or manually, with high efficiency and energy saving. It uses advanced computer control technology to achieve stable and directional solidification. The polycrystalline silicon ingots produced are of high quality and large specifications. The advantages of this type of equipment are: high production efficiency, high product quality; fast heating speed, high efficiency; safe and reliable, multiple equipment protection to ensure personal safety; all Chinese operation, automatic alarm throug...

Claims

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Application Information

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IPC IPC(8): C30B28/06C30B29/06
Inventor 林洪峰陶亚明李书森刘兴翀赵秀生
Owner TIANWEI NEW ENERGY HLDG
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