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A special device for observing and sorting sapphire crystal bubbles without looking up and full viewing angle

A technology for sapphire crystals and special devices, which is applied in the directions of crystal growth, single crystal growth, single crystal growth, etc. It can solve the problems of affecting the observation effect and hurting the eyes, and achieves the effects of increasing clarity, mild irradiation, and convenient observation and sorting

Active Publication Date: 2016-04-20
EGING PHOTOVOLTAIC TECHNOLOGY CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing observation method is to use a laser pointer to directly irradiate the outer surface of the sapphire crystal to observe, and the laser light will be reflected on the outer surface of the sapphire crystal. Because there is strong reflection when the laser pointer is directly irradiated on the outer surface of the sapphire crystal to observe, using the existing The observation and sorting method will not only hurt people's eyes, but also affect the observation effect

Method used

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  • A special device for observing and sorting sapphire crystal bubbles without looking up and full viewing angle
  • A special device for observing and sorting sapphire crystal bubbles without looking up and full viewing angle
  • A special device for observing and sorting sapphire crystal bubbles without looking up and full viewing angle

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specific Embodiment approach

[0020] A special device for observing and sorting sapphire crystal bubbles without looking up at a full viewing angle, such as figure 1 , figure 2 , image 3 As shown, it includes a highly transparent glass container 1 filled with purified water, a lifting pulley 2, a buckle tether 3, a support frame 4 and a plane mirror 5, wherein the highly transparent glass container 1 is an open cylinder, and the high transparent glass container 1 The outer diameter is 266mm, the inner cavity diameter is 250mm, the height is 500mm, and the bottom thickness is 8mm. On the outer wall of the highly transparent glass container 1, lifting lugs 6 are arranged symmetrically, and the lifting lugs 6 are arranged near the opening of the highly transparent glass container 1. end, the support frame 4 is arranged below the highly transparent glass container 1, the support frame 4 includes a support panel 41 and a support frame body 42, the support panel 41 is fixed on the upper end surface of the sup...

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Abstract

The invention relates to a special device for observing and sorting air bubbles of a sapphire crystal with free-upward view and full view angle. The special device comprises a high-transparent glass container containing purified water, a lifting pulley, a buckling rope, a support frame and a plane mirror. The support frame is arranged below the high-transparent glass container; a support seam allowance hole for placing the high-transparent glass container is arranged at a center of a support panel of the support frame; the plane mirror is arranged at the bottom of the support frame and is in parallel with the bottom of the high-transparent glass container; and the lifting pulley is positioned above the high-transparent glass container. When laser irradiation is carried out on the surface of the crystal by people with a laser pen, laser penetrates through a wall body of the high-transparent glass container and the purified water and then irradiates the sapphire crystal. Observing and sorting the sapphire crystal by utilizing the device of the invention, the people are easy to better observe and sort the sapphire crystal and can carry out full angle observation of 360 degrees on the air bubbles in the sapphire crystal, and the people's eyes can not be hurt.

Description

Technical field: [0001] The invention relates to a crystal observation device, in particular to a bubble observation and sorting device in a sapphire crystal. technical background: [0002] Sapphire (sapphire) is Al 2 o 3 Single crystal, with high melting point (about 2050 ℃), high hardness, good thermal conductivity, wide light transmission band, good electrical insulation, strong acid and alkali corrosion resistance, etc. Currently producing large size Al 2 o 3 The methods of single crystal include kyropoulos method, pulling method, heat exchange method and flame fusion method, among which the most widely used and the most mature production technology is the kyropoulos method, but bubbles are also easily generated in the obtained sapphire single crystal, which greatly Large bubbles will form millimeter-scale cavities, and small bubbles will appear as a large number of cloud-like scattering particles. Whether there are bubbles in the sapphire crystal or not, the size of...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C30B15/20C30B29/20
Inventor 刘世杰
Owner EGING PHOTOVOLTAIC TECHNOLOGY CO LTD
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