Method for heating yttrium lithium fluoride crystal at high frequency
A technology of yttrium lithium fluoride and high-frequency heating, applied in the field of high-frequency heating method, can solve the problems of raw material waste, serious volatilization of raw material lithium fluoride, and large deviation of raw material components.
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Embodiment example 1
[0031] Implementation case 1: 1. Select high-purity graphite to make a sintering mold (crucible) 2. Determine the weight of yttrium fluoride raw material, put it in a polytetrafluoro mold groove and press it statically to form a curved sheet. 3. Use a resistance single crystal pulling furnace to draw a high vacuum. Furnace installation: first clean the furnace, adjust the heating graphite resistance plate, add high temperature resistant inorganic salt high temperature resistant crystal slats (YAG crystal), the crystal has good insulation and thermal conductivity. Put the graphite tray on the crystal slats, adjust the center position, put the graphite crucible filled with raw materials, install the graphite resistor, make a transverse gradient molybdenum skin insulation, and add a multi-layer molybdenum skin cover. Check the observation port to directly see the raw materials in the crucible mouth, so as to observe the melting state of the raw materials. Check the gap between t...
Embodiment example 2
[0033] Implementation case 2: redesign the mold (crucible), the four sides of the upper mouth are 50 wires larger than the four sides of the lower mouth, forming an inverted character, and a graphite material guide barrel is added to the upper mouth to protect the raw materials from entering the crucible.
[0034]Furnace installation: first clean the furnace, adjust the heating graphite resistance plate, add high temperature resistant inorganic salt high temperature resistant crystal slats (YAG crystal), the crystal has good insulation and thermal conductivity. Put the graphite tray on the crystal slats, adjust the center position, put the graphite crucible filled with raw materials, install the graphite resistor, make a transverse gradient molybdenum skin insulation, and add a multi-layer molybdenum skin cover. Check the observation port to directly see the raw materials in the crucible mouth, so as to observe the melting state of the raw materials. Check the gap between the ...
Embodiment example 3
[0036] Implementation case 3: Considering the time and cost of firing the entire heat preservation, according to the temperature field of the single crystal furnace, design the mold first, make a 6cm high heat preservation one-sixth circular plate, and then divide it into small pieces with an inner circle cutting machine.
[0037] Furnace installation: first clean the furnace, adjust the heating graphite resistance plate, add high temperature resistant inorganic salt high temperature resistant crystal slats (YAG crystal), the crystal has good insulation and thermal conductivity. Put the graphite tray on the crystal slats, adjust the center position, put the graphite crucible filled with raw materials, install the graphite resistor, make a transverse gradient molybdenum skin insulation, and add a multi-layer molybdenum skin cover. Check the observation port to directly see the raw materials in the crucible mouth, so as to observe the melting state of the raw materials. Check th...
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