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Tempering glass sheets by cooling comprising sublimation quenching

机译:通过包括升华淬火的冷却对玻璃板进行回火

摘要

@ In tempering a glass sheet to a high temper by heating the sheet to approximately its softening point followed by rapid chilling using a quenching composition that comprises a tempering medium having high heat transfer characteristics, the heat-softened glass sheets are protected from breakage during fabrication and resulting optical distortion by applying the tempering medium through exit orifices of a delivery system toward the heated glass in a novel cycle. The initially applied tempering medium has a low heat transfer rate and is mixed with a second tempering medium having a higher heat transfer rate to gradually increase the heat transfer rate of the mixed tempering medium. In a specific embodiment, dry air is the first tempering medium and a sublimable material, such as carbon dioxide, is the second tempering medium. The delivery system has an uninsulated portion that assures that initially the sublimable material is applied as a gas. Dry air which has a lesser heat transfer coefficient than the sublimable material in its gaseous state, may be supplied to the uninsulated portion if humidity conditions require so that dry air having a lesser heat transfer coefficient is initially directed through the exit orifices followed by mixtures of dry air with increasing concentrations of said sublimable material in the gaseous state followed by increasing concentrations of solid particles of said sublimable material. Movement of the glass sheet is coordinated with movement of the delivery system for said quenching composition to avoid "batter".
机译:通过将玻璃板加热到大约其软化点,然后使用包含具有高传热特性的回火介质的淬火组合物进行快速冷却,将玻璃板回火至高温,可以保护热软化的玻璃板在制造过程中不被破坏并且通过以新颖的循环通过输送系统的出口孔将回火介质朝向加热的玻璃施加加热玻璃,从而导致光学畸变。最初施加的回火介质的传热率低,并且与具有较高传热率的第二回火介质混合以逐渐增加混合回火介质的传热率。在一个具体的实施方案中,干燥空气是第一回火介质,可升华的材料例如二氧化碳是第二回火介质。输送系统具有未绝缘的部分,可确保最初将可升华的材料作为气体施加。如果湿度条件需要,可以将传热系数比处于气态的可升华材料的传热系数小的干燥空气供应到未绝缘的部分,这样一来,传热系数较小的干燥空气首先会被引导通过出口孔,然后通过干燥的空气,其中气态的所述可升华材料的浓度增加,随后所述气升华的固体颗粒的浓度增加。玻璃板的运动与用于所述淬火组合物的输送系统的运动相协调,以避免“糊状物”。

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