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Uses and requirements for thermal imaging in the television glass industry

机译:电视玻璃行业中热成像的用途和要求

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Over the last 55 years, direct-view televisions have evolved from small black-and-white models to large, color models. Screen area has increased thirty-fold, requiring thicker glass to support the high vacuum load in the picture tube. The largest tubes now require more than 140 1bs. (65 kg) of glass, and are more than 1" (2.5 cm) thick in the screen area. These newer, larger televisions must support high-resolution digital signals, with much tighter requirements for screen inside contour and image quality. Manufacturing these large, thick, high-quality screens on old production lines is very challenging. This paper describes some of the ways that thermal imaging is used to meet these challenges. Some uses are simple, such as predictive maintenance inspections common in many factories. Other uses are more complex, such as evaluating metal wear in press equipment and providing data to validate complex models of glass forming. This paper also explores some of the special requirements placed on thermal imaging equipment in a television glass plant. Among other things, these include high operating and ambient temperatures (> 1000 deg C) and the ability to measure temperatures in both highly reflective and semi-transparent materials.
机译:在过去的55年中,直视电视已经从小型的黑白机型演变为大型的彩色机型。屏幕面积增加了三十倍,需要更厚的玻璃来支撑显像管中​​的高真空负载。现在最大的电子管需要140多个1bs。 (65公斤)玻璃,屏幕区域厚度超过1英寸(2.5厘米)。这些新型较大的电视必须支持高分辨率数字信号,并且对屏幕内部轮廓和图像质量的要求更加严格。旧生产线上的大型,厚实,高质量的屏幕非常具有挑战性,本文介绍了一些使用热成像技术来应对这些挑战的方法,其中一些用法很简单,例如许多工厂中常见的预测性维护检查。更复杂,例如评估冲压设备中的金属磨损并提供数据以验证复杂的玻璃成型模型;本文还探讨了电视玻璃工厂对热成像设备的一些特殊要求,其中包括:工作和环境温度(> 1000摄氏度)以及测量高反射率和半透明材料的温度的能力。

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