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Acousto Ultrasonic - Echo AU-E and Ultrasound Technology - Determination of the Lining and Cooling Element Condition of Operational Furnaces

机译:Acousto超声波 - 回声Au-E和超声技术 - 操作炉衬里和冷却元件条件的测定

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In the metal and mineral industry, different empirical techniques are used to estimate the remaining thickness of the lining within an operating furnace. The disadvantage and costly factor when using these methods is that production needs to be halted. Hatch has developed an accurate and reliable technique based on stress wave propagation principles to determine the condition of the remaining lining whilst the furnace remains online and operational. The technique involves test data collected and compiled to generate 3D imagery used to assist operators and maintenance planning personnel with valuable information showing areas of metal penetration in the lining, remaining lining thickness, exact location of voids, cracks, poor contacts and deterioration due to chemical attack. In this paper, the principals of the AU-E technique will be explained both theoretically and practically. In addition, the use of Ultrasound Technology for determining the condition of copper cooling elements will be briefly addressed.
机译:在金属和矿产业中,使用不同的经验技术来估计操作炉内衬里的剩余厚度。使用这些方法时的缺点和昂贵因素是生产需要停止生产。舱口舱开发了一种基于应力波传播原理的准确可靠的技术,以确定炉子仍然在线和运营的剩余衬里的条件。该技术涉及收集和编译以产生3D图像的测试数据,用于协助运营商和维护计划人员具有有价值的信息,显示衬里中的金属穿透区域,剩余衬里厚度,空隙的精确位置,由于化学而导致的空隙,裂缝差和劣化。攻击。在本文中,理论上和实际上将解释AU-E技术的原理。另外,将简要地解决用于确定铜冷却元件条件的超声技术。

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