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X-ray images of defect formation in porcelain ceramics during drying

机译:干燥过程中瓷陶瓷中缺陷形成的X射线图像

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The drying phase during the manufacture of ceramic pieces is often the point of failure owing to the formation of cracks. In this study, nondestructive microfocus X-ray imaging has been employed to study the onset of cracking in porcelain and correlate it with the moisture content. Samples of moist porcelain paste were extruded through dies of 30 and 50 mm diameter. Sections of the extrudate were placed into an X-ray transparent oven and imaged while drying at constant temperature and low humidity. The time to the onset of cracking was found to be a function of temperature. The mode of failure was consistent across the temperature range 40-120 ℃. The higher the drying temperature, the shorter the time to failure and the higher the moisture loss at failure. For a particular paste consistency and sample geometry there was found to be a critical moisture content below which cracking began to occur. This moisture threshold was observed to be weakly temperature dependent; it appears to be more sensitive to sample geometry and paste consistency. A safe drying curve has been constructed which provides a boundary for the process parameters which prevent cracking. The implication is that during the drying of a ceramic piece, different sections may have different safe parameter boundaries and the process must be designed to keep all sections within the safe region.
机译:由于裂纹的形成,在陶瓷件制造过程中的干燥阶段通常是失效点。在这项研究中,非破坏性微焦点X射线成像已被用于研究瓷器中裂纹的发生并将其与水分含量相关联。将湿瓷浆样品通过直径为30和50 mm的模具挤出。将挤出物的切片放入X射线透明烘箱中,并在恒温和低湿度下干燥的同时成像。发现开始破裂的时间是温度的函数。在40-120℃的温度范围内,失效模式是一致的。干燥温度越高,失效时间越短,失效时的水分损失越大。对于特定的糊状稠度和样品几何形状,发现存在临界水分含量,低于该临界水分含量开始出现裂纹。观察到该湿度阈值对温度的依赖性很弱。它似乎对样品的几何形状和糊状稠度更敏感。已经构建了安全的干燥曲线,该曲线为防止开裂的工艺参数提供了边界。这意味着在陶瓷片干燥过程中,不同的部分可能具有不同的安全参数边界,必须设计工艺以将所有部分保持在安全区域内。

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