首页> 外文会议>7th Conference amp; Exhibition of the European Ceramic Society Pt.1, Sep 9-13, 2001, Brugge, Belgium >Influence of Grade of Agglomeration and Green Body Liquid Saturation on Bending Strength and Fracture Toughness of Slip-Cast Alumina
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Influence of Grade of Agglomeration and Green Body Liquid Saturation on Bending Strength and Fracture Toughness of Slip-Cast Alumina

机译:团聚程度和生坯液体饱和度对滑铸氧化铝弯曲强度和断裂韧性的影响

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摘要

The influence of the grade of agglomeration due to different interparticle electrostatic forces in the aqueous suspension as well as the liquid saturation on bending strength and fracture toughness of slip cast green bodies was examined. Different grades of agglomeration were achieved by varying the suspension's pH. The states chosen were well dispersed (pH 3.5), partly agglomerated (pH 4.75) and strongly agglomerated (pH 6.0). Solids loading was 35% volume alumina. Liquid saturations S examined were dry (ca. 0-1% volume), pendular state (ca. 20% volume) and capillary state (ca. 90% volume). Samples were slip cast on plaster-plates in dismantable plastic molds. A statistical Weibull analysis of the measured 4-point bending strengths was performed. Mode I Fracture toughness was determined using SENB (Single Edge Notched Beam) samples with pre-crack lengths between 0.5 and 4.5 mm. To account for the not ideally brittle fracture a plastic zone correction resulting in an effective crack length was used, based on a method by Adams. It was shown that the presence of water and the resulting long range capillary forces dominate the strength and fracture toughness. This leads to similar mechanical properties at corresponding liquid saturations: bending strength ca. 0.7 MPa, capillary state; 0.4 MPa, pendular state, fracture toughness ca. 0.021 MPam~(0.5), capillary state, 0.018 MPam~(0.5), pendular state. This is almost independent of the suspension's pH. For dry green bodies the properties were strongly influenced by the grade of agglomeration and the resulting green microstructure, with bending strength ranging from 0.05 MPa to 1.3 MPa. Fracture toughness was between 0.006 MPam~(0.5) and 0.049 MPam~(0.5).
机译:考察了由于水悬浮液中不同的粒子间静电力以及液体饱和度引起的附聚程度对滑模生坯弯曲强度和断裂韧性的影响。通过改变悬浮液的pH值可以实现不同等级的团聚。选择的状态分散良好(pH 3.5),部分聚集(pH 4.75)和强烈聚集(pH 6.0)。固含量为35%体积的氧化铝。检查的液体饱和度S为干燥(约0-1%的体积),悬垂状态(约20%的体积)和毛细管状态(约90%的体积)。将样品滑移到可拆卸的塑料模具中的石膏板上。对测得的四点弯曲强度进行统计威布尔分析。模式I断裂韧性是使用裂纹前长度在0.5到4.5毫米之间的SENB(单边切口梁)样品确定的。为了解决不理想的脆性断裂,基于Adams的方法,使用了导致有效裂纹长度的塑性区校正。结果表明,水的存在和由此产生的长程毛细作用力主导了强度和断裂韧性。这导致在相应的液体饱和度下具有相似的机械性能:弯曲强度ca。 0.7 MPa,毛细管状态; 0.4 MPa,下摆状态,断裂韧性ca。 0.021 MPam〜(0.5),毛细管状态,0.018 MPam〜(0.5),摆动状态。这几乎与悬浮液的pH无关。对于干燥的生坯,其性能受到团聚程度和所得生坯微观结构的强烈影响,其弯曲强度范围为0.05 MPa至1.3 MPa。断裂韧性在0.006MPam〜(0.5)和0.049MPam〜(0.5)之间。

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