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首页> 外文期刊>Journal of the European Ceramic Society >Determination of the particle interactions, rheology and the surface roughness relationship for dental restorative ceramics
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Determination of the particle interactions, rheology and the surface roughness relationship for dental restorative ceramics

机译:牙科修复用陶瓷的颗粒相互作用,流变学和表面粗糙度关系的测定

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摘要

The effect of inter-particle interactions on the slurry properties and the final surface roughness of the dental ceramic restoratives was investigated. A commercial dental ceramic powder, IPS Empress 2 veneer, was used as the raw material. The magnitudes of the particle-particle interactions were computed by the DLVO theory for the ceramic slurries of different electrolyte solutions (0.1M, 0.25 M, 0.5 M, 0.75 M, 1M NaCl and CaCl_2). As expected, the energies of particle-particle interactions were influenced significantly by the presence of electrolytes. These computations demonstrated that addition of electrolytes leads to a progressive depression of the repulsive double layer forces. The absence of these forces should inevitably lead to agglomeration caused by the ever-present van der Waals forces. The rheological measurements carried out using the slurries with same solution properties supported the findings of the DLVO computations. It was found that dental ceramic slurries showed a Newtonian behavior in the absence of electrolytes, which is indicative of little or no agglomeration in the slurry. On the other hand, the same slurries displayed a non-Newtonian, shear thinning behavior in the presence of electrolytes which can be attributed to agglomeration or gelation. Roughness of the ceramic surfaces produced from these slurries was studied by SEM analysis and profilometer measurements. Contact angle studies were also carried out on the same surfaces. It was observed that the surface became rougher initially with electrolyte addition to a maximum, most probably due to formation of isolated agglomerates due to a reduction of the repulsive double layer forces. After reaching a maximum, surface roughness decreased to a much lower value with further increase in electrolyte concentration. This was most probably caused by the formation of a relatively homogeneous, gel-like structure within the extensively agglomerated slurry due to a complete collapse of the double layer.
机译:研究了颗粒间相互作用对牙科陶瓷修复剂的浆料特性和最终表面粗糙度的影响。使用商用牙科陶瓷粉IPS Empress 2贴面作为原料。通过DLVO理论计算了不同电解质溶液(0.1M,0.25 M,0.5 M,0.75 M,1M NaCl和CaCl_2)的陶瓷浆料的颗粒间相互作用的大小。如预期的那样,电解质的存在显着影响了颗粒间相互作用的能量。这些计算表明,电解质的添加导致排斥性双层力的逐渐降低。这些力量的缺乏不可避免地会导致由永远存在的范德华力引起的集聚。使用具有相同溶液特性的浆料进行的流变学测量结果支持了DLVO计算的结果。发现牙科陶瓷浆料在没有电解质的情况下表现出牛顿行为,这表明浆料中很少或没有附聚。另一方面,在存在电解质的情况下,相同的浆料显示出非牛顿的剪切稀化行为,这归因于附聚或胶凝。通过SEM分析和轮廓仪测量研究了由这些浆料产生的陶瓷表面的粗糙度。接触角研究也在相同的表面上进行。观察到,最初加入电解质达到最大时,表面变得更粗糙,这很可能是由于排斥双层力的降低而形成孤立的附聚物。达到最大值后,随着电解质浓度的进一步增加,表面粗糙度降低到非常低的值。这很可能是由于双层完全塌陷而在大量附聚的浆料中形成了相对均质的凝胶状结构所致。

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