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Effect of coupling agents on the local mechanical properties of bioactive dental composites by the nano-indentation technique

机译:纳米压痕技术对偶联剂对生物活性牙科复合材料局部力学性能的影响

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Objectives. To examine the use of nano-indentation as a method of determining the interfacial mechanics of bioactive composites for mandibular bone substitutes. Methods. Three coupling agents (PMMA-MAA, PMMA-MA and silane) were used to treat hydroxyapatite (HA) particles before incorporation into a polymethylmetha-crylate (PMMA) matrix. Nano-indentation was used to determine the hardness and Young's modulus on the HA particle surface, at the HA/PMMA interface and in the PMMA matrix region for each of the four groups. In addition bulk four-point bending tests were conducted on each of the four groups as a comparison. Results. The findings resulted in significant differences in the local interfacial Young's modulus between the polymer-treated composites and the uncoupled control specimens with a marked improvement (50%) in modulus with either polymertreated group. Similarly, the bending modulus of the polymer-treated groups was significantly higher than the un-treated control group; however, these differences were not as pronounced (approximately 15%). Significance. The co-polymer-treated composites resulted in improved interfacial modulus as compared to the un-treated controls and that the nano-indentation technique is a powerful tool for understanding the local interfacial mechanics of bioactive composites.
机译:目标。检验纳米压痕作为确定下颌骨替代物生物活性复合材料界面力学方法的用途。方法。在掺入聚甲基丙烯酸甲酯(PMMA)基质之前,使用三种偶联剂(PMMA-MAA,PMMA-MA和硅烷)处理羟基磷灰石(HA)颗粒。纳米压痕用于确定四组中每组在HA颗粒表面,HA / PMMA界面和PMMA基质区域的硬度和杨氏模量。另外,作为比较,对四组中的每组进行了本体四点弯曲测试。结果。这些发现导致在聚合物处理的复合材料与未偶联的控制样品之间的局部界面杨氏模量存在显着差异,而任一聚合物处理组的模量都有显着改善(50%)。同样,经聚合物处理的组的弯曲模量显着高于未经处理的对照组。但是,这些差异并不那么明显(约15%)。意义。与未处理的对照相比,经共聚物处理的复合材料可改善界面模量,并且纳米压痕技术是了解生物活性复合材料局部界面力学的有力工具。

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