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Fracture toughening of peritubular microstructure in biological porous dentine

机译:生物多孔牙本质梗死微观结构的断裂增韧

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Fracture behavior of biological porous dentine is important to the success of dental restoration. The role of peritubular dentine (PTD) microstructure on the fracture properties of human dentine is investigated by analysis of its crack tip shielding effect on microcracks and macrocracks. The evolution of microcracks around the dentine tubules (DTs) and the growth of macrocracks in the dentine are experimentally observed by scanning electron microscope. Two cases of an individual PTD&DT penetrating the microcrack tip and locating ahead of the microcrack tip are discussed. The effects of multiple PTD&DTs with random distribution and various porosities on the macrocrack shielding or amplifying in dentine are also particularly investigated. The importance of modulus, thickness of PTD and porosity of DT to the shielding effect of crack growth in dentine is studied by finite element analysis, which is characterized by the dominated fracture parameter J-integral. Numerical results demonstrate that PTD can shield the growth of dentine microcracks. When the PTD is in a specific location around macrocracks, it also has a shielding effect. The thicker and harder the PTD, the greater the shielding effect on crack growth. In conclusion, the porous dentine can be used as a reference structure in the design of implant dentures to enhance the dentine toughness.
机译:生物多孔牙本质的骨折行为对于牙科修复的成功是重要的。通过分析对微裂纹和MacRecracks的裂纹尖端屏蔽效应,研究了垂直牙本质(PTD)微观结构对人牙本质裂缝性能的作用。通过扫描电子显微镜通过扫描电子显微镜实验观察牙本质小管(DTS)周围的微裂纹和牙本质中的MacRecrack的生长。讨论了穿透微裂纹尖端并定位在微裂纹尖端的单个PTD和DT的两种情况。还特别研究了多种PTD和DTS对随机分布的影响以及在牙本质中的MacRecrack屏蔽或扩增的各种孔隙率。通过有限元分析研究了DT模量,PTD厚度和DT孔隙孔的孔隙率的重要性,其特征在于主导的骨折参数J-积分。数值结果表明,PTD可以屏蔽牙本质微裂纹的生长。当PTD在MacRecracks周围的特定位置时,它也具有屏蔽效果。 PTD较厚,更稠固,对裂纹生长的屏蔽效果越大。总之,多孔牙本质可以用作植入义齿设计中的参考结构,以提高牙本质韧性。

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