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Influence of Low Temperature Aging on the Flexural Strength of Y-TZP Ceramics

机译:低温老化对Y-TZP陶瓷弯曲强度的影响

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Low temperature aging (LTD) is an important factor of Y-TZP ceramic as artificial joint femoral head and dental restorative materials in vivo for long-term application. In this paper, the accelerated aging experiments on Y-TZP ceramics were conducted. The t-m phase transition is occurring from the surface to the inside during low temperature aging of Y-TZP ceramics. As content of phase transformation increases, thickness of phase transformation layer increases. While the content of surface monoclinic phase is less, the volume expansion and surface stress caused by phase transformation can make cracks and holes shrink or even close, then the flexural strength increase. As a large number of surface monoclinic phase was generated, due to there are a lot of microscopic defects in the phase transition layer, crystals loose, strength of grain boundary lower than that of not aging area and phase transformation layers fracture in the intergranular mode, that damages the flexural strength. Therefore, the flexural strength increases firstly and then decrease with the increase of surface monoclinic content.
机译:低温老化(LTD)是Y-TZP陶瓷作为人工关节股头和体内牙齿修复材料的重要因素,用于长期应用。本文进行了对Y-TZP陶瓷的加速老化实验。在Y-TZP陶瓷的低温老化期间从表面到内部发生T-M相转变。随着相变含量的增加,相变层的厚度增加。虽然表面单斜相的含量较小,但由相变引起的体积膨胀和表面应力可以使裂缝和孔缩小或甚至关闭,然后弯曲强度增加。由于产生了大量表面单斜相,由于相变层中存在大量微观缺陷,晶体松散,晶界强度低于非老化区域和相变层在晶间模式下断裂,损坏弯曲强度。因此,弯曲强度首先增加,然后随着表面单斜含量的增加而降低。

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