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A Basic Study of Characteristics between Stress and Deflection on Strength Test of Bio-ceramics

机译:生物陶瓷强度试验应力与挠度的特征基础研究

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Comparing the mechanical characteristics of bio-ceramics with the elaborate bone, there are two important conditions required for it. First, the strength must be three times larger than that of the elaborate bone. Second, Young's modulus must be two or three times larger than that. However, the biomaterial which satisfies these conditions hasn't developed. So, it is the main purpose of this research to clarify the relation between stress and deflection on strength test of bio-ceramics, and to get the fundamental data for improvement. In this paper, it is discussed how such quantity as deflection, stress and stress increasing rate are related. As the result, the following characteristics were found. First, deflection and the breaking stress increase as an average grain diameter of bio-ceramics becomes small. Second, the behavior of the stress increasing rate to deflection can be classified into two types. These are the fluctuation type and the stable type. Third, the experimental equations are obtained against the maximum deflection. One is for the breaking stress, and the other is for the maximum stress increasing rate. From the discussion, it was found that the characteristics of stress and deflection depended on such material properties of bio-ceramics as Young's modulus, an average grain diameter, and micro-structure of the biomaterials.
机译:比较生物陶瓷与精美骨骼的机械特性,有两个重要的条件。首先,强度必须比精美骨骼大的三倍。其次,杨氏模量必须比这更大的两倍或三倍。然而,尚未开发满足这些条件的生物材料。因此,这是本研究的主要目的是阐明了对生物陶瓷强度试验的应力和偏转之间的关系,并获得了改进的基本数据。在本文中,讨论了如何与偏转,压力和压力增加率的数量有关。结果,发现了以下特征。首先,随着生物陶瓷的平均粒径的第一,偏转和断裂应力变小。其次,压力增加率与偏转的行为可以分为两种类型。这些是波动类型和稳定的类型。第三,获得最大偏转的实验方程。一个是断裂应力,另一个是为了最大应力增加速率。从讨论中,发现应力和挠度的特性取决于生物陶瓷的这种材料特性,作为杨氏模​​量,平均粒径和生物材料的微结构。

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