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Effect of Specimen Holder on Static and Fatigue Tests on Titanium/Cement Interfaces

机译:试样夹持器对钛/水泥界面静态和疲劳试验的影响

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A tension or compression load was applied onto the Ti rod to test the fracture strength and fatigue life of Ti-cement interface under static and fatigue loadings, respectively. These tests are referred as static and fatigue in this study. A customized holder for the cement is required for the static and fatigue experiments, since the typical wedge, pneumatic, or hydraulic gripper are not suitable for static and fatigue tests on the fracture tests of bi-material samples. The objectives of this study are (1) to evaluate the effect of cement thickness on the fracture strength and fatigue life on Ti-cement union by finite element analysis; (2) to evaluate the effect of plastic cement holder and aluminum cement holder on fracture strength and fatigue life on Ti-cement union by experiment and finite element analysis. Ti-cement union model with 0.22 and 0.11 in. cement, Ti-cement-holder union with plastic and aluminum holders were created and validated using ANSYS in this study to develop a suitable specimen holder for static and fatigue tests. Experimental static tests of Ti-cement with both plastic and aluminum specimen holders were conducted as well. The result clearly showed that both plastic and aluminum holders can be used for static test whereas aluminum holder required much larger fracture load compared to the fracture load on plastic holder. Plastic holder is not suitable for fatigue test, because fatigue test required a stronger and more rigid holder such as aluminum.
机译:将张力或压缩载荷施加到Ti棒上,以分别在静态和疲劳载荷下测试Ti-CEND界面的断裂强度和疲劳寿命。这些测试称为本研究中的静态和疲劳。静态和疲劳实验需要一种用于水泥的定制支架,因为典型的楔形,气动或液压夹具不适用于静态和疲劳试验对Bi-Material样品的断裂试验。本研究的目标是(1)通过有限元分析评估水泥厚度对Ti-Cement联盟的裂缝强度和疲劳寿命的影响; (2)通过实验和有限元分析评估塑料水泥夹持器和铝水泥夹持器对Ti-CENDEN联合的裂缝强度和疲劳寿命的影响。 Ti-Cement Union Model,0.22和0.11英寸。使用本研究中的ANSYS创建并验证了与塑料和铝保持器的水泥,Ti-Cement-Coller联盟,为静态和疲劳试验开发合适的标本架。还进行了与塑料和铝样品支架的Ti-Ceme的实验静态试验。结果清楚地表明,与塑料支架上的断裂载体相比,塑料和铝固定器均可用于静态测试,而铝架需要更大的断裂载荷。塑料支架不适合疲劳试验,因为疲劳试验需要更强,更刚性的铝合金。

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