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Bending Property of Super-Elastic Ti-Ni Alloy Dental Castings with Different Heat Treatments

机译:不同热处理方式的超弹性Ti-Ni合金牙铸件的弯曲性能

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摘要

Bending property of Ti-Ni alloy dental castings was evaluated in comparison with that of Co-Cr alloy in a cantilever test. Heat treatment effect on the bending property was also investigated in relation to phase transformation. Ti-50.85Ni (mol%) alloy was used, and the shape of bending test specimens was half-rounded in cross section, 2.0 mm in diameter. The bending test was carried out at 310 K. Distance between the loading point and the grip edge was 5.0 or 10.0 mm. Maximum bending deflection was 0.50 mm. Thermal behavior accompanying phase transformation of Ti-Ni alloy was examined by differential scanning calorimetry. Load-deflection diagrams of Ti-Ni alloy castings in the bending test showed elastic and super-elastic deformation, while those of Co-Cr castings showed elastic and permanent deformation. Maximum bending load and residual deflection of the Ti-Ni castings were lower than those of the Co-Cr castings and were decreased by heat treatment under a high-stress condition at the 5-mm loading point. Transformation temperature was increased by heat treatment, which was thought to influence the change in bending property. Super-elasticity of the Ti-Ni alloy castings in bending was shown to be improved by heat treatment, offering the potential to improve the design and clinical performance of cast dental prostheses. [doi:10.2320/matertrans.48.428] (Received September 22, 2006; Accepted December 22, 2006; Published February 25, 2007)
机译:在悬臂测试中,与Co-Cr合金相比,评估了Ti-Ni合金牙科铸件的弯曲性能。还研究了热处理对弯曲性能与相变的关系。使用Ti-50.85Ni(mol%)合金,并且将弯曲测试样品的形状的横截面半圆形,直径为2.0mm。弯曲试验在310 K下进行。加载点和握柄边缘之间的距离为5.0或10.0 mm。最大弯曲挠度为0.50mm。用差示扫描量热法研究了伴随着Ti-Ni合金相变的热行为。 Ti-Ni合金铸件在弯曲试验中的载荷-挠度图显示了弹性和超弹性变形,而Co-Cr铸件的载荷-变形图显示了弹性和永久变形。 Ti-Ni铸件的最大弯曲载荷和残余挠度低于Co-Cr铸件,并且在高应力条件下于5mm加载点通过热处理降低了最大弯曲载荷和残余挠度。通过热处理提高了相变温度,认为这会影响弯曲性能的变化。 Ti-Ni合金铸件在弯曲时的超弹性被证明可以通过热处理得到改善,从而有可能改善铸件牙科修复体的设计和临床性能。 [doi:10.2320 / matertrans.48.428](2006年9月22日接收; 2006年12月22日接受; 2007年2月25日发布)

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