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Oxidation Effects during High Temperature Deformation of CP Ti Alloy

机译:CP Ti合金高温变形过程中的氧化作用

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This work reports the influence of oxidation on the superplasticity of commercially pure titanium at high temperatures. Uniaxial tensile tests were conducted at temperatures in the range 600-800℃ with an initial strain rate of 10s~(-1) to 10s~(-3). This study shows that oxidization at the surface of the alloy causes oxide film on the surface of commercially pure titanium alloy, and the thickness of oxide film increase with increasing exposure time and temperature. XRD analysis shows that the oxide film consists of TiO_2. Because this oxide film is very brittle, it can induce clefts and degrade the ductility of the titanium at high temperatures. The mechanism of the initial clefts was investigated and a model for the cleft initiation and propagation during high temperature tensile test was proposed.
机译:这项工作报道了高温下氧化对商业纯钛超塑性的影响。在600-800℃的温度范围内进行了单轴拉伸试验,初始应变率为10s〜(-1)至10s〜(-3)。这项研究表明,合金表面的氧化会在商业纯钛合金表面形成氧化膜,并且氧化膜的厚度会随着暴露时间和温度的增加而增加。 XRD分析表明该氧化膜由TiO_2组成。由于该氧化膜非常脆,因此在高温下会引起裂口并降低钛的延展性。研究了初始裂隙的机理,并提出了高温拉伸试验中裂隙萌生和扩展的模型。

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