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Measurement of Fracture Toughness of Pure Tungsten Using a Small-Sized Compact Tension Specimen

机译:使用小型紧凑张力标本测量纯钨的断裂韧性

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The evaluation of fracture toughness of pure tungsten is essential for the structural integrity analysis in a fusion reactor. Therefore, the accurate quantification of fracture toughness of tungsten alloys is needed. However, due to the inherent brittleness of tungsten, it is difficult to introduce a sharp fatigue pre-crack needed for the fracture toughness test. In this study, a novel fatigue pre-cracking method was developed and applied to the small-sized disc-type compact tension (DCT) specimens of double-forged pure tungsten. To overcome the brittleness and poor oxidation resistance, a low-frequency tensile fatigue pre-cracking was performed at 600 °C in Ar environment, which resulted in the introduction of a sharp pre-crack to DCT specimens. Then, fracture toughness tests were conducted at room temperature (RT), 400 °C, and 700 °C in air and Ar gas environments using as-machined and pre-cracked DCT specimens. At RT and 400 °C, the test environment and crack tip radius did not affect the fracture toughness measurement. However, at 700 °C, the Ar gas environment and the presence of a sharp fatigue pre-crack resulted in a decrease in the measured fracture toughness. Thus, it was suggested that, for the conservative fracture toughness measurement of pure tungsten, fatigue pre-cracking and fracture toughness test should be performed in an inert environment, especially for high-temperature tests.
机译:纯钨的断裂韧性评价对于融合反应器中的结构完整性分析至关重要。因此,需要准确定量钨合金的断裂韧性。然而,由于钨的固有脆性,难以引入断裂韧性试验所需的尖锐疲劳前裂缝。在这项研究中,开发了一种新型疲劳前裂解方法并应用于双锻造纯钨的小尺寸光盘型紧凑型张力(DCT)标本。为了克服脆性和抗氧化性差,在AR环境中在600℃下进行低频拉伸疲劳前裂解,导致引入DCT标本的尖锐的预裂纹。然后,使用诸如加工和预破解的DCT标本在空气和Ar气体环境中在室温(RT),400℃和700℃下进行断裂韧性试验。在室温和400°C时,测试环境和裂缝尖端半径不会影响断裂韧性测量。然而,在700℃,Ar气体环境和急剧疲劳前裂缝的存在导致测量的断裂韧性降低。因此,提出,对于纯钨的保守骨折测量,疲劳前裂解和断裂韧性试验应在惰性环境中进行,特别是对于高温测试。

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