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

机译:使用小型紧凑型拉伸试样测量纯钨的断裂韧性

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摘要

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:评估纯钨的断裂韧性对于聚变反应堆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。但是,由于钨固有的脆性,因此难以引入断裂韧性试验所需的急剧的疲劳预裂纹。在这项研究中,开发了一种新颖的疲劳预裂方法,并将其应用于双锻纯钨的小尺寸盘式紧密拉伸(DCT)标本。为了克服脆性和较差的抗氧化性,在Ar环境中于600°C进行了低频拉伸疲劳预裂解,这导致DCT试样出现了尖锐的预裂解。然后,使用机加工和预破裂的DCT试样在室温(RT),400°C和700°C的空气和Ar气体环境中进行断裂韧性测试。在室温和400°C下,测试环境和裂纹尖端半径不会影响断裂韧性的测量。但是,在700°C的Ar气体环境和尖锐的疲劳预裂纹的存在下,测得的断裂韧性降低。因此,建议对于纯钨的保守断裂韧性测量,应在惰性环境下进行疲劳预开裂和断裂韧性测试,尤其是在高温测试中。

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