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Continuous monitoring of back wall stress corrosion cracking growth in sensitized type 304 stainless steel weldment by means of potential drop techniques

机译:通过潜在的滴落技术连续监测敏化型304不锈钢焊件中后壁应力腐蚀开裂的增长

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摘要

Stress corrosion cracking (SCC) tests on welded specimens of sensitized type 304SS with a thickness of 20 mm were performed in sodium thiosulphate solution at room temperature, with continuous monitoring of the SCC growth, using the techniques of modified induced current potential drop (MICPD), alternating current potential drop (ACPD) and direct current potential drop (DCPD). The MICPD and DCPD techniques permit continuous monitoring of the back wall SCC, which initiates from a fatigue pre-crack at a depth of about 4 mm, from which it propagates through more than 80% of the specimen thickness. The MICPD technique can decrease the effect of the current flowing in the direction of the crack length by focusing the induced current into the local area of measurement using induction coils, so that the sensitivity of the continuous monitoring of the back wall SCC is higher than that of the ACPD and DCPD techniques.
机译:在室温下,在硫代硫酸钠溶液中对厚度为20 mm的敏化304SS型焊接试样进行应力腐蚀开裂(SCC)试验,并使用改进的感应电流电势降(MICPD)技术连续监测SCC的生长。 ,交流电势降(ACPD)和直流电势降(DCPD)。 MICPD和DCPD技术允许连续监测后壁SCC,该后壁SCC从约4 mm深度的疲劳预裂纹开始,然后从该裂纹传播到超过80%的样品厚度。 MICPD技术可以通过将感应电流集中到使用感应线圈的测量局部区域来减小在裂纹长度方向上流动的电流的影响,因此连续监测后壁SCC的灵敏度高于ACPD和DCPD技术。

著录项

  • 作者

    SATO Y; ATSUMI T; SHOJI T;

  • 作者单位
  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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