1) hydrogen disbonding
氢剥离
1.
Finally cladding layers passed the destructive and hydrogen disbonding tests.
25V钢上进行的90 mm不锈钢电渣带极堆焊工艺试验,带极电渣堆焊材料的选择和工艺参数的确定,掌握了磁场控制焊道技术以及通过的理化性能检测,还通过了堆焊层的抗氢剥离试验。
2) hydrogen induced spalling
氢致剥离
1.
The analysis of corrosion of equipment with presence of hydrogen concluded that the hydrogen damage,hydrogen and wet H_2S corrosion,high-temperature hydrogen and H_2S corrosion,hydrogen induced spalling of stainless steel overlay welds are the major causes of corrosion failure of equipment.
针对临氢设备的特点,对腐蚀的原因进行了分析,提出了氢损伤、氢和湿硫化氢腐蚀、高温氢和硫化氢的腐蚀以及不锈钢堆焊层的氢致剥离是造成临氢设备腐蚀失效的主要原因。
3) Hydrogen-resistant peeling test
抗氢剥离试验
4) exfoliation
[英][eks,fəuli'eiʃən] [美][ɛks,folɪ'eʃən]
剥落,剥离
5) exfoliation
[英][eks,fəuli'eiʃən] [美][ɛks,folɪ'eʃən]
剥离
1.
Exfoliation Reaction and Recombination of the Layered Hydroxide Zinc Benzoate with a Basal Spacing of 1.44 nm;
层间距为1.44nm层状氢氧化苯甲酸锌剥离重组行为研究
2.
Reason analysis and countermeasures of the trouble of the integrated wheel exfoliation for DF_(4D) and DF_(11) locomotives;
DF_(4D)、DF_(11)型机车整体车轮剥离的原因分析及对策
3.
The property and organieal modification of montmorillonite are also reviewed,and it is indicated that the key issue in preparing epoxy/montmorillonite nanocomposites at present is to achieve exfoliation or delamination of the aggregates in.
阐述了蒙脱土的性质及其在基体树脂中的剥离机理、环氧树脂/蒙脱土纳米复合材料的制备方法。
6) stripping
[英][strip] [美][strɪp]
剥离
1.
Then the macro and micro fracture,chemical composition and microstructure of stripping fragment were analyzed.
工作轧辊CSP热轧机连续发生三起大面积剥离事故,为找出轧辊发生连续剥离原因,首先对事故现场进行了调查分析,其次对剥离碎片的断口宏微观、化学成分及显微组织进行了分析。
2.
It has an excellent effect on stripping and cleaning germs,algae and slime and also in.
TS - 781对菌藻和生物粘泥具有极佳的剥离、清洗作用。
3.
Through the calculation of gear shaped, citrus shaped and cross shaped cross section boundary length, the relationship between stripping difficulty and cross section of composite superfine fiber was explained, which stripping difficulty increases with the increase of boundary length of two components.
通过对齿轮形、米字形、桔瓣形复合超细纤维截面边界长度的计算,说明了复合超细纤维的截面形状与剥离性的关系,剥离难度随两组分边界线长度的增大而增大。
补充资料:180°剥离
分子式:
CAS号:
性质:剥离角为180°的剥离是受力方向与剥离方向相平行,剥离角成180°的剥离方法,其试样由刚性材料及柔性材料构成。强度用kN/m表示。
CAS号:
性质:剥离角为180°的剥离是受力方向与剥离方向相平行,剥离角成180°的剥离方法,其试样由刚性材料及柔性材料构成。强度用kN/m表示。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条