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1)  residual tensile strength
剩余拉伸强度
1.
Experimental research on impact damage and residual tensile strength of composite laminates;
复合材料板冲击损伤及剩余拉伸强度试验
2.
The relationship between residual tensile strength and impact energy was analyzed.
对含低速冲击损伤的蜂窝夹芯板试件进行了拉伸试验,用X光技术、热揭层技术和外观检测等对拉伸破坏过程进行了研究,分析了剩余拉伸强度与冲击能量的关系。
2)  residual stretch
剩余拉伸
3)  remaining strength
剩余强度
1.
Assessment method for remaining strength of corroded pipeline and its application;
腐蚀管道剩余强度评价方法及其应用
2.
Theory foundation for remaining strength assessment methodology is presented and assessing formula for relative assessment methodology is educed based on individual basic assumption.
建议在单一荷载和简单缺陷形状下,按B31G进行管道的剩余强度评价。
3.
API 579 and F101 are two kinds of common codes in computing the remaining strength of corrosion pipeline for local metal loss.
对API 579和F101这2种目前常用的腐蚀管道剩余强度评定规范中的一些相似点进行了比较,并通过实例说明了各自的优、缺点。
4)  residual intensity
剩余强度
1.
Residual Intensity Assessment of Liquid Ammonia Tanks;
在役液氨储罐的剩余强度评定
2.
Residual Intensity Evaluation after Corrosion of the Heater Tubes for Natural Gas and Life-Span Prediction
天然气加热炉管腐蚀剩余强度评价及剩余寿命预测
3.
The near infrared spectra of sunlight or moonlight passing through atmosphere were measured by a CCD spectrometer in the instrument,then the central residual intensity of the water vapor absorption at 935 nm waveband was calculated and the total precipitable water in the atmosphere was derive.
该仪器采用电荷耦合器件(CCD)制作的光谱仪来测量日光或月光通过大气后在750 nm~1 000 nm近红外波段的光谱,进而计算出935 nm水汽吸收带相对于889 nm背景的剩余强度,再根据R=0。
5)  residual strength
剩余强度
1.
Relationship between mass variation and residual strength change with temperature on 3D C/SiC composites in oxidizing atmosphere;
高温氧化气氛下3D C/SiC质量变化率与剩余强度的相关性
2.
Analysis on wear depth and residual strength of downhole casing;
井下套管磨损深度及剩余强度分析
3.
Analysis on residual strength after casing surface wear caused in casing drilling;
套管钻井用套管外表面磨损后剩余强度分析
6)  R-Residual strength
R-剩余强度
补充资料:干态拉伸强度
分子式:
CAS号:

性质:又称干态拉伸强度。在规定条件下,以胶黏剂胶接成的制件在干燥后或试片经状态调节后,立即测得的胶接强度。利用测量胶黏剂的干强度可以提供出胶黏剂是否符合标准要求,而且在实际应用时,该指标更能反映出被黏制件经黏结后能否达到使用要求。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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