LNG运输船CCS用R-PUF低温材料性能评价

Haoze Song
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引用次数: 1

摘要

增强聚氨酯泡沫(R-PUF)是一种用于液化天然气货物密封系统的材料,由于R-PUF的玻璃纤维增强层在重力作用下沉在R-PUF内部,因此其发泡层的堆叠位置不同,其机械性能也会有所不同。此外,由于R-PUF不是一种均质材料,因此我们也期望该材料内部的坐标方向与力学性能有很大的相关性。因此,本研究是为了证实这种力学性能与堆积位置之间的相关性。特别地,在本研究中,使用了3种不同密度的R-PUF(130、170和210 kg/m3),并在5种温度下对该材料进行了拉伸、压缩和剪切试验。试验结果表明,随着温度的降低,材料的强度和弹性模量均有所增加。其中,Z方向(即层合方向)的强度和弹性模量比其他方向低。最后,在层压底部发现的材料的不同样品的强度和弹性模量与在层压底部以外的位置发现的这些特性的样品进行了比较。进一步分析证实,随着温度的降低,R-PUF发生硬化,表明强度和弹性模量增加。另一方面,随着R-PUF密度的增加,R-PUF的强度和弹性模量急剧增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Cryogenic Material Properties of R-PUF Used in the CCS of an LNG Carrier
Reinforced polyurethane foam (R-PUF), a material for liquefied natural gas cargo containment systems, is expected to have different mechanical properties depending on its stacking position of foaming as the glass fiber reinforcement of R-PUF sinks inside R-PUF under the influence of gravity. In addition, since R-PUF is not a homogeneous material, it is also expected that the coordinate direction within this material has a great correlation with the mechanical properties. So, this study was conducted to confirm this correlation with the one between the mechanical properties and the stacking position. In particular, in this study, R-PUF of 3 different densities (130, 170, and 210 kg/m3) was used, and tensile, compression, and shear tests of this material were performed under 5 temperatures. As a result of the tests, it was confirmed that the strength and modulus of elasticity of the material increased as the temperature decreased. Specifically, the strength and modulus of elasticity in the Z direction, which was the lamination direction, tended to be lower than those in the other directions. Finally, the strength and elastic modulus of different specimens of the material found at the bottom of their lamination compared to the specimens with these properties found at positions other than their lamination bottom were evaluated. Further analysis confirmed that as the temperature decreased, hardening of R-PUF occurred, indicating that the strength and modulus of elasticity increased. On the other hand, as the density of R-PUF increased, a sharp increase in strength and elastic modulus of R-PUF was observed.
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