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炭黑等级的表面积对氢化丁腈橡胶在恶劣环境中的影响。

The Effect of the Surface Area of Carbon Black Grades on HNBR in Harsh Environments.

作者信息

Balasooriya Winoj, Schrittesser Bernd, Pinter Gerald, Schwarz Thomas, Conzatti Lucia

机构信息

Polymer Competence Center Leoben GmbH, Roseggerstrasse 12, 8700 Leoben, Austria.

Department of Polymer Engineering and Science, Montanuniversitaet Leoben, Otto Glöckeltrasse 2, 8700 Leoben, Austria.

出版信息

Polymers (Basel). 2019 Jan 4;11(1):61. doi: 10.3390/polym11010061.

Abstract

Concerning the still rising demand for oil and gas products, the development of new reliable materials to guarantee the facility safety at extreme operating conditions is an utmost necessity. The present study mainly deals with the influence of different carbon black (CB) filled hydrogenated nitrile butadiene rubber (HNBR), which is a material usually used in sealing applications, on the rapid gas decompression (RGD) resistance in harsh environments. Therefore, RGD component level tests were conducted in an autoclave. The supporting mechanical and dynamic mechanical property analysis, the microscopic level investigations on the material and failure analysis were conducted and are discussed in this work. Under the tested conditions, the samples filled with smaller CB primary particles showed a slightly lower volume increase during the compression and decompression phases; however, they steered to a significantly lower resistance to RGD. Transmission electron micrographs revealed that the samples filled with smaller CB particles formed larger structures as well as densified filler networks including larger agglomerates and as a consequence a decrease effective matrix component around the CB particles. Apparently, at higher loading conditions, which already deliver a certain level of mechanical stresses and strains, the densified filler network, and especially a lower amount of effective matrix material composition, adversely affect the RGD resistance. SEM-based fracture analysis did not identify any influence of the CB grades tested on the crack initiation site; however, it revealed that the cracks initiated from existing voids, hard particles, or low strength matrix sites and propagated to the outer surface.

摘要

鉴于对石油和天然气产品的需求仍在不断上升,开发新的可靠材料以确保极端运行条件下的设施安全已成为当务之急。本研究主要探讨了不同炭黑(CB)填充的氢化丁腈橡胶(HNBR)(一种常用于密封应用的材料)对恶劣环境下快速气体减压(RGD)抗性的影响。因此,在高压釜中进行了RGD组件级测试。本文还进行并讨论了辅助的力学和动态力学性能分析、材料的微观层面研究以及失效分析。在测试条件下,填充较小CB原生颗粒的样品在压缩和减压阶段的体积增加略低;然而,它们对RGD的抗性明显较低。透射电子显微镜照片显示,填充较小CB颗粒的样品形成了更大的结构以及致密的填料网络,包括更大的团聚体,结果CB颗粒周围的有效基体成分减少。显然,在已经产生一定水平的机械应力和应变的较高负载条件下,致密的填料网络,尤其是较低量的有效基体材料组成,会对RGD抗性产生不利影响。基于扫描电子显微镜的断裂分析未发现所测试的CB等级对裂纹起始位置有任何影响;然而,它表明裂纹从现有的空隙、硬颗粒或低强度基体部位开始,并向外表面扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73ae/6401997/f9a702c700e4/polymers-11-00061-g001.jpg

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