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MECHANICAL CHARACTERIZATION OF VALVE COMPRESSION PACKING AT HIGH TEMPERATURE

机译:高温下阀门压缩填料的机械特性

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Packed stuffing boxes are sealing devices used in valves, compressors and pumps. The compression packing is the most critical element of this assembly. Packing rings are compressed axially to produce lateral contact pressures large enough to confine the processed fluid within the pressurized valve and avoids leakage to the outer boundary. Although popular, this old method of sealing has seen very limited analytical and numerical development. There is no standard design procedure for engineers to follow, and the existing standard test procedures are limited to qualification and quality control tests such as API622, 624, ISO-15848 1 and 2. As a result, structural integrity and leak tightness are rarely verified, and consequently 60 % of pressurized equipment requiring fugitive emissions compliance are valves that use this type of sealing device. The mechanical properties of compression packing materials are the main factors affecting fluid tightness at room and high temperatures and yet there is little or no data available either in manufacturer's catalogues or in the literature. Packed stuffing box research is scant and focuses mostly on the distribution of the contact pressure between the stem and packing at room temperature without considering packing mechanical properties such as rigidity, thermal expansion, creep and aging. It is proposed, in this project, to measure the mechanical properties such as pressure transmission ratio, short-term creep deformation and thermal expansion coefficient of two packing materials at high temperature. This initiative will serve as a basis to launch a North American testing program to develop ASTM-like testing procedures for compression packing at high temperature.
机译:填料函盒是阀门,压缩机和泵中使用的密封装置。压紧填料是该组件中最关键的部分。填料环被轴向压缩,以产生足够大的侧向接触压力,以将处理后的流体限制在加压阀内,并避免泄漏到外边界。尽管很流行,但这种古老的密封方法在分析和数值开发方面非常有限。工程师没有遵循标准的设计程序,而现有的标准测试程序仅限于资格认证和质量控制测试,例如API622、624,ISO-15848 1和2。因此,很少验证结构完整性和密封性,因此,要求逃逸排放的加压设备中有60%是使用这种密封装置的阀门。压缩包装材料的机械性能是影响室温和高温下流体密封性的主要因素,但是制造商的目录或文献中几乎没有或没有可用数据。填料填料函的研究很少,主要集中在室温下阀杆和填料之间的接触压力分布,而没有考虑填料的机械性能,如刚性,热膨胀,蠕变和老化。在该项目中,建议测量两种包装材料在高温下的力学性能,如压力传递比,短期蠕变变形和热膨胀系数。该计划将作为启动北美测试计划的基础,以开发类似于ASTM的高温压缩包装测试程序。

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