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橡胶塞密封性能的时变测试评估与建模

Time-Dependent Testing Evaluation and Modeling for Rubber Stopper Seal Performance.

作者信息

Zeng Qingyu, Zhao Xia

机构信息

West Pharmaceutical Services, Inc., Exton, PA

West Pharmaceutical Services, Inc., Exton, PA.

出版信息

PDA J Pharm Sci Technol. 2018 Mar-Apr;72(2):134-148. doi: 10.5731/pdajpst.2017.008052. Epub 2017 Nov 20.

Abstract

Sufficient rubber stopper sealing performance throughout the entire sealed product life cycle is essential for maintaining container closure integrity in the parenteral packaging industry. However, prior publications have lacked systematic considerations for the time-dependent influence on sealing performance that results from the viscoelastic characteristics of the rubber stoppers. In this paper, we report results of an effort to study these effects by applying both compression stress relaxation testing and residual seal force testing for time-dependent experimental data collection. These experiments were followed by modeling fit calculations based on the Maxwell-Wiechert theory modified with the Kohlrausch-Williams-Watts stretched exponential function, resulting in a nonlinear, time-dependent sealing force model. By employing both testing evaluations and modeling calculations, an in-depth understanding of the time-dependent effects on rubber stopper sealing force was developed. Both testing and modeling data show good consistency, demonstrating that the sealing force decays exponentially over time and eventually levels off because of the viscoelastic nature of the rubber stoppers. The nonlinearity of stress relaxation derives from the viscoelastic characteristics of the rubber stoppers coupled with the large stopper compression deformation into restrained geometry conditions. The modeling fit with capability to handle actual testing data can be employed as a tool to calculate the compression stress relaxation and residual seal force throughout the entire sealed product life cycle. In addition to being time-dependent, stress relaxation is also experimentally shown to be temperature-dependent. The present work provides a new, integrated methodology framework and some fresh insights to the parenteral packaging industry for practically and proactively considering, designing, setting up, controlling, and managing stopper sealing performance throughout the entire sealed product life cycle. Historical publications in the parenteral packaging industry have lacked systematic considerations for the time-dependent influence on the sealing performance that results from effects of viscoelastic characteristic of the rubber stoppers. This study applied compression stress relaxation testing and residual seal force testing for time-dependent experimental data collection. These experiments were followed by modeling fit calculations based on the Maxwell-Wiechert theory modified with the Kohlrausch-Williams-Watts stretched exponential function, resulting in a nonlinear, time-dependent sealing force model. Experimental and modeling data show good consistency, demonstrating that sealing force decays exponentially over time and eventually levels off. The nonlinearity of stress relaxation derives from the viscoelastic characteristics of the rubber stoppers coupled with the large stopper compression deformation into restrained geometry conditions. In addition to being time-dependent stress relaxation, it is also experimentally shown to be temperature-dependent. The present work provides a new, integrated methodology framework and some fresh insights to the industry for practically and proactively considering, designing, setting up, controlling, and managing of the stopper sealing performance throughout the entire sealed product life cycle.

摘要

在注射用包装行业中,在整个密封产品生命周期内保持足够的橡胶塞密封性能对于维持容器密封完整性至关重要。然而,以往的出版物缺乏对橡胶塞粘弹性特性所导致的随时间变化对密封性能影响的系统考量。在本文中,我们报告了通过应用压缩应力松弛测试和残余密封力测试来收集随时间变化的实验数据,从而研究这些影响的成果。这些实验之后是基于用科尔劳施 - 威廉姆斯 - 瓦茨拉伸指数函数修正的麦克斯韦 - 维歇特理论进行建模拟合计算,得到了一个非线性的、随时间变化的密封力模型。通过采用测试评估和建模计算,深入了解了橡胶塞密封力随时间的变化影响。测试和建模数据都显示出良好的一致性,表明由于橡胶塞的粘弹性,密封力随时间呈指数衰减并最终趋于平稳。应力松弛的非线性源于橡胶塞的粘弹性特性以及橡胶塞在受限几何条件下的大压缩变形。能够处理实际测试数据的建模拟合可作为一种工具,用于计算整个密封产品生命周期内的压缩应力松弛和残余密封力。除了随时间变化外,实验还表明应力松弛也与温度有关。本研究为注射用包装行业提供了一个新的综合方法框架以及一些新的见解,以便在整个密封产品生命周期内切实且主动地考虑、设计、建立、控制和管理塞子的密封性能。注射用包装行业以往的出版物缺乏对橡胶塞粘弹性特性影响所导致的随时间变化对密封性能影响的系统考量。本研究应用压缩应力松弛测试和残余密封力测试来收集随时间变化的实验数据。这些实验之后是基于用科尔劳施 - 威廉姆斯 - 瓦茨拉伸指数函数修正的麦克斯韦 - 维歇特理论进行建模拟合计算,得到了一个非线性的、随时间变化的密封力模型。实验和建模数据显示出良好的一致性,表明密封力随时间呈指数衰减并最终趋于平稳。应力松弛的非线性源于橡胶塞的粘弹性特性以及橡胶塞在受限几何条件下的大压缩变形。除了随时间变化的应力松弛外,实验还表明它与温度有关。本研究为该行业提供了一个新的综合方法框架以及一些新的见解,以便在整个密封产品生命周期内切实且主动地考虑、设计、建立、控制和管理塞子的密封性能。

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