首页> 外文期刊>Medical Devices: Evidence and Research >Development of devices for self-injection: using tribological analysis to optimize injection force
【24h】

Development of devices for self-injection: using tribological analysis to optimize injection force

机译:自行注射装置的开发:使用摩擦学分析来优化注射力

获取原文
           

摘要

This article describes the use of analytical models and physical measurements to characterize and optimize the tribological behavior of pen injectors for self-administration of biopharmaceuticals. One of the main performance attributes of this kind of device is its efficiency in transmitting the external force applied by the user on to the cartridge inside the pen in order to effectuate an injection. This injection force characteristic is heavily influenced by the frictional properties of the polymeric materials employed in the mechanism. Standard friction tests are available for characterizing candidate materials, but they use geometries and conditions far removed from the actual situation inside a pen injector and thus do not always generate relevant data. A new test procedure, allowing the direct measurement of the coefficient of friction between two key parts of a pen injector mechanism using real parts under simulated use conditions, is presented. In addition to the absolute level of friction, the test method provides information on expected evolution of friction over lifetime as well as on expected consistency between individual devices. Paired with an analytical model of the pen mechanism, the frictional data allow the expected overall injection system force efficiency to be estimated. The test method and analytical model are applied to a range of polymer combinations with different kinds of lubrication. It is found that material combinations used without lubrication generally have unsatisfactory performance, that the use of silicone-based internal lubricating additives improves performance, and that the best results can be achieved with external silicone-based lubricants. Polytetrafluoroethylene-based internal lubrication and external lubrication are also evaluated but found to provide only limited benefits unless used in combination with silicone.
机译:本文介绍了如何使用分析模型和物理测量来表征和优化笔式注射器的摩擦性能,以实现生物药物的自我管理。这种设备的主要性能属性之一是其将用户施加的外力传递到笔内部的笔筒上以进行注射的效率。该注射力特性在该机构中受到聚合物材料的摩擦性能的严重影响。标准摩擦测试可用于表征候选材料,但它们使用的几何形状和条件与笔式注射器内部的实际情况相去甚远,因此并不总是生成相关数据。提出了一种新的测试程序,该程序可以在模拟使用条件下使用实际零件直接测量笔式注射器机制的两个关键零件之间的摩擦系数。除了绝对的摩擦力水平外,该测试方法还提供了有关整个使用寿命内预期的摩擦力演变以及各个器件之间的预期一致性的信息。结合笔机构的分析模型,摩擦数据可以估算预期的总体喷射系统力效率。该测试方法和分析模型适用于具有不同润滑类型的一系列聚合物组合。发现在不润滑的情况下使用的材料组合通常不能令人满意的性能,使用基于硅树脂的内部润滑添加剂会改善性能,并且使用外部基于硅树脂的润滑剂可以达到最佳效果。还对基于聚四氟乙烯的内部润滑和外部润滑进行了评估,但发现除非与硅树脂结合使用,否则只能提供有限的益处。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号