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Extrusion Characteristics of Thin Walled Tubes for Catheters Using Thermoplastic Elastomer

机译:热塑性弹性体导管薄壁管的挤出特性

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摘要

As the market for minimally invasive surgery has grown, the demand for high-precision and high-performance catheters has increased. Catheters for the diagnosis and treatment of cardiovascular or cerebrovascular disease mainly use a braided wire tube with a polymer inner liner and outer jacket to improve the pushability and trackability. The outer jacket should have an accurate inner and outer diameter and while maintaining a wall thickness of 150 µm or less. In this study, we designed and manufactured a tip and die capable of extruding an outer jacket with a wall thickness of 150 µm or less using a medical thermoplastic elastomer for manufacturing 8Fr (2.64 mm diameter) thin-walled tubes. The ovality and inner/outer diameters of the tube were studied according to changes in the screw speed (mass flow rate), puller speed, air pressure applied to the lumen, and distance between the quench and head, which are the main variables of microextrusion processes. The screw speed (mass flow rate), puller speed, and air pressure affected the inner/outer diameter of the tube, with screw speed and puller speed having the largest influence on diameter. The air pressure and distance between quench and head had the greatest influence on ovality. The results show the effect of different processing parameters on the characteristics of the extruded tube, which will help to establish a stable extrusion process for the manufacture of outer jackets for braided catheter shafts.
机译:随着最微创手术的市场已经发展,对高精度和高性能导管的需求增加。用于诊断和治疗心血管或脑血管疾病的导管主要使用编织线管与聚合物内衬和外套提高可推性和可啮合性。外护套应具有精确的内径和外径,同时保持150μm或更小的壁厚。在该研究中,我们设计和制造了一种尖端和模具,其能够使用医用热塑性弹性体挤出具有150μm或更小的外夹克,用于制造8FR(2.64mm直径)薄壁管。根据螺杆速度(质量流量),牵引速度,施加到腔的空气压力的变化以及淬火和头部之间的距离,研究了管的椭圆和内/外径,以及淬火和头部之间的距离,这是微鳞的主要变量流程。螺杆速度(质量流量),拉动速度和空气压力影响管的内径/外径,具有螺杆速度和拉动速度,对直径最大的影响。淬火和头部之间的空气压力和距离对椭圆度影响最大。结果表明了不同加工参数对挤出管的特性的影响,这将有助于建立用于制造编织导管轴的外夹克的稳定挤出工艺。

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