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Experimental study of the concave bionic drag reduction needles

机译:凹仿仿仿制药的实验研究

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In this paper, we have started from the point of view of bionics, doing surface bionic non-smooth design at the standard No.16 animal syringe needles. Then treating the concave as the bionic unit, we worked out the concave bionic drag reduction needles by use of the laser material remove processing means. In accordance with the national standard on the injection drag test of disposable needles, we did the puncture drag comparative test of the smooth needles and the bionic needles, getting the correspondence relationship between the drag reduction rate and the bionic unit parameters. We found that the maximum drag reduction rate up to 44.05%, and it appeared when the concave interval was 0.9mm and the concave diameter was 0.09mm. Then through discussing the drag reduction mechanism of the bionic needles, we knew that the bionic units reduced the actual contact area between the needle outer wall and the simulation skin, and it was the main reason of bionic needles puncture drag decreases.
机译:在本文中,我们从仿生学的角度开始,在标准的No.16动物注射针上进行表面仿生非平滑设计。然后将凹入作为仿生单元,我们通过使用激光材料去除处理装置来解决凹凸降低针。按照全国标准对一次性针头的注射拖曳试验,我们做了穿刺拖曳比较试验的光滑针和仿生针,使阻力率与仿生单元参数之间的对应关系。我们发现最大阻力率高达44.05%,当凹入间隔为0.9mm时出现,凹入直径为0.09mm。然后通过讨论仿生针的减阻机制,我们知道仿生单位在针外墙和模拟皮肤之间减少了实际接触面积,并且是仿生针刺的主要原因是刺穿阻力下降。

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