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Design and Analysis of Silicon Carbide Microneedle for Transdermal Drug Delivery

机译:透皮给药用碳化硅微针的设计与分析

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In this paper, we present an out-of-plane microneedle for transdermal drug delivery application. The proposed design is strong enough to reduce stresses and deformation having a length of 380 µm, outer diameter of 70 µm, and inner diameter of 40 µm. The dimension of the proposed microstructured needle can be a model for painless drug delivery. A side port design of microneedle is conducted for an efficient drug delivery. The analysis and simulation of the design has been carried out using COMSOL Multiphysics where different materials are used. Silicon Carbide (SiC) based microneedle has been performed as a less deformation microneedle compared to the other selected materials. Moreover, the simulation result represents a significant change in stress with the variation of the needle tip area. The bending and the compressive force analysis are also examined which determines that the microneedle can withstand without breaking if the generated stress at the needle body is under the yield strength of the material.
机译:在本文中,我们提出了一种用于经皮给药的平面外微针。所提出的设计足够坚固,可以减少长度为380 µm,外径为70 µm,内径为40 µm的应力和变形。提出的微结构针的尺寸可以是无痛药物输送的模型。进行微针的侧面端口设计以实现有效的药物输送。使用不同材料的COMSOL Multiphysics对设计进行了分析和仿真。与其他选定的材料相比,基于碳化硅(SiC)的微针具有较小的变形性。而且,模拟结果表示应力随针尖面积的变化而显着变化。还对弯曲和压缩力分析进行了检查,以确定如果针体上产生的应力低于材料的屈服强度,则微针可以承受而不会断裂。

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