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Inertial liquid loading on the nozzle of a needle-free injection device

机译:无针注射装置的喷嘴上的惰性液体负载

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Needle-free injection devices allow delivery of liquid drugs without a hypodermic needle. Advantages include ease of use, patient preference, dose accuracy and elimination of the risk of 'needle-stick' injuries. All liquid needle-free devices use the same principle: the liquid drug is pressurized and delivered at high velocity through a small orifice in close proximity to the skin. The liquid jet penetrates the skin and the drug is delivered into the skin tissues. The high pressures within the drug capsule, together with pharmaceutical requirements that restrict material choice, provide a challenging design problem. This problem is further complicated by the possibility of bubbles within the drug liquid. Bubbles may significantly increase peak pressures and lead to capsule failure. In this paper a model is proposed for the inertial response of the liquid in an open conical nozzle. An equation of motion is derived for the liquid displacement, which is used to predict the pressure distribution. The equation for liquid flow in the nozzle is incorporated into a mathematical model of a needle-free injection device; this model is used in numerical simulations to predict the effect of a bubble at the orifice on the pressure in the nozzle.
机译:无针注射装置无需皮下注射针即可输送液体药物。优点包括易于使用,患者喜好,剂量准确性以及消除“针刺”伤的风险。所有的无针液体设备都采用相同的原理:液体药物经过紧靠皮肤的小孔加压并以高速传输。液体射流穿透皮肤,药物被输送到皮肤组织中。药物胶囊内的高压以及限制材料选择的药物要求提供了一个具有挑战性的设计问题。由于药液内有气泡的可能性,使得该问题更加复杂。气泡可能会大大增加峰值压力并导致胶囊失效。本文提出了一个用于开放圆锥形喷嘴中液体惯性响应的模型。导出了液体排量的运动方程,该方程用于预测压力分布。喷嘴中液体流动的方程式被合并到无针注射装置的数学模型中。该模型用于数值模拟中,以预测孔口处的气泡对喷嘴压力的影响。

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