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Design and characterization of a compact voice coil for a needle-free injection device

机译:用于无针注射装置的紧凑型音圈的设计和表征

摘要

Conventional needle-free injection (NFI) devices are driven by a pressure source generated by either a compressed spring mechanism or compressed inert gas, which have fixed injection (pressure versus time) profiles. The NFI device developed at the Massachusetts Institute of Technology BioInstrumentation Laboratory (MIT BiLab) is novel in its use of a Lorentz force voice coil actuator as the pressure source. With servo-control, the applied pressure can be adjusted for injection conditions such as skin toughness and injection depth. The focus of this thesis was on designing, building and characterizing a more compact version of the current NFI device. The proposed design features a reduction of the diameter of the voice coil motor by packing empty space with an additional set of magnets. A prototype was built, and benchtop tests were conducted to characterize its force sensitivity, the stability of this force sensitivity, and the jet velocity from the syringe. The force sensitivity was found to be 8.3 N/A, and its consistency was shown to be remarkably stable throughout the stroke of the voice coil. It was found that, with a 200 V input, the voice coil exerted a force of 127 N on the syringe piston, which is equivalent to 12.7 MPa; this pressure produced a jet velocity of 162 m/s out of the syringe.
机译:常规的无针注射(NFI)设备由压缩弹簧机构或压缩惰性气体产生的压力源驱动,这些压力源具有固定的注射(压力与时间)曲线。由麻省理工学院生物仪器实验室(MIT BiLab)开发的NFI设备在使用洛伦兹力音圈致动器作为压力源方面是新颖的。通过伺服控制,可以针对注射条件(例如皮肤韧性和注射深度)调节施加的压力。本文的重点是设计,构建和表征当前NFI设备的更紧凑版本。所提出的设计的特征是通过用另外一组磁体填充空的空间来减小音圈电机的直径。建造了一个原型,并进行了台式测试,以表征其力敏感度,该力敏感度的稳定性以及注射器的喷射速度。测得的力敏感度为8.3 N / A,并且在音圈的整个行程中,其灵敏度都非常稳定。结果发现,在200 V输入下,音圈在注射器活塞上施加了127 N的力,相当于12.7 MPa。这个压力从注射器中产生了162 m / s的喷射速度。

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