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Mechanical characterization of surface micromachined microneedle array

机译:表面微机械表征表面微机械磁体阵列

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This paper will report on the mechanical characterization of hollow metallic microneedles. The characterization will include the affects of design variations on the buckling and penetration force of these microneedles, and on the fluid flow characteristics. Needles of five different tip geometry and three different taper angles were designed. The taper angle varies between 15° and 30°. The lengths of the needle shaft tested were 500 μm, 1000 μm and 1500 μm respectively. Microneedles were fabricated using an extension of the work reported earlier. A simple horizontal loading set up consisting of a load cell and a micromanipulator was designed. A rigid orthogonal surface was used in order to study the buckling force, while a mechanically "skin-like" material was used to determine the penetration force. The buckling force was found to vary between 54 gF and 100 gF for needles with shaft lengths of 1500 and 500 μm, respectively. The penetration force was found to be independent of shaft length and was approximately 8 gF. While the needle tips with 15° taper angle failed, the needles with 20° taper angle performed better but experienced a 50% tip failure rate. The flow rate of the microneedles was characterized over a range of 0 - 100 psi using distilled water and air as the fluid media.
机译:本文将报告中空金属微针的机械表征。表征将包括这些微针的屈曲和穿透力的设计变化的影响,以及流体流动特性。设计了五种不同的尖端几何和三个不同的锥形角度的针。锥角在15°和30°之间变化。测试的针轴的长度分别为500μm,1000μm和1500μm。使用前面报告的工作的延伸来制造微针。设计了一种简单的水平装载设置,由负载电池和微操纵器设计。使用刚性正交表面以研究屈曲力,而使用机械“皮肤”材料来确定穿透力。发现屈曲力分别在54gF和100gF之间变化,针长轴长度为1500和500μm。发现渗透力与轴长度无关,约为8gF。虽然具有15°锥角的针尖失效,但具有20°锥角的针头表现较好,但经历了50%的尖端故障率。使用蒸馏水和空气作为流体介质,微针的流速特征在于0-100psi的范围内。

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