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A new fabrication technique utilizing a composite material applied to orthopedic bracing

机译:一种将复合材料应用于矫形支架的新制造技术

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An orthopedic brace fabrication and fitting technique was explored as a rapid and cost-effective alternative process to polypropylene fabrication.Other potential benefits could also be reduced weight and lower profile with the added advantage of allowing profile and firmness variation where desired.The novel process concept is based on the finding that a partially cured composite remains somewhat malleable.Clinicians conceivably can adjust an ankle-foot brace to the patient directly before fully curing the brace.Flexure expewriments assessed both the partial curing concept and the ability to post-form.Results indicate that partial curing followed by ambient or heated adjustments and full curing compromises the strength by no more than 7%.However,adjustments resulted in a net displacement change averaging only 50% of that desired when heat was applied.It is also possible to post-form the fully cured brace.This compromises the material strength significantly in the deformed area,but it may be feasible for minor adjustments where applied loads are not extreme.This research demonstrates the feasibility of the process as an alternative to current techniques,especially for patheints needing a strong brace.
机译:骨科支架的制造和装配技术被认为是聚丙烯制造的一种快速且经济高效的替代工艺,其他潜在的好处还可以减少重量和降低轮廓,并具有在需要时允许轮廓和硬度变化的附加优势。基于这样的发现:部分固化的复合材料仍然具有一定的延展性,可以想象的是,临床医生可以在支架完全固化之前直接对患者调整脚踝支架。弯曲消耗评估了部分固化的概念和成型后的能力。表示部分固化后再进行环境或加热调节,而完全固化则使强度降低不超过7%。但是,调节导致的净位移变化平均仅为加热时所需的净位移变化的50%。 -形成完全固化的支撑。这会严重影响变形区域的材料强度,但是这项研究证明了该方法作为替代当前技术的可行性,尤其是对于需要坚固支撑的患者而言。

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