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A shape memory alloy energy absorber for backpack design

机译:用于背包设计的形状记忆合金能量吸收器

摘要

Individuals employed in specific recreational,occupational, and military pursuits often carry heavy loads, using variety of pack systems. Recreational hikers and backpackers commonly carry subsistence and comfort items in backpacks. Firefighters, foot soldiers, and other emergency personnel carry extremely heavy backpack loads and walk longer distances than most of their civilian counterparts. It is shown that the physiological strain in terms of heart rates increases considerably when a user carries a load of more than 10.4 kg. Besides, additional stains are induced due to improper ergonomic design of backpacks' structures, which generate unbalanced loads to the user. Since shape memory alloys (SMAs) possess superior form-setting capability and pseudo-elastic properties, which in turn are perfect materials as a damper at the temperature above their austenite finish temperature (Af ), embedding an ergonomically-designed SMA energy absorber based on the users' motion, physiological, and ergonomic information into backpacks' structures is able to alleviate these excess strains for sporty and military applications. In this regard, this article presents the feasibility of using a specially designed SMA energy absorber for imbedding into shoulder belts of backpacks to alleviate the dynamic stress imposed onto shoulder of the backpackers. Our experimental results revealed that a certain amount of energy generated from the weight of the backpack can be absorbed by the absorber, which eventually can reduce the risk of fatigue and pain imposed on the backpackers.
机译:受雇从事特定娱乐,职业和军事活动的个人经常使用各种打包系统携带重物。休闲远足者和背包客通常在背包中携带生存和舒适物品。消防员,步兵和其他紧急救援人员背负的背包负担非常重,与大多数平民相比,他们行走的距离更长。结果表明,当使用者承受超过10.4 kg的负荷时,就心率而言,生理压力会大大增加。此外,由于背包结构的人体工程学设计不当,还会引起其他污渍,从而给用户带来不均衡的负荷。由于形状记忆合金(SMA)具有出色的定型能力和拟弹性特性,因此在高于其奥氏体终点温度(Af)的温度下又是阻尼器的理想材料,因此嵌入了符合人体工程学设计的SMA能量吸收器用户在背包结构中的运动,生理和人体工程学信息能够减轻这些多余的压力,适合运动和军事应用。在这方面,本文介绍了使用专门设计的SMA能量吸收器嵌入背包的肩带中以减轻施加在背包手肩部上的动态应力的可行性。我们的实验结果表明,由背包重量产生的一定量的能量可以被吸收器吸收,最终可以减少背包客疲劳和痛苦的风险。

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