首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Design, manufacture, and evaluation of traction features on sprint footwear using laser sintered nylon-12 sole units
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Design, manufacture, and evaluation of traction features on sprint footwear using laser sintered nylon-12 sole units

机译:使用激光烧结尼龙12鞋底部件设计,制造和评估短跑鞋的牵引力

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摘要

A novel method for incorporating traction features within sprint shoe sole units using laser sintered nylon-12 was investigated. The design, manufacture, and mechanical testing of the sprint shoe sole units are detailed. Three proof-of-principle concept sole units, incorporating traction features typically embodied in commercially available sprint shoes, were developed and manufactured using laser sintered nylon-12 and assembled with standard sprint shoe uppers. The traction properties of both commercially available and laser sintered outsoled sprint shoes were tested on a bespoke rig. Under the prescribed testing conditions, the laser sintered outsoled sprint shoes compared favourably with the commercially available sprint shoes, with the laser sintered concept shoes generating mean peak traction forces to within 15 per cent of those exhibited by an individual commercially available sprint shoe. The results indicate the potential to create a fully functional sprint shoe sole unit using laser sintering technologies, and thereby to create one-off sprint shoes for athletes, is viable in terms of the shoe being able to provide traction levels close to conventional sprint shoes. However, as the strain rates encountered during sprinting are considerably higher than in the test methods implemented, further human performance testing is recommended.
机译:研究了一种使用激光烧结尼龙12在短跑鞋鞋底单元中纳入牵引力特征的新方法。对冲刺鞋底单元的设计,制造和机械测试进行了详细说明。使用激光烧结尼龙12开发和制造了三个具有原理证明概念的鞋底单元,这些单元具有通常在市售的短跑鞋中体现的牵引力,并与标准的短跑鞋鞋面组装在一起。在定制设备上测试了市售的和激光烧结的落后冲刺鞋的牵引性能。在规定的测试条件下,激光烧结的短跑鞋比市售的短跑鞋优越,激光烧结的概念鞋产生的平均峰值牵引力在单个市售的短跑鞋所表现出的峰值牵引力的15%之内。结果表明,利用激光烧结技术制造功能齐全的短跑鞋鞋底单元,从而为运动员打造一次性短跑鞋的潜力,就其能够提供接近传统短跑鞋的牵引力而言是可行的。但是,由于在冲刺过程中遇到的应变率比实施的测试方法高得多,因此建议进一步进行人体性能测试。

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