Beranek Vaclav, Stastny Petr, Bacik Bogdan, Bonkowski Tomasz, Novacek Vit
Department of Rehabilitation Fields, Faculty of Health Care Studies, University of West Bohemia, Pilsen, Czech Republic.
Department of Sports Games, Faculty of Physical Education and Sport, Charles University, Prague, Czech Republic.
J Hum Kinet. 2024 Sep 26;94:47-63. doi: 10.5114/jhk/192131. eCollection 2024 Oct.
The strike force in combat sports strongly depends on the protective material's mechanical properties and energy absorption capacity. Therefore, this study aimed to estimate the effect of the protective layer thickness and repeated loading on the net force in a falling weight impact test. A falling 8-kg weight dropped from 15 cm, 25 cm, and 50 cm was used to simulate impact peak forces in an upper limb strike. Transfer linear regression functions were identified for three layers of different thickness (1.8 cm, 3.6 cm, and 5.4 cm) between the measured force and undamped force that would be measured if no protective layer was used. A decrease in damping performance under repetitive loading was assessed for the same amount of energy (30 J) absorbed by the specimens. There were 36 specimens examined in 126 tests. When the measuring apparatus was covered with one, two or three layers of Trocellen foam, the undamped force was approximately 2.8, 6.1, and 11.1 times higher, respectively (p < 0.05, R ≥ 0.95), than the force measured in the kinetic design. This allows researchers to select the number of layers according to the individual needs in terms of safety and injury prevention. A single layer of Trocellen foam used in this study may be insufficient to ensure the safety of athletes in upper limb strike experiments due to possible compaction of the foam structure for deformations exceeding 80% compression and forces exceeding 5 kN, although no injury was previously observed.
格斗运动中的打击力量很大程度上取决于防护材料的机械性能和能量吸收能力。因此,本研究旨在评估在落锤冲击试验中,防护层厚度和反复加载对净力的影响。使用从15厘米、25厘米和50厘米高度落下的8千克重物来模拟上肢打击中的冲击峰值力。确定了三层不同厚度(1.8厘米、3.6厘米和5.4厘米)的防护层在测量力和未使用防护层时所测量的无阻尼力之间的线性回归函数。对于试样吸收相同能量(30焦耳)的情况,评估了反复加载下阻尼性能的下降。在126次试验中检查了36个试样。当测量仪器覆盖一层、两层或三层特罗塞尔泡沫时,无阻尼力分别比动力学设计中测量的力高约2.8倍、6.1倍和11.1倍(p < 0.05,R≥0.95)。这使研究人员能够根据安全和预防伤害方面的个人需求选择层数。尽管之前未观察到受伤情况,但在本研究中使用的单层特罗塞尔泡沫可能不足以确保上肢打击实验中运动员的安全,因为对于超过80%压缩变形和超过5千牛的力,泡沫结构可能会压实。