Song Yilin, Zhang Tong, Wang Zhongxian
School of Mechanical and Electrical Engineering, Heilongjiang University, Harbin, China.
J Appl Biomater Funct Mater. 2018 Jan;16(1_suppl):32-36. doi: 10.1177/2280800017751471.
In order to develop a good hip protector to prevent in the elderly hip fracture as a result of a fall, we studied the buffer characteristics of sponges and air cushions.
The buffer rate of material was defined, and the absorption ability of the material to instantaneous impact was evaluated. An experimental device was developed and used to measure the buffer rates of sponges and leak-allowed air cushions with orifice(s).
According to the experimental results, the buffer rate largely depended on the hardness of the sponge materials, and on the total area of the orifice(s) for the leak-allowed air cushions. Compared with the sponge with correct hardness and thickness, the buffer characteristic of the air cushion seems slightly inferior.
Nevertheless, the air cushion's overall performance, including the better buffer rate, ultra-lightness, flexibility, and low cost, makes it a potentially useful material for hip protectors and other sport protectors.
为研发一种有效的髋部保护器以预防老年人跌倒导致的髋部骨折,我们研究了海绵和气垫的缓冲特性。
定义了材料的缓冲率,并评估了材料对瞬时冲击的吸收能力。开发了一种实验装置,用于测量海绵和带孔可漏气气垫的缓冲率。
根据实验结果,缓冲率在很大程度上取决于海绵材料的硬度以及可漏气气垫的孔的总面积。与具有合适硬度和厚度的海绵相比,气垫的缓冲特性似乎略逊一筹。
尽管如此,气垫的整体性能,包括较好的缓冲率、超轻、柔韧性和低成本,使其成为髋部保护器及其他运动保护器的潜在有用材料。