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Analysis and Assessment through Mechanical Static Compression Tests of Damping Capacity in a Series of Orthosis Plantar Materials Used as Supports

机译:通过作为支撑件的一系列矫形跖跖材料的阻尼能力的机械静态压缩试验分析和评估

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摘要

High plantar pressure is the cause of multiple types of foot injuries and one of the main reasons for patient visits in podiatry and traumatology. Therefore, there is a need to acquire specific tools to address such injuries. The aim of this study was to determine the absorption capacity of selected materials applied as plantar supports and their response to pressure. The study had a cross-sectional design. A total of 21 materials were chosen and different material families were assessed, including ethylene-vinyl acetate, polyurethane foams, and polyethylene foams. Static compression tests were performed to analyze each material. The system is ideally suited for lower-force applications, small components, biomedical applications, and lower-strength materials. Damping was determined using mathematical calculations performed on the study data. It was found that materials with a low Shore A, or soft materials, exhibited worse absorption capacity than harder materials. Ethyl-vinyl acetates had good absorption capacity, polyurethane foams had a poor absorption capacity, and soft materials provided better adaption to impact. The results suggested that damping is not determined by the hardness of the material, and materials within the same family exhibit different damping capabilities.
机译:高狗氏菌的压力是多种脚伤的原因,以及患者患者患者患者患者的主要原因。因此,需要获取特定工具来解决这种伤害。本研究的目的是确定作为Purtorar支持的选定材料的吸收能力及其对压力的反应。该研究具有横截面设计。共选择21种材料,并评估不同的材料家族,包括乙烯 - 乙酸乙烯酯,聚氨酯泡沫和聚乙烯泡沫。进行静态压缩试验以分析每种材料。该系统非常适用于较低力的应用,小部件,生物医学应用和低强度材料。使用在研究数据上执行的数学计算确定阻尼。发现具有低岸A或软材料的材料表现出比硬质材料更差的吸收能力。乙烯基乙酸乙烯酯具有良好的吸收能力,聚氨酯泡沫具有差的吸收能力,软材料提供更好的抗冲击。结果表明,阻尼不是由材料的硬度确定的,而同一家族内的材料表现出不同的阻尼能力。

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