Abstract Evaluation of novel temperature-stable viscoelastic polyurea foams as helmet liner materials
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Evaluation of novel temperature-stable viscoelastic polyurea foams as helmet liner materials

机译:新型耐高温粘弹性聚脲泡沫作为头盔衬里材料的评价

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AbstractViscoelastic polyurea foams with densities of 98, 170, and 230kg/m3were manufactured and integrated into helmet shells and tested using the NOCSAE and FMVSS 218 standards for football and motorcycle helmets, respectively. For football helmet testing, a Riddell Revolution helmet shell was used. The helmets with a foam liner thickness of 28mm were dropped using a NOCSAE medium headform (4.9kg) from heights ranging from 0.305 to 1.524m. All impact tests were done on the crown of the helmet and dropped on a 12.7mm modular elastomer programmer pad. Use of PU98 foam resulted in a reduction of 22% in peak g's and 25% in Severity Index and Head Injury Criteria values when compared to helmets with the original VN600 foams under ambient conditions. These tests were repeated under varying temperatures along with a reduced liner thickness of 22.2mm. In these tests, PU98 foam reduced the peak g's by 18% at 23°C, 26% at −15°C, and 20% at 50°C when compared to VN600 helmets. The FMVSS motorcycle helmet tests demonstrated the success of using an additional layer of polyurea foam liner on top of the existing expanded polystyrene liner in reducing the peak g's by 17%.Graphical abstractDisplay OmittedHighlightsViscoelastic polyurea foams were manufactured that exhibit excellent temperature stability from -15°C to 50°C.Polyurea foams were tested using the NOCSAE and FMVSS 218 standards for the football and motorcycle helmets, respectively.Polyurea foam resulted in a reduction of 22% in peak g’s and 25% in the Severity Index and Head Injury Criteria.Polyurea foam reduced the headform’s peak g’s by 26% at -15°C and 20% at 50°C.
机译: 摘要 粘弹性聚脲泡沫,密度为98、170和230kg / m 3 被制造并集成到头盔壳中,并分别使用针对足球和摩托车头盔的NOCSAE和FMVSS 218标准进行了测试。对于橄榄球头盔测试,使用了Riddell Revolution头盔壳。使用NOCSAE中等头型(4.9kg),将泡沫衬垫厚度为28mm的头盔从0.305至1.524m的高度上落下。所有冲击测试均在头盔的表冠上进行,并落在12.7mm模块化弹性体编程器垫上。与在环境条件下使用原始VN600泡沫的头盔相比,使用PU98泡沫可使峰值g降低22%,严重性指数和头部受伤标准值降低25%。在变化的温度下重复进行这些测试,并减少22.2mm的衬里厚度。在这些测试中,与VN600头盔相比,PU98泡沫在23°C下降低了18%的峰值g,在-15°C下降低了26%的峰值,在50°C下降低了20%的峰值。 FMVSS摩托车头盔测试表明,在现有的膨胀聚苯乙烯衬里之上使用额外的聚脲泡沫衬里层,可以将峰值g降低17%。 图形摘要 省略显示 突出显示 Visc制造了在-15°C至50°C的温度范围内具有出色温度稳定性的全弹性聚脲泡沫。 分别使用NOCSAE和FMVSS 218标准分别针对橄榄球头盔和摩托车头盔测试了聚脲泡沫。 < / ce:list-item> 聚脲泡沫导致峰值g's降低了22%,严重度指数和头部受伤标准降低了25%。 聚脲泡沫在-15°C时将头模的峰值g降低了26%,在50°C时将其降低了20%。

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