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Fatigue Properties of Polyurethane Foams, with Special Emphasis on Auxetic Foams, Used for Helicopter Pilot Seat Cushion Inserts

机译:直升机驾驶员座垫嵌件用聚氨酯泡沫的疲劳特性,特别强调的是辅助泡沫

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Seat cushion inserts in military helicopters crew seats, as suggested by the helicopters manufacturers, are made of traditional polyurethane foams.Elastic polyurethane auxetic foams are materials that exhibit different utility properties compared to traditionally used polyurethane foams, such as polyether or polystyrene foams. All the differences result from the primary physical property of elastic polyurethane auxetic foams which is a negative Poissona€?s ratio. Auxetic materials are characterized by better utility properties than conventional foam materials a€“ they can potentially increase safety in the event of a crash and offer higher comfort during regular use. Application of auxetic materials as seat cushion inserts would also decrease harmful health effects of vibrations.This paper presents the results of the fatigue tests carried out on different foam samples by pressing an indenter into the foams' surface that was much larger than the indentera€?s surface. A maximum value of the load used during the test was within a defined range in every fatigue cycle.In order to test 150?—150?—50 mm foam samples a special indenter was designed and manufactured according to the PN-EN ISO 3385 and PN-EN ISO 2439 standards. The indentera€?s dimensions were consistent with the standards in relation to the tested foams' size.The fatigue tests of both conventional and auxetic foams were carried out according to the above given standards by applying 80,000 load cycles at 70 cycle/min frequency. Tests of viscoelastic foam and multilayer foam specimens, for which the upper layer was made of viscoelastic foam, were carried out according to the ASTM D 3574 standard applying 12,000 load cycles at 10 cycle/min frequency. All the tests were carried out using the MTS 370.10 strength testing machine.Changes in thickness and density were determined throughout the tests. Moreover, the influence of the volumetric compression ratio on the fatigue properties of auxetic foam samples and the dependence of foam deflection on the number of cycles were examined. Finally, the test results obtained for conventional and auxetic foams were compared and discussed.
机译:直升机制造商建议,军用直升机机座上的座垫衬垫是由传统聚氨酯泡沫制成的。弹性聚氨酯膨胀泡沫是与传统聚氨酯泡沫(例如聚醚或聚苯乙烯泡沫)相比具有不同实用性的材料。所有这些差异都是由弹性聚氨酯膨胀泡沫的主要物理特性引起的,该特性是负的泊松纳比。辅助材料的特点是比常规泡沫材料具有更好的实用性,它们可以在发生碰撞时提高安全性,并在常规使用中提供更高的舒适度。将膨胀材料用作座垫嵌件也可以减少振动的有害健康影响。本文介绍了通过将压头压入比压头大得多的压头来对不同泡沫样品进行的疲劳测试结果。的表面。在每个疲劳周期中,测试过程中使用的最大载荷值均在规定的范围内。为了测试150?-150?-50 mm泡沫样品,根据PN-EN ISO 3385设计和制造了特殊的压头。 PN-EN ISO 2439标准。压痕的尺寸与有关测试泡沫尺寸的标准一致。按照上述给定标准,通过以70个循环/分钟的频率施加80,000个载荷循环,对常规泡沫和发胀泡沫进行了疲劳测试。根据ASTM D 3574标准,以10个循环/分钟的频率施加12,000个载荷循环,进行粘弹性泡沫和多层泡沫样品的试验,其上层由粘弹性泡沫制成。所有测试均使用MTS 370.10强度测试仪进行。在整个测试过程中确定厚度和密度的变化。此外,研究了体积压缩比对膨胀泡沫样品疲劳性能的影响以及泡沫挠度对循环次数的依赖性。最后,比较并讨论了常规泡沫塑料和膨胀型泡沫塑料的测试结果。

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