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ANALYSIS OF THE INFLUENCE OF DIFFERENT FACTORS ON THE ROLLING RESISTANCE OF RETREADED TIRES: CONTRIBUTION TO CO2 EMISSIONS

机译:不同因素对翻新轮胎滚动阻力的影响分析:二氧化碳排放的贡献

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The reduction of fuel consumption of vehicles is one of the priority objectives in addressing the reduction of CO2. Current EC regulations stipulate minimum requirements for new tires in relation to their low rolling resistance coefficient (RRC) and rolling noise. Nevertheless, these requirements do not apply at present to retreaded tires, which represent today 40% of the consumption of truck and commercial vehicles. The influence of different parameters on the RR obtained after retreading is studied. First, an attempt has been made to eliminate the influence of the condition of the starting casing, studying separately the influence of factors associated with the retread process and the materials used therein. To achieve this goal, RRC tests were carried out on new tires, on the casings of the same tires after being scraped, and finally after being retreaded using different formulations and processes. The results show that retreading significantly increases RRC, but the influence of the casing manufacturer is very important; a tire retreaded using a first-class casing can present an RRC lower than an equivalent low-cost new tire. On the other hand, the dynamic properties of the material added in the new tread are important, but the difference encountered between retreaded tires using different retreading materials and processes remains less than 5%. To study the influence of the aging of the materials, used tires were also tested before and after retreading. In view of the results, the aging condition of the casing seems not to have a clear effect on the RRC of the used tire. Indeed, the effect seems to be beneficial for the passenger car and detrimental for the truck samples studied. Those effects are smoothed during retreading, and the casing condition is not presented as a main factor of theRRCof the retreaded tire. It is worth noting that the study was carried out on a small sample of tires of two specific dimensions: a small passenger car tire (185/65 R15) and a European standard size for long-distance trucks (315/70 R22.5). Although the results and conclusions are very interesting, they should be taken with caution when extrapolated to other types of tires.
机译:车辆的燃料消耗的减少是解决CO2减少的优先目标之一。目前的EC法规规定了与其低滚动电阻系数(RRC)和滚动噪声相关的新轮胎的最低要求。尽管如此,这些要求不适用于目前翻新轮胎,该轮胎表示今天40%的卡车和商用车辆的消耗。研究了改进后得到的不同参数对RR的影响。首先,已经尝试消除起始壳体的状况的影响,分别研究与翻盖过程相关的因素的影响和其中使用的材料。为实现这一目标,RRC测试在新轮胎上进行,在刮擦后的同一个轮胎的壳体上,最后在使用不同的制剂和过程中翻新之后。结果表明,翻新显着增加了RRC,但套管制造商的影响非常重要;使用一流的壳体重新翻新的轮胎可以呈现低于等效低成本新轮胎的RRC。另一方面,在新胎面中添加的材料的动态特性很重要,但是使用不同翻新材料和过程的翻新轮胎之间遇到的差异仍然小于5%。为研究材料老化的影响,在翻新之前和之后还测试了二手轮胎。鉴于结果,壳体的老化条件似乎不对所用轮胎的RRC具有明显的影响。实际上,效果似乎有利于乘用车和研究的卡车样本。在翻新期间,这些效果被平滑,并且壳体状况未被呈现为翻新轮胎的主要因素。值得注意的是,这项研究是在两种特定尺寸的小轮胎上进行的研究:小型乘用车轮胎(185/65 R15)和长途卡车的欧洲标准尺寸(315/70R22.5) 。虽然结果和结论非常有趣,但在外推到其他类型的轮胎时,应注意。

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