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A qualitative correlation between friction coefficient and steel surface wear in linear dry sliding contact to polymers with SGF

机译:与SGF聚合物进行线性干式滑动接触时,摩擦系数与钢表面磨损之间的质量相关性

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In this paper we tried to present a qualitative correlation, based on extensive experimental determinations between the value and the evolution of the friction coefficient, wear, and contact temperature, in the case of linear dry contact, for thermoplastic material reinforced with short glass fibers (SGF) and various steel surfaces. The aim was to highlight the evolution of the wear process depending on the evolution of the friction coefficient. As a result, it was possible to graphically illustrate the evolution of the friction coefficient and the change of the wear process, emphasizing the abrasive, adhesive and corrosive wear. The evolution of the plastic material transfer function of the contact temperature, namely of the power lost by friction (product between the contact pressure and sliding speed, p and v) was aimed and it was highlighted. It has been demonstrated that in the case of a 30% SGF content it can reach and even exceed contact temperatures very close to the flow limit of the plastic material. We tried, believing successfully, the graphic illustration of the evolution of the steel surface wear and of the contact temperature, depending on the friction coefficient. The influence of the normal load and sliding speed was evaluated in detail, but also the influence of the metallic surface roughness on the friction coefficient was discussed.
机译:在线性干式接触的情况下,对于短玻璃纤维增​​强的热塑性材料,在广泛的实验确定值和摩擦系数,磨损和接触温度的演变之间的基础上,我们尝试提出定性相关性( SGF)和各种钢表面。目的是根据摩擦系数的变化来强调磨损过程的变化。结果,可以图形化地说明摩擦系数的变化和磨损过程的变化,重点是磨料,粘合剂和腐蚀性磨损。着眼于塑料材料传递函数的接触温度的变化,即摩擦损失的功率(接触压力与滑动速度之间的乘积,p和v)的演变,并着重指出了这一点。已经证明,在30%的SGF含量的情况下,它可以达到甚至超过非常接近塑料材料的流动极限的接触温度。我们成功地尝试了根据摩擦系数对钢表面磨损和接触温度的演变进行的图形说明。详细评估了法向载荷和滑动速度的影响,还讨论了金属表面粗糙度对摩擦系数的影响。

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