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Experimental results of the tribology of aluminum measured with a pin-on-disk tribometer: Testing configuration and additive effects

机译:用针盘式摩擦计测量的铝的摩擦学实验结果:测试配置和附加效应

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Abstract The friction coefficient, wear rate, and wear coefficient of the aluminum metal surface were measured at room temperature (≈300 K) with a pin-on-disk machine at a fixed load of 196.2 N. Two different testing configurations were adopted: (1) aluminum pin vs. Helix oil-on-steel disk (AHS) and (2) aluminum pin vs. 10% Polytron plus 90% helix oil-on-steel disk (APS). In the AHS configuration, the wear of the aluminum surface was found to be approximately 70 μm; however, in the APS configuration the wear dropped to 20 μm, revealing a marked decrement of one-third of the wear of aluminum. The volume wear rate of the metal in the unaided Helix oil was estimated to be 1.28×10_(–3) mm_(3)/min. The additive minimized the volume wear rate of the aluminum metal by orders of magnitude to 6.08×10_(–5) mm_(3)/min. Similarly, the wear coefficient of the aluminum pin, calculated in the AHS configuration, rendered a value of 1.27×10_(–10) m_(2)/N. In the APS configuration, the same parameter was 4.22×10_(–11) m_(2)/N, that is to say, an order of magnitude lower than the preceding value. The observed coefficient of friction for aluminum is 0.012 in Helix oil and falls to a remarkably lower value of 0.004 through the Polytron additive. The experimental findings demonstrate that Polytron additive substantially lessens the wear of the aluminum surface; in effect, the wear coefficient and the wear rate decline linearly. This singularity may be linked to the ability of Polytron to impregnate the crystal structure of the metal due to its ionic character and the consequent adherence to the metallic surface as a hard surface layer.
机译:摘要用销钉圆盘机在固定载荷196.2 N下,在室温(≈300K)下测量了铝金属表面的摩擦系数,磨损率和磨损系数。采用了两种不同的测试配置:( 1)铝销与螺旋钢制油盘(AHS)和(2)铝销与10%的Polytron加90%螺旋钢制油盘(APS)。在AHS配置中,发现铝表面的磨损约为70μm。但是,在APS配置中,磨损降至20μm,表明铝的磨损明显减少了三分之一。单独的Helix油中金属的体积磨损率估计为1.28×10 _(– 3)mm_(3)/ min。该添加剂将铝金属的体积磨损率最小化了数量级,达到6.08×10 _(-5)mm_(3)/ min。同样,以AHS配置计算的铝销的磨损系数为1.27×10 _(– 10)m_(2)/ N。在APS配置中,相同的参数为4.22×10 _(– 11)m_(2)/ N,即比先前值低一个数量级。在螺旋油中观察到的铝的摩擦系数为0.012,通过Polytron添加剂降至0.004的显​​着较低值。实验结果表明,Polytron添加剂可大大减少铝表面的磨损;实际上,磨损系数和磨损率线性下降。这种奇异性可能与Polytron浸渍金属的晶体结构的能力有关,这归因于其离子特性以及因此对作为硬表面层的金属表面的粘附。

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