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Tribological Characteristics between Snow and Steel and in Snow - Development of Annular Shearing Type Experimental Analysis System -

机译:雪与钢铁之间的摩擦学特性-环形剪切型实验分析系统的研制-

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Characteristics of friction and adhesion/cohesion between snow and SS400 steel in a shearing velocity range of 2.5-25.4 m/s, as well as in snow itself in a shearing velocity range of 0.5-2.5 m/s, were analyzed by using a specially developed annular shearing type experimental analysis system in a normal stress range of 20-60 kPa. The friction coefficient between melt forms and SS400 was smaller than that between rounded grains and SS400 at the same shearing velocity. The adhesive force per unit area of the rounded grains and the melt forms with respect to SS400 and the cohesive forces per unit area in the rounded grains and the melt forms tended to be larger with smaller shearing velocity in the transient state, whereas those in the steady state showed the opposite tendency, except for the adhesive force of the melt forms in the transient state and that of the rounded grains in the steady state in the case where the shearing velocity was 25.4 m/s. In addition, the friction coefficients in the rounded grains and the melt forms were larger with decreasing shearing velocity.
机译:通过使用专门的分析方法,分析了雪和SS400钢在2.5-25.4 m / s的剪切速度范围内以及雪本身在0.5-2.5 m / s的剪切速度范围内的摩擦特性和粘附/内聚特性。开发了在20-60 kPa的正应力范围内的环形剪切型实验分析系统。在相同的剪切速度下,熔体与SS400之间的摩擦系数小于圆形颗粒与SS400之间的摩擦系数。相对于SS400,圆形颗粒和熔体的单位面积的粘附力,在过渡状态下,以较小的剪切速度,圆形颗粒和熔体的单位面积的内聚力倾向于较大,而在过渡状态下,则较小。稳态显示相反的趋势,除了在剪切速度为25.4 m / s的情况下,在过渡状态下熔体形成的粘附力和在稳态下圆形颗粒的粘附力外。另外,随着剪切速度的降低,圆形晶粒和熔体形态的摩擦系数更大。

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