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首页> 外文期刊>Journal of Failure Analysis and Prevention >Fatigue Failure of Electronic Unit Pumps Used in Truck Diesel Engine
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Fatigue Failure of Electronic Unit Pumps Used in Truck Diesel Engine

机译:卡车柴油机电子单元泵的疲劳失效

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Several electronic unit pumps (EUPs) used in the truck diesel engine failed during the trial tests. All the failures occurred at the same location, the fifth thread root on the outer diameter of oil-outlet of EUP. Two typical failed EUPs were analyzed to assess failure causes. Fractographic investigation shows that the fatigue fracture was the dominant failure mechanism of two EUPs. Crack origins of the failed EUPs initiated from the fillet root of the step in the internal hole of oil-outlet and propagated toward the fifth thread root on the outer diameter of oil-outlet. Over-small radius of the root fillet caused a high notch effect, and the presence of porous structure and network nitrides on the nitrided internal hole surface created a "metallurgical stress concentration." Under the action of the great contact force between the plug and the side wall of internal hole of oil-outlet resulting from the press-fitting the plug, the crack initiated easily at the fillet root. The fillet root of step in the internal hole was almost in the same level with the fifth thread root on the outer diameter of oil-outlet. The fifth thread on the outer diameter of oil-outlet was just corresponding to the first engaged thread inside the nut of oil-pipe matched with the threaded portion of the outer diameter of oil-outlet. This resulted in a maximum axial tensile load on the fifth thread due to pre-tightening the nut of oil-pipe. The crack propagated rapidly toward the fifth thread on the outer diameter under the great axial tensile load to lead to premature fatigue failure of EUP.
机译:在卡车柴油发动机中使用的几个电子单元泵(EUP)在试运行中失败了。所有故障均发生在同一位置,即EUP出油口外径的第五根螺纹根。分析了两个典型的失败的EUP,以评估失败的原因。分形研究表明,疲劳断裂是两个EUP的主要失效机理。失效的EUP的裂纹起源于出油口内孔中台阶的圆角根部,并向着出油口外径上的第五螺纹根部扩展。根部圆角的半径过小会导致较高的缺口效应,而渗氮的内孔表面上存在多孔结构和网络氮化物会产生“冶金应力集中”。在塞子与压入塞子产生的油嘴内孔侧壁之间的巨大接触力的作用下,裂纹很容易在圆角根部产生。内孔台阶的圆角根与排油口外径上的第五个螺纹根几乎处于同一水平。出油口外径上的第五螺纹恰好对应于油管螺母内的第一啮合螺纹,与出油口外径上的螺纹部分匹配。由于预先拧紧了油管螺母,因此在第五根螺纹上产生了最大的轴向拉伸载荷。裂纹在较大的轴向拉伸载荷下迅速向外径的第五螺纹扩展,从而导致EUP的疲劳提前失效。

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