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Experimental Research on a Three-Dimensional Journal Orbit of a Crankshaft Bearing for an Internal Combustion Engine

机译:内燃机曲轴轴承三维轴颈轨迹的实验研究

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The current experimental researches on the orbit of a journal center of a crankshaft bearing for an internal combustion engine were usually focused on the 2D movement locus of a crankshaft journal center in the cross section of the bearing. However, in the actual operation of an internal combustion engine, there exists the movement of a crankshaft journal along the bearing axis under the effect of various factors, such as the crankshaft deformation acted by load. Obviously the tribological performance of a crankshaft bearing is affected inevitably by the movement of the crankshaft journal along the bearing axis. In this paper, a four-stroke four-cylinder internal combustion engine was taken as the studying object, the 3D orbit (that includes the movement in the cross section of the bearing and the movement along the bearing axis) of the journal center of the crankshaft bearing for an internal combustion engine was measured under a number of operating conditions on the test bench of an internal combustion engine. The position of the journal in the crankshaft bearing was obtained by the measurement using eddy current gap sensors and the data post-process. The results show that there exists the movement of the crankshaft journal along the axial direction in the bearing for an internal combustion engine. The actual orbit of the journal center of the crankshaft bearing for an internal combustion engine is a 3D spatial curve. The orbit of the journal center of the crankshaft bearing in one operating cycle of an internal combustion engine is not a closed curve. There is relatively a large movement of the journal along the axial direction of the crank-shaft bearing, and the numerical value of the movement is greater than the radial clearance of the bearing. The greater the rotational speed of the internal combustion engine, the larger the amount of axial movement of the journal. The periodic variation exists in the axial movement of the bearing journal in one operating cycle of the internal combustion engine at low engine speed, and the varying periodicity equals the number of engine cylinders. There is no obvious varying rule of the axial movement of the bearing journal in one operating cycle of the internal combustion engine at high engine speed.
机译:当前用于内燃机的曲轴轴承的轴颈中心的轨道的实验研究通常集中在轴承的横截面上的曲轴轴颈中心的二维运动轨迹上。然而,在内燃机的实际运行中,存在曲轴轴颈在轴承等轴心沿轴承轴线的移动的各种因素的影响,例如受载荷作用的曲轴变形。显然,曲轴轴颈沿轴承轴线的运动不可避免地影响曲轴轴承的摩擦学性能。本文以四冲程四缸内燃机为研究对象,其轴颈中心的3D轨道(包括轴承横截面的运动和沿轴承轴线的运动)。在多种操作条件下,在内燃机的试验台上测量了内燃机的曲轴轴承。轴颈在曲轴轴承中的位置是通过使用涡流间隙传感器进行测量和数据后处理获得的。结果表明,在内燃机的轴承中存在曲轴轴颈沿轴向的运动。内燃机曲轴轴承的轴颈中心的实际轨道是3D空间曲线。在内燃机的一个运行周期中,曲轴轴承的轴颈中心的轨道不是闭合曲线。轴颈沿着曲轴轴承的轴向有较大的运动,并且该运动的数值大于轴承的径向游隙。内燃机的转速越大,轴颈的轴向运动量越大。在内燃机低转速运行的一个工作循环中,轴承轴颈的轴向运动存在周期性变化,并且变化的周期性等于发动机气缸数。在内燃机高转速下的一个工作循环中,轴承轴颈的轴向运动没有明显的变化规律。

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