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Microanalysis of Worn Surfaces of Selected Rotating Parts of an Internal Combustion Engine. | LitMetric

AI Article Synopsis

  • The paper studies wear in friction surfaces, focusing on the camshaft and crankshaft connecting rod pins, which can reduce machine lifespan.
  • Wear was measured through roughness, microhardness, and microstructure analysis, revealing significant wear due to high temperatures during operation.
  • The findings suggest that the hardened layer of new camshafts is thinner than that of worn ones, indicating that spare parts may lead to quicker wear and shorter technical life for friction nodes.

Article Abstract

The present paper analyzes the damage of surfaces at spots of frictional contact, namely, the friction nodes on a camshaft and the connecting rod pins of a crankshaft. The resulting wear of the monitored friction nodes reduces the technical life of the machines, which can lead to the decommissioning of the machine. Wear was assessed by measuring roughness and microhardness and by observing the microstructures of the materials. The results of the experiments show that the rotating parts displayed visible wear on the cams, as well as on the connecting rod pins. The experiments revealed that wear was caused by the heating of the material to a high temperature during the operation of the machine and that there was a gradual cooling and tempering of the material, which led to a reduction in the microhardness of the monitored object. Lower microhardness values can be a cause of greater wear of the monitored objects. When comparing the microhardness of the used and the new camshaft, the hardened layer of the new camshaft from secondary production has a significantly smaller thickness compared to worn cams, which leads to the finding of a different material quality compared to the original parts from primary production. This fact indicates that the wear of a new camshaft as a spare part can contribute to the shortening of the technical life of friction nodes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746052PMC
http://dx.doi.org/10.3390/ma15010158DOI Listing

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