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Thermal cracks in diesel engine crankshafts.

机译:柴油发动机曲轴的热裂纹。

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摘要

Diesel engine crankshafts serve the function of transmitting torque generated by the power cylinders to the driven machinery. During the re-qualification of the crankshaft at overhaul, there may be small cracks found in the crankshaft. These cracks, known as "heat checks" in the industry, may render the crankshaft unfit for replacement in an engine, thereby representing a financial loss to the owner of the engine. The focus of this work is on the crankshafts, bearings and lubricating oils used in the diesel engines made by GE Rail, a manufacturer of locomotives.; A metallurgical analysis of the thermal cracks in a typical crankshaft was made. Bearing rig tests were configured and executed to measure the relative tendency of different shaft materials (heat treatment) to seize and crack when running with different bearing materials and lubricating oils. Transient thermal and elastic-plastic analyses were used to verify the hypothesis of thermal shock. A one-dimensional generalized plane strain model of a long cylinder subjected to a transient heat flux on the outside diameter proved useful in understanding the sensitivity of different geometry and material parameters to the thermal shock mechanism. The finite element method and bearing back temperature measurements were used to estimate the heat flux from actual bearing seizure events.; It was determined that the thermal cracks in the surface of the crankshaft journals are the result of a thermal shock mechanism. The rapid heating of the journal due to contact with the bearing will cause a temperature gradient that may be sufficient to cause constrained plasticity near the surface of the shaft. Subsequent cooling of the shaft may result in "reverse yielding" of the shaft surface and the generation of tensile hoop stresses that are sufficient to crack the material. Prior experience and some experimental evidence obtained in this work suggest that case hardening of the crankshaft may exacerbate the tendency to crack under thermal shock.
机译:柴油机曲轴具有将动力缸产生的扭矩传递到被驱动机械的功能。在大修曲轴的重新鉴定期间,可能会在曲轴中发现小裂纹。这些裂缝在行业中被称为“热检查”,可能会导致曲轴不适合更换发动机,从而给发动机拥有者带来经济损失。这项工作的重点是机车制造商GE Rail生产的柴油发动机中使用的曲轴,轴承和润滑油。对典型曲轴中的热裂纹进行了冶金分析。配置并执行了轴承架测试,以测量在使用不同轴承材料和润滑油时,不同轴材料(热处理)卡住和开裂的相对趋势。瞬态热和弹塑性分析用于验证热冲击的假设。长圆柱体的一维广义平面应变模型在外径上经受瞬态热通量,被证明有助于理解不同几何形状和材料参数对热冲击机理的敏感性。有限元法和轴承背部温度测量被用来估计实际轴承卡死事件的热通量。可以确定曲轴轴颈表面的热裂纹是由热冲击机制引起的。由于轴颈与轴承接触而导致的快速加热将导致温度梯度升高,该温度梯度可能足以导致轴表面附近的塑性受到约束。轴的后续冷却可能会导致轴表面“反向屈服”,并产生足以使材料破裂的张紧环应力。先前的经验和这项工作中获得的一些实验证据表明,曲轴的表面硬化可能会加剧在热冲击下开裂的趋势。

著录项

  • 作者

    Dowell, John P.;

  • 作者单位

    Case Western Reserve University.;

  • 授予单位 Case Western Reserve University.;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;自动化技术及设备;
  • 关键词

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