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Comparison of laboratory wear test results with the in-service performance of cutting edges of loader buckets

机译:实验室磨损试验结果与装载机铲斗切割边缘的换行性能进行比较

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摘要

The in-service cutting edge of a mining loader bucket was investigated and its wear behavior compared with samples tested in the laboratory to assess how well the wear testing methods correlate with the in-service conditions. The examined in-service cutting edge of a bucket made of a wear resistant steel had been run in an underground mine with quarry gravel. The wear behavior of the cutting edge was simulated in the laboratory scale with several application oriented abrasive and impact-abrasive wear testing methods. In addition to the contact mode, high loads, large abrasive size, abrasive type, and the comminution of the abrasive formed the basis for the design of the laboratory experiments. The wear surfaces and cross-sections of the original cutting edge and the test samples were characterized, and the wear behaviors were compared with each other. Work hardening of the steels occurred in all cases, but the amount of plastic deformation and the depth of the wear scars varied.
机译:采矿装载桶的役尖端进行了研究,其磨损行为与实验室中测试的样品相比,以评估磨损试验方法与在役条件相关的程度。 由耐磨钢制成的铲斗中的桶内的役式切削刃已在地下矿石中运行,采用采石场砾石。 在实验室规模中模拟了切削刃的磨损行为,具有几种面向磨料的磨料和冲击研磨磨损试验方法。 除了接触模式,高负荷,大型磨料尺寸,磨料类型以及磨料的粉碎形成了实验室实验的设计的基础。 原始切削刃和测试样品的磨损表面和横截面的特征在于,并且彼此比较磨损行为。 所有情况下,钢的工作硬化发生,但塑性变形量和磨损疤痕的深度变化。

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