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Dry sliding wear behaviour of cast roller materials

机译:铸辊材料的干滑磨损行为

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摘要

In this study, wear behaviour of roller materials produced by different casting techniques was investigated. Static and centrifugal casting techniques were used to produce roller materials having pearlitic and martensitic matrices due to the processing method and alloy composition. The roller materials were examined using light and scanning electron microscopes to determine the matrix phase. The samples were tested using 'ball-on-disc' type tribometer to study the wear characteristics of cast morphologies. DIN 100Cr6 steel ball with a 5 mm diameter was used as counterface, load force was selected as 50 N and total sliding distance was 500 m. After wear tests, the surfaces of cast parts were examined by light and scanning electron microscopes to evaluate the wear mechanisms under dry sliding condition. The friction coefficient, weight loss and type of wear mechanisms were determined. It was concluded that the material having finer martensitic matrix produced by centrifugal casting had a higher wear resistance than the one produced by static casting.
机译:在这项研究中,研究了通过不同铸造技术生产的辊筒材料的磨损行为。由于加工方法和合金组成的原因,静态和离心铸造技术用于生产具有珠光体和马氏体基体的辊子材料。使用光显微镜和扫描电子显微镜检查辊筒材料,以确定基体相。使用“圆盘式”摩擦计对样品进行测试,以研究铸型的磨损特性。使用直径为5 mm的DIN 100Cr6钢球作为对面,选择载荷力为50 N,总滑动距离为500 m。磨损测试后,通过光学显微镜和扫描电子显微镜检查铸件的表面,以评估干滑动条件下的磨损机理。确定了摩擦系数,重量损失和磨损机理的类型。结论是,通过离心铸造生产的具有较细马氏体基体的材料比通过静态铸造生产的具有更高的耐磨性。

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