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Laser re-manufacturing of failure 18Cr2Ni4WA gear in low-speed heavy-load mining machine transmission

机译:激光重新制造失效18CR2NI4WA档,低速重载挖掘机传输

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This article investigated laser re-manufacturing technology application in mining industry. The research focused on green re-manufacturing of failure spur. Leave the main gear body stay intact after the dirty, rust, fatigue and injured part were removed completely before the green re-manufacturing procedure begin. The optimized laser operating parameters paved the road for excellent mechanical properties and comparatively neat shape which often means less post processing. The laser re-manufactured gear surface was systematically examined, including microstructure observation, and dry wear test at room temperature. The test results were compared with new gear surface and used but not broken gear surface. Finally, it proved that the green re-manufactured gear surface displayed best comprehensive mechanical properties, followed the new gear surface. The resistance of dry wear properties of used but not broken gear surface was the worst.
机译:本文研究了采矿业的激光重新制造技术应用。 该研究专注于绿色重新制造失效刺激。 在绿色重新制造程序开始之前完全除去脏,锈,疲劳和受伤部件后,留下主齿轮的完整保持完整。 优化的激光操作参数为优异的机械性能铺设了道路,并且巧妙的形状通常意味着较少的后处理。 系统地检查激光重新制造的齿轮表面,包括微观结构观察,室温下干磨损试验。 将测试结果与新齿轮表面进行比较并使用但未绕齿轮表面进行比较。 最后,它证明了绿色重新制造的齿轮表面显示出最佳的综合机械性能,遵循新的齿轮表面。 使用但不是断开齿轮表面的干磨损性能的阻力是最糟糕的。

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