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Investigations into tilt angles and order of cutting sequences for cutting head design of roadheaders

机译:掘进机截割头设计的倾角和截断顺序研究。

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This paper explains optimum arrangement of gauge tools and corner cutting picks for cutting head design of roadheaders. Full-scale simulation of roadheaders cutting heads of practical types with a wide range of tilt angles was carried out through laboratory linear cutting experiments. The trials showed that optimum tilt angle for corner cutting picks was approximately equal to the half breakout angle of the rock, and corner cutting picks acted as gauge tools after this value. Tilt angles greater than the optimum value were not recommended for both gauge and corner cutting picks, due to poor cutting efficiency and tool holder problems. Higher specific energy was found when the order of cutting sequences of unparalleled axis tools (the gauge tools) was arranged to start cutting from nose side of the cutting head than that of the opposite direction. The parallel axis tools on road headers cutting heads were, however, understood to be not affected by the order of cutting sequences. Furthermore, the effective area method which was previously suggested for tool force calculation of parallel axis tools was also verified for unparalleled axis tools investigated in this research study.
机译:本文介绍了用于掘进机截割头设计的量具和拐角截齿的最佳布置。通过实验室线性切割实验,对具有宽倾角范围的实用类型的掘进机切割头进行了全面模拟。试验表明,角corner镐的最佳倾斜角大约等于岩石的半裂角,并且corner角镐在此值之后用作量具。由于切削效率低和刀架问题,建议不要对规格和角切削截齿使用大于最佳值的倾斜角度。当将无平行轴工具(量规工具)的切割顺序排列为从切割头的刀头侧开始切割时,比相反方向的切割顺序要高。但是,应该理解割台割台切割头上的平行轴工具不受切割顺序的影响。此外,本研究中研究的非平行轴刀具也验证了以前建议用于平行轴刀具力计算的有效面积法。

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