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Performance evaluation of bandsaw using scientific method when cutting tool steels

机译:用科学方法在切割工具钢时使用科学方法的性能评估

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Bandsawing is a key primary machining operation for cutting off raw material into required dimensions, which is subjected to further secondary machining operation(s) to manufacture a product or a component. Bandsawing is distinctively characterised from other multipoint cutting operations with small depth of cut or feed per tooth (5 μm - 50 μm) compared to the cutting edge radius (5 μm - 15 μm). Bandsawing performance significantly differs depending on workpiece material characteristics. In the current investigation, performance of bandsawing operation has been scientifically evaluated when cutting two different tool steel materials (Orvar Supreme and Sverker). Bandsawing tests were carried out with 6 different cutting speeds ranging from 31 m/min to 90 m/min and four different depths of cut ranging from 1 μm to 4 μm. Cutting forces and thrust forces were continuously measured throughout the cutting tests. Specific cutting energy parameter calculated based on cutting force and material removal data has been used to quantitatively measure the efficiency of the metal cutting process at different feeds and speeds. The bandsaw teeth at the worn condition have been studied under a Scanning Electron Microscope to identify wear modes and mechanisms. The chip characteristics at different feeds and speeds have also been discussed. The sawing community including bandsaw end users and design engineers should find the results presented of interest.
机译:带锯是一种用于将原料切断到所需尺寸的关键初级加工操作,其经受进一步的二次加工操作以制造产品或组件。与切削刃半径(5μm-15μm)相比,带锯形与其他多点切割操作具有小的切割或饲料较小的剪切或饲料(5μm-50μm)。根据工件材料特性,带锯的性能显着不同。在目前的调查中,在切割两种不同的工具钢材(Orvar Supreme和Sverker)时,已经在科学评估了带散手术的性能。带锯试验是用6个不同的切割速度范围为31米/分钟到90米/分钟和切范围为1微米至4微米的四个不同的深度进行。在整个切割测试中连续测量切割力和推力。基于切割力和材料去除数据计算的特定切割能量参数已被用于定量测量不同进料和速度的金属切割过程的效率。已经在扫描电子显微镜下研究了磨损条件下的带锯齿,以识别磨损模式和机构。还讨论了不同进料和速度的芯片特性。锯切社区在内,包括Bandsaw最终用户和设计工程师应该找到所感兴趣的结果。

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